RATO S / RATO S+ TECHNISCHE DATEN TECHNICAL DATA
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09/2021
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INHALT CONTENTS Eigenschaften
04
Characteristics
04
Baureihenübersicht
06
Summary of Series
06
Technische Daten
08
Technical Data
08
Leistungsdaten
08
Performance Data
08
Geometrische Daten
12
Geometric Data
12
Baureihe 2100
12
Series 2100
12
Baureihe 2101
16
Series 2101
16
Baureihe 2200
20
Series 2200
20
Baureihe 2201
24
Series 2201
24
Baureihe 2300
26
Series 2300
26
Erläuterungen des Produktcodes
28
Explanations of the Product Code
28
Online-Service
30
Online-Service
30
Gültigkeitsklausel
31
Validity Clause
31
RATO S / RATO S+
VULKAN COUPLINGS
03
RATO S / RATO S+ EIGENSCHAFTEN CHARACTERISTICS
DREHMOMENT TORQUE 12,5 kNm – 800,0 kNm EINSATZGEBIETE
AREAS OF APPLICATION
Elastisch aufgestellte Anlagen, starr aufgestellte Anlagen.
Flexibly mounted engines, rigidly mounted engines.
Die hochelastischen RATO S und RATO S+ Kupplungen sind drehelastische
The highly-flexible RATO S and RATO S+ couplings are torsionally flexible rubber
Elastomerkupplungen, die radiale, axiale und winklige Verlagerungen der ange-
couplings that compensates radial, axial and angular shaft displacements of the
schlossenen Maschinen ausgleichen. Die Drehmomentübertragung der Kupp-
connected machinery. The torque is transmitted by elements loaded in shear.
lung wird durch die auf Schub beanspruchten Elemente gewährleistet. Durch
The different torsional stiffnesses and damping factors available provide the
die verschiedenen zur Verfügung stehenden Drehsteifigkeiten und Dämpfungen
possibility to satisfactorily tune the torsional vibration behaviour of the drive
ist eine gute Abstimmung des Drehschwingungsverhaltens der Antriebsanlage
system. The essential parts of the coupling are: the torsional flexible element,
zu erreichen. Die hochelastischen RATO S und RATO S+ Kupplungen beste-
the membrane package to absorb the axial and angular displacements and the
hen im Wesentlichen aus dem drehelastischen Teil, dem Membranteil und den
connecting parts to the drive and driven machinery.
Anschlussteilen. Der drehelastische Teil wird durch die Elemente gebildet, die je nach Baugröße und Steifigkeitsniveau ein- oder mehrreihig angeordnet sein können. Die elastischen Elemente sind in mehrere Segmente aufgeteilt.
PRODUKTVORTEILE
PRODUCT BENEFITS
Einfache und schnelle Montage der Kupplung dank segmentierter
Easy and quick installation of the coupling thanks to the segmented
Bauform mit reduzierten Einzelgewichten
design with reduced weights of the individual segments
Segmentanordnung für maximale thermische Belastbarkeit
The segments are arranged for maximum thermal load
und damit hohe Lebensdauer der Anlage
and therefore long service life of the system
Kompakte Bauform mit innenliegender Nabe für platz- und gewichts
Compact design with an internal hub for space-conserving and weight-
sparende Antriebsabmessung, um die Projektkosten zu senken
saving drive dimensions in order to cut down on the project costs
Durch die Erweiterung um die ACOTEC Größen sorgen kleinere Größen mit
With the introduction of the ACOTEC range, smaller sizes with higher
höherer Leistungsdichte für ein gutes Preis-Leistungsverhältnis.
power density provide good price/performance ratio.
09/2021
RATO S / RATO S+
VULKAN COUPLINGS
05
RATO S / RATO S+ BAUREIHENÜBERSICHT SUMMARY OF SERIES
06
2100
2101
BAUREIHE SERIES
BAUREIHE SERIES
Seite 12 Page 12
Seite 16 Page 16
Zur Verbindung eines Schwungrades mit einer Welle. Mit innen liegender Nabe. Hierdurch wird eine deutlich reduzierte Baulänge ermöglicht.
For connecting a flywheel with a shaft. With internal hub arrangement, that ensures a compact coupling design.
Zur Verbindung eines Schwungrades mit einer Welle. Mit innen liegender Nabe. Hierdurch wird eine deutlich reduzierte Baulänge ermöglicht. Mit Durchdrehsicherung.
For connecting a flywheel with a shaft. With internal hub arrangement, that ensures a compact coupling design. With torsional limit device.
Baugruppe Dimension Group
G 2110 – G 6220
Baugruppe Dimension Group
G 2110 – G 5820
Nenndrehmoment Nominal Torque
12,50 kNm – 500,00 kNm
Nenndrehmoment Nominal Torque
12,50 kNm – 450,00 kNm
2200
2201
BAUREIHE SERIES
BAUREIHE SERIES
Seite 20 Page 20
Seite 24 Page 24
Zur Verbindung eines Schwungrades mit einer Welle.
For connecting a flywheel with a shaft.
Zur Verbindung eines Schwungrades mit einer Welle. Mit Durchdrehsicherung.
For connecting a flywheel with a shaft. With torsional limit device.
Baugruppe Dimension Group
G 2110 – G 6220
Baugruppe Dimension Group
G 2110 – G 5820
Nenndrehmoment Nominal Torque
12,50 kNm – 500,00 kNm
Nenndrehmoment Nominal Torque
12,50 kNm – 450,00 kNm
VULKAN COUPLINGS
RATO S / RATO S+
08/2016
2300 BAUREIHE SERIES Seite 26 Page 26
Zur Verbindung eines Schwungrades mit einem Flansch.
For connecting a flywheel with a flange.
Baugruppe Dimension Group
G 4610 – G 7310
Nenndrehmoment Nominal Torque
180,00 kNm – 800,00 kNm
08/2016
RATO S / RATO S+
VULKAN COUPLINGS
07
RATO S / RATO S+ LEISTUNGSDATEN PERFORMANCE DATA
Kupplungstyp Type of Coupling
TKN
TKmax1
TKmax2
ΔTKmax
TKW
[kNm]
[kNm]
[kNm]
[kNm]
[kNm]
Größe
Baugruppe
Nenndrehmoment
Size
Dimension Group
Nominal Torque
G2110 G2110 G2110 G2120 G2120 G2120 G2310 G2310 G2310 G2320 G2320 G2320 G2510 G2510 G2510 G2520 G2520 G2520 G2710 G2710 G2710 G2720 G2720 G2720 G2910 G2910 G2910 G2920 G2920 G2920
12,5 14,0 16,0 12,5 14,0 16,0 16,0 18,0 20,0 16,0 18,0 20,0 18,0 22,4 25,0 18,0 22,4 25,0 25,0 28,0 31,5 25,0 28,0 31,5 31,5 35,5 40,0 31,5 35,5 40,0
G 211Z G 211W G 211Q G 212Z G 212W G 212Q G 231Z G 231W G 231Q G 232Z G 232W G 232Q G 251Z G 251W G 251Q G 252Z G 252W G 252Q G 271Z G 271W G 271Q G 272Z G 272W G 272Q G 291Z G 291W G 291Q G 292Z G 292W G 292Q
Max. Max. Max. WechselDrehmoment1 Drehmoment2 Drehmoment drehmoment Bereich Max. Max. Max. Vibratory Torque1 Torque2 Torque Range Torque
19,0 21,5 25,0 19,0 21,5 25,0 24,0 27,0 31,0 24,0 27,0 31,0 30,0 33,5 38,5 30,0 33,5 38,5 34,0 38,5 44,5 34,0 38,5 44,5 43,5 49,0 56,5 43,5 49,0 56,5
56,5 63,0 72,0 56,5 63,0 72,0 72,0 81,0 90,0 72,0 81,0 90,0 81,0 101,0 112,5 81,0 101,0 112,5 112,5 126,0 142,0 112,5 126,0 142,0 142,0 160,0 180,0 142,0 160,0 180,0
23,0 25,5 29,5 23,0 25,5 29,5 28,5 32,0 37,0 28,5 32,0 37,0 35,5 40,0 46,5 35,5 40,0 46,5 41,0 46,0 53,5 41,0 46,0 53,5 52,0 58,5 68,0 52,0 58,5 68,0
4,0 4,0 4,0 4,0 4,0 4,0 5,0 5,0 5,0 5,0 5,0 5,0 6,3 6,3 6,3 6,3 6,3 6,3 7,9 7,9 7,9 7,9 7,9 7,9 10,0 10,0 10,0 10,0 10,0 10,0
VULKAN COUPLINGS
RATO S / RATO S+
CTdyn2)
ψ 2)
nKmax1)
ΔKa
ΔKr‘1)
ΔKw
Cax1.0
[mm]
[mm]
[°]
[kN/mm]
[kN/mm] [kNm/rad]
Axiale Federsteife 1,0 mm Axial Stiffness 1,0 mm
Dyn. Radiale Federsteife Dyn. Radial Stiffness
Dyn. Drehfedersteife Dyn. Torsional Stiffness
Verhältnismäßige Dämpfung Relative Damping
1,9 1,9 1,9 1,9 1,9 1,9 1,5 1,5 1,5 1,5 1,5 1,5 1,1 1,1 1,1 1,1 1,1 1,1 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0
3,10 3,90 4,80 1,55 1,95 2,40 3,40 4,30 5,40 1,70 2,15 2,70 3,40 4,30 5,40 1,70 2,15 2,70 3,70 4,70 5,90 1,90 2,40 3,00 4,30 5,40 6,70 2,15 2,70 3,35
115 140 175 58 70 88 145 180 220 73 90 110 180 225 275 90 113 138 225 280 345 113 140 173 285 355 440 143 178 220
0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13
[kW]
[1/min]
Verlust leistung
Drehzahl
Power Loss
Rotational Speed
0,56 0,56 0,56 1,12 1,12 1,12 0,60 0,60 0,60 1,20 1,20 1,20 0,65 0,65 0,65 1,30 1,30 1,30 0,78 0,78 0,78 1,56 1,56 1,56 0,99 0,99 0,99 1,98 1,98 1,98
Siehe Erläuterung der Technischen Daten 1) D er Betriebszustand der Anlage kann eine Korrektur der gegebenen Werte notwendig machen. 2) M aterialbedingte Steifigkeitstoleranz von +/-15% möglich. Die verhältnismäßige Dämpfung kann eine Toleranz von -45% bis +0% aufweisen.
08
Crdyn2)
PKV30
2.100 2.100 2.100 1.840 1.840 1.840 2.050 2.050 2.050 1.600 1.600 1.600 1.800 1.800 1.800 1.500 1.500 1.500 1.700 1.700 1.700 1.380 1.380 1.380 1.600 1.600 1.600 1.310 1.310 1.310
Axialer Radialer Winkliger Kupplungs- Kupplungs- Kupplungsversatz versatz versatz Axial Coupling Radial Angular Displacement Coupling Coupling Displacement Displacement
5,0 5,0 5,0 5,0 5,0 5,0 5,5 5,5 5,5 5,5 5,5 5,5 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0
5,9 4,7 4,2 12,6 10,0 9,0 5,9 4,7 4,2 13,4 10,6 9,4 6,6 5,2 4,6 14,4 11,4 10,2 7,1 5,6 5,0 15,6 12,4 11,0 7,7 6,1 5,5 17,0 13,4 12,0
0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5
[–]
See Explanation of the Technical Data 1) T he operating state of the system can make it necessary to correct the values given. 2) M aterial caused stiffness tolerance of +/-15% possible. The relative damping can be subject to a tolerance of -45% to +0%.
09/2021
Kupplungstyp Type of Coupling
TKN
TKmax1
TKmax2
ΔTKmax
TKW
[kNm]
[kNm]
[kNm]
[kNm]
[kNm]
Größe
Baugruppe
Nenndrehmoment
Size
Dimension Group
Nominal Torque
G3110 G3110 G3110 G3120 G3120 G3120 G3310 G3310 G3310 G3320 G3320 G3320 G3410 G3410 G3410 G3420 G3420 G3420 G3810 G3810 G4610 G4610 G4J10 G4J10 G4J10 G4J10 G4J20 G4J20 G4J20 G4J20
40,0 45,0 50,0 40,0 45,0 50,0 50,0 56,0 63,0 50,0 56,0 63,0 63,0 71,0 80,0 63,0 71,0 80,0 100,0 125,0 180,0 200,0 180,0 210,0 225,0 225,0 180,0 210,0 225,0 225,0
G 311Z G 311W G 311Q G 312Z G 312W G 312Q G 331Z G 331W G 331Q G 332Z G 332W G 332Q G 341Z G 341W G 341Q G 342Z G 342W G 342Q G 381W G 381T G 461W G 461T G 4J1S G 4J1M G 4J1H G 4J1X G 4J2S G 4J2M G 4J2H G 4J2X
Max. Max. Max. WechselDrehmoment1 Drehmoment2 Drehmoment drehmoment Bereich Max. Max. Max. Vibratory Torque1 Torque2 Torque Range Torque
54,5 61,0 70,5 54,5 61,0 70,5 68,5 77,0 89,0 68,5 77,0 89,0 87,0 97,5 113,0 87,0 97,5 113,0 123,0 146,0 222,0 263,0 220,0 265,0 295,0 325,0 220,0 265,0 295,0 325,0
180,0 202,5 225,0 180,0 202,5 225,0 225,0 252,0 283,5 225,0 252,0 283,5 283,5 319,5 360,0 283,5 319,5 360,0 450,0 562,5 810,0 900,0 810,0 945,0 1.012,5 1.012,5 810,0 945,0 1.012,5 1.012,5
65,0 73,5 85,0 65,0 73,5 85,0 82,0 92,5 107,0 82,0 92,5 107,0 104,5 117,0 135,5 104,5 117,0 135,5 148,0 175,5 266,0 315,5 275,0 320,0 355,0 390,0 275,0 320,0 355,0 390,0
12,5 12,5 12,5 12,5 12,5 12,5 15,8 15,8 15,8 15,8 15,8 15,8 20,0 20,0 20,0 20,0 20,0 20,0 25,0 31,3 50,0 50,0 53,0 55,0 55,0 55,0 53,0 55,0 55,0 55,0
CTdyn2)
ψ 2)
nKmax1)
ΔKa
ΔKr‘1)
ΔKw
Cax1.0
[mm]
[mm]
[°]
[kN/mm]
[kN/mm] [kNm/rad]
Axiale Federsteife 1,0 mm Axial Stiffness 1,0 mm
Dyn. Radiale Federsteife Dyn. Radial Stiffness
Dyn. Drehfedersteife Dyn. Torsional Stiffness
Verhältnismäßige Dämpfung Relative Damping
0,9 0,9 0,9 0,9 0,9 0,9 0,8 0,8 0,8 0,8 0,8 0,8 0,7 0,7 0,7 0,7 0,7 0,7 1,6 1,6 1,8 1,8 1,8 1,8 1,8 1,8 1,8 1,8 1,8 1,8
4,20 5,30 6,60 2,10 2,65 3,30 4,60 5,70 7,20 2,30 2,85 3,60 5,20 6,50 8,10 2,60 3,25 4,05 3,70 4,50 14,60 18,30 6,80 9,40 11,50 14,40 3,40 4,70 5,70 7,20
320 405 500 160 203 250 425 505 640 213 253 320 535 640 800 268 320 400 600 750 3.200 4.000 1.300 1.800 2.200 2.750 650 900 1.100 1.375
0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 1,13 1,13 1,13 1,13 0,75 0,90 0,90 1,13 0,75 0,90 0,90 1,13
[kW]
[1/min]
Verlust leistung
Drehzahl
Power Loss
Rotational Speed
1,12 1,12 1,12 2,24 2,24 2,24 1,32 1,32 1,32 2,64 2,64 2,64 1,47 1,47 1,47 2,94 2,94 2,94 1,48 1,48 2,67 2,67 1,97 1,97 1,97 1,97 3,95 3,95 3,95 3,95
Siehe Erläuterung der Technischen Daten 1) D er Betriebszustand der Anlage kann eine Korrektur der gegebenen Werte notwendig machen. 2) M aterialbedingte Steifigkeitstoleranz von +/-15% möglich. Die verhältnismäßige Dämpfung kann eine Toleranz von -45% bis +0% aufweisen.
09/2021
Crdyn2)
PKV30
1.410 1.410 1.410 1.250 1.250 1.250 1.350 1.350 1.350 1.210 1.210 1.210 1.250 1.250 1.250 1.250 1.250 1.250 690 690 800 800 800 800 800 800 690 690 690 690
Axialer Radialer Winkliger Kupplungs- Kupplungs- Kupplungsversatz versatz versatz Axial Coupling Radial Angular Displacement Coupling Coupling Displacement Displacement
7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 7,0 9,0 9,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0
8,8 7,0 6,2 18,6 14,8 13,2 9,3 7,5 6,6 19,8 15,8 14,0 9,6 7,7 6,9 19,2 15,4 13,8 13,8 12,5 8,6 7,7 13,4 10,4 9,4 7,5 28,8 22,4 20,2 16,0
0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5
[–]
See Explanation of the Technical Data 1) T he operating state of the system can make it necessary to correct the values given. 2) M aterial caused stiffness tolerance of +/-15% possible. The relative damping can be subject to a tolerance of -45% to +0%.
RATO S / RATO S+
VULKAN COUPLINGS
09
RATO S / RATO S+ LEISTUNGSDATEN PERFORMANCE DATA
Kupplungstyp Type of Coupling
TKN
TKmax1
TKmax2
ΔTKmax
TKW
[kNm]
[kNm]
[kNm]
[kNm]
[kNm]
Größe
Baugruppe
Nenndrehmoment
Size
Dimension Group
Nominal Torque
G4910 G4910 G5B10 G5B10 G5B10 G5B10 G5B20 G5B20 G5B20 G5B20 G5310 G5310 G5410 G5410 G5G10 G5G10 G5G10 G5G10 G5G20 G5G20 G5G20 G5G20 G5720 G5720 G5720
224,0 250,0 230,0 250,0 280,0 290,0 230,0 250,0 280,0 290,0 250,0 315,0 280,0 315,0 290,0 310,0 345,0 360,0 290,0 310,0 345,0 360,0 400,0 400,0 420,0
G 491W G 491T G 5B1S G 5B1M G 5B1H G 5B1X G 5B2S G 5B2M G 5B2H G 5B2X G 531W G 531T G 541W G 541T G 5G1S G 5G1M G 5G1H G 5G1X G 5G2S G 5G2M G 5G2H G 5G2X G 572W G 572T G 572Y
Max. Max. Max. WechselDrehmoment1 Drehmoment2 Drehmoment drehmoment Bereich Max. Max. Max. Vibratory Torque1 Torque2 Torque Range Torque
277,0 329,0 285,0 330,0 370,0 410,0 285,0 330,0 370,0 410,0 310,0 367,5 349,5 414,5 360,0 415,0 465,0 510,0 360,0 415,0 465,0 510,0 445,0 500,0 570,0
1.008,0 1.125,0 1.035,0 1.125,0 1.260,0 1.305,0 1.035,0 1.125,0 1.260,0 1.305,0 1.125,0 1.417,5 1.260,0 1.417,5 1.305,0 1.395,0 1.552,5 1.620,0 1.305,0 1.395,0 1.552,5 1.620,0 1.800,0 1.800,0 1.890,0
332,5 394,5 345,0 400,0 440,0 485,0 345,0 400,0 440,0 485,0 372,0 441,0 419,0 497,0 435,0 500,0 555,0 615,0 435,0 500,0 555,0 615,0 550,0 600,0 700,0
62,5 62,5 65,0 70,0 70,0 70,0 65,0 70,0 70,0 70,0 62,5 78,8 78,8 78,8 80,0 85,0 85,0 85,0 80,0 85,0 85,0 85,0 100,0 100,0 105,0
VULKAN COUPLINGS
RATO S / RATO S+
CTdyn2)
ψ 2)
nKmax1)
ΔKa
ΔKr‘1)
ΔKw
Cax1.0
[mm]
[mm]
[°]
[kN/mm]
[kN/mm] [kNm/rad]
Axiale Federsteife 1,0 mm Axial Stiffness 1,0 mm
Dyn. Radiale Federsteife Dyn. Radial Stiffness
Dyn. Drehfedersteife Dyn. Torsional Stiffness
Verhältnismäßige Dämpfung Relative Damping
1,3 1,3 1,3 1,3 1,3 1,3 1,3 1,3 1,3 1,3 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 1,0 2,0 2,0 2,0
16,40 20,50 8,10 10,10 12,40 15,30 4,00 5,00 6,20 7,60 4,70 5,70 19,00 23,80 8,90 10,80 13,40 16,60 4,40 5,40 6,70 8,30 8,00 10,00 13,00
4.000 5.000 1.800 2.250 2.750 3.400 900 1.125 1.375 1.700 1.500 1.890 5.040 6.300 2.300 2.800 3.465 4.300 1.150 1.400 1.732 2.150 2.280 2.850 3.565
1,13 1,13 0,75 0,90 0,90 1,13 0,75 0,90 0,90 1,13 1,13 1,13 1,13 1,13 0,75 0,90 0,90 1,13 0,75 0,90 0,90 1,13 1,13 1,13 1,13
[kW]
[1/min]
Verlust leistung
Drehzahl
Power Loss
Rotational Speed
2,95 2,95 2,04 2,04 2,04 2,04 4,08 4,08 4,08 4,08 1,95 1,95 3,15 3,15 2,29 2,29 2,29 2,29 4,59 4,59 4,59 4,59 3,73 3,73 3,73
Siehe Erläuterung der Technischen Daten 1) D er Betriebszustand der Anlage kann eine Korrektur der gegebenen Werte notwendig machen. 2) M aterialbedingte Steifigkeitstoleranz von +/-15% möglich. Die verhältnismäßige Dämpfung kann eine Toleranz von -45% bis +0% aufweisen.
10
Crdyn2)
PKV30
750 750 750 750 750 750 690 690 690 690 600 600 700 700 700 700 700 700 690 690 690 690 690 690 690
Axialer Radialer Winkliger Kupplungs- Kupplungs- Kupplungsversatz versatz versatz Axial Coupling Radial Angular Displacement Coupling Coupling Displacement Displacement
13,0 13,0 13,0 13,0 13,0 13,0 13,0 13,0 13,0 13,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 14,0 16,0 16,0 16,0
8,8 7,9 12,9 10,5 9,5 7,6 27,0 22,0 19,8 16,0 15,0 13,7 8,8 7,8 13,5 11,1 10,0 8,0 27,2 22,4 20,2 16,2 14,8 13,2 11,6
0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5 0,5
[–]
See Explanation of the Technical Data 1) T he operating state of the system can make it necessary to correct the values given. 2) M aterial caused stiffness tolerance of +/-15% possible. The relative damping can be subject to a tolerance of -45% to +0%.
09/2021
Kupplungstyp Type of Coupling
TKN
TKmax1
TKmax2
ΔTKmax
TKW
[kNm]
[kNm]
[kNm]
[kNm]
[kNm]
Größe
Baugruppe
Nenndrehmoment
Size
Dimension Group
Nominal Torque
G5810 G5810 G5810 G5820 G5820 G5820 G6010 G6010 G6010 G6210 G6210 G6210 G6220 G6220 G6220 G6510 G6510 G6510 G6810 G6810 G7010 G7010 G7010 G7310 G7310
315,0 380,0 450,0 315,0 380,0 450,0 315,0 355,0 400,0 355,0 400,0 500,0 355,0 400,0 500,0 400,0 450,0 500,0 500,0 630,0 500,0 560,0 630,0 630,0 800,0
G 581Z G 581W G 581Y G 582Z G 582W G 582Y G 601Z G 601W G 601T G 621Z G 621W G 621T G 622Z G 622W G 622T G 651Z G 651W G 651T G 681W G 681T G 701Z G 701W G 701T G 731W G 731T
Max. Max. Max. WechselDrehmoment1 Drehmoment2 Drehmoment drehmoment Bereich Max. Max. Max. Vibratory Torque1 Torque2 Torque Range Torque
435,0 565,0 576,0 435,0 565,0 576,0 424,0 479,0 568,0 470,0 531,5 640,0 470,0 531,5 640,0 530,5 600,0 711,5 669,5 794,0 668,0 755,0 895,5 851,0 1.008,5
1.417,5 1.710,0 2.025,0 1.417,5 1.710,0 2.025,0 1.417,5 1.597,5 1.800,0 1.597,5 1.800,0 2.250,0 1.597,5 1.800,0 2.250,0 1.800,0 2.025,0 2.250,0 2.250,0 2.835,0 2.250,0 2.520,0 2.835,0 2.835,0 3.600,0
521,5 678,0 690,0 521,5 678,0 690,0 508,5 575,0 682,0 564,0 637,5 756,5 564,0 637,5 756,5 637,0 719,5 853,5 803,5 953,0 801,5 906,0 1.074,5 1.021,5 1.210,0
100,0 100,0 100,0 100,0 100,0 100,0 100,0 100,0 100,0 90,0 100,0 125,0 90,0 100,0 125,0 125,0 125,0 125,0 125,0 157,0 157,0 157,0 157,0 157,0 200,0
CTdyn2)
ψ 2)
nKmax1)
ΔKa
ΔKr‘1)
ΔKw
Cax1.0
[mm]
[mm]
[°]
[kN/mm]
[kN/mm] [kNm/rad]
Axiale Federsteife 1,0 mm Axial Stiffness 1,0 mm
Dyn. Radiale Federsteife Dyn. Radial Stiffness
Dyn. Drehfedersteife Dyn. Torsional Stiffness
Verhältnismäßige Dämpfung Relative Damping
1,7 1,7 1,7 1,7 1,7 1,7 – – – 1,7 1,7 1,7 1,7 1,7 1,7 – – – – – – – – – –
8,80 13,80 17,20 4,40 6,90 8,60 16,00 20,00 25,00 8,70 9,60 12,00 4,35 4,80 6,00 17,60 22,00 27,50 10,00 12,50 18,40 23,00 28,80 11,00 16,00
2.835 4.400 5.500 1.418 2.200 2.750 5.100 6.400 8.000 3.600 4.000 5.000 1.800 2.000 2.500 6.400 8.000 10.000 5.000 6.300 8.000 10.080 12.600 6.300 8.000
0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 0,90 1,13 1,13 1,13 1,13 0,90 1,13 1,13 1,13 1,13
[kW]
[1/min]
Verlust leistung
Drehzahl
Power Loss
Rotational Speed
2,20 2,20 2,20 4,40 4,40 4,40 2,48 2,48 2,48 2,32 2,32 2,32 4,64 4,64 4,64 2,76 2,76 2,76 2,52 2,52 3,04 3,04 3,04 2,68 2,68
Siehe Erläuterung der Technischen Daten 1) D er Betriebszustand der Anlage kann eine Korrektur der gegebenen Werte notwendig machen. 2) M aterialbedingte Steifigkeitstoleranz von +/-15% möglich. Die verhältnismäßige Dämpfung kann eine Toleranz von -45% bis +0% aufweisen.
09/2021
Crdyn2)
PKV30
650 650 650 650 650 650 650 650 650 600 600 600 600 600 600 610 610 610 550 550 550 550 550 500 500
Axialer Radialer Winkliger Kupplungs- Kupplungs- Kupplungsversatz versatz versatz Axial Coupling Radial Angular Displacement Coupling Coupling Displacement Displacement
15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 15,0 17,0 17,0 17,0 18,0 18,0 18,0 18,0 18,0 18,0 18,0
12,6 8,9 8,0 25,2 17,8 16,0 9,9 7,9 7,0 13,5 11,5 10,3 27,0 23,0 20,6 10,3 8,2 7,3 12,2 10,9 11,1 8,8 7,9 12,6 10,5
0,5 0,5 0,5 0,5 0,5 0,5 – – – 0,5 0,5 0,5 0,5 0,5 0,5 – – – – – – – – – –
[–]
See Explanation of the Technical Data 1) T he operating state of the system can make it necessary to correct the values given. 2) M aterial caused stiffness tolerance of +/-15% possible. The relative damping can be subject to a tolerance of -45% to +0%.
RATO S / RATO S+
VULKAN COUPLINGS
11
RATO S / RATO S+
BAUREIHE SERIES
2100
GEOMETRISCHE DATEN GEOMETRIC DATA
A
B L1
L1
L7
m2 S2
S3
m2 m1
m3
Ø D14 h6
Ø D16 L2
m1 S1
Ø D15 T1
Ø D3 Max.
Ø D3 Min.
F1x45°
Ø D2
L2
Ø D1
F1x45°
Ø D14 h6
Ø D3 Max.
Ø D16 Ø D15 T1
Ø D1
Ø D2
Ø D3 Min.
L7
S1
S2
Baugruppe Dimension Group
A B A B A B A B A B A B A B A B
12
G 2110 G 2120 G 2310 G 2320 G 2510 G 2520 G 2710 G 2720 G 2910 G 2920 G 3110 G 3120 G 3310 G 3320 G 3410 G 3420
Abmessungen Dimension D1
D2
[mm]
[mm]
645,0 645,0 690,0 690,0 740,0 740,0 800,0 800,0 870,0 870,0 935,0 935,0 1.010,0 1.010,0 1.085,0 1.085,0
VULKAN COUPLINGS
224,0 224,0 238,0 238,0 259,0 259,0 280,0 280,0 308,0 308,0 329,0 329,0 357,0 357,0 385,0 385,0
RATO S / RATO S+
D3 [mm]
[mm]
Min.
Max.
80,0 80,0 110,0 110,0 110,0 110,0 100,0 100,0 110,0 110,0 115,0 115,0 150,0 150,0 160,0 160,0
160,0 160,0 170,0 170,0 185,0 185,0 200,0 200,0 220,0 220,0 235,0 235,0 255,0 255,0 275,0 275,0
D14
D15
T1
D16
L1
L2
L7
F1
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
Teilung / holes
635,0 635,0 680,0 680,0 730,0 730,0 790,0 790,0 860,0 860,0 920,0 920,0 995,0 995,0 1.070,0 1.070,0
608,0 608,0 650,0 650,0 700,0 700,0 755,0 755,0 820,0 820,0 880,0 880,0 950,0 950,0 1.025,0 1.025,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32
14,0 14,0 16,0 16,0 16,0 16,0 17,5 17,5 20,0 20,0 20,0 20,0 22,0 22,0 24,0 24,0
183,8 246,8 192,8 260,8 224,9 299,7 233,7 314,0 243,0 332,3 266,1 370,5 278,6 388,3 287,6 407,9
160,0 185,0 170,0 195,0 200,0 225,0 205,0 235,0 215,0 250,0 245,0 285,0 255,0 300,0 265,0 310,0
15,4 15,4 17,7 17,7 19,0 19,0 17,0 17,0 19,0 19,0 22,0 22,0 22,0 22,0 24,0 24,0
1,6 1,6 1,6 1,6 2,0 2,0 2,0 2,0 2,0 2,0 3,0 3,0 3,0 3,0 3,0 3,0
09/2021
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
1,5 1,5 2,1 2,1 3,1 3,1 4,2 4,2 6,5 6,4 9,5 9,5 13,5 13,5 19,3 19,3
09/2021
4,4 2,1 6,0 3,1 8,6 4,5 13,4 7,2 19,6 10,9 26,8 15,5 38,8 22,4 55,2 34,1
– 4,4 – 6,1 – 8,9 – 12,9 – 20,8 – 28,2 – 40,5 – 57,2
23,8 23,8 30,0 30,0 39,0 39,0 46,0 46,0 59,0 59,0 75,0 75,0 92,0 92,0 113,0 113,0
115,5 36,1 132,0 47,0 178,0 61,0 233,0 80,0 288,0 102,0 358,0 128,0 427,0 158,0 521,0 203,0
– 124,2 – 142,0 – 190,0 – 245,0 – 314,0 – 392,0 – 466,0 – 566,0
24,0 24,0 24,0 24,0 26,0 26,0 27,0 27,0 29,0 29,0 31,0 31,0 34,0 34,0 37,0 37,0
71,0 159,0 76,0 167,0 94,0 196,0 93,0 204,0 97,0 214,0 107,0 239,0 112,0 248,0 113,0 259,0
– 75,0 – 78,0 – 96,0 – 96,0 – 103,0 – 114,0 – 119,0 – 121,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
13
RATO S / RATO S+
BAUREIHE SERIES
2100
GEOMETRISCHE DATEN GEOMETRIC DATA
B
C
S3
m2 m1
m3
Ø D16
Ø D3 Max. F1x45° L2
m2 S2
S1
Ø D15 T1
Ø D2
Ø D1
Ø D14 h6
Ø D3 Min.
Ø D16 L2
m1 S1
Ø D15 T1
Ø D3 Max. F1x45°
Ø D2
Ø D1
L2
Ø D14 h6
Ø D3 Min.
Ø D16 Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D1
Ø D2
F1x45°
L7
L7
L7
m2 S2
L1
L1
L1
Ø D14 h6
A
m1 S1
S2
Baugruppe Dimension Group
A C A B A B C A B D A B E F
14
G 3610 G 3810 G 4J10 G 4J20 G 5B10 G 5B20 G 5310 G 5G10 G 5G20 G 5720 G 5810 G 5820 G 6210 G 6220
Abmessungen Dimension D1
D2
[mm]
[mm]
1.175,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.763,0 1.815,0 1.815,0 1.970,0 1.970,0
VULKAN COUPLINGS
413,0 448,0 518,0 518,0 560,0 560,0 602,0 602,0 602,0 630,0 655,0 655,0 700,0 700,0
RATO S / RATO S+
D3 [mm]
[mm]
Min.
Max.
170,0 200,0 230,0 230,0 250,0 250,0 280,0 280,0 280,0 340,0 300,0 300,0 320,0 320,0
295,0 320,0 370,0 370,0 400,0 400,0 430,0 430,0 430,0 450,0 470,0 470,0 500,0 500,0
D14
D15
T1
D16
L1
L2
L7
F1
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
Teilung / holes
1.160,0 1.240,0 1.460,0 1.460,0 1.565,0 1.565,0 1.685,0 1.685,0 1.685,0 1.738,0 1.790,0 1.790,0 1.940,0 1.940,0
1.110,0 1.190,0 1.395,0 1.395,0 1.500,0 1.500,0 1.615,0 1.615,0 1.615,0 1.675,0 1.726,0 1.726,0 1.870,0 1.870,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32
26,0 26,0 33,0 33,0 33,0 33,0 36,0 36,0 36,0 36,0 34,0 34,0 38,0 38,0
340,5 430,0 441,7 621,9 439,6 655,0 570,0 472,9 688,6 697,8 449,7 693,0 508,8 843,8
315,0 385,0 410,0 480,0 400,0 500,0 520,0 425,0 520,0 570,0 410,0 570,0 445,0 625,0
26,0 32,0 33,0 33,0 32,0 32,0 42,0 35,0 35,0 35,0 35,0 35,0 40,0 40,0
4,0 4,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0
09/2021
E
F L1
m3 S3
m2 S2
S1
m1
Masse Mass
Schwerpunktsabstand Distance to center of gravity
m2
m1 S1
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
651,0 990,0 1.392,0 536,0 1.463,0 650,0 2.357,0 1.836,0 810,0 462,0 2.370,0 938,0 2.978,0 1.807,0
– – – 1.540,0 – 1.763,0 – – 2.133,0 2.501,0 – 2.915,0 – 3.361,0
09/2021
L2
S2
Massenträgheitsmomente Mass moments of inertia
75,4 141,0 277,0 164,8 330,3 233,5 638,0 484,0 332,8 194,2 771,0 436,0 1.157,0 946,0
F1x45°
m3 S3
S1
S2
28,7 63,0 96,6 96,6 132,8 130,4 286,8 190,4 190,4 206,0 214,0 214,0 403,0 403,0
Ø D16
Ø D3 Min. Ø D3 Max. Ø D2
Ø D1
Ø D14 h6
L2
m2 m1
L7
Ø D16 Ø D15 T1
F1x45°
Ø D2
Ø D1
Ø D14 h6
L2
Ø D3 Min. Ø D3 Max.
D16 Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D1
Ø D2
F1x45°
L1
L7
L7
Ø D14 h6
L1
Ø D15 T1
D
– – – 293,0 – 384,6 – – 540,4 742,0 – 900,0 – 1.183,0
143,0 274,0 306,0 306,0 371,0 359,0 677,0 457,0 457,0 463,0 475,0 475,0 738,0 738,0
40,0 59,0 56,0 56,0 61,0 60,0 83,0 65,0 65,0 49,0 63,0 63,0 63,0 63,0
140,0 160,0 174,0 392,0 175,0 411,0 210,0 189,0 429,0 533,0 174,0 449,0 184,0 511,0
– – – 183,0 – 198,0 – – 202,0 307,0 – 214,0 – 224,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
15
RATO S / RATO S+
BAUREIHE SERIES
2101
GEOMETRISCHE DATEN GEOMETRIC DATA
L1 L4
m2 S2
m3 S3
m1 S1
m2
Ø D10
Ø D14 h6
Ø D15 T1
Ø D3 Min.
F1x45° L2
Ø D2
Ø D1
Ø D10
L2
Ø D14 h6
F1x45°
Ø D16
L7
L4
Ø D16
L7
Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D2
Ø D1
B
L1
Ø D3 Max.
A
m1 S1
S2
Baugruppe Dimension Group
A B A B A B A B A B A B A B
16
G 2110 G 2120 G 2310 G 2320 G 2510 G 2520 G 2710 G 2720 G 2910 G 2920 G 3110 G 3120 G 3310 G 3320
Abmessungen Dimension D1
D2
[mm]
[mm]
645,0 645,0 690,0 690,0 740,0 740,0 800,0 800,0 870,0 870,0 935,0 935,0 1.010,0 1.010,0
VULKAN COUPLINGS
224,0 224,0 238,0 238,0 259,0 259,0 280,0 280,0 308,0 308,0 329,0 329,0 357,0 357,0
D3 [mm]
[mm]
Min.
Max.
80,0 80,0 110,0 110,0 110,0 110,0 100,0 100,0 110,0 110,0 115,0 115,0 150,0 150,0
RATO S / RATO S+
160,0 160,0 170,0 170,0 185,0 185,0 200,0 200,0 220,0 220,0 235,0 235,0 255,0 255,0
D10
D14
D15
T1
D16
L1
L2
L4
L7
F1
[mm]
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
[mm]
197,0 260,0 207,0 275,0 240,0 315,2 250,0 330,0 260,0 349,6 285,0 389,5 300,0 409,6
160,0 185,0 170,0 195,0 200,0 225,0 205,0 235,0 215,0 250,0 245,0 285,0 255,0 300,0
Teilung / holes
645,0 645,0 690,0 690,0 740,0 740,0 800,0 800,0 870,0 870,0 935,0 935,0 1.010,0 1.010,0
635,0 635,0 680,0 680,0 730,0 730,0 790,0 790,0 860,0 860,0 920,0 920,0 995,0 995,0
608,0 608,0 650,0 650,0 700,0 700,0 755,0 755,0 820,0 820,0 880,0 880,0 950,0 950,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32
14,0 14,0 16,0 16,0 16,0 16,0 17,5 17,5 20,0 20,0 20,0 20,0 22,0 22,0
6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 6,0 8,0 8,0 8,0 8,0
29,0 29,0 32,0 32,0 34,0 34,0 33,0 33,0 36,0 36,0 41,0 41,0 43,0 43,0
1,6 1,6 1,6 1,6 2,0 2,0 2,0 2,0 2,0 2,0 3,0 3,0 3,0 3,0
09/2021
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
3,2 3,2 4,6 4,6 6,5 6,5 8,7 8,7 14,0 14,0 19,0 19,0 30,0 30,0
09/2021
4,1 2,1 5,5 3,1 8,1 4,5 12,8 7,2 18,0 10,9 25,0 15,5 36,0 22,4
– 3,8 – 5,3 – 7,9 – 10,7 – 18,0 – 29,0 – 35,0
50,0 50,0 62,0 62,0 76,0 76,0 87,0 87,0 116,0 116,0 143,0 140,0 183,0 183,0
120,0 37,0 140,0 47,0 185,0 61,0 239,0 80,0 294,0 102,0 362,0 128,0 442,0 158,0
– 130,0 – 155,0 – 205,0 – 246,0 – 319,0 – 423,0 – 493,0
25,0 25,0 26,0 26,0 28,0 28,0 29,0 29,0 32,0 32,0 35,0 33,0 37,0 37,0
69,0 159,0 76,0 168,0 93,0 197,0 91,0 204,0 95,0 214,0 107,0 239,0 112,0 249,0
– 85,0 – 89,0 – 108,0 – 109,0 – 113,0 – 132,0 – 137,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
17
RATO S / RATO S+
BAUREIHE SERIES
2101
GEOMETRISCHE DATEN GEOMETRIC DATA
C
L1
m2 S2
L4
m3 S3
m1 S1
m2
L2
S1
Ø D10
F1x45°
m2 S2
m1
Ø D15 T1
Ø D3 Max.
Ø D2
Ø D3 Min.
Ø D1
Ø D10
Ø D16 Ø D15 T1
Ø D3 Min.
L7 L4
F1x45° L2
Ø D2
Ø D1
Ø D10
L2
Ø D14 h6
F1x45°
Ø D3 Max.
Ø D16
Ø D3 Max.
Ø D15 T1
Ø D2
Ø D1
Ø D3 Min.
L4
L1
L7
Ø D16
L7
Ø D14 h6
B
L1
Ø D14 h6
A
m1 S1
S2
Baugruppe Dimension Group
A B C A B A B C A B A B
18
G 3410 G 3420 G 3810 G 4J10 G 4J20 G 5B10 G 5B20 G 5310 G 5G10 G 5G20 G 5810 G 5820
Abmessungen Dimension D1
D2
[mm]
[mm]
1.085,0 1.085,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.815,0 1.815,0
VULKAN COUPLINGS
385,0 385,0 448,0 518,0 518,0 560,0 560,0 602,0 602,0 602,0 655,0 655,0
D3 [mm]
[mm]
Min.
Max.
160,0 160,0 200,0 230,0 230,0 250,0 250,0 215,0 280,0 280,0 300,0 300,0
RATO S / RATO S+
275,0 275,0 320,0 370,0 370,0 400,0 400,0 430,0 430,0 430,0 470,0 470,0
D10
D14
D15
T1
D16
L1
L2
L4
L7
F1
[mm]
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
[mm]
310,0 430,0 460,0 469,7 649,7 470,0 685,2 590,0 505,0 720,6 509,0 753,0
265,0 310,0 385,0 410,0 480,0 400,0 500,0 520,0 435,0 520,0 410,0 570,0
Teilung / holes
1.085,0 1.085,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.815,0 1.815,0
1.070,0 1.070,0 1.240,0 1.460,0 1.460,0 1.565,0 1.565,0 1.685,0 1.685,0 1.685,0 1.940,0 1.940,0
1.025,0 1.025,0 1.190,0 1.395,0 1.395,0 1.500,0 1.500,0 1.615,0 1.615,0 1.615,0 1.870,0 1.870,0
32 32 32 32 32 32 32 32 32 32 32 32
24,0 24,0 26,0 33,0 33,0 33,0 33,0 36,0 36,0 36,0 36,0 36,0
8,0 8,0 10,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0 – –
46,0 46,0 62,0 61,0 61,0 62,0 62,0 84,0 67,0 67,0 60,0 60,0
3,0 3,0 4,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0
09/2021
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
223,0 223,0 414,0 546,0 547,0 658,0 658,0 1.037,0 807,0 829,0 1.146,0 1.146,0
529,0 203,0 1.008,0 1.488,0 543,0 1.508,0 641,0 2.401,0 1.998,0 810,0 2.354,0 938,0
– 601,0 – – 1.578,0 – 1.921,0 – – 2.384,0 – 2.770,0
44,0 44,0 96,0 183,6 183,8 262,0 262,0 452,0 365,3 374,0 641,0 641,0
09/2021
51,0 34,1 127,0 285,6 166,6 316,0 226,5 532,0 506,0 332,8 636,0 435,8
– 51,0 – – 267,9 – 339,0 – – 491,0 – 669,0
39,0 39,0 58,0 59,0 59,0 61,0 61,0 82,0 64,0 64,0 53,0 53,0
135,0 259,0 117,0 189,0 391,0 171,0 411,0 210,0 209,0 429,0 154,0 450,0
– 142,0 – – 217,0 – 235,0 – – 241,0 – 206,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
19
RATO S / RATO S+
BAUREIHE SERIES
2200
GEOMETRISCHE DATEN GEOMETRIC DATA
A
B L1
L1
S2
m2
m1
F1x45° L2
S1
S3
m3
m2 m1
Ø D14 h6
Ø D16 Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D1
L2
Ø D2
F1x45°
Ø D14 h6
Ø D3 Max.
Ø D16
L7
Ø D15 T1
Ø D1
Ø D2
Ø D3 Min.
L7
S1
S2
Baugruppe Dimension Group
A B A B A B A B A B A B A B
20
G 2110 G 2120 G 2310 G 2320 G 2510 G 2520 G 2710 G 2720 G 2910 G 2920 G 3110 G 3120 G 3310 G 3320
Abmessungen Dimension D1
D2
[mm]
[mm]
645,0 645,0 690,0 690,0 740,0 740,0 800,0 800,0 870,0 870,0 935,0 935,0 1.010,0 1.010,0
VULKAN COUPLINGS
224,0 224,0 238,0 238,0 259,0 259,0 280,0 280,0 308,0 308,0 329,0 329,0 357,0 357,0
RATO S / RATO S+
D3 [mm]
[mm]
Min.
Max.
80,0 80,0 110,0 110,0 110,0 110,0 100,0 100,0 110,0 110,0 115,0 115,0 150,0 150,0
160,0 160,0 170,0 170,0 185,0 185,0 200,0 200,0 220,0 220,0 235,0 235,0 255,0 255,0
D14
D15
T1
D16
L1
L2
L7
F1
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
Teilung / holes
635,0 635,0 680,0 680,0 730,0 730,0 790,0 790,0 860,0 860,0 920,0 920,0 995,0 995,0
608,0 608,0 650,0 650,0 700,0 700,0 755,0 755,0 820,0 820,0 880,0 880,0 950,0 950,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32
14,0 14,0 16,0 16,0 16,0 16,0 17,5 17,5 20,0 20,0 20,0 20,0 22,0 22,0
307,8 368,5 323,3 390,5 364,9 439,0 386,8 465,0 410,1 498,4 458,7 561,0 486,7 593,8
185,0 185,0 195,0 195,0 225,0 225,0 235,0 235,0 250,0 250,0 285,0 285,0 300,0 300,0
15,4 15,4 17,7 17,7 19,0 19,0 17,0 17,0 19,0 19,0 22,0 22,0 22,0 22,0
1,6 1,6 1,6 1,6 2,0 2,0 2,0 2,0 2,0 2,0 3,0 3,0 3,0 3,0
09/2021
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
1,5 1,5 2,1 2,1 3,1 3,1 4,2 4,2 6,4 6,4 9,5 9,5 15,0 13,5
09/2021
4,4 2,1 6,0 3,1 8,7 4,5 13,5 7,2 19,9 10,9 27,1 15,5 36,0 22,4
– 4,4 – 6,1 – 9,1 – 13,2 – 20,3 – 28,8 – 41,4
23,8 23,8 30,0 30,0 39,0 39,0 46,0 46,0 59,0 59,0 75,0 75,0 97,0 92,0
122,4 36,1 138,0 47,0 185,0 61,0 245,0 80,0 308,0 102,0 382,0 128,0 447,0 158,0
– 131,6 – 150,0 – 208,0 – 259,0 – 333,0 – 418,0 – 500,0
24,0 24,0 24,0 24,0 26,0 26,0 27,0 27,0 29,0 29,0 31,0 31,0 35,0 34,0
153,0 280,0 164,0 297,0 184,0 336,0 194,0 355,0 205,0 380,0 229,0 429,0 225,0 454,0
– 155,0 – 166,0 – 188,0 – 195,0 – 209,0 – 234,0 – 251,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
21
RATO S / RATO S+
BAUREIHE SERIES
2200
GEOMETRISCHE DATEN GEOMETRIC DATA
B
C L1
L1
L1
S2
m2
m1
S1
S3
m3
m2 m1
Ø D16 L2
A B C A B A B C A B D A B E F
22
G 3410 G 3420 G 3810 G 4J10 G 4J20 G 5B10 G 5B20 G 5310 G 5G10 G 5G20 G 5720 G 5810 G 5820 G 6210 G 6220
m3
S3
S1
m2 m1
S1
S2
S2
Baugruppe Dimension Group
Ø D15 T1
Ø D3 Min. Ø D1
F1x45°
Ø D2
Ø D14 h6
F1x45° L2
Ø D3 Max.
Ø D16
L7
Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D1
L2
Ø D2
F1x45°
Ø D14 h6
Ø D3 Max.
Ø D16
L7
Ø D15 T1
Ø D1
Ø D2
Ø D3 Min.
L7
Ø D14 h6
A
Abmessungen Dimension D1
D2
[mm]
[mm]
1.085,0 1.085,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.763,0 1.815,0 1.815,0 1.970,0 1.970,0
VULKAN COUPLINGS
385,0 385,0 448,0 518,0 518,0 560,0 560,0 602,0 602,0 602,0 630,0 655,0 655,0 700,0 700,0
RATO S / RATO S+
D3 [mm]
[mm]
Min.
Max.
160,0 160,0 200,0 230,0 230,0 250,0 250,0 280,0 280,0 280,0 340,0 300,0 300,0 250,0 250,0
275,0 275,0 320,0 370,0 370,0 400,0 400,0 430,0 430,0 430,0 450,0 470,0 470,0 500,0 500,0
D14
D15
T1
D16
L1
L2
L7
F1
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
Teilung / holes
1.070,0 1.070,0 1.240,0 1.460,0 1.460,0 1.565,0 1.565,0 1.685,0 1.685,0 1.685,0 1.738,0 1.790,0 1.790,0 1.940,0 1.940,0
1.025,0 1.025,0 1.190,0 1.395,0 1.395,0 1.500,0 1.500,0 1.615,0 1.615,0 1.615,0 1.675,0 1.726,0 1.726,0 1.870,0 1.870,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32 32
24,0 24,0 26,0 33,0 33,0 33,0 33,0 36,0 36,0 36,0 36,0 34,0 34,0 36,0 36,0
507,7 624,4 699,6 779,7 958,2 808,8 1.013,0 958,8 847,8 1.063,4 978,8 893,6 1.136,8 998,8 1.333,8
310,0 310,0 385,0 480,0 480,0 500,0 500,0 520,0 520,0 520,0 570,0 570,0 570,0 625,0 625,0
24,0 24,0 32,0 33,0 33,0 32,0 32,0 42,0 35,0 35,0 35,0 35,0 35,0 40,0 40,0
3,0 3,0 4,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0
09/2021
E
F
L1
L7
m3
m2
L2
S1
S3
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
547,0 203,0 1.006,0 1.508,0 543,0 1.671,0 650,0 2.377,0 2.056,0 810,0 466,0 2.713,0 938,0 3.255,0 1.792,0
– 607,0 – – 1.670,0 – 1.889,0 – – 2.282,0 2.549,0 – 3.060,0 – 4.309,0
09/2021
m2
m1
S1
Anmerkungen Notes
[kgm²]
55,4 34,1 143,0 283,4 166,6 343,2 233,5 640,0 504,5 332,8 194,5 793,0 436,0 1.049,0 927,0
m3 S2
S2
19,3 19,3 63,0 97,8 97,8 132,8 130,4 286,8 190,4 190,4 206,0 214,0 214,0 397,0 397,0
Ø D15 T1
Ø D3 Min. Ø D3 Max. Ø D2
Ø D1
F1x45°
m1
S2
S1
Ø D14 h6
L2
Ø D16
L7
Ø D16 F1x45°
m2 m1
S3
Ø D15 T1
Ø D3 Min. Ø D3 Max. Ø D2
Ø D1
L2
Ø D14 h6
Ø D16 Ø D15 T1
Ø D3 Max.
Ø D3 Min. Ø D2
Ø D1
F1x45°
L1
L1
L7
Ø D14 h6
D
– 58,4 – – 301,0 – 392,4 – – 551,0 745,0 – 910,0 – 1.480,0
113,0 113,0 276,0 311,0 311,0 371,0 359,0 677,0 457,0 457,0 463,0 474,0 475,0 728,0 728,0
37,0 37,0 59,0 57,0 57,0 61,0 60,0 83,0 65,0 65,0 49,0 63,0 63,0 63,0 63,0
255,0 475,0 330,0 391,0 728,0 402,0 769,0 453,0 422,0 804,0 814,0 466,0 893,0 504,0 982,0
– 262,0 – – 400,0 – 419,0 – – 438,0 483,0 – 495,0 – 570,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
23
RATO S / RATO S+
BAUREIHE SERIES
2201
GEOMETRISCHE DATEN GEOMETRIC DATA
L1 L4
m2
m1
S2
m3
m2 m1
S3
S1
Ø D10
L2
Ø D14 h6
Ø D15 T1
Ø D3 Min. Ø D1
F1x45°
Ø D2
Ø D10
Ø D14 h6
L2
Ø D16
L7
L4
Ø D16
L7
Ø D15 T1
Ø D3 Max.
Ø D3 Min.
F1x45°
Ø D2
Ø D1
B
L1
Ø D3 Max.
A
S1 S2
Baugruppe Dimension Group
A A A A A A A A C A B A B C A B A B
24
G 2110 G 2310 G 2510 G 2710 G 2910 G 3110 G 3310 G 3410 G 3810 G 4J10 G 4J20 G 5B10 G 5B20 G 5310 G 5G10 G 5G20 G 5810 G 5820
Abmessungen Dimension D1
D2
[mm]
[mm]
645,0 690,0 740,0 800,0 870,0 935,0 1.010,0 1.085,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.815,0 1.815,0
VULKAN COUPLINGS
224,0 238,0 259,0 280,0 308,0 329,0 357,0 385,0 448,0 518,0 518,0 560,0 560,0 602,0 602,0 602,0 655,0 655,0
D3 [mm]
[mm]
Min.
Max.
80,0 110,0 110,0 100,0 110,0 115,0 150,0 160,0 200,0 230,0 230,0 250,0 250,0 280,0 280,0 280,0 300,0 300,0
RATO S / RATO S+
160,0 170,0 185,0 200,0 220,0 235,0 255,0 275,0 320,0 370,0 370,0 400,0 400,0 430,0 430,0 430,0 470,0 470,0
D10
D14
D15
T1
D16
L1
L2
L4
L7
F1
[mm]
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
[mm]
Teilung / holes
645,0 690,0 740,0 800,0 870,0 935,0 1.010,0 1.085,0 1.255,0 1.480,0 1.480,0 1.585,0 1.585,0 1.710,0 1.710,0 1.710,0 1.940,0 1.940,0
635,0 680,0 730,0 790,0 860,0 920,0 995,0 1.070,0 1.240,0 1.460,0 1.460,0 1.565,0 1.565,0 1.685,0 1.685,0 1.685,0 1.940,0 1.940,0
608,0 650,0 700,0 755,0 820,0 880,0 950,0 1.025,0 1.190,0 1.395,0 1.395,0 1.500,0 1.500,0 1.615,0 1.615,0 1.615,0 1.870,0 1.870,0
32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32 32
14,0 16,0 16,0 17,5 20,0 20,0 22,0 24,0 26,0 33,0 33,0 33,0 33,0 36,0 36,0 36,0 36,0 36,0
321,0 337,5 380,1 403,0 427,0 478,0 507,7 530,0 729,6 808,0 986,0 839,0 1.043,0 1.000,8 880,0 1.095,5 954,0 1.197,0
185,0 195,0 225,0 235,0 250,0 285,0 300,0 310,0 385,0 480,0 480,0 500,0 500,0 520,0 520,0 520,0 570,0 570,0
6,0 6,0 6,0 6,0 6,0 8,0 8,0 8,0 10,0 12,0 12,0 12,0 12,0 12,0 12,0 12,0 – –
29,0 32,0 34,0 33,0 36,0 41,0 43,0 46,0 62,0 61,0 61,0 62,0 62,0 84,0 67,0 67,0 60,0 60,0
1,6 2,0 2,0 2,0 2,0 3,0 3,0 3,0 4,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0 5,0
09/2021
C
L1 L7
L2
m2
m1
S2
Massenträgheitsmomente Mass moments of inertia
Ø D10
F1x45°
Ø D14 h6
Ø D16
Ø D3 Max.
Ø D15 T1
Ø D2
Ø D1
Ø D3 Min.
L4
S1
Masse Mass
Schwerpunktsabstand Distance to center of gravity
Anmerkungen Notes
J1
J2
J3
m1
m2
m3
S1
S2
S3
[kgm²]
[kgm²]
[kgm²]
[kg]
[kg]
[kg]
[mm]
[mm]
[mm]
50,0 62,0 78,0 87,0 109,4 143,0 174,0 213,0 414,0 548,0 547,0 658,0 663,0 1.037,0 829,0 829,0 1.146,0 1.146,0
140,0 163,0 205,0 276,0 354,7 430,0 531,0 644,0 1.157,0 1.744,0 543,0 1.984,0 641,0 2.626,0 2.453,0 810,0 2.928,0 938,0
– – – – – – – – – – 1.858,0 – 2.146,0 – – 2.547,0 – 3.014,0
3,2 4,6 6,2 8,7 12,8 20,0 28,0 39,0 96,0 191,0 184,5 262,0 256,0 452,0 374,0 374,0 641,0 641,0
09/2021
4,3 5,7 8,9 13,0 20,9 27,0 42,0 59,0 135,0 282,0 166,6 344,0 226,5 291,0 497,0 332,8 673,0 435,8
– – – – – – – – – – 314,6 – 414,0 – – 500,0 – 689,0
25,0 26,0 28,0 29,0 31,0 35,0 36,0 38,0 58,0 56,0 57,0 61,0 60,0 67,0 64,0 64,0 53,0 53,0
159,0 167,0 193,0 200,0 223,0 241,0 270,0 280,0 346,0 401,0 728,0 420,0 769,0 414,0 440,0 804,0 439,0 894,0
– – – – – – – – – – 447,0 – 474,0 – – 474,0 – 474,0
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
25
RATO S / RATO S+
BAUREIHE SERIES
2300
GEOMETRISCHE DATEN GEOMETRIC DATA
B
L1
L1
L7
m2 S2
Baugruppe Dimension Group
26
G 4610 G 4910 G 5410 G 6010 G 6210 G 6510 G 6810 G 7010 G 7310
L12 GEW.
Ø D5 T3
Ø D9 H7
Ø D4
Ø D1
L13
m2 m1
m1
S2
S1
S1
Abmessungen Dimension D1
D4
D5
T3
D6
D7
T2
GEW.
D8
D9
D14
D15
T1
D16
[mm]
[mm]
[mm]
[-]
[mm]
[mm]
[-]
[mm]
[mm]
[mm]
[mm]
[mm]
[-]
[mm]
Teilung / holes
A A A A B A B A C
Ø D7 T2
D7 Ø
Ø D14 h6
Ø D15 T1
Ø D7
Ø D9 H7
Ø D4
GEW.
Ø D7
Ø D1
L13
Ø D14 h6
Ø D6
3° 0.
T2
Ø D8
15° 15° T 2x .3° 45 °0 5 GEW. ° x4 Ø D8
Ø D16
L7
Ø D16
L12
Ø D15 T1
A
1.480,0 1.585,0 1.710,0 1.790,0 1.970,0 1.930,0 2.115,0 2.070,0 2.300,0
VULKAN COUPLINGS
770,0 830,0 895,0 970,0 1.020,0 1.045,0 1.150,0 1.130,0 960,0
– – – – 785,0 – 880,0 – –
RATO S / RATO S+
– – – – 24 – 24 – –
Teilung / holes
– – – – 38,0 – 38,3 – –
675,0 725,0 785,0 850,0 940,0 915,0 1.060,0 990,0 840,0
8 8 8 8 24 8 24 8 48
Teilung / holes
M30 M33 M36 M39 M36 M42 M36 M45 –
48,0 48,0 53,0 58,0 – 63,0 – 68,0 55,0
580,0 620,0 675,0 730,0 860,0 785,0 970,0 850,0 960,0
1.460,0 1.565,0 1.685,0 1.940,0 1.940,0 2.100,0 2.085,0 2.250,0 2.300,0
1.395,0 1.500,0 1.615,0 1.870,0 1.870,0 2.020,0 2.010,0 2.165,0 2.210,0
32 32 32 32 32 32 32 32 48
33,0 33,0 36,0 36,0 36,0 39,0 38,0 42,0 42,0
09/2021
C L1
Ø D8
L7
Ø D14 h6
Ø D15 T1 Ø D16
Ø D7 T2
Ø D9 H7
Ø D4
Ø D1
L13 L12
m2 S2
Abmessungen Dimension
m1 S1
Massenträgheitsmomente Mass moments of inertia
Masse Mass
Schwerpunktsabstand Distance to center of gravity
L1
L7
L12
L13
J1
J2
m1
m2
S1
S2
[mm]
[mm]
[mm]
[mm]
[kgm²]
[kgm²]
[kg]
[kg]
[mm]
[mm]
100,0 136,0 197,0 422,0 396,8 630,0 523,2 803,0 2.454,3
228,0 327,0 465,0 660,0 881,0 924,0 1.284,9 1.314,0 5.128,3
350,0 373,5 395,5 431,9 387,8 462,9 457,8 486,0 686,0
09/2021
12,0 12,0 12,0 52,0 40,0 60,0 40,0 58,5 60,0
110,0 110,0 110,0 100,0 54,6 110,0 60,5 110,0 80,0
20,0 20,0 20,0 20,0 7,2 20,0 7,2 20,0 10,0
288,0 343,0 425,0 690,0 727,5 866,0 840,0 970,0 3.415,0
932,0 1.154,0 1.415,0 1.706,0 1.463,5 2.060,0 1.828,0 2.538,0 6.814,0
47,0 51,0 54,0 63,0 63,0 69,0 76,0 72,0 118,0
130,0 138,0 145,0 153,0 74,0 161,0 93,0 169,0 248,0
Anmerkungen Notes
Alle Massen, Schwerpunkte und Massenträgheitsmomente beziehen sich auf min. Nabenbohrung (Ø D3 min). All masses, focal points and mass moments of inertia refer to min. hub bore (Ø D3 min).
RATO S / RATO S+
VULKAN COUPLINGS
27
RATO S / RATO S+ ERLÄUTERUNGEN DES PRODUKTCODES EXPLANATIONS OF THE PRODUCT CODE
Alle VULKAN Couplings Produkte sind mit einem Produktcode gekennzeichnet.
All VULKAN Couplings products are identified by a product code. This code con-
Dieser Code setzt sich aus verschiedenen Parameter-Angaben zusammen und
sists of several parameters and it enables the clear identification of all products.
ermöglicht es, unsere Produkte eindeutig zu identifizieren.
PRODUKTCODE BEISPIEL RATO S
PRODUCT CODE EXAMPLE RATO S
LEISTUNGSDATEN PERFORMANCE DATA
Hier haben wir den Code am Beispiel einer RATO S (G 381T), Größe 38, 1-reihig,
We have decoded here the product code Kupplungstyp Type of Coupling
TKN
TKmax1
TKmax2
ofmaxa RATO STKW (G ΔT
[kNm]
[kNm]
[kNm]
[kNm]
Max. Drehmoment2 Max. Torque2
Drehmoment Bereich Torque Range
Wechseldrehmoment Vibratory Torque
G 381T G 3810 125,00 146,00 562,50 G 461W G 4610 180,00 222,00 810,00 G aus 461T G 4610 Für vollständige 200,00Daten siehe 263,00 Auszug den Leistungsdaten. Seite 08 ff.900,00
175,50 266,00 315,50
31,25 50,00 50,00
Elementsteifigkeit T, Baureihe 2100
381T),PKV50 Size 38, 1nKmax row,2)
ΔKa
Element stiffness T, Series 2100.[1/min] [kNm] [kW]
[mm]
entschlüsselt dargestellt. Größe
Baugruppe
Size
Dimension Group
NenndrehMax. moment Drehmoment1 Nominal Torque Max. Torque1
Verlustleistung
Drehzahl
Power Loss
Rotational Speed
1,11 2,00 2,00
Axialer Kupplungsversatz Axial Coupling Displacement
690 800 800
Excerpt from performance data. Complete data see page 08 ff.
28
VULKAN COUPLINGS
RATO S / RATO S+
09/2021
9,0 12,0 12,0
Komplettkupplung Complete coupling
1 1
Produktfamilie Product family
Größenbezeichnung Size code
Elementreihen Element rows
G 38 1 G
21
1
23
2
Elementsteifigkeit Element stiffness
Baureihe Series
Kennzeichen Key
T
00
A
Z
00
2100
W
01
2101
25
T
02
2200
27
Q
03
2201
29
Y
04
2300
31
S
33
M
34
H
38
X
1 Reihe 1 row 2 Reihen 2 rows
A
RATO S / RATO S+
46 4J 49 5B 53 54 5G 57 58 60 62 65 68 70 73
09/2021
RATO S / RATO S+
VULKAN COUPLINGS
29
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RATO S / RATO S+
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GÜLTIGKEITSKLAUSEL
VALIDITY CLAUSE
Die enthaltenen technischen Daten sind nur gültig bei Einsatz in defi- The containing technical data is valid only for defined areas of applicanierten Anwendungsgebieten. Diese umfassen:
tions. These includes:
Haupt- und Nebenantriebe auf Schiffen
Main propulsion and auxiliary drives on ships
Generatorsätze auf Schiffen
Generator sets on ships
Antriebe für stationäre Energieerzeugung mit Diesel- oder Gasmotoren
Drives for stationary energy production with diesel or gas engines
Abweichende Anwendungen bedürfen einer individuellen Betrachtung. For other than the named applications please contact your local Bitte kontaktieren Sie hierzu ihren lokalen VULKAN Vertreter.
VULKAN supplier for further consideration.
Die vorliegende Broschüre ersetzt alle vorherigen Ausgaben, ältere The present catalogue shall replace all previous editions, any previous Drucke verlieren ihre Gültigkeit. VULKAN ist berechtigt, aufgrund neuerer printings shall no longer be valid. Based on new developments, VULKAN Entwicklungen die in dieser Broschüre enthaltenen Daten entsprechend reserves the right to amend and change any details contained in this anzupassen und zu verändern. Die neuen Daten gelten nur für nach catalogue respectively. The new data shall only apply with respect to der Änderung bestellte Kupplungen. Es liegt im Verantwortungsbereich des couplings that were ordered after said amendment or change. It shall Anwenders dafür zu sorgen, dass ausschließlich die aktuelle Katalog- be the responsibility of the user to ensure that only the latest catalogue version verwendet wird. Der jeweils aktuelle Stand ist auf der Webseite issue will be used. The respective latest issue can be seen on the website von VULKAN unter www.vulkan.com jederzeit abrufbar.
of VULKAN on www.vulkan.com.
Die Angaben in dieser Broschüre beziehen sich auf den technischen The data contained in this catalogue refer to the technical standard Standard gültig im Hause VULKAN und stehen unter den in den Erläu- as presently used by VULKAN with defined conditions according to terungen definierten Bedingungen. Es liegt allein im Entscheidungs- und the explanations. It shall be the sole responsibility and decision of the Verantwortungsrahmen des Systemverantwortlichen für die Antriebslinie, system administrator for the drive line to draw conclusions about the entsprechende Rückschlüsse auf das Systemverhalten zu ziehen.
system behaviour.
VULKAN Drehschwingungsanalysen berücksichtigen in der Regel nur das VULKAN torsional vibration analysis usually only consider the pure rein mechanische Schwingungsersatzsystem. Als reiner Komponentenher- mechanical mass-elastic system. Being a component manufacturer steller übernimmt VULKAN mit der Analyse des Drehschwingungssystems exclusively, VULKAN assumes no system responsibility with the analysis (stationär, transient) nicht die Systemverantwortung! Die Genauigkeit of the torsional vibration system (stationary, transiently)! The accuracy der Analyse hängt von der Genauigkeit der verwendeten bzw. der of the analysis depends on the exactness of the used data and the data VULKAN zur Verfügung gestellten Daten ab.
VULKAN is provided with, respectively.
Änderungen aufgrund des technischen Fortschritts sind vorbehalten. Any changes due to the technological progress are reserved. For quesBei Unklarheiten bzw. Rückfragen kontaktieren Sie bitte VULKAN.
tions or queries please contact VULKAN.
Stand: 09/2021
Status: 09/2021
Das Recht auf Vervielfältigung, Nachdruck und Übersetzungen behalten All duplication, reprinting and translation rights are reserved. We reserve wir uns vor. Maß- und Konstruktionsänderungen vorbehalten.
the right to modify dimensions and constructions without prior notice.
RATO S / RATO S+
VULKAN COUPLINGS
31
www.vulkan.com
PUBLISHER: VULKAN Couplings CONCEPT AND DESIGN: Hackforth Holding GmbH & Co. KG VULKAN Marketing Heerstraße 66, 44653 Herne / Germany E-mail: marketing@vulkan.com STATUS: 09/2021 All duplication, reprinting and translation rights are reserved. Any changes due to the technological progress are reserved. For questions or queries please contact VULKAN.