Icaciem2017115

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International Conference on Advances & Challenges in Interdisciplinary Engineering and Management

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International Conference on Advances & Challenges in Interdisciplinary Engineering and Management 2017 [ICACIEM 2017]

ISBN Website Received Article ID

978-81-933235-1-9 icaciem.org 10 – January – 2017 ICACIEM115

VOL eMail Accepted eAID

01 icaciem@asdf.res.in 28 - January – 2017 ICACIEM.2017.115

Investigation of SIFCON Concrete by Using Crimpled Steel Fibres C Jayanth Kumar1, R Balasubramanian2, S Manikandan3, S Santhosh Kumar4, M Soundar Rajan5 1,2,3,4,5 Final Year Students, Department of Civil Engineering, Vidyaa Vikas College of Engineering and Technology, Tiruchengode, India Abstract: Slurry infiltrated fibrous concrete (SIFCON) is a recently developed construction material using steel fibres and cement matrix. The matrix consists of cement slurry and infiltration is usually accomplished by gravity flow. SIFCON is the combination of cement, fibre and water with some admixtures. SIFCON has both high strength as well as large ductility. The properties of SIFCON are achieved through an optimized combination of matrix properties, fibre content and interface characteristics between fibre and matrix. This experiment is carried out to study the compressive strength, flexural strength of SIFCON. The results are then compared with that of Conventional Concrete and Fibre Reinforced Concrete.

ISBN Website Received Article ID

978-81-933235-1-9 icaciem.org 10 – January – 2017 ICACIEM116

VOL eMail Accepted eAID

01 icaciem@asdf.res.in 28 - January – 2017 ICACIEM.2017.116

Investigation of Concrete on effectively Using Lignin from Prosopis Juliflora as Partial Replacement of Sand 1,2,3

S Indhu Priya1, K Kiruthika2, R P Ranjani3, S Suba4, M Soundar Rajan5 Final Year Students, 4Third Year Students, 5Assistant Professor, Department of Civil Engineering, Vidyaa Vikas College of Engineering and Technology, Tiruchengode, India

Abstract: The construction industry relies heavily on the conventional materials such as cement, sand, and gravel for the production of concrete. Due to the growing concern of resources depletion and global pollution for this type of concrete production. The investigation is made on concrete by effectively using lignin from the barks of Prosopis juliflora tree. Lignin is a complex organic polymer obtained from the process of debarking from the Prosopis juliflora tree and the barks from trees are grinded into powder and partially replaced for the sand in the M20 grade of concrete with the percentage 10%, 20%, 30%.The cubes of size 150mmx150mmx150mm to check the compressive strength of concrete. All the specimens were cured for the period of 7 and 28 days before crushing. The results of lignin added concrete for 7days and 28days curing with lignin as partial replacement of sand were studied. The compressive strength of the cubes which are partially replaced with lignin of percentages of 10%, 20%, for the fine aggregate have 20% of increase in compressive strength while comparing to the conventional concrete. This paper is prepared exclusively for International Conference on Advances & Challenges in Interdisciplinary Engineering and Management 2017 [ICACIEM 2017] which is published by ASDF International, Registered in London, United Kingdom under the directions of the Editor-in-Chief Dr K Samidurai and Editors Dr. Daniel James, Dr. Kokula Krishna Hari Kunasekaran and Dr. Saikishore Elangovan. Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage, and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honoured. For all other uses, contact the owner/author(s). Copyright Holder can be reached at copy@asdf.international for distribution.

2017 © Reserved by Association of Scientists, Developers and Faculties [www.ASDF.international]

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