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Study on reinforced lightweight coconut shell concrete beam behavior under torsion
Affiliation:1. Department of Mechanical Engineering, Faculty of Engineering, Erode Builder Educational Trust’s Group of Institutions, Nathakadaiyur, Kangayam 638 108, Tirupur District, Tamil Nadu, India;2. Department of Mechanical Engineering, Coimbatore Institute of Technology, Coimbatore 641 014, Tamil Nadu, India;1. Department of Civil Engineering, National Chi Nan University, Nantou, Taiwan;2. Department of Civil Engineering and Geomatics, Cheng Shiu University, Kaohsiung, Taiwan;1. College of Civil Engineering, Xihua University, Chengdu, PR China;2. College of Civil Engineering, Xi''an University of Architecture and Technology, Xi''an, PR China
Abstract:This research investigates and evaluates the results of coconut shell concrete beams subjected to torsion and compared with conventional concrete beams. Eight beams, four with coconut shell concrete and four with conventional concrete were fabricated and tested. Study includes the general cracking characteristics, pre cracking behavior and analysis, post cracking behavior and analysis, minimum torsional reinforcement, torsional reinforcement, ductility, crack width and stiffness. It was observed that the torsional behavior of coconut shell concrete is comparable to that of conventional concrete. Compare to ACI prediction, equation suggested by Macgregor is more conservative in calculating cracking torsional resistance. But for the calculation of ultimate torque strength ACI prediction is more conservative compared to the equation suggested by Macgregor. Indian standard is also conservative in this regard, but it was under estimated compared to ACI and Macgregor equations. Minimum torsional reinforcement in beams is necessary to ensure that the beam do not fail at cracking. Compared to conventional concrete specimens, coconut shell concrete specimens have more ductility. Crack width at initial cracking torque for both conventional and coconut shell concrete with corresponding reinforcement ratios is almost similar.
Keywords:Coconut shell  Concrete  Torsion  Reinforcement  Ductility  Cracks
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