Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement
Bamboo; Concrete slabs; Concretes; Cracks; Drops; Light weight concrete; Reinforcement; Bamboo reinforcement; Crack resistance; Drop weight impact; Light weight; Linear relationships; Low impacts; Projectile tests; Slab thickness; Concrete reinforcements; bamboo; concrete; crack; diameter; impact; r...
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my.uniten.dspace-227792023-05-29T14:12:12Z Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement Muda Z.C. Beddu S. Syamsir A. Ating J.S. Mohd Kamal N.L. Mustapha K.N. Thiruchelvam S. Usman F. Alam M.A. Birima A.H. Zaroog O.S. 55812444000 55812080500 57195320482 57189249548 56239107300 26032672000 55812442400 55812540000 57199298044 23466519000 57189246634 Bamboo; Concrete slabs; Concretes; Cracks; Drops; Light weight concrete; Reinforcement; Bamboo reinforcement; Crack resistance; Drop weight impact; Light weight; Linear relationships; Low impacts; Projectile tests; Slab thickness; Concrete reinforcements; bamboo; concrete; crack; diameter; impact; reinforcement; research work; rice; slab; weight This paper investigate the performance of lightweight rice husk concrete (LWRHC) with varied bamboo reinforcement content for the concrete slab of 300mm � 300mm size reinforced with varied slab thickness subjected to low impact projectile test. A self-fabricated drop-weight impact test rig with a steel ball weight of 1.236 kg drop at 0.65 m height has been used in this research work. The main variables for the study is to find the relationship of the impact resistance against the amount of bamboo reinforcement and slab thickness. A linear relationship has been established between first and ultimate crack resistance against bamboo diameters and slab thickness by the experiment. The linear relationship has also been established between the service (first) crack and ultimate crack resistance against the bamboo reinforcement diameter and slab thickness. 5% RH content exhibit better first and ultimate crack resistance up to 1.80 times and up to 1.72 times respectively against 10% RH content. Final 2023-05-29T06:12:12Z 2023-05-29T06:12:12Z 2016 Conference Paper 10.1088/1755-1315/32/1/012020 2-s2.0-84966558964 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84966558964&doi=10.1088%2f1755-1315%2f32%2f1%2f012020&partnerID=40&md5=8138471c47b6692b7f3e637f3b411987 https://irepository.uniten.edu.my/handle/123456789/22779 32 1 12020 All Open Access, Bronze Institute of Physics Publishing Scopus |
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Bamboo; Concrete slabs; Concretes; Cracks; Drops; Light weight concrete; Reinforcement; Bamboo reinforcement; Crack resistance; Drop weight impact; Light weight; Linear relationships; Low impacts; Projectile tests; Slab thickness; Concrete reinforcements; bamboo; concrete; crack; diameter; impact; reinforcement; research work; rice; slab; weight |
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55812444000 |
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55812444000 Muda Z.C. Beddu S. Syamsir A. Ating J.S. Mohd Kamal N.L. Mustapha K.N. Thiruchelvam S. Usman F. Alam M.A. Birima A.H. Zaroog O.S. |
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Conference Paper |
author |
Muda Z.C. Beddu S. Syamsir A. Ating J.S. Mohd Kamal N.L. Mustapha K.N. Thiruchelvam S. Usman F. Alam M.A. Birima A.H. Zaroog O.S. |
spellingShingle |
Muda Z.C. Beddu S. Syamsir A. Ating J.S. Mohd Kamal N.L. Mustapha K.N. Thiruchelvam S. Usman F. Alam M.A. Birima A.H. Zaroog O.S. Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
author_sort |
Muda Z.C. |
title |
Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
title_short |
Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
title_full |
Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
title_fullStr |
Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
title_full_unstemmed |
Impact Resistance Behaviour of Light Weight Rice Husk Concrete with Bamboo Reinforcement |
title_sort |
impact resistance behaviour of light weight rice husk concrete with bamboo reinforcement |
publisher |
Institute of Physics Publishing |
publishDate |
2023 |
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1806426462013620224 |
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13.222552 |