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Short term bond shear stress and cracking control of reinforced self-compacting concrete one way slabs under flexural loading

机译:弯曲荷载下钢筋自密实混凝土单板的短期粘结剪应力与裂缝控制

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Fibre-reinforced self-compacting concrete (FRSCC) is a high-performance building material that combines positive aspects of fresh properties of self-compacting concrete (SCC) with improved characteristics of hardened concrete as a result of fibre addition. To produce SCC, either the constituent materials or the corresponding mix proportions may notably differ from the conventional concrete (CC). These modifications besides enhance the concrete fresh properties affect the hardened properties of the concrete. Therefore, it is vital to investigate whether all the assumed hypotheses about CC are also valid for SCC structures. In the present paper, the experimental results of short-term flexural load tests on eight reinforced SCC and FRSCC specimens slabs are presented. For this purpose, four SCC mixes - two plain SCC, two steel, two polypropylene, and two hybrid FRSCC slab specimens - are considered in the test program. The tests are conducted to study the development of SCC and FRSCC flexural cracking under increasing short-term loads from first cracking through to flexural failure. The achieved experimental results give the SCC and FRSCC slabs bond shear stresses for short-term crack width calculation. Therefore, the adopted bond shear stress for each mix slab is presented in this study. Crack width, crack patterns, deflections at mid-span, steel strains and concrete surface strains at the steel levels were recorded at each load increment in the post-cracking range.
机译:纤维增强的自密实混凝土(FRSCC)是一种高性能的建筑材料,结合了自密实混凝土(SCC)的新鲜特性的积极方面和由于添加纤维而改善的硬化混凝土的特性。为了生产SCC,组成材料或相应的混合比例可能与常规混凝土(CC)明显不同。这些改进除了增强了混凝土的新鲜性能,还影响了混凝土的硬化性能。因此,调查关于CC的所有假设假设是否也适用于SCC结构至关重要。本文给出了八块SCC和FRSCC钢筋混凝土试板的短期弯曲荷载试验的试验结果。为此,在测试程序中考虑了四种SCC混合物-两个普通SCC,两个钢,两个聚丙烯和两个FRSCC混合板坯样品。进行测试的目的是研究在从首次破裂到弯曲破坏的短期载荷不断增加的情况下,SCC和FRSCC弯曲破裂的发展。所获得的实验结果给出了SCC和FRSCC平板的粘结剪切应力,用于短期裂缝宽度的计算。因此,本研究介绍了每种混合板采用的粘结剪切应力。记录裂纹后范围内每次载荷增加时的裂纹宽度,裂纹模式,中跨挠度,钢水平的钢应变和混凝土表面应变。

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