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Experimental study on the effect of strain rates on the dynamic flexural properties of rubber concrete

机译:应变速率对橡胶混凝土动态弯曲性能影响的试验研究

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Static and dynamic flexural tests were carried out with a 100-mm-diameter split Hopkinson pressure bar (SHPB) apparatus on rubber concrete for which the fine aggregate was replaced with rubber particles made from waste tires at various volume ratios (0%,10%, 20%, 30%, 40%, and 50%). The incident and transmission bars of the SHPB apparatus were each sleeved on a modified pad for a three-point flexural test. Experimental results showed that the flexural strength and mid-span displacement of the rubber concrete had a strain-rate effect. The rubber concrete had a more sensitive strain rate than the normal concrete when the replacement ratio of rubber particles was below 30%. However, excessive rubber content (40% and 50%) decreased the sensitivity of strain rate. The strain-rate effect of the rubber concrete was due to a short test duration, which caused more aggregates to be broken, and compressive behavior during the tests. Rubber concrete with a replacement ratio of 30% demonstrated the greatest deformability and had a lower cracking speed than the normal concrete. These results demonstrated that, under a dynamic flexural load, rubber particles can reduce the brittleness of concrete without excessive mixing. (C) 2019 Elsevier Ltd. All rights reserved.
机译:用直径为100 mm的霍普金森分流式压力棒(SHPB)装置在橡胶混凝土上进行静态和动态挠曲测试,其细骨料被废轮胎制成的橡胶颗粒以不同的体积比(0%,10% ,20%,30%,40%和50%)。 SHPB设备的入射和透射杆分别套在改进的垫板上,用于三点弯曲试验。实验结果表明,橡胶混凝土的抗弯强度和中跨位移具有应变率效应。当橡胶颗粒的置换率低于30%时,橡胶混凝土比普通混凝土具有更高的应变率。但是,橡胶含量过多(40%和50%)会降低应变率的敏感性。橡胶混凝土的应变率效应是由于测试持续时间短,导致更多的骨料破碎以及测试过程中的压缩行为。替代率为30%的橡胶混凝土表现出最大的变形能力,并且开裂速度低于普通混凝土。这些结果表明,在动态挠曲载荷下,橡胶颗粒可以减少混凝土的脆性而不会过度混合。 (C)2019 Elsevier Ltd.保留所有权利。

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