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首页> 外文期刊>Magazine of Concrete Research >Concrete with rejected recyclable plastic waste at high temperatures
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Concrete with rejected recyclable plastic waste at high temperatures

机译:在高温下拒绝可回收塑料废物的混凝土

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摘要

The physical, chemical and mechanical properties of concrete incorporating rejected recyclable plastic waste (RRPW), the potential for the mitigation of heat-induced concrete spalling and the effects of high temperature on the residual properties of concrete were investigated. Concrete compressive and tensile strengths, Young's modulus, crack width, mass loss, water absorption by capillarity, chemical composition and evidence of heat-induced concrete spalling were monitored in concrete samples made with RRPW particles and compared with those of concrete samples made with commercial polypropylene (PP) fibres, after exposure to 200 degrees C, 400 degrees C and 600 degrees C for 2 h. The use of 0.125% by volume of PP fibres and plastic waste particles was found to improve the heat-induced concrete spalling performance, due to the release of internal pressure after melting by different mechanisms. The positive effects on concrete properties show the technical potential of incorporating RRPW particles in construction materials.
机译:研究了混凝土的物理,化学和力学性能,包括被拒绝的可回收塑料废物(RRPW),研究了热诱导的混凝土剥落和高温对混凝土残留性能的影响的潜力。在用RRPW颗粒制成的混凝土样品中监测混凝土压缩和拉伸强度,杨氏模量,裂缝宽度,质量损失,吸水,化学成分和热诱导的混凝土剥落证据。与用商业聚丙烯制成的混凝土样品相比,在混凝土样品中监测热诱导的混凝土剥落证据(PP)纤维,暴露于200摄氏度后,400℃和600℃2小时。由于通过不同机制熔化后,发现使用0.125%(体积)的PP纤维和塑料废物颗粒以改善热诱导的混凝土剥落性能。对混凝土特性的积极作用显示在建筑材料中掺入RRPW颗粒的技术潜力。

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