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Performance Evaluation of the Polyurethane-Based Composites Prepared with Recycled Polymer Concrete Aggregate

机译:再生聚合物混凝土骨料制备的聚氨酯基复合材料的性能评估

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摘要

Currently the investigation on recycled cement concrete aggregate has been widely conducted, while the understanding of the recycled polymer concrete aggregate is still limited. This study aims to fill this knowledge gap through the experimental investigation on mechanical and durability performance. Specifically, the remolded polyurethane stabilized Pisha sandstone was collected as the recycled polymer concrete aggregate. The remolded Pisha sandstone was then applied to re-prepare the polyurethane-based composites. After that, the mechanical performance of the prepared composites was first examined with unconfined and triaxial compressive tests. The results indicated that the Pisha sandstone reduces the composite’s compressive strength. The reduction is caused by the remained polyurethane material on the surface of the remolded aggregate, which reduces its bond strength with the new polyurethane material. Aiming at this issue, this study applied the ethylene-vinyl acetate (EVA) to enhance the bond performance between the polyurethane and remolded sandstone. The test results indicated both the unconfined and triaxle compressive strength of the polyurethane composites were enhanced with the added EVA content. Furthermore, the durability performance of the EVA-modified composites were examined through freeze-thaw and wet-dry cycle tests. The test results indicated the EVA could enhance the polyurethane composites’ resistance to both wet-dry and freeze-thaw cycles. Overall, the modification with EVA can compensate for the strength loss of polyurethane composites because of the applied remolded aggregate and enhance its sustainability.
机译:目前,对再生水泥混凝土骨料的研究已经广泛开展,而对再生聚合物混凝土骨料的了解仍然有限。本研究旨在通过对机械和耐久性能的实验研究来填补这一知识空白。具体而言,将经重塑的聚氨酯稳定的Pisha砂岩收集为可回收的聚合物混凝土骨料。然后将重塑的Pisha砂岩用于重新制备聚氨酯基复合材料。之后,首先通过无限制和三轴压缩试验来检查所制备复合材料的机械性能。结果表明,Pisha砂岩降低了复合材料的抗压强度。减少是由于残留在重塑骨料表面的聚氨酯材料引起的,这降低了其与新聚氨酯材料的粘结强度。针对这个问题,本研究应用了乙烯乙酸乙烯酯(EVA)来增强聚氨酯与重塑砂岩之间的粘结性能。测试结果表明,聚氨酯复合材料的无侧限和三轴抗压强度均随着EVA含量的增加而增强。此外,通过冻融和湿-干循环测试检查了EVA改性复合材料的耐久性能。测试结果表明,EVA可以增强聚氨酯复合材料对干湿循环和冻融循环的抵抗力。总体而言,使用EVA进行改性可以弥补聚氨酯复合材料由于施加的重塑骨料而造成的强度损失,并增强其可持续性。

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