模拟碎橡胶轮胎在高碱性环境下的耐久性

H. Huynh, D. Raghavan
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引用次数: 34

摘要

在高强度不是最重要的应用中,汽车和卡车轮胎可以通过粉碎并将其掺入混凝土中来回收。当橡胶放置在混凝土中时,由于长时间暴露于混凝土基体,它的强度降低和降解程度应该最小。在本初步研究中,通过将碎橡胶暴露在高碱性环境中长达4个月,模拟了混凝土中碎橡胶的稳定性。通过观察橡胶的质量、膨胀、抗拉强度和微观结构的变化,监测橡胶在不同化学物质中的降解情况。结果表明:橡胶碎料在高碱性介质中4个月后变化不大,说明混凝土中加入橡胶不会对混凝土耐久性产生显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Durability of simulated shredded rubber tire in highly alkaline environments

In applications where high strength is not of prime importance, automobile and truck tires can be recycled by shredding them and incorporating them in concrete. When the rubber is placed in the concrete, it should have minimal strength reduction and undergo minimal degradation due to the prolonged exposure to the concrete matrix. In this preliminary study, the stability of shredded rubber in concrete was simulated by exposing the shredded rubber to highly alkaline environments for up to 4 months. The degradation of rubber immersed in different chemicals was monitored by observing the changes in mass, swelling, tensile strength, and microstructure. The results show that the shredded rubber undergoes small change in a highly alkaline medium after 4 months, which suggests that the addition of rubber to concrete will not dramatically affect the durability of concrete.

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