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Properties of Crumb Rubber Concrete

机译:粒状橡胶混凝土的性能

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摘要

Crumb rubber is a material produced by shredding and commutating used tires. There is no doubt that the increasing piles of used tires create environmental concerns. The long-term goal of this research is to find means to dispose of the crumb rubber by placement of the rubber in port-land cement concrete and still provide a final product with good engineering properties. The Arizona Department of Transportation and Arizona State University have initiated several crumb rubber concrete (CRC) test sections throughout Arizona over the past few years. Laboratory tests were conducted to support the knowledge learned in the field and enhance the understanding of the material properties of CRC. Concrete laboratory tests included compressive, flexural, indirect tensile strength, thermal coefficient of expansion, and microscopic matrix analyses. The unit weight and the compressive and flexural strengths decreased as the rubber content in the mix increased. Further investigative efforts determined that the entrapped air, which caused excessive reductions in compressive strength, could be reduced substantially by adding a deairing agent. The higher tensile strains at failure observed from the tests were indicative of more ductile, energy-absorbent mix behavior. The coefficient of thermal expansion test results indicated that CRC was more resistant to thermal changes. The CRC specimens tested remained intact after failure and did not shatter as a conventional mix did. Such behavior may be beneficial for a structure that requires good impact resistance properties. If no special considerations are made to maintain higher strength values, the use of CRC mixes in places where high-strength concrete is not required is recommended.
机译:橡胶碎屑是通过将旧轮胎切碎和换向而产生的材料。毫无疑问,越来越多的废旧轮胎引起了环境问题。这项研究的长期目标是找到通过在硅酸盐水泥混凝土中放置橡胶来处理碎屑橡胶的方法,并仍然提供具有良好工程性能的最终产品。在过去的几年中,亚利桑那州交通运输部和亚利桑那州立大学已在整个亚利桑那州启动了多个碎橡胶混凝土(CRC)测试部门。进行了实验室测试以支持在该领域学到的知识并增强对CRC材料特性的理解。具体的实验室测试包括抗压,抗弯,间接拉伸强度,热膨胀系数和微观基质分析。随着混合物中橡胶含量的增加,单位重量以及抗压强度和抗弯强度降低。进一步的研究工作确定,通过添加除气剂可以大大减少导致压缩强度过度降低的残留空气。从测试中观察到的较高的断裂拉伸应变表明其更具延展性,能量吸收性。热膨胀系数测试结果表明,CRC对热变化的抵抗力更大。所测试的CRC标本在失效后仍保持完整,没有像常规混合物那样破碎。这样的行为对于需要良好的抗冲击性能的结构可能是有益的。如果没有特别考虑保持较高的强度值,则建议在不需要高强度混凝土的地方使用CRC混合料。

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