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Evaluation of Asphalt Mixtures Containing Metallic Fibers from Recycled Tires to Promote Crack-Healing

机译:评价含有回收轮胎金属纤维的沥青混合物促进抗裂愈合

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摘要

This paper reports part of an international research project with the long-term aim of developing more sustainable asphalt mixture with crack-healing properties by the addition of recycled metallic waste from industrial sources. Specifically, this article presents an evaluation of the physical, thermophysical, and mechanical properties of asphalt mixtures with metallic fiber obtained from recycled tires for crack-healing purposes. Detailed results on the crack-healing of asphalt mixtures will be reported in a second article. Results showed a small reduction on the bulk density and increase in the air voids content was quantified with increasing fiber contents. The experimental results showed that mixing and compaction was more difficult for higher fiber contents due to less space for the bitumen to freely flow and fill the voids of the mixtures. Computed tomography (CT) results allowed to identify clustering and orientation of the fibers. The samples were electrically conductive, and the electrical resistivity decreased with the increase of the fiber content. Fiber content had a direct effect on the indirect tensile stiffness modulus (ITSM) and strength (ITS) that decreased with increasing temperature for mixtures and with increase in fiber content. However, the indirect tensile strength ratio (ITSR) was within acceptable limits. In short, results indicate that fibers from recycled tires have a potential for use within asphalt mixtures to promote crack-healing.
机译:本文报告了国际研究项目的一部分,通过添加来自工业来源的再生金属废物,在长期旨在为更可持续的沥青混合物开发更可持续的沥青混合物。具体地,本文介绍了沥青混合物的物理,热物理和机械性能,其中金属纤维从再循环轮胎获得的用于抗裂愈合目的。在第二篇文章中报告了沥青混合物裂纹愈合的详细结果。结果表明,随着纤维含量的增加,堆积密度的小少量和空隙含量的增加。实验结果表明,由于沥青的空间较小的空间,混合和压实对于更高的纤维含量更难以自由流动并填充混合物的空隙。计算断层扫描(CT)结果允许识别纤维的聚类和方向。样品是导电的,并且电阻率随比纤维含量的增加而降低。纤维含量对间接拉伸刚度模量(ITSM)和强度(ITS)的强度(ITSM)和强度(其)呈增加,随着混合物的增加和纤维含量的增加而降低。然而,间接拉伸强度比(ITSR)是可接受的限制。简而言之,结果表明来自再生轮胎的纤维有可能在沥青混合物中使用,以促进抗裂愈合。

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