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Laboratory study on the use of tire shreds and rubber-sand in backfills and reinforced soil applications.

机译:关于在回填土和加筋土中使用轮胎碎片和橡胶砂的实验室研究。

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摘要

Millions of scrap tires are discarded annually in the United States, the bulk of which are currently landfilled or stockpiled. This consumes valuable landfill space, or, if improperly disposed, creates a fire hazard and provides a prolific breeding ground for rats and mosquitoes. The use of tire shreds as lightweight fill material can sharply reduce the tire disposal problem. The present study, based on laboratory testing and numerical modeling, examines the feasibility of incorporating tire shreds and rubber-sand mixtures in embankments and backfills.; The growing interest in utilizing waste materials in civil engineering applications has opened the possibility of using reinforced soil structures with non-conventional backfills. The laboratory testing program of the present study includes the determination of volumetric behavior of rubber-sand mixes during triaxial testing, lateral pressure coefficients for rubber-sand backfills, and interaction properties of tire shreds and rubber-sand mixtures with geogrids and geotextiles through pull-out and direct shear tests. The test results have been used to perform numerical modeling of tire shred and rubber-sand backs in walls.; It has been found that the use of tire shreds and rubber-sand (with a tire shred to mix ratio of about 40%) in highway construction offers technical, economic, and environmental benefits. The salient benefits of using tire shreds and rubber-sand include reduced weight of fill, adequate stability, low settlements, good drainage (avoiding the development of pore water pressure during loading), separation of underlying weak or problem soils from subbase or base materials, conservation of energy and natural resources, and usage of large quantities of local waste tires, which has a positive impact on the environment.
机译:在美国,每年有数以百万计的废旧轮胎被丢弃,其中大部分目前已被填埋或储存。这会浪费宝贵的垃圾掩埋空间,或者如果处置不当会造成火灾危险,并为老鼠和蚊子提供大量繁殖地。使用轮胎碎片作为轻质填充材料可以大大减少轮胎处置问题。本研究基于实验室测试和数值模型,研究了在路堤和回填土中掺入轮胎碎屑和橡胶-沙子混合物的可行性。对在土木工程应用中利用废料的兴趣日益浓厚,这开启了使用带有非常规回填土的加筋土壤结构的可能性。本研究的实验室测试程序包括在三轴测试过程中确定橡胶-砂混合物的体积行为,橡胶-砂回填的侧向压力系数以及轮胎碎片和橡胶-砂混合物与土工格栅和土工布通过拉力作用的相互作用特性。进行直接剪切测试。测试结果已用于对墙壁上的轮胎碎片和橡胶沙背进行数值模拟。已经发现,在公路建设中使用轮胎碎片和橡胶砂(轮胎碎片的混合比约为40%)可带来技术,经济和环境效益。使用轮胎碎片和橡胶砂的显着好处包括减轻填充物的重量,足够的稳定性,低沉降,良好的排水性(避免在加载过程中产生孔隙水压力),将底层的弱土或有问题的土壤与底层或底层材料分离,节约能源和自然资源,并大量使用当地的废轮胎,这对环境有积极影响。

著录项

  • 作者

    Bernal, Andres.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Civil.; Geotechnology.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;地质学;环境污染及其防治;
  • 关键词

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