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Unconfined compressive strength of PET waste-mixed residual soils

机译:PET废渣混合残留土的无侧限抗压强度

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摘要

Plastic wastes, particularly polyethylene terephthalate (PET) generated from used bottled water constitute a worldwide environmental issue. Reusing the PET waste for geotechnical applications not only reduces environmental burdens of handling the waste, but also improves inherent engineering properties of soil. This paper investigated factors affecting shear strength improvement of PET-mixed residual soil. Four variables were considered: (i) plastic content; (ii) plastic slenderness ratio; (iii) plastic size; and (iv) soil particle size. A series of unconfined compression tests were performed to determine the optimum configurations for promoting the shear strength improvement. The results showed that the optimum slenderness ratio and PET content for shear strength improvement were 1:3 and 1.5%, respectively. Large PET pieces (i.e., 1.0 cm(2)) were favorable for fine-grained residual soil, while small PET pieces (i.e., 0.5 cm2) were favorable for coarse-grained residual soil. Higher shear strength improvement was obtained for PET-mixed coarse-grained residual soil (148%) than fine-grained residual soils (117%). The orientation of plastic pieces in soil and frictional resistance developed between soil particles and PET surface are two important factors affecting the shear strength performance of PET-mixed soil.
机译:由废瓶装水产生的塑料废物,特别是聚对苯二甲酸乙二酯(PET)构成了全球性的环境问题。将PET废料重新用于岩土工程中,不仅减轻了处理废料的环境负担,而且还改善了土壤的固有工程特性。本文研究了影响PET混合渣土抗剪强度提高的因素。考虑了四个变量:(i)塑料含量; (ii)塑性伸长率; (iii)塑料尺寸; (iv)土壤粒径。进行了一系列无限制压缩试验,以确定促进剪切强度提高的最佳配置。结果表明,提高剪切强度的最佳长细比和PET含量分别为1:3和1.5%。大块的PET(即1.0 cm(2))适合细粒残留土,小块的PET(即0.5 cm2)对粗粒残留土有利。 PET混合的粗粒残留土(148%)比细粒残留土(117%)获得更高的剪切强度改进。塑料碎片在土壤中的取向以及土壤颗粒与PET表面之间产生的摩擦阻力是影响PET混合土抗剪强度性能的两个重要因素。

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