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高密度聚乙烯土工膜与固体废物之间界面摩擦的剪切试验

Shear Testing of the Interfacial Friction Between an HDPE Geomembrane and Solid Waste.

作者信息

Zhou Luming, Zhu Zhende, Yu Zhenpeng, Zhang Cong

机构信息

Key Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Hohai University, Nanjing 210098, China.

Jiangsu Research Center for Geotechnical Engineering Technology, Hohai University Nanjing 210098, China.

出版信息

Materials (Basel). 2020 Apr 3;13(7):1672. doi: 10.3390/ma13071672.

Abstract

High-density polyethylene (HDPE) geomembrane is often used as an anti-seepage material in domestic and industrial solid waste landfills. To study the interfacial shear strength between the HDPE anti-seepage geomembrane and various solid wastes, we performed direct shear tests on the contact interface between nine types of industrial solid waste or soil (desulfurization gypsum, fly ash, red mud, mercury slag, lead-zinc slag, manganese slag, silica fume, clay and sand) and a geomembrane with a smooth or rough surface in Guizhou Province, China. Friction strength parameters like the interfacial friction angle and the apparent cohesion between the HDPE geomembrane and various solid wastes were measured to analyze the shear strength of the interface between a geomembrane with either a smooth or a rough surface and various solid wastes. The interfacial shear stress between the HDPE geomembrane and the industrial solid waste increased with shear displacement and the slope of the stress-displacement curve decreased gradually. When shear displacement increased to a certain range, the shear stress at the interface remained unchanged. The interfacial shear strength between the geomembrane with a rough surface and the solid waste was higher than for the geomembrane with a smooth surface. Consequentially, the interfacial friction angle for the geomembrane with a rough surface was larger. The geomembrane with a rough surface had a better shear resistance and the shear characteristics fully developed when it was in full contact with the solid waste.

摘要

高密度聚乙烯(HDPE)土工膜常用于 domestic 和工业固体废物填埋场的防渗材料。为研究 HDPE 防渗土工膜与各种固体废物之间的界面抗剪强度,我们在中国贵州省对九种工业固体废物或土壤(脱硫石膏、粉煤灰、赤泥、汞渣、铅锌渣、锰渣、硅灰、粘土和沙子)与具有光滑或粗糙表面的土工膜之间的接触界面进行了直剪试验。测量了 HDPE 土工膜与各种固体废物之间的界面摩擦角和表观粘聚力等摩擦强度参数,以分析具有光滑或粗糙表面的土工膜与各种固体废物之间界面的抗剪强度。HDPE 土工膜与工业固体废物之间的界面剪应力随剪切位移增加而增加,应力 - 位移曲线的斜率逐渐减小。当剪切位移增加到一定范围时,界面处的剪应力保持不变。具有粗糙表面的土工膜与固体废物之间的界面抗剪强度高于具有光滑表面的土工膜。因此,具有粗糙表面的土工膜的界面摩擦角更大。具有粗糙表面的土工膜具有更好的抗剪性能,并且当它与固体废物完全接触时,剪切特性得到充分发挥。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8575/7178408/1b584947de51/materials-13-01672-g001.jpg

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