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In-plane elastic properties of geosynthetics from in-air biaxial tension tests

机译:从空中胎儿张力试验中的地质合成的平面弹性特性

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Geosynthetics experience load simultaneously in each principal material direction in applications such as retaining walls, constructed slopes, roadways, and reinforced granular load transfer platforms. Biaxial loading results in a stiffer load-strain response compared to that observed in uniaxial loading. Load-strain properties of geosynthetics determined from wide-width uniaxial tension tests are unable to account for this effect and are generally regarded as an index test. This paper presents the development of a biaxial testing procedure to provide load-strain response data necessary to determine in-plane linear elastic tensile properties of geosynthetics. These properties consist of two elastic moduli, two dependent in-plane Poisson's ratios and an in-plane shear modulus. The elastic moduli and Poisson's ratios are derived from non-bias biaxial tests where load is applied in the two principal directions of the material. The in-plane shear modulus is determined from biaxial tests on specimens where load is applied on a bias such that the principal material directions are oriented at a 45-degree angle to the test machine directions. The tests are performed on geosynthetics that have been load conditioned such that the subsequent load-strain response is considered to be a resilient response pertinent to repetitive load applications such as geosynthetic reinforced pavements.
机译:GeoSynthetics在每个主物料方向上同时负载,如挡墙,构造的斜坡,道路和加强粒度载荷转移平台。与在单轴载荷中观察到的相比,双轴载荷导致更纤度的载荷响应。从宽宽度单轴张力试验中确定的土工合成的负荷 - 应变性能无法解释这种效果,并且通常被认为是指数测试。本文介绍了双轴检测程序的开发,以提供确定地质合成的平面线性弹性拉伸性能所必需的负载应变响应数据。这些性质包括两个弹性模量,两个依赖于平面泊松比率和面内剪切模量。弹性模和泊松比率来自非偏压双轴试验,其中负载施加在材料的两个主要方向上。从面内剪切模量从样本上的双轴试验确定,其中负载施加在偏压上,使得主材料方向以45度角定向到测试机器方向。测试是对已经负载调节的地质合成的测试,使得随后的负载应变响应被认为是与重复载荷应用(例如土工合成增强路面)的弹性响应。

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