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DESIGN PARAMETERS FOR EPS GEOFOAM

机译:EPS土工泡沫的设计参数

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Over the past 30 years, design with geofoam has been based on either factored strength or limit strain approaches. Geofoam parameters for design have been derived from unconfined compression testing of small laboratory samples. Closer examination of performance observations indicate extrapolation of small sample laboratory results can lead to misleading interpretation of field results. The potential for creep deformations is exaggerated and design modulus values are underestimated when based on small sample laboratory tests. Possible reasons for these shortcomings, in reference to field observations, are examined on the basis of creep tests on small samples, uniaxial loading of large samples, compression tests using tactile pressure sensors and review of enlarged images of geofoam surfaces. Creep deformations in geofoams under uniaxial loading remain mainly in primary stages where strain rates continually decrease. Modulus values for design that are derived from small sample laboratory tests are about half of the values that were estimated from field observations. Accordingly, the suggestion is made to increase small sample based modulus values from laboratory tests for design applications.
机译:在过去的30年中,土工泡沫的设计基于强度系数法或极限应变法。用于设计的土工泡沫参数来自小型实验室样品的无限制压缩测试。对性能观察结果的仔细检查表明,小样本实验室结果的外推可能导致对现场结果的误导性解释。当基于小样本实验室测试时,蠕变变形的可能性被夸大,设计模量值被低估了。这些缺陷的可能原因,参考现场观察,是基于对小样本的蠕变测试,大样本的单轴加载,使用触觉压力传感器的压缩测试以及查看泡沫土表面放大图像进行检查的。在单轴载荷下,泡沫土的蠕变变形主要保持在应变率不断降低的初级阶段。从小样本实验室测试中得出的设计模量值大约是根据现场观察估计的值的一半。因此,提出了从用于设计应用的实验室测试中增加基于小样品的模量值的建议。

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