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Behavior of EPS geofoam in true triaxial compression tests

机译:EPS土工泡沫在真实三轴压缩试验中的行为

摘要

This paper investigates the behavior of EPS geofoam in a true triaxial apparatus using 70 mm×70 mm×140 mm prismatic brick-shaped specimens. The specimens are subjected to different stress paths in the deviator (π) plane by means of stress-controlled loading, in which the axial stress is imposed at a rate of 75 kPa/min in the major principal direction. Stress-strain characteristics and volume change behavior have been recorded, and the yield surface has been deduced from the experimental data. The following observations have also been made for the geofoam: (a) it is an elastoplastic hardening material with plastic contractive volume change under compressive loading, (b) it softens stiffness-wise under confining stress, (c) the onset of contractive volume change corresponds quite well to the proportional limit, and (d) yielding is a slightly decreasing function of the intermediate principal stress. The study found that yielding can be represented reasonably well by a Drucker-Prager yield surface.
机译:本文研究了使用70mm×70mm×140mm棱柱形砖状试样在真实三轴设备中EPS泡沫塑料的性能。试样通过应力控制的载荷在偏斜(π)平面上经受不同的应力路径,其中轴向应力在主主方向上的施加速率为75 kPa / min。记录了应力应变特性和体积变化行为,并从实验数据推导了屈服面。对于土工泡沫也有以下观察结果:(a)它是一种弹塑性硬化材料,在压缩载荷下会发生塑性收缩体积变化;(b)在限制应力下会变硬,在刚度方面;(c)收缩体积发生变化与比例极限相当好,并且(d)屈服是中间主应力的略有下降的函数。研究发现,Drucker-Prager屈服面可以很好地代表屈服。

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