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Modelling of non-linear stress-strain behaviour of HIPS with craze damage in tensile loading-unloading process

机译:装卸过程中具有裂纹损伤的HIPS非线性应力-应变行为建模

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摘要

Experimental and theoretical works have been done to study the nonlinear mechanical deformation response of high impact polystyrene (HIPS) under the condition of uni-axial tensile loading processes which include both loading and unloading stages with different constant strain rates. A damage variable, which is defined by the volume dilatation due to crazing, is used to characterize the effect of craze damage on the true stress and further on the visco-plastic mechanical response of HIPS. The damage variable and the plastic strain have been determined from the experimental data. The results also show that the effect of strain rate on the maximum tensile strength and the viscosity coefficient is very significant. A visco-elasto-plastic constitutive equation of polymeric material that takes account of the effect of craze damage, has been established. The solution of this constitutive equation can be used to simulate the non-linear stress-strain curves in tensile loading-unloading process, which agree well with those obtained experimentally.
机译:为了研究高抗冲聚苯乙烯(HIPS)在单轴拉伸加载过程中的非线性机械变形响应,已进行了实验和理论研究,该过程包括具有不同恒定应变率的加载和卸载阶段。由裂纹引起的体积膨胀定义的损伤变量用于表征裂纹损伤对真实应力以及对HIPS的粘塑性机械响应的影响。由实验数据确定了损伤变量和塑性应变。结果还表明,应变速率对最大拉伸强度和粘度系数的影响非常显着。建立了考虑了裂纹损伤影响的聚合物材料的粘弹塑性本构方程。该本构方程的解可用于模拟拉伸加载-卸载过程中的非线性应力-应变曲线,与实验得出的吻合良好。

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