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YIELD CRITERIA FOR AMORPHOUS GLASSY POLYMERS

机译:非晶态玻璃态聚合物的屈服准则

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摘要

Three amorphous polymers, polymethyl methacrylate, polystyrene and polycarbonate were tested in uniaxial tension, uniaxial compression, plane strain compression and simple shear, over a range of temperatures. In each test, the yield point was precisely determined via residual strain measurements after unloading. With the yield stresses determined for these four different stress states, two pressure dependent shear yield criteria, i.e, the modified Von Mises and the modified Tresca criteria, were checked and compared. It is shown that (i) in each case (material, temperature, initial ageing state), the yield locus is satisfactorily described by either one or the other of the two criteria, and (ii) each criterion can be associated with a specific deformation mode (either homogeneous or localized in shear bands). As for the temperature dependence of the yield stress sensitivity to the hydrostatic pressure, it appears to be related to the glass transition temperature (T-g) and more precisely to the alpha and beta relaxations. Finally, the pressure dependence of the yield stress can be possibly explained as being due to two effects: (i) the influence of pressure on molecular motions leading to yielding and (ii) the influence of pressure on the microstructural state. [References: 41]
机译:在一定温度范围内,对三种非晶态聚合物(聚甲基丙烯酸甲酯,聚苯乙烯和聚碳酸酯)进行了单轴拉伸,单轴压缩,平面应变压缩和简单剪切测试。在每个测试中,通过卸载后的残余应变测量可精确确定屈服点。在针对这四个不同应力状态确定了屈服应力后,检查并比较了两个压力相关的剪切屈服准则,即修改后的Von Mises和修改后的Tresca准则。结果表明,(i)在每种情况下(材料,温度,初始时效状态),两个准则中的一个或另一个令人满意地描述了屈服点,并且(ii)每个准则都可以与特定变形相关联模式(均质或剪切带局部)。至于屈服应力敏感性对流体静压力的温度依赖性,似乎与玻璃化转变温度(T-g)有关,更确切地说与α和β弛豫有关。最后,屈服应力的压力依赖性可以解释为归因于两个效应:(i)压力对导致屈服的分子运动的影响,以及(ii)压力对微观结构状态的影响。 [参考:41]

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