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Dynamic deformation of hot temperature degraded POM and PP using a modified SHPB with pulse shaper technique

机译:使用改进的SHPB和脉冲整形器技术对热降解的POM和PP进行动态变形

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摘要

The conventional split Hopkinson pressure bar (C-SHPB) technique with a special experimental apparatus is used to obtain a dynamic deformation material behavior under a high strain rate loading condition. An experimental modification is introduced to reduce the non-equilibrium on the dynamic material response during a short test period for two polymeric materials. The proposed method uses aluminum pressure bars to achieve a closer impedance match between the pressure bars and the specimen materials such as hot temperature degraded POM (Poly Oxy Methylene) and PP (Poly Propylene) to obtain more distinguishable experimental signals. In addition, a pulse shaper technique is used for increasing the rise time of the incident pulse to ensure the dynamic stress equilibrium and the homogeneous deformation in the specimen under dynamic compression loading condition. The details on the dynamic stress equilibrium and the duration of uniform strain rate during the dynamic deformation of the specimen are experimentally investigated. The effects of degradation at a few different hot temperatures on the maximum compressive stresses are also experimentally studied under varying impulsive loading conditions.
机译:使用传统的霍普金森分体式压力棒(C-SHPB)技术和特殊的实验设备来获得在高应变速率加载条件下的动态变形材料性能。引入了一种实验改进,以减少两种聚合物材料在较短的测试时间内动态材料响应的不平衡。所提出的方法使用铝制压力棒来实现压力棒与样品材料(例如热降解的POM(聚氧化亚甲基)和PP(聚丙烯))之间更紧密的阻抗匹配,从而获得更明显的实验信号。另外,使用脉冲整形器技术来增加入射脉冲的上升时间,以确保在动态压缩载荷条件下样品中的动应力平衡和均匀变形。实验研究了试样动态变形过程中动应力平衡和均匀应变速率持续时间的细节。在不同的脉冲载荷条件下,还通过实验研究了在几个不同的高温下的降解对最大压缩应力的影响。

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