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Estimating the creep behavior of polycarbonate with changes in temperature and aging time

机译:通过温度和老化时间的变化估算聚碳酸酯的蠕变行为

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Thermoplastic resins are typically used without any kind of physical aging treatment. For such materials, creep behavior and physical aging, which depend on time and temperature, occur simultaneously. The effects of these processes are evident after quenching and are recorded in the material as a thermal history. This history strongly influences mechanical properties and creep behavior in particular. Thus, a more thorough understanding of the physical aging process is desirable. We examined the creep deformation of polycarbonate (PC) to reveal the effects of physical aging on creep behavior. The effects were dependent on both time and temperature. The relationship between physical aging and creep behavior exemplified superposition principles with regard to time and both pre-test aging time and pre-test aging temperature. The superposition principles allowed the calculation of creep deformations at a given temperature; the calculated results were corroborated by experimental data.
机译:热塑性树脂通常无需任何物理老化处理即可使用。对于此类材料,取决于时间和温度的蠕变行为和物理老化会同时发生。这些过程的影响在淬火后很明显,并作为热历史记录在材料中。此历史尤其会严重影响机械性能和蠕变行为。因此,需要对物理老化过程有更透彻的了解。我们检查了聚碳酸酯(PC)的蠕变变形,以揭示物理老化对蠕变行为的影响。影响取决于时间和温度。物理老化与蠕变行为之间的关系体现了时间,预测试时效时间和预测试时效温度的叠加原理。叠加原理可以计算给定温度下的蠕变变形。实验数据证实了计算结果。

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