首页> 外文期刊>Проблемы прочностиПроблемы прочности: на рус.укр.и анг.языках >A strain energy density based lifetime prediction model for notched specimens: Case of polycarbonate under thermal fatigue
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A strain energy density based lifetime prediction model for notched specimens: Case of polycarbonate under thermal fatigue

机译:基于缺口能量的基于应变能密度的寿命预测模型:聚碳酸酯在热疲劳下的情况

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摘要

Polycarbonate is more and more used in engineering because of its good mechanical properties. Pieces in polycarbonate are used in environments of variable temperatures, especially, in electronic devices. Thermal stresses could become importantand, for this reason, effects of thermal stresses must be taken into account in designing pieces in polycarbonate. The method proposed to predict the life of notched test specimens is bated on the dissipated strain energy density. behaviour laws ofpolycarbonate at various temperatures are determined, and fatigue tests on smooth specimens give us the thermal fatigue laws of the material. Fatigue tests on notched specimens and FEM computation give us a relation between the stress concentrationfactor, the strain energy density dissipated in notch roots, and the nominal strain energy density. A life prediction model is proposed and discussed.
机译:聚碳酸酯由于其良好的机械性能而越来越多地用于工程中。聚碳酸酯制的零件用于温度变化的环境中,尤其是在电子设备中。热应力可能变得很重要,因此,在设计聚碳酸酯零件时,必须考虑热应力的影响。提出的用于预测缺口试样寿命的方法取决于耗散的应变能密度。确定了聚碳酸酯在不同温度下的行为规律,并在光滑试样上进行了疲劳测试,得出了材料的热疲劳规律。缺口试样的疲劳试验和有限元计算给出了应力集中系数,缺口根部耗散的应变能密度与标称应变能密度之间的关系。提出并讨论了寿命预测模型。

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