首页> 外文期刊>International Journal of Fatigue >Fatigue life assessment of a Short Fibre Reinforced Thermoplastic at high temperature using a Through Process Modelling in a viscoelastic framework
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Fatigue life assessment of a Short Fibre Reinforced Thermoplastic at high temperature using a Through Process Modelling in a viscoelastic framework

机译:使用粘弹性框架中的全过程模型,评估高温下的短纤维增强热塑性材料的疲劳寿命

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摘要

A Through Process Modelling (TPM) fatigue life assessment methodology - previously validated in an elastic framework for Short Fibre Reinforced Thermoplastics at room temperature - was extended to high temperature. The viscoelasticity of the matrix was taken into account to estimate the local effective mechanical properties at any point, from the knowledge of local fibre orientation provided by the simulation of injection-moulding. Lifetime estimation was obtained from an energetic fatigue criterion applied in the stationary regime. The approach was validated from uniaxial fatigue tests conducted at 110 degrees C in tension, on PA66GF30 samples cut out from injected plates with three different orientations to the injection direction, at two stress ratios (0.1 and -1).
机译:全过程建模(TPM)疲劳寿命评估方法-先前已在室温下在短纤维增强热塑性塑料的弹性框架中得到验证-已扩展到高温。根据注塑成型模拟提供的局部纤维取向知识,考虑了基质的粘弹性以估计任何点的局部有效机械性能。寿命估算是从静止状态下应用的能量疲劳准则获得的。该方法通过在110摄氏度的拉伸强度下进行的单轴疲劳测试得到了验证,该测试是在以两个应力比(0.1和-1)从与注射方向具有三个不同方向的注射板上切下的PA66GF30样品上进行的。

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