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首页> 外文期刊>Journal of Applied Polymer Science >Fatigue characteristics of a glass-fiber-reinforced polyamide
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Fatigue characteristics of a glass-fiber-reinforced polyamide

机译:玻璃纤维增​​强聚酰胺的疲劳特性

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摘要

This paper deals with prediction of the temperature rise in the stress-controlled fatigue process of a glass-fiber-reinforced polyamide and the application of a temperature and frequency superposition procedure to the S-N curve. An experimental equation was derived to predict the temperature rise from calculations based on the fatigue test conditions and viscoelastic properties of the material. The temperature rise (ΔT) can be expressed as a product of a coefficient term Φ(L, κ) concerning heat radiation and the test-specimen shape and a function term Pfat concerning the viscoelastic properties and fatigue test conditions. Φ(L, κ) was found experimentally to derive the equation for predicting the temperature rise blow or above the glass transition temperature (Tg) of the material. The equation σR = -STfA log NfR + STfB was obtained as a procedure for applying temperature and frequency superposition to S-N curves in consideration of ΔT. This procedure was obtained by combining both temperature- and frequency-superposition techniques. Here, σR and log NfR represents the stress and the fatigue lifetime calculated at a given temperature and frequency, A and B denote the slope and intercept of any arbitrarily chosen S-N curve, and STf is a shift factor for temperature and frequency superposition.
机译:本文对玻璃纤维增​​强聚酰胺的应力控制疲劳过程中的温度升高进行预测,并将温度和频率叠加过程应用于S-N曲线。根据疲劳测试条件和材料的粘弹性,通过计算得出了一个实验方程来预测温度升高。温升(ΔT)可以表示为关于热辐射和测试样品形状的系数项Φ(L,κ)与关于粘弹性和疲劳测试条件的函数项Pfat的乘积。通过实验发现Φ(L,κ)可以推导用于预测温度上升冲击或高于材料的玻璃化转变温度(Tg)的方程式。作为考虑到ΔT而将温度和频率叠加应用于S-N曲线的过程,获得了方程式σR= -STfAlogNfR + STfB。通过组合温度叠加和频率叠加技术获得此过程。此处,σR和log NfR代表在给定温度和频率下计算出的应力和疲劳寿命,A和B代表任意选择的S-N曲线的斜率和截距,STf是温度和频率叠加的位移因子。

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