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Fatigue behavior and modeling of short fiber reinforced polymer composites including anisotropy and temperature effects

机译:短纤维增强聚合物复合材料的疲劳行为和建模,包括各向异性和温度影响

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摘要

Effects of anisotropy and temperature on cyclic deformation and fatigue behavior of two short glass fiber reinforced polymer composites were investigated. Fatigue tests were conducted under fully-reversed (R = -1) and positive stress ratios (R - 0.1 and 0.3) with specimens of different thicknesses, different fiber orientations, and at temperatures of-40℃, 23 ℃, and 125 ℃. In samples with 90° fiber orientation angle, considerable effect of thickness on fatigue strength was observed. Effect of mold flow direction was significant at all temperatures and stress ratios and the Tsai-Hill criterion was used to predict off-axis fatigue strengths. Temperature also greatly influenced fatigue strength and a shift factor of Arrhenius type was developed to correlate fatigue data at various temperatures, independent of the mold flow direction and stress ratio. Micromechanisms of fatigue failure at different temperatures were also investigated. Good correlations between fatigue strength and tensile strength were obtained and a method for obtaining strain-life curves from load-controlled fatigue test data is presented. A fatigue life estimation model is also presented which correlates data for different temperatures, fiber orientations, and stress ratios.
机译:研究了各向异性和温度对两种短玻璃纤维增​​强聚合物复合材料循环变形和疲劳行为的影响。在厚度,纤维取向不同,温度分别为40℃,23℃和125℃的全反向(R = -1)和正应力比(R-0.1和0.3)下进行疲劳测试。在纤维取向角为90°的样品中,观察到厚度对疲劳强度的影响很大。模具流动方向的影响在所有温度和应力比下均很显着,并且使用Tsai-Hill准则预测离轴疲劳强度。温度也极大地影响了疲劳强度,因此开发了Arrhenius型位移因子来关联各种温度下的疲劳数据,而与模具的流动方向和应力比无关。还研究了不同温度下疲劳破坏的微观机理。获得了疲劳强度和拉伸强度之间的良好相关性,并提出了一种从载荷控制的疲劳试验数据中获得应变寿命曲线的方法。还提出了疲劳寿命估算模型,该模型将不同温度,纤维取向和应力比的数据关联起来。

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