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Fatigue of glass fiber reinforced injection molded plastics. II: Tensile versus flexural loading

机译:玻璃纤维增​​强的注射成型塑料的疲劳。 II:拉伸与弯曲载荷

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A previous paper reported fatigue data for several glass fiber reinforced thermoplastic materials by measuring their S-N, stress versus number of cycles to fail, behavior. it was demonstrated that both fiber orientation and loading mode, tensile versus flexural, strongly influence the resultant S-N data. The orientation effects are considered real, reflecting the local fiber orientation distributions in the samples, which are determined by geometry, processing and material variables. However, the higher fatigue lives observed in flexural loading are considered an artifact. Specifically for this class of materials, it is concluded that the use of linear elastic beam bending theory equations to calculate bending stresses are inappropriate. It is shown that a plasticity-based correction factor makes the flexural S-N data equivalent to the tensile results. In fact this correction applies equally well to monotonic loading, not just fatigue. Although it is concluded that tensile loading is preferred, some cases where flexural loading may be advantageous are indicated. Polym. Compos. 25:569--576, 2004. (C) 2004 Society of Plastics Engineers.
机译:先前的一篇论文通过测量几种玻璃纤维增​​强热塑性材料的S-N,应力与失效循环次数,行为的关系来报告其疲劳数据。结果表明,纤维的取向和加载方式(拉伸与弯曲)均会严重影响所得的S-N数据。定向效应被认为是真实的,反映了样品中的局部纤维定向分布,该分布由几何形状,加工和材料变量决定。但是,在弯曲载荷下观察到的较高的疲劳寿命被认为是伪影。专门针对此类材料,得出的结论是,使用线性弹性梁弯曲理论方程式来计算弯曲应力是不合适的。结果表明,基于塑性的校正因子使弯曲S-N数据等同于拉伸结果。实际上,这种校正同样适用于单调加载,而不仅仅是疲劳。尽管得出结论,优选拉伸载荷,但指出了弯曲载荷可能是有利的一些情况。 Polym。 Compos。 25:569--576,2004.(C)2004年塑料工程师学会。

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