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首页> 外文期刊>International Journal of Fatigue >Effect of fiber orientation distribution on constant fatigue life diagram of chopped carbon fiber chip-reinforced Sheet Molding Compound (SMC) composite
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Effect of fiber orientation distribution on constant fatigue life diagram of chopped carbon fiber chip-reinforced Sheet Molding Compound (SMC) composite

机译:纤维取向分布对短切碳纤维切屑增强片状模塑料复合材料恒定疲劳寿命图的影响

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摘要

The material behavior of chopped carbon fiber chip-reinforced Sheet Molding Compound (SMC) composite is investigated under both quasi-static and cyclic fatigue loading conditions in the present study. Quasi-static tensile and compressive strength data is collected, followed by a series of fatigue tests under three different cyclic loading conditions, i.e., Tension-Tension (T-T), Compression-Compression (C-C), and Tension-Compression (T-C). The experimental results show a considerable amount of variation for each loading condition, which is found to be induced by the spatial distribution of fiber orientation within the tested specimens. An analytical approach is developed to correlate the fatigue performance of the SMC material with the local modulus, which is determined by the fiber orientation distribution. Additionally, the similar failure modes are observed under different loading conditions. Based on these findings, a new form of Constant Fatigue Life (CFL) diagram is established in which the impact of fiber orientation tensor to the fatigue behavior of SMC is considered. This developed CFL diagram is examined by comparing the measured fatigue performance with prediction where local fiber orientation distribution is quantified from microscopic images.
机译:研究了短切碳纤维切屑增强片状模塑料(SMC)复合材料在准静态和循环疲劳载荷条件下的材料性能。收集准静态拉伸和压缩强度数据,然后在三种不同的循环载荷条件下进行一系列疲劳测试,即拉伸-拉伸(T-T),压缩-压缩(C-C)和拉伸-压缩(T-C)。实验结果表明,每种加载条件都有相当大的变化,这是由测试样品中纤维取向的空间分布引起的。开发了一种分析方法,将SMC材料的疲劳性能与局部模量相关联,局部模量由纤维取向分布确定。此外,在不同的负载条件下观察到类似的故障模式。基于这些发现,建立了一种新形式的恒定疲劳寿命(CFL)图,其中考虑了纤维取向张量对SMC疲劳行为的影响。通过将测得的疲劳性能与预测结果进行比较,检查了此展开的CFL图,在预测结果中,从微观图像中量化了局部纤维取向分布。

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