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Effect of reinforced fiber length on the joint performance of thermoplastic leaf spring

机译:增强纤维长度对热塑性片簧接头性能的影响

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摘要

Joint strength plays a significant role in the performance of leaf spring suspension system. Current work reported the influence of reinforced fiber length on the performance of injection molded thermoplastic leaf spring joint. Leaf springs were molded using 20% short, long glass fiber reinforced polypropylene as well as unreinforced polypropylene and evaluated for the joint strength. Servo hydraulic test facility with suitable fixture is utilized to evaluate the leaf spring joint performance under static and dynamic conditions. Test joints were subjected to completely reversed fatigue loads, wherein long fiber reinforced leaf spring joint exhibited superior performance at high cycle fatigue conditions than that of short fiber reinforced and unreinforced polypropylene leaf spring joints. However, at low cycle fatigue loading conditions, unreinforced and short glass fiber reinforced leaf spring exhibited superior performance than that of long glass fiber reinforced leaf spring joint. High notch sensitivity characteristics of the long glass fiber reinforced polypropylene material contributed to this inferior performance. Load-deflection hysteresis plot of the long glass fiber reinforced leaf spring joint under fatigue loading conditions exhibited a lesser amount of hole elongation compared to that of short glass fiber and unreinforced leaf spring joint. Failure morphology of tested joint under fatigue condition exhibited net-tension and shear-out failures besides bearing damages.
机译:接头强度在板簧悬挂系统的性能中起着重要作用。当前的工作报道了增强纤维长度对注塑热塑性板簧接头性能的影响。使用20%长短的玻璃纤维增​​强聚丙烯以及非增强聚丙烯模制板簧,并评估接合强度。利用带有合适夹具的伺服液压测试设备来评估板簧接头在静态和动态条件下的性能。测试接头承受完全反向的疲劳载荷,其中长纤维增强的板簧接头在高循环疲劳条件下表现出比短纤维增强和未增强的聚丙烯板簧接头更好的性能。但是,在低周疲劳载荷条件下,未增强的短玻璃纤维增​​强板簧表现出比长玻璃纤维增​​强的板簧接头更好的性能。长玻璃纤维增​​强聚丙烯材料的高缺口敏感性特性导致了这种劣质性能。与短玻璃纤维和未增强的板簧接头相比,长玻璃纤维增​​强的板簧接头在疲劳载荷条件下的载荷挠曲滞后曲线显示出较小的孔伸长率。在疲劳条件下,被测接头的破坏形态除了轴承损坏外,还表现出净拉力和剪切破坏。

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