重型车辆悬架系统螺旋压缩弹簧失效分析

Youli Zhu, Yanli Wang, Yuanlin Huang
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引用次数: 58

摘要

本文分析了压缩线圈弹簧在从轴承线圈到服役的第一个主动线圈的过渡位置断裂的原因,而这里的标称应力应该总是远远小于完全主动线圈的内线圈位置。目视观察表明,在第一个活动线圈上形成了磨损痕,断口表面显示出从磨损痕发出的辐射状脊。扫描电镜检查显示新月形区域和滩痕,典型的疲劳破坏。接触区周围的ZnCaph磷化层和涂层由于接触和摩擦而磨损,形成腐蚀和腐蚀坑,引起局部应力集中。应力分析表明,接触区边缘存在严重的应力奇点,这有利于循环滑移和疲劳裂纹形核。提出了改进悬架弹簧疲劳性能的建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Failure analysis of a helical compression spring for a heavy vehicle's suspension system

Failure analysis of a helical compression spring for a heavy vehicle's suspension system

This paper analyzed why a compression coil spring fractured at the transition position from the bearing coil to the first active coil in service, while the nominal stress here should always be much less than that at the inside coil position of a fully active coil. Visual observations indicated that a wear scar was formed on the first active coil and the fracture surface showed radiating ridges emanating from the wear scar. Scanning electron microscopy examination showed crescent shaped region and beach marks, typical of fatigue failure. ZnCaph phosphate layer and painting around the contact zone were worn out due to contact and friction and resulted in corrosion and corrosion pits induced local stress concentration. Stress analysis indicated severe stress singularities at the edges of the contact zone, which facilitated cycle slip and fatigue crack nucleation. Recommendations were also made for improving the fatigue performance of the suspension springs.

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