首页> 外文会议>5th ISSAT International Conference on Reliability and Quality in Design, 5th, Aug 11-13, 1999, Las Vegas, Nevada U.S.A. >A LOAD RETENTION MODEL AND FAILURE CRITERION FOR BOLT LOOSENESS TO IMPROVE JOINT RELIABILITY IN AUTOMOTIVE APPLICATIONS
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A LOAD RETENTION MODEL AND FAILURE CRITERION FOR BOLT LOOSENESS TO IMPROVE JOINT RELIABILITY IN AUTOMOTIVE APPLICATIONS

机译:汽车应用中螺栓松动的载荷保持模型和失效准则

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摘要

Initially tightened bolts can loosen when subjected to cyclic loads. The loosen bolts may not only make the vehicle noisy, but also cause a severe vehicle degradation and reduce its service life. Studies show that many engineering problems are caused by loosening bolts at the joints. Bolt looseness is a complicated problem affected by many factors. In this paper, experimental studies were conducted on the bolt looseness behavior of a side mounted stabilizer bar attachment joint. From the results of the experiments, we have concluded that initial clamping force, bolt size, surface finish, and back retention plate were the four most significant variables affecting the bolt looseness. By controlling these factors and optimizing the mounting configuration, the joint integrity problems caused by bolt looseness could be greatly improved. It was also found that the relation of the clamping force versus the number of load cycles could be described by a logarithmic relationship. Based on this relationship, we developed a load retention model for the stabilizer bar attachment that could calculate the remaining clamping force of a bolt joint at any number of cycles of load applications. Furthermore, with the slope of the equation and the initial clamping conditions, it is possible to predict whether a bolt is going to loosen. Thus provide a useful tool for improving the reliability of the bolt joint design.
机译:承受周期性载荷时,最初拧紧的螺栓可能会松动。松动的螺栓不仅可能使车辆嘈杂,还会导致严重的车辆退化并缩短其使用寿命。研究表明,许多工程问题是由于接头处的螺栓松动引起的。螺栓松动是一个受许多因素影响的复杂问题。在本文中,对侧面安装的稳定杆连接接头的螺栓松动行为进行了实验研究。根据实验结果,我们得出结论,初始夹紧力,螺栓尺寸,表面光洁度和背面固定板是影响螺栓松动的四个最重要的变量。通过控制这些因素并优化安装配置,可以大大改善由螺栓松动引起的接头完整性问题。还发现,夹紧力与负载循环数的关系可以通过对数关系来描述。基于这种关系,我们开发了用于稳定杆附件的载荷保持模型,该模型可以计算在任意数量的载荷应用循环下螺栓接头的剩余夹紧力。此外,利用方程式的斜率和初始夹紧条件,可以预测螺栓是否要松动。从而为提高螺栓接头设计的可靠性提供了有用的工具。

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