The Analysis of Loosening of Bolt Connection Due to Structural Vibration Through Changes in Dynamic Characteristics

Rahmatsyah Maksum Ramsi, M. Rusli, M. Bur
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Abstract

Bolted joints are generally used to connect two or more mechanical structures due to their ease of assembly and disassembly for maintenance. However, the problem of vibration is one of the main challenges when the tightness of the bolted joints is insufficient, causing failures such as looseness and resulting in disconnection. Looseness is the most common cause of dynamically loaded bolted joint structure failure. This study tested a simple bolt joint structure to observe the looseness indication of the bolt joint after it was vibrated using a shaker in a single-frequency excitation. A freely fixed beam consisting of two beams connected by a bolt and subjected to varying bolt tightening torques. Then the response measurement is carried out by recording the FRF graph obtained from loosening and tightening bolt torque effects. Modal parameters such as personal frequency and damping ratio were collected through experimental modal analysis (EMA). It was found that the structure’s vibration could change the conditions of loosening or lower tightening torque indicated by shifting the structure’s natural frequency. In addition, the damping characteristics are also affected by changes in the tightening torque. Especially when conditions are loose, the damping ratio becomes much higher than that of tightening.
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结构动力特性变化引起的螺栓连接松动分析
螺栓连接通常用于连接两个或多个机械结构,因为它们易于组装和拆卸以进行维护。然而,当螺栓连接的紧密性不足时,振动问题是主要挑战之一,导致松动等故障并导致断开。松动是动加载螺栓连接结构失效的最常见原因。本研究对一个简单的螺栓连接结构进行了试验,观察了在单频激励下用激振器振动螺栓连接后的松动迹象。一种自由固定的梁,由两根由螺栓连接的梁组成,并受不同螺栓拧紧扭矩的影响。然后通过记录螺栓松动和拧紧力矩效应的频响图进行响应测量。通过实验模态分析(EMA)收集了个人频率和阻尼比等模态参数。研究发现,结构的振动可以通过改变结构的固有频率来改变松动或降低拧紧力矩的条件。此外,阻尼特性还受拧紧力矩变化的影响。特别是当条件宽松时,阻尼比大大高于收紧比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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