螺栓连接
夹紧
洗衣机
结构工程
弹簧(装置)
振动
机械接头
紧固件
接头(建筑物)
材料科学
扭矩
超声波传感器
弹簧系统
流离失所(心理学)
搭接接头
工程类
复合材料
声学
机械工程
有限元法
心理学
物理
心理治疗师
热力学
作者
Matthew Marshall,Roger Lewis,Thomas P. Howard,Henry Brunskill
标识
DOI:10.1177/0954406211429758
摘要
Self-loosening of bolted joints in response to vibration can lead to the catastrophic failure of a range of engineering components and structures. Many techniques employed to study this phenomenon focus on directly measuring the pre-load remaining in the bolt itself, and offer little insight into the behaviour of the clamped interface. In this study, a non-intrusive ultrasonic reflection-based technique is used to first characterize interface pressure in the joint, and then determine the rate at which relaxation occurs. A key advantage of the technique is that it does not require the modification of the contact conditions, and rather utilizes the spring-like behaviour of a rough surface interface when subject to ultrasonic excitation. A series of different bolt torques were investigated, along with the inclusion of both plain and spring washers under the bolt head. All test samples were subjected to an oscillating fixed–displacement vibration cycle. An initial rapid reduction in interface clamping pressure was observed, followed by a more steady-state period. Increasing bolt torque was seen to enhance joint integrity, whereas both the plain and spring washers showed little improvement. The spring washer was observed to extend the secondary steady-state phase of loosening, though as the majority of pre-load was removed prior to this period any change was largely unbeneficial.
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