螺栓损失条件下钢螺栓连接的热强度分析

IF 2.2 3区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY Eksploatacja I Niezawodnosc-Maintenance and Reliability Pub Date : 2022-03-15 DOI:10.17531/ein.2022.2.8
R. Grzejda
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引用次数: 11

摘要

本文的目的是分析一个典型的螺栓连接中某些紧固件失去承载能力的情况。所提出的试验是数值的,涉及非对称螺栓连接。将连接件中的连接单元建模为三维有限元,将紧固件处理为刚性头和螺母以及它们之间的柔性梁组成的混合模型。螺栓连接首先按照六种不同的张紧顺序使用标准化的力进行预加载。所有螺栓张紧后,取下所选螺栓,模拟螺栓损伤。然后对连接进行了温度范围为20至600°C的外部负载测试。在连接运行阶段,研究了连接松动对剩余螺栓载荷的影响。将计算结果与健康螺栓连接的试验结果进行了比较。结果表明,在破坏状态下,连接的承载力下降了13%。
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Thermal strength analysis of a steel bolted connection under bolt loss conditions
The aim of the paper is to analyse an exemplary bolted connection under the conditions of loss of bearing capacity of some fasteners in the connection. The presented tests are numerical and concern an asymmetric bolted connection. The joined elements in the connection were modelled as 3D finite elements, and the fasteners were treated as hybrid models consisting of rigid heads and nuts, and flexible beams between them. The bolted connection was first preloaded according to six different tensioning orders using a standardised force. After all bolts were tensioned, the selected bolts were removed, simulating bolt damage. The connection was then tested for external loads with temperatures ranging from 20 to 600°C. The influence of loosening the connection on the load in the remaining bolts at the operational stage of the connection was investigated. The calculation results were compared with the test results for a healthy bolted connection. It was shown that the bearing capacity of the connection in the damaged state decreased by 13%.
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来源期刊
CiteScore
5.70
自引率
24.00%
发文量
55
审稿时长
3 months
期刊介绍: The quarterly Eksploatacja i Niezawodność – Maintenance and Reliability publishes articles containing original results of experimental research on the durabilty and reliability of technical objects. We also accept papers presenting theoretical analyses supported by physical interpretation of causes or ones that have been verified empirically. Eksploatacja i Niezawodność – Maintenance and Reliability also publishes articles on innovative modeling approaches and research methods regarding the durability and reliability of objects.
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