螺栓连接构件刚度和界面接触特性

Guoqing Yang, Jun Hong, Ning Wang, Linbo Zhu, Yucheng Ding, Zhaohui Yang
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引用次数: 12

摘要

包括螺栓和构件在内的螺栓连接在装配和操作条件下就像弹性弹簧一样。初始预紧力和工作力的承受和传递主要取决于螺栓及其相应构件的刚度。为了获得螺栓构件的变形机理,本文对螺栓构件刚度预测和界面接触条件表征进行了系统的研究。首先,将各螺栓连接的几何尺寸与相应的螺栓直径进行参数化处理,将尺寸除以螺栓直径即可方便地得到相应的无量纲尺寸;在此基础上,建立了一种新颖高效的有限元模型来模拟不同几何尺寸和材料性能的螺栓连接行为。在确定构件刚度后,通过特殊的有限元后处理,进一步确定了螺栓连接的界面接触特性,包括接触压力和无量纲接触直径。最后,采用作者修正的经验公式,通过逆计算方法得到了一系列的半顶点角。基于该方法的计算结果可为螺栓连接的设计和装配过程提供简单实用的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Member stiffnesses and interface contact characteristics of bolted joints
Bolted joints including bolts and members act like elastic springs under assembly and operating conditions. The bearing and transferring of the initial preload and the operating force are mainly dependent on the stiffness of both the bolts and their corresponding members. To obtain the deformation mechanism of bolted members, a systematic study on the prediction of the member stiffness and the characterization of the interface contact conditions is developed in this paper. Firstly, a parameterization process is performed to relate all the geometric dimensions of each bolted joint with the corresponding bolt diameter, so the corresponding dimensionless dimensions can be conveniently gotten by dividing the dimensions by the bolt diameter. Based on this, a novel and efficient finite element (FE) model is constructed to simulate the behaviors of bolted joints with different geometrical sizes and material properties. After characterizing the member stiffness, the interface contact characteristics of bolted joints including contact pressure and the dimensionless contact diameter are further identified through special FE post-processing efforts. Finally, a series of semi-apex angles are obtained through an inverse calculation approach in which an author-modified empirical formula is adopted. The calculation results based on the proposed method may be considered as a simple and practical guideline for the design and assembly processes of bolted joints.
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