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Equivalent axial stiffness of various components in bolted joints subjected to axial loading

机译:承受轴向载荷的螺栓连接中各个组件的等效轴向刚度

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Managing the axial stiffness of various components in a bolted joint is a major industrial concern for modelling different tightening processes and for accurate fatigue dimensioning. This paper presents a new approach for calculating the axial stiffness of the several elements of a bolt (the head and the engaged part), the nut and the fastened plates. Finite element modelling based on deformation energy improves the existing models and take in to account the type of materials and coefficients of friction of various elements in contact. From these corrections, approaches for axial stiffness calculation based on empirical formulas are proposed for easier application and for future FE modelling bolted joints using beam elements. Finally, the theoretical study is validated by an original experimental approach.
机译:对于建模不同的拧紧过程和精确确定疲劳尺寸,管理螺栓连接中各个组件的轴向刚度是主要的工业问题。本文提出了一种新的方法来计算螺栓(头部和被接合部件),螺母和紧固板的几个元件的轴向刚度。基于变形能量的有限元建模改进了现有模型,并考虑了材料类型和接触中的各种元素的摩擦系数。通过这些修正,提出了基于经验公式的轴向刚度计算方法,以便于应用,并为将来使用梁单元的有限元建模螺栓连接建模。最后,理论研究得到了原始实验方法的验证。

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