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A four-parameter model for nonlinear stiffness of a bolted joint with non-Gaussian surfaces

机译:具有非高斯表面的螺栓接头非线性刚度的四参数模型

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摘要

The nonlinear mechanics modeling is proposed to describe the nonlinear stiffness of the bolted joint interfaces induced by the stick-slip friction behaviors. By combining the microscale contact mechanics of the asperity interaction, the statistical analysis of the non-Gaussian surfaces is conducted to extract a four-parameter model to characterize the nonlinear softening stiffness and residual stiffness of the bolted joints. The Masing principle is then implemented to model the tangential hysteresis nonlinearity of the oscillatory loading process. Comparison with the experimental results of a lap-type bolted joint is performed to validate the proposed model and investigate the effects of the bolt preload. The results show that the proposed model can be used to simulate the nonlinear stick-slip behaviors of the bolted joint interfaces, and the prediction of the model parameters agrees well with the identification of the experimental results. Larger bolt preload will induce a larger critical stick-slip force, stronger nonlinearity, and better symmetry of the hysteresis nonlinearity, but hardly affect the residual stiffness.
机译:提出了非线性力学建模,以描述粘滑摩擦行为引起的螺栓接口的非线性刚度。通过组合粗糙相互作用的微观接触机制,进行非高斯表面的统计分析以提取四参数模型,以表征螺栓接头的非线性软化刚度和残余刚度。然后实施粉碎原理以模拟振荡加载过程的切向滞后非线性。进行与搭接螺栓接头的实验结果的比较,以验证所提出的模型并研究螺栓预载荷的影响。结果表明,该建议的模型可用于模拟螺栓连接接口的非线性粘滑行为,并且模型参数的预测与实验结果的鉴定很好。较大的螺栓预载将引起更大的临界粘性力,更强的非线性和更好的滞后非线性对称性,但几乎不会影响残余刚度。

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    《Acta Mechanica 》 |2020年第5期| 共14页
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  • 正文语种 eng
  • 中图分类 力学 ;
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