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Modeling stick-slip in bolted joint tightening process

机译:螺栓连接工艺中的粘贴防滑

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摘要

Stick-slip affects torque-preload relationship during bolted joint tightening process. Its occurrence is not always possible to avoid and it can lead to an unreliable joint. In this study, tightening process was investigated and, in a first approach, modeled through theoretical analysis. In a second approach, experimental data was explored statistically using Analysis of Variance (ANOVA) and F-Test. Coefficient of global friction and stick-slip parameters were modeled and added to the first model. The final semi-empirical model was able to reproduce the variation of the friction and to predict stick-slip occurrence. Low errors were obtained in the comparison with experimental data for both cases, with and without the occurrence of stick-slip. The proposed semi-empirical model provides mathematical approach for accurately predicting stick-slip and its characteristics in a specific condition of bolt-nut surface treatment.
机译:粘滑在螺栓连接过程中影响扭矩预加载关系。 它的发生并不总是可以避免,它可以导致一个不可靠的关节。 在这项研究中,研究了紧缩过程,并以第一种方法,通过理论分析建模。 在第二种方法中,使用差异分析(ANOVA)和F检验进行统计探索实验数据。 模拟全局摩擦和粘滑参数系数并将其添加到第一模型中。 最终的半实证模型能够再现摩擦的变化并预测粘滑发生。 在与两种情况的实验数据的比较中获得了低误差,随着粘滑的情况而没有发生。 所提出的半实证模型提供了准确地预测钢螺母表面处理特定条件下粘滑及其特征的数学方法。

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