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Loosening-resistance evaluation of double-nut tightening method and spring washer by three-dimensional finite element analysis

机译:三维有限元分析评估双螺母紧固方法和弹簧垫圈的耐松性

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摘要

The mechanisms of loosening-resistance components are investigated within the framework of the three-dimensional finite element method (FEM). In this paper, we have evaluated the ability of double-nut tightening method (DN) and spring washer (SW) to resist self-loosening due to transverse loading. We have found that if locking state is properly achieved in the tightening process, DN shows significant loosening resistance regardless of the magnitude of locking force. It was observed in this case that thread surface on the upper nut retains stuck state even if bearing-surface undergoes complete slip. However, if the locking process is not performed properly, the ability to resist loosening completely disappears. On the other hand, it is shown that SW accelerates loosening rotation of nut. The stuck area on the contact surfaces is reduced to two corner edges of the SW and the rotational force around these edges thus drastically leads to loosening before complete bearing-surface slip.
机译:在三维有限元方法(FEM)的框架内研究了抗松成分的机理。在本文中,我们评估了双螺母紧固方法(DN)和弹簧垫圈(SW)抵抗由于横向载荷引起的自松动的能力。我们发现,如果在拧紧过程中适当地达到锁定状态,则无论锁定力的大小如何,DN都会显示出明显的抗松动性。在这种情况下,即使轴承表面完全滑动,上螺母的螺纹表面仍保持卡住状态。但是,如果未正确执行锁定过程,则抵抗松动的能力将完全消失。另一方面,表明SW加速了螺母的松动旋转。接触表面上的粘附区域减少到SW的两个角边缘,因此围绕这些边缘的旋转力会在完全轴承表面滑移之前急剧导致松弛。

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