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首页> 外文期刊>International Journal of Rotating Machinery >An Analytical Model for Rotation Stiffness and Deformation of an Antiloosening Nut under Locking Force
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An Analytical Model for Rotation Stiffness and Deformation of an Antiloosening Nut under Locking Force

机译:锁紧力下防松螺母旋转刚度和变形的解析模型

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Screw fasteners are undoubtedly one of the most important machine elements due to their outstanding characteristic to provide a high clamping force just with a simplified design. However, the loosen vibration is their inherent and inevitable fault. The friction locking approach is one of the basic locking fastener categories by enhancing the bearing load on the contact surface of thread by applying a locking force on an antiloosening nut. This locking force may cause more severe deformation in the nut. The contact stress distribution on the nut would be changed and that can cause the variation of the friction torque for the bolt joint. However, there exists no established design calculation procedure that accounts for the rotation deformation and its stiffness of the antiloosening nut under the locking force. The main objective of the work is to develop an analytical solution to the rotation deformation problem encountered in the antiloosening nut. The proposed model is supported by comparison with numerical finite element analysis of different sizes of joint elements and different applied forces.
机译:螺钉紧固件无疑是最重要的机械元件之一,因为它们具有出色的特性,仅需简化的设计即可提供较高的夹紧力。但是,松动的振动是其固有的和不可避免的故障。摩擦锁定方法是基本的锁定紧固件类别之一,它通过在防松螺母上施加锁定力来增强螺纹接触表面上的轴承载荷。该锁定力可能导致螺母发生更严重的变形。螺母上的接触应力分布将发生变化,这可能导致螺栓接头的摩擦扭矩发生变化。但是,尚无既定的设计计算程序来考虑防松螺母在锁定力作用下的旋转变形及其刚度。这项工作的主要目的是开发一种解决方案,以解决防松螺母中遇到的旋转变形问题。通过对不同大小的节点和不同的作用力进行数值有限元分析的比较,为所提出的模型提供了支持。

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