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ANALYTICAL RESEARCH ON MECHANISM OF BOLT LOOSENING DUE TO LATERAL LOADS

机译:侧向载荷引起的螺栓松动机理的分析研究

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摘要

It is well known that bolted joints are loosened when lateral loads are applied after they are tightened. This phenomenon is proved by experiments or by the real operations, but the mechanism is not yet elucidated why the bolts are loosened. In this paper several finite element analyses were performed and reproduced the phenomenon that the bolts are loosened, or the nut rotates, when the lateral loads are applied. Based on this result, the mechanism of the bolt loosening (the nut rotation) is investigated. Additionally, it is also examined that bolts are more difficult to be loosened when double nut procedure is used or that they are almost not loosened when the eccentric bolt/nut systems are used. As the result, the bolt loosening is caused by the shape of the thread that is the wedge inclined to the bolt axis. When lateral loads are applied, the bolt/nut threads slide relatively, which causes the relative nut rotation. When the loads are released, the bolt returns to the normal position keeping the relative slide to the nut. This nut rotation causes a reduction of the bolt tension, too. Although the magnitude of this rotation may be quite small, many times of repetition makes the bolt loosened.
机译:众所周知,当在拧紧后施加横向载荷时,螺栓接头被松开。通过实验或实际操作证明这种现象,但尚未阐明机制尚未阐明为什么螺栓松动。在本文中,在施加横向载荷时,进行几种有限元分析并再现螺栓被松动的现象,或者螺母旋转。基于该结果,研究了螺栓松开(螺母旋转)的机制。另外,还检查了使用双螺母程序或当使用偏心螺栓/螺母系统时几乎不会松动时,螺栓更难以松动。结果,螺栓松动是由螺纹的形状引起的,该螺纹是倾斜于螺栓轴线的楔形物。当施加横向载荷时,螺栓/螺母螺纹相对滑动,这导致相对螺母旋转。当载荷被释放时,螺栓将保持相对滑块的正常位置返回到螺母上。该螺母旋转也导致螺栓张力的减小。虽然这种旋转的大小可能是非常小的,但多次重复使得螺栓松开。

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