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Optimal Design of Cap Screw Thread Runout for Transversal and Axial Loads

机译:横向和轴向载荷的带帽螺纹跳动的优化设计

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The presented work is focused on a design of a new thread runout of screws and bolts subjected by transversal loads. These types of loads can occur in a normal service of bolt connection and they can lead to a failure. Two failure modes of the screw could occur: self-loosening of the screw or fatigue failure of the screw. The latter failure mode is analysed in the presented project focusing on an improvement of the existing design of the screws in terms of fatigue failure. The fatigue fracture of the screws, which are loaded by the transversal load, occurs normally in a groove of a first thread run of an engagement. A shape of the thread runout has some influence on stress in the thread therefore that shape can optimize to minimize the thread stress. Considering this, free shape optimisation was employed to find the best runout shape. As results of the presented work, the optimum design of the thread runout is proposed for the analysed conditions. The elaborated design of the cap screw brings significant improvement of the lifetime when the cycling tangential load occurs. In addition, the new design gives the better structural performance than the existing designs also for the cycling normal loads.
机译:提出的工作集中于设计新的承受横向载荷的螺栓和螺钉的螺纹跳动。这些类型的载荷会在螺栓连接的正常使用中发生,并可能导致故障。螺钉可能出现两种故障模式:螺钉自松动或螺钉疲劳失效。在提出的项目中分析了后者的失效模式,重点是在疲劳失效方面对螺钉的现有设计进行了改进。由横向载荷加载的螺钉的疲劳断裂通常发生在接合的第一螺纹槽的凹槽中。螺纹跳动的形状会对螺纹中的应力产生一些影响,因此可以优化形状以最大程度地减小螺纹应力。考虑到这一点,采用自由形状优化来找到最佳的跳动形状。作为所提出的工作的结果,针对所分析的条件提出了螺纹跳动的最佳设计。发生周向切向载荷时,带帽螺钉的精巧设计显着提高了使用寿命。此外,对于循环法向载荷,新设计比现有设计具有更好的结构性能。

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