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Optimizing study of SLBs for higher anti-loosening performance

机译:优化SLB以获得更高的防松性能

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The authors had earlier proposed the concept of an SLB (step-lock-bolt), which has some steps on the lead helix, with an objective of developing an anti-loosening screw fastener. The SLB produced had eight steps in a pitch and 45 percent flat part in which the lead angle is nil. It was found that the SLB does not easily loosen when it was fastened with a clamping force of 16 +- 4 kN, because it suppresses the bolt torsion which is one of the causes of loosening.In this paper, a newly produced SLB, which has 10 steps and 50 percent flat part, is reported. The aim of developing this screw fastener is to prevent loosening even when a high clamping force cannot be applied, which is the case when wooden or rubber plates are fastened. The importance of the number of steps in a pitch and the ratio of the flat part in the anti-loosening performance of the SLB are discussed. The matching of the hardness of bolt and nut for preventing loosening is also discussed. The contact state between the bolt screw thread and nut is investigated carefully. As a result, the newly produced SLB prevents loosening even when the applied clamping force is 4 kN. The higher ratio of the flat part makes the SLB exhibit better performance.
机译:作者早些时候提出了SLB(阶梯锁紧螺栓)的概念,它在导程螺旋上有一些台阶,目的是开发一种防松的螺丝紧固件。所生产的SLB在螺距中有8个台阶,扁平部分为45%,其中超前角为零。发现以16±4 kN的夹紧力紧固SLB时不容易松动,因为它可以抑制螺栓松动,这是松动的原因之一。报告有10个步骤和50%的平坦部分。开发这种螺钉紧固件的目的是即使在不能施加高夹紧力的情况下也防止松动,这是在固定木板或橡胶板时的情况。讨论了节距中台阶数的重要性和平坦部分的比率对SLB的防松性能的重要性。还讨论了螺栓和螺母的硬度匹配以防止松动。仔细研究螺栓螺纹与螺母之间的接触状态。结果,即使当施加的夹紧力为4 kN时,新生产的SLB也可以防止松动。较高的扁平部分比例使SLB表现出更好的性能。

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