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首页> 外文期刊>Journal of Solid Mechanics and Materials Engineering >Optimum Design of Thin Walled Tube on the Mechanical Performance of Super Stud Bolt
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Optimum Design of Thin Walled Tube on the Mechanical Performance of Super Stud Bolt

机译:薄壁管对超级螺栓性能的优化设计

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摘要

The bolts and nuts are widely used in various fields as important joining elements with long history. However, screw loosening is easily induced by vibration and external loads, and sometimes causes very serious accident without notice. In this paper, a special stud bolt named “Super Stud Bolt (SSB)” is studied, which can prevent loosening effectively. Between the upper threads and the lower threads, there is a thin walled tube which can be deformed along the axial direction so that the phase difference is designed and SSB is developed. During fastening, this phase difference induces the contrary forces on the surfaces of the upper threads and the lower threads, which bring out the anti-loosening performance. In this study, both courses of processing and fastening are simulated, and the relationship between axial force and displacement is illustrated with the finite element method. In this analysis, the large plastic strains and elastic-plastic large deformation theory are applied to 4 nodes axial symmetric FEM models. Through the comparison among the results, the desirable range of the phase difference of lower and upper threads is decided. Since the thin walled tube is the heart of anti-loosening mechanism, optimum original dimensions are discussed in this study.
机译:螺栓和螺母作为具有悠久历史的重要连接件广泛应用于各个领域。但是,螺钉的松动容易受到振动和外部载荷的影响,有时会引起非常严重的事故,而不会引起注意。本文研究了一种名为“超级双头螺栓(SSB)”的特殊双头螺栓,它可以有效防止松动。在上螺纹和下螺纹之间有一个薄壁管,该管可以沿轴向变形,从而设计出相位差并开发出SSB。在紧固期间,该相差在上线和下线的表面上引起相反的力,这带来了防松性能。在这项研究中,模拟了加工和紧固过程,并用有限元方法说明了轴向力与位移之间的关系。在此分析中,将大塑性应变和弹塑性大变形理论应用于4个节点的轴对称FEM模型。通过结果之间的比较,确定下和上螺纹的相位差的理想范围。由于薄壁管是防松机理的核心,因此在本研究中讨论了最佳的原始尺寸。

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