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Stress Analysis of Bolted Joints Part II. Contact and Slip Analysis of a Four Bolt Joint

机译:螺栓连接的应力分析第二部分。四螺栓接头的接触和滑动分析

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For up-to-date bolted joints, first of all in vehicles, high strength bolts of 10.9 or even 12.9 are used, which are preloaded up to 90% or even 100% of the yield strength. The primary aim of this high degree utilization is the weight reduction. For the analytic dimensioning of bolted joints, the VDI 2230 Richtlinien German standard [1] provides support. However, the analytic model can mostly consider the true structural characteristics only in a limited way. The analytic modeling is especially uncertain in case of multiple bolted joints when the load distribution among the bolts depends reasonably upon the elastic deformation of the participating elements in the joints over the geometry of the bolted joint. The first part of this paper deals with the problems of numerical modeling and stress analysis, respectively specifying the analytic dimensioning procedure by applying elastic or rather elastic-plastic material law. The error magnitude in bolted joint calculation was examined in case of omitting the existing threaded connection—between the bolt and the nut—in order to simplify the model. The second part of the paper deals with the dimensioning of stands and cantilevers’ multi-bolt fixing problems, first of all, with the load distribution among the bolts keeping in view the analysis of the local slipping relations. For demonstrating the above technique, an elaborated numeric procedure is presented for a four-bolted cantilever, having bolted joints pre-tightened to the yield strength.
机译:对于最新的螺栓连接,首先在车辆中,使用10.9甚至12.9的高强度螺栓,这些螺栓预加载的屈服强度最高可达90%甚至100%。这种高度利用的主要目的是减轻重量。对于螺栓连接的分析尺寸标注,VDI 2230 Richtlinien德国标准[1]提供了支持。但是,分析模型最多只能以有限的方式考虑真实的结构特征。当多个螺栓连接的情况下,当螺栓之间的载荷分布合理地取决于螺栓连接几何形状上的接头中参与元件的弹性变形时,分析模型尤其不确定。本文的第一部分讨论了数值建模和应力分析的问题,分别通过应用弹性或什至是弹塑性材料定律来指定解析尺寸标注过程。为了简化模型,在省略螺栓和螺母之间的现有螺纹连接的情况下,检查了螺栓连接计算中的误差幅度。本文的第二部分讨论了支架和悬臂的多螺栓固定问题的尺寸确定,首先,考虑了局部滑移关系的分析,螺栓之间的载荷分布。为了证明上述技术,提出了一种详细的数值程序,用于四螺栓悬臂,其中螺栓接头已预先拧紧至屈服强度。

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