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EFFECT OF GROUND SURFACE DEPTH IN HELICAL COMPRESSION SPRING STRESSES

机译:地面深度对螺旋压缩弹簧应力的影响

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A prevalent coal mill design uses stiff compression springs to force rolls onto a rotating bowl to grind coal prior to combustion in a boiler. The springs are usually plain end (constant pitch) with ground flats at each end. Preloads on these springs are typically 10,0001b to 40,0001b. These springs most often fail in fatigue near the ground flat at ends of the spring. Detailed finite element analyses show that stress concentrations are developed near the flat surface at each end of the spring. First, this paper presents some field experience of spring failures. Then, a parametric study of the depth of the ground of a typical spring showing the effect of this geometry change on spring wire stress concentrations is presented. Modeling the solid volume of the helical spring wire with a mechanical drawing program was developed. This geometry was imported into a finite element program for the rest of the modeling. A cutting plane was used to depict the ground flat. The resulting volume was then meshed with solid finite elements. A force was applied to the ground flat area of one end to stress the spring while the other spring end is constrained in all six degrees of freedom. Some typical spring failures that occurred in the field are presented showing agreement between the predicted location of the stress concentration and the failures.
机译:流行的磨煤机设计使用坚硬的压缩弹簧将辊压到旋转的转鼓上,以便在锅炉中燃烧之前磨煤。弹簧通常为平端(恒定螺距),两端均带有接地平面。这些弹簧上的预紧力通常为10,0001b至40,0001b。这些弹簧通常会在弹簧末端的地面附近疲劳失效。详细的有限元分析表明,应力集中在弹簧两端的平坦表面附近形成。首先,本文介绍了弹簧失效的一些现场经验。然后,对典型弹簧的接地深度进行了参数研究,显示了这种几何形状变化对弹簧线应力集中的影响。开发了使用机械制图程序对螺旋弹簧线的固体体积进行建模的模型。对于其余的建模,此几何已导入到有限元程序中。切割平面用于描绘地面。然后将生成的体积与实体有限元啮合。在一端的接地平面上施加了一个力以使弹簧受力,而另一端的弹簧在所有六个自由度上受约束。给出了在现场发生的一些典型的弹簧失效,表明应力集中的预测位置与失效之间的一致性。

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