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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Reduction of random seams in hot rolling through FEM based sensitivity analysis
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Reduction of random seams in hot rolling through FEM based sensitivity analysis

机译:通过基于有限元分析的敏感性分析减少热轧中的随机接缝

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In hot rolling, the thermomechanical design of the rolling sequence is often based on the design of the roll grooves and the selection of processing parameters. The sensitivity of this design to the variations in the processing parameters often results in the formation of random defects such as rolled seams. In this paper, a unique minimum sensitivity design approach is proposed that eliminates the formation of seams without affecting the finishes rnicrostructure. Central to this approach is a microstructure based finite element model for simulating hot rolling, a seam formation criteria based on the groove underfill, and the manipulation of least constrained passes to find the design that least sensitive to process variations. The approach is applied to an industrial roll-pass design to demonstrate its efficacy. It is seen that the new robust design provides a wide working window for the roll-pass settings for seamless rolling of bars, and at the same time provides for acceptable microstructure.
机译:在热轧中,轧制顺序的热机械设计通常基于辊槽的设计和工艺参数的选择。这种设计对加工参数变化的敏感性常常导致形成随机缺陷,例如轧制接缝。在本文中,提出了一种独特的最小敏感度设计方法,该方法可以消除接缝的形成而不影响精加工的显微组织。该方法的核心是用于模拟热轧的基于微结构的有限元模型,基于凹槽底部填充的接缝形成标准以及对最小约束行程的操纵,以找到对工艺变化最不敏感的设计。该方法应用于工业滚动设计以证明其功效。可以看出,新的坚固设计为无缝轧制轧制道次设置提供了广阔的工作范围,同时还提供了可接受的微结构。

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