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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Lateral Forces in Rolling-Cut Shearing and Their Consequences on Common Edge Defects
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Lateral Forces in Rolling-Cut Shearing and Their Consequences on Common Edge Defects

机译:横向剪切的横向力及其对共同边缘缺陷的后果

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This paper deals with the detailed analysis of the lateral process forces in rolling-cut shearing of heavy steel plates and their impact on edge defects. Rolling-cut shearing is still the most common method of heavy-plate side trimming. However, this method can entail edge defects like uneven longitudinal shape as well as burr and fractures in the area of the cut-changeover (beginning and end of the periodical cuts). In the existing literature, neither the root cause of these edge defects nor their nexus with the upper blade trajectory (blade drive-kinematics) has been analyzed in detail. In this work, these issues will be explored based on the finite element method (FEM) simulations and measurements from an industrial plant. The complex interrelation between drive-kinematics, varying lateral force, unintended lateral motion of the upper blade, unintended variation of the blade clearance, and quality defects is analyzed. The variation of the lateral force is identified as the root cause of such quality defects and a physical explanation for variations of the lateral force is given. The detailed understanding of the shearing process serves as a solid basis for an optimization and re-design of the drive-kinematics in a future work. Measurements from an industrial plant and simulation results show good agreement and thus confirm the theory. The results are transferable to other rolling-cut trimming shears.
机译:本文涉及重型钢板滚动切割剪切中的横向工艺力的详细分析及其对边缘缺陷的影响。轧制剪切仍然是重型板侧修剪的最常见方法。然而,这种方法可以在切换转换区域(周期性切割的开始和结束)中避免像不均匀的纵向形状以及毛刺和裂缝等边缘缺陷。在现有文献中,已经详细分析了这些边缘缺陷的根本原因和具有上刀片轨迹(刀片驱动运动学)的Nexus。在这项工作中,将根据有限元方法(FEM)模拟和工业厂的测量来探索这些问题。分析了驱动运动学之间的复杂相互作用,改变横向力,上叶片的非预期的横向运动,意外变化,刀片间隙,质量缺陷。横向力的变化被鉴定为这种质量缺陷的根本原因,并且给出了横向力的变化的物理说明。详细了解剪切过程是在未来工作中的优化和重新设计驱动运动学的优化和重新设计的坚实基础。工业厂和仿真结果的测量表现出良好的一致性,从而证实了理论。结果可转移到其他轧制切割修剪剪切。

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