Cylindrical bending of metal strips

Tongxi Yu, W. Johnson
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引用次数: 13

Abstract

AbstractCopper, brass, and mild steel strips were deformed under elastic-plastic bending in cylindrical dies by matched cylindrical punches, without the use of any lubrication, to study the history of the enforced deformation. Separation between the punch and the strip, the punch load-displacement relationship, and the elastic springback are described. The deformation model is found to be dominated by the parameter (Y/E) (l/h), where Y is the material yield stress, E its Young's modulus, h the strip thickness, and I the strip length. When the value of this parameter is small, the strip is described as ‘stiff‘, and when it is large, ‘slender‘. The complete deformation process may be divided into several stages, each associated with a number of loading points. The phenomena of multi-point loading and the effects of largest punch load have been successfully incorporated into an explanation of the non-uniformity in final curvature of the strip after springback.
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金属条的圆柱形弯曲
摘要在不使用任何润滑的情况下,利用配合的圆柱冲头对铜、黄铜和低碳钢带材进行弹塑性弯曲变形,研究其强制变形的历史。阐述了冲头与带材的分离、冲头的载荷-位移关系以及弹性回弹。变形模型受参数(Y/E) (l/h)控制,其中Y为材料屈服应力,E为材料杨氏模量,h为带材厚度,I为带材长度。当该参数的值较小时,将带材描述为“刚性”,当该参数较大时,将带材描述为“细长”。整个变形过程可分为几个阶段,每个阶段都有若干加载点。多点加载现象和最大冲头载荷的影响已经成功地解释了带钢回弹后最终曲率的不均匀性。
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