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Investigation of a Geometrical Base Parameter Affecting on Bending Quality in a Thin Sheet Metal

机译:对薄板金属弯曲质量影响的几何基础参数研究

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A geometrical base parameter is investigated to determine the effect on a bending quality of a thin sheet metal for a roll forming process. This parameter is usually used as a criterion for the quality control of incoming materials for the bending process. This study was conducted by using a FEM simulation. The determination of the geometrical base parameter was considered as an appropriate and unique characteristic for each type of materials. To find this geometrical base parameter, the dimensions of the workpiece must be measured while loading. The sensitivity of the bend allowance of a sheet metal was dependent on this geometrical base parameter. The high geometrical base parameter was led to indicate the elongation and the strength of the material. The principles of the geometrical base parameter are dependent on several factors, such as the bending angle, bending radius, material thickness, bend allowance, bending types and mechanical properties of materials. The outcomes of this study could provide the information used to enhance the bend quality of the sheet metal.
机译:研究了几何基础参数,以确定对薄片金属的弯曲质量的影响,用于滚动成形过程。该参数通常用作弯曲过程的输入材料质量控制的标准。通过使用FEM模拟进行该研究。几何基础参数的测定被认为是每种材料的适当和独特的特征。要找到此几何基础参数,必须在加载时测量工件的尺寸。金属板的弯曲余量的敏感性取决于该几何基础参数。高几何基础参数被导致表示材料的伸长率和强度。几何基础参数的原理取决于若干因素,例如弯曲角度,弯曲半径,材料厚度,弯曲余量,弯曲类型和材料的机械性能。该研究的结果可以提供用于增强金属板弯曲质量的信息。

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