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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Shape optimization methodology of clinching tools based on Bezier curve
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Shape optimization methodology of clinching tools based on Bezier curve

机译:基于Bezier曲线的铆接工具形状优化方法

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The purpose of this paper is to propose a methodology for the strength optimization of mechanical clinched joint. To this end, a mathematical optimization model which introduces ductile damage constraint to prevent the onset of fracture during the clinch joining of thin metal sheets is proposed. Meanwhile, Bezier curve is used to describe the outline shape of the clinching die, which can be used to search a lot of potential shapes by changing the location of the control point. In addition, a new solving method based on the direct communication between FE-analysis and genetic algorithm (GA) is proposed. The results indicate that the shape of the die groove can be replaced by arc curve to simplify the structure of the clinching tools for general applications. If the requirement of the joint strength is not very high or the ductility of the sheet is good, the clearance between the lower sheet and the die groove is not necessarily equal to zero, but if the requirement is very high or the ductility is poor, the zero clearance is very necessary.
机译:本文的目的是提出一种方法,用于机械铆接接头的强度优化。为此,提出了一种数学优化模型,其提出了一种延伸延展性损伤约束,以防止薄金属板的铆接连接期间断裂发作。同时,使用Bezier曲线来描述铆接模具的轮廓形状,其可以通过改变控制点的位置来搜索大量潜在的形状。此外,提出了一种基于FE分析与遗传算法(GA)之间的直接通信的新求解方法。结果表明,模具槽的形状可以通过电弧曲线代替,以简化用于一般应用的铆接工具的结构。如果关节强度的要求不是非常高的,或者片材的延展性良好,则下片和模槽之间的间隙不一定等于零,但如果要求非常高或延展性差,零间隙是非常必要的。

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