期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
一种等效拉延筋模型的建立及实现 被引量:9
1
作者 郭玉琴 姜虹 王小椿 《中国机械工程》 EI CAS CSCD 北大核心 2004年第20期1843-1847,共5页
将塑性变形中板料的拉弯理论与虚功原理相结合 ,在充分考虑板料流过拉延筋时塑性变形特点的基础上 ,建立了一种用于预测板料流过实际拉延筋时所承受约束力的等效拉延筋模型。该模型考虑了材料的各向异性、加工硬化特性及包辛格效应的影... 将塑性变形中板料的拉弯理论与虚功原理相结合 ,在充分考虑板料流过拉延筋时塑性变形特点的基础上 ,建立了一种用于预测板料流过实际拉延筋时所承受约束力的等效拉延筋模型。该模型考虑了材料的各向异性、加工硬化特性及包辛格效应的影响。通过对样例零件在DYNAFORM中的仿真分析 ,将该等效拉延筋模型与DYNAFORM系统所预测的拉延筋约束力的仿真效果进行了比较 。 展开更多
关键词 拉延筋 拉弯 虚功原理 板料成形加工 包辛格效应 DYNAFORM
下载PDF
Evaluation of Contact Pressure in Bending under Tension Test by a Pressure Sensitive Film
2
作者 Luis Fernando Folle Lirio Schaeffer 《Journal of Surface Engineered Materials and Advanced Technology》 2016年第4期201-214,共15页
The contact pressure acting on the sheet/tools interface has been studied because of growing the concern about the wear of tools. Recent studies make use of numerical simulation software to evaluate and correlate this... The contact pressure acting on the sheet/tools interface has been studied because of growing the concern about the wear of tools. Recent studies make use of numerical simulation software to evaluate and correlate this pressure with the friction and wear generated. Since there are many studies that determine the coefficient of friction in sheet metal forming by bending under tension (BUT) test, the contact pressure between the pin and the sheet was measured using a film that has the ability to record the applied pressure. The vertical force applied to pin was also measured. The results indicate that the vertical force is more accurate to set the contact pressure that using equations predetermined. It was also observed that the contact area between the sheet and the pin is always smaller than the area calculated geometrically. The friction coefficient was determined for the BUT test through several equations proposed by various authors in order to check if there is much variation between the results. It was observed that the friction coefficient showed little variation for each equation, and each one can be used. The material used was the commercially pure aluminum, alloy Al1100. 展开更多
关键词 Coefficient of Friction Sheet Metal Forming Process bending under tension Test Contact Pressure Technology Applied to Design
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部