期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
F型强火力燃气灶面板成形、翻边工艺及其模具
1
作者 苏朝胜 王海才 董才胜 《锻压机械》 1997年第4期17-18,共2页
主要介绍了强火力燃气灶不锈钢面板的结构特点,以及根据这些特点采用强压边措施、实现一次成形的工艺和模具设计。
关键词 不锈钢成形 面板 燃气灶 翻边 模具
下载PDF
Plastic forming simulations of cold isostatic pressing of selective laser sintered components 被引量:2
2
作者 杜艳迎 史玉升 魏青松 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第5期1118-1122,共5页
A combined method of selective laser sintering (SLS) and cold isostatic pressing (CIP) was applied to manufacturing metal parts rapidly. Finite element method was used to predict final dimensions and decrease cost... A combined method of selective laser sintering (SLS) and cold isostatic pressing (CIP) was applied to manufacturing metal parts rapidly. Finite element method was used to predict final dimensions and decrease cost. The simulations of CIP of selective laser sintered parts were carried out by Drucker-Prager-Cap constitutive model with ABAQUS computer program. The property of metal powder was measured by CIP experiments. The results show the rubber bag and the friction coefficient have little influence on results of simulations. The parts only have uniform shrinkage and have no obvious distortion in shape. The results of simulations show a good agreement with the experimental results and the calculated results, indicating that the Drucker-Prager-Cap model is an effective model to simulate CIP process. The simulations could give a useful direction to forming process of the CIP of selective laser sintered components. K 展开更多
关键词 cold isostatic pressing stainless steel plastic forming SIMULATION
下载PDF
Numerical study on forming complex fitting body on end of integrated stainless steel pipe without welds 被引量:2
3
作者 张大伟 赵升吨 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期269-276,共8页
It is necessary to use the integrated stainless steel pipe having two fitting bodies without welds while train travelling at high speed. In order to form this type of integrated stainless steel pipe, the method of pre... It is necessary to use the integrated stainless steel pipe having two fitting bodies without welds while train travelling at high speed. In order to form this type of integrated stainless steel pipe, the method of preforming combined finish forming process is developed. The preforming process is characterized by flaring combined upsetting for left fitting body which is like a flange, and is characterized by tube axial compressive process under die constraint for right fitting body which is like a double-wall pipe. The finite element simulations of the processes are carried out by software package DEFORM, and the results indicate that: 1) left or right fitting body can be formed by a two-step forming process without folding and under-filling defects; 2) by using two-step forming, strain and stress in left fitting body are larger than those in right fitting body, and deformation in right fitting body is more homogenous than the deformation in left fitting body; 3) two or more preforming steps may be needed for left fitting body considering the distributions of strain and stress. 展开更多
关键词 plastic forming hot forming flange joint integrated steel pipe finite element analysis
下载PDF
Stainless Steel Composite Integrated in Modern Facade Engineering
4
作者 Marc Tulke Jennifer Watzke +3 位作者 Michael Schomacker Alexander Brosius Janine Bach Helmut Hachul 《Journal of Mechanics Engineering and Automation》 2015年第8期427-434,共8页
This paper shows the results of characterising a stainless steel composite material for applications in facade engineering. A number of possible shapes generated with pneumatic stretch forming are presented as a resul... This paper shows the results of characterising a stainless steel composite material for applications in facade engineering. A number of possible shapes generated with pneumatic stretch forming are presented as a result of simulation studies. In this context a model of a possible facade combined from different shapes is created to show the optical effect of the simulated shapes. Additionally, the manufacturing of a device for pneumatic stretch forming is discussed and first results of transforming the stainless steel composite material with pneumatic stretch forming are shown. 展开更多
关键词 COMPOSITE design FACADES LIGHTWEIGHT pneumatic forming
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部