Virtual plastic injection molding based on virtual reality technique

被引:0
作者
Bin Ma
ZhiYing Guo
HuaMin Zhou
DeQun Li
机构
[1] Shanghai Jiaotong University,National Die and Mold CAD Engineering Research Center
来源
The International Journal of Advanced Manufacturing Technology | 2007年 / 31卷
关键词
Virtual reality; Virtual manufacturing; Plastic injection molding; Virtual assembly; Moving simulation; Collision detection;
D O I
暂无
中图分类号
学科分类号
摘要
Virtual reality (VR), as a new technology, is integrated with software systems for engineering, design, and manufacturing. The integration has given a new impetus to the field of computer-aided engineering. This paper presents a research effort aimed at creating a virtual plastic injection molding (VPIM) environment, which is designed and implemented based on techniques such as VR, multidiscipline simulation, and scientific visualization. The VPIM system includes two parts: designing in VPIM and evaluation in VPIM. It is the first system to scrutinize virtual prototype mock-ups of new products, machines and production processes in interactive graphic simulation. During the evaluating phase, coupled to appropriate computer-based reasoning and decision-support tools and driven by data from the real manufacturing environment, a realistic impression of the process of plastic injection molding and manufacture can be achieved and can be changed interactively, and it is possible to thoroughly examine the planned system and eventually detect and remove any defects and inadequacies. The construction approach and key techniques (FEA, virtual assembly, stereoscopic display, a triangulated boundary-representation of an approximating polyhedron, collision detection, etc.) of the system are described in detail. The overall system is a powerful new approach for highly relevant industrial application of VPIM which focuses on the construction and assessment of alternate manufacturing sequences and mold design in an early design stage. Improvement of the design and manufacturing process will lead to better design and reduced development time and cost.
引用
收藏
页码:1092 / 1100
页数:8
相关论文
共 27 条
[1]  
Zhou H(2001)A numerical simulation of the filling stage in injection molding based on a surface model Adv Polym Technol 20 125-131
[2]  
Li D(2001)A numerical filling simulation of injection molding using a 3D surface model J Inj Molding Technol 5 31-37
[3]  
Zhou HY(2002)A remote injection moulding simulation system based on the internet and the web Int J Adv Manuf Technol 19 722-726
[4]  
Li D(2000)How to access CAE injection mold design softwares for production applications SPE ANTEC Tech Papers 35 356-359
[5]  
Zhou H(1997)Virtual assembly using virtual reality techniques Comput Aided Des 29 575-584
[6]  
Zhang Y(1998)Virtual reality: a tutorial Electroencephalogr Clin Neurophysiol 109 1-9
[7]  
Li D(1999)Virtual reality movies—real-time streaming of 3D objects Comput Networks 31 2215-2225
[8]  
Palit K(2000)Virtual planning of hip operations and individual adaption of endoprostheses in orthopaedic surgery Int J Med Informatics 58–99 21-28
[9]  
Chen IJ(2002)A framework for immersive FEM visualization using transparent object communication in a distributed network environment Adv Eng Softw 33 453-459
[10]  
Jayaram S(1999) Multi-layered imposters for accelerated rendering Eurographics’99 3 437-464