INTEGRATION OF RAPID PROTOTYPING INTO PRODUCT DEVELOPMENT

被引:0
作者
ATWOOD, CL
MCCARTY, GD
PARDO, BT
BRYCE, EA
机构
来源
TOWARDS WORLD CLASS MANUFACTURING 1993 | 1994年 / 17卷
关键词
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
Sandia National Laboratories is a vertically multi-disciplined research and development laboratory with a long history of designing and developing sophisticated electro-mechanical products in the national interest. Integrating new technologies into the prototyping phase of our development cycle is necessary to reduce the cycle time from initial design to finished product. The introduction of rapid prototyping machines into the marketplace promises to revolutionize the process of producing prototype parts with relative speed and production-like quality. Issues of accuracy, feature definition, and surface finish continue to drive research and development of these processes. Sandia uses Stereolithography (SL) and Selective Laser Sintering (SLS) capabilities to support internal product development efforts. The primary use of SL and SLS is to produce patterns for investment casting in support of a Sandia managed program called FASTCAST that integrates computational technologies and experimental data into the investment casting process. These processes are also used in the design iteration process to produce proof-of-concept models, hands-on models for design reviews, fit-cheek models, visual aids for manufacturing, and functional parts in assemblies. This presentation will provide an overview of the SL and SLS processes and an update of our experience and success in integrating these technologies into the product development cycle. Also presented will be several examples of prototype parts manufactured using SL and SLS with a focus on application, accuracy, surface finish, and feature definition.
引用
收藏
页码:339 / 348
页数:10
相关论文
共 50 条
[41]   Rapid prototyping for automotive systems development [J].
Spreng, M ;
Fuchs, M ;
Grazebrook, A .
ELECTRONIC ENGINEERING, 1996, 68 (831) :100-&
[42]   Rapid prototyping boost in research and development [J].
Macúchová K. ;
Melichar M. ;
Crha P. ;
Heřmánek J. .
Macúchová, Karolina (karolina.macuchova@hilase.cz), 1600, Cefin Publishing House (01) :88-90
[43]   Rapid prototyping key to fast development [J].
Research & Development (Barrington, Illinois), 1994, 36 (06)
[44]   Development of new rapid prototyping process [J].
Machado Cunico, Marlon Wesley .
RAPID PROTOTYPING JOURNAL, 2011, 17 (02) :138-147
[45]   Development of a new rapid prototyping interface [J].
Jacob, GGK ;
Chua, CK ;
Tong, M .
COMPUTERS IN INDUSTRY, 1999, 39 (01) :61-70
[46]   RPC AG - Rapid development of rapid prototyping chemicals [J].
Hofmann, M ;
Steinmann, B .
CHIMIA, 2000, 54 (04) :211-214
[47]   Development and tendency of rapid prototyping technology [J].
Yan, YN ;
Hong, GD .
LASER PROCESSING OF MATERIALS AND INDUSTRIAL APPLICATIONS II, 1998, 3550 :298-306
[48]   RAPID PROTOTYPING KEY TO FAST DEVELOPMENT [J].
STUDT, T .
R&D MAGAZINE, 1994, 36 (06) :55-56
[49]   Using modeling and simulation for rapid prototyping and system integration [J].
Huang, P ;
Kar, P ;
Fandrich, C .
SMC '97 CONFERENCE PROCEEDINGS - 1997 IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN, AND CYBERNETICS, VOLS 1-5: CONFERENCE THEME: COMPUTATIONAL CYBERNETICS AND SIMULATION, 1997, :2812-2817
[50]   Integration of rapid product development technologies information models using STEP [J].
Mony, C .
RAPID PRODUCT DEVELOPMENT TECHNOLOGIES, 1997, 2910 :156-165