首页> 外文会议>ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference >A TESTBED TO SUPPORT COLLABORATION AMONG DISTRIBUTED DESIGNERS FOR REVERSE ENGINEERING, RE-ENGINEERING AND FAST MANUFACTURING
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A TESTBED TO SUPPORT COLLABORATION AMONG DISTRIBUTED DESIGNERS FOR REVERSE ENGINEERING, RE-ENGINEERING AND FAST MANUFACTURING

机译:试验台,以支持分布式设计师协作,以进行逆向工程,重新工程和快速制造

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摘要

This paper presents development of a testbed to support collaboration among a set of distributed engineers to reverse, re-engineer, and fast manufacture (RRF) components for aging aircrafts. This testbed allows a geographically distributed team to work on a design task both synchronously and asynchronously. Commercial off-the-shelf (COTS) software tools and equipment that support the RRF process have been identified, evaluated, and tested. An integration framework has also been developed and employed to create an RRF testbed. This testbed constructed using COTS software and equipment supports three major engineering tasks: the reverse engineering that supports recovering of technical data from worn sample parts, re-engineering that alters design for better performance or lower cost, and fast prototyping that incorporates advanced manufacturing technologies to produce functional or physical prototype of the part in small quantity in a short turnaround time. Traditional reverse engineering projects are ad-hoc, usually takes relatively long time to generate solid models from physical parts. The developed testbed utilizes commercial software to accomplish reverse engineering, re-engineer and fast manufacture using a systematic approach. A number of examples obtained from logistics centers have been employed to illustrate and demonstrate the capabilities established in the RRF testbed.
机译:本文介绍了一台测试台,以支持一套分布式工程师之间的合作,以逆转,重新设计和快速制造(RRF)组件进行老化飞机。该测试平台允许地理上分布式的团队同步和异步地在设计任务上工作。已经识别,评估和测试了支持RRF进程的商业现成(COTS)软件工具和设备。还开发了一个集成框架并采用了创建RRF测试的rRF。使用COTS软件和设备构建的该测试平台支持三个主要的工程任务:支持从破旧的样品部件恢复技术数据的逆向工程,重新设计,改变设计,以实现更好的性能或更低的成本,以及结合先进制造技术的快速原型设计在短的周转时间内以少量产生零件的功能或物理原型。传统的逆向工程项目是Ad-hoc,通常需要相对较长的时间来产生从物理部件的实体模型。开发的测试台利用商业软件使用系统方法来完成逆向工程,重新设计和快速制造。已经采用了从物流中心获得的许多例子来说明并证明在RRF测试的能力中建立的能力。

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