权衡曲线在某航空航天公司支持集设计中的应用

Esraa M. Mohsin, Osamah Abdulateef, A. Al-Ashaab
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引用次数: 1

摘要

今天公司之间的竞争非常激烈,所以他们需要专注于创新来开发他们的产品并使他们具有竞争力。精益产品开发是开发产品、促进创新、实现价值最大化、缩短时间的理想方式。基于集合的并行工程(SBCE)是一种被认可的精益产品改进机制,它建立在子系统级别的许多替代设计的创建之上。同时对这些设计进行改进和测试,逐步去除较弱的选择,直到最终达到最优解。SBCE的实施已经在汽车行业得到了广泛的应用,在航空航天行业也有一些案例研究。本研究描述了在CONGA项目中使用权衡曲线作为精益工具来支持SBCE过程模型。使用NASA仿真软件1.7c版本和CONGA演示程序(DEMO程序),帮助设计师和工程师根据客户要求提取存在的设计解决方案,并从之前的项目中提取出最接近的替代解决方案,以满足客户在航空航天公司实现低噪声发动机的要求,并提取出在制造过程开始之前设计师无法在该区域制作任何原型的不可行区域。这将减少返工、时间和成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Applying Trade-off Curve to Support Set-Based Design application at an Aerospace Company
Companies compete greatly with each other today, so they need to focus on innovation to develop their products and make them competitive. Lean product development is the ideal way to develop product, foster innovation, maximize value, and reduce time. Set-Based Concurrent Engineering (SBCE) is an approved lean product improvement mechanism that builds on the creation of a number of alternative designs at the subsystem level. These designs are simultaneously improved and tested, and the weaker choices are removed gradually until the optimum solution is reached finally. SBCE implementations have been extensively performed in the automotive industry and there are a few case studies in the aerospace industry. This research describe the use of trade-off curve as a lean tool to support SBCE process model in CONGA project, using NASA simulation software version 1.7c and CONGA demonstration program (DEMO program) to help designers and engineers to extract the design solution where it exists according to the customer requirement and to extract alternative nearest solutions from the previous project that meet customer requirement to achieve low noise engine at an aerospace company and also extract the infeasible region where the designers cannot make any prototype in this region before manufacturing process begin, that will lead to reducing rework, time and cost.
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