评估几何变化对航空航天部件功能性能的影响

IF 0.3 Q4 ENGINEERING, AEROSPACE
Anders Forslund, J. Madrid, R. Söderberg, O. Isaksson, Johan Lööf, D. Frey
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引用次数: 4

摘要

制造过程中产生的几何变化可能是产品质量和可靠性的限制因素。因此,制造评估越来越多地在产品开发的早期阶段进行。在航空航天工业中,产品是复杂的工程系统,其开发需要多学科的专业知识。在这种情况下,评估几何变化对产品功能的影响存在重大障碍。为了克服这些障碍,本文介绍了一种新的方法,包括与多学科模拟环境相关联的建模方法。建模方法是基于参数点法,它允许点扫描数据传输到参数化CAD模型。在一个案例研究中,该方法在工业环境中实现。通过几个应用程序证明了该方法的能力,其中分析了几何变化对承载涡扇部件的空气动力学,热学和结构性能的影响。所提出的方法克服了目前的许多障碍,使得在早期设计阶段评估几何变化的影响更加可行。尽管存在一些局限性,但该方法有助于对如何评估多学科模拟中的几何变化的学术理解,并为工业提供了工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating How Functional Performance in Aerospace Components Is Affected by Geometric Variation
Geometric variation stemming from manufacturing can be a limiting factor for the quality and reliability of products. Therefore, manufacturing assessments are increasingly being performed during the early stages of product development. In the aerospace industry, products are complex engineering systems, the development of which require multidisciplinary expertise. In such contexts, there are significant barriers against assessing the effects of geometric variation on the functionality of products. To overcome these barriers, this article introduces a new methodology consisting of a modelling approach linked to a multidisciplinary simulation environment. The modelling approach is based on the parametric point method, which allows point-scanned data to be transferred to parameterised CAD models. In a case study, the methodology is implemented in an industrial setting. The capability of the methodology is demonstrated through a few applications, in which the effects of geometric variation on the aerodynamic, thermal, and structural performance of a load-bearing turbofan component are analysed. The proposed methodology overcomes many of the current barriers, making it more feasible to assess the effects of geometric variation during the early design phases. Despite some limitations, the methodology contributes to an academic understanding of how to evaluate geometric variation in multidisciplinary simulations and provides a tool for industry.
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来源期刊
SAE International Journal of Aerospace
SAE International Journal of Aerospace ENGINEERING, AEROSPACE-
CiteScore
0.70
自引率
0.00%
发文量
22
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