拓扑方法在汽车零部件开发中的应用

Kristóf Szabó
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引用次数: 0

摘要

行业的许多领域都以不断变化为特征,这定义了产品设计的新发展方向。计算机和软件的发展、现代生产工具的普及以及材料技术的发展,使得用现代工艺扩展传统的生产技术成为可能。几十年来,集成CAD系统在产品设计和开发过程中占据了一席之地,改变了经典的设计方法。在集成CAD系统中流行的优化程序,如形状优化、拓扑优化和新的生成设计过程,为设计工程师在越来越多的工业应用领域提供了有效的解决方案。经验表明,现代设计方法可用于工业的许多领域。金属粉末打印和增材技术的出现使得测试设计原型甚至生产最终产品成为可能。下面的文章旨在通过一个案例研究来支持上述观点。
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Application of Topological Methods in the Development of Vehicle Components
Many areas of the industry are characterized by continuous changes, which define new directions of development in product design. The development of computers and software, the spread of modern production tools and the development of material technology make it possible to expand traditional production technologies with modern processes. Integrated CAD systems have occupied their place in the product design and development process for decades, reforming classical design methods. Popular optimization procedures in integrated CAD systems, such as shape optimization, topological optimization and the new generative design process, provide effective solutions for design engineers in more and more industrial application areas. Experience shows that modern design methods can be used in many areas of industry. The appearance of metal powder printing and additive technology make it possible to test the designed prototypes or even to produce the final products. The following article aims to support the above with the help of a case study.
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来源期刊
CiteScore
3.80
自引率
6.20%
发文量
57
审稿时长
20 weeks
期刊介绍: IJMEMS is a peer reviewed international journal aiming on both the theoretical and practical aspects of mathematical, engineering and management sciences. The original, not-previously published, research manuscripts on topics such as the following (but not limited to) will be considered for publication: *Mathematical Sciences- applied mathematics and allied fields, operations research, mathematical statistics. *Engineering Sciences- computer science engineering, mechanical engineering, information technology engineering, civil engineering, aeronautical engineering, industrial engineering, systems engineering, reliability engineering, production engineering. *Management Sciences- engineering management, risk management, business models, supply chain management.
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