应用于电子电气行业微小部件的深拉技术研究

D. V. Duy, Pham Ngoc Anh, Nguyen Van Sinh, Nguyen Quoc Long, Dang Thi Trang
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引用次数: 0

摘要

中型和微型成形是一种用极小的金属坯料塑造零件的技术。零件的几何尺寸从几毫米到几微米不等。随着电子电气行业和生物医学工程的快速发展,微小零件成型技术因其高效、精确和高生产率而得到研究和应用。深拉是将扁平金属板材坯料加工成空心、开口零件的操作。它是钣金冲压的重要工序。微深拉是近年来被广泛研究和应用的微整形技术之一。然而,微拉深加工中技术参数和几何参数的计算基础尚未得到详细的分析和评估。因此,本文提出了一个理论基础,并结合模拟应用于使用 SUS304 材料制造直径为 300 微米、高度为 1500 微米的连接器头部零件拉伸模具的技术设计。通过数值模拟还可以评估冲压件的内应力状态、将工件拉入模具的能力以及产品壁上的厚度分布。实验研究也验证了在确定参数的情况下,冲压件符合质量要求。这表明针对微小拉深操作提出的计算方法是完全合适的。这项研究成果完全可以应用于使用拉深法生产微型圆柱杯零件。
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Research on Deep Drawing Technology for Tiny Parts Applied in the Electrical-Electronic Industry
Meso-and microforming is a technology to shape parts from extremely small metal billets. Parts with geometric dimensions are a few millimetres to a few micrometres. With the rapid development of the electrical-electronics industry and biomedical engineering, the technology of forming microscopic parts has been researched and applied because of its efficiency, accuracy, and high productivity. Deep drawing is an operation that turns flat sheet metal blanks into hollow, open-mouth parts. It is an essential process in sheet metal stamping. Micro deep drawing is one of the micro-shaping technologies that has been widely studied and applied in recent years. However, the bases for calculating technological and geometrical parameters in the micro-deep drawing have not yet been analyzed and evaluated in detail. Therefore, this paper has proposed a theoretical basis combined with simulation applied to the design of technology to manufacture a connector head part drawing die with a diameter of 300µm and height of 1500µm using materials SUS304 material. Numerical simulation also allows evaluation of the stamping part's internal stress state, the ability to pull the workpiece into the die, and the thickness distribution on the product wall. Experimental research has also verified that, with the determined parameters, the stamping parts meet the quality requirements. This indicates the proposed calculation methods for the tiny deep drawing operation are entirely suitable. The results of this research can be wholly applied to the production of micro-sized cylindrical cup parts using the deep drawing method.
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来源期刊
International Journal on Advanced Science, Engineering and Information Technology
International Journal on Advanced Science, Engineering and Information Technology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
1.40
自引率
0.00%
发文量
272
期刊介绍: International Journal on Advanced Science, Engineering and Information Technology (IJASEIT) is an international peer-reviewed journal dedicated to interchange for the results of high quality research in all aspect of science, engineering and information technology. The journal publishes state-of-art papers in fundamental theory, experiments and simulation, as well as applications, with a systematic proposed method, sufficient review on previous works, expanded discussion and concise conclusion. As our commitment to the advancement of science and technology, the IJASEIT follows the open access policy that allows the published articles freely available online without any subscription. The journal scopes include (but not limited to) the followings: -Science: Bioscience & Biotechnology. Chemistry & Food Technology, Environmental, Health Science, Mathematics & Statistics, Applied Physics -Engineering: Architecture, Chemical & Process, Civil & structural, Electrical, Electronic & Systems, Geological & Mining Engineering, Mechanical & Materials -Information Science & Technology: Artificial Intelligence, Computer Science, E-Learning & Multimedia, Information System, Internet & Mobile Computing
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