A Report on Metal Forming Technology Transfer from Expert to Industry for Improving Production Efficiency

Khoirudin Khoirudin, S. Sukarman, Murtalim Murtalim, Fathan Mubina Dewadi, Nana Rahdiana, A. Rais, Amri Abdulah, C. Anwar, Aries Abbas
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引用次数: 5

Abstract

This article reports on technological mastery assistance in three small metal forming industries in Indonesia. Problems in the blangking and piercing separately process caused increased production time which resulted in inefficiency cost. Therefore, the expert team aided in metal forming technology through participatory action research (PAR) methods and experimental methods through reverse engineering for several products. The PAR method involves optimal contribution and participation from the industry. Assistance in mastering technology in small metal-forming industries reduces the manufacturing process from seven to three stages, increasing efficiency. The press machine's tonnage capacity must balance with the force blanking/piercing requirement. The minimum press machine requirement is 6.7 tons, and based on the availability of existing press machines, the expert team recommends a 20-ton capacity press machine. Total efficiency can be further increased by implementing full progressive die technology by combining piercing, blanking, and bending processes.
金属成形技术从专家向企业转移提高生产效率的报告
本文报道了印尼三个小型金属成形行业的技术掌握援助情况。落料和冲孔分开加工的问题导致生产时间增加,成本低。因此,专家团队通过参与式行动研究(PAR)方法和实验方法,对多个产品进行逆向工程,辅助金属成形技术。PAR方法涉及行业的最优贡献和参与。协助掌握小型金属成形工业的技术,将制造过程从七个阶段减少到三个阶段,提高了效率。压力机的吨位容量必须与冲裁/冲孔力的要求相平衡。压力机的最低要求是6.7吨,根据现有压力机的可用性,专家团队推荐一台20吨容量的压力机。通过将冲孔、落料和弯曲工序结合起来,实施全级进模技术,可以进一步提高总效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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