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首页> 外文期刊>Rapid prototyping journal >Metal bellow hydroforming using additive manufactured die: a case study
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Metal bellow hydroforming using additive manufactured die: a case study

机译:使用添加剂制造模具的金属脱脂剂:一个案例研究

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摘要

Purpose Custom-designed metal bellows require alternate ways to produce the die to shorten lead time. The purpose of this study is to explore the possibility of using Additive Manufactured (AM) polymer die as direct rapid tool (RT) for metal bellow hydroforming. Design/methodology/approach Finite element analysis (FEA) was used to simulate bellow forming and to evaluate the compatibility of AM die. Fused deposition modelling (FDM) technique is used to fabricate die with Acrylonitrile Butadiene Styrene (ABS) material. To validate, the width of the metal bellow convolutions obtained from the FEA simulation is compared with convolution formed during the experiment. Findings FDM-made die can be used for a short production run of bellow hydroforming. FEA simulation shows that stress developed in some regions of die is less and these regions have potential for material reduction. Use of RT for this particular application is limited by the die material, forming pressure, width, convolution span and material of bellow. This supports the importance of FEA validation of RT before fabrication to evaluate and redesign die for the successful outcome of the tool. Research limitations/implications - The given methodology may be followed to design a RT with minimum material consumption for bellow forming application. Whenever there is a change in bellow design or the die material, simulation has to be done to evaluate the capability of the die. As this study was focused on a short production run for manufacturing one or few bellows, the die life is not a significant factor. Originality/value This paper demonstrates about rapid tooling for metal bellow manufacturing using FDM technique for low volume production. Further, FEA is used to identify low stress regions and redesign the die for material reduction before die manufacturing. AM die can be used for developing customized metal bellow for applications such as defense, aerospace, automobiles, etc.
机译:目的,定制的金属波纹管需要交替的方法来生产模具以缩短换通时间。本研究的目的是探讨使用添加剂(AM)聚合物模具作为用于金属脱脂剂的直接快速工具(RT)的可能性。设计/方法/方法有限元分析(FEA)用于模拟波纹管成型并评估AM死的兼容性。融合沉积建模(FDM)技术用于用丙烯腈丁二烯苯乙烯(ABS)材料制造模具。为了验证,将从FEA模拟中获得的金属波纹管卷绕的宽度与在实验期间形成的卷积进行比较。调查结果FDM制造的模具可用于较短的脱脂型较短的生产。 FEA仿真表明,在一些模具区域中产生的应力较小,并且这些区域具有降低材料的潜力。使用RT对于该特定应用的使用受模具材料的限制,形成压力,宽度,卷积跨度和光泽材料的材料。这支持FEA验证RT的重要性在制造之前,以评估和重新设计为工具的成功结果而重新设计。研究限制/影响 - 可以遵循给定的方法来设计具有最小材料消耗的RT,用于脱位成型应用。每当有轰击设计或模具材料的变化时,必须进行仿真以评估模具的能力。由于本研究专注于制造一个或几个波纹管的短生产运行,模具生命不是一个重要因素。原创性/值本文展示了使用FDM技术进行金属轰炸机的快速工具,用于低批量生产。此外,FEA用于识别低应力区域并重新设计模具以进行模具制造前的材料。 Am Die可用于为防御,航空航天,汽车等应用开发定制的金属光泽。

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