Rapid tooling of composite aluminium filled epoxy mould for injection moulding of polypropylene parts with small protruded features

IF 0.7 4区 材料科学 Q4 METALLURGY & METALLURGICAL ENGINEERING International Journal of Materials Research Pub Date : 2023-10-01 DOI:10.1515/ijmr-2022-0252
Abhinay S. Todmal, Bhojraj D. Deshmukh, Mohemmed Suleman Noor Mohemmed Shaikh, Bharatkumar B. Ahuja
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Abstract

Abstract Rapid tooling evolved from rapid prototyping is a novel method for developing prototype tooling rapidly using various additive manufacturing techniques. Traditional injection moulding is unsuitable for low-volume production because of the high initial cost. This study is focused on a rapid tooling approach for producing an injection mould insert for the low-volume production of plastic components. A plastic injection mould insert is designed, developed using composite aluminium filled epoxy with minute protruded features and tested on a vertical injection moulding machine as a rapid tool for low-volume production of plastic components. The composite aluminium filled epoxy (CAFE) mould insert is prepared using a wax master from silicon rubber mould prepared using a stereolithography master. Experiments are performed to determine the optimum mixing ratio of epoxy: aluminium powder for making the composite aluminium filled epoxy injection mould. The mould insert prepared was tested for the injection of polypropylene components on a vertical injection moulding machine and analyzed for dimensional accuracy. The analysis of dimensional accuracy and viability of minute features on the injected parts shows promising results for up to 30 injected parts. The injection of parts after 30 pieces resulted in increasing mould erosion and pitting, causing mould damage at the 36 th injection shot. The experimental finding supports the feasibility of using the composite aluminium filled epoxy injection mould for low-volume production of the parts; however, the surface finish is inferior. The life of the mould is expected to give better results with a higher surface finish. It is also exposed that using mould release agents improves the life of the composite aluminium-filled epoxy injection mould.
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聚丙烯小凸件注塑用复合铝填充环氧模具的快速成型
摘要快速模具是由快速成型技术发展而来的一种利用各种增材制造技术快速开发原型模具的新方法。传统的注塑成型由于初始成本高,不适合小批量生产。本研究的重点是生产小批量生产塑料部件的注射模具插入件的快速模具方法。设计和开发了一种塑料注射模具,使用具有微小突出特征的复合铝填充环氧树脂,并在垂直注射成型机上进行了测试,作为小批量生产塑料部件的快速工具。复合铝填充环氧树脂(CAFE)模具镶件是由用立体光刻母版制备的硅橡胶模具用蜡母版制备而成的。通过实验确定了环氧树脂与铝粉的最佳混合比例,以制备复合铝填充环氧注塑模具。在立式注塑机上对所制备的模具镶件进行了注塑试验,并对其尺寸精度进行了分析。对注射件的尺寸精度和微小特征的可行性进行了分析,结果表明,最多可注射30个注射件。30件后注射的零件导致模具侵蚀和点蚀增加,在第36次注射时造成模具损坏。实验结果支持了采用复合铝填充环氧注塑模具进行零件小批量生产的可行性;然而,表面光洁度较差。模具的寿命预计将提供更好的结果与更高的表面光洁度。研究还表明,使用脱模剂可以提高复合充铝环氧注塑模具的寿命。
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来源期刊
CiteScore
1.30
自引率
12.50%
发文量
119
审稿时长
6.4 months
期刊介绍: The International Journal of Materials Research (IJMR) publishes original high quality experimental and theoretical papers and reviews on basic and applied research in the field of materials science and engineering, with focus on synthesis, processing, constitution, and properties of all classes of materials. Particular emphasis is placed on microstructural design, phase relations, computational thermodynamics, and kinetics at the nano to macro scale. Contributions may also focus on progress in advanced characterization techniques. All articles are subject to thorough, independent peer review.
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