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首页> 外文期刊>South African journal of industrial engineering >DIRECT METAL LASER SINTERING, USING CONFORMAL COOLING, FOR HIGH VOLUME PRODUCTION TOOLING
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DIRECT METAL LASER SINTERING, USING CONFORMAL COOLING, FOR HIGH VOLUME PRODUCTION TOOLING

机译:直接激光烧结,采用保形冷却,用于大批量生产

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摘要

Existing techniques to manufacture conventional tool steel inserts for the plastic injection moulding process are expensive and time-consuming. Complex mould inserts, difficult to manufacture with conventional processes, can be produced using Direct Metal Laser Sintering (DMLS) with Maraging tool steel (MS1). MS1 is an additive manufacturing (AM) material made available by Electro Optical Systems (EOS) GmbH. Contrary to material removal processes, DMLS can produce MS1 tool steel inserts directly from Computer-Aided Design (CAD) files suitable for high volume plastic injection moulding. Through DMLS it is possible to create conformal cooling channels inside the MS1 inserts that have advantages in reducing heat rapidly and evenly. This can result in a reduction of cycle times, cost per product as well as improving part quality by eliminating defects such as warpage and heat sinks. This paper will present a comparison between Finite Element Analysis (FEA) simulations of the injection mould inserts with actual mould trails of AM and conventional manufactured inserts. It also includes the design and manufacturing of conventional and DMLS inserts and compares the manufacturing costs and lead times. Using FEA simulations, the design of conformal cooling channels is optimised by comparing the mould temperature of different cooling channel layouts.
机译:制造用于塑料注射成型工艺的常规工具钢刀片的现有技术昂贵且费时。可以使用直接金属激光烧结(DMLS)和马氏体时效工具钢(MS1)来生产复杂的模具镶件,这些模具镶件很难用常规方法制造。 MS1是可从Electro Optical Systems(EOS)GmbH获得的增材制造(AM)材料。与材料去除过程相反,DMLS可以直接从适用于大批量塑料注射成型的计算机辅助设计(CAD)文件中生产MS1工具钢刀片。通过DMLS,可以在MS1刀片内部创建共形的冷却通道,该通道具有快速而均匀地减少热量的优势。通过消除诸如翘曲和散热片之类的缺陷,可以缩短周期时间,降低每件产品的成本并提高零件质量。本文将对具有AM的实际模具轨迹的注塑模具镶件的有限元分析(FEA)模拟与常规制造的镶件进行比较。它还包括常规和DMLS刀片的设计和制造,并比较制造成本和交货时间。使用FEA仿真,通过比较不同冷却通道布局的模具温度,优化了共形冷却通道的设计。

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