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首页> 外文期刊>American journal of applied sciences >Investigating Rapid Thermoform Tooling Via Additive Manufacturing (3d Printing)
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Investigating Rapid Thermoform Tooling Via Additive Manufacturing (3d Printing)

机译:通过添加剂制造研究快速热成型工具(3D打印)

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摘要

Additive Manufacturing (AM) has matured from a prototyping tool to a soft production tooling in recent years. This research elaborates the role of AM technology (3D printing) in the design, prototyping and development of a rapid thermoform tooling. The Fused Deposition Modeling (FDM) 3D printer was implemented to fabricate thermoform tooling in Polypropylene Styrofoam (PPSF). We contrast the additively manufactured thermoform tooling with conventional tooling using computerized numerical control (CNC) machines. Findings showed that the additive thermoform tooling with PPSF was found to be (1) faster in development time, (2) comparable in quality and (3) lower in total cost. However, the (4) tool yield was 50% less than traditional tooling and production cycle times were 25-50% longer to allow for the additive tooling to cool. This research explores the fabrication thermoform tooling for low-volume environments using additive manufacturing (3D Printing) technology.
机译:添加剂制造(AM)近年来从原型工具到软生产工具中成熟。本研究阐述了AM技术(3D打印)在快速热成型工具的设计,原型和开发中的作用。熔融沉积建模(FDM)3D打印机被实施为制造聚丙烯苯乙烯(PPSF)中的热成像工具。我们将含有常规工具的橡皮制造的热成型工具对比使用计算机化数控(CNC)机器。结果表明,在开发时间(2)的发育时间更快(1),(2)的质量相当,(3)的总成本较低,发现含有PPSF的添加剂热量然而,(4)工具产率比传统的工具为50%,并且生产循环时间较长25-50%,以允许添加剂工具冷却。本研究探讨了使用添加剂制造(3D打印)技术的低批量环境制造热成像工具。

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