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通过光固化聚合物树脂增材制造获得的注塑模具的温度发展、模拟与实验

Development, Simulation of Temperatures, and Experimentation in Injection Molds Obtained through Additive Manufacturing with Photocurable Polymeric Resins.

作者信息

Benitez-Lozano Adrian, Vargas-Isaza Carlos, Montealegre-Rubio Wilfredo

机构信息

Grupo de investigación Calidad Metrología y Producción, Instituto Tecnológico Metropolitano, Medellín 050034, Colombia.

Grupo de investigación Diseño y Optimización Aplicada, Facultad de Minas, Universidad Nacional de Colombia, Medellín 050034, Colombia.

出版信息

Polymers (Basel). 2023 Feb 21;15(5):1071. doi: 10.3390/polym15051071.

Abstract

Additive manufacturing (AM) is a relatively new option in mold manufacturing for rapid tooling (RT) in injection processes. This paper presents the results of experiments with mold inserts and specimens obtained by stereolithography (SLA), which is a kind of AM. A mold insert obtained by AM and a mold produced by traditional subtractive manufacturing were compared to evaluate the performance of the injected parts. In particular, mechanical tests (in accordance with ASTM D638) and temperature distribution performance tests were carried out. The tensile test results of specimens obtained in a 3D printed mold insert were better (almost 15%) than those produced in the duralumin mold. The simulated temperature distribution closely matched its experimental counterpart-the difference in average temperatures was merely 5.36 °C. These findings support the use of AM in injection molding and RT as an excellent alternative for small and medium-sized production runs in the global injection industry.

摘要

增材制造(AM)是模具制造中一种相对较新的用于注塑工艺快速制模(RT)的方法。本文展示了使用立体光刻(SLA,一种增材制造方式)获得的模具镶件和试样的实验结果。对通过增材制造获得的模具镶件和通过传统减法制造生产的模具进行了比较,以评估注塑零件的性能。特别地,进行了机械测试(按照ASTM D638标准)和温度分布性能测试。在3D打印模具镶件中获得的试样的拉伸测试结果比在硬铝模具中生产的试样更好(几乎高出15%)。模拟的温度分布与实验结果紧密匹配——平均温度差异仅为5.36℃。这些发现支持在注塑成型和快速制模中使用增材制造,作为全球注塑行业中小型生产规模的一种优秀替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/325b/10005598/2d4f2de78346/polymers-15-01071-g001.jpg

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