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基于熔融粒料制造增材制造工艺生产的真空灌注模具的耐用性

Durability of Vacuum Infusion Tooling Produced from Fused Granular Fabrication Additive Manufacturing.

作者信息

Northrup Nathan, Weaver Jason M, George Andrew R

机构信息

Department of Manufacturing Engineering, Brigham Young University, Provo, Utah, USA.

出版信息

3D Print Addit Manuf. 2024 Apr 1;11(2):508-516. doi: 10.1089/3dp.2022.0130. Epub 2024 Apr 16.

Abstract

Fused Granular Fabrication Additive Manufacturing (FGF AM) has the capability to create tooling that is lower cost than conventionally manufactured tooling and still has sufficient properties for many applications. A vacuum infusion (VI) mold was printed from fiberglass-acrylonitrile butadiene styrene (ABS) and evaluated for wear and suitability for small VI runs. The mold was designed to accentuate high wear as a "worst case" scenario. The mold was able to produce 10 parts successfully before any noticeable change occurred to the surface finish. By 14 parts, the surface finish had roughened sufficiently that demolding was difficult and resulted in damage to the part. Profilometry measurements showed a 7 × increase in roughness over the run. No significant tool wear or change in geometry was detected. Even longer life would be expected for typical tooling designs since the test mold was deliberately designed to accentuate wear and demolding issues. Based on these results, similar FGF molds are a feasible option for short run VI production for prototyping or low-volume composites manufacturing, possibly at lower cost and quicker turnaround time than machined aluminum molds.

摘要

熔融颗粒制造增材制造(FGF AM)能够制造出成本低于传统制造模具的工具,并且在许多应用中仍具有足够的性能。用玻璃纤维-丙烯腈丁二烯苯乙烯(ABS)打印了一个真空灌注(VI)模具,并对其磨损情况和小批量VI生产的适用性进行了评估。该模具被设计成在“最坏情况”下突出高磨损情况。该模具在表面光洁度出现任何明显变化之前成功生产了10个零件。到生产14个零件时,表面光洁度已经变得足够粗糙,以至于脱模困难并导致零件损坏。轮廓测量显示在整个生产过程中粗糙度增加了7倍。未检测到明显的工具磨损或几何形状变化。由于测试模具是特意设计来突出磨损和脱模问题的,因此对于典型的模具设计,预计使用寿命会更长。基于这些结果,类似的FGF模具对于原型制作或小批量复合材料制造的短期VI生产是一个可行的选择,可能比加工铝制模具成本更低、周转时间更快。

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