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Additive Manufacturing Supports the Production of Complex Castings

机译:增材制造支持复杂铸件的生产

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Additive manufacturing is being used in a variety of ways to support the production of complex castings. Some of the common additive manufacturing processes include fused filament fabrication, vat photopolymerization, powder bed fusion, binder jetting, and material jetting. In this paper, the authors discuss the use of (ⅰ) binder jetting technology to fabricate sand molds for casting complex, cellular structures and (ⅱ) fused filament fabrication & vat photopolymerization to produce complex investment casting patterns. Binder jetting of foundry sand molds allows the realization of cast structures that are impossible to mold using conventional methods. The structures are lightweight, multi-functional and may provide exceptional blast protection. With regards to investment casting, wax is currently the primary material used for producing expendable patterns due to a desirable combination of thermal expansion, thermal conductivity and melting point. However, wax is not a typical printed material. A variety of polymers are available for additive manufacturing and, as would be expected, only a few are suitable for use as expendable patterns for investment casting. The best polymers for use as expendable patterns for investment castings are PMMA, epoxy resin containing a reactive diluent and ABS.
机译:增材制造以多种方式用于支持复杂铸件的生产。一些常见的增材制造工艺包括熔丝制造,桶光聚合,粉末床熔合,粘合剂喷射和材料喷射。在本文中,作者讨论了使用(ⅰ)粘结剂喷射技术制造用于铸造复杂的蜂窝状结构的砂模,以及()熔融长丝制造和桶式光聚合以产生复杂的熔模铸造图案。铸造砂模的粘结剂喷射允许使用传统方法无法铸造的铸造结构。结构轻巧,多功能,可提供出色的防爆保护。关于熔模铸造,由于热膨胀,热导率和熔点的理想结合,蜡目前是用于产生可消耗图案的主要材料。但是,蜡不是典型的印刷材料。多种聚合物可用于增材制造,并且可以预期,只有少数几种适合用作熔模铸造的消耗型。用作熔模铸造消耗型的最佳聚合物是PMMA,含反应性稀释剂的环氧树脂和ABS。

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