首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Additive Manufacturing of Polymer-Metal/Ceramic Functionally Graded Composite Components via Multiple Material Laser Powder Bed Fusion
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Additive Manufacturing of Polymer-Metal/Ceramic Functionally Graded Composite Components via Multiple Material Laser Powder Bed Fusion

机译:聚合物 - 金属/陶瓷功能梯度复合材料通过多种材料激光粉床融合的添加剂制造

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摘要

In this paper, the printing of 3D functionally graded polymer/metal, polymer/ceramic composite components via an ultrasonic vibration-assisted laser-based multiple material powder bed fusion (PBF) is reported. Components consisted of various polymer composites with different compositions according to design was realized. High concentrations (up to 90%) of solid particle additives, including soda-lime glass, aluminum oxide, and copper powders, were mixed with the polymer and printed, which was difficult or impossible to realize using conventional injection molding or standard fused filament fabrication (FFF) 3D printing. Effects of laser melting/sintering parameters and manufacturing strategy of each type of polymeric composite were investigated. A successful delivery of very difficult-to-feed fine powder mixtures such as PA11/Al2O3 with irregular powder geometry via a new configuration of ultrasonic feeding was demonstrated. Three examples of 3D functionally graded components (part of a shoe sole, a turbine blade, and components of a ball bearing) were printed to illustrate the potential applications of the method.
机译:本文报道了通过超声波振动辅助激光基多材料粉床融合(PBF)的三维功能梯度聚合物/金属,聚合物/陶瓷复合材料部件的印刷。实现了根据设计的不同组合物的各种聚合物复合材料组成。高浓度(高达90%)的固体颗粒添加剂,包括钠钙玻璃,氧化铝和铜粉末,与聚合物混合并印刷,难以或不可能使用常规的注塑或标准熔合长丝制造来实现(FFF)3D打印。研究了激光熔化/烧结参数和每种聚合物复合材料的制造策略的影响。证明了通过新的超声饲养的新配置,成功地递送了非常难以进料细粉混合物,例如具有不规则粉末几何形状的PA11 / Al2O3。印刷三维功能渐变组件(鞋鞋底,涡轮叶片的一部分)的三个例子以说明该方法的潜在应用。

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