Additive Manufacturing of Polymer-Metal/Ceramic Functionally Graded Composite Components via Multiple Material Laser Powder Bed Fusion
Аддитивное производство функционально-градиентных полимерно-металлических и полимерно-керамических композиционных компонентов методом лазерного сплавления порошка из нескольких материалов
2020-03-06
SCID: 54.1/rg3rume5
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PA11/Al2O3 compositesfunctionally graded polymer-metal compositeshigh-concentration solid particle additivesmultiple material powder bed fusionultrasonic vibration-assisted laser processing
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Abstract (AI)
Abstract 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.
Key Findings
1
A new ultrasonic feeding configuration successfully delivered difficult-to-feed fine PA11/Al2O3 powders with irregular particle geometry.
2
An ultrasonic vibration-assisted laser-based multiple-material powder bed fusion process printed functionally graded polymer/metal and polymer/ceramic components.
3
Functionally graded examples, including a shoe sole section, turbine blade, and ball-bearing components, demonstrated potential applications.
4
Laser melting/sintering parameters and manufacturing strategies were investigated for different polymer composite formulations.
5
Polymer composites containing up to 90% soda-lime glass, aluminum oxide, or copper particles were successfully printed, exceeding capabilities of conventional injection molding and standard FFF.
Research Object
3D functionally graded polymer/metal and polymer/ceramic composite components fabricated by multiple-material laser powder bed fusion
Research Subject
Composition-dependent manufacturability, laser melting/sintering behavior, powder feeding, and functional grading of polymer composites containing high concentrations of soda-lime glass, Al2O3, and copper particles
Publication Details
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2020-03-06
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