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3D printing metals like thermoplastics: Fused filament fabrication of metallic glasses

机译:3D印刷金属如热塑性塑料:金属玻璃的熔丝制造

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Whereas 3D printing of thermoplastics is highly advanced and can readily create complex geometries, 3D printing of metals is still challenging and limited. The origin of this asymmetry in technological maturity is the continuous softening of thermoplastics with temperature into a readily formable state, which is absent in conventional metals. Unlike conventional metals, bulk metallic glasses (BMGs) demonstrate a supercooled liquid region and continuous softening upon heating, analogous to thermoplastics. Here we demonstrate that, in extension of this analogy, BMGs are also amenable to extrusion-based 3D printing through fused filament fabrication (FFF). When utilizing the BMGs’ supercooled liquid behavior, 3D printing can be realized under similar conditions to those in thermoplastics. Fully dense and amorphous BMG parts are 3D printed in ambient environmental conditions resulting in high-strength metal parts. Due to the similarity between FFF of thermoplastics and BMGs, this method may leverage the technology infrastructure built by the thermoplastic FFF community to rapidly realize and proliferate accessible and practical printing of metals.
机译:虽然热塑性塑料的3D打印高度先进,并且可以容易地创造复杂的几何形状,但金属的3D印刷仍然具有挑战性和有限。技术成熟度的这种不对称的起源是热塑性塑料的连续软化,温度进入易于形成的状态,这在常规金属中不存在。与常规金属不同,散装金属玻璃(BMG)显示出过冷却的液体区域并在加热时连续软化,类似于热塑性塑料。在这里,我们证明,在该类比的延伸中,BMG也通过熔合丝制造(FFF)来适用于基于挤出的3D印刷。当利用BMGS的过冷液体行为时,可以在类似条件下实现3D打印到热塑性塑料的条件。完全密集和无定形的BMG部件是在环境环境条件下印有3D,导致高强度金属部件。由于热塑性塑料和BMG的FFF之间的相似性,这种方法可以利用热塑性FFF社区建造的技术基础设施,迅速实现和增殖的金属的可接近和实际印刷。

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