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Shaping metallic glasses by electromagnetic pulsing

机译:通过电磁脉冲使金属玻璃成形

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摘要

With damage tolerance rivalling advanced engineering alloys and thermoplastic forming capabilities analogous to conventional plastics, metallic glasses are emerging as a modern engineering material. Here, we take advantage of their unique electrical and rheological properties along with the classic Lorentz force concept to demonstrate that electromagnetic coupling of electric current and a magnetic field can thermoplastically shape a metallic glass without conventional heating sources or applied mechanical forces. Specifically, we identify a process window where application of an electric current pulse in the presence of a normally directed magnetic field can ohmically heat a metallic glass to a softened state, while simultaneously inducing a large enough magnetic body force to plastically shape it. The heating and shaping is performed on millisecond timescales, effectively bypassing crystallization producing fully amorphous-shaped parts. This electromagnetic forming approach lays the groundwork for a versatile, time- and energy-efficient manufacturing platform for ultrastrong metals.
机译:具有可与先进工程合金相媲美的耐损伤性和类似于常规塑料的热塑性成型能力,金属玻璃正成为一种现代工程材料。在这里,我们利用其独特的电学和流变学特性以及经典的洛伦兹力概念来证明,电流和磁场的电磁耦合可以在没有传统加热源或施加机械力的情况下热塑性地成型金属玻璃。具体而言,我们确定了一个工艺窗口,在该窗口中,在存在法向磁场的情况下施加电流脉冲可以将金属玻璃欧姆加热至软化状态,同时感应出足够大的磁力以使其塑性成形。加热和整形以毫秒为单位进行,有效地绕开了结晶过程,产生了完全非晶形的零件。这种电磁成型方法为多功能,省时和节能的超强金属制造平台奠定了基础。

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