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Innovative approach to the design of low-cost Zr-based BMG composites with good glass formation

机译:具有良好玻璃形成性能的低成本Zr基BMG复合材料设计的创新方法

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摘要

The high manufacturing cost for metallic glasses hampers actual commercial applications of this class of fascinating materials. In this letter, the effect of oxygen impurity on the glass forming ability and tensile properties of Zr-BMG composites were studied. Our results have demonstrated that oxygen was absorbed and concentrated only in the precipitated β-Zr phase, leading that the remainder molten metal retains good glass forming ability. The high oxygen concentration in the β-Zr phase induces a significant solid-solution strengthening effect, this resulting in an enhanced strength of the BMG composites without sacrificing their overall ductility. Based on this alloying strategy, we have successfully developed the low-cost Zr-based BMG composites with excellent tensile properties and good glass forming ability, using the low grade industrial raw materials processed under industrial vacuum systems. This finding is expected to greatly cut down the manufacturing cost and greatly promote the commercial applications of the BMG composites.
机译:金属玻璃的高制造成本阻碍了这种迷人材料的实际商业应用。本文研究了氧杂质对Zr-BMG复合材料的玻璃形成能力和拉伸性能的影响。我们的结果表明,氧仅在沉淀的β-Zr相中被吸收和浓缩,从而导致剩余的熔融金属保留了良好的玻璃形成能力。 β-Zr相中高的氧浓度会引起显着的固溶强化作用,从而提高BMG复合材料的强度,而不会牺牲其整体延展性。基于这种合金化策略,我们成功地开发了低成本Zr基BMG复合材料,该材料使用了在工业真空系统下加工的低等级工业原料,具有出色的拉伸性能和良好的玻璃成型能力。该发现有望大大降低制造成本并极大地促进BMG复合材料的商业应用。

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