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Inductive flash-annealing of bulk metallic glasses

机译:大块金属玻璃的感应闪光退火

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摘要

We developed a temperature-controlled inductive flash-annealing device, which heats bulk metallic glasses (BMGs) at defined rates of up to 200 K/s to a given temperature. Subsequent instantaneous quenching in water allows preserving the microstructures obtained at various stages of crystallization. One Zr-based and two CuZr-based BMGs were flash-annealed at the onset of crystallization with different heating rates in order to prepare advanced BMG-matrix composites. The highly reproducible composite microstructures contain uniformly dispersed crystals and a narrow crystal size distribution. In order to assess the limitations of the present process, which mainly originate from non-uniform inductive heating, the skin depth was calculated. It is determined to be about 2.3 mm, which enables flash-annealing of rather bulky samples. The cooling rate was estimated from the interlamellar spacing of eutectic Al-Cu alloys to be on the order of 103 K/s. This ensures that decomposition of the microstructure during quenching is prevented. The present flash-annealing procedure is applicable to a wide variety of glass-forming liquids and has a large potential for tailoring the microstructure and, consequently, the mechanical properties of BMG-matrix composites.
机译:我们开发了一种温度控制的感应闪光退火设备,该设备以高达200 K / s的定义速率将块状金属玻璃(BMG)加热到给定温度。随后在水中的瞬时猝灭允许保留在结晶的各个阶段获得的微结构。在结晶开始时,以不同的加热速率对一台Zr基和两台CuZr基BMG进行快速退火,以制备高级BMG-基体复合材料。高度可复制的复合微结构包含均匀分散的晶体和狭窄的晶体尺寸分布。为了评估本方法的局限性,其主要源于不均匀的感应加热,计算了趋肤深度。确定为约2.3mm,可以对体积较大的样品进行快速退火。从共晶Al-Cu合金的层间间距估计冷却速率为10 3 K / s。这确保了防止淬火期间微结构的分解。本发明的快速退火程序适用于各种各样的玻璃形成液体,并且具有很大的潜力来调整BMG-基质复合材料的微观结构,并因此调整其机械性能。

著录项

  • 期刊名称 Scientific Reports
  • 作者

    K. Kosiba; S. Pauly;

  • 作者单位
  • 年(卷),期 -1(7),-1
  • 年度 -1
  • 页码 2151
  • 总页数 11
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

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