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Ductilization of BMGs by optimization of nanoparticle dispersion

机译:通过优化纳米粒子分散体的BMG探测器

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In situ optimized heat treatment in high-energy monochromatic beam of synchrotron light was conduced to generate fine nanoparticle dispersions in Zr-based alloys. Effect of embedded nanocrystals on the mechanical properties of our BMG-composites was investigated by compressive testing at room temperature. We found that the newly created nanostructured composites show good strength at high ductility with no work hardening. Based on TEM observations, a new mechanism was proposed which compensates for shear softening. The nanocrystals initially smaller than the elementary shear band were expected to growth in active shear band during deformation.
机译:在Zr基合金中,致致高能单色梁的原位优化热处理,以产生细纳米粒子分散体。通过在室温下压缩测试研究了嵌入式纳米晶体对我们BMG复合材料力学性能的影响。我们发现新创建的纳米结构复合材料在高延展性下显示出良好的强度,没有工作硬化。基于TEM观察,提出了一种补偿剪切软化的新机制。预期最初小于基本剪切带的纳米晶体在变形期间活性剪切带中的生长。

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