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Synthesis and characterization of Zr-based in situ crystal precipitated and liquid phase separated bulk metallic glass composite

机译:Zr基原位析出液相分离的块状金属玻璃复合材料的合成与表征

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摘要

Abstract The aim of this study was to evaluate new Zr-based bulk metallic composites with crystallized dendrites or droplets which have the volume fraction below the critical one (the percolation limit). The Cu36Zr48Al8Ag8 alloy was chosen as matrix. Dendrites formed by in-situ solidification due to Ni addition. It was found that a new monotectic alloy system can be created successfully owing to Y addition (1–7 at.%) to the matrix. Small amount of dendrites with non-random distribution has a strong influence on the compressive strength. Experiment showed that the alloy with 4.1 at.% Ni has the maximum compressive strength (1998 MPa) and Young's modulus (86 GPa) within the examined samples. The results of compression test reveal that the cracks propagate near the small droplets below 1 μm in diameter which generate weakening in the microstructure. In contrast, the large droplets especially above 3 μm in diameter create a strong barrier for the shear band propagation.
机译:摘要这项研究的目的是评估具有结晶树枝状或液滴的体积分数低于临界值(渗透极限)的新型Zr基块状金属复合材料。选择Cu36Zr48Al8Ag8合金作为基体。由于添加了镍,通过原位凝固形成的枝晶。已经发现,由于向基体中添加了Y(1–7 at。%),可以成功创建新的单晶合金体系。少量具有非随机分布的树突对抗压强度有很大影响。实验表明,镍含量为4.1 at。%的合金具有最大的抗压强度(1998 MPa)和杨氏模量(86 GPa)。压缩试验的结果表明,裂纹在直径小于1μm的小液滴附近扩展,从而使显微组织变弱。相反,特别是直径大于3μm的大液滴对剪切带的传播形成了强大的屏障。

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