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Structural and thermal investigations of a high-strength Cu-Zr-Ti-Co bulk metallic glass

机译:高强度Cu-Zr-Ti-Co大块金属玻璃的结构和热学研究

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Cu_(55)Zr_(30)Ti_(10)Co_5 bulk metallic glass exhibits a high compressive fracture strength of 2.31 GPa and Young's modulus of 130 GPa, values that are higher than those of other Cu- and Zr-based metallic glasses. The addition of Co to the ternary Cu-Zr-Ti alloy stabilizes the supercooled liquid. On heating, the Cu_(55)Zr_(30)Ti_(10)Co_5 metallic glass devitrified and formed an intermediate intermetallic compound prior to reaching equilibrium by diffusion-controlled growth at constant nucleation rate. In the fully annealed state the structure consists of the equilibrium Cu_(10)Zr_7 phase with the slightly reduced lattice parameters a = 0.933nm, b = 0.928nm and c =1.254nm and a small fraction of an unidentified phase.
机译:Cu_(55)Zr_(30)Ti_(10)Co_5大块金属玻璃表现出2.31 GPa的高抗压断裂强度和130 GPa的杨氏模量,该值高于其他基于Cu和Zr的金属玻璃。在三元Cu-Zr-Ti合金中添加Co可以稳定过冷液体。加热时,Cu_(55)Zr_(30)Ti_(10)Co_5金属玻璃失透并形成中间金属间化合物,然后以恒定的成核速率通过扩散控制的生长达到平衡。在完全退火状态下,该结构由平衡Cu_​​(10)Zr_7相组成,其晶格参数略有减小,a = 0.933nm,b = 0.928nm和c = 1.254nm,以及一小部分未识别相。

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