首页> 外文期刊>Materials transactions >Mechanical Behavior of Zr_(65)Al_(10)Ni_(10)Cu_(15) and Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5) Bulk Metallic Glasses
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Mechanical Behavior of Zr_(65)Al_(10)Ni_(10)Cu_(15) and Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5) Bulk Metallic Glasses

机译:Zr_(65)Al_(10)Ni_(10)Cu_(15)和Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5)大块金属玻璃的力学行为

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摘要

The thermal stability and the mechanical behavior of Zr_(65)Al_(10)Ni_(10)Cu_(15) and Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5) bulk metallic glasses (BMGs) were investigated by differential scanning calorimetry, uniaxial compressive test, ultrasonic method, and nanoindentation. The substitution of Zr by Be significantly improved the thermal stability of the amorphous phase, exhibited by a wide supercooled liquid region of 116K. The Be containing BMG exhibited a compressive strength of 1780 MPa, and in particular a high plastic strain of about 6 percent. The simultaneous operation of multiple shear bands during plastic deformation in Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5) BMG is proved by the less pronounced serrated flow during the loading process in the compression and nanoindentation, as well as the fracture surface morphologies. A high Debye temperature derived from the ultrasonic measurements indicates a condensed atomic arrangement in the Be containing BMG, and may responsible for the high thermal stability.
机译:Zr_(65)Al_(10)Ni_(10)Cu_(15)和Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5)大块金属玻璃(BMG)的热稳定性和力学性能通过差示扫描量热法,单轴压缩试验,超声方法和纳米压痕法进行了研究。用Be取代Zr可以显着改善非晶态相的热稳定性,这是由116K的宽过冷液体区域所显示的。含Be的BMG表现出1780MPa的抗压强度,特别是约6%的高塑性应变。 Zr_(52.5)Al_(10)Ni_(10)Cu_(15)Be_(12.5)BMG塑性变形过程中多个剪切带的同时运行由压缩和纳米压痕加载过程中锯齿状流不太明显证明,以及裂缝表面形态。由超声测量得出的高德拜温度表明,含BMG的Be中的原子排列紧密,可能是造成高热稳定性的原因。

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