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首页> 外文期刊>Materials transactions >Bulk amorphous Ni{sub}(75-x)Nb{sub}5M{sub}xP{sub}(20-y)B{sub}y (M=Cr, Mo) alloys with large supercooling and high strength
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Bulk amorphous Ni{sub}(75-x)Nb{sub}5M{sub}xP{sub}(20-y)B{sub}y (M=Cr, Mo) alloys with large supercooling and high strength

机译:具有大过冷度和高强度的块状非晶Ni {sub}(75-x)Nb {sub} 5M {sub} xP {sub}(20-y)B {sub} y(M = Cr,Mo)y合金

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摘要

Bulk amorphous Ni-based alloys with high strength were formed in the diameter range up to 1.0 mm for Ni{sub}65Nb{sub}5Cr{sub}5Mo{sub}5P{sub}(14-16)B{sub}(4-6) alloys by copper mold casting. The T{sub}g andΔT{sub}x(= T{sub}x- T{sub}g) of the bulk amorphous alloys are 703 and 50 K, respectively, for the 4%B alloy and 701 and 61 K, respectively, for the 6%B alloy. There is no difference in thermal stability between the bulk and ribbon alloys. The crystallization takes place through a single exothermic reaction in which crystalline phases of Ni, Ni{sub}3P, Ni{sub}3B, Ni{sub}6Mo{sub}2P{sub}3, Cr{sub}3P and Cr{sub}0.75Ni{sub}0.25P precipitate almost simultaneously. The necessity of the long-range atomic rearrangement leading to the simultaneous precipitation of the six crystalline phases seems to be the reason for the high glass-forming ability of the Ni-based alloys. The Ni-based bulk amorphous alloys exhibit high tensile fracture strength (σ{sub}f) of 2690 to 2760 MPa, Young's modulus (E) of 95 to 103 GPa, fracture elongation (ε{sub}f) of 2.8% and Vickers hardness (H{sub}v) of 840 to 880. The ratios of 9.8H{sub}v/3E and σ{sub}f/E are nearly the same as those for the corresponding melt-spun amorphous ribbons. The synthesis of the Ni-based bulk amorphous alloys with the same thermal and mechanical properties as those for the alloy ribbons is encouraging for the future development of bulk amorphous nonferrous alloys with high strength.
机译:对于Ni {sub} 65Nb {sub} 5Cr {sub} 5Mo {sub} 5P {sub}(14-16)B {sub}(),在高达1.0 mm的直径范围内形成了高强度的块状非晶Ni基合金。 4-6)合金经铜模铸造。块状非晶态合金的T {sub} g和ΔT{sub} x(= T {sub} x- T {sub} g)对于4%B合金和701和61 K分别为703和50 K,分别为6%B合金。块状合金和带状合金之间的热稳定性没有差异。结晶是通过单个放热反应进行的,其中Ni,Ni {sub} 3P,Ni {sub} 3B,Ni {sub} 6Mo {sub} 2P {sub} 3,Cr {sub} 3P和Cr { sub} 0.75Ni {sub} 0.25P几乎同时析出。导致六个晶相同时析出的远距离原子重排的必要性似乎是Ni基合金具有高玻璃形成能力的原因。镍基块状非晶合金具有2690至2760 MPa的高拉伸断裂强度(σ{sub} f),95至103 GPa的杨氏模量(E),2.8%的断裂伸长率(ε{sub} f)和维氏硬度硬度(H {sub} v)为840至880。9.8H{sub} v / 3E和σ{sub} f / E的比率与相应的熔纺无定形薄带的比率几乎相同。具有与合金薄带相同的热和机械性能的镍基块状非晶合金的合成,对于高强度块状非晶有色合金的未来发展是令人鼓舞的。

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