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Synthesis of the magnesium-based nano/amorphous-composite alloy powder by the combination method of melt-spinning and mechanical alloying

机译:用熔融纺丝和机械合金化的组合方法合成镁基纳米/非晶复合合金粉末

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A series of Mg-based alloys with composition of Mg{sub}65Y{sub}10Cu{sub}(25-x)Ag{sub}x, x=0, 5, 10, were selected for investigating the microstructure evolution of the Mg-based nano/amorphous-composite alloy powder synthesized by the combination method of melt-spinning and mechanical alloying (MA). The microstructure characterization of the alloy powders was conducted by means of DSC, XRD, FEG-SEM, and TEM techniques. The result of XRD reveals that the entire as-quenched alloy ribbons exhibit a broaden diffraction pattern of amorphous phase. After 50 hours milling the mixture of amorphous alloy ribbons with 5 vol.% of nano-sized ZrO{sub}2 by planetary mill, the ZrO{sub}2 dispersed magnesium composite alloy powder can reach to a homogeneous size distribution. In parallel, the MA composite Mg-based alloy powders still remain an amorphous state by the characterization of X-ray diffraction and the DSC analysis. A clear Tg (glass transition temperature) and most wide supercooled region (about 44 K) were revealed for both the Mg{sub}65Y{sub}10Cu{sub}20Ag{sub}5 alloy ribbon and the MA magnesium composite powder. In addition, the result of TEM observation also revealed that the ZrO{sub}2 with average particle size of 80 nm distributed homogeneously in the amorphous matrix of the Mg{sub}65Y{sub}10Cu{sub}20Ag{sub}5 /5 vol.% ZrO{sub}2 composite alloy powder. The interface between the ZrO{sub}2 dispersoid and the amorphous matrix of the composite alloy powder exhibits a very good bonding condition.
机译:选择具有组成的Mg {sub} 65Y {sub} 10cu {sub}(25-x)Ag {sub} x,x = 0,5,10的组成的一系列基于Mg的合金用于调查该组成的微观结构演变基于Mg的纳米/非晶复合合金粉末,通过熔融纺丝和机械合金化(MA)的组合方法合成。通过DSC,XRD,FEG-SEM和TEM技术进行合金粉末的微观结构表征。 XRD的结果揭示了整个淬火的合金带表现出宽泛的无定形相衍射图案。 50小时后铣削非晶合金带的混合物,用5体积的5体积。由行星磨机的纳米尺寸ZrO {Sub} 2的百分比,ZrO {亚} 2分散的镁复合合金合金粉末可以达到均匀尺寸分布。同时,通过X射线衍射和DSC分析表征,MA复合Mg基合金粉末仍然是无定形状态。对于Mg {sub} 65Y {sub} 10cu {sub} 20ag {sub} 5合金带和Ma镁复合粉末,揭示了透明的Tg(玻璃化转变温度)和最宽的过冷区域(约44k)。另外,TEM观察的结果还揭示了ZrO {Sub} 2的平均粒度为80nm,在Mg {sub} 65Y} 20Ag {sub} 5 /中的非晶基质中均匀地分布。/ 5 Vol。%ZrO {亚} 2复合合金粉末。 ZrO {亚} 2分散体和复合合金粉末的无定形基质之间的界面表现出非常良好的粘合条件。

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