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Effect of Sm on thermal and mechanical properties of Cu-Zr-Al bulk metallic glasses

机译:Sm对Cu-Zr-Al大块金属玻璃热力学性能的影响

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The effect of rare-earth (Sm) microalloying on the thermal stability and phase selection along with the effect of nanocrystallization on the mechanical properties of amorphous melt-spun ribbons of Zr50Cu40Al10, Zr49Cu39.2Al9.8Sm2 and Zr48Cu38.4Al9.6Sm4 alloys were investigated using differential scanning calorimetry (DSC), X-ray diffraction (XRD), transmission electron microscopy (TEM), Vickers and nanoindentation hardness tests and micropillar compression analysis. XRD and TEM analyses showed that all samples were fully amorphous in as-spun state; however, crystallization sequences for the Sm-free and the Sm micro-alloyed samples were different during devitrification. Combined study of XRD, DSC and TEM on melt-spun ribbons show that Zr48Cu38.4Al9.6Sm4 have nanocrystallization of Cu2Sm phase with an average diameter of 10 nm, which was absent in Zr50Cu40Al10, prior to crystallization of Cu10Zr7 phase. The nanoindentation and micropillar compression tests revealed Cu2Sm nanocrystals embedded in Zr48Cu38.4Al9.6Sm4 alloy improves strength and hardness. On the other hand, presence of these nanocrystals deteriorate shear band stability and thus result in a catastrophic brittle fracture through a single shear band burst.
机译:研究了稀土(Sm)微合金化对热稳定性和相选择的影响以及纳米晶化对Zr50Cu40Al10,Zr49Cu39.2Al9.8Sm2和Zr48Cu38.4Al9.6Sm4非晶态熔纺带的力学性能的影响。使用差示扫描量热法(DSC),X射线衍射(XRD),透射电子显微镜(TEM),维氏和纳米压痕硬度测试以及微柱压缩分析。 XRD和TEM分析表明,所有样品在初生状态均为完全非晶态。但是,在失透过程中,无Sm和Sm微合金化样品的结晶顺序是不同的。 XRD,DSC和TEM在熔纺带上的联合研究表明,Zr48Cu38.4Al9.6Sm4具有Cu2Sm相的纳米晶,平均直径为10 nm,而在Zr50Cu40Al10中不存在,而在Cu10Zr7相晶化之前。纳米压痕和微柱压缩试验表明,嵌入Zr48Cu38.4Al9.6Sm4合金中的Cu2Sm纳米晶体可提高强度和硬度。另一方面,这些纳米晶体的存在降低了剪切带的稳定性,因此通过单个剪切带的破裂而导致灾难性的脆性断裂。

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