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首页> 外文期刊>Materials Technology >Effect of partial crystallisation on mechanical properties of (Cu_(42)Zr_(42)Al_8Ag_8)_(99.5)Si_(0.5) bulk metallic glass
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Effect of partial crystallisation on mechanical properties of (Cu_(42)Zr_(42)Al_8Ag_8)_(99.5)Si_(0.5) bulk metallic glass

机译:部分结晶对(Cu_(42)Zr_(42)Al_8Ag_8)_(99.5)Si_(0.5)大块金属玻璃力学性能的影响

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摘要

The (Cu_(42)Zr_(42)Al_8Ag_8)_(99.5)Si_(0.5) bulk metallic glass (BMG) rods, 3 mm in diameter, with different fractions of nanocrystalline phase were prepared by isothermal annealing the as cast BMG rods at the temperature within the supercooled temperature region for different time periods in vacuum respectively. The result of hardness and compression test revealed that the hardness and yield strength of compression test all exhibit an increasing trend with crystallisation fraction. The maximum 1990 MPa yield strength, 2100 MPa fracture strength and 5% failure strain occur at the 50% crystallised BMG sample (with an average size about 60 nm). This suggests that these homogeneous distributed nanocrystals embedded in the amorphous matrix may act as a network obstacle in the glassy matrix to restrict the propagation of highly localised shear banding, avoiding catastrophic shearing-off through the whole sample and result in improving the plasticity.
机译:通过对铸态的BMG棒进行等温退火,制备了直径为3 mm的,具有不同分数的纳米晶相的(Cu_(42)Zr_(42)Al_8Ag_8)_(99.5)Si_(0.5)大块金属玻璃(BMG)棒。分别在真空中不同时间段内的过冷温度区域内的温度。硬度和压缩试验的结果表明,压缩试验的硬度和屈服强度均显示出随结晶度增加的趋势。在50%结晶的BMG样品(平均尺寸约为60 nm)处出现最大1990 MPa屈服强度,2100 MPa断裂强度和5%破坏应变。这表明嵌入在无定形基质中的这些均匀分布的纳米晶体可能充当玻璃状基质中的网络障碍,从而限制了高度局部剪切带的传播,避免了整个样品的灾难性剪切,并提高了可塑性。

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