首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Cooling Rates on Glass Formation and Magnetic Behavior for the Fe_(73.0)C_(7.0)Si_(3.3)B_(5.0)P_(8.7)Mo_(3.0) Bulk Metallic Glass
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Effects of Cooling Rates on Glass Formation and Magnetic Behavior for the Fe_(73.0)C_(7.0)Si_(3.3)B_(5.0)P_(8.7)Mo_(3.0) Bulk Metallic Glass

机译:冷却速率对Fe_(73.0)C_(7.0)Si_(3.3)B_(5.0)P_(8.7)Mo_(3.0)大块金属玻璃的玻璃形成和磁行为的影响

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摘要

In this paper, effects of cooling rates on glass formation and magnetic-behavior of the Fe_(73.0)C_(7.0)Si_(3.3)B_(5.0)P_(8.7)Mo_(3.0) (at. pct) alloy were investigated via different purging gases (i.e., helium and argon) during suction casting. X-ray diffraction patterns and transmission electron microscopy characterization confirmed that the maximum attainable diameter for glass formation is increased from 5 to 7 mm with the helium as the purging gas, relative to the argon. Meanwhile, the coercivity value (H_c) of the sample cast in helium is almost 5 times larger than that fabricated in argon, although the magnetization saturation in these two alloys is similar. Our pair distribution function analysis, density, and positron annihilation lifetime spectroscopy measurements indicated that the sample cast in helium possesses more free volume; however, the difference between them is insubstantial. Further, experimental results revealed that the residual stress in the samples cast under helium is much larger than that in those prepared in Argon, which could be responsible for the abrupt change in the coercivity.
机译:本文研究了冷却速率对Fe_(73.0)C_(7.0)Si_(3.3)B_(5.0)P_(8.7)Mo_(3.0)(at。pct)合金的玻璃形成和磁行为的影响。吸铸过程中使用不同的吹扫气体(例如,氦气和氩气)。 X射线衍射图和透射电子显微镜表征证实,相对于氩气,以氦气为吹扫气体,玻璃形成的最大可达到直径从5 mm增加到7 mm。同时,尽管两种合金的磁化饱和度相似,但用氦铸造的样品的矫顽力值(H_c)几乎是用氩气制造的矫顽力值的5倍。我们的对分布函数分析,密度和正电子an灭寿命光谱测量表明,铸入氦气中的样品具有更多的自由体积。但是,它们之间的区别不大。此外,实验结果表明,在氦气下铸造的样品中的残余应力比在氩气中制备的样品中的残余应力大得多,这可能是导致矫顽力急剧变化的原因。

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