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Formation of Pd-Ni Based Bulk Metallic Glasses 被引量:2

Formation of Pd-Ni Based Bulk Metallic Glasses
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摘要 Bulk metallic glasses are prepared in Pd4o.sNi4o.sSixP19-x (x = 0-14 at.%) alloys by a combination of flux treatment and water quenching technique. It is found that the thermal stability of the Pd4o.sNi4o.sSixP19=x glassy alloys depends on the addition of Si content. Among the Pd4o.sNi4o.sSixP19=x glassy alloys studied, the Pd4o.sNi4o.sSisPls bulk metallic glass exhibits the largest supercooled liquid region (△T = 119 K) and the highest activation energy of crystallization (283.3k J/tool), showing enhanced glass formation ability and extraordinary glassy thermal stability. Bulk metallic glasses are prepared in Pd4o.sNi4o.sSixP19-x (x = 0-14 at.%) alloys by a combination of flux treatment and water quenching technique. It is found that the thermal stability of the Pd4o.sNi4o.sSixP19=x glassy alloys depends on the addition of Si content. Among the Pd4o.sNi4o.sSixP19=x glassy alloys studied, the Pd4o.sNi4o.sSisPls bulk metallic glass exhibits the largest supercooled liquid region (△T = 119 K) and the highest activation energy of crystallization (283.3k J/tool), showing enhanced glass formation ability and extraordinary glassy thermal stability.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2007年第6期1653-1655,共3页 中国物理快报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant Nos 50671050 and 50431030, and the National Center for Nanoscience and Technology of China.
关键词 HIGH-STRENGTH PHASE-SEPARATION ALLOYS PD40.5NI40.5P19 TEMPERATURE STABILITY MPA FE CO HIGH-STRENGTH PHASE-SEPARATION ALLOYS PD40.5NI40.5P19 TEMPERATURE STABILITY MPA FE CO
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