微观结构
金属间化合物
共晶体系
合金
固溶体
旋节分解
铝
差热分析
高熵合金
材料科学
相图
冶金
热力学
结晶学
相(物质)
化学
衍射
光学
物理
有机化学
作者
C. H. Tong,Yuliang Chen,Jien‐Wei Yeh,Su-Jien Lin,Swe-Kai Chen,Tao-Tsung Shun,Chun-Huei Tsau,Shou-Yi Chang
标识
DOI:10.1007/s11661-005-0283-0
摘要
A new approach for the design of alloy systems with multiprincipal elements is presented in this research. The Al
x
CoCrCuFeNi alloys with different aluminum contents (i.e., x values in molar ratio, x=0 to 3.0) were synthesized using a well-developed arc-melting and casting method. These alloys possessed simple fcc/bcc structures, and their phase diagram was predicted by microstructure characterization and differential thermal analyses. With little aluminum addition, the alloys were composed of a simple fcc solid-solution structure. As the aluminum content reached x=0.8, a bcc structure appeared and constructed with mixed fcc and bcc eutectic phases. Spinodal decomposition occurred further on when the aluminum contents were higher than x=1.0, leading to the formation of modulated plate structures. A single ordered bcc structure was obtained for aluminum contents larger than x=2.8. The effects of high mixing entropy and sluggish cooperative diffusion enhance the formation of simple solid-solution phases and submicronic structures with nanoprecipitates in the alloys with multiprincipal elements rather than intermetallic compounds.
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