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Extension of Solid Solubility and Structural Evolution in Nano-Structured Cu-Cr Solid Solution Induced by High-Energy Milling

机译:高能铣削诱导纳米结构Cu-Cr固体溶液中固体溶解度和结构演化的延伸

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摘要

In Cu-Cr alloys, the strengthening effects of Cr are severely limited due to the relatively low Cr solid solubility in Cu matrix. In addition, apart from the dissolved Cr, it should be noted that high proportion of Cr in Cu matrix work as the second phase dispersion strengthening. Therefore, it is of great significance to extend the Cr solid solubility and decrease the size of the undissolved Cr phase to nano-structure. In this work, the nano-sized Cu-5 wt.% Cr solid solution was achieved through high energy ball milling (HEBM) only for 12 h. The Cr solubility of ~1.15 at.% was quantitatively calculated based on XRD patterns, which means supersaturated solid solution was realized. Except for the dissolved Cr, the undissolved Cr phase was with nano-sized work as the second phase. Upon milling of the Cu-Cr powders with coarse grains, the crystallite sizes and grain sizes are found to decrease with the milling time, and remain almost unchanged at a steady-state with continued milling. In addition, it was found that the stored energy induced by dislocation density increment and grain size refinement would be high enough to overcome the thermodynamic barrier for the formation of solid solution.
机译:在Cu-Cr合金中,由于Cu基质中的Cr固体溶解度相对低,Cr的强化效果受到严重限制。另外,除了溶解的CR之外,应该注意,Cu基质中的Cr在Cu基质中的高比例作为第二相色散强化。因此,延伸CR固体溶解度并降低未溶解的CR相至纳米结构的尺寸是具有重要意义。在这项工作中,通过高能量球铣削(Hebm)实现纳米尺寸的Cu-5重量%。基于XRD图案,定量计算〜1.15的Cr溶解度。意味着实现过饱和固溶体。除了溶解的CR外,未溶解的CR相是纳米大小的工作作为第二阶段。在用粗晶粒研磨Cu-Cr粉末时,发现微晶尺寸和晶粒尺寸随铣削时间而减小,并且在持续铣削的稳态上几乎保持不变。此外,发现通过位错密度增量和晶粒尺寸细化引起的储存能量足够高,以克服形成固溶体的热力学屏障。

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