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首页> 外文期刊>Journal of Materials Science >Dissolution kinetics of nanoscale liquid Pb/Bi inclusions at a grain boundary in aluminum
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Dissolution kinetics of nanoscale liquid Pb/Bi inclusions at a grain boundary in aluminum

机译:纳米级液态Pb / Bi夹杂物在铝晶界的溶解动力学

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摘要

In situ transmission electron microscopy is used to study dissolution of liquid single-phase Pb/Bi inclusions attached to a grain boundary in an alloy of Al99.29Pb0.65Bi0.06 at temperatures of 343, 370, and 389 degrees C, respectively. The initial size of the inclusions was smaller than 60 nm. Dissolution of the inclusions was observed until their complete disappearance. Digitized video recordings of the process of dissolution were used to obtain the dependence of the inclusion size with time. The kinetics of the dissolution of the grain boundary inclusions can be described with a model where it is assumed that grain-boundary diffusion of Pb and Bi is the controlling mechanism. The high value (2.3 eV) of the apparent activation enthalpy of dissolution indicates that the process is likely governed by the large negative enthalpies of solubility of Pb and Bi in Al.
机译:使用原位透射电子显微镜研究分别附着在Al99.29Pb0.65Bi0.06合金中的晶界上的液态单相Pb / Bi夹杂物在343、370和389摄氏度下的溶解。夹杂物的初始尺寸小于60nm。观察到夹杂物溶解直至它们完全消失。溶解过程的数字化视频记录用于获得夹杂物大小随时间的依赖性。可以用一个模型描述晶界夹杂物的溶解动力学,其中假定Pb和Bi的晶界扩散是控制机理。溶解的表观活化焓的高值(2.3 eV)表示该过程可能受Pb和Bi在Al中溶解度的较大负焓控制。

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