The structure of rapidly solidified foil of the eutectic Sn – 8.8 wt. % Zn alloy

V. Shepelevich, D. Zernitsa
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引用次数: 1

Abstract

Microstructure of rapidly solidified eutectic alloy foil Sn – 8.8 wt. % Zn was studied. The alloy foil consists of solid solutions of zinc and tin. Dark equiaxed dispersed precipitates of zinc solid solution are uniformly interspersed in the matrix of tin solid solution. The parameters of the microstructure were determined. The average chord of a random secant at the sections of precipitates of a solid solution of zinc is 0.33 mm, and the specific interface surface is 0.81 mm–1. The precipitations of the tin solid solution have a microcrystalline structure. Specific surface of high angle boundaries less than 1 mm–1. The texture of the precipitates of solid solutions of tin and zinc in the foil was studied, and the pole densities of the diffraction lines of these phases are presented. The tin solid solution has the texture (100), and the zinc solid solution has the (0001) texture, which is explained by the predominant growth of grains, in which the crystalline planes of (100) tin and (0001) zinc are most closely packed and perpendicular to the heat flux. Eutectic alloy Sn – 8.8 wt. % Zn is in an unstable state. Annealing the foil causes the dissolution of small and coarsening of large particles of zinc solid solution, as well as the decomposition of a supersaturated tin solid solution. These processes cause an enlargement of the microstructure: an increase in the average particle size (dZn) of a solid solution of zinc and its volume fraction (VZn), a decrease in the specific surface (S ) of interphase boundaries.
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研究了共晶Sn - 8.8 wt. % Zn合金快速凝固箔的组织
研究了快速凝固共晶合金箔Sn - 8.8 wt. % Zn的显微组织。合金箔由锌和锡的固溶体组成。锌固溶体的暗等轴分散沉淀均匀地分布在锡固溶体基体中。确定了显微组织参数。锌固溶体析出物截面上随机割线的平均弦长为0.33 mm,比界面表面为0.81 mm - 1。锡固溶体的析出物具有微晶结构。高角边界比表面小于1mm - 1。研究了锡箔中锡和锌的固溶体析出相的织构,给出了这些相的衍射线的极密度。锡固溶体具有织构(100),锌固溶体具有织构(0001),这是由晶粒的主要生长来解释的,其中(100)锡和(0001)锌的晶面最紧密地排列并垂直于热流。共晶合金Sn - 8.8 wt. % Zn处于不稳定状态。退火箔引起小颗粒锌固溶体的溶解和大颗粒锌固溶体的粗化,以及过饱和锡固溶体的分解。这些过程导致微观结构的扩大:锌固溶体的平均粒径(dZn)及其体积分数(VZn)的增加,相界面比表面积(S)的减少。
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