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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effect of Microstructure on Diffusional Solidification of 4343/ 3005/4343 Multi-Layer Aluminum Brazing Sheet
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Effect of Microstructure on Diffusional Solidification of 4343/ 3005/4343 Multi-Layer Aluminum Brazing Sheet

机译:显微组织对4343 / 3005/4343多层铝钎焊片扩散凝固的影响

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摘要

The effect of microstructure on clad/core interactions during the brazing of 4343/3005/4343 multi-layer aluminum brazing sheet was investigated employing differential scanning calorim-ctry (DSC) and electron back-scattering diffraction (EBSD). The thickness of the melted clad layer gradually decreased during the brazing operation. It could be completely removed iso-thermally as a result of diffusional solidification at the brazing temperature. During the brazing cycle, the rate of loss of the melt in the brazing sheet, with small equiaxed grains' core layer, was higher than that with the core layer consisting of elongated large grains. The difference in microstructure affected the amount of liquid formed during brazing.
机译:利用差示扫描量热法(DSC)和电子背散射衍射(EBSD)研究了4343/3005/4343多层铝钎焊片材中微观结构对包层/芯层相互作用的影响。在钎焊操作过程中,熔覆层的厚度逐渐减小。由于在钎焊温度下扩散凝固,它可以等温完全除去。在钎焊循环中,具有小等轴晶粒核心层的钎焊片中熔体的损失速率高于由细长的大晶粒组成的核心层的损失率。微观结构的差异会影响钎焊过程中形成的液体量。

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