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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >In Situ Measurement of the Thermal Contact Resistance of an Al Lap Joint During Braze Processing
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In Situ Measurement of the Thermal Contact Resistance of an Al Lap Joint During Braze Processing

机译:钎焊过程中铝搭接接头热接触电阻的原位测量

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摘要

A technique was developed, using a laser flash thermal diffusivity apparatus, to measure the thermal contact resistance, R_c, of an Al lap joint during braze processing. The method required a determination of the temperature dependence of the thermal diffusivity of the individual Al braze sheets, as well as a two-layer lap joint made from these sheets, under identical conditions. A two-layer modeling method was then used to analyze the above data to determine R_c for the lap joint as a function of processing temperature. This in situ analysis of R_c for a developing joint during brazing was able to distinguish both solid-state and liquid-phase reactions occurring at the faying surfaces of the joint. Consequently, it represents a powerful, new experimental tool that can be used to investigate the mechanisms of braze joint formation and the thermal properties of a joint as a function of processing condition. In the particular case of this study, the technique demonstrates that the use of a Ni-based fluxless brazing process to join aluminum (Al) sheets, reduced the R_C of the lap joint by 100-folds from 1.3 x 10~(-4) m~2 K/W before brazing to 1.35 x 10~(-6)m~2 K/W after brazing.
机译:开发了一种使用激光闪光热扩散仪的技术,用于测量钎焊过程中Al搭接接头的热接触电阻R_c。该方法需要在相同条件下确定各个铝钎焊板以及由这些板制成的两层搭接接头的温度依赖性。然后使用两层建模方法来分析以上数据,以确定搭接接头的R_c作为处理温度的函数。钎焊过程中对正在发展的接头的R_c的这种原位分析能够区分在接头接合面发生的固态和液相反应。因此,它代表了一种功能强大的新型实验工具,可用于研究钎焊接头形成的机理和接头的热性能随加工条件的变化。在这项研究的特定案例中,该技术表明,使用基于Ni的无熔剂钎焊工艺连接铝(Al)板,可使搭接接头的R_C从1.3 x 10〜(-4)降低了100倍。钎焊前为m〜2 K / W,钎焊后为1.35 x 10〜(-6)m〜2 K / W。

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