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Liquid Film Migration in Warm Formed Aluminum Brazing Sheet

机译:暖膜迁移在暖铝钎焊板中

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Warm forming has previously proven to be a promising manufacturing route to improve formability of Al brazing sheets used in automotive heat exchanger production; however, the impact of warm forming on subsequent brazing has not previously been studied. In particular, the interaction between liquid clad and solid core alloys during brazing through the process of liquid film migration (LFM) requires further understanding. Al brazing sheet comprised of an AA3003 core and AA4045 clad alloy, supplied in O and H24 tempers, was stretched between 0 and 12 pct strain, at room temperature and 523K (250 A degrees C), to simulate warm forming. Brazeability was predicted through thermal and microstructure analysis. The rate of solid-liquid interactions was quantified using thermal analysis, while microstructure analysis was used to investigate the opposing processes of LFM and core alloy recrystallization during brazing. In general, liquid clad was consumed relatively rapidly and LFM occurred in forming conditions where the core alloy did not recrystallize during brazing. The results showed that warm forming could potentially impair brazeability of O temper sheet by extending the regime over which LFM occurs during brazing. No change in microstructure or thermal data was found for H24 sheet when the forming temperature was increased, and thus warm forming was not predicted to adversely affect the brazing performance of H24 sheet.
机译:预先成型预先成熟是有助于提高汽车换热器生产中使用的钎焊板的可成型性的有希望的制造路线;然而,先前尚未研究温热成型对随后的钎焊的影响。特别地,通过液体膜迁移过程(LFM)的钎焊期间液体包层和固体核合金之间的相互作用需要进一步了解。 AA3003核心和AA4045包层合金的Al钎焊板在O和H24趋势中提供,在室温和523K(250℃)的温度下拉伸0和12 PCT菌株,以模拟热成型。通过热和微观结构分析预测钎料。使用热分析量化固液相互作用的速率,而微观结构分析用于研究钎焊期间LFM和核心合金重结晶的相反方法。通常,液体包层相对迅速消耗,并且在形成核心合金在钎焊期间没有重结晶的条件发生LFM。结果表明,热成形可能通过延长在钎焊期间发生LFM的制度来妨碍O脾片的钎料。当成形温度升高时,未发现微观结构或热数据的变化,因此不预测温度的成形以对H24片材的钎焊性能产生不利影响。

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