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The Effect of Nocolok Potassiumfluoridezincate Flux on Evaporator Corrosion Resistance

机译:Nocolok Potasiumfluoridezinc杂环杂环锌对蒸发器耐腐蚀性的影响

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Heat exchanger requires both high quality level and high performance. In order to manufacture heat exchanger, aluminum brazing technology is often used. Moreover to improve compactness and lightness, the material thickness of the heat exchanger components tends to decrease. However, it is necessary to maintain high quality level in particular regarding corrosion resistance. In order to improve the corrosion resistance of heat exchanger, several methods are used. One of the possibilities is to use multiclad material with a corrosion protection layer. Their methods propose to use a modified Nocolok flux. This modified Nocolok flux during melting creates zinc particles. The zinc particles react with the aluminum alloy surface during the brazing cycle and create an external layer with better corrosion resistance due to local corrosion potential modification. In this framework a study is proposed to define the effect of Nocolok zinc flux on evaporator external corrosion behavior ("plates to fin"). The cladded outer surface of plate is used as a filler material during the brazing. The particularity of this study is to evaluate the effect of Nocolok zinc flux with cladded material. Several parts have been made. The corrosion resistance has been estimated by SWAAT (Sea Water Acid Acetic Test). In parallel brazing performances have been studied (metallographies, burst pressure, diffusion rate). An analysis of the results and further works are proposed.
机译:热交换器需要高质量的水平和高性能。为了制造热交换器,通常使用铝钎焊技术。此外,为了提高紧凑性和亮度,热交换器部件的材料厚度趋于降低。然而,必须特别是在耐腐蚀性上保持高质量的水平。为了提高热交换器的耐腐蚀性,使用了几种方法。其中一种可能性是使用带有腐蚀保护层的多链材料。他们的方法建议使用改进的Nocolok助焊剂。这种改性的Nocolok助熔剂在熔化过程中产生锌颗粒。锌颗粒在钎焊循环期间与铝合金表面反应,并且由于局部腐蚀电位修饰,具有更好的耐腐蚀性的外层。在本框架中,提出了研究,以定义Nocolok锌通量对蒸发器外部腐蚀行为的影响(“鳍片”)。板的包覆外表面在钎焊期间用作填充材料。本研究的特殊性是评估Nocolok锌通量与包覆材料的影响。已经进行了几个部分。 SWAAT(海水酸性醋酸试验)估算了耐腐蚀性。已经研究了平行钎焊性能(金相,突发压力,扩散速率)。提出了对结果和进一步作品的分析。

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