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The Brazing Behavior of Aluminum-Steel Cladding Strip with Pre-Cladded Brazing Layer Used in Air Cooling System of Power Plants

机译:发电厂空冷系统中带预熔层的铝钢复合板的钎焊性能

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The brazing behavior of 3003 fin assemble with 4343(filler layer)/4A60(transition layer)/08Al(steel layer) brazing sheet (the ratio of filler layer thickness to transition thickness were constant 1:2) were investigated. This study elucidates the brazing results vary with the layer thickness and brazing temperatures. Results showed that keeping the holding time at brazing temperature constant (the holding time of this study was 10 minutes in all brazing progress), under the condition of brazing temperature less than or equal to 580 °C, thinner filler layer led to well formed joint, while thicker filler layer led to defects at brazing joints because of poor mobility. When brazing temperature was up to 600 °C, a thinner transition layer trended to lead to the formation a thick intermetallic compounds layer on the Aluminum-Steel surface. It was inferred that Si diffused from molten filler metal to the interface of transition layer and steel layer and promoted the formation of intermetallic compounds. Furthermore, it was found that in the surface away from brazing joints, with lower Si content, the intermetallic compounds were mainly η (Fe2Al5), while higher Si content region nearby brazing joints trended to form τ5(Al8Fe2Si) and τ6(Al4.5FeSi). Meanwhile, a transition layer with thickness above 134μm could avoid the formation of intermetallic compound. The optimum brazing process was that temperature range was 590 °C to 595 °C with 10-minutes holding time and the transition layer thickness was suggested to be equal or more than 134μm.
机译:研究了带有3433(填料层)/ 4A60(过渡层)/ 08Al(钢层)钎焊板的3003翅片组件的钎焊性能(填料层厚度与过渡厚度之比恒定为1:2)。这项研究阐明了钎焊结果随层厚和钎焊温度的变化而变化。结果表明,在钎焊温度下保持时间恒定(本研究在所有钎焊过程中的保持时间为10分钟),在钎焊温度小于或等于580°C的条件下,较薄的填料层导致接头良好形成,而较厚的填料层则由于流动性差而导致钎焊接头处出现缺陷。当钎焊温度高达600°C时,过渡层越薄,铝钢表面上就会形成较厚的金属间化合物层。推测Si从熔融的填充金属扩散到过渡层和钢层的界面,并促进金属间化合物的形成。此外,发现在远离钎焊接头的表面,具有较低的Si含量,金属间化合物主要为η(Fe2Al5),而在钎焊接头附近的较高Si含量区域趋于形成τ5(Al8Fe2Si)和τ6(Al4.5FeSi)。 )。同时,厚度大于134μm的过渡层可以避免金属间化合物的形成。最佳的钎焊工艺是温度范围为590°C至595°C,保持时间为10分钟,并且建议过渡层厚度等于或大于134μm。

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