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New High-Strength, Long-Life Aluminum Alloys With Excellent Sagging Resistance for Heat Exchanger Tube Applications

机译:新型高强度,长寿命铝合金,具有良好的热交换器管耐热性下垂性

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A new family of high-strength brazing sheet core alloys with extended long life corrosion performance and high sagging resistance have been developed for use in the tubes of CAB-brazed automotive heat exchangers. Normal mill production practices were used to produce the materials. Direct chill casting was followed by scalping, cladding, pre-heating, hot and cold rolling to 0.27 mm gauge with final partial annealing to the -H{sub}24 temper. The core was braze clad with AA4343 and the opposite side was clad with FA6815 (a proprietary Sapa sacrificial alloy) for specific high waterside corrosion purposes. The new Sapa alloys denoted FA7872 and FA7873 contain high amounts of manganese, copper and also some zirconium, all of which contribute to the high strength achieved after brazing. The post-brazed strength primarily results from high amounts of alloying elements retained in solid solution. Additionally, as sheet gauges continue to decrease the sagging resistance of tube stock becomes increasingly important. These alloys exhibit almost twice the resistance to sagging during brazing compared to normal long-life tube stock. This is due to the large recrystallized grain size which is characteristic of these alloys. The addition of Mg to the core provides a further strength increase without any negative impact on the sagging resistance. Corrosion studies show that the braze simulated sheet survives more than 40 days in SWAAT without any perforations. This long-life corrosion behavior is due to the formation during brazing of a very protective sacrificial surface layer. This can be seen in the SWAAT tested sample sections and in the corrosion potential depth profiles. The extremely good long-life corrosion behavior is facilitated by the low-silicon, high-manganese and high-copper contents of the core alloys.
机译:已经开发出具有延长的寿命腐蚀性性能和高度下垂性的高强度钎焊板芯合金,用于在驾驶室钎焊的汽车热交换器管中使用。正常轧机生产实践用于生产材料。直接冷却铸造随后通过剥离,包层,预热,冷热和冷轧至0.27mm表示,最终部分退火至-h {u} 24脾气。芯是钎焊与AA4343的钎焊包覆,对于特定的高水珠腐蚀目的,相反的一侧具有Fa6815(专有的Sapa牺牲合金)。表示Fa7872和Fa7873的新款SAPA合金含有大量的锰,铜和一些锆,所有这些都有助于钎焊后达到的高强度。后钎焊的强度主要由高量的合金元素产生,得到固体溶液。另外,随着片材仪的继续降低管道的抗滑性变得越来越重要。与正常的长寿命管道相比,这些合金在钎焊期间呈现几乎是对钎衰的抗性的抵抗力。这是由于具有这些合金的特征的大的再结晶晶粒尺寸。向芯中加入Mg提供了进一步的强度增加,而不会对抗垂性产生任何负面影响。腐蚀性研究表明,钎焊模拟片材在Swaat中幸存超过40天,没有任何穿孔。这种长寿命的腐蚀行为是由于在钎焊期间形成了非常保护性牺牲表面层。这可以在SWAAT测试的样品部分和腐蚀电位深度轮廓中看到。通过核心合金的低硅,高锰和高铜含量促进了极好的长寿命腐蚀行为。

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