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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >The effect of iron-based filler metal element on the properties of brazed stainless steel joints for EGR cooler applications
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The effect of iron-based filler metal element on the properties of brazed stainless steel joints for EGR cooler applications

机译:铁基填充金属元件对EGR冷却器应用的钎焊不锈钢接头性能的影响

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摘要

As an alternative to the traditional nickel-based filler metals, new-type iron-based filler metal has become a development trend for stainless steel brazing in exhaust gas recirculation (EGR) cooler fabrication, aiming at decreasing brazing temperature and obtaining higher joint strength with minimal erosion as well as better corrosion resistance. In particular, achieving the satisfying properties with inexpensive raw materials is desirable for broad industrial applications at an economic cost. A new type of iron-based filler metal was designed and developed for SUS304 stainless steel brazing. The effect of B and Mo content on interface microstructure, lap-joint shear strength, microhardness, and corrosion resistance of brazed seam was investigated. The optimum brazing parameters were achieved at 1050 degrees C-20min. Both brazing temperature and holding time are critical factors for controlling the interface microstructure and hence the mechanical properties of the brazed joints. The interface microstructure and erosion of T-joints were observed and analyzed. Additionally, results from the evaluation on wettability, shear strength, and corrosion resistance have been benchmarked against commercial iron-based and nickel-based filler metals. Finally, tensile strength tests of brazed joint with developed iron-based filler metal in a form of paste and amorphous foil were conducted at both room temperature and high temperature.
机译:作为传统的镍填料金属的替代方案,新型铁基填充金属已成为废气再循环(EGR)冷却器制造中的不锈钢钎焊的发展趋势,旨在降低钎焊温度并获得更高的关节强度最小的腐蚀以及更好的耐腐蚀性。特别地,在经济成本下,可以实现具有廉价原料的满足性能。为SUS304不锈钢钎焊设计并开发了一种新型铁基填充金属。研究了B和Mo含量对途径微观结构,搭接剪切强度,微硬度和钎焊缝的耐腐蚀性的影响。最佳的钎焊参数在1050摄氏度下实现。钎焊温度和保持时间都是用于控制界面微观结构的关键因素,从而实现钎焊接头的机械性能。观察并分析了T关节的界面微观结构和侵蚀。另外,对润湿性,剪切强度和耐腐蚀性的评估产生的结果是针对商业铁基和基于镍的填充金属的基准测试。最后,在室温和高温下,在糊状和非晶箔中发育铁基填充金属的钎焊接头的拉伸强度试验在室温和高温下进行。

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