首页> 外文期刊>Surface review and letters >WETTING BEHAVIOR IN ULTRASONIC VIBRATION-ASSISTED BRAZING OF ALUMINUM TO GRAPHITE USING Sn-Ag-Ti ACTIVE SOLDER
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WETTING BEHAVIOR IN ULTRASONIC VIBRATION-ASSISTED BRAZING OF ALUMINUM TO GRAPHITE USING Sn-Ag-Ti ACTIVE SOLDER

机译:Sn-Ag-Ti活性钎料在超声振动钎焊铝制石墨中的润湿行为

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摘要

In this study, Sn-Ag-Ti ternary alloy has been used as the active solder to braze pure aluminum and graphite in atmospheric conditions using ultrasonic vibration as an aid. The authors studied the formation, composition and decomposition temperature of the surface oxides of the active solder under atmospheric conditions. In addition, the wettability of Sn-5Ag-8Ti active solder on the surface of pure aluminum and graphite has also been studied. The results showed that the major components presented in the surface oxides formed on the Sn-5Ag-8Ti active solder under ambient conditions are TiO, TiO2, Ti2O3, Ti3O5 and SnO2. Apart from AgO and Ag2O2, which can be decomposed at the brazing temperature (773 K), other oxides will not be decomposed. The oxide layer comprises composite oxides and it forms a compact layer with a certain thickness to enclose the melted solder, which will prevent the liquid solder from wetting the base metals at the brazing temperature. After ultrasonic vibration, the oxide layer was destroyed and the liquid solder was able to wet and spread out around the base materials. Furthermore, better wettability of the active solder was observed on the surface of graphite and pure aluminum at the brazing temperature of 773-823 K using ultrasonic waves. The ultrasonic wave acts as the dominant driving factor which promotes the wetting and spreading of the liquid solder on the surface of graphite and aluminum to achieve a stable and reliable brazed joint.
机译:在这项研究中,锡-银-钛三元合金已被用作活性焊料,在大气条件下利用超声振动辅助钎焊纯铝和石墨。作者研究了在大气条件下活性焊料表面氧化物的形成,组成和分解温度。此外,还研究了Sn-5Ag-8Ti活性焊料在纯铝和石墨表面上的润湿性。结果表明,在环境条件下,Sn-5Ag-8Ti活性焊料表面形成的氧化物主要成分为TiO,TiO2,Ti2O3,Ti3O5和SnO2。除了可以在钎焊温度(773 K)下分解的AgO和Ag2O2之外,其他氧化物也不会分解。氧化物层包括复合氧化物,并且它形成具有一定厚度的致密层以包围熔化的焊料,这将防止液体焊料在钎焊温度下润湿贱金属。在超声振动之后,氧化层被破坏,液态焊料能够润湿并散布在基材周围。此外,在使用超声波的钎焊温度为773-823 K的情况下,在石墨和纯铝的表面上观察到活性焊料的润湿性更好。超声波是主要的驱动因素,可促进液态焊料在石墨和铝表面上的润湿和扩散,从而实现稳定可靠的钎焊接头。

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