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Liquid Phase Diffusion Bonding of AC2C/ADC12 Aluminum Casting Alloy by Using Metal Salt Coated Zn Sheet

机译:AC2C / ADC12铝铸造合金采用金属盐涂层Zn板液相扩散键合

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Currently, the common way of bonding aluminum together is brazing. However, brazing creates problem when the high brazing temperature causes the formation of brittle intermetallic compound in between the joints prompting the need to circumvent this difficulty by considering transient liquid phase diffusion bonding method as a possible alternative. Being considered as a possible alternative solution, transient liquid phase diffusion bonding is not without problems that need to be overcome. One of these problems is the presence of oxide film on the insert material surface (Zn) necessitating the need to remove or destroy the oxide film without using high temperature and high load. Hence, in this study, the aim is to treat the bonding surface with formic acid for the removal of oxide film and substitution to a metal salt to determine the effectiveness of such treatment by performing tensile test and observation on the fractured surface of samples. From this study, it is found out that the tensile strength of the joint increased with the rise in bonding temperature with or without metal salt generation processing. However, it is understood that with metal salt generation processing, high strength joint can be obtained with lower bonding temperature compared with unmodified joints. It is hypothesized that this is because metallic zinc is generated as a result of surface modification and thermal decomposition of formate in the bond interface at low bonding temperatures.
机译:目前,将铝合金结合在一起的常用方式是钎焊。然而,当高钎焊温度导致接头之间的脆性金属间化合物形成脆性金属间化合物时,钎焊促使需要通过考虑瞬态液相扩散键合方法作为可能的替代方法来促进这种困难的需要。被认为是可能的替代解决方案,瞬态液相扩散键合不是不需要克服的问题。这些问题之一是在插入材料表面(Zn)上存在氧化物膜,必然需要在不使用高温和高负荷的情况下去除或破坏氧化物膜。因此,在本研究中,目的是用甲酸处理粘合表面以除去氧化膜并取代到金属盐,以通过对样品的裂缝表面进行拉伸试验和观察来确定这种处理的有效性。从本研究开始,发现关节的拉伸强度随着粘合温度的上升而增加或没有金属盐发电加工。然而,据了解,与金属盐发电加工,与未经修饰的关节相比,可以通过较低的粘接温度获得高强度接头。假设这是因为在低键合温度下,由于表面改性和粘合界面中甲酸酯的热分解而产生金属锌。

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