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The Effect of Interlayer Materials on the Joint Properties of Diffusion-Bonded Aluminium and Magnesium

机译:中间层材料对扩散结合铝和镁结合性能的影响

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摘要

Diffusion bonding is a well-known technology for a wide range of advanced joining applications, due to the possibility of bonding different materials within a defined temperature-time-contact pressure regime in solid state. For this study, aluminium alloys AA 6060, AA 6082, AA 7020, AA 7075 and magnesium alloy AZ 31 B are used to produce dissimilar metal joints. Titanium and silver were investigated as interlayer materials. SEM and EDXS-analysis, micro-hardness measurements and tensile testing were carried out to examine the influence of the interlayers on the diffusion zone microstructures and to characterize the joint properties. The results showed that the highest joint strength of 48 N/mm 2 was reached using an aluminium alloy of the 6000 series with a titanium interlayer. For both interlayer materials, intermetallic Al-Mg compounds were still formed, but the width and the level of hardness across the diffusion zone was significantly reduced compared to Al-Mg joints without interlayer.
机译:扩散结合是一种广泛用于高级结合应用的众所周知的技术,这是由于在固态下在规定的温度-时间-接触压力范围内结合不同材料的可能性。在本研究中,使用铝合金AA 6060,AA 6082,AA 7020,AA 7075和镁合金AZ 31 B生产异种金属接头。研究了钛和银作为夹层材料。进行了SEM和EDXS分析,显微硬度测量和拉伸试验,以检查中间层对扩散区微观结构的影响并表征接头性能。结果表明,使用具有钛夹层的6000系列铝合金可以达到48 N / mm 2的最高结合强度。对于两种夹层材料,仍然形成金属间的Al-Mg化合物,但是与没有夹层的Al-Mg接头相比,扩散区的宽度和硬度水平显着降低。

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