首页> 外文会议>International Conference on Proceeding amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >Influence of Alloying Elements on Interfacial Reaction and Strength of Aluminum/Steel Dissimilar Joints for Light Weight Car Body
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Influence of Alloying Elements on Interfacial Reaction and Strength of Aluminum/Steel Dissimilar Joints for Light Weight Car Body

机译:合金元素对轻量化车身铝/钢异种接头界面反应和强度的影响

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Dissimilar joining of Al alloys and steel was carried out using diffusion bonding process. The effects of Si and Mg contents of Al alloys and bonding parameters on the interfacial reaction were fundamentally investigated. While the reaction layers consisting of Fe-Al type intermetallic compounds (IMCs) formed at the interfacial region, in the joint with Al alloys including 1mass% Si or more a ternary Fe-Al-Si IMC layer formed at the Al alloy side. The growth of the reaction layers followed the parabolic growth low. A maximum joint strength was obtained at an average reaction layer thickness ranging from 0.5 to 1μm. The thicker reaction layer caused the fracture of the joints at a lower stress because of brittleness of the IMCs, and the thinner reaction layer including un-bonded interface also resulted in a low joint strength. As a result a thin and uniform reaction layer including less un-bonded interface can realize a high joint strength. Since the Fe-Al-Si IMC layer uniformly formed more rapidly than the binary Fe-Al IMCs in the joint with Al alloys including 1mass% Si or more, a higher joint strength was obtained at a thinner average reaction layer. As a result, it was found that the chemical compositions of 6000 series Al alloy controlled to be Mg (0.6 to 1.0mass%) and Si (more than 1.0mass%) were appropriate to obtain the better bonding characteristics.
机译:铝合金和钢的异种结合是采用扩散结合工艺进行的。从根本上研究了铝合金中硅,镁含量和结合参数对界面反应的影响。尽管在界面区域形成了由Fe-Al型金属间化合物(IMC)组成的反应层,但在与包含1质量%以上的Si的铝合金的接合处,在铝合金侧形成了三元Fe-Al-Si IMC层。反应层的生长遵循抛物线生长低。在0.5-1μm的平均反应层厚度下获得最大的接合强度。由于IMC的脆性,较厚的反应层在较低的应力下导致接头断裂,而包括未结合界面的较薄的反应层也导致较低的接头强度。结果,包括较少未结合界面的薄且均匀的反应层可以实现高结合强度。由于在包含1质量%以上的Si的铝合金的接合中,Fe-Al-Si IMC层比二元Fe-Al IMC更均匀地形成,因此在较薄的平均反应层处可获得较高的接合强度。结果发现,将6000系列铝合金的化学组​​成控制为Mg(0.6至1.0质量%)和Si(大于1.0质量%)是合适的以获得更好的结合特性。

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