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首页> 外文期刊>Experimental Techniques >Optimizing Diffusion Bonding Parameters to Maximize the Strength of AA6061 Aluminum and AZ61A Magnesium Alloy Joints
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Optimizing Diffusion Bonding Parameters to Maximize the Strength of AA6061 Aluminum and AZ61A Magnesium Alloy Joints

机译:优化扩散结合参数以最大化AA6061铝和AZ61A镁合金接头的强度

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摘要

The main difficulty when joining magnesium (Mg) and aluminum (Al) alloys by fusion welding process lies in the existence of oxide films and formation of brittle intermetallic in the weld region. However, solid-state welding processes such as friction welding and diffusion bonding are suitable processes to join these two materials. The diffusion bonding process parameters such as bonding temperature, bonding pressure, holding time, and surface roughness of the bond specimen play a major role to determine the joint strength. In this investigation, an attempt was made to develop empirical relationships to predict the lap shear strength and bonding strength of diffusion bonded dissimilar joints of AZ61A magnesium and AA6061 aluminum alloys, incorporating the abovementioned parameters. Response surface methodology (RSM) was applied to optimize the diffusion bonding process parameters to attain the maximum shear strength and bonding strength of the joint. From this investigation, it is found that the bonds fabricated with the bonding temperature of 420.43?C, bonding pressure of 7.70 MPa, holding time of 27.15 min, and surface roughness of 0.10 μm exhibited maximum shear strength and bonding strength of 51.24 and 72.10 MPa, respectively.
机译:通过熔焊工艺连接镁(Mg)和铝(Al)合金的主要困难在于氧化膜的存在和在焊接区域中形成脆性金属间化合物。但是,固态焊接工艺(例如摩擦焊接和扩散粘结)是将这两种材料结合在一起的合适工艺。扩散粘结工艺参数(例如粘结温度,粘结压力,保持时间和粘结试样的表面粗糙度)在确定接合强度方面起着重要作用。在这项研究中,尝试开发经验关系以结合上述参数来预测AZ61A镁和AA6061铝合金的扩散结合异种接头的搭接剪切强度和结合强度。应用响应表面方法(RSM)来优化扩散结合工艺参数,以实现接头的最大剪切强度和结合强度。从该研究中发现,以420.43℃的粘合温度,7.70MPa的粘合压力,27.15min的保持时间和0.10μm的表面粗糙度制造的粘合剂表现出最大的剪切强度以及51.24和72.10MPa的粘合强度。 , 分别。

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