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Joining Mechanism of Dissimilar Materials Such as Metal and Plastic Sheets by Friction Lap Joining

机译:通过摩擦圈加入加入金属和塑料板等不同材料的机理

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It is difficult to join dissimilar materials such as metallic material and polymer. We have investigated to join Aluminum alloy and high density polyethylene (PE) and ethylene acrylic acid copolymer (EAA) using Friction Lap Joining (FLJ) and then concluded EAA could be strongly joined with Aluminum alloy. PE could not be joined without anodizing. We have considered that EAA has a polar functional group, COOH. On the contrary, PE cannot be joined to an as-received aluminum alloy, because PE has no polar functional group. So, we have tried to confirm this mechanism with XPS and FTIR to investigate the interface between anodized surface and that of polymer. We find that the possibility of chemical bonding arises between O-H in COOH and O in Al_2O_3 or O in C=O and O inAl_2O_3 at elevated temperature.
机译:难以加入不同材料,如金属材料和聚合物。我们已经研究了使用摩擦圈连接(FLJ)加入铝合金和高密度聚乙烯(PE)和乙烯丙烯酸共聚物(EAA),然后结束EAA可以用铝合金强烈地连接。没有阳极氧化,PE无法加入。我们认为EAA具有极地官能团COOH。相反,PE不能加入接收的铝合金,因为PE没有极性官能团。因此,我们试图用XPS和FTIR确认这种机制,以研究阳极氧化表面与聚合物之间的界面。我们发现化学键合的可能性在COH和O中的O-H in Al_2O_3或O中的O中的O和O.0在升高的温度下。

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