首页> 外文期刊>Indian heart journal >Applicazione del processo friction stir welding (FSW) in continuo per cantrotelai in lega di alluminio ed acciaio per impiego automobilistica
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Applicazione del processo friction stir welding (FSW) in continuo per cantrotelai in lega di alluminio ed acciaio per impiego automobilistica

机译:搅拌搅拌焊接(FSW)工艺的应用连续对铝合金铝合金制铝及汽车用途

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A continuous welding process known as friction stir welding ("FSW" below) has been applied to the welding of steel and aluminum die-cast members, and has been employed in mass production for the first time. The use of this new welding process has made it possible to realize a weight saving of 25% in the subframe against the previous model, and the stiffness of the installation points in the suspension system has been increased by 20%. This has contributed to the achievement of enhanced maneuverability. In order to apply this welding technique to mass production, a unique welding system employing a general-purpose multi-joint robot was developed, and a level of manufacturing efficiency and infrastructure investment cost equivalent to conventional MIG welding were realized. A non-destructive inspection system using a high-sensitivity infrared camera and a laser beam has also been developed in order to verify the strength of the FSWjoints. A continuous welding process known as friction stir welding ("FSW" below) has been applied to the welding of steel and aluminum die-cast members, and has been employed in mass production for the first time. The use of this new welding process has made it possible to realize a weight saving of 25% in the subframe against the previous model, and the stiffness of the installation points in the suspension system has been increased by 20%. This has contributed to the achievement of enhanced maneuverability. In order to apply this welding technique to mass production, a unique welding system employing a general-purpose multi-joint robot was developed, and a level of manufacturing efficiency and infrastructure investment cost equivalent to conventional MIG welding were realized. A non-destructive inspection system using a high-sensitivity infrared camera and a laser beam has also been developed in order to verify the strength of the FSWjoints.
机译:已称为摩擦搅拌焊接的连续焊接过程(下面的“FSW”)已经应用于钢和铝压铸构件的焊接,并且首次采用大规模生产。这种新的焊接过程的使用使得可以实现对先前模型的子帧中的25%的重量,并且悬架系统中的安装点的刚度已增加20%。这有助于实现增强的机动性。为了将这种焊接技术应用于大规模生产,开发了一种独特的焊接系统,实现了一种普通的多关节机器人,实现了与传统的MIG焊接相当的制造效率和基础设施投资成本。也开发了使用高灵敏度红外相机和激光束的非破坏性检查系统,以验证FSWJOINTS的强度。已称为摩擦搅拌焊接的连续焊接过程(下面的“FSW”)已经应用于钢和铝压铸构件的焊接,并且首次采用大规模生产。这种新的焊接过程的使用使得可以实现对先前模型的子帧中的25%的重量,并且悬架系统中的安装点的刚度已增加20%。这有助于实现增强的机动性。为了将这种焊接技术应用于大规模生产,开发了一种独特的焊接系统,实现了一种普通的多关节机器人,实现了与传统的MIG焊接相当的制造效率和基础设施投资成本。也开发了使用高灵敏度红外相机和激光束的非破坏性检查系统,以验证FSWJOINTS的强度。

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