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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Using a Nd:YAG laser and six axes robot to cut zinc-coated steel
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Using a Nd:YAG laser and six axes robot to cut zinc-coated steel

机译:使用Nd:YAG激光和六轴机器人切割镀锌钢

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摘要

Zinc-coated steel sheets are important materials in the automobile and home appliance industries. Currently, lasers are the preferred tools for metal cutting because of their good cutting quality, flexibility and excellent features and results, as compared to traditional tools. The solid-state Nd:YAG laser has successfully replaced the gaseous CO{sub}2 laser for metal cutting; its small size and short wavelength makes it suitable for cutting bright and metal-coated materials, as well as being able to be transmitted via optical fibers and robots to cut complicated three dimensional and curved shapes. In this work, the Nd:YAG laser is used to cut 1 mm zinc coated steel sheets. We demonstrate the effects of different cutting parameters such as laser power, cutting speed, different gas types and pressures, and focus position on the cutting quality characteristics of attached dross, kerf width and cut surface roughness. Using a six axes robot, cutting speed was limited to 6 m/min because of the noticeable vibration at higher speeds. Results showed that the cutting surfaces achieved were very sharp and smooth. In cutting, Nd:YAG required less power and attained higher speeds than the published results of a CO{sub}2 laser, which makes Nd:YAG an economical alternative to cut zinc and metal-coated materials. In addition, laser cutting using robots provided efficient and consistent cutting quality, especially in the case of 3D and countered cutting. Apart from using low speed, robots proved to be more economical than costly, specially designed CNC tables.
机译:镀锌钢板是汽车和家用电器行业的重要材料。目前,激光是金属切割的首选工具,因为与传统工具相比,激光具有良好的切割质量,灵活性以及出色的功能和效果。 Nd:YAG固态激光器已成功取代气态CO {sub} 2激光器用于金属切割;它的小尺寸和短波长使其适合切割光亮的金属涂层材料,并且能够通过光纤和机器人传输以切割复杂的三维和弯曲形状。在这项工作中,使用Nd:YAG激光切割1毫米镀锌钢板。我们演示了不同的切割参数(例如激光功率,切割速度,不同的气体类型和压力以及焦点位置)对附着的浮渣,切口宽度和切割表面粗糙度的切割质量特征的影响。使用六轴机械手,由于较高速度下的明显振动,切割速度被限制为6 m / min。结果表明,所获得的切割表面非常锋利且光滑。在切割方面,Nd:YAG所需的功率更少,并且达到的速度要比CO {sub} 2激光器公布的结果更高,这使得Nd:YAG成为切割锌和金属涂层材料的经济选择。此外,使用机器人进行激光切割可提供高效且一致的切割质量,尤其是在3D和反向切割的情况下。除了使用低速之外,事实证明,机器人比昂贵的,专门设计的CNC工作台更为经济。

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