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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Parameter optimisation of laser cladding repair for an Invar alloy mould
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Parameter optimisation of laser cladding repair for an Invar alloy mould

机译:激光覆层塑料塑料塑料模具的参数优化

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摘要

Laser cladding repair is an advanced technology for repairing Invar alloy moulds; however, the influences of various processing parameters on the quality of the Invar alloy moulds have yet to be determined. To explore the optimisation of laser cladding repair parameters, analyses of the geometric features and microstructure of the cladding layer were conducted. First, the influences of different powder feeding rates and scanning speeds on the dilution rate of the substrate were investigated by establishing a mathematical model of the laser power attenuation. Next, the influences of the parameters on the geometric features of the cladding layer were analysed. Finally, the influences of the parameters on the microstructure of the cladding layer were evaluated. At a laser power of 2300 W, a scanning speed of 3 m/min, and a powder feeding rate of 9 g/min, the best results of the width, height, dilution rate, roughness, and contact angle of the cladding layer were obtained. The results of this study indicated that excellent metallurgical bonding occurred between the cladding layer and the interface layer, and that the intended geometric features and desired microstructure of the cladding layer were obtained.
机译:激光熔覆修复是一种修复Invar合金模具的先进技术;然而,尚未确定各种处理参数对Invar合金模具的质量的影响。为了探讨激光熔覆修复参数的优化,进行了几何特征和包层层的微观结构的分析。首先,通过建立激光功率衰减的数学模型,研究了对不同粉末馈送速率和扫描速度对基板的稀释速率的影响。接下来,分析了参数对包层层的几何特征的影响。最后,评估参数对包层的微观结构的影响。在2300W的激光功率下,扫描速度为3米/分钟,粉末进给速率为9克/分钟,宽度,高度,稀释率,粗糙度和覆层层的接触角的最佳结果是获得。该研究的结果表明,在包层和界面层之间发生了优异的冶金结合,并且获得了预期的几何特征和包层的所需微观结构。

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