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首页> 外文期刊>Journal of Materials Processing Technology >Selective Laser Melting of thin wall parts using pulse shaping
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Selective Laser Melting of thin wall parts using pulse shaping

机译:使用脉冲整形对薄壁零件进行选择性激光熔化

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摘要

Pulse shaping is a technique used to temporally distribute energy within a single laser pulse. This provides the user an added degree of control over the heat delivered to the laser material interaction zone. Pulses that induce a gradual heating or a prolonged cooling effect can be generated with peak power/pulse energy combinations specifically tailored to control melt pool properties and eventual part formation. This investigation used a pulsed 550 W Nd:YAG laser to produce thin wall Inconel 625 parts using pulse shapes that delivered a variety of different energy distributions. Parts built with and without pulse shape control were measured for width, top and side surface roughness. The efficacy of pulse shaping control is discussed including potential benefits for use within the Selective Laser Melting process. Pulse shaping was shown to reduce spatter ejection during processing, improve the top surface roughness of parts and minimise melt pool width.
机译:脉冲整形是一种用于在单个激光脉冲内临时分配能量的技术。这为用户提供了对传递到激光材料相互作用区域的热量的控制程度。可以通过专门设计用于控制熔池特性和最终零件形成的峰值功率/脉冲能量组合来产生诱导逐渐加热或延长冷却效果的脉冲。这项研究使用了550 W Nd:YAG脉冲激光,通过脉冲形状产生了各种不同的能量分布,从而生产出了薄壁Inconel 625零件。测量带有和不带有脉冲形状控制的零件的宽度,顶面和侧面粗糙度。讨论了脉冲整形控制的功效,包括在选择性激光熔化过程中使用的潜在好处。脉冲整形可减少加工过程中的飞溅物喷出,提高零件的顶表面粗糙度并最大程度地减少熔池宽度。

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