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The effect of process parameters on the surface form of laser engraved H13 tool steel

机译:工艺参数对激光雕刻H13工具钢表面形态的影响

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摘要

The milling of hard materials with a complex shape using conventional methods causes many tool based problems. However, a laser assisted milling process eliminates the tool-based problem because of the small, high intensity beam used. Laser engraving, which is one of milling methods, is an effective process for the machining of difficult to machine geometries and materials like hot work tool steels. This study focuses on recast layer formation and subsurface hardness as a function of distance. Power, scan speed and frequency were employed for the investigation. The highest hardness was detected at 201 HV, which measured at 800 mm s~(-1) for scan speed and 40 kHz for frequency. XRD analysis showed that two different phases, Fe and Fe_(2.96)Si_(0.05)O_4, existed on the machined surfaces.
机译:使用常规方法铣削形状复杂的硬质材料会导致许多基于工具的问题。但是,激光辅助铣削工艺消除了基于刀具的问题,因为所使用的光束很小,强度很高。激光雕刻是铣削方法之一,是加工难于加工的几何形状和热加工工具钢等材料的有效方法。这项研究的重点是重铸层的形成和地下硬度随距离的变化。功率,扫描速度和频率被用于研究。在201 HV时检测到最高硬度,扫描速度为800 mm s〜(-1),频率为40 kHz。 XRD分析表明,加工表面存在Fe和Fe_(2.96)Si_(0.05)O_4两个不同的相。

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