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Effect of steel composition on the laser cutting behavior of 25-mm-thick plates

机译:钢成分对25mm厚钢板激光切割性能的影响

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摘要

Attempts were made to gain a better understanding of the effects of steel composition and thermophysical properties, such as solidus and liquidus temperatures, heat of oxidation, surface tension, viscosity and thermal conductivity, on laser-cutting behavior. Laboratory-produced heats containing varying levels of C, S, Si, Cu, Ni, Cr, and Mo were hot-rolled to 32-mm-thick plates. Laser cutting was carried out after the plates were blanchard-ground to 25 mm and shot-blasted to eliminate surface effects and roughness variability. Under these conditions, Cu and Ni were found to improve cutting performance, while Cr degraded cutting performance. C and Si were not found to affect cut quality. No direct correlation was obtained among steel composition, laser cut quality, and thermophysical properties. However, limited confocal microscopy and energy dispersive x-ray spectroscopic analysis of selected cut surfaces suggested that enrichment at the cutting front of alloying elements resistant to oxidation might play a major role in determining cut quality.
机译:试图更好地理解钢成分和热物理性能(例如固相线和液相线温度,氧化热,表面张力,粘度和导热率)对激光切割性能的影响。实验室生产的包含不同含量的C,S,Si,Cu,Ni,Cr和Mo的热被热轧至32毫米厚的板。在将板进行blanchard研磨至25 mm并进行喷砂处理以消除表面影响和粗糙度变化之后,进行激光切割。在这些条件下,发现铜和镍可改善切削性能,而铬会降低切削性能。未发现C和Si影响切削质量。在钢成分,激光切割质量和热物理性能之间没有直接相关性。然而,有限的共聚焦显微镜和能量色散X射线光谱分析对选定的切割表面表明,抗氧化合金元素的切割前沿的富集可能在确定切割质量方面起主要作用。

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