Striation Formation and Surface Finish in Laser Cutting of Mild Steel

Kai Chen, Y. Yao
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Abstract

The mechanisms of melt ejection and striation formation in laser cutting of mild steel are discussed. It is argued that the melt ejection from the cutting front is not a steady state process, but rather shows a cyclic phenomenon. The striation are strongly affected by the unstable characteristic of the thin liquid film on the cutting front during the melt ejection, together with the oxidation and heat transfer process. Dependent on the cutting speed, the liquid film will either rupture or generate waves on the cutting front. Theoretical explanation is given according to the instability theory of a thin liquid film in a high velocity gas jet and the diffusion controlled oxidation theory. The striation frequency and depth can be estimated according to the above theories. Experimental investigations were carried out and the results are consistent with the calculations. The better understanding has shed light on further investigations and optimal process development.
低碳钢激光切割中的条纹形成与表面光洁度
讨论了低碳钢激光切割过程中熔体喷射和条纹形成的机理。认为熔体从切割前沿喷出不是一个稳态过程,而是一个循环现象。在熔体喷射过程中,切割面上液体薄膜的不稳定特性以及氧化和传热过程对条纹产生了强烈的影响。根据切削速度的不同,液膜要么破裂,要么在切削面上产生波浪。根据高速气体射流中液体薄膜的不稳定性理论和扩散控制氧化理论给出了理论解释。根据上述理论可以估计出条纹的频率和深度。进行了实验研究,结果与计算结果一致。更好的理解为进一步的研究和最佳工艺开发提供了光明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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