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光纤激光水下切割20 mm厚Q235钢板的实验研究

Experimental study of fiber laser underwater cutting of 20 mm thick Q235 steel plate

  • 摘要: 为了优化激光水下切割技术在核设施和船舶领域的应用,提升Q235钢板的切割质量,采用了单因素和正交试验相结合的方法,将气体压力、激光功率和切割速率作为主要变量,进行了实验验证。结果表明,气体压力显著影响切割面粗糙度,激光功率对挂渣量影响最大;最优参数为气体压力0.8 MPa、激光功率4 kW、切割速率3.5 mm/s,此时切割效果最佳;宏观与微观分析还揭示,切割过程中存在分层现象,主要包括上层、中层、下层及挂渣层。这些结果有助于进一步优化激光切割参数,提高Q235钢板水下切割的精度和效率。

     

    Abstract: In order to optimize the application of laser underwater cutting technology in nuclear facilities and ships and improve the cutting quality of Q235 steel plates, a method combining single factor and orthogonal experiments was adopted, while gas pressure, laser power and cutting speed were used as the main variables. And the experiment was carried out. The results show that gas pressure significantly affects the roughness of the cutting surface, and laser power has the greatest impact on the amount of slag. The optimal parameters are gas pressure 0.8 MPa, laser power 4 kW, and cutting speed 3.5 mm/s, respectively. At the same time, the cutting effect is best. Macroscopic and microscopic analysis also revealed that there is a layering phenomenon during the cutting process, which mainly includes the upper layer, the middle layer, the lower layer and the slag layer. This result will help further optimize laser cutting parameters and improve the accuracy and efficiency of underwater cutting of Q235 steel plates.

     

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