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Obtaining Slots and Channels by using a 1070nm Wavelength Laser

机译:通过使用1070nm波长激光器获得缝隙和通道

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Slots and channels are sometimes necessary in machine building; the surfaces of the slots and channels could be obtained by means of a laser beam machining equipment. Essentially, the material removal from the workpiece needs the development of thermal phenomena of melting and vaporizing and of dynamic phenomena, respectively, by which the melted and vaporized material is moved from the machining zone. The paper includes the results of the researches concerning the possibilities to use 1070nm wavelength laser equipment whose output power is of 300W, in order to obtain slots and channels in metallic test pieces. The sizes of the parameters able to characterize the machined surface are influenced by the machining conditions. The theoretical analysis of the machining process highlighted the necessity of sending a compressed air jet along the laser beam axis and of an adequate selection of the machining parameters. Experimental researches were developed by changing the speed of the relative motion between the laser spot and the test piece. Empirical relations were established by mathematical processing of the experimental results. The empirical relations highlight the influence exerted by speed between the test piece and the laser beam on the depth of the channels thus generated.
机译:在机器制造中,有时需要使用插槽和通道。狭缝和通道的表面可以通过激光束加工设备获得。本质上,从工件上去除材料需要分别产生熔化和汽化的热现象以及动态现象,通过该现象使熔化和汽化的材料从加工区移出。本文包括有关使用1070nm波长激光设备(输出功率为300W)以在金属试件中获得狭缝和通道的可能性的研究结果。能够表征加工表面的参数的大小受加工条件的影响。加工过程的理论分析突出沿激光束轴线和加工参数的适当选择的发送压缩空气射流的必要性。通过改变激光点和试件之间的相对运动速度来进行实验研究。通过对实验结果进行数学处理,建立了经验关系。经验关系突出了测试件和激光束之间的速度对如此产生的通道深度的影响。

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