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Thermal affected zone obtained in machining steel XC42 by high-power continuous CO2 laser

机译:大功率连续CO2激光加工XC42钢时获得的热影响区

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A high-power continuous CO2 laser (4 kW) can provide energy capable of causing melting or even, with a special treatment of the surface, vaporization of an XC42-steel sample. The laser-metal interaction causes an energetic machining mechanism, which takes place according to the assumption that the melting front precedes the laser beam, such that the laser beam interacts with a preheated surface whose temperature is near the melting point. The proposed model, obtained from the energy balance during the interaction time, concerns the case of machining with an inert gas jet and permits the calculation of the characteristic parameters of the groove according to the characteristic laser parameters (absorbed laser energy and impact diameter of the laser beam) and allows the estimation of the quantity of the energy causing the thermal affected zone (TAZ). This energy is equivalent to the heat quantity that must be injected in the heat propagation equation. In the case of a semi-infinite medium with fusion temperature at the surface, the resolution of the heat propagation equation gives access to the width of the TAZ. (c) 2007 Elsevier Ltd. All rights reserved.
机译:大功率连续式CO2激光器(4 kW)可以提供能量,即使经过特殊的表面处理,也能够引起XC42钢样品熔化甚至蒸发。激光与金属的相互作用导致了高能机加工机制,该机制是根据以下假设进行的:熔化前沿在激光束之前,从而使激光束与温度接近熔点的预热表面相互作用。从相互作用期间的能量平衡获得的建议模型涉及使用惰性气体射流进行加工的情况,并允许根据特征激光参数(吸收的激光能量和激光的冲击直径)计算凹槽的特征参数。激光束),并可以估算引起热影响区(TAZ)的能量。该能量等于在热传导方程中必须注入的热量。在表面具有熔化温度的半无限介质的情况下,热传递方程的分辨率可以访问TAZ的宽度。 (c)2007 Elsevier Ltd.保留所有权利。

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