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Thermal Simulation of Laser Surface Modification of H13 Die Steel

机译:H13模钢激光表面改性的热仿真

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In this study, the effects of laser parameters on the properties of glazed die steel were investigated. A Rofin DC-015 diffusion-cooled CO_2 slab laser with 10.6 μm wavelength was used. Die steel sample surfaces were prepared with a 3 μm roughness and chemically treated to improve CO_2 laser wavelength absorbance. One set of processing parameters were processed through the thermal simulation program and correlated with physical results determined from actual test samples. Set processing parameters were 1138 W peak power, 2900 Hz PRF, 24% duty cycle and 261 mm/s traverse speed. Scanning Electron Microscopy (SEM) micrographs and micro-hardness properties of the affected surface were measured. An analytical mathematical model of the heat field generated in the laser glazing process was used to predict the nominal temperature distribution in the surface and dimensions of melt pool. A thermal model using point source surface energy inputs was used to predict the thermal profiles in the die steel. This allowed estimation of the depths of microstructurally altered regions. For higher energy absorbance, the depth of the glazed surface increased from 20 μm to 40 μm. At high nominal heating to cooling rate ratios, high micro-hardness values were recorded.
机译:在该研究中,研究了激光参数对玻璃模钢的性能的影响。使用具有10.6μm波长的Rofin DC-015扩散冷却的CO_2板晶板激光器。用3μm粗糙度制备模钢样品表面并进行化学处理以改善CO_2激光波长吸收。通过热仿真程序处理一组处理参数,并与从实际测试样本确定的物理结果相关。设置处理参数为1138 W峰值功率,2900 Hz PRF,24%占空比和261毫米/秒的横向速度。测量扫描电子显微镜(SEM)显微照片和受影响表面的微硬度特性。在激光玻璃加工过程中产生的热场的分析数学模型用于预测熔融池表面和尺寸的标称温度分布。使用点源表面能量输入的热模型用于预测模钢中的热型材。这允许估计微观结构改变的区域的深度。为了更高的能量吸光度,釉面表面的深度从20μm达到40μm增加。在高标称加热到冷却速率比,记录高微硬度值。

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