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Estimating cutting front temperature difference in disk and CO_2 laser beam fusion cutting

机译:估算圆盘切割和CO_2激光束切割时的切割前温度差

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摘要

A three-dimensional, semi-stationary, simplified thermal numerical model was developed. The average cutting front temperature difference in disk and CO _2 laser beam fusion cutting of 90MnCrV8 was estimated by computing the conductive power loss. Basing on heat affected zone extension experimentally measured and using an inverse methodology approach, the unknown thermal load on the cutting front during laser cutting was calculated. The accuracy of the numerical power loss estimation was evaluated comparing the results from simulation with the ones from analytical models. A good agreement was found for all the test cases considered in this study. The conduction losses estimation was used for justifying the lower quality of disk laser cuts due to the lower average cut front temperature. This results in the increase of viscosity of molten material and in the subsequent more difficult ejection of the melted material from the cut kerf.
机译:建立了三维,半平稳,简化的热数值模型。通过计算导电功率损耗,估算了90MnCrV8在圆盘和CO _2激光熔合切割中的平均切割锋面温差。基于实验测量的热影响区延伸并使用逆方法学方法,计算了激光切割过程中切割锋面的未知热负荷。通过比较仿真结果和分析模型的结果,评估了数字功率损耗估计的准确性。对于本研究中考虑的所有测试用例,都找到了很好的协议。传导损耗估计用于证明由于较低的平均切割前温度而导致的较低质量的磁盘激光切割。这导致熔融材料的粘度增加并且随后使熔融材料从切缝中更困难地排出。

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