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Numerical modeling of cutting process of steel sheets using a laser beam

机译:激光切割钢板的数值模拟

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Laser beam cutting technology is becoming increasingly popular in various industries. Advantages of this method is a very high cutting speed and a precision of edges of cut elements. Good quality depends on many technological parameters. Numerical prediction of the effect of cutting process parameters on the quality of the surface can be useful for technologists. The work concerns the numerical analysis of the laser cutting process of sheet made of steel. The influence of selected parameters on the energy efficiency of the heat source and the cutting speed are analyzed. Numerical calculations are performed in Abaqus software. Three-dimensional discrete model of the analyzed system is developed. The standard material parameters of austenitic steel changing with the temperature are taken into account. Gauss model describing the distribution of movable heat source of a laser beam power are assumed in the solution algorithms. The influence of various parameters of the laser beam on obtained temperature field and shape of cut zone is estimated on the basis of numerical calculations. The results are compared with the results of the experiment.
机译:激光束切割技术在各个行业中越来越受欢迎。该方法的优点是很高的切割速度和切割元件边缘的精度。好的质量取决于许多技术参数。切削工艺参数对表面质量的影响的数值预测对于技术人员可能是有用的。这项工作涉及对钢片激光切割过程的数值分析。分析了所选参数对热源能量效率和切割速度的影响。数值计算在Abaqus软件中执行。建立了分析系统的三维离散模型。考虑了奥氏体钢的标准材料参数随温度变化的情况。在求解算法中采用了描述激光束功率的可移动热源分布的高斯模型。在数值计算的基础上,估算了激光束的各种参数对获得的温度场和切割区形状的影响。将结果与实验结果进行比较。

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