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A model for prediction of dimensional tolerances of laser cut holes in mild steel thin plates

机译:低碳钢薄板中激光切割孔尺寸公差的预测模型

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摘要

Dimensional variation in laser cutting of sheet metals depends on two factors: the accuracy and repeatability of the positioning system, and the thermal effects of the laser beam on the workpiece material. In this work, a physical model was formulated to estimate the dimensional accuracy of holes produced with laser cutting. The model included the assumption that the layer adjacent to the hole is plastically deformed and contains residual stresses up to the yield strength. The model was used to calculate the size of the hole and cut-out disk of varying radii in steel plates with thicknesses of 3.2 mm and 6.4 mm. The model-predicted data were verified with the experimental data obtained using a 1 kW continuous wave CO{sub}2 laser. Results indicated that there is an excellent correlation between the model and the experimental data especially for smaller diameter holes.
机译:钣金件激光切割的尺寸变化取决于两个因素:定位系统的精度和可重复性,以及激光束对工件材料的热效应。在这项工作中,制定了一个物理模型来估计激光切割产生的孔的尺寸精度。该模型包括以下假设:与孔相邻的层发生塑性变形,并包含直至屈服强度的残余应力。该模型用于计算厚度为3.2 mm和6.4 mm的钢板中不同半径的孔和切割盘的尺寸。使用1 kW连续波CO {sub} 2激光器获得的实验数据验证了模型预测的数据。结果表明,模型和实验数据之间存在极好的相关性,特别是对于较小直径的孔而言。

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