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Thermal stress developed during the laser cutting process: consideration of different materials

机译:激光切割过程中产生的热应力:考虑不同的材料

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摘要

The laser cutting of metallic substrates results in the development of thermal stresses around the cut edges. Depending on the cutting speed, laser power intensity, and material properties, stress levels reaching and exceeding the yielding limit of the substrate material can result. In the present study, the laser cutting situation is simulated and temperature as well as thermal stress fields are computed for steel, Inconel 625, and Ti-6Al-4V alloy. The cutting speed of the laser is considered to be constant and a constant temperature heat source with a focused spot diameter is assumed along the kerf surface at the cut edge, resembling the laser heat source. The equations for energy and thermal stresses are solved numerically using the finite element method (FEM). It is found that the temperature decays sharply in the vicinity of the cut edges and that the equivalent stress attains high values in this region. Inconel 625 results in the highest thermal stress levels in the vicinity of the cut edges and is then followed by steel and titanium alloy.
机译:金属基材的激光切割导致切割边缘周围出现热应力。根据切割速度,激光功率强度和材料特性,可能会导致应力水平达到和超过基板材料的屈服极限。在本研究中,模拟了钢,Inconel 625和Ti-6Al-4V合金的激光切割情况,并计算了温度以及热应力场。激光的切割速度被认为是恒定的,并且假定沿着切割边缘处的切口表面具有聚焦点直径的恒温热源,类似于激光热源。使用有限元方法(FEM)对能量和热应力方程进行数值求解。发现在切割边缘附近温度急剧衰减,并且在该区域中等效应力达到较高的值。 Inconel 625在切割边缘附近产生最高的热应力水平,然后是钢和钛合金。

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