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Critical power of keyhole formation in CW Nd:YAG laser deep penetration welding
引用本文:秦国梁,齐秀堃,林尚扬.Critical power of keyhole formation in CW Nd:YAG laser deep penetration welding[J].中国焊接,2007,16(1):36-40.
作者姓名:秦国梁  齐秀堃  林尚扬
作者单位:[1]Harbin Welding Institute, Harbin, 150080 [2]Harbin Institute of Technology, Harbin, 150001
摘    要:The energy model was founded to calculate the critical power of keyhole formation by using the limit principle in CW ( continuous wave ) Nd: YAG laser deep penetration welding process. The model was validated by experiments. The results show that '.there are two errors between the calculated critical power of keyhole formation and that of experiments : one is that the calculated results is less than those of experiments, which is caused by not considering the energy loss by heat conduction in the model of keyhole formation. The other is that there is 0. 9 mm error between the axis of the calculated curve of critical power with location of laser focus and that of experimental curve, which is induced by the excursion of laser focus in laser deep penetration welding. At last, the two errors were revised according to the analyses of the errors.

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Critical power of keyhole formation in CW Nd:YAG laser deep penetration welding
Qin Guoliang,Qi Xiukun,Lin Shangyang.Critical power of keyhole formation in CW Nd:YAG laser deep penetration welding[J].China Welding,2007,16(1):36-40.
Authors:Qin Guoliang  Qi Xiukun  Lin Shangyang
Abstract:The energy model was founded to calculate the critical power of keyhole formation by using the limit principle in CW (continuous wave) Nd:YAG laser deep penetration welding process. The model was validated by experiments. The results show that there are two errors between the calculated critical power of keyhole formation and that of experiments: one is that the calculated results is less than those of experiments, which is caused by not considering the energy loss by!heat conduction in the model of keyhole formation. The other is that there is 0/9 mm error between the axis of the calculated curve of critical power with location of laser focus and that of experimental curve, which is induced by the excursion of laser focus in laser deep penetration welding. At last, the two errors were revised according to the analyses of the errors.
Keywords:laser deep penetration welding  keyhole formation  critical power  error analysis
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