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基于热传导方程的长脉冲激光打孔效能比分析
引用本文:张梁,秦渊,陆建,倪晓武.基于热传导方程的长脉冲激光打孔效能比分析[J].光电子.激光,2015(10):1990-1996.
作者姓名:张梁  秦渊  陆建  倪晓武
作者单位:南京理工大学 理学院,江苏 南京 210094;南京理工大学 材料科学与工程学院, 江苏 南京 210094;南京理工大学 理学院,江苏 南京 210094;南京理工大学 理学院,江苏 南京 210094
基金项目:中央高校基本科研业务费专项资金(30920130123001)资助项目 (1.南京理工大学 理学院,江苏 南京 210094; 2.南京理工大学 材料科学与工程学院, 江苏 南京 210094)
摘    要:研究了脉宽为ms的长脉冲激光打孔的效能比,即打 孔深度与激光能量之比。首先,测量了脉宽为1ms、不同能量密度的长脉冲激光打孔深度, 结果表明,激光打孔的效能比随着激光能量 密度的增加而下降。根据长脉冲激光功率密度低、脉冲波形近似为矩形的特点,建立了稳态 一维热传导模 型,得到了打孔深度与Al板表面温度之间的关系。然后,将实验中测量得到的打孔深度作为 边界条件,代 入到上述关系式中,计算得到了不同能量密度下激光作用过程中的Al板表面温度,进而计 算得到了气化 损失率。计算结果表明,激光的能量密度越高,Al板的表面温度就越高,气化损失率就越大 。最后,结合 文献报道的实验结果,对相同能量密度、不同脉宽的长脉冲激光打孔深度的不同进行了讨论 。所得到的结果均与文献报道结果吻合。

关 键 词:稳态热传导方程    打孔深度    液态喷溅
收稿时间:2015/7/13 0:00:00

Analysis of energy efficiency ratio for long-pulse laser drilling based on the heat conduction equation
ZHANG Liang,QIN Yuan,LU Jian and NI Xiao-wu.Analysis of energy efficiency ratio for long-pulse laser drilling based on the heat conduction equation[J].Journal of Optoelectronics·laser,2015(10):1990-1996.
Authors:ZHANG Liang  QIN Yuan  LU Jian and NI Xiao-wu
Affiliation:Department of Information Physics & Engineering,Nanjing University of Scienc e and Technology,Nanjing 210094,China;School of Materials Science and Engineer ing,Nanjing University of Science and Technology,Nanjing 210094,China;Department of Information Physics & Engineering,Nanjing University of Scienc e and Technology,Nanjing 210094,China;Department of Information Physics & Engineering,Nanjing University of Scienc e and Technology,Nanjing 210094,China
Abstract:Energy efficiency ratio is studied for long pulse laser where the pu lse width is millisecond order drilling.First of all,the different energy density long pulse laser dril ling depths are measured.In the experiment,the pulse width of laser is 1millisecond and then the energy efficie ncy ratio is obtained.The results show that the energy efficiency ratio of the laser drilling decreases as the laser energy density increases.Due to long-pulse laser power density is low and the shape of pulse is approximately rectangular,the one-dimensional steady-state heat conduction model is establi shed,and the relationship between drilling depth and the surface temperature is obtained.Then,the drilling depth i s measured in experiment as a boundary condition,and substituted into the above formula,and the surface temperature of the aluminum plate and gasification loss rate are calculated during the laser ir radiation.The results show that the higher the energy density of the laser,the higher the s urface temperature of the aluminum plate and the greater the gasification loss r ate.The obtained results are consistent with the reported ones in the literature .
Keywords:the steady state heat conduction equation  drilling depth  liquid splash
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