详细信息
文献类型:期刊文献
中文题名:激光加工多孔端面机械密封的参数研究
英文题名:Parametric study of mechanical seals with a laser-textured micro-pore face
作者:于新奇[1];陈钟祥[1];蔡仁良[2]
机构:[1]河北科技大学机械电子工程学院,石家庄050054;[2]华东理工大学化工机械研究所,上海200237
年份:2005
期号:8
起止页码:83
中文期刊名:机械设计与制造
外文期刊名:Machinery Design & Manufacture
收录:CSTPCD;;北大核心:【北大核心2004】;
基金:河北科技大学研究基金资助项目(QD200412)
语种:中文
中文关键词:激光;机械密封;有限差分法;液膜压力
外文关键词:Laser; Mechanical seals; Finite difference method; Liquid film pressure
摘要:建立了激光加工多孔端面机械密封的流体动力学分析模型。根据基本假设,一个孔栏上的液膜压力分布可表征整个密封面上的液膜压力。将参数进行无量纲化,采用有限差分法对激光加工多孔端面机械密封进行了参数研究,并利用MATLAB计算机软件得到了无量纲液膜压力的三维分布规律。由计算分析可知,液膜平均压力随着液体粘度和转速的增加、液膜厚度的减小而增大;随着流体压力的增大,微孔产生的动压效应减弱。另外,微孔密度和微孔深径比的对液膜平均压力有很大影响,对其进行优化,可使平均液膜压力达到最大。
A theoretical model has been developed for mechanical seals with a laser - textured porous seal face. According to the basic assumptions,liquid film pressure over a pore column can characterize one over the integrated seal face. By means of variable dimensionless steps,parametric investigation has been performed to obtain dimensionless liquid film pressure by finite difference method. Meanwhile,three dimensional liquid film pressure profiles over the pore column can be achieved by computer program MATLAB.It was found from results of calculation that average liquid film pressure increases with increase of the rotational speed, liquid viscosity and reduction of liquid film thickness.Hydrodynamic effects produced by micro - pores decrease with increase of fluid pressure. In addition,the effect of pore density and depth over diameter ratio is very significant .Optimum values of these parameters can maximize the average pressure.
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