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1)  hydrodynamic effect
动压效应
1.
Results of parametric study demonstrate that substantial hydrodynamic effect can be produced on the seal face wi.
分析结果表明密封面上的微孔可产生明显的动压效应
2)  Dynamic pressure effect
动压效应
1.
When Externally Pressurized Air-Lubricated Journal Bearing worked at high speed, dynamic pressure effect and inner friction heat are generated, and result in the change of bearing’s performance.
当静压气体轴承高速运动时,会产生一定的动压效应以及大量的气体内摩擦热,引起轴承性能的变化。
3)  hydrodynamic effects
动压效应
1.
The results show substantial hydrodynamic effects and better friction condition between two seal faces.
说明该密封结构产生的动压效应使密封面间处于良好的摩擦状
4)  hydrodynamic pressure effect
动压效应
1.
By analysis,it is found that a suitable size of micro-pore can cause hydrodynamic pressure effect produce a open force in the meantime.
研究表明:合适的微孔尺寸可以产生流体动压效应,此时可产生液膜开启力;凹腔的动压分布受凹腔两侧压差的影响,动压分布的改变能够产生一定的液膜阻力,起到减缓泄漏的作用。
2.
The results show that a suitable size of micropore can cause hydrodynamic pressure effect,because adjacent hydrodynamic pressure can overlap and couple,the calculated presssure of single microproe is smaller than that of several adjacent micropores.
研究表明:合适的微孔尺寸可以产生流体动压效应;相邻孔之间的流体动压力会产生相互叠加和耦合,单个微孔的压力要比几个相邻微孔叠加所得压力略小。
5)  hydrodynamic action
流体动压效应
1.
Mathematical model of hydrodynamic action in the free abrasive wire saw slicing process was established.
建立了游离磨料线锯切片过程中流体动压效应的数学模型,并采用有限差分法进行了数值分析,得到了游离磨料线锯切片的流体动压力分布和膜厚。
2.
Based on the theory of hydrodynamic lubrication,hydrodynamic action in the free abrasive monocrystalline silicon slicing process using a wiresaw was studied.
基于流体动压理论,研究了单晶硅自由磨料线锯切片过程中的流体动压效应
3.
Based on the works of predecessors, hydrodynamic action in the free abrasive and fixed abrasive monocrystalline silicon wiresaw slicing process is studied in this paper, and research works are given in the following:(1) Through self-compliance in.
本论文在总结前人经验的基础上,对自由磨料线锯和固结磨料线锯两种线锯形式切片过程中的流体动压效应进行了研究,所作的工作主要有: (1) 采用自柔顺系数来体现柔性体锯丝各点受径向力作用时所产生位移的差异,并计算出了锯丝上各点的自柔顺系数,建立了自由磨料线锯切片过程中的膜厚方程。
6)  "pull-squeeze" efficacy
"拉动-挤压"效应
补充资料:动压与超压(见核爆炸冲击波效应)


动压与超压(见核爆炸冲击波效应)
dynamic pressure and over-pressure

dongya yu ehaoya动压与超压(dynami。pressur。。nd over-pressure)见核爆炸冲击波效应。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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