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1)  eccentric circular cylinders
偏心圆柱
1.
This paper studies the steady streaming flow of low Reynolds number between two eccentric circular cylinders.
本文研究低雷诺数情况下偏心圆柱间定常Streaming流动问题,其中内柱以速度U(x)cosωt在静止不可压粘性流体中作小振幅直线简谐振动,外柱则固定不动。
2)  eccentric cylinder
偏心圆柱面
1.
By use of complex variable function and conformal transformation,the cross-section of separation cylinder and eccentric cylinder and off-axis ellipsoidal cylinder are transformed to the cross-section of parallel plates,and the capacitance,electric potential and electric field intensity of each cylinder are calculated.
运用复变函数、保角变换等理论,把分离圆柱面形、偏心圆柱面形和偏轴椭圆柱面形变换成横截面为平行板,并计算出它们的电容、电势和电场强度等静电场问题。
3)  eccentric short roller bearing
偏心短圆柱轴承
1.
The structure of an eccentric short roller bearing is denoted, methods are given for determining the bearing clearance, its eccentricity and its lift estimate, by which a double row eccentric short roller bearing is designed and manufactured.
介绍了偏心短圆柱轴承的结构 ,给出了确定偏心短圆柱轴承间隙、轴承偏心距及轴承寿命估算的方法。
4)  eccentric pressured cylinder
偏心受压圆柱
1.
It is necessary to solve a hyper equation while calculating the load-bearing capacity on the normal section of an eccentric pressured cylinder.
偏心受压圆柱正截面承载力计算时需要求解超越方程根据超越方程对应的实际工程特点,首先判断出方程根所在的区间,再在该区间上应用优选学中的0618黄金分割法来迭代求解该超越方程
5)  eccentric cylindrical thin shell
偏心圆柱薄壳
1.
This paper gives the approximate equations of the eccentric cylindrical thin shell under small deflections.
本文推导了偏心圆柱薄壳小挠度时的近似方程,并利用解析方法求解了该方程,得出了偏心圆柱薄壳的应力、位移与偏心距之间的关系。
6)  eccentric cylindrical transmission line
偏心圆柱传输线
1.
The electrostatic force and its distribution on the walls of an eccentric cylindrical transmission line is studied.
研究了偏心圆柱传输线壁上的静电力及其分布 。
补充资料:在AutoCAD中偏心圆锥与偏心圆台实体的画法
现在要画一个偏心圆锥,底面在WCS的XY平面上,圆心(0,0,0),半径100,顶点(300,0,400)在ZX平面上.

1)连接PA,PB. A(-100,0,0) B(100,0,0)



图1



在当前坐标下:


2)延长PA到C,使PA=CA;延长PB到D,使PB=DB;


3)连接CD;


4)以CD为直径画圆;


5)用XLINE命令中的二等分选项作角CPD的角平分线PO,交CD于O;


6)过O作CD的垂线,交圆于E,F;



图2



7)用三点UCS命令,取三点为:O,P,C;


8)过点O作PO的垂线GO,交PC于G;



图3



9)再次用三点UCS命令,取三点为O,F,G;


10)现在就可以画椭圆锥了!
cone-e-c-捕捉O点-捕捉F点-捕捉G点-a-捕捉P点;



图4



11)回到WCS,剖切椭圆锥
SL-选择椭圆锥-回车-XY-回车-捕捉P点.


12)删除辅助线条.



图5

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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