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1)  eccentric band flange
偏心凸缘
2)  eccentric cam
偏心凸轮
1.
This article puts forward a control algorithm of variable frequency and adjustable speed of an eccentric cam being applied to the shaping mechanism of ring spinning frames.
提出变频调速系统控制细纱机偏心凸轮成型机构的算法。
3)  insulation eccentricity
绝缘偏心
1.
The it analyses the insulation eccentricity and inner conductor noncircularity as well as the capacitance and insulation resistance in the case of stranded inner conductor by using the emulation charge method,taking telecom coaxial cable as an example.
本文首先介绍了模拟电荷法的基本原理及其适用场合,然后介绍了利用模拟线电荷法分析同轴通信电缆绝缘偏心、内导体不圆和内导体为绞合导体时的电容与绝缘电阻计算的实例。
2.
This paper presents the calculation of the influence of insulation eccentricity on the electric properties of RF coaxial cables by the conformal transformation method,giving related formulas for inductance,characteristics impedance and insulation resistance.
本文论述了保角变换法计算绝缘偏心对射频同轴电缆电性能影响的方法,并给出了相应的电容、电感、特性阻抗及绝缘电阻的解析函数表达式,最后与数值计算结果进行了对比。
4)  flange centerline
凸缘中心线
5)  eccentric cam
偏心圆凸轮
1.
Compared with other oscillating follower mechanical rules, analytics is made on the commoneccentric cam mechanism and power, as given the practical scope and the basic parameters.
对常用的偏心圆凸轮从动件进行运动和动力分析,并与其它从动件常用运动规律进行比较,推荐其应用范围及基本参数的选取范围。
2.
The paper brings forward and analyzes the non-dimensional formulas of setover eccentric cam from the aspects of the travel, displacement, speed and velocity of the moving parts.
提出了偏置式偏心圆凸轮机构从动件的行程、位移、速度、加速度的无量纲表达式,并对其进行分析。
6)  eccentricity camshaft
偏心凸轮轴
1.
By analyzing the forging process of eccentricity camshaft,the causes of un-accepted forgings would be found,and the displacement process would be shifted forward later on for the final heat area forging reduction.
通过对偏心凸轮轴锻造工艺分析,找出锻件不合格原因,将错移工序前移,最后一火局部镦粗修整。
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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