1)  lenticular
双凸镜状的
2)  lenticulate
双凸镜状的
3)  lentiform
双凸镜状的
4)  biconvex cam
双凸凸轮
1.
In order to solve the cam framework of printing equipment halting exactly and less backhaul concussion,the author researches the biconvex cam sine acceleration framework,and designs biconvex cam's structure,geometry dimension and outline.
为解决筒体印花机中主运动转过整周时印刷2次、凸轮机构停置准确、回程冲击小的技术问题,研究了双凸凸轮正弦加速度运动机构,并对双凸凸轮结构、几何尺寸、轮廓曲线进行了设计。
5)  duel-lug part
双凸缘件
6)  doubly salient
双凸极
1.
Nonlinear Modeling and Simulation for Doubly Salient Permanent Magnet Motor with External Rotor Used in Electric Vehicle;
电动汽车用外转子双凸极永磁电机建模与仿真
2.
A new hybrid excited doubly salient(HEDS)machine with a special magnetic bridge is presented,which combines the advantages of permanent magnet machines with the possibility of controllable magnetic flux by auxiliary DC field windings.
提出一种新型带导磁桥的混合励磁双凸极电机,介绍电机的结构特点和磁场调节原理。
3.
Doubly salient permanent magnet machine is based on Switched Reluctance Motor as add two pieces of permanent magnet in it.
双凸极永磁电机是在开关磁阻电机安装永磁体而构成的一种新型电机。
7)  double cam
双凸轮
1.
Design of double cam-linkage combined mechanisms base on AutoCAD;
基于AutoCAD图解设计双凸轮-连杆组合机构
8)  doubly-salient
双凸极
1.
In this paper, the inductance characteristics of a novel 3-phase 12/10 pole (12-statortooth/10-rotor-pole) flux-switching permanent magnet (FSPM) machine with doubly-salient structure is investigated based on finite element (FE) analysis.
本文基于有限元法研究了一种新型三相12/10极切换磁通型双凸极永磁电机的电感特性。
2.
The influence of end-effect on the counter-EMF waveforms of both flux-switching permanent magnet(FSPM)machines(3-phase topology)and doubly-salient permanent magnet(DSPM)machines(including 3-phase and 2-phase structures)is inrestigated.
研究了端部效应对两种新型定子永磁型双凸极电机(分别是磁通切换永磁电机和双凸极永磁电机)反电势波形的影响。
9)  biconvex lens
双凸透镜
1.
The rule of adaxial image formation is studied,of the transmission light and reflected light through the two optical surfaces L_1 and L_2 of the biconvex lens.
研究了经双凸透镜两个光具面 L_1和 L_2的透射光线和反射光线的近轴成像规律,以此说明其像群的形成。
10)  Double-lenticular screen
双凸透屏
补充资料:凸凸
1.高出貌。
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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