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gyro mechanism的中文,翻译,解释,例句

gyro mechanism

gyro mechanism的基本解释
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陀螺机构, 陀螺装置

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This course consists of three parts : A.The fundamental theory of gyroscopes. a.Kinematics and dynamics of gyroscopes, consisting of Coriolis acceleration, theorem of angular momentum, Euler's dynamical equations, dynamical explanation of gyroscopes' properties. b.Gyroscopes' motion equations, including the complete equations, technical equations and precession equations derived from Euler's dynamical equations, and the technical equations derived from static vs. dynamic method. c.Analysis of gyroscopes' motion. d.Coordinate systems and their mutual transformation. e.Gyroscope drift and its measurement. B.Principle of typical gyroscope instruments, such as gyro compass, gyro north finder, gyro horizon, platform compass, rate gyroscope and integrating gyroscope. C.Principles and applications of new-type gyroscpes, such as electrically suspended gyro, ring laser gyroscope, fiber optical gyroscope, hemispherical resonator gyro, dynamically tuned gyroscope and micro inertial sensors.

本课程教学内容由三部分组成:陀螺仪的基本理论,内容包括:陀螺力学基础(哥氏加速度、角动量定理和欧拉动力学方程、陀螺特性的力学解释);陀螺仪运动方程和运动分析(用欧拉动力学方程建立完整方程、陀螺仪运动的技术方程和进动方程,用动静法建立技术方程);坐标系及其变换;陀螺仪的漂移及其测试;典型陀螺仪器(包括陀螺罗经、陀螺找北仪、陀螺地平仪、平台罗经、速率陀螺仪和积分陀螺仪等)的工作原理;新型陀螺仪(包括静电陀螺仪、激光陀螺仪、光纤陀螺仪、半球谐振陀螺仪、挠性陀螺仪、微机械陀螺仪等)的原理及应用。

In plotting scene, the invention connects fiber-optic gyro(1) with full station instrument telescope(3) by adaptor(2), and make optical fibre gyro can follow full station instrument telescope simultaneously do 180 degree turning reel full station instrument cross shaft, respectively on two horizontal positions of east and west direction of gyro axis that differ by 180 degree; each horizontal position process 2 x 2 position gyro data acquisition on full station instrument perpendicular tray that differ by 180 degree; using formula to count out full station instrument collimation axis true azimuth, survey station meridian convergence angle, then can obtain full station instrument collimation axis grid azimuth, realize full station instrument orient.

基于光纤陀螺的全站仪组合定向方法是一种应用于测绘工作的基于光纤陀螺的全站仪组合定向方法,该方法在测绘现场,把光纤陀螺(1)通过连接装置(2)与全站仪望远镜(3)固连,使光纤陀螺(1)可随全站仪望远镜(3)绕全站仪横轴(4)同步做180度转动,分别在陀螺轴东西向相差180度两个水平位置,每个水平位置在全站仪竖盘相差180度的两个竖直位置进行2×2位置陀螺数据采集;利用公式算得全站仪视准轴真方位角、测站子午线收敛角,即可进一步获得全站仪视准轴坐标方位角,实现全站仪定向。

By the combination of experimental results with theory of crystal growth, some growth models and growth mechanisms were proposed. Research results confirmed that pillar-shaped TaC whisker with spherical droplet at the end grew via a vapor-liquid-solid mechanism, pillar-shaped whisker with pyramid-like end was formed via a vapor-solid mechanism, awl-shaped TaC whisker with zigzag end formed via a liquid-solid mechanism, awl-shaped TaC whisker with growth step at the end has a growth mechanism of screw dislocation mechanism. The growth mechanism of dumbbell-shaped MgO nanowhisker and NaCl particle-decorated MgO nanowhisker is VS; C and MgO powder-yielded MgO nanowhisker was formed via a VLS mechanism, Mg powder-yielded MgO microwhisker and MgO microsized or nanosized crystal sheet grew via a VS mechanism. In the Si and SiO〓 nanostructures, Si nanowires formed in higher-temperature zone grew via oxide-assistant mechanism, while Si nanowires or nanorods formed in lower-temperature zone have a growth mechanism of VLS, and the growth mechanism of SiO〓 nanowires is VS.

研究确定呈平直柱状且头部带有球形颗粒的TaC晶须是通过气-液-固机制生长;头部呈之字型的锥状TaC晶须则通过液-固机制生长;晶须头部为四棱锥状的粗长TaC晶须的生长机制是VS机制;顶端呈锥状且有生长台阶的TaC晶须通过螺位错机制生长;哑铃状氧化镁晶须和氯化钠颗粒修饰的氧化镁纳米晶须的生长机制是气-固机制:当采用C+MgO粉提Mg源时形成的氧化镁纳米晶须的生长机制是VLS,而采用直接热蒸发Mg粉时得到的氧化镁微米晶须的生长机制为VS,纳米和微米晶片的生长机制均为VS机制;在高温区,硅纳米线的生长机制是助氧化机制,在低温区硅纳米线和纳米棒的生长机制是VLS机制,而氧化硅纳米线的生长中VS机制占主导地位。

更多网络解释 与gyro mechanism相关的网络解释 [注:此内容来源于网络,仅供参考]

gyro mechanism:陀螺机构

gyro magnetic compass 陀螺磁罗经 | gyro mechanism 陀螺机构 | gyro moment 陀螺力矩

gyro setting mechanism:陀螺定向角装定器

gyro scope 陀螺仪 | gyro setting mechanism 陀螺定向角装定器 | gyro shaft 回转轴

gyro spinning and unlocking mechanism:陀螺定向仪旋转和解锁机构

gyro spin axis 陀螺自转轴 | gyro spinning and unlocking mechanism 陀螺定向仪旋转和解锁机构 | gyro stabilized system 陀螺稳定装置