采用正弦机构带动一串铰接连接的光体圆柱,模拟研究在海浪和海流作用下扬矿系统的横向运动规律。
The Lateral motions of Articulated Lifting System under ocean current and wave are researched, by using sine mechanism and a string of naked cylinders.
根据双线螺杆成形面的形成方法,利用一种可调的正弦机构和工件截面形状的映射关系可完成工件截面的车削。
The turning of the workpiece cross section can be carried out by means of an adjustable sine mechanism and the reflection relationship of the contour of workpiece cross section.
对该凸轮机构采用正弦曲线的形封闭误差和运动传递误差进行了理论分析。
Adopting the form closure error and the motion transmission error of sine curve to carrying out theoretical analysis of this CAM mechanism.
俯仰和偏航通道的正弦跟踪需要相对较大动量矩的动量轮作为执行机构来实现高精度跟踪控制。
The sinusoidal trajectory tracking of pitch and yaw channels requires relatively large angular moment wheels to achieve high precision.
俯仰和偏航通道的正弦跟踪需要相对较大动量矩的动量轮作为执行机构来实现高精度跟踪控制。
The sinusoidal trajectory tracking of pitch and yaw channels requires relatively large angular moment wheels to achieve high precision.
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