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非线性扭转刚度
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  “非线性扭转刚度”译为未确定词的双语例句
     This paper sets up a new nonlinear differential equations of harmonic drive,in which the transmission errors,and nonlinear torsional rigidity and backlash are considered.
     考虑传动误差、非线性扭转刚度以及间隙等非线性因素,建立了新的谐波齿轮传动系统非线性微分方程。
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  相似匹配句对
     Nonlinear Expectation
     非线性数学期望
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     Nonlinear Systems
     非线性系统学
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     Calculation of the Torsional Rigidity of Twist Drills
     麻花钻扭转刚度的计算
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     Torsional Rigidity of Shafts of Complex Profile
     复杂形体轴的扭转刚度
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     TORSIONAL RIGIDITY AND FLEXURAL CENTER FOR SEMI ELLIPTIC SECTION
     半椭圆的扭转刚度和弯曲中心
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The harmonic drive system nonlinear torsional vibration behaviors analysis software,which integrated the principle of harmonic drive,the theory of nonlinear dynamics,the numerical analysis method and the technology of computers,has been developed.New transmission error formula,new nonlinear torsional stiffness formula and backlash are considered in this model.The software has Windows GUI style and facility for operation features.It is special for study on the nonlinear dynamics behaviors of harmonic drive system.Experimental...

The harmonic drive system nonlinear torsional vibration behaviors analysis software,which integrated the principle of harmonic drive,the theory of nonlinear dynamics,the numerical analysis method and the technology of computers,has been developed.New transmission error formula,new nonlinear torsional stiffness formula and backlash are considered in this model.The software has Windows GUI style and facility for operation features.It is special for study on the nonlinear dynamics behaviors of harmonic drive system.Experimental results for a harmonic drive reducer with type of XB-80-134H verify the effectiveness of the software.Simulation results can be used as a reference for design and experimental analysis.

结合谐波齿轮传动基本原理、非线性动力学理论、数值分析方法和计算机技术等设计方法开发了谐波齿轮传动系统非线性扭转振动仿真软件,该模型考虑了考虑传动误差、非线性扭转刚度以及间隙等非线性因素,仿真软件系统采用Windows界面风格、操作方便简捷、人机界面友好,是专为研究谐波齿轮传动系统的非线性动力学特性而开发的。对XB-80-134H型谐波齿轮减速器的实验结果证明了软件的有效性。软件仿真结果可以为设计以及实验分析提供依据。

This paper sets up a new nonlinear differential equations of harmonic drive,in which the transmission errors,and nonlinear torsional rigidity and backlash are considered.The transmission error was computed by a new formula.The third order polynomial of torque-torsional angle equations were used for fitting the experimental results to obtain the torsional rigidity formula.The nonlinear dynamics characteristics simulation software is developed.The system dynamic response and different kinds of transmission errors...

This paper sets up a new nonlinear differential equations of harmonic drive,in which the transmission errors,and nonlinear torsional rigidity and backlash are considered.The transmission error was computed by a new formula.The third order polynomial of torque-torsional angle equations were used for fitting the experimental results to obtain the torsional rigidity formula.The nonlinear dynamics characteristics simulation software is developed.The system dynamic response and different kinds of transmission errors frequencies′ contributions are analyzed by experimental and simulation methods,and the main objects for error control are determined in design,manufacture and assembly processes

考虑传动误差、非线性扭转刚度以及间隙等非线性因素,建立了新的谐波齿轮传动系统非线性微分方程。传动误差采用了新的计算公式。建立了对转矩转角实验曲线采用3阶多项式拟合,然后求导得到刚度公式的方法。开发了非线性动力学特性仿真分析软件。实验和仿真研究系统的动力响应,以及不同频率的误差分量对系统动态响应的贡献,明确了设计、制造及装配中主要的误差控制对象。

 
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