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超磁致伸缩执行器 在 仪器仪表工业 分类中 的翻译结果

发布时间:2016-12-12 13:48

  本文关键词:超磁致伸缩执行器在机电工程中的应用研究现状,由笔耕文化传播整理发布。


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超磁致伸缩执行器

  • giant magnetostrictive actuator(24)
  • giant magnetostrictive actuators(7)
  •   

        Fundamental Theory and Experiments Study of Giant Magnetostrictive Actuator

        超磁致伸缩执行器的基础理论与实验研究

    短句来源

        Theoretical analysis and experimental research on driving magnetic field in giant magnetostrictive actuator

        超磁致伸缩执行器驱动磁场理论分析与实验研究

    短句来源

        Study on Giant Magnetostrictive Actuator Based on Disk-Shape Diaphragm Compliant Structure

        基于圆形膜片柔性结构的超磁致伸缩执行器的研究

    短句来源

        Based on the basic property of giant magnetostrictive material,the paper goes deep into the research and explorement of giant magnetostrictive actuator and its control technique,establishes the application study foundation of the material.

        本文根据超磁致伸缩材料的基本特性,对超磁致伸缩执行器及其控制技术进行了较深入的研究和探索,为超磁致伸缩材料的应用研究打下了良好的基础。

    短句来源

        The experimental study of giant magnetostrictive actuator driving system is carried on.

        对超磁致伸缩执行器驱动系统进行了实验研究。

    短句来源

      

        Investigation of Optimal Method for Free Energy Hysteresis Model in Giant Magnetostrictive Actuators

        超磁致伸缩执行器的自由能磁滞模型的优化算法研究

    短句来源

        A Numerical Method for Free Energy Hysteresis Model in Giant Magnetostrictive Actuators

        超磁致伸缩执行器的自由能磁滞模型的数值实现

    短句来源

        These results also were compared to the calculation data and the experimental data in the published papers. It states that the method in which the approximately Gauss-Legendre integral method is used to integral discretization and matrix representation is used to implement integral kernel function not only increases computational efficiency but also guarantee computational precision. It is the optimum method for a free energy hysteresis model in giant magnetostrictive actuators.

        比较了四种数值实现方法的计算精度和计算效率,并与已有文献的实验结果和计算结果对比,得出近似Gauss-Legendre积分法进行积分离散化与矩阵表示法实现核函数相结合的方法在保证计算精度的同时,大大缩短了运算时间,是超磁致伸缩执行器的自由能磁滞模型的四种数值实现方法中的最优算法。

    短句来源

      

        Optimal Design of Magnetostrictive Actuator and Its Control Model

        稀土超磁致伸缩执行器优化设计及控制建模

    短句来源

        State-of-the-Art of Research on Giant Magetostrictive Actuator Applying in Electromechanical Engineering

        超磁致伸缩执行器在机电工程中的应用研究现状

    短句来源

        The basic property of giant magnetostrictive material is well understood and the driving system constitude of giant magnetostrictiv actuator is proposed.

        对超磁致伸缩现象及其形成机理进行了分析,较为充分地掌握了超磁致伸缩材料的基本特性,提出了超磁致伸缩执行器驱动系统的组成。

    短句来源

        The intelligent driving power supply is studied and manufactured.

        研制了超磁致伸缩执行器智能化驱动电源。

    短句来源

        This paper presented optimal methods for magnetostrictive actuator design in the aspects of electrical, magnetic, mechanical, and thermal, including optimization of the coil's geometry, magnetic circuit and bias magnetizing field design, prestress mechanism and optimization, and the modified strain model considering thermal effect.

        研究了超磁致伸缩执行器设计中电、磁、机械及热设计中的优化方法,包括线圈的几何尺寸优化、磁路及偏磁场设计、预压力设计、考虑温度效应的修正模型等;

    短句来源

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      giant magnetostrictive actuator

    This paper presents two numerical realization of Preisach model by Density Function Method (DFM) and F Function Method (FFM) for a giant magnetostrictive actuator (GMA).

          

      giant magnetostrictive actuators

    Giant magnetostrictive actuators (GMAs) often work in a close-loop feedback system.

          

    超磁致伸缩执行器 在 仪器仪表工业 分类中 的翻译结果



    The driving principle and the structures of the giant magnetostrictive actuator are analyzed. On the basis of this work, the magnetic field in the actuator is mainly investigated from the aspect of the theoretical analysis and the experimental research, and a conclusion is drawn that the relation between the driving current in the giant magnetostrictive actuator and the driving magnetic field of the giant magnetostrictive stick is non linear and hysteresis. Moreover, the reason is analyzed and the foundation...

    The driving principle and the structures of the giant magnetostrictive actuator are analyzed. On the basis of this work, the magnetic field in the actuator is mainly investigated from the aspect of the theoretical analysis and the experimental research, and a conclusion is drawn that the relation between the driving current in the giant magnetostrictive actuator and the driving magnetic field of the giant magnetostrictive stick is non linear and hysteresis. Moreover, the reason is analyzed and the foundation of further improving the performance of the giant magnetostrictive actuator is established.

    在分析超磁致伸缩材料的驱动原理和超磁致伸缩执行器结构的基础上 ,重点对执行器内部的驱动磁场进行了理论分析和实验研究 ,得出了超磁致伸缩执行器驱动电流与超磁致伸缩棒的驱动磁场之间存在一定的非线性和滞回的结论 ,并分析了其产生原因 ,为进一步提高超磁致伸缩执行器的性能奠定了基础

    A free energy hysteresis model for giant magnetostrictive actuators was briefly presented,and the free energy hysteresis model was analysed.Four different numerical calculation methods are advanced. Computational precision and computational efficiency of the results obtained by using the four different numerical calculation methods were compared. These results also were compared to the calculation data and the experimental data in the published papers. It states that the method in which the approximately Gauss-Legendre...

    A free energy hysteresis model for giant magnetostrictive actuators was briefly presented,and the free energy hysteresis model was analysed.Four different numerical calculation methods are advanced. Computational precision and computational efficiency of the results obtained by using the four different numerical calculation methods were compared. These results also were compared to the calculation data and the experimental data in the published papers. It states that the method in which the approximately Gauss-Legendre integral method is used to integral discretization and matrix representation is used to implement integral kernel function not only increases computational efficiency but also guarantee computational precision. It is the optimum method for a free energy hysteresis model in giant magnetostrictive actuators.

    介绍了超磁滞伸缩执行器的自由能磁滞模型,对该自由能磁滞模型的数值计算进行了具体分析,由此提出了该自由能磁滞模型的四种数值实现方法;比较了四种数值实现方法的计算精度和计算效率,并与已有文献的实验结果和计算结果对比,得出近似Gauss-Legendre积分法进行积分离散化与矩阵表示法实现核函数相结合的方法在保证计算精度的同时,大大缩短了运算时间,是超磁致伸缩执行器的自由能磁滞模型的四种数值实现方法中的最优算法。

    This paper presented optimal methods for magnetostrictive actuator design in the aspects of electrical, magnetic, mechanical, and thermal, including optimization of the coil's geometry, magnetic circuit and bias magnetizing field design, prestress mechanism and optimization, and the modified strain model considering thermal effect.The control model based on input voltage and output displacement was built up, the frequency response curve of experimental measurements were exactly coincident with simulation results....

    This paper presented optimal methods for magnetostrictive actuator design in the aspects of electrical, magnetic, mechanical, and thermal, including optimization of the coil's geometry, magnetic circuit and bias magnetizing field design, prestress mechanism and optimization, and the modified strain model considering thermal effect.The control model based on input voltage and output displacement was built up, the frequency response curve of experimental measurements were exactly coincident with simulation results.

    研究了超磁致伸缩执行器设计中电、磁、机械及热设计中的优化方法,包括线圈的几何尺寸优化、磁路及偏磁场设计、预压力设计、考虑温度效应的修正模型等;建立了超磁致伸缩执行器基于输入电压-输出位移的控制模型,实验测得系统频率响应曲线与仿真结果一致。

     


      本文关键词:超磁致伸缩执行器在机电工程中的应用研究现状,由笔耕文化传播整理发布。



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