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This paper presented the research and exploration of mechanism and technics as well as the design of the magnetic circuit of this new compound machining, based on above, establishing the parameter model, meantime, analyzing influential effects on productivity of magnetic and EDM compound machining the holes through large numbers of experiments, including velcoity contrast experiments of pre-compound and after-compound machining with the change of current, velcoity contrast experiments of pre-compound and after-compound machining with the change of magnetic induction, velcoity contrast experiments of pre-compound and after-compound machining with the change of impulse width, experiments of the superficial roughness, experiments of the Electrode wastage, and intersectant experiments analysis as well as the change experiments of current waveforms. Through a number of experiments we analysed the influential effects of magnetic and EDM compound machining, compared the factors with EDM by oneself. A large of experiment records and deducibility have demonstrated that the productivity of magnetic and EDM compound machining is developed by 20%~400% than traditional EDM.

本论文对磁场电火花复合加工这种新的复合加工的机理、工艺和复合加工的磁路设计进行了研究和探索,在此基础上,建立了磁场电火花复合加工的参数模型,同时通过大量的随着电流变化磁场电火花复合前后加工速度对比实验、磁感应强度变化时的加工速度变化实验、随脉冲宽度变化的加工速度实验、表面粗糙度实验、电极损耗量实验、磁场电火花复合加工正交实验分析、电流波形变化等实验,实验分析了影响磁场电火花小孔加工效率的因素,并且跟单一的电火花加工中的影响因数进行了比较,大量的实验数据和理论推导证明磁场电火花复合加工比传统的单一电火花加工的效率提高了20%~400%左右。

According to the point of view of mechatronics, the modeling of the dot-matrix needle printer head has been completed by the method of electromechanics.

本文从机电一体化的观点出发,运用机电动力学方法,完成了计算机的点阵针式打印头的建模,并进行了数值模拟分析,且推导出"L"形打印头的磁路、电路和动力学方程,给出了相应的初始条件和边界条件。

Experiment data for determining blood plasma、liquor conductance、thickness、pH demonstrates that testing method of blood coagulation by using of the principle of the liquid electrical resonance is feasible, and the testing method also reflects actual situation of blood coagulation iconically and concretely, achieving to be a better and easier method of studying blood coagulation than optical turbidimetric assay and double magnetic bead method. It offers convenience forthright and low costed measuring equipment in the medical field.

达到了较光学浊度法,双磁路磁珠法和压电石英晶体法更好更简易的研究血凝的方法;在医学上更好的为血凝这一领域提供既便利又简捷而且成本低的测量装置,因此这种测量方法在血凝研究领域具有更加实用的发展前景。

The result of the analysis is used tocheck back the calculation result of the electromagnetism design.

结果表明电动机的磁路设计合理,输出性能良好,达到了设计的要求。

Power electric circuits, magnetic circuits, lumped parameter electromechanics, elements of linear and rotating electric machinery.

电力电路、磁路、电机机械的混合参数、线性与旋转电机要点。

On the basis of the criterion of constant magnetic inspection, an apparatus for testing the coiled tubing ellipticity with constant magnetic field is developed.

针对连续油管储藏、使用和寿命分析对椭圆度检测的要求,根据恒磁检测原理和简化等效磁路的计算分析,研制了连续油管椭圆度恒磁检测装置。

With experience gained from the Finite Element method, a quasi-linear model based on the Magnetic Equivalent Circuit method has been used to obtain the static torque of the motor. Three types of magnetic tubes are employed in the model, and through the exchange principle of magnetic lines of force and magnetic equipotential line, the tube in which the flux distribution is non-uniform is applied to the model.

通过分析电机二维磁场分布和考虑电机特殊的电磁结构,提出了用三种磁通管单元来近似磁场分布,并借用磁力线和等磁位线互换的方法,将磁力线分布不均匀的磁通管引入到分析模型中,有效的处理了平动式啮合电动机中的磁场分布不均匀和磁路局部饱和,使分析模型得到简化并兼顾了求解精度。

The novel design method is the excellent solution for the simulation challenge that power electrical device and the magnetic path device are applied to the power system since it's the intuitionistic, effective and exactable. This method is also the innovation for the design and the application of the power electromagnetism device.

论文首次将SABER仿真软件引入到消弧线圈设计中,其中所采用的磁路模型、线圈模型不仅能描述消弧线圈的电气特征,还能反映消弧线圈铁心和线圈的空间几何结构、使用材料参数等物理特征。

Secondly, through analysis of sensor magnetic circuit, we derived its sensor output equation and according to the ferromagnetism and the existing reference, we determined the sensor technical parameter.

其次,通过对传感器的磁路分析,推导出了它的感应输出方程。然后,根据铁磁学和现有参考资料,确定了传感器的各项技术参数。

Incredibly, The Field Coil Magnet solves this problem.

难以置信的是,励磁磁路解决了这个问题。

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