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The contactless inductive coupled power transfer system is one of the newest power transfer technology, which transmit energy to load by electromagnetic coupling and without electrical connection or physical contact, whats more, it comb-out contact existence of electric spark completely, reduce mechanical wear, and have the characteristics that safeguard operating non-maintaining or low.

非接触式感应耦合电能传输系统是一种新型的电能传输技术,它摆脱了传统供电方式通过导体直接接触供电的方式,通过感应电磁耦合关系向负载提供电能,彻底消除了接触电火花的存在,减小了机构磨损,具有免维护或低维护运行的特点。

Based on bond-slip theory, nonlinear contact theory and fluid-structure coupling theory, coupling three dimensional finite element model about plunge pool slabs, water, bedrock and anchor bar is established, limiting dynamic displacement considering phases of stability failure is studied in this paper, the response characteristic of dynamic displacement is analyzed in virtue of prototype observation results, and stability of plunge pool slabs are predicted.

基于粘结滑移、非线性接触及流固耦合理论,建立水垫塘底板、水体、基岩、锚固钢筋的耦合有限元模型,计算不同破坏状态下底板块的极限动位移,结合原型观测结果进行动位移响应特性的分析,从而对水垫塘底板的稳定性进行识别。

The observation equation built in this paper is nonlinear. After linea-rization, it can be seen that, the error of the angular sensor on ESG's outer gimbal axis is equal to the azimuth error of ESG, while that on ESG's inner gimbal is coupled from the elevation and the azimuth errors of ESG.

本论文所建立的量测方程是非线性的,其在标称状态的线性化方程表明:静电陀螺外框架轴上的角度传感器的输出误差等于陀螺主轴的方位角误差,内框架轴上的角度传感器的输出误差包括陀螺主轴的高度角误差和方位角误差的耦合量,其中方位角误差的耦合分量是由复示水平基准误差引起的。

In the second part of of this thesis, we firstly derivate the operation condition of intracavity SHG of dualwavelength laser from the rate equation, and then numerically calculate the relationship between the laser operation parpmeters and the pumping powers. And then we discuss two possible ways to get balancing outputs of the harmonic waves of the two wavelengths. By comparing the two ways, we find that the method by increasing the geometrical factor of 1079. 5nm SHG has the higher efficiency than the method by adding the additional loss of 1079. 5nm basic wave. Besides, the first method is easier to realize in experiment than the second method.

本论文第二部分从速率方程出发,通过求解速率方程的稳态解得到了Nd:YAP腔内倍频双波长激光的连续运转条件,数值计算得到了随泵浦功率变化的激光运转情况;计算、分析了通过增加主波长的倍频耦合几何因子和增加主波长的腔内损耗两种方法获得均衡的双波长倍频输出的运转情况,通过二者的比较,发现增加倍频耦合几何因子的方法比增加损耗的方法效率更高,而且在实验上更易于实现。

Through coupling of computational car course 5 rank the Li Dai of the model is counted, got Li Dai counts the verdict of full order, make clear 5 rank the system that the model is strong coupling of course of a car, alternate through coordinate the system cannot solve Ou only.

通过计算车轨耦合五阶模型的李代数,得到了李代数满秩的结论,表明五阶模型是一个车轨强耦合的系统,仅通过坐标变换系统无法解耦。

The inclusion cell is the bridge of macro and micro mechanical-electrical responses, but also provides a direct relationship between meso/micro grain characteristic parameters and between globe macro performance, which could become a great help for the study on damage, fatigue and fracture mechanism of ferro-electrics.

通过采用基于Hill理论的扩展的自洽计算方法,将其从一般多晶材料、复合材料的纯力学性能描述,扩展到具有力电耦合的复杂情况,建立其整体迭代和局部迭代的计算方法,得到铁电多晶材料的非线性力电耦合关系的描述。

Based on the work flow of charging equipment, three worst work conditions of the clack box were defined. Then, based on thermal-structure coupled theory, the thermal-structure coupled of the clack box which suffered from mechanical and temperature load was analyzed using the powerful software ANSYS. The clack box's temperature field and stress field as well as the stress spectrum of danger area in actual working condition were obtained. Finally, based on crack initiation and crack extension theory, the clack box's fatigue life was predicted.

摘 要:根据装料设备的工作流程,确定阀箱3种最不利的载荷工况;基于热-结构耦合理论并利用有限元分析软件ANSYS研究阀箱在温度载荷和机械载荷作用下的热-结构耦合问题,得到实际工况下阀箱的温度场、应力场以及危险部位的应力谱;依据裂纹萌生和扩展理论对阀箱进行疲劳寿命预测。

Close-coupled electric motor eiminates need for coupling alignment and oil-level monitoring.

耦合电机eiminates的耦合瞄准和石油一级的监测需求。

Close-coupled electric motor eiminates need for coupling alignment and oil-level monitoring.

耦合电机eiminates的耦合对准和石油一级的监测需要。

The results indicate that the cooling rate of melt droplet that can not break further depends not only on its diameter, but also on its position in atomizing chamber. As a result, the same sized particles in different positions show different cooling rates and two different kinds of microstructures. The cooling rates of melt droplets range from 104 to 108 K/s, and the critical cooling rate for glass formation of Al-Ni-Y is about 105 K/s. Moreover, the corresponding maximum diameter of amorphous particles is 25 μm, which accords well to the theoretical analysis results. The new approach, reflecting the complexity of close-coupled gas atomization objectively, is available and effective to evaluate the cooling behaviors of close-coupled gas atomization.

结果表明:在一定的工艺条件下,紧耦合气雾化存在多种破碎模式,熔滴的冷却速率因直径、雾化位置的差异,相同直径熔滴经历结晶和非晶化2种不同冷却行为;依据Al基合金粉末的粒度分布和微观结构,结合熔体的雾化过程及冷却模式,确定熔滴冷却速率的上、下限;实验得出熔滴的冷却速率为104~108 K/s,Al-Ni-Y合金的非晶化临界冷却速率为105 K/s,能形成非晶态的熔滴最大直径为25 μm左右,实验结果与理论分析结果较吻合,比较客观地反映紧耦合气雾化的复杂过程。

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