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electric shock treatment相关的网络例句

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多年来本公司得到了广泛的市场,部分配套产品出口到东南亚西欧等国家,赢得了广大客户的信赖和支持。并可以根据客户的要求,为您订做各类点加热器。产品质量稳定,供货及时,服务周到,并被评为&重合同、守信用&企业。&城市守信&是我公司的立身之本!热忱欢迎新老客户光临惠顾,共创辉煌!

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中文主题词事故预防;麻醉学;球压试验;防护等级;分类;分类系统;清除;色码;设计;测定;词典;尺寸;文献;接地导线;接地;电接触保护;电气外壳;电力干线;电力系统;电击;电气事故;电气器具;电气工程;电气设备;医用电气设备;电气保护设备;电气安全;电驱动装置;电磁兼容性;电医学;静电学;外壳;环境条件;设备;设备安全;防爆;防火安全;一般条件;图形符号;热卷筒;冲击试验器;检验;使用说明;绝缘外壳;绝缘;漏电路径;文字书写;表;作标记;测量;机械安全;医疗设备;医学放射学;医学科学;医疗技术学;职业安全;保护覆盖层;合格试验;辐射防护;安全;安全装置;安全工程;安全规则;安全要求;安全标志;规范;材料强度;调查;符号;温度;试验大气环境;试验设备;试验;试验条件;试验电压;变压器

TCM clinical treatment consists of TCM examination (Chinese medical four diagnostics and modern imaging, experimental diagnosis), prescription plus Chinese medicine tablets or Chinese patent medicine oral administration treatment, acupuncture treatment, massage treatment, coaptation diaplasis treatment, external medicine treatment, beauty treatment and remaining in hospital for observation treatment.

中医临床治病,包括中医诊病(中医四诊和现代影像、实验诊断),开处方配中药饮片或中成药内服治疗、针灸治疗、推拿治疗、接骨复位治疗、外药治疗、美容治疗、留医观察治疗。

Compared with the initial value problems of scalar conservation laws with smooth flux function, the global weak entropy solutions for the initial-boundary value problems of scalar conservation laws with weak discontinuous flux function include the following new interaction types: a rarefaction wave collides with the boundary and is absorbed compltetely or partially by the boundary; a rarefaction wave collides with the boundary and the boundary will reflect a contact or non-contact shock wave; a contact or non-contact shock wave collides with the boundary and is absorbed by the boundary; a contact or non-contact shock wave collides with the boundary and a new non-contact shock will rebound from the boundary simultaneously or later.

与具有光滑流函数的单个守恒律的初始值问题相比,具有弱间断流函数的单个守恒律初边值问题的整体弱熵解中包括下列新的相互作用类型:稀疏波碰到边界并被边界部分或全部吸收;稀疏波与边界相撞,边界反射出一个接触或非接触激波;接触或非接触激波碰到边界并被边界吸收;接触或非接触激波与边界相撞,边界同时或稍后反射出一个新的非接触激波。

The usual way to calculate the residual shock response spectrum of the base shock response is as follows: the time domain shock response of the base is calculated firstly, then the residual shock response spectrum of the base response is calculated.

冲击作用下设备安装基座响应的冲击余谱的一般计算方法是先计算冲击作用下设备安装基座的时域响应,再计算安装基座响应的冲击余谱。

To obtain a complete picture about shock formation in non-viscous flow, in the succeeding chapter we investigate the isothermal shocks in adiabatic flows. We find that in this case the shock solution still exists, but the structure and the properties of the solution are greatly different from above even qualitatively. In some region of the parameter space there only exists unstable shock solution and in some region of the parameter space there may exist two stable shock solutions.

为得到完整的无粘流体中激波形成的图象,在接下来的第四章,我们研究绝热流体中等温作为激波条件时的情况,发现此时激波解仍存在,但解的结构和性质甚至在定性上都与前两章有了显著的不同:某些参数空间只存在非稳定的激波解,某些参数空间则会同时出现两个稳定的激波解。

The calculated results indicate that a bifurcated A. wave can be formed when the shock passes through the flame, and pre-induced shock transmission in the flame leads to the formation of Mach stem, followed by spheral shock wave. The Rayleigh-Taylor and Kelvin-Helmholtz instabilities occurred in the flame induced by shock wave lead to the flame distortion and breakup.

计算结果表明,激波掠过火团时,分叉形成λ波;前引激波在火团内透射并在轴线处碰撞形成Mach杆,进而逐渐发展为球形激波;火焰在激波作用下先后出现Richtmyer-Meshkov不稳定和Helmholtz不稳定,火焰逐渐变形以致破碎;燃烧速率因此剧增。

However,it is the dissipa-tive mechanism,i.e.the mechanism of energy localization that attracts one′sattention for the problem of shock initiation.Since the test result of shock initia-tion about fine-grain explosive charge does not support hot spot ignition model,the author of this dissertation advances that the mechanism of energy localiza-tion is coincident with phonon-fracton crossover of fractal network for ultra-fine-grained charge and,moreover,analyzes the relation between shock sensi-tivity and porosity,which is consistent with shock Hugoniot curve for porousmaterials.

由于超细颗粒压装炸药的冲击起爆实验不支持热点点火模型,为此、本文提出对于单晶颗粒半径为微米以下量级的药床,冲击起爆的能量局域化机制与分形网络中弱局域化声子向强局域化分形子的渡越对应,并且根据这一机制分析了超细颗粒药床的冲击感度和孔隙度的关系,结果与多孔物质冲击压缩的P-V图吻合。

Our plant develops usualness inter-access technology communication with more than ten international famous electric furnace manufacturing companys,and repeated visits to the foreign advanced electric furnace factories and institutes every year, learning and absorbing foreign advanced industrial furnace manufacturing technology and production processes, technology, special components of electric furnace improving technology, product upgrading technology, it makes our plant keep synchronization with the international advanced industrial furnace manufacturing technology no whether in the type,the updating of furnace, fundation material progress, components manufacturing technology progess , manufacturing automation, and the way the loading of the loading basket manufacturing technology, WDS lining energy saving techniques, ceramic fiber wave of high pressure tied ceiling stack technology, oxidation-free protection atmosphere, carburizing, nitriding, molten, salt bath, nitrate Austempered, precision heat treatment process, equational flow and temperature heat transfer asymmetric quenching tank manufacturing technology, microcomputer program heat treatment technology curve temperature control process , and so on can keep pace with internationa advanced industrial electric furance manfacturing technology.

我厂与国际十多家著名电炉制造公司开展经常性互访技术交流,每年多次前往国外先进电炉制造厂和研究所,学习并吸收国外先进的工业电炉制造技术和生产过程,工艺技术,电炉专用零部件改进技术,产品更新换代技术,使我厂工业电炉产品无论在品种类型,炉种更新,基础材料进步,零部件制造技术进步,制造工艺自动化,装料方式和装料筐制造技术方式,WDS炉衬节能技术,陶瓷纤维波浪叠法高压捆扎吊顶技术,无氧化保护气氛,渗碳,氮化,盐浴,硝盐等温淬火,精密热处理工艺,均流均温换热不对称淬火油槽制造技术,微电脑程序热处理工艺曲线控温等各个方面,能够与国际上先进工业电炉制造技术保持同步。

In this topic, the dynamic analysis methods for piezoelectric vibrator are studied systematically based on the theoretical model, FEM numerical experimentation and FEM governing equation for given compound-mode vibrator, and some valuable conclusions are obtained. The main work accomplished is summarized as follows: 1.Elaborate the main modeling methods for piezoelectric vibrator and the significance and necessity to study the dynamic characteristics of piezoelectric vibrator which emphasize the urgency of this paper. 2.Take the bending deformation induced by piezoelectric ceramic as example, the energy transfer mechanism of electric energy to mechanical energy are analyzed; the motion and force transfer mechanism are analyzed for the longitudinal-bending vibrator. 3.Based on mode assumption and Hamilton principle, the coupling model of piezoelectric vibrator of linear USM is built; moreover, the equivalent circuit model is obtained and a coupling equation represents the relation between electric parameters and mechanical parameters is derived which provides foundation to match the vibrator and driving circuit. 4.Combine the constitutive equation of piezoelectric ceramic with elastic-dynamical equation, geometric equation in force field and the Maxwell equation in electric field and the corresponding boundary condition equation, the FEM control equation for piezoelectric vibrator of USM to solve dynamic electro-mechanical coupling field is established by employing the principle of virtual displacement. The equation lays the foundation to study the non-linear constitutive equation of piezoelectric ceramic driven by high-power. 5.Define the dynamic indexes of characteristic of vibrator and carry out variable parameters simulation by calculating the model parameters and the electric characteristics of vibrator are simulated according to the equivalent circuit model. By numerical experimentation, the working mode of vibration of vibrator and the shock excitation results of the working frequency band which provides the mode frequency to realize bimodal are analyzed. Detailed calculation of the electro-mechanical coupling field parameters is made by programming the FEM control equation.

本课题从理论模型、有限元数值试验、有限元控制模型等方面以复合振动模式振子为例对超声电机压电振子的动力学特性及其分析方法进行了全面系统地研究,得出了许多有价值的结论,主要概括如下: 1、阐述了目前针对超声电机压电振子的主要建模方法,对压电振子动态特性的研究意义和必要性进行了论述,突出了本文研究内容的迫切性; 2、以压电陶瓷诱发弹性体发生弯曲变形为例,分析了压电陶瓷通过诱发应变来实现机电能量转换的机理;对基于纵弯模式的压电振子的运动及动力传递机理进行了分析; 3、基于模态假定,利用分析动力学的Hamilton原理,建立了面向直线超声电机压电振子的机电耦合动力学模型,并据此建立了压电振子的等效电路模型,导出了电参量与动力学特性参量的耦合方程,为压电振子与驱动电路的匹配提供了依据; 4、从压电陶瓷的本构方程出发,综合力场的弹性动力学方程、几何方程、电场的麦克斯韦方程以及相应的边界条件方程,采用虚位移原理,建立了压电振子动态问题机电耦合场求解的有限元控制方程,为研究其大功率驱动下的非线性本构模型奠定了基础; 5、界定压电振子的动力学特性指标,对压电振子的机电耦合动力学模型参数进行计算及变参数仿真;依据等效电路模型,对压电振子的电学特性进行了仿真分析;通过有限元数值实验,对压电振子工作模态附近的模态振型及工作频率附近的频段进行了激振效果分析,找出了实现模态简并的激振频率;利用有限元控制方程,通过编程计算,对压电振子的力电耦合场参数进行了详细计算,得出了一些有价值的结论。

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