液力耦合器,hydraulic coupler
1)hydraulic coupler液力耦合器
1.Comparison of Blower & Water Pump VVVF and Velocity Modulated Hydraulic Coupler in Energy-saving;风机水泵变频调速和液力耦合器调速节能比较
2.Work Principle and Applications of Hydraulic Coupler;液力耦合器工作原理及其应用
3.Application of hydraulic couplers to energy saving for power plants;液力耦合器在火电厂节能中的应用
英文短句/例句

1.Similar Principle and Its Application in the Development of Hydraulic Coupler;相似原理及其在液力耦合器研制中的应用
2.Study of Variable Speed Fluid Coupling Using for Belt Conveyor调速型液力耦合器在带式输送机上的应用研究
3.Study and Practice of Characteristics of Working Oil Temperature in Variable Speed Turbo Coupling调速型液力耦合器工作油温特性分析与应用
4.Application of Governor Hydraulic Coupler on Station Boiler Fans调速型液力耦合器在电站锅炉风机的应用
5.Control of Induced Draft Fan Based on Combined Coordination of Hydraulic Compler and stationary Vane基于液力耦合器和静叶联调的引风机控制
6."Such transmissions make use of a fluid coupling or a torque converter, as well as mechanical, hydraulic, or electrical controls."除了用机械装置、液压装置或电力装置来控制外,这种变速器还使用液力耦合器或变扭器。
7.Analysis on Hydraulic Coupler and Electric Motor Union Movement Characteristic and Influencing Factors液力耦合器与电动机联合运行的特性及影响因素分析
8.Shallow Talk to Limit a Liquid of Dint to Match the Machine to Take to Anticipate the Application in the Machine in a Heap of Digging Accidentally浅谈限矩型液力耦合器在斗轮堆取料机中的应用
9.CAUSE ANALYSIS ABOUT OVERTEMPERATURE OF RETURN OIL FROM HYDRAULIC COUPLING OF I.D.FANS引风机液力耦合器回油超温原因分析及处理措施
10."In a mechanical transmission, the oil loses its lubricating capacity if overheated; in a hydraulic coupling or converter, the fluid leaks under the pressure created."若过热,机械传动装置中的润滑油会丧失润滑能力,而液力耦合器或变矩器会发生渗漏。
11.For Large dust removing fan system, fluid coupler is usually used to reduce the starting load and adjust the speed of the motor.大型除尘系统风机通常采用串液力耦合器的方式来实现风机电机的轻载启动和调速。
12.A coupler drive system for pumping unit is developed by using the theory of hydraulic drive of coupler.运用耦合器液力传动原理,研制成功抽油机耦合器传动系统。
13.Simulation and Analysis of Fluid Structure Interaction for Impeller of Hydrodynamic Coupling液力偶合器叶轮与流体的流固耦合模拟与分析
14.Coupled Dynamic Modeling and Simulation for Spacecraft with Large Amplitude Liquid Sloshing充液航天器大幅晃动耦合动力学建模仿真研究
15.Study for Structure Intensity of the Hydraulic Pressure Powering Steering Based on Thermal-structure基于热—结构耦合的液压动力转向器结构强度研究
16.Research on the Liquid-Solid Coupling Dynamics in a Cylindrical Container in the Hypersonic Vehicle高超声速飞行器中圆柱类贮箱液固耦合动力学研究
17.Study on Gravity Waves Phenomena in Rectangular Fluid-shell Coupled System;矩形壳液耦合系统中重力波现象研究
18.The Analysis and Measurement of the Gravity Waves in Fluid-shell Coupled System曲面壳液耦合系统重力波分析及测量
相关短句/例句

fluid coupling液力耦合器
1.The existing drives are classified as frequency converter, fluid coupling, direct current motor control, liquid viscous clutch, fluid motor drive, asynchronous motor soft start, and differential stepless frequency and their principles, advantages and disadvantages are also discus.对现有的带式输送机驱动装置进行了分类,即分为变频调速、液力耦合器传动、直流电动机调速、液体粘性离合器传动、液压马达驱动、交流电动机软起动和差动变频无级调速等7类,讨论了各种驱动方案的原理和优缺点。
2.From the requirement of dynamic modeling and computer simulation of ship propulsion plant, the importance of building mathematical model of fluid coupling for research on the dynamic characteristics of ship propulsion plant is stated, and for using experimental curve of the fluid coupling-in the form of the input characteristic-as source data for quasi steady model.从船舶动力装置动态建模与仿真的实际需求 ,引出了其主要部件之一的液力耦合器数学建模在稳 /动态特性研究中的重要性 ,以及利用其试验曲线 (输入特性形式 )作为数据源去构建准稳态数学模型的困难之处 :寻找一种通用的数学表达形式 ,以实现 1液力耦合器在额定工况及其附近的试验曲线的内插与外延 ;2过渡工况液力耦合器数学模型的设计 (如液力耦合器接合和脱开过程其滑差从 1 0 0 %向额定滑差值方向的变化 )。
3.In the paper a calculating method of a fluid coupling regulating hole usedfor peachy, active variable speed fluid coupling is obtained and designing criterion isestablished by calculating, analyzing and studying a fluid coupling regulating.通过对型腔为挑型、调速方式为主动调速方式的液力耦合器调速孔的计算、分析、研究,获得了液力耦合器调速孔的计算方法,建立了液力耦合器调速孔的设计准则,具有实用价值。
3)hydraulic coupling液力耦合器
1.This paper gives a brief introduction of the structure and principles of hydraulic coupling.介绍了液力耦合器的结构及其工作原理;以C8051F330单片机为控制核心,以高速开关阀代替比例阀,设计了液力耦合器智能监控系统的硬件电路,通过控制伺服油缸活塞的进给量来调节液力耦合器的输出转速;最后建立了伺服油缸的数学模型,用Matlab软件的Fuzzy Logic和Simulink工具箱对模糊控制器的控制效果进行了仿真分析,得出了模糊控制器的量化因子、比例因子等对系统性能的影响结果。
2.The FuYiTe Brand valve control timing hydraulic coupling can resolve the above problems well,and carry out "soft start" thus.福伊特阀控调速型液力耦合器能够很好地解决以上问题,从而实现“软启动”。
3.Taking the hydraulic coupling as a main regulating mode,it is the development direction of controls for induced draft funs(IDF)in the future.以液力耦合器为主的调节方式是未来引风机控制的发展方向。
4)hydraulic torque converter液力变扭器,液力耦合器
5)high-efficiency fluid coupling高效液力耦合器
6)fluid coupling modulate液力耦合器调速
延伸阅读

液力耦合器  以液体为工作介质的一种非刚性联轴器,又称液力联轴器。液力耦合器(见图)的泵轮和涡轮组成一个可使液体循环流动的密闭工作腔,泵轮装在输入轴上,涡轮装在输出轴上。动力机(内燃机、电动机等)带动输入轴旋转时,液体被离心式泵轮甩出。这种高速液体进入涡轮后即推动涡轮旋转,将从泵轮获得的能量传递给输出轴。最后液体返回泵轮,形成周而复始的流动。液力耦合器靠液体与泵轮、涡轮的叶片相互作用产生动量矩的变化来传递扭矩。它的输出扭矩等于输入扭矩减去摩擦力矩,所以它的输出扭矩恒小于输入扭矩。液力耦合器输入轴与输出轴间靠液体联系,工作构件间不存在刚性联接。液力耦合器的特点是:能消除冲击和振动;输出转速低于输入转速,两轴的转速差随载荷的增大而增加;过载保护性能和起动性能好,载荷过大而停转时输入轴仍可转动,不致造成动力机的损坏;当载荷减小时,输出轴转速增加直到接近于输入轴的转速,使传递扭矩趋于零。液力耦合器的传动效率等于输出轴转速与输入轴转速之比。一般液力耦合器正常工况的转速比在0.95以上时可获得较高的效率。液力耦合器的特性因工作腔与泵轮、涡轮的形状不同而有差异。它一般靠壳体自然散热,不需要外部冷却的供油系统。如将液力耦合器的油放空,耦合器就处于脱开状态,能起离合器的作用。