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The flow resistance of the integrated valve is one of the key parameters for the design of the control rod hydraulic drive system.

组合阀流动阻力是控制棒水压驱动系统设计的关键参数之一。

To reset the reducing valve for higher pressure when the pressure is not sufficient to lift the water to highest radiation

如果需要更高的压力(当水压不足于将水提升到最高的用水设备时),则需要重新设置减压阀

This paper analyzes the steady-state characteristic of the two main components of the water hydraulic proportional throttle valve including slide valve and proportional solenoid, and analyzes the whole valve's steady-state characteristic also.

论文分析了水压比例节流阀的两个主要组成部分––––节流滑阀和比例电磁铁的稳态特性,并对水压比例节流阀整体的稳态特性进行了分析。

A design of multifunctional valve for the ERD was put forward, using a specially designed valve to replace the four valves situated on the cylinder end. The unit was greatly simplified.

论文提出了一种阀控余压能量回收装置专用多功能阀门的设计方案,用特殊设计的阀门代替原有的水压缸端四个电磁阀,有效简化了系统。

Dry-type valves use air pressure and water pressure acting on both sides of the flap valve torque difference control valve on the valve closed and open, generally can be divided into differential-type dry-type alarm valve and sealed dry-type alarm Flanged end gate valve valve two kinds of.

干式阀利用两侧气压和水压作用在阀瓣上的力矩差控制阀瓣的封闭和开启,一般可分为差动型干式报警阀和封闭型干式报警阀两种。

Dry-type valves use air pressure and water pressure acting on both sides of the flap valve torque difference control valve on the valve closed and open, generally can be divided into differential-type dry-type alarm valve and sealed dry-type alarm 800X Differential By-Pass Balancing Valve valve two kinds of.

干式阀利用两侧气压和水压作用在阀瓣上的力矩差控制阀瓣的封闭和开启,一般可分为差动型干式报警阀和封闭型干式报警阀两种。

When a sudden power failure or accident or normal pump stops when the pump stops, the valve inlet water velocity to reduce stress Agency, the valve plate also fall, when its velocity is zero (that is, inlet flow rate is zero Department), large valve plate because of its own gravity and rapidly turn off (time 3s ~ 5s), the majority of water to prevent backflow, when the valve before and after the formation of a water pressure, water stress, on the one hand through the small valve at the bottom of the three slot for pressure relief vent pressure. 4 water stress from the bypass tube into the cavity patch up the control room (this process for the suction pressure chamber that can effectively absorb the energy of water), when water stress on cavity than inferior vena cava, the pressure of water promote the diaphragm down mobile , the current cavity pressure of water being squeezed out all the small valve plate slowly drop back to standby status, the process time to ease closure adjustable (3s ~ 150s), then the valve has been fully closed, watertight.

当突然停电或事故停泵或正常停泵时,阀门进水口处压力水流速降低,大阀板也随之下降,当其流速为零时,大阀板由于自身重力而迅速关闭(时间3s~5s),可防止大部分水倒流,此时阀门前后形成一种水压差,压力水一方面通过小阀板底部的三条泄压槽进行泄压。4)压力水从旁通管进入膜片控制室上腔(此过程为吸压腔,能有效吸收一部分水能量),当上腔压力水大于下腔时,压力水推动膜片往下移动,当下腔压力水全部被挤出来时,小阀板缓缓下降,恢复到待机状态,此过程中缓闭时间可调节(3s~150s),届时阀板已全部关闭,滴水不漏。

Based on the compressibility, viscosity resistance and the working house system's deformation etc, flow equations of distribution spool, hydraulic tube and fluid cylinder for 300 MN die forging hydraulic press were established, and dynamics equations of moving beam and upper beam were established based on analysis. The dynamics mechanical-hydraulic coupling model of driving system was established.

考虑流体的可压缩性、粘性阻力及工作框架系统变形等因素,采用解析法建立300 MN模锻水压机动梁驱动系统分配阀口、液压管道、液压缸的流量方程以及动梁和上横梁的动力学方程,得到驱动系统的动态机液耦合模型。

Based on the compressibility, viscosity resistance and the working house system's deformation etc, flow equations of distribution spool, hydraulic tube and fluid cylinder for 300 MN die forging hydraulic press were established, and dynamics equations of moving beam and upper beam were established based on analysis. The dynamics mechanical-hydraulic coupling model of driving system was established.

摘 要:考虑流体的可压缩性、粘性阻力及工作框架系统变形等因素,采用解析法建立300 MN模锻水压机动梁驱动系统分配阀口、液压管道、液压缸的流量方程以及动梁和上横梁的动力学方程,得到驱动系统的动态机液耦合模型。

Cavitations is the major problems of designing water hydraulic valve, understanding the relationship between shape of valve and cavitations , avoiding cavitations is extremely important, this paper, the numerical simulation and visualization research of flow field is carried out to research relation between the flow field of poppet valve and the length of valve seat by finite volume numerical method.

气穴是研制水压阀存在的主要难题,认识阀口形状与气穴的关系,避免产生气穴现象是极其重要,本文应用有限体积数值计算方法针对阀座倒角长度变化对水压阀阀道内流场的影响进行数值模拟和可视化研究,得到了一些有益的结论:倒角长度的改变对阀口间隙以及阀芯锥面与柱面相接的地方的负压会产生比较大的影响

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