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g771k241/g771k241 MOOG 电液伺服阀 漳州风云

品牌:MOOG

P/ n:g771k241/g771k241

目录描述:电液伺服阀

原产地:美国

漳州风云提供g771k241/g771k241等DCS/PLC,漳州风云珊妮为您报价,并提供一年保修服务。

g771k241/g771k241质量高价格实惠有多种型号。

g771k241/g771k241 MOOG 电液伺服阀

  • 电话/Phone:15359458915 (微信同号)
  • 邮箱/Email:sales@fyplc.cn
  • 地址:漳州市龙文区朝阳北路1号办公楼205

 ★一手货源,没有中间商赚差价!库存1个亿!

★只要是您想要的,我能帮您找到,价格最优!

★厂家原装,保证售后服务,所有产品质保1年!

产品详细说明

 产品细节说明:g771k241/g771k241 MOOG 电液伺服阀

G771K241/G771K241 MOOG电液伺服阀是电液伺服系统中的关键组件,它能够将电信号转换为液压系统的流量和压力控制,从而实现高精度的液压控制。该产品具有动态响应快、控制精度高、使用寿命长等优点,广泛应用于航空、航天、舰船、冶金、化工等领域的电液伺服控制系统中。G771K241/G771K241 MOOG电液伺服阀的工作原理基于电磁学和液压学的原理。当输入线圈通入电流时,会产生一个电磁场,该电磁场作用于伺服阀的力矩马达上,使其产生旋转力矩。力矩马达的旋转会带动挡板偏转,从而改变喷嘴与挡板之间的间隙。这种间隙的变化会影响喷嘴的节流作用,进而改变液压油的流量和压力。通过精确控制输入电流的大小和方向,可以实现对液压油流量和压力的精确控制。

g771k241

产品详情参数 :g771k241/g771k241 MOOG 电液伺服阀

  1. 高精度控制:G771K241/G771K241 MOOG电液伺服阀采用先进的控制技术和制造工艺,能够实现高精度的流量和压力控制,满足各种复杂控制系统的需求。
  2. 动态响应快:该伺服阀具有快速的动态响应性能,能够迅速响应输入信号的变化,实现对液压系统的快速控制。
  3. 稳定可靠:产品设计合理,结构坚固,能够在恶劣的工作环境下保持稳定的性能,确保系统的可靠运行。
  4. 维护方便:G771K241/G771K241 MOOG电液伺服阀具有易于维护的特点,方便用户进行日常维护和保养。

应用领域:g771k241/g771k241 MOOG 电液伺服阀

G771K241/G771K241 MOOG电液伺服阀广泛应用于各种需要高精度、高响应速度的液压控制系统中,如:

  1. 航空航天:用于飞机、火箭等航空航天器的液压控制系统,确保飞行安全和稳定性。
  2. 舰船:用于舰船的液压控制系统,实现对舰船各种设备的精确控制。
  3. 冶金:用于冶金设备的液压控制系统,提高生产效率和产品质量。
  4. 化工:用于化工设备的液压控制系统,实现对化工过程的精确控制。

Product details: g771k241/g771k241 MOOG electro-hydraulic servo valve

G771K241/G771K241 MOOG electro-hydraulic servo valve is a key component in the electro-hydraulic servo system, which can convert electrical signals into flow and pressure control of the hydraulic system, thereby achieving high-precision hydraulic control. This product has the advantages of fast dynamic response, high control accuracy, and long service life, and is widely used in electro-hydraulic servo control systems in aviation, aerospace, shipbuilding, metallurgy, chemical and other fields. The working principle of G771K241/G771K241 MOOG electro-hydraulic servo valve is based on the principles of electromagnetics and hydraulics. When current is applied to the input coil, an electromagnetic field is generated, which acts on the torque motor of the servo valve, causing it to generate rotational torque. The rotation of the torque motor will drive the baffle to deflect, thereby changing the gap between the nozzle and the baffle. The variation of this gap will affect the throttling effect of the nozzle, thereby changing the flow rate and pressure of the hydraulic oil. By precisely controlling the magnitude and direction of the input current, precise control of hydraulic oil flow and pressure can be achieved.

Product details and parameters: g771k241/g771k241 MOOG electro-hydraulic servo valve
High precision control: G771K241/G771K241 MOOG electro-hydraulic servo valves use advanced control technology and manufacturing processes to achieve high-precision flow and pressure control, meeting the needs of various complex control systems.
Fast dynamic response: This servo valve has fast dynamic response performance, which can quickly respond to changes in input signals and achieve rapid control of hydraulic systems.
Stable and reliable: The product design is reasonable, the structure is sturdy, and it can maintain stable performance in harsh working environments, ensuring the reliable operation of the system.
Easy maintenance: G771K241/G771K241 MOOG electro-hydraulic servo valves have the characteristic of easy maintenance, making it convenient for users to carry out daily maintenance and upkeep.
Application areas: g771k241/g771k241 MOOG electro-hydraulic servo valve

G771K241/G771K241 MOOG electro-hydraulic servo valves are widely used in various hydraulic control systems that require high precision and high response speed, such as:

Aerospace: Hydraulic control systems used in aircraft, rockets, and other aerospace vehicles to ensure flight safety and stability.
Ship: A hydraulic control system used for ships to achieve precise control of various equipment on the ship.
Metallurgy: Hydraulic control systems used in metallurgical equipment to improve production efficiency and product quality.
Chemical industry: A hydraulic control system used for chemical equipment to achieve precise control of chemical processes.

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