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G771K615A MOOG 电液伺服阀 漳州风云

品牌:MOOG

P/ n:G771K615A

目录描述:电液伺服阀

原产地:美国

漳州风云提供G771K615A等DCS/PLC,漳州风云珊妮为您报价,并提供一年保修服务。

G771K615A质量高价格实惠有多种型号。

G771K615A 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

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产品详细说明

 产品细节说明:G771K615A MOOG 电液伺服阀

  1. 高精度:G771K615A伺服阀具有非常高的精度,能够实现对流量和压力的精确调节。
  2. 快速响应:该伺服阀能够快速响应电气信号的变化,提供即时的液压控制。
  3. 稳定性好:在长时间运行过程中,G771K615A伺服阀能够保持稳定的性能。
  4. 结构紧凑:采用紧凑的结构设计,便于安装和维护。
  5. 适应性强:能够与多种液压系统集成,适用于不同的应用需求。

G771K615A

产品详情参数 :G771K615A MOOG 电液伺服阀

  1. 工作压力:额定工作压力:根据MOOG伺服阀的常规设计,该型号的工作压力可能高达几十兆帕(MPa)。具体数值需查阅官方资料以获取准确信息。
  2. 流量特性:额定流量:伺服阀的额定流量取决于其设计和应用需求。G771K615A的额定流量可能根据具体型号和应用场景而有所不同,但通常会在一定范围内(如几升每分钟到几十升每分钟)。
  3. 压力控制特性
    • 压力调节范围:伺服阀通常具有较宽的压力调节范围,以适应不同的工作压力需求。G771K615A的压力调节范围可能根据具体型号和应用而有所不同。
    • 压力稳定性:MOOG伺服阀以其高精度和稳定性而著称,G771K615A在长时间运行过程中能够保持稳定的压力输出。

应用领域:G771K615A MOOG 电液伺服阀

G771K615A MOOG电液伺服阀广泛应用于需要高精度和快速响应的液压控制系统中,如航空航天、工业自动化、医疗设备等领域。在这些领域中,伺服阀通常用于控制各种液压执行机构,如液压缸、液压马达等,以实现精确的位置、速度和力控制。G771K615A MOOG电液伺服阀是一款具有高精度、快速响应和稳定性好等特点的高性能伺服阀。G771K615A MOOG电液伺服阀的工作原理基于电磁力和机械反馈系统的协同作用。当伺服阀线圈接受到正向电流指令信号时,线圈会产生电磁力作用于衔铁的两端,衔铁因此带动挡板偏转。挡板的偏转将改变喷嘴的流量,进而改变与喷嘴相通的滑阀一侧的压力,推动滑阀移动。滑阀的移动会改变油路的通断状态,从而实现对液压系统的精确控制。当伺服阀的输出指令与弹簧回复力平衡时,挡板回到中间位置,滑阀处于平衡状态,此时液压系统的输出保持稳定。

Product details: G771K615A MOOG electro-hydraulic servo valve
High precision: G771K615A servo valve has very high precision and can achieve precise adjustment of flow and pressure.
Quick response: This servo valve can quickly respond to changes in electrical signals and provide real-time hydraulic control.
Good stability: G771K615A servo valve can maintain stable performance during long-term operation.
Compact structure: Adopting a compact structural design, it is easy to install and maintain.
Strong adaptability: able to integrate with various hydraulic systems, suitable for different application needs.
Product details and parameters: G771K615A MOOG electro-hydraulic servo valve
Working pressure: Rated working pressure: According to the conventional design of MOOG servo valves, the working pressure of this model may reach several tens of megapascals (MPa). Specific values need to be consulted with official materials to obtain accurate information.
Flow characteristics: Rated flow: The rated flow of a servo valve depends on its design and application requirements. The rated flow rate of G771K615A may vary depending on the specific model and application scenario, but it is usually within a certain range (such as several liters per minute to tens of liters per minute).
Pressure control characteristics:
Pressure regulation range: Servo valves usually have a wide pressure regulation range to adapt to different working pressure requirements. The pressure regulation range of G771K615A may vary depending on the specific model and application.
Pressure stability: MOOG servo valves are known for their high precision and stability, and G771K615A can maintain stable pressure output during long-term operation.
Application field: G771K615A MOOG electro-hydraulic servo valve

G771K615A MOOG electro-hydraulic servo valve is widely used in hydraulic control systems that require high precision and fast response, such as aerospace, industrial automation, medical equipment and other fields. In these fields, servo valves are commonly used to control various hydraulic actuators, such as hydraulic cylinders, hydraulic motors, etc., to achieve precise position, speed, and force control. G771K615A MOOG electro-hydraulic servo valve is a high-performance servo valve with high precision, fast response, and good stability. The working principle of G771K615A MOOG electro-hydraulic servo valve is based on the synergistic effect of electromagnetic force and mechanical feedback system. When the servo valve coil receives a positive current command signal, the coil will generate electromagnetic force acting on both ends of the armature, causing the armature to drive the baffle to deflect. The deflection of the baffle will change the flow rate of the nozzle, thereby changing the pressure on one side of the slide valve connected to the nozzle and pushing the slide valve to move. The movement of the slide valve will change the on/off state of the oil circuit, thereby achieving precise control of the hydraulic system. When the output command of the servo valve is balanced with the spring restoring force, the baffle returns to the middle position, and the spool valve is in a balanced state. At this time, the output of the hydraulic system remains stable.

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