产品详细说明
产品细节说明:g771k613 MOOG 电液伺服阀
- 高精度:G771K613伺服阀很可能具备高精度的控制能力,能够实现对液压系统的精确控制。
- 快速响应:该伺服阀应具有快速的响应时间,能够迅速响应控制信号的变化,从而实现对液压系统的快速调节。
- 稳定性好:在长时间运行过程中,G771K613伺服阀能够保持稳定的性能,不易出现故障。
- 结构紧凑:MOOG伺服阀通常具有结构紧凑的特点,G771K613型号也不例外,这使得其更易于安装和维护。
- 适应性强:该伺服阀可能适用于多种液压系统,能够满足不同领域和应用场景的需求。

g771k613
产品详情参数 :g771k613 MOOG 电液伺服阀
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工作压力:典型范围可能高达350bar(5000 psi)或更高,具体取决于型号和设计。
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温度范围:
- 环境温度:-20℃到+60℃(-4℉到+140℉)。
- 油液温度:-20℃到+80℃(-4℉到+170℉)。
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工作介质:石油基液压油(符合特定标准,如DIN51524)。
应用领域:g771k613 MOOG 电液伺服阀
MOOG伺服阀的工作原理通常涉及电信号到液压信号的转换过程。具体来说,当输入线圈通入电流时,会产生电磁力作用于衔铁的两端,使衔铁组件(包括衔铁、挡板及弹簧管)发生偏转。挡板的偏转会改变喷嘴的节流作用,进而改变与喷嘴相通的阀芯一侧的压力。这种压力变化会推动阀芯移动,从而实现对液压油的流量和压力的控制。G771K613伺服阀可能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。
Product details: g771k613 MOOG electro-hydraulic servo valve
High precision: G771K613 servo valve is likely to have high-precision control capability, which can achieve precise control of hydraulic systems.
Quick response: The servo valve should have a fast response time and be able to quickly respond to changes in control signals, thereby achieving rapid adjustment of the hydraulic system.
Good stability: During long-term operation, the G771K613 servo valve can maintain stable performance and is less prone to malfunctions.
Compact structure: MOOG servo valves usually have the characteristic of compact structure, and the G771K613 model is no exception, which makes it easier to install and maintain.
Strong adaptability: This servo valve may be suitable for various hydraulic systems and can meet the needs of different fields and application scenarios.
Product details and parameters: g771k613 MOOG electro-hydraulic servo valve
Work pressure: The typical range may be up to 350 bar (5000 psi) or higher, depending on the model and design.
Temperature range:
Environmental temperature: -20 ℃ to+60 ℃ (-4 ℉ to+140 ℉).
Oil temperature: -20 ℃ to+80 ℃ (-4 ℉ to+170 ℉).
Working medium: Petroleum based hydraulic oil (compliant with specific standards, such as DIN51524).
Application field: g771k613 MOOG electro-hydraulic servo valve
The working principle of MOOG servo valves usually involves the conversion process from electrical signals to hydraulic signals. Specifically, when current is applied to the input coil, electromagnetic force is generated at both ends of the armature, causing the armature components (including the armature, baffle, and spring tube) to deflect. The deflection of the baffle will change the throttling effect of the nozzle, thereby altering the pressure on one side of the valve core connected to the nozzle. This pressure change will push the valve core to move, thereby achieving control over the flow and pressure of hydraulic oil. G771K613 servo valve may be 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.
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