Single Acting Fork Pneumatic Actuator
Simplicity
High Speed
Safety
Energy Efficiency
Cost-Effective
Versatility
Compact Design
Robustness
Ease of Control
Single Acting Fork Pneumatic Actuator Gallery
Single Acting Fork Pneumatic Actuator
Single Acting Fork Pneumatic Actuator
Every LORZEN Single Acting Fork Pneumatic Actuator has gone through highly controlled conditions to ensure the high quality of your Pneumatic Actuators.
Technical features:
Single-Acting Fork Pneumatic Actuators are a type of pneumatic actuator that uses compressed air to generate motion in one direction, with a spring or other mechanism to return the actuator to its original position. Here are some advantages of Single-Acting Fork Pneumatic Actuators:
Simplicity: Single-acting fork pneumatic actuators are relatively simple in design and operation, which can make them more reliable and easier to maintain than some other types of actuators.
High Speed: Due to their design, these actuators can provide high-speed operation, which can be beneficial in applications that require quick response times.
Safety: The spring return mechanism can safely return the actuator to its original position in the event of a power loss or system failure, which can be an important safety feature in many applications.
Energy Efficiency: Single-acting actuators only use energy (compressed air) in one direction of movement, which can make them more energy-efficient than double-acting actuators.
Cost-Effective: These actuators can be less expensive to install and maintain than some other types of actuators, due to their simpler design and operation.
Versatility: Single-acting fork pneumatic actuators can be used in a wide range of applications, from industrial machinery to automated processes.
Compact Design: Their design often allows them to be more compact than double-acting actuators, making them suitable for applications with space constraints.
Robustness: These actuators are generally robust and can withstand harsh environmental conditions, making them suitable for a variety of industrial applications.
Ease of Control: They are easy to control with simple ON/OFF commands, making them suitable for applications that do not require extensive control systems
Product characteristics:
A Single Acting Fork Pneumatic Actuator is a type of pneumatic actuator that uses compressed air to generate unidirectional motion. In this type of actuator, air pressure is used to push a mechanical device, typically a fork-shaped lever, to create movement. When the air pressure is released, a spring or other type of mechanism resets the actuator to its original position. This type of actuator is widely used in various situations requiring quick, precise motion.
The main feature of a Single Acting Fork Pneumatic Actuator is its unidirectional operation. This means it can generate force in one direction only, and relies on a spring or other type of reset mechanism in the other direction. This design makes this type of actuator very useful in many applications, especially in situations requiring quick, reliable resetting.
Furthermore, due to the simplicity of its operating principle, this type of actuator is typically more reliable and durable than other types of actuators. They are also more economical than many other types of actuators, as they only require compressed air to operate, and do not need electricity or other types of energy.
Performance characteristics:
The Single Acting Fork Pneumatic Actuator has the following performance characteristics:
Unidirectional Operation: This actuator can generate force in one direction only, with the other direction relying on a spring or another type of reset mechanism.
Fast and Precise: Powered by compressed air, this actuator can perform tasks quickly and accurately.
Reliable and Durable: Due to its simple operating principle, this type of actuator is typically more reliable and durable than other types of actuators.
Economical and Efficient: They only require compressed air to function, eliminating the need for electricity or other types of energy, making them cost-effective in operation.
Easy to Control and Maintain: Due to their simple design, they are easy to control and maintain. In most cases, regular inspection and part replacement are all that’s needed.
Compact Design: These actuators are often designed to be very compact, making them suitable for use in environments where space is limited.
Highly Adaptable: Due to their simple design and operating principle, these actuators can adapt to a variety of different applications and environments.
These are some of the main performance characteristics of a Single Acting Fork Pneumatic Actuator. This type of actuator can be customized to meet specific requirements for force, speed, and durability, depending on the specific application needs.
Operating Parameters:
Rotation angle:0°~90°
Output torque
Double action:600~260000Nm
Spring restoration: 600~100000Nm
Operating pressure
Pneumatic drive:0.3~0.7Mpa
Hydraulic drive:20Mpa
Operating temperature
Standard -20℃~+80℃
High temperature -15℃~+150℃
Low temperature -40℃~+80℃
Performance Testing
Our state-of-the-art facilities allow rigorous testing to validate function, endurance and environmental protection.
Quality Assurance
100% testing and inspection ensures superior performance of every actuator.
LORZEN Pneumatic Actuators Are Utilized Across Various Sectors, Including:
Actuator Design
Single Acting Fork Pneumatic Actuator Search
Pneumatic control system is an important part of any valve and actuator. has rich experience in gas circuit control to meet clients’requirements for on-off, regulating and urgent switching-off. Gas circuit system can be installed on a panel or in control cabinet, or in-stalled on an actuator or placed separately
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- sales@lorzval.com
- Lorzen Factory Park, Linyang Industrial District, Oubei Town, Yongjia County, Wenzhou City, Zhejiang Province, China
Single Acting Fork Pneumatic Actuator Related Information
Installation and Maintenance
Installation and Maintenance
The installation and maintenance of a Fork Pneumatic Actuator are relatively straightforward. Here are some basic steps:
Installation: During the installation process, it’s important to ensure the actuator is correctly aligned and secured in the right position. The actuator should be properly interfaced with the driven device (such as a valve or other mechanical component) to ensure accurate and efficient operation.
Maintenance: Maintenance of the actuator typically involves regular inspections and replacement of worn parts. This might include replacing seals, cleaning and lubricating moving parts, and checking and adjusting the control system. In most cases, just carrying out these maintenance steps periodically can ensure long-term reliable operation of the actuator.
Industry Applications/Functional Uses
Industry Applications/Functional Uses
Fork Pneumatic Actuators have a wide range of uses in many different industries and applications. Here are some of the main application areas:
Manufacturing: On automated production lines, these actuators can be used to control a variety of mechanical equipment such as valves, drums, conveyors, etc.
Energy Sector: In the oil, gas, and electricity industries, these actuators can be used to control various types of valves, ensuring efficient distribution and use of energy.
Chemical Industry: In chemical processes, these actuators can be used to precisely control conditions for various chemical reactions, such as temperature, pressure, and flow rate.
Water Treatment: In water treatment facilities, these actuators can be used to control various equipment like pumps, valves, and filters, ensuring effective water treatment.
Food and Beverage Industry: In the production process of food and beverages, these actuators can be used to control various equipment like mixers, ovens, and packaging machines, ensuring efficiency and quality in the production process.
These are just some of the main application areas for Single Acting Fork Pneumatic Actuators. Thanks to their simple design and operating principle, these actuators can adapt to a variety of different applications and environments.