The Double Acting Scotch Yoke Pneumatic Actuator typically consists of a crank and piston system in a hollow cylinder. Pressure is applied to a side of the piston inside the cylinder. As a result, force is generated which moves the piston along the axis of the cylinder to rotate the actuator stem 90° with pilot air application.
The Double Acting Scotch Yoke Pneumatic Actuator is a type of actuator commonly used in various industrial applications. It is designed to convert pneumatic energy into rotary motion, allowing it to control the movement of valves, dampers, or other mechanical devices.
The term "double acting" refers to the actuator's ability to operate in both directions. This means that it can apply force in both the opening and closing directions, providing greater flexibility and control over the process it is involved in.
The actuator's "Scotch yoke" mechanism is what sets it apart from other types of actuators. The Scotch yoke mechanism consists of a sliding yoke that converts the linear motion of the piston into a rotational motion. This mechanism provides a smooth and efficient transfer of energy, resulting in reliable and precise operation.
The Double Acting Scotch Yoke Pneumatic Actuator is a versatile and reliable device that plays a crucial role in controlling the movement of various mechanical components in industrial processes. Its double-acting capability, coupled with the efficient Scotch yoke mechanism, makes it a popular choice for many applications requiring precise and dynamic control.
Supply Ability
Supply Ability: 1000 units per month Scotch Yoke Pneumatic Rotary Actuator
Packing & Delivery
Packing detail: 1) plywood case for ocean shipment
2) Plywood pallet for air shipment
Port of departure: Shanghai, China
Lead Time:
Quantity(Units) | 1-20 | 21-100 | 101-1000 | >1000 |
Est. Time(days) | Goods in stock | 15 | 30 | To be negotiated |
Hot Tags: double acting scotch yoke pneumatic actuator, China, suppliers, manufacturers, factory, customized, buy, price, for sale, in stock, free sample,