Working of Swash pumps/axialpiston pump
Автор: Er Saurya Shankar
Загружено: 2025-05-13
Просмотров: 48
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#MMDOrals #MEOClassIVOrals #meoclassii #mmdexams #dgshipping #ships #swashpumps
Working of Swash pumps/axialpiston pump #swashpumps #manb&w #swash #swashplate #axialpistonpump
A swash plate pump, also known as an axial piston pump, is a type of positive displacement pump that uses a swash plate to translate the rotational motion of a drive shaft into the reciprocating motion of pistons. This reciprocating motion is used to pump fluid. The pump's output flow rate is determined by the angle of the swash plate and the rotational speed of the drive shaft.
Here's a more detailed explanation:
How it works:
Rotating Cylinder Block:
A cylinder block, containing multiple pistons, rotates with the drive shaft.
Piston Reciprocation:
Each piston is connected to a slipper pad that slides against a swash plate. The swash plate is an angled plate that forces the pistons to move up and down as the cylinder block rotates.
Fluid Intake and Discharge:
As a piston moves down, it creates a vacuum, drawing fluid into the piston chamber. When the piston moves up, it pushes the fluid out of the chamber.
Variable Displacement:
By adjusting the angle of the swash plate, the stroke of the pistons can be varied, allowing for a variable output flow rate.
Key Components:
Cylinder Block: Contains the pistons and is connected to the drive shaft.
Pistons: Move reciprocally within the cylinder block, drawing and discharging fluid.
Slipper Pads: Connect the pistons to the swash plate, ensuring they move in sync.
Swash Plate: The angled plate that forces the pistons to reciprocate.
Drive Shaft: Rotates the cylinder block and is connected to a motor or other power source.
Applications:
Swash plate pumps are used in various applications, including: Hydraulic systems in heavy machinery and industrial equipment, Ship steering gears, and Air conditioning systems.
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