
Model: PV080R1K1T1NSLC
Type: High - Pressure Axial Piston Pump
Manufacturer: Parker (assuming it's a Parker - branded pump based on the naming convention)
Performance Specifications
Displacement
The nominal displacement of the PV080R1K1T1NSLC is 80 cm³/rev. This indicates the volume of hydraulic fluid displaced per revolution of the pump's drive shaft. A relatively large displacement of 80 cm³ enables the pump to deliver a substantial amount of fluid, making it suitable for applications that require high - volume hydraulic power, such as in large - scale industrial machinery or heavy - duty mobile equipment.
Rated Pressure
The pump is rated to operate at a continuous working pressure of [X] bar. This rated pressure is the maximum pressure at which the pump can be run for extended periods without compromising its performance and reliability. It is a crucial parameter as it determines the pump's ability to drive hydraulic actuators against high loads.
Maximum Pressure
It can withstand a maximum pressure of [X + ΔX] bar for short - term peak loads. This additional pressure capacity allows the pump to handle sudden, transient increases in pressure that may occur during the operation of the hydraulic system, such as when the actuator encounters a high - resistance obstacle.
Flow Rate
At a rated rotational speed of [N] rpm, the flow rate (Q) of the pump can be calculated using the formula Q = Displacement × (Rotational Speed / 1000). So, for the PV080R1K1T1NSLC, the flow rate is Q = 80 × (N / 1000) = 0.08N liters per minute. The flow rate is directly related to the speed at which hydraulic cylinders or motors in the system can operate, influencing the overall productivity of the hydraulic machinery.