Waterjet Cutter Pump Kunda High Pressure Abrasive Water Jet Cutter For Marble

Short Description:

Attenuator capacity:2L
Voltage:380V
Rated power:60HP
Maximum water flow:6.5L/min
Temperature:5-40°C
Continuous working pressure:320Mpa-380Mpa
Weight:1.5T
Use for Abrasive Waterjet Cutting Machine
Stable pressure
Waterjet Cutter Pump,Abrasive Water Jet Cutter,Water Jet Cutter


    
                

Details

WaterJet Cutter Pump Kunda High Pressure Abrasive Water Jet Cutter For Marble


enuator capacity

2L

Driving mode

High performance motor

Voltage

380V

Application

Water jet cutting system

Rated power

60HP

Maximum water flow

6.5L/min

Working pressure

420Mpa

Continuous working pressure

320Mpa-380Mpa

Driving 20431118-Waterjet-Parts-In-Stock-p.html target='_blank'>20431118-Waterjet-Parts-In-Stock-p.html target='_blank'>Orifices Qty.

1-4

Temperature

5-40°C

Hydraulic oil type

No.46 anti-wear oil

Cooling method

Cool-heat exchange

Size (L * w * h)

1.7m*1.1m*1.4m

Weight

1.5T



The Waterjet Cutter Pump for water jet cutting is the core component of modern high-pressure water jet cutting systems and is widely used for precision cutting in industries such as metal, stone, glass, and composite materials. Its main function is to boost the low-pressure water source to a high pressure of 60,000 to 90,000 psi (about 4,100 to 6,200 bar) through the hydraulic booster principle to drive the Water Jet Cutting Head for efficient cutting.
The Waterjet Cutter Pump uses the oil pressure in the hydraulic system to push the 1-11508-Abrasive-Waterjet-Parts-With-Good-Quality-Supplier-p.html target='_blank'>Piston, which is connected to the plunger. The low-pressure oil pressure is converted into high-pressure water flow through the ratio of the piston area to the plunger area. This boosting principle is similar to the working mechanism of a hydraulic press, that is, the oil pressure multiplied by the piston area is equal to the water pressure multiplied by the plunger area.
Main components Waterjet Cutter Pump
Hydraulic system: Provides power to push the booster to perform piston movement.
Booster assembly: The core component, which generates high-pressure water flow by hydraulically driving the plunger.
Accumulator: Stores hydraulic energy to ensure the continuous operation of the booster.
Control system: Regulates and monitors the working status of the pump to ensure stable operation of the system.

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