Shanghai Baoheng Pump Manufacturing Co., Ltd
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3DJ3 type three plunger metering pump
3DJ3 type three plunger metering pump
Product details

3DJ3 type three plunger metering pump

Flow rate: 17800L/h
Pressure: 90MPa
Motor power: 2.2~45KW

Performance characteristics

● Displacement 17800L/h, pressure 90MPa;
● Small pulse and stable pressure;
Adding a jacket to the pump head can achieve the purpose of insulation and heating;
● Flow control is achieved by reducing or increasing the pump speed through a continuously variable transmission, gearbox, or speed regulating motor;
Can be equipped with a dedicated PLC stroke controller for automatic control, and can also achieve automatic control of 4-20mA signals through frequency conversion.

performance parameter

Technical parameters of 3DJ4 metering pump
(Pump stroke: 60mm)
Specification and model

internet traffic
(L/H)

pressure
(MPa)
Plunger Diameter
(mm)
Number of charges
min -1
3DJ-136/90 136 90 16 90
3DJ-212/90 212 140
3DJ-272/90 272 180
3DJ-424/90 424 280
3DJ-195/60 195 60 19 90
3DJ-305/60 305 140
3DJ-390/60 390 180
3DJ-610/60 610 280
3DJ-265/40 265 40 22 90
3DJ-415/40 415 140
3DJ-530/40 530 180
3DJ-830/40 830 280
3DJ-420/30 420 30 20 90
3DJ-650/30 650 140
3DJ-840/30 840 180
3DJ-1300/30 1300 280
3DJ-520/20 520 20 25 90
3DJ-810/20 810 140
3DJ-1040/20 1040 180
3DJ-1620/20 1620 280
3DJ-850/16 850 16 29 90
3DJ-1320/16 1320 140
3DJ-1700/16 1700 180
3DJ-2640/16 2640 280
3DJ-1050/12 1050 12 32 90
3DJ-1630/12 1630 140
3DJ-3100/12 3100 180
3DJ-3260/12 3260 280
3DJ-1525/8 1525 8 35 90
3DJ-2380/8 2380 140
3DJ-3050/8 3050 180
3DJ-4760/8 4760 280
3DJ-2250/6 2250 6 39 90
3DJ-3500/6 3500 140
3DJ-4500/6 4500 180
3DJ-7000/6 7000 280
3DJ-2900/2 2900 2 42 90
3DJ-4510/2 4510 140
3DJ-5800/2 5800 180
3DJ-9020/2 9020 280

(MPa)
Technical parameters of 3DJ5 metering pump
(Pump stroke: 80mm)
Specification and model

internet traffic
(L/H)

Plunger Diameter
(mm)
Number of charges
min -1
3DJ-230/90 230 90 18 90
3DJ-358/90 358 140
3DJ-460/90 460 180
3DJ-718/90 718 280
3DJ-320/60 320 60 21 90
3DJ-500/60 500 140
3DJ-640/60 640 180
3DJ-1000/60 1000 280
3DJ-480/40 480 40 25 90
3DJ-740/40 740 140
3DJ-960/40 960 180
3DJ-1480/40 1480 280
3DJ-600/30 600 30 28 90
3DJ-940/30 940 140
3DJ-1200/30 1200 180
3DJ-1880/30 1880 280
3DJ-970/20 970 20 35 90
3DJ-1510/20 1510 140
3DJ-1940/20 1940 180
3DJ-3020/20 3020 280
3DJ-1500/16 1500 16 43 90
3DJ-2340/16 2340 140
3DJ-3000/16 3000 180
3DJ-4680/16 4680 280
3DJ-1920/12 1920 12 48 90
3DJ-2990/12 2990 140
3DJ-3840/12 3840 180
3DJ-5980/12 5980 280
3DJ-2800/8 2800 8 56 90
3DJ-4370/8 4370 140
3DJ-5600/8 5600 180
3DJ-8740/8 8740 280
3DJ-4000/6 4000 6 68 90
3DJ-6220/6 6220 140
3DJ-8000/6 8000 180
3DJ-12440/6 12440 280
3DJ-5730/2 5730 2 80 90
3DJ-8900/2 8900 140
3DJ-11460/2 11460 180
3DJ-17800/2 17800 280
External dimensions
Purpose:

The 3DJ series metering pump is a new type of metering pump developed and designed by our company based on the practical needs of the J series metering pump. Its flow range is (1.0~17800) L/h, suitable for conveying media without solid particles at temperatures of -30~450 ℃ and viscosities of 0.3~800 square millimeters per second. Compared with the J series metering pump, it has the advantages of small pulse, high pressure resistance, stable pressure, small volume, light weight, low power consumption, long service life, and easy operation and maintenance. It is particularly suitable for conveying various media under high pressure conditions (such as plastic machinery with foaming agent, scientific research ratio, etc.), and is an ideal product for simplifying the process flow. The product is widely used in plastic machinery, oil fields, chemical industry, fertilizers, pharmaceuticals, food, national defense, and research institutes.

Model Description
Working structure principle

3DJ series metering pump, also known as three plunger metering pump. The pump adopts the principle of crankshaft connecting rod mechanism, which is driven by an electric motor through a reduction mechanism to rotate the crankshaft and push the connecting rod through a slider (crosshead) to make the plunger perform linear reciprocating motion. Under the opening and closing action of the valve, it achieves the purpose of suction and discharge of liquid. Due to the fact that within one rotation of the crankshaft, each of the three plungers sucks and discharges liquid once, the suction and discharge frequency is increased compared to traditional single plunger and double plunger metering pumps, so the pulse is very small and the pressure is stable.

The flow regulation of the 3DJ series metering pump is achieved by reducing or increasing the pump speed through a continuously variable transmission, frequency converter, or speed regulating motor. After being equipped with electronic control devices, remote operation or automation control can also be achieved. Adding a jacket to the pump head can achieve the purpose of insulation and heating.
Selection and Usage Guidelines for J Series Metering Pumps
1、 Measurement accuracy and flow calibration:

According to the GB/T7782-1996 standard for metering pumps, the flow measurement accuracy of the pump at rated conditions and relative stroke should not be less than ± 1%. The ideal range of use for pumps when conveying general media is 40% to 100% for plunger metering pumps and 60% to 100% for diaphragm metering pumps. When the required range of use for the process flow is ≥ 10%, an AC frequency converter can be added to reduce the speed and expand the range of use.
2、 Installation height of metering pump:

For conveying normal temperature media with physical properties similar to clean water, the installation height of the plunger pump center above the liquid level should be less than 2 meters, and the diaphragm pump should be less than 1 meter. When the pump cylinder chamber is filled with liquid medium, the suction performance of the pump can be improved. The installation height of the plunger pump is 4-5 meters, and the diaphragm pump is 2-3 meters.
3、 Precautions for installation of metering pump pipeline system:

1. The inner diameter of the inlet and outlet pipes should not be less than the inner diameter of the pump suction and discharge. Try to shorten the length of the pipeline and reduce resistance components such as bends and valves. It is not allowed to have an upward curved "Ω" shape arrangement to avoid gas accumulation.

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