150QJR Deep Well Submersible Pump

Undertake OEM processing! According to user requirements, design and manufacture of various types of special requirements of non-standard submersible motor and pump. The product implementation standards: GB/T2816-2014 "well submersible pump", GB/T2818-2014 "well submersible asynchronous motor". WhatsApp:17855846335
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Product Overview

Designed for underground hot water mining below 100°C, this product has the characteristics of high temperature resistance, corrosion resistance and aging resistance. Whether in underground mining or other hot water environment applications, it can effectively resist the challenges of harsh environment. Its excellent performance and stable quality make it an ideal choice in the mining field.

 

 
Conditions of Use

1, power supply: three-phase AC 380V (tolerance + / - 5%), 50HZ (tolerance + / - 1%).

2, water quality:

(1) water temperature is not higher than 20 °C;

(2) solid impurities content (mass ratio) is not greater than 0.01%;

(3) PH value (pH) 6.5-8.5;

(4) hydrogen sulfide content is not greater than 1.5mg/L;

(5) chloride ion content is not greater than 400mg/L.

3, the motor is closed or water-filled wet structure, before use the submersible motor cavity must be full of clean water, to prevent false full, and then tighten the water injection, air release bolts, otherwise not allowed to use

4, submersible pump must be completely submerged in the water, the diving depth is not greater than 70m, the bottom of the submersible pump from the bottom of the well is not less than 3m.

5, the well water flow should be able to meet the submersible pump water output and continuous operation, the submersible pump water output should be controlled at 0.7 - 1.2 times the rated flow.

6, the well should be straight, the submersible pump can not be used or dumped, only vertical use.

7, the submersible pump must be matched with the cable according to the requirements, and the external overload protection device. 8, the pump is strictly prohibited without water no-load test machine

 

 
Model Meaning

 
Partial Model Reference
Model Flow (m3/h) Head
(m)

Rotatingspeed

(change/point)

Waterpump(%)  Outlet
diameter
(mm)
Applicable well
diameter(mm) 
 Rated
power(KW)
Rated
voltage(V)
Rated
current(A)
Motorefficiency (%) power factorcosφ   Unit
Radial Maximu size(mm)
Remark
150QJ5-100 5 100 2850 58 40 150 3 380 7.9 74.0 0.78 143  
150QJ5-150 5 150 2850 58 40  150above 4 380 10.25 75.0 0.79 143  
150QJ5-200 200 5.5 13.74 76.0 0.8  
150QJ5-250 250 7.5 18.5 77.0 0.8  
150QJ5-300 300 9.2 22.12 78.0 0.81  
150QJ10-50 10 50 2850 63 50  150above 3 380 7.9 74.0 0.78 143  
150QJ10-66 66 4 10.25 75.0 0.79  
150QJ10-78 78 4 10.25 75.0 0.79  
150QJ10-84 84 5.5 13.74 76.0 0.8  
150QJ10-91 91 5.5 13.74 76.0 0.8  
150QJ10-100 100 5.5 13.74 76.0 0.8  
150QJ10-128 128 7.5 18.5 77.0 0.8  
150QJ10-150 150 7.5 18.5 77.0 0.8  
150QJ10-200 200 11 26.28 78.5 0.81  
150QJ10-250 250 13 30.87 79.0 0.81  
150QJ10-300 300 15 35.62 79.0 0.81  
150QJ15-33 15 33 2850 63 50  150above 3 380 7.9 74.0 0.78 143  
150QJ15-42 42 4 10.25 75.0 0.79  
150QJ15-50 50 4 10.25 75.0 0.79  
150QJ15-60 60 5.5 13.74 76 0.8  
150QJ15-65 65 5.5 13.74 76.0 0.8  
150QJ15-72 72 5.5 13.74 76.0 0.8  
150QJ15-81 81 7.5 18.5 77.0 0.8  
150QJ15-90 90 7.5 18.5 77.0 0.8  
150QJ15-98 98 7.5 18.5 77.0 0.8  
150QJ15-106 106 9.2 22.12 78.0 0.81  
150QJ15-114 114 9.2 22.12 78.0 0.81  
150QJ15-130 130 11 26.28 78.5 0.81  
150QJ15-146 146 13 30.87 79.0 0.81  
150QJ15-162 162 13 30.87 79.0 0.81  
150QJ15-180 180 15 35.62 79.0 0.81  
150QJ20-26 20 26 2850 64 50  150above 3 380 7.9 74.0 0.78 143  
150QJ20-33 33 3 7.9 74.0 0.78  
150QJ20-39 20 39 2850 64 50  150above 4 380 10.25 75.0 0.79 143  
150QJ20-52 52 5.5 13.74 76.0 0.8  
150QJ20-65 65 7.5 18.5 77.0 0.8  
150QJ20-78 78 7.5 18.5 77.0 0.8  
150QJ20-91 91 9.2 22.12 78.0 0.81  
150QJ20-98 98 9.2 22.12 78.0 0.81  
150QJ20-104 104 11 26.28 78.5 0.81  
150QJ20-111 111 11 26.28 78.5 0.81  
150QJ20-130 130 13 30.87 79.0 0.81  
150QJ20-143 143 13 30.87 79.0 0.81  
150QJ20-156 156 15 35.62 79.0 0.81  
150QJ20-182 182 18.5 43.12 79.5 0.82  
150QJ25-24 25 24 2850 64 65  150above 3 380 7.9 74.0 0.78 143  
150QJ25-32 32 4 10.25 75.0 0.79  
150QJ25-40 40 5.5 13.74 76.0 0.8  
150QJ25-48 48 5.5 13.74 76.0 0.8  
150QJ25-56 56 7.5 18.5 77.0 0.8  
150QJ25-64 64 7.5 18.5 77.0 0.8  
150QJ25-72 72 9.2 22.12 78.0 0.81  
150QJ25-77 77 9.2 22.12 78.0 0.81  
150QJ25-84 84 11 26.28 78.5 0.81  
150QJ25-96 96 11 26.28 78.5 0.81  
150QJ25-104 104 13 30.87 79.0 0.81  
150QJ25-110 110 13 30.87 79.0 0.81  
150QJ25-120 120 15 35.62 79.0 0.81  
150QJ25-128 128 15 35.62 79.0 0.81  
150QJ25-136 136 18.5 43.12 79.5 0.82  
150QJ25-154 154 18.5 43.12 79.5 0.82  
150QJ32-18 32 18 2850 66 80  150above 3 380 7.9 74.0 0.78 143  
150QJ32-24 24 4 10.25 75.0 0.79  
150QJ32-30 30 5.5 13.74 76.0 0.8  
150QJ32-36 36 5.5 13.74 76.0 0.8  
150QJ32-42 32 42 2850 66 80  150above 7.5 380 18.5 77.0 0.8 143  
150QJ32-54 54 9.2 22.12 78.0 0.81  
150QJ32-66 66 11 26.28 78.5 0.81  
150QJ32-72 72 13 30.87 79.0 0.81  
150QJ32-84 84 13 30.87 79.0 0.81  
150QJ32-90 90 15 35.62 79.0 0.81  
150QJ32-96 96 15 35.62 79.0 0.81  
150QJ32-114 114 18.5 43.12 79.5 0.82  
150QJ40-16 40 16 2850 66 80  150above 3 380 7.9 74.0 0.78 143  
150QJ40-24 24 5.5 13.74 76.0 0.8  
150QJ40-30 30 5.5 13.74 76.0 0.8  
150QJ40-40 40 7.5 18.5 77.0 0.8  
150QJ40-48 48 9.2 22.12 78.0 0.81  
150QJ40-56 56 11 26.28 78.5 0.81  
150QJ40-64 64 13 30.87 79.0 0.81  
150QJ40-72 72 13 30.87 79.0 0.81  
150QJ40-80 80 15 35.62 79.0 0.81  
150QJ40-96 96 18.5 43.12 79.5 0.82  
150QJ50-16 50 16 2850 65 80  150above 4 380 10.25 75.0 0.79 143  
150QJ50-22 22 5.5 13.74 76.0 0.8  
150QJ50-28 28 7.5 18.5 77.0 0.8  
150QJ50-34 34 9.2 22.12 78.0 0.81  
150QJ50-40 40 9.2 22.12 78.0 0.81  
150QJ50-46 46 11 26.28 78.5 0.81  
150QJ50-52 52 13 30.87 79.0 0.81  
150QJ50-57 57 15 35.62 79.0 0.81  
150QJ50-74 74 18.5 43.12 79.5 0.82  
150QJ50-80 80 18.5 43.12 79.5 0.82  
150QJ63-12 63 12 2850 60 80  150above 4 380 10.25 75.0 0.79 143  
150QJ63-18 18 7.5 18.5 77.0 0.8  
150QJ63-30 30 9.2 22.12 78.0 0.81  
150QJ63-36 36 11 26.28 78.5 0.81  
150QJ63-42 63 42 2850 60 80  150above 13 380 30.87 79.0 0.81 143  
150QJ63-48 48 15 35.62 79.0 0.81  
150QJ63-54 54 18.5 43.12 79.5 0.82  
150QJ15-220 15 220 2850   50  150above 18.5 380 43.12     143  
150QJ15-260 260 20 49.7      
150QJ15-300 300 25 56.5      
150QJ20-210 20 210 2850   50  150above 20 380 49.7     143  
150QJ20-240 240 25 56.5      
150QJ20-290 290 30 66.6      
150QJ25-175 25 175 2850   65  150above 20   49.7     143  
150QJ25-200 200 30 66.6      
150QJ25-290 290 37 82.1      
150QJ32-120 32 120 2850   80  150above 20 380 49.7     143  
150QJ32-132 132 25 56.5      
150QJ32-156 156 30 66.6      
150QJ32-190 190 37 82.1      
150QJ32-240 240 45 96.9      
150QJ40-110 40 110 2850   80  150above 20 380 49.7     143  
150QJ40-121 121 25 56.5      
150QJ40-143 143 30 66.6      
150QJ40-176 176 37 82.1      
150QJ40-220 220 45 96.9      
150QJ50-100 50 100 2850   80  150above 20 380 49.7     143  
150QJ50-110 110 25 56.5      
150QJ50-130 130 30 66.6      
150QJ50-160 160 37 82.1      
150QJ50-200 200 45 96.9      

 

 
Safety Precautions

 The well submersible pump is a kind of pump suitable for clean water. It is strictly prohibited to dig new wells and extract sediment and turbid water. The voltage grade of the pump is 380/50HZ, and other submersible motors with different voltage grades need to be customized. Underground cables must be waterproof and must be equipped with starting equipment, such as distribution box, etc. The starting equipment should have conventional comprehensive motor protection functions, such as short circuit overload protection, phase loss protection, undervoltage protection, grounding protection and no-load protection. In abnormal cases, the protection device should be tripped in time. During installation and use, it is necessary to ensure that the pump is reliably grounded. It is forbidden to push and pull the switch when hands and feet are wet. The power supply must be cut off before installation and maintenance of the pump. In the place where the pump is used, an obvious "anti-electric shock" sign must be set up. Before going down the well or installing the motor, the internal chamber must be filled with distilled water or non-corrosive clean cold water. The water adding/discharge bolt must be tightened. When testing the pump on the ground, water must be poured into the pump chamber to lubricate the rubber bearings. The instant start should not exceed one second to check whether the direction is correct, the same as the steering indication. Pay attention to safety when the pump is upright to prevent overturning and injury. Strictly in accordance with the provisions of the pump lift and flow range of use, to prevent the pump in low lift has a large flow or in high lift has a large pull, resulting in extreme wear of thrust bearings and other components, resulting in motor overload burnout. After the pump into the well, the insulation resistance of the motor and the ground shall be measured, which shall not be less than 100MΩ. After the start, observe the voltage and current regularly, and check whether the motor winding insulation meets the requirements; if the temperature of the pump storage location is below the freezing point, the water in the motor cavity shall be discharged to prevent freezing damage to the motor.

 

 
Introduction to Structure

Brief introduction of structure: pump part is mainly composed of pump shaft, impeller, diversion shell, rubber bearing, check valve body (optional parts) and other components. Motor part is mainly composed of base, pressure regulating film, thrust bearing, thrust plate, lower guide bearing seat, stator, rotor, upper guide bearing seat, sand ring, water inlet section, cable and other components.


The main features of the product include:

 1, The motor is a water-filled wet submersible three-phase asynchronous motor, the motor cavity is full of clean water, used to cool the motor and lubricate the bearing, the pressure regulating film at the bottom of the motor is used to adjust the expansion and contraction pressure difference of the water inside the body caused by the change of the temperature rise of the motor.

 2, In order to prevent the sand in the well water from entering the motor, the upper end of the motor shaft is equipped with two oil seals, and a sand ring is installed to form a sand prevention structure.

 3, In order to prevent the pump shaft from running up when starting, the pump shaft and the motor shaft are connected by a coupling, and an upper thrust bearing is installed at the lower part of the motor.

 4, The lubrication of the motor and the pump bearing is water lubrication.

 5, The motor stator winding is made of high quality submersible motor winding wire, with high insulation performance.

 6, The pump is designed by computer CAD, with simple structure and good technical performance.

 
Install

 

(1)Preparation before installation:
1. Check whether the submersible pump meets the usage conditions and scope specifed in the manual.
2. Using a heavy obiect with a diameter equal to the maximum outer diameter of the submersible pump, measure whether the inneldiameter of the wellbore can fit the submersible pump, and measure whether the well depth meets the installation requirements.
3. Check whether the wellbore is clean and whether the well water is turbid. Never use a submersible electric pump to wash the welor pump mud and sand water to avoid premature damage to the submersible electric pump.
4. Check whether the position of the welhead installation clamp is suitable and whether it can withstand the qualty of the entire unit
5. Check if the submersible pump components are complete and installed properly according to the assembly diagram in the manualRemove the filter screen and rotate the coupling to see if it rotates flexibly
6. Unscrew the water screw and fillthe motor cavity with clean, non corrosive water (note. be sure to fil it up), then tighten the waterscrew. After 12 hours of water injection, the insulation resistance of the motor should not be less than 150M Q when measured witha 500V shaking table.
7. Cable joint, cut off a 120mm rubber sleeve from one end of the outgoing cable and the matching cable with an electrician's knifethen stagger the length of the three core wires in a stepped shape, peel off a 20mm copper core, scrape of the oxide layer on theoutside of the copper wire with a knife or sand cloth, and insert the two connected wire ends in palirs.After tying the layer tightly with fine copper wire, solder it thoroughly and firmly, and sand of any. burrs on the surface. Then, forthe three joints, use polyvester insulation tape to wrap them in a semi stacked manner for three lavers. Wrap the two ends of thewrapping layer tightywith nyion thread,and then use a semi stacked method to wrap the tape for three layers. Wrap the outellayer with high-pressure insulation tape for three layers. Finally, fold the threestrands together and repeatedly wrap them for fivelayers with high-pressure tape. Each layer must be tightly tied, and the interlayer joints must be tight and fimm to prevent water frompenetrating and damaging the insulation, After wrapping, soak in water at room temperature of 20 ’c for 12 hours, and measurethe insulation resistance with a shaking table, which should not be less than 100M Ω

 

The attached cable wiring process diagram is as follows:

 

8. Use a multimeter to check whether the three-phase wires are connected and whether the DC resistance is approximately balanced.
9. Check whether the circuit and transformer capacity are overloaded, and then connect the overload protection switch or starting equipment. See Table 2 for specific models, and thenPour a bucket of water into the water pump from the water pump outlet to lubricate the rubber bearings in the pump, and then place the submersible electric pump upright and steady.Start (no more than one second) and check whether the steering direction is consistent with the steering sign. If not, swap any two connectors of the three-phase cable.Then install the filter and prepare to go down the well. If used in special occasions (such as ditches, ditches, rivers, ponds, ponds, etc.), the electric pump must be reliably grounded.

 

(2)Installation equipment and tools:
1. One pair of lifting chains for more than two tons.
2. A tripod with a vertical height of no less than four meters.
3. Two hanging ropes (wire ropes) that can bear a weight of more than one ton (can bear the weight of a complete set of water pumps).
4. Install two pairs of clamps (splints).
5. Wrenches, hammers, screwdrivers, electrical tools and instruments, etc.

 

(3)Electric pump installation:
1. The installation diagram of the submersible electric pump is shown in Figure 2. The specific installation dimensions are shown in Table 3 "List of Installation Dimensions of the Submersible Electric Pump".

 

2. Submersible electric pumps with a head less than 30 meters can be hoisted directly into the well using hoses and wire ropes or other hemp ropes that can bear the full weight of the entire machine, water pipes, and water in the pipes.

 

3. Pumps with a head of more than 30 meters use steel pipes, and the installation sequence is as follows:
①Use a clamp to clamp the upper end of the water pump part (the motor and water pump have been connected at this time), lift it with a hanging chain, and slowly tie it into the well untilPut the clamp on the wellhead and remove the hanging chain.
② Use another pair of clamps to clamp a pipe, lift it with a hanging chain 15 cm away from the flange, and lower it slowly. Between pipe flange and pump flangePut the rubber pad in place and tighten the pipe and pump evenly with bolts, nuts and spring washers.
③ Lift the submersible pump slightly, remove the clamp on the upper end of the water pump, tie the cable firmly to the water pipe with a plastic tape, and slowly tie it down until The clamp is placed at the wellhead.
④Use the same method to tie all water pipes into the well.
⑤After the lead-out cable is connected to the control switch, it is connected to the three-phase power supply.


(4)Things to note during installation:
1. If a jamming phenomenon is found during the pumping process, turn or pull the water pipe to overcome the jamming point. If various measures still do not work, pleaseDo not force the pump down to avoid damage to the submersible electric pump and the well.
2. During installation, a rubber pad should be placed at the flange of each pipe and tightened evenly.
3. When the water pump is lowered into the well, it should be placed in the middle of the well pipe to prevent the pump from running against the well wall for a long time, causing the pump to vibrate and the motor to sweep and burn.
4. Determine the depth of the water pump to the bottom of the well according to the flowing sand and silt conditions of the well. Do not bury the pump in the mud. The distance from the water pump to the bottom of the well is generally not less than 3 meters (see Figure 2).
5. The water entry depth of the water pump should be no less than 1-1.5 meters from the dynamic water level to the water inlet node (see Figure 2). Otherwise, the water pump bearings may be easily damaged.
6. The lift of the water pump cannot be too low. Otherwise, a gate valve needs to be installed on the wellhead water pipeline to control the pump flow at the rated flow point to prevent the motor from being overloaded and burned out due to large flow rates.
7. When the water pump is running, the water output should be continuous and even, the current should be stable (under rated working conditions, generally no more than 10% of the rated current), and there should be no vibration or noise. If there is any abnormality, the machine should be stopped to find out the cause and eliminate it.
8. When installing, pay attention to the setting of the motor grounding wire (see Figure 2). When the water pipe is a steel pipe, lead it from the wellhead clamp; when the water pipe is a plastic pipe, lead it from the grounding mark of the electric pump.

 

 
Maintenance and Maintenance
  • 1.After the submersible pump is installed, check the insulation resistance and three-phase conduction from the switch again, check whether the instrument and the connection of the start equipment are wrong, if there is no problem, the trial machine can be started, and observe whether the indicator readings of the instrument exceed the rated voltage and current specified on the nameplate after the start, and observe whether the pump has noise and vibration phenomenon, and put into operation if everything is normal.
  • 2.After the first operation of the pump for four hours, the motor should be shut down to test the thermal insulation resistance quickly, and its value should not be less than 0.5 megaohm.
  • 3.After the pump is shut down, it should be started after five minutes to prevent the water column in the pipe from being completely reflowed and causing excessive motor current and burnout.
  • 4.After the pump is put into normal operation, in order to prolong its service life, it is necessary to check whether the supply voltage, working current and insulation resistance are normal regularly. If the following conditions are found, the pump should be shut down immediately to troubleshoot.
  •  
  • - In the rated condition, the current exceeds 20%.
  • - The dynamic water level drops to the water inlet section, causing intermittent water.
  • - The submersible pump has severe vibration or noise.
  • - The supply voltage is lower than 340 volts.
  • - A fuse is burned out.
  • - The water supply pipe is damaged.
  • - The motor's thermal insulation resistance is lower than 0.5 megaohm.
  •  
  • 5.Unit disassembly:
  • - Untie the cable tie, remove the pipeline part, and remove the wire plate.
  • - screw down the water bolt, put the water in the motor chamber.
  • - remove the filter, loose the fixed screw on the coupling to fix the motor shaft.
  • - screw down the bolt connecting the water inlet section with the motor, and separate the pump from the motor (pay attention to the unit cushion when separating, to prevent the bending of the pump shaft)
  • - the disassembly sequence of the pump is: (see figure 1) water inlet section, impeller, diversion shell, impeller...... check valve body, when removing the impeller, use special tools to loosen the conical sleeve of the fixed impeller first, and avoid bending and bruising the pump shaft in the process of disassembly.
  • - the disassembly process of the motor is: (see figure 1) place the motor on the platform, and remove the nuts, base, shaft head locking nut, thrust plate, key, lower guide bearing seat and double head bolt from the bottom of the motor in turn, and then take out the rotor (pay attention not to damage the wire package) and finally remove the connecting section and upper guide bearing seat.
  • - unit assembly: before assembly, the rust and dirt of the parts should be cleaned, and the mating surface and fasteners coated with sealant, and then assembled in the opposite order of disassembly (the motor shaft moves up and down after assembly for about one millimeter), after assembly, the coupling should be flexible, and then the filter screen test machine. Submersible pumps shall be taken out of the well for dismantling and maintenance according to Article 5 after a year of operation, or less than a year of operation but two years of diving time, and the worn parts shall be replaced.

 

 
Storage and Custody

 Welcome to use our submersible pump products!Our products are exquisitely designed and convenient to use, widely used in family, agriculture, and industrial fields.In order to ensure the lasting and stable performance of your products, we suggest paying special attention to drainage in winter to prevent motor icing, and rolling and tying the cable tightly.When storing, please choose an environment without corrosive substances and harmful gases, and keep the temperature below 40 °C.If you do not use it for a long time, please pay attention to rust prevention to protect the quality of the submersible pump.Wish you a smooth and unimpeded use experience, thank you for choosing our products!

 

 
Wearing Parts
  • Impeller
  • Shaft sleeve
  • Rubber shaft sleeve
  • Sealing ring

 
Application Scenarios

01 Deep well water intake

02 High-rise water supply

03 mountain water supply 

04 tower water

05 Agricultural irrigation

06 garden irrigation

07 river water intake

08 domestic water

 

 

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