Cwz Marine Horizontal Self-Priming Pump

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Hangzhou Cagon Transmission Technology Co., Ltd.

VIP   Audited Supplier 1 year
Profile Certified by SGS/BV
CWZ series marine centrifugal pump
Provide 24 - Hour Online Technical Support
Free Maintenance Within One Year
50-80m
>400 L/min
Motor
Single-Stage Pump
Middle Pressure Pump
Single Suction Pump
Horizontal Pump
Horizontal Split Pumps
Since Irrigation Centrifugal Pumps
Closed
Pump, Pumps
10-250
16-32
2900
380V
Cagon
Wooden Case Packaging
China
8413709990
Product Description
CWZ series marine horizontal self-priming centrifugal pump

The CWZ Series marine pumps are installed at the cabin bottom for water cooling and fire - fighting. They can handle sea water below 80 degrees, fresh water, and other non - eroding liquids. When viewed from the motor, the pump rotates anticlockwise.



main technical parameter

Type
(50Hz   3 φ 380v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
 Head
m
 Speed r/min NPSHr
m
Shaft power
kW

32CWZ-5
423.7
2900
3 
Y90S-2H

1.5

28
8212.81.2
9.619.53.1 

32CWZ-4
431.2
2900
5 
Y90L-2H

2.2

30
8303.51.63
9.6283.2 

32CWZ-3
445.7
2900
3.2 
Y112M-2H

4

30
8422.82.54
9.640.43 

40CWZ-6
624.5
2900
2.2 
Y90L-2H

2.2

48
12212.61.32
14.418.53 

40CWZ-5
63.8
2900
2 
Y100L-2H

3

50
12302.81.92
14.428.73.4 

40CWZ-4
642.8
2900
4.4 
Y112M-2H

4

50
12423.72.92
14.441.54 
40CWZ-31250290044.36Y132S1-2H5.5136

50CWZ-8
10.523.5
2900
3 
Y100L-2H

3

51
21212.82.35
25.218.83.1 

50CWZ-6
10.534.8
2900
2.8 
Y112M-2H

4

51
21303.53.06
25.2274.3 

50CWZ-5
10.544.8
2900
2.3 
Y132S1-2H

5.5

52
21422.74.62
25.2403.2 

65CWZ-11
1824
2900
3.6 
Y112M-2H

4

50
36213.83.22
43.2194.2 

65CWZ-8
1834
2900
4.5 
Y132S1-2H

5.5

52
363054.82
43.228.25.4 

65CWZ-6
1846.4
2950
2.2 
Y160M1-2H

11

65
36422.87.22
43.239.13.6 

65CWZ-5
1865
2950
3.2 
Y160M2-2H

15

78
36603.411.31
43.2584.3 

80CWZ-14
3023.8
2900
4.4 
Y132S2-2H

7.5

93
60213.85.12
72194.2 

 Type
(50Hz   3 φ 380v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
 Head
m
 Speed r/min NPSHr
m
Shaft power
kW

80CWZ-11
3034
2950
4.5 
Y160M1-2H

11

95
60304.97.54
7227.55.6 

80CWZ-8
3047.4
2950
3.3 
Y160M2-2H

15

100
60424.212.48
72374.8 

80CWZ-6
3064.4
2950
3.5 
Y180M-2H

22

100
60603.218.16
72563.8 

80CWZ-5.5
3079.4
2950
2.4 
Y200L1-2H

30

120
60753.521.88
72713.9 

80CWZ-4
12.527.2
1450
2.1 
Y132S-4H

5.5

160
25252.33.4
3023.52.6 

100CWZ-18
5024.2
2950
3 
Y160M1-2H

11

112
100214.48.41
12018.65.1 

100CWZ-14
5032.2
2950
3 
Y160M2-2H

15

112
100304.512.57
120275.5 

100CWZ-11
5048
2950
3.2 
Y180M-2H

22

135
100424.819.72
12036.56 

100CWZ-8
5064.5
2950
2.4 
Y200L2-2H

37

188
100604.129.70
120584.8 

100CWZ-6
5087.8
2950
3.1 
Y250M-2H

55

188
100854.946.29
120816 

125CWZ-23.5
8023.2
2950
3 
Y160L-2H

18.5

165
160204.414.5
19217.45.1 

125CWZ-16.5
8034.2
2950
3 
Y200L1-2H

30

165
160324.422.1
192285.1 

150CWZ-15
12523.2
1480
3.5 
Y200L-4H

30

225
250204.522.7
30018.65.1 

150CWZ-9
10032.2
1480
2.1 
Y225S-4H

37

240
200302.329.7
240272.6 

150CWZ-7
10052
1480
2.1 
Y225M-4H

45

245
200452.337.7
24039.52.6 

 Type
(50Hz   3 φ 380v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
 Head
m
 Speed r/min NPSHr
m
Shaft power
kW

200CWZ-23.5
20024
1480
3.8 
Y225M-4H

45

300
400204.536.3
480175.2 

200CWZ-15
12516.2
1480
2.1 
Y180M-4H

18.5

340
250142.313.4
30011.62.6 

200CWZ-9
15049.5
1480
2.1 
Y280S-4H

75

260
300452.352.5
360432.6 
Parameters in case of power supply frequency of 60Hz
Type(60Hz   3 φ 440v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
Head
m
 Speed r/min NPSHr
m
Shaft power
kW

32CWZ1-5
4.834.1
3500
4 
Y100L-2H

3

28
9.630.23.72.08
11.5284.1 

32CWZ1-4
4.844.8
3500
6.6 
Y112M-2H

4

30
9.643.24.72.82
11.540.34.3 

32CWZ1-3
4.865.5
3500
4.3 
Y132S1-2H

5.5

30
9.660.43.74.39
11.558.14 

40CWZ1-6
7.235.2
3500
2.9 
Y100L-2H

3

48
14.430.23.52.28
17.326.54 

40CWZ1-5
7.245.5
3500
2.7 
Y112M-2H

4

50
14.443.23.73.32
17.3414.5 
40CWZ1-314.47235505.67.53Y160M1-2H11 

40CWZ1-4
7.261.5
3500
5.8 
Y132S2-2H

7.5

50
14.460.54.95.05
17.359.75.3 

50CWZ1-8
12.633.8
3500
4 
Y132S1-2H

5.5

46
25.230.23.74.06
30.2274.1 

50CWZ1-6
12.650
3500
3.7 
Y132S2-2H

7.5

60
25.243.24.65.29
30.238.85.7 

50CWZ1-5
12.664.5
3550
3 
Y160M1-2H

11

52
25.260.43.67.97
30.257.64.2 

65CWZ1-11
21.634.5
3500
4.8 
Y132S2-2H

7.5

50
43.230.255.55
51.827.35.6 

 Type
(50Hz   3 φ 380v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
 Head
m
 speed r/min NPsHr
m
shaft power
kW

65CWZ1-8
21.648.9
3550
6 
Y160M1-2H

11

52
43.243.26.68.33
51.837.27.1 

65CWZ1-6
21.666.8
3550
2.9 
Y160M2-2H

15

65
43.260.43.712.5
51.856.34.8 

65CWZ1-5
21.693.6
3550
4.2 
Y180M-2H

22

78
43.286.44.519.5
51.883.55.7 

80CWZ1-14
3634.2
3550
5.8 
Y160M1-2H

11

100
7230.25.18.84
86.427.35.6 

80CWZ1-11
3648.9
3550
6 
Y160M2-2H

15

100
7243.26.513.0
86.439.67.4 

80CWZ1-8
3668.2
3580
4.4 
Y200L1-2H

30

100
7260.45.621.53
86.453.26.3 

80CWZ1-6
3692.5
3580
3.3 
Y200L2-2H

37

100
7286.44.331.4
86.480.65 

80CWZ1-5.5
36114
3580
3.2 
Y225M-2H

45

120
721084.737.8
86.41025.2 

80CWZ1-4
1539.1
1750
2.8 
Y132M-4H

7.5

160
30363.15.88
3633.83.5 

100CWZ1-18
6034.8
3550
4 
Y160L-2H

18.5

112
12030.25.814.5
14426.56.1 

100CWZ1-14
6046
3580
4.8 
Y200L1-2H

30

112
12043.2621.7
14438.87.3 

100CWZ1-11
6069
3580
4.3 
Y200L2-2H

37

135
12060.46.434.1
14452.58 

100CWZ1-8
60.092.5
3580
3.2 
Y250M-2H

55

188
12086.45.551.3
144836.4 

100CWZ1-6
60126
3580
4.5 
Y280M-4H

90

188
1201226.579.7
1441168 

125CWZ1-23.5
9633.4
3580
4 
Y200L1-2H

30

165
19228.85.825.1
230.425.16.1 
 

 Type
(50Hz   3 φ 380v) main technical parameter
Motor type power       Kw
Weight
kg
Capacity
m3/h
Head
m
Speed r/min NPSHr
m
Shaft power
kW

125CWZ1-16.5
9649.3
3580
4 
Y225M-2H

45

165
19246.15.838.3
230.440.36.1 

150CWZ1-15
15033.4
1780
5 
Y225M-4H

45

225
30028.8639.2
36026.77 

150CWZ1-9
12046.4
1780
2.8 
Y250M-4H

55

240
24043.23.151.4
28838.93.5 

150CWZ1-7
12074.9
1780
2.8 
Y280S-4H

75

245
24064.83.165.2
28856.93.5 

200CWZ1-23.5
24034.6
1780
5 
Y280S-4H

75

300
48028.8662.7
57624.57 

200CWZ1-15
15023.3
1780
2.8 
Y200L-4H

30

340
300203.123.2
36016.73.5 

200CWZ1-9
18071.3
1780
2.8 
Y315S-4H

110

260
36064.83.190.8
43261.23.5 

Brief Introduction to Antirust Material Spray Painting Technology
 

Characteristics of the protective coating formed by this technology

 
  1. Excellent adhesion between the coating and the metal substrate.
  2. Wide applicable temperature range.
  3. Good cathodic disbondment resistance, free of the "cathode screening" effect.
  4. Stable electrical insulation to reduce cathodic protection current.
  5. Resistant to chemical media corrosion, with good resistance to Cl
  6. Similar thermal expansion coefficients of the coating and the steel structure, with good resistance to thermal changes.
  7. The coating is easy to repair.

Main performance indices of this technology

 
  1. Peak performance of the KsF series coatings: bond strength 100MPa, impact strength > 23J, anti - penetration property at 60ºC (within one year) with the coating resistance remaining constant.
  2. Long - distance pipelines can be coated both inside and outside simultaneously, with performance meeting the national anti - corrosion coating standards for fusion - bonded epoxy powder coatings or SY/T0315 - 97 Technical Standard of Fusion Bond Epoxy Coating for Steel Pipeline.
  3. Bends of long - distance pipelines can be coated both inside and outside simultaneously, with performance meeting the national anti - corrosion coating standards for fusion - bonded epoxy powder coatings or Q/Fs.J02.15 - 1996 enterprise standard.
  4. The drag - reduction coating performance for long - distance pipelines meets the US standard APIRP5L2.
  5. The field joint coating performance for long - distance pipelines meets the national anti - corrosion coating standards for fusion - bonded epoxy powder coatings.

Application fields of this technology

 
  1. Products for severe corrosion protection, such as high - efficiency corrosion - resistant pumps, wear - resistant pumps, high - efficiency corrosion - resistant fans, corrosion - resistant valves, corrosion - resistant bellows compensators, and seawater filters.
  2. Severe corrosion protection for long - distance pipelines of oil, gas, and water.
  3. Severe corrosion protection for metal process pipelines of acids, alkalis, and salts.
  4. Severe corrosion protection for equipment and structural parts in the chemical engineering and energy industries.
  5. Severe corrosion protection for materials in ocean engineering.

Application examples of this technology

 
  1. Qinshan Nuclear Power Station
    • Primary loop seawater pump: 20SHF - 19 seawater pump, flow rate 1400m³/h, head 23m, speed 978r/min, 4 sets.
    • Seawater booster pump: 14SH - 90 - 19 seawater pump, speed 1450r/min, 3 sets.
    • Underground seawater pipeline: 4 φ1400 pipelines, about 30m.
    • Bellows expansion joint: 8 units, φ1400×1.2m.
    • Seawater cooling pipe in the steam turbine building: seawater booster pump outlet pipe φ600×12m and tees, tee joints of φ325 - φ525mm, totally 260m.
  2. Shenyang Automation Research Institute, Chinese Academy of Sciences
    Key parts of the underwater robot developed by the institute, such as underwater motors, underwater manipulator oil cylinders, and underwater tools, adopted the special KsF coating technology and were successfully used on Nanhai drilling platform Exploration 3 of China West Petroleum Company.

Effect of KsF spray - painting anticorrosion technology on marine pumps


Factory seawater simulation test:
Two 50cL - 30 marine vertical centrifugal pumps were used for the contrast test. The base material of their main parts was the same (cast silicon brass, ZCuZn16Si4). One pump's body, cover, impeller, and gland were treated with KsF severe - corrosion - protection spraying (average coating thickness 0.45mm), and the other was not. The test medium was simulated seawater (11.62kg sea salt added to 0.33m³ fresh water, weight ratio 3.52%). The unpainted pump started the test on September 14, 2004, and the painted one on October 14, 2004, with continuous 24 - hour operation required.
The two pumps were disassembled for the first check on December 2, 2004, reassembled, and continued the test. On March 7, 2005, By then, the unpainted pump had run for 4000h and the painted one for 3380h. The inspection results were as follows:

 
  1. No mechanical seal leakage, abnormal vibration, or noise occurred during the operation of the two pumps.
  2. The impeller rings and seal rings of the two pumps had slight normal wear.
  3. The rubbing surfaces of the mechanical seals of the two pumps had normal wear.
  4. The coating surface of the painted pump's body, cover, impeller, and gland was smooth and intact, with no seawater corrosion, coating wear, or peeling. In contrast, the surface of the unpainted pump's body, cover, and impeller had corrosion, which was significantly aggravated compared to the first check.

picture of body, cover and impeller of the painted pump after test






picture of body, cover and impeller of the unpainted pump after test


 

Centrifugal Pump Operation Manual: 

 

1. Fundamental Operating Principle

Centrifugal pumps convert rotational energy from an impeller into kinetic energy, generating centrifugal force to move fluids. Proper selection and operation depend on understanding this hydrodynamic principle and its relationship to pump performance curves.

2. Pump Selection Criteria

Key parameters for centrifugal pump specification include:

  • Flow Rate (Q) - Required volumetric capacity (m³/h or GPM)

  • Total Dynamic Head (TDH) - Net pressure differential accounting for static lift, friction losses, and system resistance

  • Fluid Properties - Viscosity, specific gravity, temperature, and chemical compatibility with wetted materials

  • Net Positive Suction Head (NPSH) - Critical to prevent cavitation (NPSH> NPSH+ safety margin)

3. Pre-Installation Requirements

  • Foundation - Rigid mounting base with vibration-damping provisions (grouted sole plates or isolation pads)

  • Alignment - Laser-aligned shaft coupling within 0.05mm tolerance (per ANSI/HI standards)

  • Piping -

    • Suction line: Short, straight runs with eccentric reducers (flat-top orientation)

    • Discharge: Install check valve and isolation gate valve

    • Support independent piping loads to prevent nozzle strain

4. Operational Monitoring Protocols

ParameterNormal RangeCorrective Action if Deviated
Discharge Pressure±10% of BEPCheck for clogging/valve position
Bearing Temp<70°C (158°F)Relubricate or replace bearings
Vibration Velocity<4.5 mm/s RMS (ISO 10816)Verify alignment/impeller balance
Current DrawWithin motor nameplateAssess fluid density/motor condition

5. Preventive Maintenance Program

  • Daily:

    • Inspect mechanical seal/gland packing for leaks

    • Monitor lube oil levels (oil-lubricated bearings)

    • Log pump performance metrics

  • Monthly:

    • Grease bearings (quantity per OEM specs)

    • Flush seal chambers on abrasive services

    • Conduct motor megohm testing

  • Annual:

    • Replace wear rings if clearance exceeds 0.5mm

    • Perform dynamic balancing (ISO 1940 G6.3 standard)

    • Hydrotest casing at 1.5x design pressure

6. Advanced Troubleshooting Guide

SymptomRoot CauseResolution
No liquid deliveryPriming failure/NPSH deficiencyVent air, elevate suction source
Excessive noiseCavitation or bearing failureIncrease NPSH, replace bearings
Seal leakage >5 drops/minSeal face wear or misalignmentReface/seal replacement, realign
Power surgeImpeller blockageDisassemble and clean flow passages
                               

Our History

Hangzhou Cagon Transmission Technology Co., Ltd. is well-known in the shipbuilding
field. It is a highly recognized ship power system integrator, top manufacturer and
professional service provider in the industry. In the marine sector, it is a well-deserved
leader in external fire protection and anti-corrosion engineering. Since its inception, the
company has been committed to the passion and determination to deepen its presence
in the shipbuilding industry, anchored on the goal of "one-stop service", and made every
effort to create a power system overall solution that meets the diverse needs of users. At
the same time, it focuses on the cutting-edge needs of marine equipment, ingeniously
develops new anti-corrosion coatings, and uses superb engineering construction skills to
protect the quality of marine equipment in all aspects

 
HomeProductsAbout usContact us
Marine GearboxMarine PumpsMarine PropellersHollow Rotating platform
Marine Fire MonitorsMarine Diesel Generator SetMarine Air ConditionersEngineering Hydraulic Transmission
Marine CouplingsMarine ThrustersHarmonic Reducer 
 

OurProduct
OurProductsincludesthefollowing:
MarineTransmission
MarineDieselEngine
Marine/ShipPropellers
Marine/ShipGearBox
MarineFire-FightingPumps
HighPrecisionReducer
BoatEngine&TransmissionRepairs
ShipPowerSystemModifications
SolutionsforMarinePropulsionSystems
TransmissionDeviceforAgriculturalMachinery
TransferCase(ForAutomobiles)
TransferCaseforIndustrialTransmission

 
ProductApplication
Productuse:
CargoShip,Containerships,BulkCarriers,TankerVessels,ReeferVessels,Offshore
Vessels,PassengerVessels,NavalShips,,FishingVessels,ResearchVessels
Grain-harvestingmachinery,corn-harvestingmachinery,balers,knotters,film-
wrappingmachines,paddy-fieldsprayers,orchardsprayers,etc.Trucks,off-road
vehicles,lorries,constructionvehicles.Engineeringandindustrialfields.

Relevantqualifications

 
ProductionEquipment
Boxprocessing:
Patentedappearance,beautifulandcompact;
Precisioncastingofresinsandmetalmoldtoensurestrengthandnoleakage;
One-timeclampingandprocessinginthemachiningcenter,usingimportedCNC
machiningcentertoensuremachiningaccuracy;
Double-processprofessionalcleaningandphosphatingequipment,cleaning(removing
ironchips),andrust(corrosion)prevention.





Gearproductionline:

Gears(axles)usepreheatingtreatmentprocess
Usehigh-qualitylow-carbonalloysteelforcarburizingandquenchingtoensure
strength
Useturningcenter,CNChigh-speedgearhobbingmachine,CNCforminggeargrinding
machineforprocessingtoensureaccuracy
Gearsuseproprietaryshapingandnoisereductiontechnology
Usecleaningandphosphatinglineforcleaningandcorrosionprotection

Heattreatmentprocessing:

Pre-heattreatmentprocessisusedtoensurethestabilityofmaterialstructure;
Fullyenclosedheattreatmentmulti-purposefurnaceisusedtoensurehardnessand
strengthandeffectivelycontroldeformation;
Strongshotpeeningtechnologyisusedtoincreasestressandeffectivelyimprovethe
bendingstrengthoftoothrootbymorethan20%
Assemblyline:
Station-typeflexibleassemblyline;
Circularchainspraydryingline;
CNCdoublemeshinginstrumentassemblyfullinspection;
100%onlineproductoperationinspection

Test machine ensure high quality goods



OverallSolutionforShipPropulsionSystem

Shiptype:scientificresearchship
Shiplength:37meters
Shipwidth:7.8meters
Designeddraft:2.0meters
Designedspeed:12knots
Lubricationmethod:Oillubrication
Propulsionmethod:Singleenginesinglepropelleradjustablepropeller
Shipowner:ZhejiangOceanUniversity
Shipyard:QingdaoGeshidaShipbuildingCo.,Ltd.
Shiptypefeatures:Thisshipisascientificresearchship.Thepropellerbladesarespecially
designedaccordingtothedifferentspeedsrequiredbydifferentscientificresearchmodes,
andadvancedHFseriespropellerhubsareused.Forthisproject,weprovideacomplete
setofshippropulsionsystemsincludingmainengine,gearbox,shaftgenerator,high
elasticcoupling,shaftsystemandanalysis,sterntube,adjustablepropeller,remote
controlsystem,hydraulicsystem,etc.


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