IFMZ IFMZ-J55 (300 mm × 300 mm) Process Pumps
EBARA IFMZ-J55 Horizontal Screw Pump Transfer of dirt and sludge in sewage treatment sites, road miscellaneous drainage, sewer sewage transfer, long fiber pulp transportation, various factory miscellaneous drainage. 300 × 300 Horizontal Screw Pump, IFMZ-J55 impeller has good balance and smooth operation.
In the detailed model name, IFMZ indicates the model, J indicates the head code, M indicates the drive mode: M-motor direct connection type R-belt drive type, 55 indicates the motor power is 55 kW, 300 × 300 indicates the caliber.
As part of EMAC, PumpMac offers a wide range of high-quality pump drive power group options, WPT PTO, Advance gearbox and pump head, as well as customized water pump groups. We also have a set of NFPA20 standard engine power group accessories, including intake stop valves, DC contactors, engine control panels, jacket water heaters, etc.
We provide full life cycle services for all customers, from design to power system supply, from installation to commissioning, from after-sales service training to spare parts supply, from troubleshooting to overhaul technical support.
Advantages of IFMZ IFMZ-J55 (300 mm × 300 mm) Process Pumps
No blockage, high efficiency.
Compact structure design, small footprint.
Small flow change, easy control.
Compact structure design, small footprint.
When used for high-concentration liquids, the head reduction is small.
Technical Specifications
Handlingliquids/Liquid/temperature/Foreign body size: | Sewage, dirt, sludge, pulp/0~80℃/Maximum particle size: 33~200mm |
Allowable suction pressure: | 0.088-0.196Mpa(0.9~2kgf/cm2)*2 |
Maximum operating pressure | 0.52~1.37Mpa(5.5*14kgf/cm2)*2 |
Installation location: | Indoor.Outdoor |
Structure/Impeller: | Spiral centrifugal |
Structure/Shaft seal: | Gland packing |
Structure/Water injection method: | External water injection |
Structure/(Radial): | Deep groove ball bearings or cylindrical roller bearings |
Structure/(Axial): | Thrust ball bearings |
Material/Pump casing: | FC250 |
Material/Impeller: | FC250, high chrome cast iron or 5CS13 |
Material/Spindle: | 535C/SU5304 |
Water Pump Model | Water Pump Diameter | Motor Poles | Synchronous Speed | Motor Power | Frequency |
IFMZ-H2.2 | 80mm × 80mm | 4 | 1500min-1 | 2.2 kW | 50 hz |
IFMZ-H3.7 | 80mm × 80mm | 4 | 1500min-1 | 4.0 kW | 50 hz |
IFMZ-J3.7 | 80mm × 80mm | 2 | 3000min-1 | 4.0 kW | 50 hz |
IFMZ-J5.5 | 80mm × 80mm | 2 | 3000min-1 | 5.5 kW | 50 hz |
IFMZ-J7.5 | 80mm × 80mm | 2 | 3000min-1 | 7.5 kW | 50 hz |
IFMZ-K7.5 | 80mm × 80mm | 2 | 3000min-1 | 7.5 kW | 50 hz |
IFMZ-K11 | 80mm × 80mm | 2 | 3000min-1 | 11 kW | 50 hz |
IFMZ-L15 | 80mm × 80mm | 2 | 3000min-1 | 15 kW | 50 hz |
IFMZ-L18.5 | 80mm × 80mm | 2 | 3000min-1 | 18.5 kW | 50 hz |
IFMZ-L22 | 80mm × 80mm | 2 | 3000min-1 | 22 kW | 50 hz |
IFMZ-L30 | 80mm × 80mm | 2 | 3000min-1 | 30 kW | 50 hz |
IFMZ-H3.7 | 100mm × 80mm | 4 | 1500min-1 | 4.0 kW | 50 hz |
IFMZ-H5.5 | 100mm × 80mm | 4 | 1500min-1 | 5.5 kW | 50 hz |
IFMZ-J5.5 | 100mm × 80mm | 4 | 1500min-1 | 5.5 kW | 50 hz |
IFMZ-J7.5 | 100mm × 80mm | 4 | 1500min-1 | 7.5 kW | 50 hz |
IFMZ-J11 | 100mm × 80mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-G2.2 | 100mm × 100mm | 4 | 1500min-1 | 2.2 kW | 50 hz |
IFMZ-G3.7 | 100mm × 100mm | 4 | 1500min-1 | 4.0 kW | 50 hz |
IFMZ-J11 | 150mm × 100mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-J15 | 150mm × 100mm | 4 | 1500min-1 | 15 kW | 50 hz |
IFMZ-K15 | 150mm × 100mm | 4 | 1500min-1 | 15 kW | 50 hz |
IFMZ-K18.5 | 150mm × 100mm | 4 | 1500min-1 | 18.5 kW | 50 hz |
IFMZ-K22 | 150mm × 100mm | 4 | 1500min-1 | 22 kW | 50 hz |
IFMZ-K30 | 150mm × 100mm | 4 | 1500min-1 | 30 kW | 50 hz |
IFMZ-G3.7 | 150mm × 150mm | 4 | 1500min-1 | 4.0 kW | 50 hz |
IFMZ-G5.5 | 150mm × 150mm | 4 | 1500min-1 | 5.5 kW | 50 hz |
IFMZ-H7.5 | 150mm × 150mm | 4 | 1500min-1 | 7.5 kW | 50 hz |
IFMZ-H11 | 150mm × 150mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-J8.5 | 200mm × 150mm | 4 | 1500min-1 | 8.5 kW | 50 hz |
IFMZ-J22 | 200mm × 150mm | 4 | 1500min-1 | 22 kW | 50 hz |
IFMZ-J30 | 200mm × 150mm | 4 | 1500min-1 | 30 kW | 50 hz |
IFMZ-K30 | 200mm × 150mm | 4 | 1500min-1 | 30 kW | 50 hz |
IFMZ-K37 | 200mm × 150mm | 4 | 1500min-1 | 37 kW | 50 hz |
IFMZ-K45 | 200mm × 150mm | 4 | 1500min-1 | 45 kW | 50 hz |
IFMZ-G7.5 | 200mm × 200mm | 4 | 1500min-1 | 7.5 kW | 50 hz |
IFMZ-G11 | 200mm × 200mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-H11 | 200mm × 200mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-H15 | 200mm × 200mm | 4 | 1500min-1 | 15 kW | 50 hz |
IFMZ-L45 | 250mm × 150mm | 4 | 1500min-1 | 45 kW | 50 hz |
IFMZ-L65 | 250mm × 150mm | 4 | 1500min-1 | 65 kW | 50 hz |
IFMZ-L75 | 250mm × 150mm | 4 | 1500min-1 | 75 kW | 50 hz |
IFMZ-L90 | 250mm × 150mm | 4 | 1500min-1 | 90 kW | 50 hz |
IFMZ-L110 | 250mm × 150mm | 4 | 1500min-1 | 110 kW | 50 hz |
IFMZ-L132 | 250mm × 150mm | 4 | 1500min-1 | 132 kW | 50 hz |
IFMZ-L30 | 250mm × 200mm | 4 | 1500min-1 | 30 kW | 50 hz |
IFMZ-L37 | 250mm × 200mm | 4 | 1500min-1 | 37 kW | 50 hz |
IFMZ-L45 | 250mm × 200mm | 4 | 1500min-1 | 45 kW | 50 hz |
IFMZ-K55 | 250mm × 200mm | 4 | 1500min-1 | 55 kW | 50 hz |
IFMZ-K75 | 250mm × 200mm | 4 | 1500min-1 | 75 kW | 50 hz |
IFMZ-K90 | 250mm × 200mm | 4 | 1500min-1 | 90 kW | 50 hz |
IFMZ-G11 | 250mm × 250mm | 4 | 1500min-1 | 11 kW | 50 hz |
IFMZ-G15 | 250mm × 250mm | 4 | 1500min-1 | 15 kW | 50 hz |
IFMZ-H22 | 250mm × 250mm | 4 | 1500min-1 | 22 kW | 50 hz |
IFMZ-H30 | 250mm × 250mm | 4 | 1500min-1 | 30 kW | 50 hz |
IFMZ-H37 | 250mm × 250mm | 4 | 1500min-1 | 37 kW | 50 hz |
IFMZ-K90 | 300mm × 250mm | 4 | 1500min-1 | 90 kW | 50 hz |
IFMZ-K110 | 300mm × 250mm | 4 | 1500min-1 | 110 kW | 50 hz |
IFMZ-K132 | 300mm × 250mm | 4 | 1500min-1 | 132 kW | 50 hz |
IFMZ-L100 | 300mm × 250mm | 4 | 1500min-1 | 110 kW | 50 hz |
IFMZ-L200 | 300mm × 250mm | 4 | 1500min-1 | 200 kW | 50 hz |
IFMZ-H37 | 300mm × 300mm | 4 | 1500min-1 | 37 kW | 50 hz |
IFMZ-H45 | 300mm × 300mm | 4 | 1500min-1 | 45 kW | 50 hz |
IFMZ-J55 | 300mm × 300mm | 4 | 1500min-1 | 55 kW | 50 hz |
IFMZ-J75 | 300mm × 300mm | 4 | 1500min-1 | 75 kW | 50 hz |
IFMZ-J90 | 300mm × 300mm | 4 | 1500min-1 | 90 kW | 50 hz |
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Safety Instructions and Preventive Maintenance Guide
Requirements for use
Pumps play a significant role in a variety of industries and applications, ensuring the smooth movement of liquids and gases. However, in order to maintain top performance and safety, it is essential to adhere to routine maintenance procedures and safety recommendations. This guide aims at providing the detailed information about pump safety and preventive maintenance.
Safety Instructions
1. Read the Manual
Before using EBara pumps, read and understand the handbook thoroughly. Make sure you understand the pump’s specifications, capabilities, and safety precautions.
2. Proper Installation
Ensure the pump is put appropriately according to the guidelines. Improper installation can cause operating inefficiencies and safety issues.
3. Ventilation
Operate pumps in well-ventilated areas to prevent the buildup of potentially harmful gases or vapors. If working in confined spaces, use proper ventilation equipment.
4. Emergency Shutdown Procedures
Familiarize yourself with emergency shutdown procedures in case of malfunction, leakage, or any other hazardous situation. Ensure all personnel know how to operate emergency shutdown mechanisms.
5. Regular Inspections
Conduct routine inspections of the pump and its components for signs of wear, damage, or leaks. Address any issues promptly to prevent accidents or system failures.
6. Chemical Compatibility
If handling hazardous chemicals, ensure the pump materials are compatible with the fluid being pumped or refer our chemical compatibility chart for more information. Incompatible materials can lead to corrosion, leaks, or chemical reactions.
Preventive Maintenance
1. Regular Lubrication
Keep bearings, seals, and other moving parts properly lubricated. Insufficient lubrication can lead to premature wear and breakdowns.
2. Inspect Seals and Gaskets
Check seals and gaskets for wear, damage, or leaks regularly. Replace any worn or damaged seals to prevent fluid leakage and maintain pump efficiency.
3. Check Motor Alignment
Ensure the pump motor is properly aligned with the pump shaft to prevent excessive wear on bearings and seals. Misalignment can lead to premature failure and costly repairs.
4. Replace Worn Parts
Keep an inventory of spare parts and replace worn or damaged components as needed. Regularly check wear parts such as impellers, seals, and bearings for signs of deterioration.
5. Schedule Maintenance
Develop a preventive maintenance schedule based on manufacturer recommendations and operating conditions. Regular maintenance helps prevent unexpected breakdowns and extends the life of the pump.
6. Document Maintenance Records
Keep detailed records of all maintenance activities, including inspections, repairs, and replacements. This information helps track the pump’s performance over time and identify any recurring issues.
By following these safety instructions and preventive maintenance practices, you can ensure the safe operation and longevity of your pumps while minimizing the risk of accidents or downtime. Remember, prioritizing safety and proactive maintenance is key to maximizing pump efficiency and reliability.
Note: All Above Data are Just for Reference, All Data Might Change Without Notices or Updates, Please Contact Our Sales Team to Confirm All Details Via WhatsApp or Email.

Engine Sale Manual

Installation Drawing

Installation Manual

Operation Manual

Parts Catalogue
