Application Fields
Biological medicine, petrochemical, mining, metallurgy, textile printing and dyeing, electricity, food, papermaking, electroplating, sewage treatment, flue gas
treatment, new energy, new materials, and other industries.
Pump Usage
Applicable to transport inflammable and explosive volatile, poisonous and harmful, valuable and highly corrosive cleaning medium; Such as any concentration of acid and alkali, salt, solvent, strong oxidizer, etc.
Designed Instruction
The fourth generation of the fluorine-lined magnetic pump is based on the company's long-term technical accumulation and foreign advanced technology for reference to the design and development of a high-efficiency energy-saving magnetic pump. In cooperation with Hefei The University of Technology, through ANSYS and CFD, aided design and repeatedly optimized the hydraulic size to increase the efficiency by 5-8 percentage points compared with the national standard. The reinforced sleeve is made of carbon fiber, which eliminates the influence of magnetic eddy current and provides better pressure and temperature resistance. All specifications have two structures motor direct connection type and split type. The excellent performance and high-cost performance of this series of magnetic pumps have become the first choice to replace imported magnetic pumps
With secondary motor n=2900r/min Design pressure: 1.6Mpa
| Model No | Flow Capacity (m³/h) | Pump Head (m) | Efficiency (%) | Motor power (kW) | NPSHr (m) | Diameter (mm) | Rotating speed | |
| Inlet | outlet | |||||||
| IME50-32-125 | 12.5 | 20 | 51 | 2.2 | 3 | 50 | 32 | |
| IME50-32-160 | 12.5 | 32 | 56 | 3 | 3 | 50 | 32 | |
| IME50-32-200 | 12.5 | 50 | 45 | 5.5 | 3 | 50 | 32 | |
| IME50-32-250 | 12.5 | 80 | 35 | 11 | 3 | 50 | 32 | |
| IME65-50-125 | 25 | 20 | 62 | 3 | 3.5 | 65 | 50 | |
| IME65-50-160 | 25 | 32 | 60 | 5.5 | 3.5 | 65 | 50 | |
| IME65-40-200 | 25 | 50 | 55 | 11 | 3.5 | 65 | 40 | |
| IME65-40-250 | 25 | 80 | 40 | 22 | 3.8 | 65 | 40 | |
| IME80-65-125 | 50 | 20 | 70 | 5.5 | 4 | 80 | 65 | |
| IME80-65-160 | 50 | 32 | 69 | 11 | 4 | 80 | 65 | 2900 |
| IME80-50-200 | 50 | 50 | 62 | 15 | 4 | 80 | 50 | |
| IME80-50-250 | 50 | 80 | 60 | 30 | 4.5 | 80 | 50 | |
| IME100-80-125 | 100 | 20 | 71 | 11 | 4.5 | 100 | 80 | |
| IME100-80-160 | 100 | 32 | 65 | 18.5 | 4.5 | 100 | 80 | |
| IME100-65-200 | 100 | 50 | 65 | 30 | 4.5 | 100 | 65 | |
| IME100-65-250 | 100 | 80 | 65 | 45 | 4.5 | 100 | 65 | |
| IME100-80-315 | 100 | 125 | 55 | 90 | 5 | 100 | 80 | |
| IME125-100-160 | 160 | 32 | 65 | 30 | 5 | 125 | 100 | |
| IME125-100-200 | 160 | 50 | 70 | 37 | 5.5 | 125 | 100 | |
With four-stage motor n=1450r/min Design pressure: 1.6Mpa
| Model No | Flow Capacity (m³/h) | Pump Head (m) | Efficiency (%) | Motor power (kW) | NPSHr (m) | Diameter (mm) | Rotating speed | |
| Inlet | outlet | |||||||
| IME50-32-125 | 6.3 | 5 | 44 | 0.55 | 2 | 50 | 32 | |
| IME50-32-160 | 6.3 | 8 | 49 | 0.55 | 2 | 50 | 32 | |
| IME50-32-200 | 6.3 | 12.5 | 38 | 1.1 | 2 | 50 | 32 | |
| IME50-32-250 | 6.3 | 20 | 28 | 1.5 | 2 | 50 | 32 | |
| IME65-50-125 | 12.5 | 5 | 56 | 0.55 | 2 | 65 | 50 | |
| IME65-50-160 | 12.5 | 8 | 55 | 1.1 | 2 | 65 | 50 | |
| IME65-40-200 | 12.5 | 12.5 | 50 | 1.5 | 2 | 65 | 40 | |
| IME65-40-250 | 12.5 | 20 | 35 | 3 | 2 | 65 | 40 | |
| IME80-65-125 | 25 | 5 | 68 | 1.1 | 2.5 | 80 | 65 | |
| IME80-65-160 | 25 | 8 | 67 | 1.5 | 2.5 | 80 | 65 | 1450 |
| IME80-50-200 | 25 | 12.5 | 60 | 2.2 | 2.5 | 80 | 50 | |
| IME80-50-250 | 25 | 20 | 58 | 5.5 | 2.5 | 80 | 50 | |
| IME100-80-125 | 50 | 5 | 70 | 1.5 | 2.5 | 100 | 80 | |
| IME100-80-160 | 50 | 8 | 64 | 2.2 | 2.5 | 100 | 80 | |
| IME100-65-200 | 50 | 12.5 | 64 | 5.5 | 2.5 | 100 | 65 | |
| IME100-65-250 | 50 | 20 | 64 | 7.5 | 2.5 | 100 | 65 | |
| IME100-80-315 | 50 | 32 | 50 | 11 | 2.5 | 100 | 80 | |
| IME125-100-160 | 100 | 8 | 63 | 5.5 | 2.8 | 125 | 100 | |
| IME125-100-200 | 100 | 12.5 | 68 | 11 | 2.8 | 125 | 100 | |
| IME125-100-250 | 100 | 20 | 72 | 15 | 3 | 125 | 100 | |
| IME125-100-315 | 100 | 32 | 65 | 18.5 | 3 | 125 | 100 | |
| IME125-100-400 | 100 | 50 | 62 | 30 | 3.4 | 125 | 100 | |
| IME150-125-250 | 200 | 20 | 48 | 30 | 3.6 | 150 | 125 | |
| IME150-125-315 | 200 | 32 | 70 | 30 | 4.1 | 150 | 125 | |
| IME150-125-400 | 200 | 50 | 65 | 55 | 4.1 | 150 | 125 | |
| IME200-150-250 | 400 | 20 | 65 | 45 | 4.5 | 200 | 150 | |
| IME200-150-315 | 400 | 32 | 70 | 75 | 4.5 | 200 | 150 | |
| IME200-150-400 | 400 | 50 | 66 | 110 | 5 | 200 | 150 | |
| IME250-200-315 | 650 | 32 | 53 | 132 | 6.5 | 250 | 200 | |
| IME300-250-315 | 1000 | 32 | 70 | 185 | 6.5 | 300 | 250 | |
Working Conditions
| Pump Diameter | 32 - 300mm |
| Working Temperature | - 20℃ - 180℃ |
| Flow Capacity Range | 3m³/h - 800m³/h |
| Pump Head Range | 15m - 125m |
| Materials Range | Lined-in FEP(F46), PFA. |
| Designed Standard | HG/T2730、SH/T3148、API685 |

How Each Pump Type Works Centrifugal pumps and positive displacement pumps move fluid by entirely different mechanisms — and that single distinction drives nearly every performanc...
READ MORECore Components in a Diaphragm Pump Diagram A diaphragm pump diagram typically shows six labeled components, and understanding what each one does explains both why the pump works ...
READ MOREHow Each Pump Type Moves Fluid The most fundamental difference between a positive displacement (PD) pump and a centrifugal pump lies in the mechanism used to move fluid — and that...
READ MOREWhy Pump Selection Is a Bigger Decision in 2026 Energy costs across global manufacturing have risen sharply over the past two years, and industrial operators are under growing pre...
READ MORE