3 Hp Horizontal Centrifugal Pump
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- Stock: In Stock
- Model: HZTOHZ-HCP-2200W
- Weight: 1.00
- SKU: HZTOHZ-HCP-2200W
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3 hp horizontal centrifugal pump with 15.2m3/h maximum flow, 29m maximum head, and 50mm diameter of inlet and outlet.
Features:
- The centrifugal pump has a horizontal structure. The diameter of the inlet and outlet are the same. If a protective cover is added, it can be used in the open air.
- It is easy to install and maintain. There is no need to dismantle the pipeline system, just lift off the conjunction flat nut of the vertical pump. Then, all the rotor parts can be taken out.
- A horizontal centrifugal pump can operate in series and parallel connection according to the requirements of flow and head.
- The installation angle of the pump outlet can be 0°, 90°, or 180° to meet different connection occasions.
Specifications:
| Model | HZTOHZ-HCP-50-160A | ||
| Weight | 75kg | ||
| Size | 370*525*250mm | ||
| Power | 3 hp (2.2kW) | ||
| Phase | 3 phase | ||
| Input voltage * | AC 220V, 230V, 240V, 380V, 400V, 415V, 440V, 460V, 480V | ||
| Input frequency * | 50Hz, 60Hz | ||
| Flow (min. flow to max. flow) | 8.2m3/h (36 gpm, American system) | 11.7m3/h (51.5 gpm, American system) | 15.2m3/h (66.9 gpm, American system) |
| Head (max. head to min. head) | 29m (95ft) | 28m (92ft) | 26m (85ft) |
| Efficiency | 44% | 51% | 50% |
| Inlet diameter | 50mm (2 inch) | ||
| Outlet diameter | 50mm (2 inch) | ||
| Installation angle of outlet | 0°, 90° and 180° | ||
| Nominal diameter of impeller | 160mm | ||
| Pump type | Booster pump | ||
| Number of stages | Single stage | ||
| Motor type | Y/Y2 series motor | ||
| Motor speed | 2900rpm | ||
| Impeller material | 304/316 stainless steel | ||
| Seal material | 304 stainless steel, tungsten carbide, fluorine rubber | ||
| Inlet max. pressure | 1MPa (145 psi) | ||
| (NPSH)r | 2.3m | ||
| Usage | Water or liquids compatible with pump component materials. 1. The volume of solid particles should be less than 0.1% in unit volume, and the granularity should be less than 0.2mm. 2. The temperature should be lower than 60℃. | ||
| Environment | Temperature: <40℃, humidity: <95%, altitude<1000m | ||
| Warranty | 12 months | ||
Horizontal centrifugal pump dimension (unit: mm):
| Boundary dimension | Base dimension | Flange dimension | |||||||||||
| h | H | L | a | A | L1 | B | l | b | h1 | 4-Φd1 | D | D1 | n-Φd |
| 210 | 370 | 525 | 80 | 55 | 380 | 250 | 330 | 150 | 80 | 4-Φ14 | Φ165 | Φ125 | 4-Φ18 |

Tips: How to confirm the flow of the centrifugal pump?
The flow is the amount of liquid delivered per unit of time. Its most universal unit is m3/h or gpm. After calculation, 1m3/h=4.4gpm. It shows that the centrifugal pump can deliver liquid 1m3 per hour or 4.4 gallons per minute.
If the design institute provides the normal flow, minimum flow, and maximum flows together. The maximum flow shall be regarded as the basis in model selection, with the normal flow being taken into account. When there is no maximum flow, 1.1 times the normal flow can be taken as the maximum flow.
If there is no calculation of the design institute, it can be calculated by the daily infusion volume divided by the pump working time. For example, if you need to transport 80-100 m3 per day and the working time is 10 hours, then the pump flow is 8-10m3/h.
If the flow indicated on the nameplate is the rated flow of the centrifugal pump, that is, the intermediate value of the flow. The working efficiency of the water pump under this flow data is the highest. If it deviates from this flow during use, the efficiency of the water pump will be greatly reduced. If the deviation is rather serious, the motor will be burned out. For example, the rated flow of a pipeline centrifugal pump is 100m3/h (440 gpm). In actual use, the flow of the pump is preferably set as this data. If the flow exceeds 120m3/h (528 gpm), special attention should be paid to whether the motor current has exceeded the current data indicated on the pump nameplate. If the current goes beyond the rated value, the opening of the pump outlet valve should be used to control the flow of the pump in the rated flow range. To save energy and reduce the operation cost, the flow of the centrifugal pump should be run under the designed flow position as much as possible.
Horizontal Centrifugal Pump User Manual