Products Description
The HW mixed-flow centrifugal pump is a horizontal, single-stage, single-suction pump that combines characteristics of both centrifugal and axial-flow designs. It is suitable for evaporators with high circulation resistance, concentration of high-viscosity materials, and the transfer of corrosive media containing small particles. It is widely used for forced-circulation applications in chemical, fertilizer, salt, alkali, papermaking, non-ferrous metallurgy, and light-industry processes.


Model Description

Product Details
| Model | HW Series |
| Structure | Single-stage cantilever structure mixed flow pump |
| Flow Rate | 250-5500m3/h |
| Head | ≤ 5--15 m |
| Working Pressure | 16 MPa |
| Working Temperature | -20--+120°C |
| Motor Power | 5.5-315 kW |
| Speed | 1450 rpm; 960rpm; 730rpm; 500rpm; 320rpm |
| Heating Jacket | Optional |
| Material | ZG20#, 1Cr18Ni9Ti, 316L, CD4MCu, TA, 2205, 2507, 904L, etc. |
| Application | Chemical industry, fertilizer, salt, alkali, papermaking, non-ferrous metallurgy, light industry, etc. |
Performance characteristics
Balanced Flow and Head
The mixed-flow centrifugal pump combines the characteristics of both centrifugal and axial-flow pumps, offering a flow and head range between the two. It delivers higher head than axial-flow pumps and greater flow than centrifugal pumps, making it suitable for applications requiring both moderate flow and lifting height, such as medium-scale irrigation and drainage.
Wide High-Efficiency Operating Range
Mixed-flow pumps maintain high efficiency across a broad range of flow and head conditions. Even when system demand fluctuates, the pump operates efficiently, reducing energy loss and lowering operating costs-ideal for industrial circulating water systems with variable conditions.
Strong Anti-Cavitation Performance
Optimized impeller design ensures smooth liquid flow, reducing bubble formation and cavitation. This minimizes wear, extends pump life, and enhances reliability, especially when handling high-temperature liquids or media containing gas.
Structural features
Compact Structure: The mixed flow centrifugal pump has a compact design with few components, small size, and light weight. It occupies less space than large centrifugal or axial flow pumps, making it ideal for urban drainage stations, industrial liquid delivery systems, and other space-limited applications.
Easy Maintenance: Its simple structure allows easy disassembly and installation of key components such as impellers, pump shafts, and seals. This reduces downtime, lowers maintenance costs, and improves operational efficiency.
Flexible Installation: The pump can be installed vertically, horizontally, or at an incline, depending on site conditions and engineering requirements. Vertical installation saves space, horizontal installation simplifies maintenance, and inclined installation suits special terrain, enhancing adaptability.
Application fields
Agricultural Irrigation and Drainage: Mixed flow centrifugal pumps are widely used in farmland irrigation and drainage. They provide high flow rates for large-scale irrigation and lift water to meet the needs of different terrains and crops. During the rainy season, they efficiently remove excess water, protecting crop growth and ensuring reliable agricultural production.
Urban Water Supply and Drainage: In urban systems, mixed flow pumps transport water from sources to treatment plants and then to end users. They also handle rainwater and sewage, delivering it to treatment facilities. With moderate flow and head and strong anti-cavitation performance, these pumps adapt well to complex urban water supply and drainage conditions.
Industrial Applications: Mixed flow pumps are used in various industrial processes, including transporting liquid raw materials, products, and circulating water. In the petrochemical industry, they move liquids with different properties across process flows to ensure smooth production. In power plants, they circulate cooling water between cooling towers and condensers, enabling efficient water recycling.

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