Structural Design
Horizontal In-line Configuration: The suction and discharge ports are located on the same horizontal plane. This design simplifies installation and piping layouts, adapts well to various installation spaces and site conditions, and reduces installation complexity and additional piping costs associated with port misalignment.
Optimized Material Selection: The pump head and base are constructed from cast iron, offering excellent strength and cost-effectiveness while providing stable support and structural integrity. All wetted parts are made of stainless steel (EN 1.4301/AISI 304); this material provides superior corrosion resistance, ensuring that wetted components remain unaffected when handling various liquids, thereby maintaining fluid purity and extending the pump's service life.
Performance Parameters
High Flow and High Pressure: Capable of delivering flow rates up to 320 m³/h and operating pressures up to 40 bar, the pump meets large-scale fluid transfer requirements. It is ideal for applications demanding rapid transport of large volumes of liquid, such as large-scale hot and cold water supply systems and industrial circulation systems.
Broad Applicability: Suitable for transporting non-corrosive liquids—including cold water, hot water, and various water-based fluids—for transfer, circulation, and pressure boosting. It also serves sectors such as agriculture and irrigation, demonstrating
versatile utility.
Product Diversity and Adaptability
Extensive Specification Options: Available in 16 flow rate versions and hundreds of pressure configurations. Users can precisely select the multistage centrifugal pump that matches their specific operating conditions—such as flow and pressure requirements—ensuring a tailored fit for their application.
Flexible System Connections: Offers a variety of connection types and flange sizes to ensure compatibility with any system. This flexibility facilitates integration with diverse piping systems and equipment, enhancing the pump's adaptability and versatility across different application scenarios.
Performance and Quality
High Hydraulic Efficiency: Performance is optimized through fluid dynamics insights gained from extensive simulation-driven design and validation. The pump achieves high hydraulic efficiency, effectively converting energy into kinetic and pressure energy during operation, thereby reducing energy consumption and lowering operating costs. Long-life bearings: These robust and durable bearings offer a range of options suited for complex fluids; their extended service life reduces maintenance frequency and replacement costs, ensuring long-term, stable pump operation.














