Description:
Max bowl speed 2950 RPM, rated @ 198 GPM, steep angle bowl, gravity overflow design. 7" single lead hardsurfaced conveyor, carbide-lined feed nozzles and cake ports, 110 KW main drive 380/3/50 with fluid clutch and 30 KW Viscotherm backdrive system, sub-base and control panel. Reconditioned to "as new" with full mechanical warranty. Located in Europe.
The (2) Westfalia CA 656-001 decanter centrifuges, 316SS, are engineered for high-efficiency separation processes, making them an ideal choice for various industrial applications. With a maximum bowl speed of 2950 RPM and a rated capacity of 198 GPM, these centrifuges are designed to handle large volumes of liquid while ensuring optimal separation of solids and liquids. The steep angle bowl and gravity overflow design enhance the separation process, allowing for a more effective discharge of separated materials. This design not only improves operational efficiency but also minimizes the risk of carryover, ensuring that the output quality meets stringent industry standards.
Equipped with a robust 110 KW main drive operating at 380/3/50, these centrifuges feature a fluid clutch that provides smooth engagement and disengagement, reducing wear and tear on the system. The 30 KW Viscotherm backdrive system further enhances performance by allowing for precise control of the conveyor speed, which is crucial for optimizing the cake dryness and overall separation efficiency. The 7" single lead hardsurfaced conveyor, along with carbide-lined feed nozzles and cake ports, ensures durability and longevity, even in demanding operational environments. Each unit has been meticulously reconditioned to 'as new' condition, complete with a full mechanical warranty, providing peace of mind for buyers. Located in Europe, these centrifuges are ready to be integrated into your production line, offering a reliable solution for your separation needs.
Key Features:
High-Speed Performance, Durable Construction, Efficient Separation Design, Advanced Drive Systems, Comprehensive Warranty
