Description:
Max bowl speed 1590 RPM, 1300 x G, bottom dump, (2) horizontal baffles, 7.6 cuft capacity, 95 PPCF, 150 F max, single-motion plow, feed and rinse pipes, top-mounted hydraulic drive with 30 HP motor 230/460/3/60/1750 RPM on pumping unit. Reconditioned to "as new."
The ATM/De Laval Mark III 36 x 20 solid basket centrifuge, 316SS. is engineered for high-efficiency separation processes, making it an ideal choice for industries requiring reliable and effective solid-liquid separation. With a maximum bowl speed of 1590 RPM and a gravitational force of 1300 x G, this centrifuge is capable of handling a wide range of materials, ensuring optimal performance in various applications. The unit features a generous capacity of 7.6 cubic feet, allowing for substantial processing volumes while maintaining consistent throughput. The bottom dump design enhances operational efficiency by facilitating quick and easy discharge of solids, while the dual horizontal baffles promote effective mixing and separation, contributing to the overall effectiveness of the centrifuge in diverse industrial settings.
Constructed from high-quality 316 stainless steel, the ATM/De Laval Mark III 36 x 20 solid basket centrifuge is built to withstand the rigors of industrial use, providing excellent resistance to corrosion and wear. The single-motion plow design ensures thorough mixing and efficient rinsing, optimizing the separation process and minimizing waste. The top-mounted hydraulic drive, powered by a robust 30 HP motor, offers reliable operation with a variable speed capability of 230/460/3/60/1750 RPM, allowing for precise control over the centrifuge's performance. This reconditioned unit has been restored to 'as new' condition, ensuring that it meets the highest standards of quality and reliability, making it a valuable addition to any production line that demands efficiency and durability.
Key Features:
High-Speed Performance, Durable Construction, Efficient Solid-Liquid Separation, Robust Hydraulic Drive, Reconditioned to 'As New' Condition
