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MTW 6X Fully Thin Oil Lubricated Intelligent European Trapezium Mill, built on the proven technical platform of Zenith's Generation V MTW European Trapezium Mill, focuses on core market demands with increased R&D investment. Adhering to the design philosophy of "Higher Intelligence, Greater Energy Efficiency, Enhanced Productivity, Superior Environmental Performance, and Improved Reliability", this high-performance grinding equipment incorporates multiple structural optimizations and technological innovations, and deeply integrates the full oil-lubrication system with IoT-based intelligent control technology.
It precisely meets the urgent needs of powder processing enterprises for energy conservation, consumption reduction, quality improvement and efficiency enhancement, and can help build a modern powder production line characterized by large-scale, intensive, green, intelligent, safe and high-quality operation.
Capacity: 6-55T/H
Input Size: 35-50mm
Output Size: 0.038-1.6mm
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Inheriting the integrated bevel gear drive technology of the MTW European trapezium mill, it features a simplified transmission chain and a precisely controllable transmission ratio, ensuring stable power output.
Both the main unit and the roller system are fully equipped with an oil lubrication solution, enabling lubrication maintenance without equipment shutdown and significantly reducing equipment downtime.
The classifier adopts an all-new structural design, with optimized sealing performance and air flow velocity, effectively improving the efficiency and precision of powder classification.
The system is fitted with a new high-performance fan, which increases pneumatic energy efficiency by 15% and achieves 8%-10% power savings compared with traditional fans.
Qualified materials screened through the crushing process are uniformly and quantitatively conveyed to the main mill chamber by a variable-frequency belt feeder for grinding operations. The ground materials are then transported to the classifier by the air flow of the fan for powder particle size classification. During the classification process, materials that fail to meet the fineness standard fall back into the mill chamber for regrinding, while qualified powder is carried by the air flow through pipelines into the cyclone powder collector to complete gas-solid separation and powder collection.
The collected powder is discharged through the discharge mechanism as the final finished powder. The separated air flow returns to the fan through the air return pipe at the top of the cyclone powder collector, forming a closed-loop air circulation system. The entire equipment operates in a negative pressure mode and is equipped with a pulse dust collector, with all emission indicators meeting the requirements of national environmental protection specifications.
The fineness of the finished product produced by the MTW European version can be adjusted arbitrarily between 0.038 mm (325 mesh) and 1.6 mm. Precise control of the fineness is achieved through a variable-frequency powder separator.
The production capacity of MTW European models ranges from 3 T/H to 45 T/H. Different models have varying capacities, making them suitable for small and medium-sized production lines.
Yes, the MTW European version can be equipped with a hot air drying system for simultaneous drying of the material. It can handle materials with a moisture content of up to 6%, meeting the grinding requirements of most materials.
The shovel is used to lift materials and feed them between the grinding rollers and rings for grinding. It’s one of the key wear-prone components, and its degree of wear directly affects the equipment’s productivity.
The MTW European version grinder is equipped with a PLC-based automated control system. It enables one-key start/stop functionality, real-time monitoring of operating parameters, and automatic fault alerts. The operation is simple, requiring no specialized personnel to operate it.
The arc-shaped air duct design significantly reduces air resistance and improves air flow efficiency. It also prevents material accumulation within the ducts, effectively reducing the likelihood of equipment blockages and enhancing operational stability.
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