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Features of the Loncin 764CC Gasoline Engine
The Loncin 764CC gasoline engine cutting width 1000mm crawler unmanned snow brush is powered by a robust V-type twin-cylinder gasoline engine. Specifically, it utilizes the Loncin brand model LC2V80FD, which boasts a rated power output of 18 kW at 3600 rpm. This powerful engine ensures that the snow brush operates efficiently, providing exceptional performance even in challenging winter conditions.
Additionally, the machine’s engineering incorporates a high reduction ratio worm gear reducer. This innovative feature multiplies the already substantial torque provided by the servo motors, resulting in immense output torque. This capability allows the snow brush to handle steep inclines with ease, ensuring that operators can tackle even the toughest snow-covered terrains safely and effectively.
Versatility and Functionality
The Loncin 764CC gasoline engine cutting width 1000mm crawler unmanned snow brush is designed for multi-functional use, accommodating various front attachments. Users can equip it with a 1000mm-wide flail mower, hammer flail, forest mulcher, angle snow plow, or snow brush. This versatility makes it an ideal choice for diverse applications, including heavy-duty grass cutting, shrub and bush clearing, vegetation management, and, of course, snow removal.
Equipped with electric hydraulic push rods, the machine allows for remote height adjustment of attachments. This feature enables operators to customize their equipment settings without having to dismount from the vehicle, significantly improving efficiency during operations. The intelligent servo controller further enhances its usability by precisely regulating motor speed and synchronizing the left and right tracks.
The impressive design of the Loncin 764CC gasoline engine cutting width 1000mm crawler unmanned snow brush not only maximizes performance but minimizes operator workload as well. With the capability to travel in a straight line without constant adjustments, it reduces the risks associated with over-correction on steep slopes. This innovative approach ensures that demanding tasks can be completed effectively and safely.