Our agriculture gasoline powered sharp mowing blades crawler remote controlled snow brush is engineered to meet the diverse needs of agricultural and snow removal tasks. Vigorun Tech, a leading manufacturer in this field, has integrated cutting-edge technology into its design, ensuring that the machine performs optimally under various conditions.
The machine features a robust V-type twin-cylinder gasoline engine from the Loncin brand, model LC2V80FD, which delivers an impressive rated power of 18 kW at 3600 rpm. This powerful 764cc engine not only provides exceptional performance but also incorporates a clutch system that engages only when the engine reaches a specified rotation speed, enhancing efficiency and control during operation.
Equipped with advanced electric hydraulic push rods, this remote-controlled system allows operators to adjust the height of attachments effortlessly. This feature enhances the versatility of the agriculture gasoline powered sharp mowing blades crawler remote controlled snow brush, enabling it to tackle a variety of tasks, from heavy-duty grass cutting to effective snow removal.
Enhanced Safety and Performance Features
Safety and performance are paramount in the design of the agriculture gasoline powered sharp mowing blades crawler remote controlled snow brush. The machine is fitted with two powerful 48V 1500W servo motors that ensure strong climbing capabilities while maintaining stability. A built-in self-locking function guarantees that the machine will only move when both power is active and throttle is engaged, preventing unintended sliding and significantly improving operational safety.
Additionally, the worm gear reducer multiplies the torque output of the servo motors, providing outstanding climbing resistance and mechanical self-locking during power outages. This innovative design ensures that the machine remains stationary on slopes, even if there is a loss of power, thereby enhancing safety for users operating in challenging terrains.
The intelligent servo controller plays a crucial role in optimizing performance by regulating motor speed and synchronizing the movement of the left and right tracks. This advanced feature allows for straight-line travel without constant adjustments, reducing the workload on operators and minimizing the risks associated with overcorrection, particularly on steep slopes.
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