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Features of the Loncin 764CC Gasoline Engine Low Power Consumption Tracked Remote Handling Brush Mulcher
The Loncin 764CC gasoline engine low power consumption tracked remote handling brush mulcher is a powerful and efficient machine designed for various outdoor tasks. It is equipped with a V-type twin-cylinder gasoline engine, specifically the Loncin brand model LC2V80FD. This engine boasts a rated power of 18 kW at 3600 rpm, ensuring robust performance for demanding applications. The unique design of the engine includes a clutch that engages only when it reaches a predetermined rotation speed. This feature enhances the machine’s efficiency by minimizing energy consumption while making sure that power is readily available during operation. As a result, operators can expect a reliable performance that meets their heavy-duty needs without excessive fuel use.
Equipped with advanced technology, the brush mulcher features two 48V 1500W servo motors that provide strong power and climbing capability. The built-in self-locking function ensures that the machine remains stationary unless both the power is on and throttle is applied. This safety feature significantly reduces the risk of unintended movements and enhances operator confidence while working on challenging terrains.
Versatility and Functionality
The innovative design of the Loncin 764CC gasoline engine low power consumption tracked remote handling brush mulcher allows for multi-functional use with interchangeable front attachments. Operators can easily switch between a 1000mm-wide flail mower, hammer flail, forest mulcher, angle snow plow, or snow brush, depending on their specific needs. This versatility makes the machine ideal for heavy-duty grass cutting, shrub and bush clearing, vegetation management, and snow removal.
Moreover, the intelligent servo controller plays a crucial role in enhancing the machine’s operational capabilities. It precisely regulates motor speed and synchronizes the left and right tracks, allowing the mower to travel in a straight line without constant remote adjustments. This feature not only reduces the operator’s workload but also minimizes risks associated with over-correction, especially on steep slopes.
In terms of safety and performance, the high reduction ratio of the worm gear reducer multiplies the already strong servo motor torque, delivering immense output torque for climbing resistance. Additionally, in a power-off state, the friction between the worm and gear provides mechanical self-locking, which prevents the machine from sliding downhill during power loss. This ensures consistent performance and enhanced safety during slope mowing tasks.
