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Vigorun Tech’s Advanced Brush Mulcher Technology
The agriculture gasoline powered all terrain rubber track remote-driven brush mulcher from Vigorun Tech is an innovative solution designed to meet the demands of modern agricultural practices. This powerful machine is equipped with a V-type twin-cylinder gasoline engine, specifically the Loncin brand model LC2V80FD. With a rated power of 18 kW at 3600 rpm, this 764cc gasoline engine provides robust performance that ensures efficiency in various applications.
Moreover, the engine features a clutch that engages only when it reaches a predetermined rotation speed, optimizing fuel usage and enhancing operational control. This thoughtful design element allows operators to focus on their tasks without worrying about engine strain or unnecessary fuel consumption, making it a reliable choice for long working hours in the field.
The agriculture gasoline powered all terrain rubber track remote-driven brush mulcher also boasts two powerful 48V 1500W servo motors that provide impressive climbing capabilities. The built-in self-locking function ensures that the machine remains stationary unless both power is activated and throttle is applied. This safety feature prevents unintended sliding, making it suitable for steep slopes and challenging terrains where stability is paramount.
Versatile Attachments and Enhanced Safety Features
One of the standout features of the agriculture gasoline powered all terrain rubber track remote-driven brush mulcher is its versatility. With the ability to accommodate interchangeable front attachments, it can be transformed into a flail mower, hammer flail, forest mulcher, angle snow plow, or snow brush. This adaptability makes it an excellent tool for heavy-duty grass cutting, shrub and bush clearing, vegetation management, and even snow removal.
Safety is further enhanced through the intelligent servo controller that precisely regulates motor speed and synchronizes the left and right tracks. This advanced system allows the mower to travel in a straight line without constant adjustments, significantly reducing operator workload and minimizing risks associated with overcorrection, especially on steep slopes.

