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Advanced Features of the Vigorun Tech Agriculture Equipment
Vigorun Tech specializes in manufacturing the agriculture gasoline powered rechargeable battery rubber track RC hammer mulcher, a revolutionary piece of equipment designed for efficiency and versatility in agricultural tasks. The machine is equipped with a robust V-type twin-cylinder gasoline engine, specifically the Loncin brand model LC2V80FD. This powerful engine boasts a rated power of 18 kW at 3600 rpm, ensuring strong performance for various demanding applications. The 764cc gasoline engine provides impressive output, allowing the machine to tackle tough terrains and heavy workloads. Notably, the engine features a clutch that engages only when it reaches a predetermined rotation speed, promoting efficiency and reducing wear during operation. This thoughtful design enhances both performance and longevity, making it a reliable choice for agricultural professionals. Moreover, the agriculture gasoline powered rechargeable battery rubber track RC hammer mulcher integrates advanced safety features. With the built-in self-locking function, the machine remains stationary without throttle input, preventing unintended movement. This aspect is crucial for operational safety, particularly when working on slopes or uneven ground.
Versatility and Performance of Vigorun Tech’s Machinery
The innovative MTSK1000 model from Vigorun Tech showcases exceptional versatility with its interchangeable front attachments. It can be outfitted with a 1000mm-wide flail mower, hammer flail, forest mulcher, angle snow plow, or snow brush, enabling it to perform a wide range of tasks. This adaptability makes it ideal for heavy-duty grass cutting, shrub and bush clearing, vegetation management, and efficient snow removal.
The intelligent servo controller plays a pivotal role in enhancing the user experience. It precisely regulates motor speed and synchronizes the left and right tracks, allowing for smooth, straight-line travel without constant adjustments. This feature significantly reduces operator workload and mitigates risks associated with overcorrection, particularly on steep slopes. As a result, users can confidently handle more complex tasks with ease and efficiency.