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Overview of Vigorun Tech’s Strong Power Petrol Engine
Vigorun Tech excels in manufacturing robust equipment like the strong power petrol engine speed of travel 4km crawler remote handling snow brush. This innovative machine is powered by a high-performance V-type twin-cylinder gasoline engine, specifically the Loncin brand model LC2V80FD. With a rated power output of 18 kW at 3600 rpm and a capacity of 764cc, this engine ensures formidable performance suitable for various demanding tasks.
The machine features a clutch mechanism that engages at a predetermined rotation speed, allowing for efficient operation and minimizing unnecessary wear and tear on the components. This design aspect highlights Vigorun Tech’s commitment to durability and reliability in its products, ensuring that users can depend on the machine for consistent performance.
Equipped with advanced technology, the strong power petrol engine provides exceptional torque output. A high reduction ratio worm gear reducer multiplies the torque from the servo motor, enabling strong climbing capabilities and resistance against various terrains. This feature guarantees that the machine performs well even when faced with steep inclines or challenging conditions.
Multifunctional Capabilities of the Snow Brush
The strong power petrol engine speed of travel 4km crawler remote handling snow brush is designed for versatility. It offers interchangeable front attachments, making it perfect for a range of applications. Users 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 adaptability allows for heavy-duty grass cutting, shrub and bush clearing, vegetation management, and effective snow removal, making the machine an essential tool in various environments. The electric hydraulic push rods facilitate remote height adjustment of attachments, enhancing user convenience and operational efficiency.
Additionally, the intelligent servo controller optimizes the machine’s operation by precisely regulating motor speed and synchronizing the left and right tracks. This results in smooth navigation and reduces the operator’s workload, especially during extended periods of use. The design minimizes risks associated with overcorrection, particularly on steep slopes, ensuring safe and reliable operation.