About AJ Kisan Heavy Duty Iron Wheel Attachment 30.48 cm (12 Inches) Tillers/Cultivator
The AJ Kisan Heavy Duty Iron Wheel Attachment is designed for 5–12 HP diesel power tillers and weeders, providing enhanced stability and traction during agricultural operations. Made from durable mild steel, these iron wheels are suitable for both dry and wet land conditions. With a wheel diameter of approximately 40.64 cm (16 Inch) and a width of 7.62 cm (3 Inch), they help the power tiller move efficiently through rough and challenging soil conditions.
Key Features & Benefits of AJ Kisan Heavy Duty Iron Wheel Attachment 30.48 cm (12 Inches) Tillers/Cultivator
- Heavy-Duty Construction: Made from durable mild steel for reliable performance in agricultural conditions.
- Excellent Traction: Provides better grip on soil, helping the tiller operate efficiently.
- Enhanced Stability: Improves stability and control during field operations.
- Dry & Wet Land Suitable: Designed for use in both dry and wet soil conditions.
- Wide Compatibility: Suitable for 5–12 HP diesel power tillers and weeders.
- Durable Design: Built to withstand regular agricultural use and rough field conditions.
- Easy Attachment: Designed for convenient installation on compatible power tillers.
Specifications
- Wheel Diameter: 40.64 cm (16 Inch) Approx.
- Wheel Width: 7.62 cm (3 Inch) Approx. Each
- Material: Mild Steel
- Shaft Size: 3.2 cm (32 mm)
- Suitable For: 5–12 HP Diesel Power Tiller / Weeder
- Suitable Land Type: Dry & Wet Land
- Quantity: 2 Pcs
Uses
- Soil Tilling: Provides improved traction while tilling and cultivating soil.
- Wet Land Operations: Helps maintain grip and stability in wet and muddy fields.
- Dry Land Operations: Supports efficient movement and soil cultivation in dry fields.
- Field Preparation: Helps improve power tiller stability during land preparation.
- Rough Terrain: Provides better traction and control on uneven or challenging agricultural land.
- Farm Maintenance: Suitable for general agricultural operations requiring enhanced tiller mobility and stability.