KALMAR DCD 450-12 SIT-DOWN FORKLIFT

Equipment Overview
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- KALMAR
- Model
- DCD 450-12
- Year of Manufacture
- -
- Category
- SIT-DOWN FORKLIFTS
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A+Technical Description
The Kalmar DCD 450-12 is a heavy-duty forklift designed for demanding material handling operations, offering exceptional lifting capacity and robust construction. With a load capacity of 99,208.1 lbs (45,000 kg) and a load center of 47.3 inches (120 cm), this forklift is engineered to efficiently manage large, heavy loads in industrial and port environments. The machine features a pneumatic tire configuration, with two front wheels and two rear wheels, providing reliable traction and stability on various surfaces. Its operating weight is 115,301.8 lbs (52,300 kg), ensuring optimal balance and safety during lifting and transport tasks. The overall width of the forklift is 14.6 feet (4.45 meters), while the wheelbase measures 18.1 feet (5.52 meters), contributing to its maneuverability and stability, especially when handling oversized or unevenly distributed loads. The mast system is designed for high-capacity lifting, supporting the forklift’s primary function in heavy-duty applications. The Kalmar DCD 450-12 is powered by a robust diesel engine, typically from Volvo or Cummins, ensuring strong performance and reliability under continuous operation. Advanced hydraulics and a durable counterweight truck design further enhance its operational efficiency and safety. This forklift is ideal for use in ports, terminals, and heavy industry settings where high-capacity lifting, durability, and operator comfort are essential. Its technical specifications make it a top choice for operators seeking a reliable, high-performance heavy forklift.
Technical Attributes
- Load Capacity
- 99208 lb
Data Accuracy and Verification
Specifications and technical details are compiled from manufacturer documentation, historical records, and third-party industry sources. While care is taken to ensure accuracy, this information is provided for reference purposes only and may contain errors or omissions. Users should independently verify all details before relying on them.
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