Bridge-Type Bucket Excavator Model QDWB120-1140 with 120m³/m Capacity and 112kW Power for Raw Material Processing
The bridge-type multi-bucket reclaimer is a highly efficient continuous operation equipment for handling bulk materials, primarily used in coal and ore storage yards across power, metallurgy, coal, building materials, and chemical industries. It features continuous material retrieval through the bucket wheel on the bridge frame and automated transportation via conveyor systems, offering reliable operation with minimal maintenance requirements.
This bridge-type multi-bucket reclaimer performs continuous material retrieval and stacking operations for bulk materials in large storage yards. It significantly improves operational efficiency while reducing manual labor, ensuring uniform material mixing and enhanced material utilization.
| Model | Production Capacity (m³/h) | Infrastructure Conditions (m) | Unit Storage Capacity (kW) |
|---|---|---|---|
| QDWB120-1140 | 120 | W-20m/H-7m | 112 |
- Minimal moving parts for reduced maintenance requirements
- Durable construction ensuring reliable operation
- Consistent material characteristics and particle size distribution
- High degree of material mixing capability
The bridge-type multi-bucket reclaimer features a fixed, non-elevating bridge frame positioned at a lower level, without a stacking conveyor or tail car. It utilizes a material rake fixed in front of the bucket wheel on a movable cart that travels along the material pile's end face, allowing loose material to slide down for bucket wheel retrieval. Semi-bridge-type reclaimers may incorporate different structural features like an elevating bridge frame, making them suitable for varied operating environments.
The bridge-type multi-bucket reclaimer's design meets comprehensive process requirements, ensuring equipment reliability and technological advancement. It strictly follows process layouts to guarantee stacking/retrieval capacity and storage requirements, while implementing appropriate stacking processes based on specific conditions to achieve optimal homogenization effects.
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