The Side-Mounted Bucket Concrete Mixing Plant arranges powder silos beside the main building and lifts aggregates by intermittent vertical skip hoist. It delivers compact installation, environmental efficiency, energy-saving operation, stable dual-rope lifting, and practical maintenance for restricted construction sites efficiently.
√ The Warehouse Is Arranged Independently On The Side Of The Main Mixing Building
√ Smaller Footprint, More Environmentally Friendly, And More Energy-Efficient
√ Double Rope Lifting, Multiple Limits
√ Double Wire Rope Synchronous Lifting System
√ The Main Body Uses A Round Tube Design
√ Crank Arm Design Mixing Host
√ Three-Point Sensor
√ High-Strength Wear-Resistant Liner
√ Air Flotation Chute
√ Separate Fan
√ Lengthened Design Powder Dust Removal Pipe
Product Overview
The Side-Mounted Bucket Concrete Mixing Plant is a compact concrete mixing plant widely used in medium and small engineering scenarios. Its core feature is the independent placement of powder silos beside the main mixing building, giving the main building a smaller footprint than common market structures.
Aggregates are conveyed above the mixer by intermittent vertical skip hoist lifting. The layout occupies less space and offers better environmental and energy-saving performance. Dual-rope lifting and multiple limit protections ensure stable equipment operation, making it an intensive mixing plant for sites that must balance capacity, footprint, and reliability.
Application Fields
It is mainly suitable for urban medium and small building construction, municipal renovation, rural infrastructure projects, and sites with tight space or height limitations. It can also support on-site supply for medium and small highway and water conservancy projects, balancing space utilization and maintenance efficiency.
Core Advantages
The lifting system follows lifting-industry standards and uses an independent variable-frequency motor, European-standard industrial gearbox, and dual hydraulic brakes for stable, reliable, energy-saving operation and convenient maintenance.
The anti-fall system uses synchronized dual wire-rope lifting. The two wire ropes do not wear at the same time, and each wire rope can operate independently.
The overall steel structure uses a round-tube main body, requiring higher processing standards and providing a stable, reasonable structure.
The curved-arm mixer design improves mixing performance, increases speed, and enhances concrete workability.
The metering scale body uses a three-point sensor design for higher metering accuracy.
The aggregate temporary storage hopper has high-strength wear-resistant liners and a flat discharge opening with dual discharge doors, supporting smoother feeding and alternating door operation under high current to protect the motor and reducer.
The powder conveying system uses an air-floating chute with an independent fan for more stable air volume. Dual butterfly valves provide coarse and fine metering for more accurate powder measurement.
The dust collection system uses extended powder dust removal pipelines, reducing dust while avoiding powder waste.
Technical Specifications
| Side-Mounted Bucket Concrete Mixing Plant | ||||||
| Model | HZSJ60 | HZSJ90 | HZSJ120 | HZSJ180 | HZSJ240 | HZSJ270 |
| Theoretical Production Rate | 60 | 90 | 120 | 180 | 240 | 270 |
| Mixer | CHS1000 | CHS1500 | CHS2000 | CHS3000 | CHS4000 | CHS4500 |
| Dosing System | PLD1600 | PLD2400 | PLD3200 | PLD4800 | PLD6400 | PLD7200 |
| Discharge Height | 4200 | 4200 | 4200 | 4200 | 4200 | 4200 |
| Maximum Aggregate Size | 60(80) | 60(80) | 60(80) | 60(80) | 60(80) | 60(80) |
| Mixing Cycle Time | 60 | 60 | 60 | 60 | 60 | 60 |
| Aggregate Metering Accuracy | 0.02 | 0.02 | 0.02 | 0.02 | 0.02 | 0.02 |
| Cement Metering Accuracy | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 |
| Water Metering Accuracy | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 |
| Admixture Metering Accuracy | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 | 0.01 |
| Total Installed Power | 125 | 170 | 215 | 300 | 400 | 400 |
Reliable structural design and proven technology ensure stable operation under continuous production conditions.
Advanced batching and control systems improve material proportioning accuracy and production consistency.
Multiple models and configurations are available to meet different capacities, processes and site requirements.
Strict production management and multi-stage factory testing help ensure consistent equipment quality before delivery.
Optimized system design and automated control simplify daily operation and improve overall production efficiency.
Equipment configuration and plant layout can be customized according to specific project and production requirements.