Overhead Belt Concrete Mixing Plant

Overhead Belt Concrete Mixing Plant

The Overhead Belt Concrete Mixing Plant places powder silos above the main mixing building and uses continuous belt conveying. It supports compact station layouts, gravity-fed batching and metering, stable high-volume output, and long-term concrete production for commercial plants and major infrastructure projects.

Stirring The Top Of The Main Building
Large And Medium-Sized Commercial Concrete Mixing Station
Good Force Conductivity
The Main Body Uses A Round Tube Design
Conical Finished Hopper
Crank Arm Design Mixing Host
Heighten The Upper Cover Of The Host
Three-Point Sensor Design
Built-In High-Strength Wear-Resistant Liner
Air Delivery Chute
Powder Dust Removal Pipe

Product Overview

The Overhead Belt Concrete Mixing Plant is a mainstream high-efficiency configuration for fixed concrete batching plants. Its core feature is the integrated placement of cement, fly ash, and other powder silos on top of the main mixing building, giving the main building a smaller footprint than common market structures.

Aggregates are lifted above the mixer through continuous flat belt and inclined belt conveying. Materials complete batching, metering, and mixing from top to bottom by gravity, making the plant an intensive mixing solution widely used in commercial concrete production and large infrastructure construction.

Application Fields

It is mainly intended for medium and large commercial concrete batching plants, as well as long-term fixed mixing stations for high-speed rail, bridges, large municipal works, and other projects with high daily output requirements and strict demands for production continuity and stability.

Core Advantages

The concrete main building uses column bearing, providing good overall force transmission, low vibration, fewer columns, and a more reasonable room design.

The overall steel structure uses a round-tube main body, requiring higher processing standards and providing a stable, reasonable structure.

The conical finished-material hopper resists material adhesion and is equipped with high-strength wear-resistant liners for longer service life.

The curved-arm mixer design improves mixing performance, increases speed, and enhances concrete workability.

The raised mixer cover allows powder to be premixed before entering the mixer, directs all materials into the mixer center, prevents shaft wrapping, and improves mixing efficiency.

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 conveying 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

Overhead Belt Concrete Mixing Plant
ModelHZS120HHZS180HHZS210HHZS240HHZS270HHZS300H
Theoretical Production Rate120180210240270300
MixerCHS2000CHS3000CHS3500CHS4000CHS4500CHS5000
Dosing SystemPLD3200PLD4800PLD5000PLD6400PLD7200PLD8000
Discharge Height420042004200420042004200
Maximum Aggregate Size60(80)60(80)60(80)60(80)60(80)60(80)
Mixing Cycle Time606060606060
Aggregate Metering Accuracy0.020.020.020.020.020.02
Cement Metering Accuracy0.010.010.010.010.010.01
Water Metering Accuracy0.010.010.010.010.010.01
Admixture Metering Accuracy0.010.010.010.010.010.01
Total Installed Power180220220300300330
Stable Performance

Reliable structural design and proven technology ensure stable operation under continuous production conditions.

Accurate Batching

Advanced batching and control systems improve material proportioning accuracy and production consistency.

Flexible Configuration

Multiple models and configurations are available to meet different capacities, processes and site requirements.

Reliable Quality

Strict production management and multi-stage factory testing help ensure consistent equipment quality before delivery.

Easy Operation

Optimized system design and automated control simplify daily operation and improve overall production efficiency.

Customized Solutions

Equipment configuration and plant layout can be customized according to specific project and production requirements.

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