Robotic Blasting Chamber | Automated Surface Preparation System

Eliminate quality inconsistencies and high labor costs of manual sandblasting. Integrating a high-protection 6-axis robotic blasting system, the chamber utilizes offline programming to control nozzle trajectories, ensuring 100% uniform surface roughness on complex profiles. Combined with automatic floor recovery for closed-loop media recycling, it minimizes material waste while ensuring environmental safety, delivering a high-ROI automated sandblasting booth.

Product Introduction

The robotic shot blasting room is a modern, fully enclosed facility specifically designed for high-volume, high-precision surface treatment of large and complex workpieces. The system integrates five core divisions: a robotic high-pressure blast system, a media reclaim unit, an abrasive recycling setup, an efficient dust removal system, and a smart electrical control center.

By incorporating advanced 6-axis industrial robots (such as FANUC or ABB), the system performs fully automated blasting. Driven by 3D offline programming, the robot precisely controls nozzle trajectory and angle to guarantee 100% surface coverage on complex profiles. This minimizes manual intervention, cuts labor costs, and eliminates health hazards associated with traditional manual blasting.

Overhead gantry rail track and heavy-duty travel carriage system supporting a suspended 6-axis blasting robot arm.
robotic blasting chamber 8
Detailed close-up of the dual-nozzle configuration mounted on the robotic blasting system arm for high-efficiency surface treatment.

At the heart of the facility is a high-performance robotic mechanism that delivers unmatched repeatability and process stability. Engineers can import 3D CAD models directly into the software to automatically generate optimized nozzle paths, blast angles, and travel speeds without interrupting ongoing production operations.

The intelligent control system ensures full digital integration between robot motion and blasting pressure. By stabilizing media flow rate and stand-off distance, it achieves exceptional surface finish consistency without over-blasting or unevenness. Furthermore, precise targeting extends the lifespan of wear parts and significantly reduces overall energy costs.

Technical parameters

Technical Parameters Model: RB-180 Model: RB-300 Model: RB-400 Model: RB-Custom
Max. Workpiece Dimension
2000 x 1500 x 1500 mm
3000 x 2000 x 2000 mm
4000 x 2500 x 2500 mm
Fully Customized Layout
Max. Loading Capacity
1000 kg
3000 kg
5000 kg
Heavy-Duty Tailored
Nozzle Orifice Diameter
8.0 mm / 9.5 mm
9.5 mm / 11.0 mm
11.0 mm / 12.5 mm
High-Wear Boron Carbide
Compressed Air Demand
3.5 – 6.0 m³/min
6.0 – 12.0 m³/min
12.0 – 18.0 m³/min
Dependent on Nozzle Qty
Abrasive Flow Rate
200 – 400 kg/h
400 – 800 kg/h
800 – 1500 kg/h
Continuous Valve Control
Ventilation Air Volume
12000 m³/h
18000 m³/h
24000 m³/h
Multi-Cartridge System

Product Advantages

Consistent Roughness: Precise control of nozzle distance and angle eliminates manual fluctuations, ensuring uniform roughness across batches.

Automatic Recycling: Mechanical or pneumatic floor systems collect media automatically, recycling clean grit via air separators to cut costs.

Enclosed Clean Operation: Total isolation keeps workers away from dust and noise, while system emissions outperform international clean air standards.

Multi-Workpiece Flexibility: Leveraging offline programming and 3D scanning, new workpiece trajectories are switched in minutes without manual teaching.

APPLICATION & BLASTING RESULTS

Robotic Blasting and Shot Peening Results on Complex Workpieces

SUITABLE WORKPIECES

TARGET INDUSTRIES

Watch in Action: Industrial Sandblasting Excellence

Watch the video to see our 6-axis robotic blasting system in action, delivering fast and high-precision removal of scale and sand on complex workpiece geometries within an enclosed booth.

Automated Robotic Blasting Chamber: System FAQ's & Technical Insights

Can the robotic blasting system thoroughly clean the inner cavities or blind spots of complex workpieces?

Yes. Utilizing the flexible multi-degree-of-freedom movement of a 6-axis robot, the nozzle can access angles that are out of reach for human blasters. For extremely complex internal geometries, adding a 7th-axis linear rail or a dual-axis positioner table allows the robot and workpiece to coordinate, eliminating all blind spots.

How long does it take to reprogram when switching to a different workpiece specification?

There is no need to waste production time with manual teaching. With our offline programming software, you simply import the new 3D CAD model into the system on a computer. The software then generates the blasting path automatically or semi-automatically. Switching on the shop floor takes only minutes via a one-touch selection on the HMI.

Will the high dust and aggressive media inside the chamber affect the robot's lifespan?

No. We utilize high-protection, explosion-proof industrial robots specifically built for harsh blasting conditions. Beyond the robot's native high IP rating, it is wrapped in a fully sealed, heavy-duty protective suit. Together with a down-draft ventilation layout, the core motors and gearboxes are fully shielded from media wear.

Is the foundation civil work difficult? Can it be installed if factory space is limited?

By selecting a mechanical scraper or pneumatic honeycomb floor, the system can be engineered with a shallow pit or even a completely foundation-free, above-ground setup, avoiding deep excavation. We customize the overall dimensions based on your ceiling height and existing logistics (such as overhead cranes or rail carts).

Driven by Innovation, Defined by Quality

Leveraging next-generation technologies to deliver high-
performance industrial machinery solutions across the globe.

Driven by Innovation, Defined by Quality

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