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Email:cennia@szmizhi.com
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A sandblast room integrated with an automated blasting system represents the pinnacle of industrial surface treatment, combining large-scale processing with robotic precision. These purpose-built environments are designed for high-volume blasting of oversized components—such as aircraft fuselage sections, bridge girders, or industrial machinery frames—using programmable robotic arms or gantry systems to replace manual operation. The room’s architecture features reinforced concrete walls, overhead cranes for material handling, and a negative pressure ventilation system with HEPA filtration to maintain air quality.
The automated blasting system typically includes 6-axis robotic arms equipped with high-pressure nozzles (100–150 PSI), which follow pre-programmed paths or 3D scan data to ensure uniform coverage across complex geometries. AI-driven algorithms adjust blasting parameters in real-time based on surface feedback, optimizing media flow, pressure, and traverse speed for different materials. This reduces human error and increases productivity by up to 200% compared to manual blasting. Media recycling is fully automated: conveyor belts transport used abrasives to cyclonic separators, while magnetic filters remove metal contaminants for reuse. In aerospace, these rooms prepare composite aircraft parts for bonding; in shipbuilding, they clean hulls for anti-fouling coatings; and in renewable energy, they treat wind turbine towers for corrosion protection. Safety innovations include motion sensors that pause operations near personnel, remote diagnostics for predictive maintenance, and climate control systems to maintain optimal blasting conditions. By merging scale with automation, sandblast rooms with robotic systems redefine efficiency in large-scale industrial surface treatment.