LASER CLEANING PRIOR TO COATING & FLAW DETECTION

01 Laser Cleaning Prior to Coating for Nuclear Power Engineering Materials

To reduce radiation risks in nuclear power plants, radiation shielding materials shall be sprayed onto internal concrete structures. Release agents remain on concrete surfaces after casting, which will impair coating adhesion. Therefore, the release agents on concrete surfaces must be thoroughly removed.

02 Post-Weld Cleaning for Wall Welds in Nuclear Power Plant Construction

This product is specially designed for post-weld cleaning of wall welds during nuclear power plant construction. The weld areas will be coated after cleaning, and the cleaning results can meet the surface quality standards required for subsequent coating.
Detailed Introduction

Laser Cleaning Prior to Coating for Nuclear Power Plant Engineering Materials

To lower radiation risks inside nuclear power plants, radiation shielding coatings are required on internal concrete structures. Mold release agents left on concrete surfaces after molding will impair coating adhesion, so complete removal of these residual release agents is essential.

Currently, manual grinding is the mainstream method to remove mold release agents, which has obvious drawbacks including inconsistent cleaning quality, heavy labor intensity, severe noise pollution and threats to occupational health. Laser cleaning can thoroughly eliminate mold release agents and other contaminants, uniformly increase surface roughness, and meanwhile deliver low noise, pollution-free, eco-safe, efficient and convenient operation.

Laser cleaning for concrete before coating composite picture

Post-Weld Cleaning for Wall Weld Seams in Nuclear Power Plant Construction

 This equipment is specially developed for post-weld cleaning of wall weld seams during nuclear power plant construction. The cleaned weld surfaces fully meet the surface quality standards for subsequent coating processes.

 Post-weld cleaning effect composite picture

1. Suitable for confined narrow spaces: Compact and portable equipment, which can flexibly access complex restricted areas inside nuclear power plants to finish cleaning tasks.

2. Excellent adaptability to harsh working conditions: Operates stably in environments with dense pipelines, crossed scaffolding and numerous high-altitude obstacles, matching messy construction site layouts.

3. High equipment stability: Maintains stable performance under complex high-temperature and high-humidity environments.

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