

Corrosion Test Chambers for Salt Spray and Cyclic Corrosion Testing
Built with precision PID temperature control, multi-layer safety protection, and corrosion-resistant materials, our chambers ensure stable, repeatable test results. With flexible configurations and compliance with major international standards, they are widely used in automotive, aerospace, electronics and new energy industries to verify material durability and guarantee long-term product reliability under harsh conditions.

The Cyclic Corrosion Test (CCT) Chamber is designed to simulate real-world alternating climates, comprehensively evaluating the corrosion resistance of materials under multiple conditions including salt spray, drying, wetting, and condensation. The chamber automatically executes complex test cycles to accurately reproduce natural aging processes, providing reliable data for coating R&D and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Heated Salt Spray Corrosion Test Chamber simulates alternating high-temperature, high-humidity, and salt spray environments to comprehensively evaluate the corrosion resistance of materials and protective layers. By accurately reproducing complex climatic conditions, it accelerates product reliability testing, providing a scientific basis for R&D and quality control.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Sulfur Dioxide Corrosion Chamber designed to simulate industrial polluted atmospheres, accurately evaluating the corrosion resistance of metal materials, surface coatings, and electronic components in sulfur-containing gases. By precisely controlling SO₂ concentration and alternating temperature-humidity conditions, it accelerates sulfidation reactions, providing scientific and reliable test data for material selection, process optimization, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The CASS Test Chamber simulates marine or salt-laden atmospheric environments to evaluate the corrosion resistance of metal materials, electronic components, and surface coatings (such as electroplating and paint). It precisely controls constant salt spray concentration, temperature, and humidity within a sealed enclosure to accelerate sample aging, providing reliable evidence for R&D in protective processes, quality control, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Acetic Acid Salt Spray Machine simulates marine or salt-laden atmospheric environments to evaluate the corrosion resistance of metal materials, electronic components, and surface coatings (such as electroplating and paint). It precisely controls constant salt spray concentration, temperature, and humidity within a sealed enclosure to accelerate sample aging, providing reliable evidence for R&D in protective processes, quality control, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The singleton corrosion test chamber simulates marine or salt-laden atmospheric environments to evaluate the corrosion resistance of metal materials, electronic components, and surface coatings (such as electroplating and paint). It precisely controls constant salt spray concentration, temperature, and humidity within a sealed enclosure to accelerate sample aging, providing reliable evidence for R&D in protective processes, quality control, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The singleton salt fog chamber simulates marine or salt-laden atmospheric environments to evaluate the corrosion resistance of metal materials, electronic components, and surface coatings (such as electroplating and paint). It precisely controls constant salt spray concentration, temperature, and humidity within a sealed enclosure to accelerate sample aging, providing reliable evidence for R&D in protective processes, quality control, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Sulfur Dioxide Corrosion Chamber designed to simulate industrial polluted atmospheres, accurately evaluating the corrosion resistance of metal materials, surface coatings, and electronic components in sulfur-containing gases. By precisely controlling SO₂ concentration and alternating temperature-humidity conditions, it accelerates sulfidation reactions, providing scientific and reliable test data for material selection, process optimization, and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Waterproof Test Equipment is designed to simulate natural rainfall and strong water flow environments, comprehensively evaluating the waterproof enclosure performance (IPX1-IPX9K) of electronic products, automotive lighting, and outdoor equipment. It realistically reproduces various complex rain conditions, providing a scientific basis for structural optimization, quality inspection, and reliability verification.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Cyclic Corrosion Test (CCT) Chamber is designed to simulate real-world alternating climates, comprehensively evaluating the corrosion resistance of materials under multiple conditions including salt spray, drying, wetting, and condensation. The chamber automatically executes complex test cycles to accurately reproduce natural aging processes, providing reliable data for coating R&D and lifespan prediction.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The rain test chamber is designed to simulate natural rainfall and strong water flow environments, comprehensively evaluating the waterproof enclosure performance (IPX1-IPX9K) of electronic products, automotive lighting, and outdoor equipment. It realistically reproduces various complex rain conditions, providing a scientific basis for structural optimization, quality inspection, and reliability verification.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.

The Mold Test Chamber is designed to simulate harsh high-temperature and high-humidity climatic environments, used to artificially accelerate mold reproduction and comprehensively evaluate the mold resistance of electrical and electronic products as well as materials. By precisely regulating temperature and humidity conditions, the chamber rapidly induces performance degradation and mold growth in samples under moist environments, providing a scientific basis for anti-mold process improvement and reliability verification.
Key Specifications
Temperature Range: Configurable per model and test requirements.
Chamber Volume: Multiple sizes for different samples and capacities.
Controller: User-friendly system for stable and precise operation.
Power Supply: Standard or customized to local electrical standards.
- Test TypeDefines whether neutral salt spray, cyclic corrosion, humidity, drying, or other cycles are required.
- Chamber VolumeShould match sample size, rack layout, and batch quantity.
- Spray SystemAffects spray distribution, corrosion simulation stability, and test consistency.
- Temperature ControlRequired for chamber temperature, saturation tower, or cyclic test conditions.
- Sample Rack DesignSupports proper sample placement, angle, and exposure.
- Material and StructureCorrosion-resistant materials help maintain long-term equipment reliability.
Key Specifications
| Model | YWX/Q-150(B) | YWX/Q-250(B) | YWX/Q-750(B) | YWX/Q-010(B) | YWX/Q-016(B) | YWX/Q-020(B) |
|---|---|---|---|---|---|---|
| Internal Chamber Dimensions (D×W×H) | 450×600×400 | 600×900×500 | 750×1100×500 | 850×1300×600 | 850×1600×600 | 900×2000×600 |
| External Dimensions (D×W×H) | 700×1070×1050 | 870×1400×1150 | 1030×1680×1260 | 1160×2000×1390 | 1210×2200×1440 | 1260×2600×1490 |
| Performance Specifications | Temperature Range: Room Temp +5℃ ~ 55℃ | |||||
| Temperature Deviation: ≤±2℃ | ||||||
| Temperature Fluctuation: ≤±0.5℃ | ||||||
| Salt Spray Sedimentation: 1~2ml/80cm²·h | ||||||
| Spray Mode: Continuous / Cyclic (Optional) | ||||||
| Test Timer: 1~999 (S, M, H) Adjustable | ||||||
| Control & Operation System | Temperature Control: LED digital P, I, D+S, S, R microcomputer controller or color touch screen controller | |||||
| Temperature/Humidity Sensor: Platinum Resistance PT100Ω/MV | ||||||
| Heating System: Independent system, nickel-chromium alloy electric heater | ||||||
| Spray System: Tower-type spray device with non-crystallizing nozzle (finer and more uniform particles) | ||||||
| Spray Time: 1~99 (S, M, H) with adjustable cycle | ||||||
| Salt Solution Collection: Equipped with standard funnel and graduated cylinder | ||||||
| Chamber Material: Imported high-strength, high-temperature and corrosion-resistant PP plate | ||||||
| Inner Tank Material: Imported high-strength, high-temperature and corrosion-resistant PP plate | ||||||
| Chamber Cover Material: Imported high-strength transparent PVC plate / Imported high-strength, high-temperature and corrosion-resistant PP plate | ||||||
| Other Accessories: All made of stainless steel, copper or anti-corrosion/high-temperature resistant materials | ||||||
| Standard Accessories: 1 round bar sample rack, 1 V-type sample rack, 2 nozzles, 2 sets of funnels and graduated cylinders | ||||||
| Safety Protection | Leakage, short circuit, over-temperature, water shortage, test completion, over-current protection / controller power-off memory | |||||
| Power Supply | AC220V±10% 50Hz | AC380V±10% 50Hz | ||||
| Ambient Conditions | Temperature: 5℃~+30℃, Humidity: ≤85% R·H | |||||
| Optional Materials | 1. PP plate; 2. Fiberglass (resin composite material); 3. 2507 stainless steel corrosion-resistant plate | |||||
Ready-to-Use Standard Solutions
Our complete standard product line covers most common testing demands. Contact us to find your matching model.
Stable Spray and Test ConditionsDesigned to support consistent corrosion simulation and repeatable test results.
Corrosion-Resistant Chamber StructureChamber materials and structure are selected for corrosive test environments.
Suitable for Multiple Sample TypesCan be used for metals, coatings, plated parts, fasteners, and product components.
Standard and Advanced Test OptionsSalt spray and cyclic corrosion options support different testing depths.
Custom Engineering AvailableChamber size, sample rack, spray system, and cycle configuration can be customized.
Our equipment is manufactured with strict quality control and tested before delivery to ensure dependable operation and long service life.
Certifications and Standards
We focus on compliance, quality, and testing reliability. Selected products meet relevant certification and testing requirements.
Frequently Asked Questions
- How do I choose between a salt spray chamber and a cyclic corrosion chamber?Salt spray chambers are suitable for standard salt spray testing, while cyclic corrosion chambers are used for more complex corrosion cycles involving spray, humidity, drying, or temperature changes.
- Can sample racks be customized?Yes. Sample rack size, angle, structure, and loading method can be customized according to sample shape and test requirements.
- Can the chamber be configured according to test standards?Yes. We can recommend configuration options according to the required test method and applicable standard.


























