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Vibration Shaker and Simulated Transportation Tester

Xenon lamp test chamber for accelerated aging of coatings

A xenon arc coating accelerated aging test chamber is a specialized piece of equipment designed to simulate the long-term effects of sunlight and weathering on coated materials. This advanced tool is ...

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Description

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A xenon arc coating accelerated aging test chamber is a specialized piece of equipment designed to simulate the long-term effects of sunlight and weathering on coated materials. This advanced tool is instrumental in assessing the durability, colorfastness, and overall performance of coatings used in various industries. By replicating real-world environmental conditions, these chambers help ensure that coated products meet stringent quality and reliability standards.

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Xenon arc coating accelerated aging test chambers are widely used across multiple industries to evaluate the weathering resistance of coated materials. In the automotive industry, they test the durability of paint coatings, ensuring they withstand prolonged exposure to sunlight and harsh weather conditions. The construction industry utilizes these chambers to assess the longevity of exterior coatings, such as paints and sealants, under various climatic stresses. In the aerospace sector, the chambers evaluate the performance of coatings used in extreme environmental conditions. Additionally, the consumer goods industry employs these chambers to test the durability of coatings on products ranging from electronics to furniture, ensuring they maintain their aesthetic and functional properties over time.

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1. Precise UV Simulation: Xenon arc lamps accurately replicate the UV spectrum of natural sunlight, providing precise simulation of outdoor exposure conditions specific to coated materials.
2. Controlled Environmental Parameters: The chamber offers precise control over temperature, humidity, and light intensity, enabling the creation of various weathering scenarios tailored to coated applications.
3. Uniform Light Distribution: Advanced optical systems ensure uniform light distribution across the test samples, providing consistent exposure and accurate test results for coated materials.
4. Dynamic Weathering Cycles: The chamber can simulate complex weathering cycles, including variations in light intensity, temperature, and humidity, replicating real-world environmental conditions encountered by coated products.
5. User-Friendly Interface: Equipped with an intuitive control panel or advanced software interface, users can easily set, monitor, and adjust testing parameters, enhancing the efficiency and accuracy of the testing process.
6. Comprehensive Data Logging: The chambers include comprehensive data logging capabilities, enabling real-time monitoring and post-test analysis of environmental conditions and coating performance.

7. Accelerated Testing: The chamber accelerates the weathering process, providing quick and accurate assessments of the durability and colorfastness of coatings, crucial for product development and quality control.

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Xenon arc coating accelerated aging test chambers meet industry-specific weathering test standards, ensuring regulatory compliance and facilitating material certification. Key standards include:


- ISO 11341: Paints and varnishes — Artificial weathering and exposure to artificial radiation — Exposure to filtered xenon-arc radiation
- ASTM G155: Standard Practice for Operating Xenon Arc Light Apparatus for Exposure of Non-Metallic Materials

- SAE J1960: Accelerated Exposure of Automotive Exterior Materials Using a Controlled Irradiance Xenon-Arc Apparatus

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Working Principle

Xenon arc coating accelerated aging test chambers operate on the principle of accelerated weathering. They employ xenon arc lamps to generate intense, full-spectrum UV light that closely matches natural sunlight. The chamber's control system regulates temperature, humidity, and light intensity to create specific weathering scenarios relevant to coated materials. High-precision sensors continuously monitor the internal conditions, and a sophisticated feedback control system adjusts the settings to maintain the programmed environment. The chamber's advanced optical systems ensure uniform light distribution, providing consistent exposure across the test samples.


Product Functionality
1. Weathering Simulation: The chamber simulates long-term outdoor exposure by accelerating the weathering process, providing quick and accurate assessments of the durability and colorfastness of coatings.
2. Environmental Cycling: Dynamic control over temperature, humidity, and light intensity enables the simulation of complex weathering cycles, replicating real-world environmental conditions encountered by coated products.
3. Data Logging and Analysis: Comprehensive data logging capabilities enable real-time monitoring and post-test analysis, providing detailed reports and insights into the behavior of coatings under different conditions.

4. User Interface: An intuitive control panel or software interface allows for easy setup, monitoring, and adjustment of testing parameters, enhancing the efficiency and accuracy of the testing process for coated materials.


Design Considerations
1. Chamber Size and Configuration: Select the appropriate chamber size and configuration based on the testing requirements and the size and shape of the coated materials to be tested, ensuring all components can be adequately assessed.
2. Light Source Selection: Choose xenon arc lamps that accurately replicate the UV spectrum of natural sunlight, ensuring precise simulation of outdoor exposure conditions specific to coated materials.
3. Environmental Control: Design the chamber to provide precise control over temperature, humidity, and light intensity, enabling the creation of various weathering scenarios tailored to coated applications.
4. Optical Systems: Incorporate advanced optical systems to ensure uniform light distribution across the test samples, providing consistent exposure and accurate test results for coated materials.

5. Safety Features: Integrate built-in safety mechanisms, such as UV protection and automatic shut-offs, to ensure the safe operation of the chamber under extreme conditions, protecting both the equipment and the users.


In conclusion, a xenon arc coating accelerated aging test chamber is an essential tool for evaluating the durability and performance of coated materials under various environmental conditions. Its precise UV simulation, controlled environmental parameters, and comprehensive data logging capabilities make it invaluable for ensuring the quality and reliability of coated products. By adhering to key industry standards, the chamber ensures regulatory compliance and facilitates material certification, providing a competitive edge in the market.

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1. Internal Dimension (W*D*H): 700*500*600mm

2. External Dimension (W*D*H): 1350*1300*1850mm

3. Internal chamber material: SUS 304 # Stainless Steel, anti-rust

4. External chamber material: Cold-rolled steel with spray

5. Chamber humidity range: 55%~90% RH

6. Chamber temperature : 35℃~90℃

7. Black panel temperature: 45℃~95℃, adjustable

8. Temperature uniformity: ≤±3℃

9. Filter: Window glass filter / daylight filter

10. Light source: Air cooled long arc xenon lamp

11. Xenon lamp power: 1.8KW * 3pcs = 5.4KW

12. Irradiance strength: 0.51W/m2@340nm

13. Control system: LCD programmable controller

14. Auto display irradiance, capacity: 100 groups program, 99 cycles.

15. Illumination time: 1~999 hours, adjustable

16. Water spray system: Water spray time 999 minutes settable

17. Interval spray time, 1~240 minutes settable

18. Sample holder: Stainless steel, 1pc

19. holder to lamp : 250~300mm

20. Heating: Nickel-chromium alloy electric heater

21. Humidification power: Stainless steel surface evaporative humidifier

22. Insulation materials: Supper fine glass fiber

23. Temperature sensor: PT100 high precision sensor

24. Air circulation system: Stainless steel centrifugal rotor vane to improve the uniformity of temperature and humidity

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