Accelerated Aging Test Chamber

The accelerated aging test chamber simulates environmental conditions such as light, temperature, and humidity, causing materials to exhibit the effects of long-term natural aging in a short period. It is used to evaluate the weather resistance and service life of materials such as coatings and plastics, and is commonly employed in product quality control and research and development testing.
Selection
When selecting an accelerated aging test chamber, it is important to consider factors such as the type of light source and its match with the solar spectrum, the precision of temperature and humidity control, sample capacity and uniformity, the corrosion resistance of the equipment materials, and compliance with relevant testing standards. The appropriate specifications should be determined based on the actual materials being tested and the available budget.

Terms

Standards

Instruments

300W yellowing resistant bulb provides 365-400nm wavelength ultraviolet, Temperature Uniformity +/- 1 ℃, can simulate the atmospheric environment accelerated testing, one machine multi-purpose support aging Oven function.

$ 1272.00

Adopt high temperature and low noise motor and multi-leaf centrifugal wind turbine, Temperature Uniformity +/- 2 ℃, equipped with low speed turntable, support 3~ 100 times/h ventilation volume adjustment, to meet a variety of aging test needs.

$ 4463.00

Using electric heating wire to achieve rapid and uniform heating, equipped with 360 degree swirl/spin sample holder and imported concentration Analyzer, support 10-1000PPhm ozone concentration range, temperature fluctuation is only +/- 0.5 ℃.

$ 12015.00

Using electric heating wire to achieve rapid and uniform heating, equipped with 360 degree swirl/spin sample holder and imported concentration Analyzer, support 10-1000PPhm ozone concentration range, Temperature Fluctuation control within +/- 0.5 ℃.

$ 16017.00

The heating wire is used to achieve rapid heating, the temperature fluctuation is only +/- 0.5 ℃, equipped with 360 degree swirl/spin sample holder and imported concentration Analyzer, supports dynamic static test mode, and meets a variety of test needs.

$ 14419.00

Using heating wire and PT100 temperature transducer, Temperature Fluctuation +/- 0.5 ℃, support 0~ 999H light time setting, 360 degree swirl/spin sample holder and imported concentration Analyzer to ensure test accuracy.

$ 11369.00

Temperature range RT + 10~ 300 ℃, Temperature Uniformity +/- 1 ℃, using stainless steel liner and forced circulation system, with automatic ventilation function, ventilation 8~ 20 times/hour adjustable, suitable for material aging test.

$ 8755.00

Using electric heating wire to achieve rapid and uniform heating, equipped with 360-degree swirl/spin sample holder and 12-16mm/s gas flow rate, support 0-9999 hours time setting, with leakage overtemperature multiple safety protection.

$ 13209.00

High Accuracy PID control technology, temperature fluctuation +/- 0.5 ℃, equipped with independent ozone concentration controller long-term stable non-drift, support static tensile specimen and program operation mode.

$ 13128.00

Imported stainless steel liner and independent ozone concentration controller, temperature control accuracy of +/- 0.5 ℃, equipped with static tensile fixture and rotational speed adjustable sample rack, support long-term stable operation.

$ 10643.00

The 300W OSRAM bulb provides 365-400nm wavelength UV, Temperature Uniformity +/- 1 ℃, can be tested for yellowing resistance and aging at the same time, and the turntable Rotation speed 10 +/- 2rpm ensures uniform sample irradiation.

$ 1143.00

Adopt stainless steel liner and hot air circulation system, Temperature Uniformity +/- 2 ℃, ventilation time 3min-100h adjustable, equipped with low speed turntable and multiple safety protection devices.

$ 4850.00

Adopt silent ozone generator and UltravioletDetector, ozone concentration control accuracy +/- 2pphm, support static tensile and dynamic tensile test, Temperature Uniformity ≤ 2 ℃ to meet a variety of test conditions

$ 8529.00

Temperature control accuracy of +/- 0.5 ℃, Temperature Uniformity adjustable 0~ 200 times/hour, support multi-stage Program setting and automatic diagnosis function, liner made of stainless steel for easy cleaning.

$ 1658.00

Temperature range RT + 20~ 250 ℃, Fluctuation +/- 0.5 ℃, equipped with low speed swirl/spin turntable to ensure test uniformity, support multi-stage programmable control and ventilation regulation, easy data recording and fault diagnosis.

$ 2447.00

Articles

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The high-temperature aging test chamber accelerates the physical and chemical changes within electronic components by simulating high-temperature environments, thereby predicting their long-term performance and failure modes.
Xenon lamp aging test chamber for testing film weather resistance.
This article introduces how a xenon lamp weathering test chamber tests the weatherability of films. It uses a xenon lamp to simulate sunlight and controls conditions such as temperature and humidity to accelerate the aging process of the film, thereby evaluating its performance changes in outdoor environments.
Xenon lamp aging test chamber evaluates the long-term outdoor performance of resins.
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Xenon lamp aging test chamber for testing coating weatherability.
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Xenon lamp aging test chamber for testing the weather resistance of exterior wall coatings.
Xenon lamp aging test chambers accelerate the aging of exterior wall coatings by simulating environmental conditions such as sunlight, temperature, humidity, and rainfall, to evaluate their weather resistance. The tests are conducted in accordance with standards such as ISO and ASTM, controlling key parameters such as irradiance, temperature, humidity, and spray cycles.
UV aging test chambers are used for the aging evaluation of polymer materials.
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Application of Xenon Lamp Aging Test Chambers in Material Weathering Testing
The xenon lamp aging test chamber utilizes xenon arc lamps to simulate sunlight, combined with temperature, humidity, and spray conditions, to accelerate the aging process of materials. It is primarily used to evaluate the weather resistance of non-medical materials such as coatings, plastics, and textiles, helping to predict product lifespan.