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This product uses fluorescent UV lamps, combined with temperature and humidity device to simulate the material decline in color, brightness, strength and cracking, spalling, powder, oxidation damage via the high temperature sun light (UV), high humidity,
MoreFor over a century, Atlas Instruments has revolutionized the science of weathering testing. The all-new Atlas Ci4400 Weather-Ometer® is the most advanced instrument yet, offering ease of operation, unmatched uniformity, increased capacity, and a sleeker d
MoreIn modern science and industry, material aging testing is a critical step in ensuring product quality and service life. With the advancement of technology, a wide range of new materials are constantly emerging, and their durability and stability in variou
MoreThe UV Protection Factor (UVPF) accurately assesses the effectiveness of sunscreens at different UV intensities, ensuring that the products we choose provide adequate sun protection.
MoreMany materials lose their ability to withstand atmospheric contaminants when overexposed to UV radiation. UV lamps are used to mimic specific subsets of the solar spectrum's wavelengths.
MoreCarbon Arc Weathering Tester uses a carbon arc lamp to generate intense ultraviolet and visible light radiation, simulating the aging process of surface materials or coatings in natural sunlight.
MoreA chiller is a device that removes heat from a liquid coolant using vapor compression, adsorption refrigeration, or absorption refrigeration cycles.
MoreXenon arc weathering testers, also known as xenon arc test chambers, use a long-arc xenon lamp (covering the full solar spectrum) as a light source to simulate
MoreUV aging test chambers use fluorescent UV lamps as light sources, simulating the ultraviolet radiation and condensation found in natural sunlight to conduct accelerated weathering tests on materials and obtain weatherability results.
MoreRubber ozone aging is the deterioration of rubber in the atmosphere. Ozone is a significant factor. Ozone aging first occurs on the surface, particularly at stress concentrations or at the interface between compounding agent particles and the rubber
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