It may replicate damage caused by the sun, heat, moisture, and spray in an accelerated weathering xenon lamp aging chamber. This chamber adopts xenon arc lamp.
Textiles, dyes, leather, plastics, paints, coatings, automobile interior components, electronics, color construction materials, and more all benefit from weather meter xenon weathering test chambers. To put it through its paces in the weathering, colorfastness, age, hardness, softness, and cracking departments.
What are xenon arc lamps?
An electric light that generates light by conducting electricity through ionized xenon gas while it is under high pressure is called a xenon arc lamp. This highly specialized form of the gas discharge lamp is also known as an electric light.
It generates a brilliant white light that is meant to resemble sunshine and has usage in movie projectors used in cinemas, searchlights, and for specific applications in industry and research. As an example, Xenon arc lamps and mercury lamps are the two types of lamps that are used the most often in wide-field fluorescence microscopes.
Xenon Aging Test Chamber
The purpose of the xenon aging test chamber is to evaluate the product after it has been exposed to light, wind, and any other kind of environmental change. This age tester is used mostly to examine non-ferrous, organic, rubber, and plastic materials and construction supplies.
Xenon lamp aging chamber simulated under varied environmental circumstances, the material is subjected to changes in sunlight created for product development and quality control to give the right environment for simulation and acceleration test. Xenon lamp aging chamber XD-80LS It can provide the user with data to analyze the goods’ attributes and performance to improve product quality.
Importance
During scientific study and product development, the weathering test is an essential step to get optimal results for the product’s composition. Inspecting the quality of the product is also an essential component of this process. Coatings, plastics, aluminum-plastic plates, and vehicle safety glass manufacturers are a few examples of businesses that are obliged to do this weather ability test.
Applications:
The Xenon lamp aging chamber, with its Advanced Digital Control Systems, represents a Monumental Achievement in Applying Digital and Optical Technologies in Easy-to-Use Laboratory Weathering Instruments. The xenon lamp aging, with its Advanced Digital Control Systems, Numerous original equipment manufacturers (OEMs) in the plastics, paints, coatings, and textiles sectors have given the Series its stamp of approval as the only platform that can offer accurate, reproducible, and repeatable results when it comes to estimating service life. The Series has approved compliance with the CE, UL, CSA, ISO, and EN standards.
It may evaluate xenon lamp aging tests the color fastness and aging resistance of textiles, plastics, and rubber goods or materials with the use of a chamber by exposing them to circumstances that are designed to replicate those found in nature (daylight, rain, temperature, and humidity, etc.). Rack sprays and a long-arc xenon lamp are used inside the room to recreate the natural environment’s light and dark cycles as well as the climatic characteristics.
A xenon arc lamp serves as the primary illumination source in the xenon lamp aging chamber XD-80LS. It is used for the research of weathering and accelerated aging tests by carefully simulating circumstances that are like those found in the natural environment.
LISUN provides the best xenon chambers for testing.
Features:
The Series is outfitted with a brand new, industry-changing xenon light cooling technology that makes a significant dent in the quantity of cooling water used.
Programs and simple preprogrammed test and operation page icons are clear and easy to understand; Irradiation, temperature, and humidity programmable step-by-step change to meet the various user test requirements.
Intelligent and user-friendly operating system – user-friendly LCD touch interface, full-featured, may pick from a number of languages; water purity indicator can check the input water quality The use of Smart Light Monitors guarantees that the light has been set up appropriately.
Irradiance closed-loop monitoring and automated adjustment are both able to be calibrated on a regular basis using a device called an irradiance calibration device. The radiation calibration instrument has to have a certificate from CNAS, A2LA, or JAB in addition to any other international mutual recognition body. The calibration device’s calibration mechanism has to have an ISO 17025 certificate.
The digitally controlled, continuously monitored, and automatically regulated light intensity is ideal for a wide range of light source stability tests.
Rather than relying on the conventional electricity source, technologies that convert light into energy may be used for detection and wireless transmission.
Full-color 10.4-inch screen makes it simple to read and navigate via many test-monitoring modes (including animation, digital, and graphical representations).
Because of the way the sample holders are timed, several different tests may be carried out on the same machine at the same time.
Reduced operational expenses thanks to the professional water circulation system.
A system designed to regulate the temperature in an industrial setting can do it both fast and smoothly.
An ultrasonic humidifier and a professional dehumidification system are necessary to maintain consistent and exact humidity levels.
We can considerably lessen our environmental impact by including air filtration and self-circulation systems.
Accessories
Explain working principle
The xenon lamp aging chamber XD-80LS is used to imitate weather conditions such as sunlight exposure, rain, and dew condensation to assess the endurance of materials in light and moist environments. Xenon lamp aging test equipment offers a simulated accelerated test material aging light and moist environment, may vary the light intensity to create an accelerated test effect, light intensity and various wavelengths will impact the performance stability of the material. The xenon lamp aging test equipment’s basic operation is broken down below for your perusal and comprehension.
The xenon lamp aging test apparatus is designed to imitate the effects of light, temperature, and humidity on the test materials. This is the fundamental operating concept of the apparatus. PID+SS R is responsible for controlling the intensity of the light as well as the temperature and humidity. The employment of fluorescent lamps, halogen lamps, and other sources of brilliant light will, amongst other things, produce photodegradation of many different things over time. This will cause a lot of things to deteriorate.
The damaging light wave in sunlight, such as UV visible and infrared light, is the primary focus of the Xenon lamp aging test equipment employed by the light. The irradiation level within the container is comparable to that of a setting illuminated by bright sunlight throughout the summer.
It can break down the operation of xenon lamp aging test equipment into two parts that work in tandem with one another. The first part is designed to evaluate the photodeterioration of the sample. In contrast, the second part is intended to affect the sample being evaluated by increasing the amount of moisture present and spraying water over it. The primary goal of the photodegradation test is to speed up the natural aging process of the sample material by increasing the amount of light exposure it receives.
Additionally, the material may be affected by humidification or water spray. The material will sustain a greater amount of wear and tear if it has a larger percentage of moisture. It is well knowledge that high levels of humidity have a detrimental impact on the material’s resistance to the elements and their colorfastness.
It may use xenon lamp aging test equipment to select new materials, improve current materials, or evaluate the change in the material’s durability after the composition of the material has been altered. The apparatus exposes the samples to several wavelengths of light (including ultraviolet, visible, and infrared) to determine how well they can withstand the effects of illumination.
The xenon lamp aging chamber uses filtered xenon arc lamps to produce a full sunlight spectrum that is a good match to sunlight. This is a useful method for testing the sensitivity of products to the longer wavelengths of ultraviolet and visible light that are present in sunlight that passes through glass.
Cooling System:
The xenon light aging chamber’s multi-wing vigorous air circulation blower ensures that the test area’s temperature and humidity are uniformly distributed.
The air pressure and wind speed used in the construction of air ducts for return air are both by testing regulations and will allow the door to swing open as soon as the temperature and humidity stabilize.
We have a fully separate system for heating, cooling, and humidification. As a result, it’s possible to boost productivity, cut down on testing expenses, extend product life, and decrease the likelihood of product failure.
Irradiation Control System:
Light source: Full air-cooled solar spectrum long-arc xenon lamp.
Full illumination control: A xenon lamp radiation intensity and Control instrumentation comprising a control loop closed loop adjustment can modify xenon lamp radiation intensity flexibly.
Radiation measurements: Optical fiber transmission to prevent fluctuations in interior temperature and humidity impacts the precision of radiation measurements.
The ultraviolet radiation sensors: It may be necessary to adjust the lamp because of its advanced age or any other light energy changes brought on by time.
Tired reminder: When radiation reaches a specified bulb life, it is possible to monitor it or have the system automatically remind users to replace the lamp when it reaches a certain level. The software system increases when irradiated with weary characteristics. System power does not affect the outcome of tiredness.
The optical filter system: Borosilicate and soda lime glass, adjusting the right kind and amount of filter sheet for the test at hand; using infrared, ultraviolet, and glass windows and other characteristics, specific optical glass filters are used to simulate the inside and outside solar radiation environment.
FAQs
Why do we test deuterium lamps in a xenon aging chamber?
Each year, aging costs society hundreds of millions of dollars. Changes in color, gloss, strength, cracking, peeling, chalking, and oxidation is just some of the physical alterations that time may wreak on fabrics, coatings, plastics, and other organic substances. We know that direct exposure to sunshine, particularly short-wavelength UV radiation, high temperatures, precipitation, condensation, and high humidity, are the primary causes of the problems above.
The following describes the function of an aging test chamber for Xenon lamps:
Why does it matter if we speed up the aging process in the lab? Why is it preferable to natural light exposure?
The time and money required to conduct a natural aging test to identify an item’s age are prohibitive for the ordinary business, particularly considering how quickly today’s products need to be developed to keep up with the market. Also, since local climates are always changing, the same material subjected to testing may provide vastly different aging findings, making it difficult to reliably generalize from experiments.
Lab equipment that artificially accelerates aging is popular because it may use for quality control, material stability testing, and fast comparison and screening studies without sacrificing test duration or reproducibility. Furthermore, this technique may be used in a variety of contexts. This is because it is only employed in enclosed spaces, where the effects of natural elements like temperature and humidity are negligible compared to human causes. It’s simple to use and offers a lot of precision.
Lisun Instruments Limited was found by LISUN GROUP in 2003. LISUN quality system has been strictly certified by ISO9001:2015. As a CIE Membership, LISUN products are designed based on CIE, IEC and other international or national standards. All products passed CE certificate and authenticated by the third party lab.
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