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Radiation Detector Radiation Detector Electromagnetic Telepole Radiation Detector

Radiation Detector Radiation Detector Electromagnetic Telepole Radiation Detector

environmental chamber

custom environmental chambers

environmental control chamber

Place of Origin:

CHINA

Brand Name:

YU YANG

Certification:

CE

Model Number:

YY0014

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Request A Quote
Product Details
Product Name:
Radiation Detector Radiation Detector Electromagnetic Telepole Radiation Detector
Outside Dimensions:
1350×540×1480
Illumination And Condensation Cycle Mode:
Can Be Independently Controlled Or Alternately Cycled
Center Distance Between The Lamps:
70mm
Temperature Range:
RT+20℃~70℃
OOperating Voltage:
220v
Lamp Power & Length:
40W/Piece, 1200mm/Piece
Protection Level:
IPX4
Safety Protection Devices:
Short - Circuit Protection
Highlight:

environmental chamber

,

custom environmental chambers

,

environmental control chamber

Payment & Shipping Terms
Minimum Order Quantity
1pcs
Price
Negotiable
Packaging Details
Wooden Box
Delivery Time
7-30 Days
Payment Terms
L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability
5 Pcs Per Month
Product Description

Radiation Detector Radiation Detector Electromagnetic Telepole Radiation Detector

Radiation Detector Radiation Detector Electromagnetic Telepole Radiation Detector 0

 

Description:

 

Our UV Aging Test Lamp is designed to conduct comprehensive aging tests on non - metallic materials. It is perfect for materials used in the furniture, sports equipment, and marine industries. The lamp is made of corrosion - resistant materials and can generate UV light to simulate real - world sunlight exposure. It can cause the tested materials to show signs of degradation, including color fading, cracking, and brittleness, allowing for a better understanding of the material's performance under outdoor conditions. 

 

Design criteria:

 

(1) ASTM D4587: Standard Practice for Fluorescent UV-Condensation Exposures of Paint and Related Coatings

(2) ASTM D4799: Standard Practice for Accelerated Weathering Test Conditions and Procedures for Bituminous Materials (Fluorescent UV, Water Spray, and Condensation Method)

(3) ISO 4892-1: Plastics - Methods of Exposure to Laboratory Light Sources - Part 1: General guidance

(4) ISO 4892-3: Plastics - Methods of Exposure to Laboratory Light Sources - Part 3: Fluorescent UV Lamps

(5) ASTM D4329: Standard Practice for Fluorescent UV Exposure of Plastics

(6) AATCC TM186: Weather Resistance: UV Light and Moisture Exposure

 

Control System:

Employs a black - hued aluminum plate to connect with the temperature sensor, and a black - board temperature gauge is used for heating regulation, thus ensuring a more stable temperature level.

The radiometer probe is firmly attached to avoid the repeated process of installation and disassembly. A special UV irradiometer with high - precision display and measurement features is used to

monitor the radiation quantity. The radiation intensity does not go beyond 50W/m². The illumination and condensation functions can be controlled separately or in an alternating, circular sequence.

 

 

Specifications:

 

Standard specimen size 75×290mm/24 pieces
Power 1 phase, 220V/50Hz /±10% 5KW
blackboard temperature range room temperature 30 ℃ ~ + 80 ℃
Irradiation black panel temperature 50℃~70℃
Material: Stainless Steel
Lifetime of lamp 1600Hours
Lamp power & length 40W/Piece, 1200mm/Piece

 

 

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FAQ

1. What types of industries benefit the most from using an ultraviolet aging test chamber?*

Industries such as automotive, where exterior components are constantly exposed to sunlight and weather, greatly benefit. The electronics industry also uses it to test the durability of components in outdoor - installed devices. Textile and footwear industries can assess the colorfastness and material strength under UV exposure. Moreover, the construction and packaging industries rely on it to ensure the longevity of their products.

2. How does temperature impact the aging process in the ultraviolet aging test chamber?*

Temperature can significantly influence the rate of aging. Higher temperatures generally accelerate chemical reactions and physical changes in materials when combined with UV radiation. Different materials have different optimal temperature ranges for accurate aging simulation. So, setting the appropriate temperature according to the material being tested is vital for obtaining valid results.

3. Are there any limitations to using an ultraviolet aging test chamber?

 Although it is a powerful tool, it has some limitations. It can only simulate certain aspects of real - world exposure, and not all environmental factors can be fully replicated. Also, the accelerated aging process may not always perfectly match the natural aging behavior of materials over extremely long periods. Additionally, the test results may vary depending on the specific model and calibration of the chamber. prevent overheating and potential damage to the equipment.ely simple operation interfaces, it's still advisable to receive proper training. Understanding how to set the correct test parameters, handle the materials during testing, and interpret the results accurately is crucial. Specialized training can also help in troubleshooting common issues and ensuring the safe and efficient operation of the chamber.ound the world in the near future.

 

 

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