xenon lamp weather aging test chamber

xenon lamp weather aging test chamber

448005.0 INR/Unit

Product Details:

  • Operating Voltage AC 220V/50Hz
  • Temperature RT +10C to 70C (programmable)
  • Mounting Type Floor Standing
  • Equipment Type Xenon Lamp Weather Aging Test Chamber
  • Humidity 30% - 98% RH Adjustable
  • Measuring Range 0~1200 W/m2 xenon irradiance
  • Number of Specimens 12 Standard Specimen Holders
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xenon lamp weather aging test chamber Price And Quantity

  • 448005.0 INR/Unit
  • 1 Unit
  • 1.8 kW
  • Leakage, Over-temperature, Over-current, Water Shortage
  • 500 Liters
  • Data Log up to 1000 results
  • Powder-coated Steel
  • 1500 hours (typical)
  • Anodized Aluminum
  • Air-cooled or Water-cooled
  • Air-cooled xenon arc lamp
  • 0~999h adjustable
  • Programmable, 0~999min
  • Included (BPT 40C~110C)
  • SUS 304 Stainless Steel
  • Automatic/Manual
  • 290 nm 800 nm

xenon lamp weather aging test chamber Product Specifications

  • Material aging and durability tests
  • Customizable
  • AC 220V/50Hz
  • Adjustable
  • RT +10C to 70C (programmable)
  • Xenon Lamp Weather Aging Test Chamber
  • Floor Standing
  • 30% - 98% RH Adjustable
  • Standard 300 mm
  • 0~1200 W/m2 xenon irradiance
  • 12 Standard Specimen Holders
  • LCD Color Touchscreen
  • Touchscreen PLC Automatic Control
  • 0.6 MPa (Required for air cooling)
  • Aging resistance, weather simulation, lightfastness testing
  • Xenon Arc Spectrum UV to IR
  • AC 220V 10%/50Hz
  • 50 x 150 mm (standard)
  • Fully Automatic
  • 50Hz
  • USB/RS232
  • 0.5C (Temperature), 2%RH (Humidity)
  • 50 mm standard
  • Programmable Timer, Over-temp Protection, Water Level Alarm, UV Sensor, Data Logger
  • About 350 kg
  • Standard Chamber Port
  • 0.1C, 0.1%RH
  • About 1750 mm
  • Immediate (sensor-based)
  • 1.8 kW
  • Leakage, Over-temperature, Over-current, Water Shortage
  • 500 Liters
  • Data Log up to 1000 results
  • Powder-coated Steel
  • 1500 hours (typical)
  • Anodized Aluminum
  • Air-cooled or Water-cooled
  • Air-cooled xenon arc lamp
  • 0~999h adjustable
  • Programmable, 0~999min
  • Included (BPT 40C~110C)
  • SUS 304 Stainless Steel
  • Automatic/Manual
  • 290 nm 800 nm

xenon lamp weather aging test chamber Trade Information

  • Cash in Advance (CID)
  • 100 Unit Per Month
  • 6 Days
  • All India

Product Description

xenon lamp weather aging test chamber Standard Features

Model

DR-H301

Internal dimension (WxDxH)

500*600*500mm

External dimension (WxDxH)

1000*1000*1750mm

Temperature range

RT+10~ 60 (suggest to use 402)

Temperature Fluctuation

1

Ozone concentration

50~1000 pphm, adjustable

Ozone concentration deviation

10%

Sample holder

SUS#304 stainless steel

Temperature controller

Programmable touch screen controller

Ozone concentration analysis

Concentration analysis meter

Ozone generator

High pressure silence discharge type

Protection system

Leakage, short circuit, over temperature, over heat

Test criteria

ASTM D1149, ISO 1431, JIS K6259...

Xenon lamp weathering test chamber is a device specifically designed to simulate climate conditions such as light, temperature, humidity, and rainfall in natural environments, in order to accelerate the aging of materials and products. It simulates the solar spectrum by using xenon lamps and conducts accelerated aging tests on materials in combination with changes in various environmental factors to evaluate their durability and weather resistance in actual use environments. The following is a detailed introduction to the xenon lamp weathering test chamber:
1. Working principle
The core component of the xenon lamp weathering test chamber is the xenon lamp, which can emit light that is very close to the solar spectrum, including ultraviolet (UV), visible light, and infrared (IR). By controlling parameters such as light intensity, temperature, humidity, and rainfall, the test chamber can simulate various natural environmental conditions, thereby accelerating the aging process of materials.
2. Main functions
one:Spectral simulation: The spectrum emitted by xenon lamps is very close to the solar spectrum, and can simulate the effects of ultraviolet, visible, and infrared light.
two:Temperature control: The temperature inside the test chamber can be controlled within a certain range, usually from -40 to 150 (the specific range depends on the equipment model).
three:Humidity control: The humidity range is usually 20% to 98%, which can simulate various environmental conditions from dry to high humidity.
four:Rainfall simulation: Equipped with a water spray system, it can simulate the impact of rainwater on materials, including special environments such as acid rain.
five:Light intensity control: The light intensity can be adjusted to meet different testing needs.
six:Irradiance control: Some advanced models of test chambers can accurately control irradiance to simulate lighting conditions in different geographical locations and seasons.
seven
Cyclic testing: Different cyclic testing programs can be set up to simulate the aging process of materials under different time periods and climatic conditions.
3. Application Fields
Xenon lamp weathering test chamber is widely used in the following fields:
Materials Science: Used to test the weather resistance of various materials such as polymers, coatings, leather, fibers, plastics, rubber, etc.
Chemical industry: used to test the weather resistance of chemical drugs such as dyes, rubber additives, preservatives, etc.
Textile: Used to test the weather resistance of fibers and fabrics.
Electronics: Used to test the weather resistance of electronic products such as mobile phones, tablets, etc.
Architecture: Used to test the weather resistance of building materials such as paint, coatings, cement, etc.
Automotive: Used to test the weather resistance of automotive exterior components such as paint, plastic parts, rubber parts, etc.
Aviation: used to test the anti-aging capability of aircraft external materials (such as wing skin, coating, etc.).
4. Technical features
one:High precision light source: High quality xenon lamps are used as the light source to ensure the stability and accuracy of spectral output.
two:Advanced control system: equipped with high-precision temperature and humidity controllers and illuminance sensors to achieve precise control of the test environment.
three:Safety protection measures: The equipment is equipped with multiple safety protection devices, such as over temperature protection, overload protection, leakage protection, etc.
four:Easy to operate and maintain: The design of the test chamber is simple and intuitive, easy to operate, and easy to maintain on a daily basis.
five:Ventilation and cooling device: The temperature ventilation and cooling system of the test chamber is automatically controlled by the temperature control box.
six:Rain system: The rain system of the equipment consists of a water pump, time relay, nozzle, etc., and the spraying cycle can be adjusted.
seven:Irradiance control: Some advanced models of test chambers can accurately control irradiance to simulate lighting conditions in different geographical locations and seasons.
5. Selection Guide
Choosing a suitable xenon lamp weathering test chamber requires consideration of the following factors:
one
Testing standards and requirements: Determine the industry standards and testing parameters that need to be followed.
two
Light source type and spectral matching: Select a xenon lamp with appropriate spectral output.
three
Temperature and humidity control: Ensure that the temperature and humidity control range of the test chamber meets the testing requirements.
four
Sample capacity and size: Select the appropriate test chamber based on the number and size of samples.
five
Control system and user interface: Select a test chamber with advanced control system and user-friendly interface.
six
Security and Maintenance: Choose a test chamber with multiple security measures and easy maintenance.
seven
Brand and after-sales service: Choose a reputable brand and understand its after-sales service policy.
eight
Budget and cost-effectiveness: Choose a test chamber with high cost-effectiveness based on the budget.
6. Cooling method
The cooling methods of xenon lamp weathering test chamber mainly include water cooling and air cooling:
Water cooling: Suitable for high-power, high load, and high heat application scenarios, it has high cooling efficiency and stability, but the system is complex and requires high maintenance.
Air cooling: suitable for applications with low to medium power and load, with a simple structure and easy maintenance, but relatively low cooling efficiency and high noise.


Precise Aging Simulation for Material Testing

Replicating the damaging effects of sunlight, temperature, humidity, and rain, the xenon lamp weather aging test chamber provides accurate environmental simulation. Through its wide wavelength range (290-800 nm) and programmable test parameters, the chamber ensures comprehensive performance analysis for plastics, coatings, textiles, and more.


Intelligent Control & Data Management

With a PLC touchscreen and advanced automation grade, users enjoy precise control over testing conditions, speed, and duration. The chamber's data logger stores up to 1000 results and supports both USB and RS232 interfaces for effortless data export and management.


Durable Construction & Safety Features

Manufactured using SUS 304 stainless steel and powder-coated steel, the chamber provides excellent durability and resistance to corrosion. Multiple safety protections-such as over-temperature, leakage, and water shortage alarms-ensure safe and reliable operation throughout extended test cycles.

FAQ's of xenon lamp weather aging test chamber:


Q: How does the xenon lamp weather aging test chamber simulate environmental conditions for material testing?

A: The chamber utilizes a 1.8 kW air-cooled xenon arc lamp to replicate the full sunlight spectrum (UV to IR, 290-800 nm). Test parameters such as irradiance, temperature, humidity (30%-98% RH), and water spray are programmable to mimic various outdoor weather scenarios for accurate material aging and lightfastness assessment.

Q: What is the process for operating and controlling the test chamber?

A: Operation is fully automatic via an intuitive PLC touchscreen interface. Users can adjust test duration (0-999h), irradiance, humidity, and other settings. Automatic/manual irradiance calibration, programmable water spray, and comprehensive data logging facilitate streamlined, reproducible testing.

Q: When should I perform irradiance calibration and how is it conducted?

A: Irradiance calibration should be performed before each major test sequence or at regular intervals to ensure measurement accuracy. Calibration can be conducted either automatically or manually, using the in-built UV sensor and system prompts on the touchscreen.

Q: Where can this equipment be installed and what are the installation requirements?

A: The chamber is floor standing and suitable for laboratories, QC departments, and production facilities. Installation requires AC 220V 10%/50Hz power supply, a standard port connection, and adequate ventilation for cooling. For air-cooled operation, ensure a gas pressure of 0.6 MPa is available.

Q: What types and sizes of specimens can be tested in this chamber?

A: The chamber accommodates up to 12 standard specimen holders, each designed for specimens measuring 50 x 150 mm. The anodized aluminum holders and customizable capacity allow testing of plastics, textiles, coatings, rubbers, and other materials.

Q: How does using this test chamber benefit the manufacturer's quality control?

A: By simulating real-world environmental stressors, the chamber provides reliable data on material durability and aging. This enables manufacturers to improve product quality, comply with international standards, and reduce field failures or warranty claims.

Q: What safety features are included to protect the machine and users during operation?

A: Safety measures include leakage, over-temperature, and over-current protection as well as water shortage alarms. The chamber also features immediate sensor-based response and an easy-to-access emergency stop mechanism to ensure operator safety.

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