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Cámara de envejecimiento de lámpara de xenón incremental

Este high-irradiance xenon arc weathering test chamber combines a water-cooled long-arc lamp, selectable 340 nm, 420 nm or 300–400 nm irradiance monitoring, and independently controlled front/rear water spray for advanced accelerated-weathering programs.

Light Source: Water-cooled long-arc xenon lamp
Irradiance Monitoring: 340 nm, 420 nm or 300–400 nm
Moisture System: Independent front and rear specimen spray
Temperature Sensor: PT100 black-panel / black-standard configuration
Utilities: AC 380 V, 50 Hz, 10 kW; ultrapure water and drainage required
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Water-Cooled Xenon Arc Weathering System

High-Irradiance Xenon Testing with Multi-Wavelength Closed-Loop Control

This DERUI xenon arc weathering test chamber combines a long-arc lamp, interchangeable optical filters, closed-loop irradiance sensing and independent front/rear water spray. It is designed for laboratories that need flexible, high-output exposure profiles for coatings, plastics, automotive materials, textiles and other light-sensitive products.

340 / 420 nmNarrowband monitoring options
300–400 nmBroadband UV monitoring
Front + Rear SprayIndependent moisture cycles
10 kWAC 380 V, 50 Hz installation

Search Intent and Application

What Makes This Xenon Arc Weathering Chamber Different?

The old name “Incremental Xenon Lamp Aging Test Chamber” is not a common industry search term. The equipment's actual value is its high irradiance capacity, water-cooled long-arc lamp, selectable spectral control points and dual-sided spray system—features buyers use when comparing advanced xenon weathering chambers.

Outdoor Weathering

Combine daylight-type filtration, irradiance, black-panel temperature and front water spray to reproduce controlled sunlight, heat and rain exposure.

Indoor Lightfastness

Select the appropriate window-glass-type filter and 420 nm monitoring strategy for dyes, textiles, inks and interior materials exposed through glass.

Accelerated R&D Screening

Use elevated irradiance only when the governing method and material correlation support it. Higher output can shorten exposure time, but it does not automatically preserve the same degradation mechanism.

Importante: a xenon chamber does not “replicate 98% of sunlight” as a universal fact. Spectral match depends on the lamp, optical-filter combination, wavelength range, lamp aging and calibration. Test reports should identify the filter, irradiance control point, temperature, moisture cycle and exposure time.

Optical System

Long-Arc Lamp, Filters and Closed-Loop Irradiance Control

Light Source and Filter Selection

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Requisitos del sitio

Electrical supply AC 380 V, 50 Hz
Rated power 10 kW
Suministro de agua Ultrapure water required; automatic refill stated
Drainage Permanent indoor wastewater connection required
Recommended ambient 15–20°C; below 65% RH
Installation area Stable, level location without strong vibration; provide service clearance, ventilation and safe access

Confirm voltage, phase, frequency, water conductivity, inlet pressure, drain height, heat rejection and exhaust requirements before manufacturing. “Humidity test chambers <65% RH” in the old copy has been corrected to an ambient relative-humidity requirement.

Standards Strategy

ASTM G155, ISO 4892-2 and Application-Specific Methods

ASTM G155 describes principles and procedures for operating filtered xenon-arc apparatus; it does not prescribe one universal exposure suitable for every material. ISO 4892-2 addresses plastics exposed to xenon-arc sources, while coatings, automotive materials and textiles may use different ISO, ASTM, SAE, AATCC or OEM methods.

1

Identify the Material Method

Start with the product or material specification, including the exact standard edition and required evaluation method.

2

Translate the Exposure

Define filter category, irradiance control band, setpoint, black-panel temperature, chamber-air temperature, humidity and spray cycle.

3

Confirm Chamber Capability

DERUI should map each required condition to the offered configuration before claiming compliance.

Do not publish “complies with ASTM G155 and ISO 4892-2” from the presence of a xenon lamp alone. Compliance depends on the complete configured system, its calibration and its ability to run the selected method.

Preguntas Frecuentes

High-Irradiance Xenon Arc Chamber FAQs

What does “high-irradiance xenon arc weathering chamber” mean?

It describes a chamber capable of operating over a wider or higher irradiance range than conventional exposure settings. The usable setpoint must still be selected from the governing method and validated for the material.

Why is “incremental xenon lamp aging chamber” no longer the main product name?

“Incremental” is not a recognized buyer term for this equipment. “High-irradiance xenon arc weathering test chamber” more accurately describes the supplied optical control and matches how laboratories search for the product. The existing URL can remain unchanged.

Should irradiance be controlled at 340 nm, 420 nm or 300–400 nm?

Use the band required by the applicable method. A 340 nm narrowband point is common for outdoor weathering, 420 nm is often used for lightfastness through window glass, and 300–400 nm represents total UV irradiance.

What is the difference between front and rear spray?

Front spray wets and cools the exposed surface directly. Rear spray cools the back of the specimen during selected dark phases and may promote condensation on the exposed face. The programmed cycle must follow the chosen method.

Does higher irradiance always provide an equivalent faster result?

No. Excessive irradiance can change specimen temperature or trigger a degradation mechanism that would not dominate in service. Correlation should be demonstrated for the specific material before using higher output to shorten a test.

What water quality does the chamber require?

The supplied installation information specifies ultrapure water. Final conductivity, pressure and flow requirements should be confirmed on the utility drawing. Water quality affects lamp cooling, filters, nozzles and specimen deposits.

Can this chamber run ASTM G155?

Potentially, when equipped with the required filters, sensors, humidity and spray functions and when it can maintain every condition of the selected cycle. DERUI should review the exact ASTM G155 cycle before confirming the configuration.

What information is needed for chamber selection?

Provide material type, specimen dimensions and quantity, standard and edition, filter category, irradiance band and setpoint, temperatures, humidity, spray cycle, exposure time, power supply and water quality.

Match the Xenon System to Your Exposure Method

Send DERUI the exact test standard, specimen details, required filter, irradiance control point, temperature, humidity and water-spray cycle. We will verify the offered configuration instead of relying on a generic standards list.

Request a Xenon Test Configuration Review

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Artículo

Especificación

Modelo

DR-H301-K420S

Dimensiones de la cámara interior

750 × 750 × 750 (D × W × H) mm

Dimensiones Totales

1050 × 1270 × 2100 (D × W × H) mm

Vida Útil de la Lámpara

≥1200 horas

Fuente de Alimentación de la Lámpara de Xenón

Alto nivel de fiabilidad, fuente de alimentación electrónica inteligente independiente desarrollada profesionalmente, funcionamiento ultraestable. La eficiencia de iluminación es más de 95% superior a la de otros fabricantes.
OEM de la lámpara: Atlas

Potencia de la lámpara

6.5 KW

Cantidad de lámparas

1

Filtros Ópticos

Filtros ópticos de vidrio especial de doble capa; diferentes combinaciones pueden simular diferentes entornos (tipo A vidrio de luz diurna o tipo B vidrio de ventana).

Puntos de Control de Energía

@340nm (configurado), @420nm (configurado), @300 - 400nm (configurado)

Intensidad de Irradiancia

- 0.25 ~ 0.89 W/m² @340nm
- 0.45 W/m² ~ 1.50 W/m² @420nm
- 29 W/m² ~ 75 W/m² @300 - 400nm

Ajuste de Irradiancia

Sensor inalámbrico de fibra óptica Sun-Eye incorporado; la intensidad de irradiancia se regula de manera inteligente y automática mediante monitoreo en bucle cerrado y control PID.

Temperatura de la Cámara

38 ~ 80℃ ±3℃ (ajustable) (HTC: Control de Temperatura de la Cámara)

1. ¿Cuál es el propósito de la Cámara de Pruebas de Envejecimiento por Lámpara de Xenón Incremental?
La cámara está diseñada para simular procesos de envejecimiento de materiales bajo exposición controlada a UV, temperatura y humedad.

2. ¿Cómo funciona la Cámara de Pruebas de Envejecimiento por Lámpara de Xenón Incremental?
Utiliza lámparas de xenón que replican la exposición a la luz solar, controlando las condiciones ambientales para probar la durabilidad del material.

3. ¿Qué tipos de materiales se pueden probar?
La cámara puede probar una variedad de materiales, incluyendo plásticos, recubrimientos y tejidos, específicamente para degradación por UV.

4. ¿Es eficiente en energía la cámara?
Sí, está diseñada con componentes de bajo consumo energético para minimizar el uso de energía durante su funcionamiento.

5. ¿Qué características de seguridad incluye?
La cámara cuenta con múltiples mecanismos de seguridad, como apagado automático y protección contra sobrecalentamiento para garantizar la seguridad del usuario.

6. ¿Puedo personalizar los ajustes de la prueba?
¡Por supuesto! Los usuarios pueden adaptar los ciclos de prueba y configuraciones para satisfacer requisitos específicos del material.

7. ¿Tiene capacidades de registro de datos?
Sí, la cámara incluye un sistema de registro eficiente para rastrear datos y resultados de las pruebas.

8. ¿Cómo controlo la cámara?
La cámara está equipada con una interfaz fácil de usar para una navegación sencilla y ajustes de configuración.

9. ¿Cuál es el período de garantía?
La Cámara de Pruebas de Envejecimiento de Lámpara de Xenón Incremental viene con una garantía integral que cubre defectos y problemas de rendimiento.

10. ¿Dónde puedo comprar la Cámara de Pruebas de Envejecimiento de Lámpara de Xenón Incremental?
Puedes adquirirla a través de nuestro sitio web oficial o distribuidores autorizados.

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