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Производитель климатических камер для испытаний окружающей среды более 20 летБолее 3000 заказов клиентов по всему миру           Электронная почта: shirley@deruitest.com
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Камера для испытаний на погодные условия с УФ-облучением

DERUI UV weather test chambers provide controlled fluorescent UV, heat and moisture exposure for comparative weathering evaluation of plastics, coatings, sealants and other nonmetallic materials. Select the lamp, irradiance and cycle according to ASTM G154, ISO 4892-3 or the applicable material specification.

Test principle: Fluorescent UV exposure with condensation; spray when specified and configured
Lamp selection: UVA-340, UVA-351 or UVB-313 according to the test method
Применение: Plastics, coatings, adhesives, sealants, elastomers and composites
Reference standards: ASTM G154, ISO 4892-3 and ISO 16474-3 as applicable
Configuration: Model, capacity, irradiance range and utilities confirmed from your required cycle
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ASTM G154 UV Weathering Test Chamber

Evaluate comparative changes in plastics, coatings, sealants, adhesives and other nonmetallic materials under controlled fluorescent UV, heat and moisture exposure.

Primary methodASTM G154 operating practice
Moisture exposureCondensation; spray if specified and configured
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsLamp, irradiance and cycle selected by the applicable material method

What the chamber is designed to evaluate

A UV weathering chamber repeatedly exposes specimens to fluorescent ultraviolet radiation and moisture under controlled conditions. The resulting data can compare formulations, suppliers, coatings or production batches for changes such as color shift, gloss loss, chalking, cracking, embrittlement and strength retention.

ASTM G154 is an apparatus operating practice—not a universal product qualification cycle. The lamp type, irradiance, black-panel temperature, wet phase, duration, specimen evaluation method and acceptance criteria must come from the applicable material specification or customer test plan.

No universal time conversion: laboratory exposure hours cannot be converted reliably into a fixed number of outdoor months or years. Geography, orientation, material chemistry and the selected failure mode all affect correlation. Use controls, replicates and field exposure data when service-life prediction matters.

Select the light source by end-use exposure

UVA-340Closely reproduces the critical short-wave portion of direct outdoor sunlight from approximately 295 to 365 nm. Common for comparative outdoor-weathering studies.
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsRepresents the UV portion of sunlight filtered through window glass. Appropriate only when the application and referenced method call for indoor, behind-glass exposure.
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsProduces short wavelengths below the terrestrial solar cut-off, which can accelerate degradation but may cause unrealistic failure modes. Use for screening only when the method permits it.

Configuration note: confirm the lamp family, spectral specification, control wavelength and irradiance setpoint before ordering. Different lamps are not interchangeable within one test.

Fluorescent UV or xenon arc?

Decision factorFluorescent UV chamberXenon arc chamber
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsConcentrates on the UV region that drives many polymer and coating failuresReproduces a broader UV, visible and infrared solar spectrum through a lamp/filter system
MoistureCondensation and, on equipped systems, water sprayCommonly water spray and controlled chamber climate
cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsComparative UV degradation, coating and polymer screeningcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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ReferenceИспользуйтеcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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ОсвещенностьcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits
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Коммунальные услугиcURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limits

Recommended test workflow

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cURL Too many subrequests by single Worker invocation. To configure this limit, refer to https://developers.cloudflare.com/workers/wrangler/configuration/#limitsRecord lamp, irradiance, temperature, moisture cycle, interruptions, maintenance and calibration status.
5. Evaluate intervalsUse preplanned inspection intervals that do not introduce uncontrolled conditioning or handling differences.
6. Report completelyReport all exposure conditions with results; do not state only “tested to ASTM G154.”

Frequently asked questions

What does ASTM G154 test?

ASTM G154 describes how to operate fluorescent UV lamp and water apparatus to expose materials to UV, heat and moisture. A material or product method must define the cycle and evaluation criteria.

Does an ASTM G154 chamber simulate years of outdoor exposure?

It accelerates selected degradation mechanisms for comparative testing, but there is no universal hours-to-years conversion. Correlation requires material-specific field data and controls.

Which lamp should I choose: UVA-340, UVA-351 or UVB-313?

Use the lamp classification required by the applicable method. UVA-340 represents short-wave outdoor sunlight, UVA-351 represents behind-glass UV, and UVB-313 is a more severe screening source that may cause unrealistic degradation.

Can this equipment control relative humidity?

A typical fluorescent UV weathering chamber creates condensation rather than controlling a normal RH setpoint. If an RH-controlled stage is required, confirm whether separate climatic equipment is needed.

Are ASTM G154 and ISO 4892-3 identical?

No. They address closely related fluorescent UV exposure, but their detailed requirements and application scopes differ. Use the exact referenced document and edition.

Can I test bare metal corrosion in this chamber?

ASTM G154 states that it is not intended for corrosion testing of bare metals. Select a salt-spray or cyclic-corrosion method when corrosion is the primary mechanism.

What information is required for chamber selection?

Provide the standard and cycle, material, specimen dimensions and quantity, lamp classification, irradiance setpoint, moisture phase, evaluation plan, utilities and required records.

How should results be reported?

Report the apparatus, lamps, exposure cycle, irradiance, temperatures, moisture conditions, duration, interruptions, specimen mounting, controls and the property-measurement methods used.

Confirm the chamber configuration before ordering

Send DERUI your standard, exposure cycle, specimen dimensions and capacity. We will match the lamp, irradiance control, moisture system and fixture configuration to the test method.

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Название параметра ​Спецификация​
1 ​Диапазон температуры​ RT+10℃ ~ 70℃
2 Диапазон влажности ≥90% Влажность
3 Равномерность температуры ±1℃
4 Колебания температуры ±0.5℃
5 ​Расстояние между лампами​ 70 мм (от центра до центра)
6 ​Расстояние от образца до лампы​ 50±3 мм
7 ​Освещенность​ Регулируемая до 1.0 Вт/м²
8 Настройка цикла тестирования Регулируемые циклы света/конденсации/распыления
9 Характеристики лампы 8 x 40W (L=1200мм), UVA/UVB ≥1600 часов службы
10 Панель управления Цветной сенсорный экран 
11 Контроль температуры Автонастройка PID, управление SSR
12 Стандартный размер образца 75×290мм
13 Глубина водяного бака 25мм (автоматическое управление)
14 Эффективная площадь облучения 900×210мм
15 Длина волны UV UVA: 315-400нм; UVB: 280-315нм
16 Длительность теста 0~999 часов (регулируется)
17 Температура черной панели 50℃ ~ 70℃

1, Каковы основные функции камеры испытаний ультрафиолетовой погодостойкости?
Ее основная функция — проверка долговечности и стабильности материалов под воздействием ультрафиолетового излучения.

2, Как управлять камерой испытаний ультрафиолетовой погодостойкости?
Настройте параметры испытания через сенсорный экран и следуйте инструкциям по эксплуатации.

3, Какие материалы подходят для камер испытаний ультрафиолетовой погодостойкости?
Они подходят для различных материалов, таких как пластики, покрытия и автомобильные детали.

4. Как анализировать результаты теста?
Встроенное программное обеспечение может предоставлять подробный анализ данных и отчеты, чтобы помочь вам понять изменения в характеристиках материалов.

5, Что следует учитывать при обслуживании камеры испытаний ультрафиолетовой погодостойкости?
Регулярно проверяйте ультрафиолетовые лампы и систему контроля температуры и влажности, чтобы обеспечить нормальную работу оборудования.

6, Можно ли проводить длительные непрерывные испытания?
Да, оборудование поддерживает длительные непрерывные испытания и может удовлетворить различные потребности.

7, Какие гарантии предоставляются при покупке камеры испытаний ультрафиолетовой погодостойкости?
Мы предлагаем гарантийное обслуживание и предоставляем необходимую послепродажную поддержку для обеспечения нормальной работы оборудования.

8, Каковы технические характеристики камеры испытаний ультрафиолетовой погодостойкости?
Этот тип оборудования представлен двумя моделями: наклонная башенная и коробчатая. Обе модели доступны с нержавеющей сталью или окрашенными внешними корпусами и могут быть настроены в соответствии с вашими требованиями.

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