ISO 1431-1 ASTM D1149 Cable Ozone Resistance Test Chamber Non-metallic Materials Aging Tester
Ozone is present in very small amounts in the atmosphere, but it's one of the main causes of rubber cracking. This ozone aging chamber simulates and even intensifies natural atmospheric ozone conditions, allowing you to study how ozone affects rubber materials. It helps you quickly evaluate the ozone resistance of rubber products and test how well anti-ozone additives work. With this data, you can take effective measures to extend the service life of your rubber products.
This machine tests how well rubber products resist cracking when exposed to ozone. It lets you precisely control and adjust ozone concentration levels, so you can accurately assess the ozone resistance of your test samples.
- Ozone generation - Uses a quiet, high-efficiency ozone generator to produce ozone gas.
- Precise mixing - The generated ozone is mixed with treated air in an exchanger before being delivered into the test chamber.
- Real-time monitoring - An UV sensor continuously detects the ozone concentration inside the chamber and feeds the data back to the control system.
- Automatic regulation - The control system adjusts ozone output based on your set values, keeping the chamber at the exact concentration you need throughout the test.
- Full environmental control - Built-in heating and humidification systems ensure all test conditions are met, so you can run tests under various environmental settings.
| Parameter | Specification |
|---|---|
| Name | (Static) ozone aging tester |
| Volume | 150L (L for liter) |
| Inner Box Size | W500 × H600 × D500mm (W for width, H for height, D for depth) |
| Outer Box Size | Approx. W1000 × H1700 × D900mm (W for width, H for height, D for depth) |
| Weight | Approx. 150kg |
| Power Supply | AC220 ± 5% V/50 ± 0.5Hz |
| Uses | Simulates and strengthens atmospheric ozone conditions to study ozone effects on rubber, quickly identify and evaluate rubber anti-ozone-aging performance and anti-ozone-agent protection effectiveness. Reference standards: GB/T7762-2014, GB/T2951.21-2008, GB/T 11206-2009, and other relevant standards. |
| Principles and Methods | Test methods include "static" (sample stretched or product directly placed in test chamber) and "dynamic" (sample placed on fixture with 5%-45% stretching float). |
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