Specifications
Model | DR-H305 |
Internal dimension (WxDxH) | 500*600*500mm |
External dimension (WxDxH) | 1000*1000*1750mm |
Temperature range | RT+10~ 60℃ (suggest to use 40℃±2℃) |
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... |
In the field of material testing, ozone aging test is an important method for evaluating the ozone resistance performance of materials. As a professional testing equipment, the dynamic static ozone aging chamber can simulate the ozone environment that materials may encounter in actual use and conduct accelerated aging tests on them. This article will provide a detailed introduction to the functions, advantages, application scenarios, and maintenance points of the dynamic static ozone aging chamber.
1、 Product Overview
The dynamic static ozone aging chamber is a detection device that integrates advanced technology and intelligent control system, mainly used to evaluate the aging performance of materials in ozone environment. The device simulates the harsh environment that materials may encounter in actual use by accurately controlling ozone concentration, temperature, and humidity, accelerating their aging process, and rapidly evaluating the ozone resistance performance of materials. This device is widely used in industries such as rubber, plastics, and coatings, providing a reliable testing method for material quality control and research and development.
2、 Product Features
1. Dynamic and static testing modes
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Dynamic testing mode: The device supports dynamic testing mode, which can simulate the dynamic stress conditions of materials in actual use. Through dynamic testing, the ozone resistance performance of materials under dynamic stresses such as repeated stretching and compression can be evaluated, providing data support for the dynamic performance evaluation of materials.
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Static testing mode: The device also supports static testing mode, which can simulate the static stress conditions of materials in actual use. Through static testing, the ozone resistance performance of materials under constant stress can be evaluated, providing data support for the static performance evaluation of materials.
2. High precision ozone concentration control
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Ozone concentration range: The equipment is equipped with a high-precision ozone generator that can accurately control ozone concentration, ranging from 0.1 ppm to 500 ppm, to meet different testing needs.
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Real time monitoring and adjustment: The equipment is equipped with an ozone concentration sensor, which can monitor the ozone concentration in the test chamber in real time and automatically adjust the working status of the ozone generator according to the set value to ensure the stability of the test environment.
3. Intelligent touch screen operation
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Intuitive and convenient operation interface: The device adopts an intelligent touch screen operation interface, and users can easily set test parameters such as ozone concentration, temperature, humidity, test time, etc. The operation interface is intuitive and clear, even operators without professional background can quickly get started.
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Real time data monitoring and recording: The touch screen can display key parameters such as ozone concentration, temperature, humidity, etc. inside the test chamber in real time, and users can keep track of the test progress and equipment operation status at any time. The equipment can also automatically record test data and generate detailed test reports, making it convenient for users to analyze data and evaluate results.
4. High precision temperature and humidity control
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Temperature control: The equipment is equipped with high-precision temperature sensors and intelligent control systems, which can accurately control the temperature inside the test chamber. The temperature range is usually between room temperature and 60 ℃, and the temperature fluctuation can be controlled within ± 0.5 ℃.
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Humidity control: The device also has humidity regulation function, which can simulate different humidity environments. The humidity range is between 30% and 98% RH, and the humidity fluctuation can be controlled within ± 2% RH.
5. Safety and environmental design
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Multiple safety protection: The equipment is equipped with multiple safety protection devices such as over temperature protection, water shortage protection, leakage protection, overload protection, etc., to ensure the safety of the equipment and operators.
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Environmental design: The equipment adopts environmentally friendly materials and energy-saving technologies to reduce its impact on the environment. Equipped with efficient exhaust gas treatment equipment to purify the exhaust gas generated during the testing process, ensuring that emissions meet environmental standards.
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