Oxidizing Solids Tester
Conforms to UN Recommendations on the Transport of Dangerous Goods - Manual of Tests and Criteria 34.4.1 Test O.1: Test for oxidizing solids, 34.4.3 Test O.3: Test for oxidizing solids by weight and GB/T 21617-2008 Test Methods for Oxidizing Solids of Dangerous Goods.
Applications
This testing instrument is used to determine the potential of a sample to increase the combustion rate or intensity of a certain combustible substance when mixed with it. The combustion rate can be determined by the combustion time test or gravimetric analysis, thereby confirming its packaging category. It is applicable to solid substances.
Standards
GB/T 21617-2023:Dangerous goods - Flammable solids - Test method for autoignition temperature
GB/T 21617-2008:Dangerous goods - Flammable solids - Test method for autoignition temperature
Features
1. It adopts an embedded processor and the Windows CE operating system.
2. With an 8 - inch liquid - crystal touch screen, it can display the test status in real - time.
3. It is compatible with both O.1 standard and O.3 standard.
4. It uses full - automatic photoelectric detection technology to reliably detect combustion phenomena.
5. It has a full - automatic weighing detection by balance, which automatically records the mass loss during the combustion process.
6. It is equipped with a mold made of standard metal wire.
7. It can automatically detect the breakage of metal wires and provide audible and visual alarms.
8. It has a high - precision temperature and humidity detection function to effectively collect environmental temperature and humidity data.
9. During the test process, it displays the running time and test animation images in real - time.
10. It supports remote - controlled ignition to ensure the safety of personnel during the experiment.
11. The test process is fully automated, requiring no manual intervention. It supports functions such as parameter setting, data storage, and report viewing.
12. It is equipped with a temperature and humidity module to monitor the temperature and humidity of the test environment in real - time.
Technical Parameters
| Working Environment | (5~40)℃, <85%RH |
| Heating Method | Standard shape inert metal wire heating |
| Heating Wire Power | 150W±2W |
| Detection Method | Infrared sensor array detection method or balance weighing detection method |
| Balance Weighing Accuracy | ±0.1g |
| Ambient Temperature Measurement Range | -10℃~+60℃ |
| Ambient Temperature Measurement Accuracy | ±0.5℃ |
| Ambient Humidity Measurement Range | 5%RH~95%RH |
| Ambient Humidity Measurement Accuracy | ±5.0%RH |
| Timing Display Resolution | 1s |
| Timing Accuracy | ±7ms/Min |
| Test Plate | Made of corundum, 150mm long, 150mm wide, 6mm thick |
| Sample Making Molds | Made of PTFE, inner diameter 70mm, angle 60° cone |
Accessoriess
1. Core Operating Components
Test Carrier Components: Standard metal wire mold (compatible with UN O.1/O.3 and GB/T 21617 standards, used for loading oxidizing solid samples and reference materials);
Detection Components:
Fully automatic photoelectric detection device (reliably identifies combustion phenomena);
Metal wire breakage detection sensor (in conjunction with an audible and visual alarm device);
High-precision temperature and humidity detection sensor (collects ambient temperature and humidity data);
Weighing Unit: Integrated high-precision balance (automatically records mass loss during combustion);
Control and Display Components: 8-inch LCD touchscreen (equipped with Windows CE system, displays test status in real time);
Safety Components: Audible and visual alarm device (triggers warnings in case of metal wire breakage or abnormalities).
2. Auxiliary Components
Sample Processing Components: Sample spoon (for quantitatively taking oxidizing solid samples), standard reference materials (e.g., dried cellulose, matching the O.1/O.3 standard control sample);
Calibration and Maintenance Components: Balance calibration weights (calibrates weighing accuracy), metal wire calibration components (verifies breakage detection function);
Data Management Components: USB flash drive (exports test data and reports).
Test Procedures
1. Sample and Control Preparation
Grind and sieve the oxidizing solid sample to be tested (ensuring the particle size meets the standard requirements);
Prepare the control (e.g., dried cellulose) according to the test standard (O.1 or O.3), and weigh the sample and control in the specified proportions (O.1 is a sample-cellulose mixture, O.3 is a sample prepared by weight ratio).
2. Instrument Preparation
Connect the power supply and start the instrument; the embedded processor will automatically complete a fault self-check;
Calibrate the integrated balance with standard weights to confirm that the temperature and humidity sensor and photoelectric detection device are functioning properly;
Select the test mode (“O.1 Standard Mode” or “O.3 Standard Mode”) via the 8-inch touchscreen.
3. Sample Loading and Adjustment
Load the prepared sample and control into the standard metal wire mold and fix the mold to the designated test position on the instrument;
Confirm that the metal wire is within the monitoring range of the fracture detection sensor, and close the test chamber.
4. Start Automatic Testing
Set the test parameters (e.g., combustion monitoring duration) on the touchscreen and click "Start"; The instrument automatically records the initial mass of the sample, then starts the test process, monitoring combustion phenomena, mass loss, and the state of the metal wire in real time.
5. Test Process and Judgment
During the test, if the metal wire breaks, the instrument triggers an audible and visual alarm and records the corresponding status; After the test, the instrument automatically calculates the combustion duration and mass loss data, and determines the oxidizing power level of the sample according to UN/GB standards.
6. Completion and Data Export
After the test chamber cools, remove the mold and clean the sample residue; Export the test data, ambient temperature and humidity records, and oxidizing power determination report to a USB flash drive via the touchscreen; Turn off the instrument power to complete the operation.
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