Ignition temperature tester
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The Minimum Ignition Temperature Tester is a way of testing the sensitivity of the ignition that the dust cloud is in the heated environment. When a lot of dust is exposed in heating the air and the air temperature is high enough, it may lead to spontaneous combustion. This method can test the minimum ignition temperature of combustible dust cloud.
Application
Ignition temperature testers are widely used in chemical, petroleum, and fire safety industries to assess and control potential fire risks. These instruments use precise temperature control systems to heat the substance under test and monitor its reaction during the heating process to determine if ignition or spontaneous combustion occurs. Safety design and automation are key features of these instruments, ensuring that the heating process is not excessive or does not trigger unnecessary fires, while automatically recording test data for subsequent analysis.
Standard
· IEC 61241-2-1:1994:Electrical apparatus for use in the presence of combustible dust - Part2: Test methods - Section 1: Methods for determining the minimum ignition temperatures of dust;
· EN 50281-2-1:1999:Electrical apparatus for use in the presence of combustible dust - Part 2-1: Test methods - Methods for determining the minimum ignition temperatures of dust
Feature
High-precision control: By precisely controlling the sample environment and isolating external heat exchange, the instrument simulates temperature changes under extreme storage or transportation conditions, thereby accelerating the exothermic or endothermic reaction processes within the sample.
Multiple test modes: Suitable for different types of flammable liquids, gases, and solids, enabling the assessment of the potential hazards of these substances.
Fast measurement: Very short test times can be achieved through active temperature control consisting of ceramic heating elements and automatic air cooling.
Data recording and analysis: The instrument can monitor and record key parameters such as temperature, pressure, and heat release during the reaction process in real time, providing important safety assessment data for the research, development, production, storage, and transportation of chemicals.
Parameters
| Feature/Specification | Details |
|---|---|
| Control System | MCU control, easy to use and maintain |
| Copper Ingot Furnace Dimensions | Diameter: 100mm, Height: 100mm, with 4 container holes |
| Stainless Steel Container Specifications | Inner Diameter: 9mm, Height: 48mm, Wall Thickness: 1mm, with a nozzle cover (Length: 10mm, Inner Diameter of Nozzle: 1.5mm) |
| Voltage and Power | 220V ± 10%V, 50HZ, Power approximately 500W |
| Butane Igniter Specifications | Inner Diameter of Nozzle: 0.8mm ± 0.1mm, Adjustable Flame Height: 10mm-20mm |
| Temperature Range of Copper Ingot Furnace | Constant at any temperature between (150-450)℃ |
| Temperature Control Accuracy |
±2℃ |
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