The dynamic erosion test furnace is a kind of experimental equipment designed to simulate and evaluate the performance of refractory materials in high temperature and corrosive environments. The dynamic erosion test furnace is particularly suitable for testing the erosion resistance of refractory products for blast furnaces and amorphous materials when they come into contact with slag or molten steel. By simulating the actual industrial environment, the dynamic erosion test furnace can provide an important scientific basis for the research and development and application of materials.
The dynamic anti-erosion test furnace is an experimental device designed to simulate and evaluate the performance of refractory materials in high temperature and corrosive environments. The dynamic anti-erosion test furnace is particularly suitable for testing the corrosion resistance of refractory products for blast furnaces and amorphous materials when they come into contact with slag or molten steel. By simulating the actual industrial environment, the dynamic anti-erosion test furnace can provide an important scientific basis for the research and development and application of materials. The dynamic anti-erosion test furnace is a comprehensive, easy-to-operate, safe and reliable test equipment that can provide strong support for the research on the corrosion resistance of refractory materials. The dynamic anti-erosion test furnace produced by Hut Instruments meets the standards of GB/T8931 "Test Method for Slag Resistance of Refractory Materials" and "Test Method for Resistance of Blast Furnace Carbon Block to Iron Water Dissolution Index", and is mainly used to determine the ability of refractory products for blast furnaces and amorphous materials to resist the corrosion of slag or molten steel.
1. Liftable rotary mechanism
The dynamic anti-corrosion test furnace is equipped with a liftable rotary mechanism, which not only facilitates the installation and unloading of samples, but also is equipped with cantilever rotation and lifting devices to meet different test requirements.
2. Accurate speed control
Using stepper motors and pulse control technology, the test furnace can accurately adjust the speed during the test. This allows researchers to adjust the speed to achieve the test effect according to different test requirements.
3. Bottom door opening mechanism
In order to facilitate the loading and unloading of slag liquid, the dynamic anti-corrosion test furnace is designed with a bottom door opening mechanism. This design simplifies the operation process and improves work efficiency.
4. High-temperature boiling simulation
The dynamic anti-corrosion test furnace is also specially designed with a N2 device to simulate the boiling state of slag liquid at high temperature and form a non-oxidizing environment on the surface of the slag liquid to more realistically simulate the actual working conditions.
5. Safety protection measures
In order to ensure the safety of the test, the dynamic anti-corrosion test furnace has multiple protection functions, including broken rod protection, short circuit protection, broken couple protection and over-temperature alarm protection.
6. Test method compatibility
The dynamic anti-corrosion test furnace can meet the test requirements of dynamic and static methods, making it adaptable to a wider range of research and testing needs.
1. Furnace Operating Temperature
Maximum Operating Temperature: 1700℃
Normal Operating Temperature: 1650℃
2. Temperature Control Accurac: ±1℃
3. Control and Display
Control Mode: Temperature Program Intelligent Controller
Display Mode: Digital Display
4. Sample Rotation
Speed Range: 10-30r/min
Speed Control Mode: Electronic Speed Regulation
Speed Accuracy: ±2r/min
5. Number of Samples
Can accommodate 1, 4, or 6 samples for testing at the same time
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