The induction slag resistance test furnace is a test equipment specially used to evaluate and measure the performance of refractory materials in high temperature and corrosive environment. The design and manufacture of the dynamic slag resistance test furnace strictly follow the GB/T8931 "Refractories Slag Resistance Test Method" standard and the "Blast Furnace Carbon Block Resistance to Hot Metal Dissolution Index Test Method" to ensure the accuracy and reliability of the test results.
The induction slag resistance test furnace is a test equipment specially used to evaluate and measure the performance of refractory materials in high temperature and corrosive environment. The design and manufacture of the dynamic slag resistance test furnace strictly follow the GB/T8931 "Refractories Slag Resistance Test Method" standard and the "Blast Furnace Carbon Block Anti-Iron Water Dissolution Index Test Method" to ensure the accuracy and reliability of the test results. The dynamic slag resistance test furnace is mainly used to simulate the ability of refractory products and amorphous materials for blast furnaces to resist slag liquid or molten steel corrosion during actual use, providing a scientific basis for the selection and optimization of materials.
Core Functions of the Equipment
The core function of the induction slag resistance test furnacee is to simulate the complex environment inside the blast furnace, and realize the dynamic rotation of the sample in the high-temperature slag liquid through the liftable rotary mechanism and cantilever rotation device. Such a design can not only simulate the stress of the material in actual use, but also facilitate the loading and replacement of the sample through the hoisting device. In addition, the door opening mechanism at the bottom of the dynamic slag resistance test furnace further simplifies the loading and unloading process of the slag liquid, improving the efficiency and safety of the test.
1. Overview of Specifications and Parameters
(1) Operating temperature range: The temperature range that the furnace can withstand is 1650°C, and the maximum operating temperature can reach 1700°C.
(2) Temperature control accuracy: The equipment can achieve accurate temperature control of ±1°C.
(3) Control and display: The temperature program intelligent controller and digital display mode are adopted to ensure the accuracy and intuitiveness of temperature control.
(4) Sample rotation speed: The sample rotation speed can be adjusted between 10-30r/min, which is achieved by electronic speed regulation.
(5) Rotation accuracy: The control accuracy of the sample rotation speed is ±2r/min, ensuring the consistency and repeatability of the test.
(6) Number of samples: The equipment can accommodate 1, 4 or 6 samples for testing at the same time.
2. Special Functions Introduction
(1) Non-oxidizing environment simulation: The equipment is equipped with a N2 device, which can form a non-oxidizing environment on the slag surface and simulate the erosion conditions under high-temperature boiling conditions.
(2) Multiple protection mechanisms: In order to ensure the safety of the test and the reliability of the equipment, the dynamic slag resistance test furnace has broken rod protection, short circuit protection, broken couple protection and over-temperature alarm protection functions.
The dynamic slag resistance test furnace is widely used in the research and development, production and quality inspection of refractory materials. It can not only help material manufacturers evaluate the performance of new products, but also provide important reference data for blast furnace operation, thereby guiding the rational selection and use of materials and improving the operating efficiency and safety of blast furnaces.
As a high-precision and multi-functional test equipment, the dynamic slag resistance test furnace is of great significance to promoting the advancement of refractory technology and ensuring the safety and stability of industrial production. Through continuous technological innovation and optimization, the equipment will better serve the fields of material science and industrial applications.
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