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A205, No. 518 Jiasong Middle Road, Huaxin Town, Qingpu District, Shanghai
Shanghai Hongyue Technology Co., Ltd
A205, No. 518 Jiasong Middle Road, Huaxin Town, Qingpu District, Shanghai
Vacuum tube furnaceIt mainly consists of furnace tubes, heating elements, control systems, and auxiliary equipment.
Furnace tubes are usually made of materials that are resistant to high temperatures and corrosion, such as quartz, ceramics, or metals.
The heating element is responsible for providing heat to bring the material inside the furnace tube to the desired heating temperature.
The control system uses a multi zone tube furnace to precisely control the temperature inside the furnace, ensuring the stability and safety of the heating process. working principle:
The heating element conducts thermal energy to the furnace tube through electrical or gas energy. Pipelines usually have good thermal conductivity, transferring heat energy to the heated object and causing its temperature to rise.
The control system can adjust the power of the heating element as needed to control the temperature inside the pipeline. Features and advantages:
Simple structure, easy operation, and convenient control.
It can be produced continuously and is suitable for various processes that require long-term heating treatment.
High temperature control accuracy, good insulation effect, and wide temperature range. The furnace temperature uniformity is high, which can ensure that the material is heated evenly.
Optional atmosphere and vacuum furnace types are available to meet different process requirements. Application areas:
Mainly used in industries such as metallurgy, glass, heat treatment, lithium positive and negative electrode materials, new energy, and grinding tools.
In these industries,Vacuum tube furnaceUsed to measure the performance of materials under certain atmospheric conditions. 1. Preparation work: Firstly, ensure that the interior is clean and free of flammable, explosive, and toxic substances. Then, check the sealing performance of the furnace door and whether the furnace body, furnace tube and other components are intact.
2. Parameter setting: Turn on the power, enter the temperature setting interface, and set the required heating temperature and heating time according to the experimental requirements.
3. Sample placement: Place the sample to be heated into the furnace chamber, ensuring that the placement of the sample complies with safety regulations and avoids direct contact with the furnace wall or bottom.
4. Heating process: Close the furnace door and lock it, activate the preheating function, and when the preheating temperature reaches the set value, turn off the preheating function, adjust the heating power, and turn on the heating function. During the heating process, temperature changes should be monitored in real-time to ensure that the temperature remains stable within the required range.
5. End processing: After the heating is completed, turn off the heating function and open the exhaust device to discharge residual gas. After the temperature in the furnace chamber drops to the safe temperature, open the furnace door and take out the sample.
6. Cleaning and maintenance: After use, cut off the power, clean the residue in the furnace chamber, check the sealing of the furnace door, and replace it in a timely manner if it is damaged. Regularly maintain the furnace body, furnace tubes, and other components to ensure the normal operation of the equipment.
The above is the basic usage method, and strict adherence to safety regulations is required during the operation process to ensure personal and equipment safety

