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  • Laboratory Vacuum Small Box Furnace For Battery Materials
  • Laboratory Vacuum Small Box Furnace For Battery Materials
  • Laboratory Vacuum Small Box Furnace For Battery Materials
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Laboratory Vacuum Small Box Furnace For Battery Materials

  • AOT
  • Xiamen, China
  • 10-25 working days
  • 50 Sets/Month
laboratory box furnace Safety Features: The vacuum box furnace is equipped with safety features such as over-temperature protection, and thermal insulation. Easy Operation: The box furnace is designed for ease of use, with user-friendly controls and interfaces. Durable Construction: The vacuum box furnace is built with durable materials and designed for long-term usage. Versatility: The laboratory small box furnace can accommodate various samples and materials, making it suitable for a wide range of applications.

Product Description


High-Temperature 1700C Compact Box Furnace Muffle Furnace


Description:

AOT-KSL-1700X Vacuum box furnace muffle furnace is an energy-saving compact high-temperature muffle Furnace with a capacity of 1.8L. When heated at 10 ℃/min, the power is less than 1kW. It is usually used for laboratory research.


Basic Parameter:

AOT-KSL-1700X-8L
Product modelAOT-KSL-1700X-8L
VoltageAC220V single phase,50/60Hz
PowerMax2.5 KW
Standard Working Temperature1600°C
Maximum Working Temperature1700°C(< 3 hours)
Heating Rate0 ~20 °C/min (≤10°C/min recommended)
Temperature Stability+/- 1°C
Heating Elements1800 grade MoSi2
ThermocoupleType B double platinum-rhodium thermocouple
Chamber DimensionL 120×W120×H120mm
Overall DimensionL 480×W 480×H 790mm
Temperature ControllerType B double platinum-rhodium thermocouple contains a YD518P temperature controller
1. PID automatic temperature control system
2. Intelligent 30-segment programmable control
3. Accuracy of constant temperature control: ± 1 ℃
4. Default DB9 PC communication connection port
5. All electrical components have passed UL or MET approval,
Muffle Furnace Structure1. The inner furnace is made of 1800-grade aluminum oxide polycrystalline fiber material, and the furnace surface is coated with
high-temperature aluminum oxide coating imported from the United States, which can improve the reflectivity and heating efficiency
of the equipment, and also extend the service life of the instrument.
2. The pull-down door design is convenient for taking and placing samples.
3. Built-in air inlet (back) and exhaust outlet (top) are used to inject gas during heating treatment.
4. It is equipped with overheating and couple-breaking protection and has the function of opening the door and power off.
Weight72kg



Product Display



Muffle furnace

Vacuum box furnace Muffle furnace


  • Compact Design: The small box furnace is designed with a compact size, making it suitable for small-scale applications or limited laboratory space.

  • High-Temperature Capacity: The muffle furnace is capable of reaching high temperatures, typically up to 1200°C or even higher, allowing for a wide range of heating and thermal processing applications.

box furnace

Battery vacuum box furnace


  • Uniform Heating: The muffle furnace is equipped with high-quality heating elements and an efficient insulation system, ensuring uniform heating throughout the chamber and minimizing temperature variations.

  • Programmable Temperature Control: The vacuum box furnace is equipped with a temperature control system that allows precise and programmable temperature settings. This enables users to create customized heating profiles and accurately control the desired temperature for various processes.


Exhibition

vacuum box furnace

Muffle furnace

Certificate

box furnace


FAQ


Q1: How does a vacuum box furnace work?

A vacuum box furnace works by utilizing heating elements, usually made of materials like silicon molybdenum rods, to generate heat. The box furnace consists of a cylindrical chamber or tube where the sample or material to be heated is placed. The heating elements, often located on the outside of the tube, heat up the chamber uniformly.


Q2: What is the heating temperature in the Muffle furnace of the thermal cracking process?

In the thermal cracking process, the heating temperature in a tube furnace typically varies depending on the specific requirements of the process. It can range from several hundred degrees Celsius to over a thousand degrees Celsius. The exact temperature is determined by factors such as the desired reaction kinetics, the type of feedstock being cracked, and the desired product yield. The heating temperature is carefully controlled and maintained within the furnace to ensure efficient and controlled cracking of the feedstock.  


Q3: How to use a battery vacuum box furnace?

To use a battery vacuum box furnace:

1. Preparation: Ensure the battery Muffle furnace is properly connected to a power source and any necessary gas or vacuum supply. 

2. Loading: Open the furnace and carefully place the sample or material to be heated inside the tube or chamber. 

3. Setting parameters: Set the desired temperature of the Muffle furnace using the temperature control panel or interface. Adjust any additional parameters such as heating rate, holding time, or gas flow rate if applicable. 

4. Starting the heating process: Close the Muffle furnace and initiate the heating cycle by activating the power supply. The heating elements inside the furnace will gradually increase the temperature to reach the desired level. 

5. Monitoring: Continuously monitor the temperature using the built-in temperature control instrument or an external thermometer. 

6. Cooling: Once the desired heating process is complete, gradually decrease the temperature or turn off the power supply to initiate the cooling process. 

7. Unloading: After the Muffle furnace has cooled down to a safe temperature, open it and carefully remove the sample or material. 

8. Maintenance: Clean the furnace chamber and ensure it is in proper condition for future use.


Q4: How can a battery vacuum box furnace be applied to battery production? 

Electrode Materials Preparation: Furnaces are used to heat treat and activate electrode materials such as cathodes and anodes. The materials are coated onto current collectors and then heated in the furnace to optimize their structure and properties for improved battery performance.

Sintering: Muffle furnace are used for sintering processes, where the active materials in the electrodes are fused together to create a cohesive structure. This enhances the conductivity and stability of the electrodes. etc.



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