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Sigma Mixer Heating And Cooling | JCT Machinery

February 25, 2025
Sigma Mixer Heating Device
bg
  1. 1. Jacket Heating

  2. • Principle: The material is heated by setting a jacket outside the sigma mixer mixing chamber and passing steam or hot water into the jacket.

  3. • Advantages: Jacket heating is suitable for heating most liquids and high viscosity materials, especially for materials that need to be heated slowly.

  4. • Applicable Scenarios: Suitable for heating most resins, adhesives and other materials, especially materials that need to be heated evenly and not easy to be overheated locally.

  5. 2. Electric Heating

  6. • Principle: Heat is transferred to the cylinder wall through an electric heating tube, which is common in small-batch production that requires rapid heating.

  7. • Advantages: Fast heating speed, suitable for small-batch production environment, easy to control temperature.

  8. • Applicable Scenarios: Suitable for materials that require heating speed, such as occasions where high temperature needs to be reached in a shorter time.

  9. 3. Hot Oil Heating

  10. • Principle: Hot oil circulation system uses the high temperature of hot oil to transfer heat to the material.

  11. • Advantages: Uniform heating, able to maintain a stable heating effect at a lower temperature, and high thermal efficiency.

  12. • Applicable Scenarios: For materials that require high temperature or long heating time, hot oil heating is suitable for reaction processes with high control accuracy.

  13. 4. Steam Heating

  14. • Principle: Heat is transferred to the material through the flow of steam in the jacket.

  15. • Advantages: Rapid heating and energy efficiency, suitable for large-scale production lines.

  16. • Applicable Scenarios: Suitable for materials that require higher temperatures and longer heating times, commonly used in resins, plastics, coatings and other industries.


Sigma Mixer Cooling Device
bg
  1. 1. Cooling Water System

  2. • Principle: The heat is removed by circulating cooling water in the jacket of sigma mixer, usually tap water or ice water.

  3. • Advantages: Low cost, simple operation, suitable for conventional cooling needs.

  4. • Applicable Scenarios: Applicable to most industries such as resins, coatings, adhesives, etc., espacially in situations where rapid cooling is required during the reaction process.

  5. 2. Cooling Oil System

  6. • Principle: The oil is cooled through the oil cooling system, and the heat in the sigma mixer is removed by circulation.

  7. • Advantages: It can provide a stable cooling effect and is suitable for situations with high temperature contol requirements.

  8. • Applicable Scenarios: Applicable to production processes with high viscosity materials or requiring precise temperature control.


Choose the Right Sigma Mixer Heating and Cooling Device
Material Properties: such as viscosity, thermal sensitivity, reaction temperature, etc.
• Heating and Cooling Requirements: including heating rate, temperature control accuracy, cooling rate, etc.
• Production Efficiency and Energy Saving: optimize heating and cooling efficiency and reduce energy consumption.
• Scale and Cost: choose the right equipment according to production scale and budget.


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