What are the solutions and procedures for addressing the heat dissipation issue of the laminating machine?
Published: 2021-07-29

The laminating machine has high requirements for temperature control. If the temperature is too high or the heating time is too long, the film quality will deteriorate, and there will be no heating. If the temperature is too high during drying, the surface of the adhesive will form a crust, causing the film to bubble. Excessive thermal stress can also lead to the loss of elasticity of the film, resulting in performance degradation and easy tearing. In physics, there are three methods of heat dissipation: conduction, convection, and radiation. The first two methods have been addressed, so we only need to rely on thermal radiation. Radiative heat dissipation can be unaffected by the temperature of the medium surrounding the object. As long as the object's temperature exceeds zero, it will radiate heat outwards. However, relying solely on the object's own thermal radiation is very small and cannot effectively handle heat dissipation and cooling of the object. To increase the object's thermal radiation and thereby lower its temperature, a layer of heat dissipation paint can be applied to the surface of the object, greatly enhancing its thermal radiation and thus lowering its temperature. Thermal radiation coatings enhance heat exchange through infrared radiation, ensuring that heat dissipation is not affected by surrounding media. These coatings can be utilized in vacuum environments. ZS-411 radiation heat dissipation and cooling coatings, while improving heat exchange, also exhibit excellent self-cleaning, insulating, anti-corrosive, waterproof, acid and alkali resistant properties, and are easy to apply. image