Product Details
90℃ Low Carbon Environmental Protection Thermal Management Phase
Change Energy Storage Recycling Materials
Product features:
1. Phase change characteristics
① Reversible phase transition
- During heating and cooling, the material is able to achieve a
reversible phase transition from solid to liquid (or from liquid to
solid) near 90 ° C.
- This reversibility allows the material to continuously store and
release heat, thus achieving effective control of temperature.
② The phase transition temperature is clear
- When the temperature reaches 90℃, the phase transition process
begins to occur, and the temperature change is relatively small
during the phase transition process, forming a relatively stable
temperature platform.
- This allows the material to perform a stable thermal management
role over a specific temperature range.
2. Heat conduction characteristics
① Moderate thermal conductivity
- Materials need to have some thermal conductivity in order to be
able to quickly absorb or release heat.
- Moderate thermal conductivity can ensure that the material can
effectively transfer heat during the phase transition process, but
will not cause the heat transfer too fast and affect its thermal
management effect.
② Good thermal diffusivity
- Thermal diffusivity refers to the speed at which heat travels
inside a material as it absorbs or releases heat.
- Good thermal diffusivity can make the heat distribution of the
material more uniform during the phase transition process, and
avoid local overheating or undercooling.
Product introduction:
- Phase change materials (PCMs) are ideal thermal management
solutions. This is because they store and release thermal energy as
they melt and freeze (transition from one stage to another).
- When this material freezes, it releases a significant amount of
energy, either in the form of fusion latent heat or in the form of
crystallization energy. In contrast, when a substance melts, it
absorbs the same amount of energy from its surroundings as from the
solid to the liquid.
Product use:
1. Textiles
- Miniature PCM is commonly used for temperature regulation of
clothing, footwear, furniture coverings, mattresses, outerwear,
military uniforms, professional clothing, baby seats, etc
2. Building materials
- Architectural applications include wallboard, paint, insulation,
thrombus walls, tiles, flooring, roofing, etc.
3. Packing
- Miniature PCM is a unique alternative to expensive refrigerated
shipping or messy dry ice. Can be used for biomedical samples,
drugs, perishable goods, food, laboratory samples and other
containers.
4. Digital products
- For example, tiny PCM can be used in lasers to increase duty cycle,
laptop computers to extend battery life, and circuits to prevent
overheating.
5. Environmental
- PCM can be used in conjunction with solar heating and radiant
heating floors as latent heat storage devices.