Product Details
Accurately Adapt To The Needs And Unlock The Secret Weapon Of
Stable Temperature Control And Long-Term Energy Saving: 20℃ Phase
Change Microcapsules
Product Introduction:
- Phase change microcapsule refers to a kind of granular energy
storage (heat storage) material made of organic or inorganic
polymer or metal (alloy) as the capsule wall and phase change
material as the capsule core.
Product advantages:
1. Small particle size
- Usually between the nanometer and micron levels, the smaller the
particle size and the larger the specific surface area, the higher
the energy storage efficiency.
2. Core-shell structure
- It has a typical core-shell structure and is composed of two parts:
the core and the wall of the capsule. The capsule core is a phase
change material that can undergo a phase change at a specific
temperature, thereby absorbing or releasing a large amount of heat.
- The wall of the capsule is composed of organic or inorganic
polymers, metals (alloys) and other materials, which wrap and
protect the core, prevent the leakage of the phase change material,
and also enhance the stability and durability of the material.
3. Smooth surface
- The surface of high-quality phase change microcapsules is smooth,
which helps to reduce the agglomeration phenomenon between
particles and improve its dispersion in the matrix material, so as
to better play its function of phase change energy storage and
temperature regulation.
4. Good stability
- Its surface is specially treated or due to the nature of the
material of the capsule wall, it has certain chemical stability and
thermal stability, and can maintain the structural integrity under
different environmental conditions, and is not easy to be corroded
or destroyed.
Product application scenarios:
1. Energy-saving building materials
- Adding phase change microcapsules to building materials, such as
paint, wall panels, thermal insulation materials, etc., can be made
into building materials with temperature control function. When the
temperature rises during the day, the phase change microcapsules
absorb heat and undergo phase changes, reducing the rate of indoor
temperature rise.
- When the temperature decreases at night, the heat is released to
slow down the decline of the indoor temperature, thereby reducing
the frequency of use of air conditioning and heating to achieve the
purpose of energy saving.
- According to the experiment, after 2~3mm phase change microcapsule
paint painted room, temperature amplitude can be reduced by 5~6℃,
energy saving about 26%.
2. Heat storage and temperature control textiles
- By microcapsule spinning or microcapsule finishing method, 20℃
phase change microcapsule is added to the fiber or fabric, and the
heat storage and temperature control textile can be made.
- This textile can automatically absorb or release heat according to
the change of human body temperature and external ambient
temperature, so that the human body is always in a relatively
comfortable temperature range, suitable for outdoor sports
clothing, cold clothing, thermal underwear, etc., to provide better
warm and comfortable experience for the wearer.
3. Cooling electronic products
- With the continuous improvement of the performance of electronic
products, the problem of heat dissipation is becoming increasingly
prominent.
- The phase change microcapsules are combined with the cooling
materials of electronic devices, such as heat sinks, heat sinks,
etc., when the temperature of the device rises, the phase change
microcapsules absorb heat and phase change occurs, reducing the
temperature of the device and improving the stability and service
life of the device.
4. Spacecraft thermal control system
- In the thermal control system of spacecraft, the 20℃ phase change
microcapsule can be used to adjust the temperature inside the
spacecraft to ensure that the instrument and equipment work in a
suitable temperature environment.
- Due to the extreme space environment, the efficient energy storage
and temperature regulation functions of phase-change microcapsules
can effectively solve the thermal management problems of
spacecraft, and improve the reliability and service life of
spacecraft.
Packaging and storage:
1. Packing method
2. Storage method
- Dry, cool and ventilated place without sharp objects.