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50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material

Sichuan Aishipaier New Material Technology Co., Ltd.
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    Buy cheap 50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material from wholesalers
     
    Buy cheap 50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material from wholesalers
    • Buy cheap 50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material from wholesalers
    • Buy cheap 50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material from wholesalers

    50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material

    Ask Lasest Price
    Brand Name : A.S.P
    Certification : SGS;MSDS
    Payment Terms : T/T
    Delivery Time : 3-5 work days
    Model Number : ASP-50
    Price : Negotiable
    • Product Details
    • Company Profile

    50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material

    50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material


    Product nature:
    1. Phase transition from solid to liquid

    • When the temperature reaches 50℃, the material will change from solid to liquid, absorbing a lot of heat; When the temperature drops, it changes from a liquid to a solid, releasing heat.
    • This phase transition process is reversible and can be repeated.

    2. Low thermal conductivity (some materials)

    • Some phase change materials may have relatively low thermal conductivity in the solid state, which affects the rate of heat transfer.
    • However, the thermal conductivity of the material can be improved by adding thermal conductivity enhancers to meet the needs of practical applications.

    3. Density change

    • During a phase transition, the density of a material usually changes.
    • The density of the solid state is higher, and the density of the liquid state is smaller, and this density change may have a certain impact on the packaging and use of the material, which needs to be considered in the design and application.

    Product working principle:

    • When the temperature is below 50 ° C, the 50 ° C thermal management phase change material is in a phase state (such as a solid state).
    • As the ambient temperature gradually rises, when it reaches 50 ° C, the phase change material begins to absorb a large amount of heat, and phase change occurs, from solid to liquid (for solid-liquid phase change materials).

    Company profile:

    • Sichuan AISHIPAIER New Material Technology Co., LTD. (referred to as "AISHIPAIER"), in 1997, involved in the research and development of ice pack materials, has won more than 20 invention patents, utility model patents and so on.
    • The company's products include cold chain phase change materials, energy storage building phase change materials, thermal management phase change materials, military aviation phase change materials, microcapsule phase change materials, heat storage fabric phase change materials, battery special phase change materials, gels, thickeners, carbomer resin and other products.
    • It also provides value-added services such as cold storage, cold packaging, cold distribution, cold technology research and development, and cold chain verification.
    • And a variety of temperature phase change materials have been fully used in: medicine/food cold chain transportation, building energy storage, battery new energy industry, especially phase change microcapsules effectively applied to fabric temperature storage, improve people's quality of life.

    Note:
    This product is not edible.


    50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material50℃ High Stability Long-Term Thermal Management Phase Change Energy Storage Quality Model Material

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