Application

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Liquid Cooling

  • MOFPoly PCM—Open a new chapter in liquid cooling, with precise temperature control and protection
  • MOFPoly PCM—Open a new chapter in liquid cooling, with precise temperature control and protection

    The fluid with nano phase change microcapsules has fluidity and high energy storage capacity. It can be added to liquid cooling media, theoretically increasing the heat flux density of the coolant by four times under the same conditions. It can effectively increase the total heat exchange capacity, reduce pump power consumption, and decrease carbon emissions within a limited volume space. Used for liquid cooling in data centers, electric vehicles, energy storage batteries, spacecraft, and other scenarios.

    Particle size less than 200nm: prevent wall hanging and settling; Does not affect the liquid flow velocity

    High enthalpy value: fewer cycles/lower liquid flow rate; Better cooling performance

    Elastic shell, no volatilization, no leakage: safer and more durable temperature control effect

Application Cases

Temperature control of automotive power batteries

MOFPoly PCM can effectively solve the problem of heat generated during the charging and discharging process of automotive power batteries when used for temperature control. Its phase-change microcapsules can absorb the heat generated by the battery, prevent the battery from overheating, and release heat in a low-temperature environment to maintain the appropriate working temperature of the battery. This helps to extend the service life of batteries, improve their safety and performance, and provide guarantees for the stable operation of electric vehicles.

New efficient temperature control solution for data center coolant

MOFPoly PCM plays an important role in immersive cooling systems in data centers. Its nano phase change microcapsules can quickly absorb and release heat, effectively reducing the temperature of servers and other devices. By immersing the equipment in a coolant containing MOFPoly PCM, efficient heat transfer can be achieved, ensuring stable operating temperatures during high load operation, improving equipment efficiency and reliability, while reducing energy consumption and cooling costs in data centers.

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