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    • 9. 发明授权
    • EMAT enhanced dispersion of particles in liquid
    • EMAT增强了液体中颗粒的分散
    • US09504973B2
    • 2016-11-29
    • US13827034
    • 2013-03-14
    • UT-Battelle, LLC
    • Roger A. KisnerOrlando RiosAlexander M. MelinGerard Michael LudtkaGail Mackiewicz LudtkaJohn B. Wilgen
    • B01F11/02B01F13/00B01F3/12
    • B01F11/0291B01F3/1242B01F11/02B01F11/0241B01F13/0006
    • Particulate matter is dispersed in a fluid material. A sample including a first material in a fluid state and second material comprising particulate matter are placed into a chamber. The second material is spatially dispersed in the first material utilizing EMAT force. The dispersion process continues until spatial distribution of the second material enables the sample to meet a specified criterion. The chamber and/or the sample is electrically conductive. The EMAT force is generated by placing the chamber coaxially within an induction coil driven by an applied alternating current and placing the chamber and induction coil coaxially within a high field magnetic. The EMAT force is coupled to the sample without physical contact to the sample or to the chamber, by another physical object. Batch and continuous processing are utilized. The chamber may be folded within the bore of the magnet. Acoustic force frequency and/or temperature may be controlled.
    • 颗粒物质分散在流体材料中。 将包含流体状态的第一材料和包含颗粒物质的第二材料的样品放入室中。 第二种材料利用EMAT力在空间上分散在第一种材料中。 分散过程继续进行,直到第二材料的空间分布使得样品满足指定的标准。 室和/或样品是导电的。 通过将腔室同轴放置在由施加的交流电驱动的感应线圈内并将腔室和感应线圈同轴地放置在高场磁场内而产生EMAT力。 EMAT力通过另一物理对象耦合到样品而不与样品或室的物理接触。 利用批量连续加工。 腔室可以在磁体的孔内折叠。 可以控制声力频率和/或温度。