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    • 2. 发明申请
    • SEALESS, LIQUID COOLED EDDY CURRENT ENERGY ABSORPTION SYSTEM
    • 密封,液体冷却EDDY电流吸收系统
    • US20160006334A1
    • 2016-01-07
    • US14789940
    • 2015-07-01
    • John Peter DeConti
    • John Peter DeConti
    • H02K49/04H02K49/10F16D63/00
    • H02K49/04B60T13/586F16D63/002H02K5/20H02K9/19H02K49/10
    • The disclosed apparatus relates to a non-frictional, rotational, continuous energy absorbing device utilizing internal liquid cooling and having no dynamic seals. The apparatus is comprised of a rotor assembly containing magnets, cooling chambers containing magnetically driven impellers, actuators to adjust the axial positioning of said chambers, and other variations of the apparatus including an air-cooled design and additional friction braking. Braking torque is generated through shearing of eddy currents as the cooling chambers are moved axially closer to the rotor by actuators. The same action also drives magnetically driven impellers, resulting in coolant flow. Braking energy absorption increases as does coolant flow as the distance between the cooling chambers and the rotor is decreased. As the distanced between the rotor and cooling chambers increase, both energy absorption and coolant flow decrease to zero. The coolant flows from the cooling chambers to a heat exchanger to dissipate the energy.
    • 所公开的装置涉及利用内部液体冷却并且没有动态密封的非摩擦,旋转,连续的能量吸收装置。 该装置由包含磁体的转子组件,包含磁力驱动的叶轮的冷却室,用于调节所述室的轴向定位的致动器以及包括空气冷却设计和附加摩擦制动的装置的其它变型组成。 当冷却室通过致动器轴向更靠近转子移动时,通过涡流剪切产生制动扭矩。 相同的作用也驱动磁力驱动的叶轮,导致冷却剂流动。 制冷能量吸收随着冷却剂流动而减小,因为冷却室和转子之间的距离减小。 随着转子和冷却室之间的距离增加,能量吸收和冷却剂流量都减少到零。 冷却剂从冷却室流向热交换器以消散能量。