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    • 5. 发明申请
    • PRODUCTION METHOD FOR NANOCOMPOSITE THERMOELECTRIC CONVERSION MATERIAL
    • 纳米复合材料热电转换材料的生产方法
    • US20130330225A1
    • 2013-12-12
    • US13491440
    • 2012-06-07
    • Junya MuraiTakuji KitaDebasish Banerjee
    • Junya MuraiTakuji KitaDebasish Banerjee
    • B22F3/12B82Y99/00
    • C22C1/0491B22F2998/10B82Y30/00C22C32/0015B22F9/24B22F3/105
    • A nanocomposite thermoelectric conversion material capable of improving enhancement of ZT by reducing the thermal conductivity is provided by a production method for a nanocomposite thermoelectric conversion material composed of a matrix and a nanoparticle, the method comprising selecting the combination of at least three kinds of elements such that out of, one kind of an element becomes an oxide in the form of a nanoparticle; dissolving the elements such that the amount of the element constituting the nanoparticle becomes excessive with respect to the composition of the matrix in the final target product; adding a reducing agent to the solution, thereby allowing a reduction reaction to proceed at a plurality of different pH values from the initiation to the termination of reaction; and performing a hydrothermal treatment to cause formation of the matrix by alloying and formation of a nanoparticle composed of the oxide.
    • 通过由基体和纳米粒子组成的纳米复合热电转换材料的制造方法,能够提高通过降低热传导率而提高ZT的纳米复合热电转换材料,该方法包括选择至少三种元素的组合 一种元素中的一种成为纳米颗粒形式的氧化物; 溶解元素,使得构成纳米颗粒的元素的量相对于最终目标产物中的基质的组成变得过大; 向溶液中加入还原剂,从而使反应开始至终止反应的多个不同pH值进行还原反应; 并进行水热处理以通过合金化和由氧化物构成的纳米颗粒的形成来形成基质。
    • 6. 发明授权
    • Magnetic field manipulation devices and actuators incorporating the same
    • 磁场操纵装置和结合其的致动器
    • US08570128B1
    • 2013-10-29
    • US13492087
    • 2012-06-08
    • Ercan Mehmet DedeDebasish Banerjee
    • Ercan Mehmet DedeDebasish Banerjee
    • H01F7/00
    • H01F5/00H01F7/10H01F7/1205
    • Magnetic field manipulation devices and magnetic actuators are disclosed. In one embodiment, a magnetic field manipulation device includes an iron base substrate having a surface, and at least four electrically conductive loops embedded in the surface of the iron substrate. The at least four electrically conductive loops are electrically coupled to one another, and are arranged in the surface of the iron substrate such that the magnetic field manipulation device diverges magnetic flux lines of a magnetic field generated by a magnetic field source positioned proximate the magnetic field manipulation device. In another embodiment, the at least four electrically conductive loops are electrically isolated such that the magnetic field manipulation device converges magnetic flux lines of a magnetic field generated by a magnetic field source positioned proximate the magnetic field manipulation device.
    • 公开了磁场操纵装置和磁致动器。 在一个实施例中,磁场操纵装置包括具有表面的铁基底板和嵌入在铁基板的表面中的至少四个导电环。 至少四个导电环彼此电耦合,并且布置在铁基板的表面中,使得磁场操纵装置分散由靠近磁场定位的磁场源产生的磁场的磁通线 操纵装置 在另一个实施例中,至少四个导电回路是电隔离的,使得磁场操纵装置会收敛位于磁场操纵装置附近的磁场源产生的磁场的磁通线。
    • 10. 发明申请
    • Optical Lock Systems and Methods
    • 光锁系统和方法
    • US20120036905A1
    • 2012-02-16
    • US12853718
    • 2010-08-10
    • Benjamin Alan GraysonDebasish BanerjeeMinjuan ZhangYasuo UeharaMasahiko Ishii
    • Benjamin Alan GraysonDebasish BanerjeeMinjuan ZhangYasuo UeharaMasahiko Ishii
    • E05B51/00E05B65/12G05B15/00G06F19/00
    • G02B5/0825G02B27/0012Y10T70/5889Y10T70/7051
    • In one embodiment, the optical lock system may include an electronic control unit, a lock housing including a lock chamber, and an optical key including a multilayer photonic structure. The multilayer photonic structure may produce a unique intensity profile and includes a plurality of coating layers of high index dielectric material and a plurality of coating layers of low index dielectric. A light source may transmit a reference light to the multilayer photonic structure when the optical key is disposed within the lock chamber. A photo detector may receive an interaction light from the multilayer photonic structure and may transmit the unique intensity profile to the electronic control unit which may execute machine readable instructions to: compare the unique intensity profile to an electronic master; and cause the lock actuator to transition from a first state to a second state when the unique intensity profile corresponds to the electronic master.
    • 在一个实施例中,光学锁定系统可以包括电子控制单元,包括锁定室的锁定壳体和包括多层光子结构的光学键。 多层光子结构可以产生独特的强度分布并且包括多个高折射率介电材料的涂层和多个低折射率电介质的涂层。 当光学钥匙设置在锁定室内时,光源可以将参考光透射到多层光子结构。 光检测器可以接收来自多层光子结构的交互光,并且可以将唯一的强度分布传送到电子控制单元,该电子控制单元可以执行机器可读指令,以将独特的强度分布与电子主机进行比较; 并且当独特强度分布对应于电子主机时,使锁定致动器从第一状态转变到第二状态。