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    • 43. 发明申请
    • SYSTEM AND METHOD FOR PRODUCING MAGNETIC STRUCTURES
    • 用于生产磁性结构的系统和方法
    • US20140211360A1
    • 2014-07-31
    • US14198400
    • 2014-03-05
    • Correlated Magnetics Research, LLC
    • Larry W. FullertonMark D. RobertsStephen D. Straus
    • H01F13/00
    • H01F13/00H01F13/003
    • A magnetizer for magnetizing magnetic field sources into a magnetizable material includes a magnetization subsystem, a motion control system, and a magnetizer control system. The magnetization subsystem includes a magnetizing inductor comprising a plurality of flat conductor layers and a plurality of insulating layers that form multiple turns of a coil having an aperture and a magnetization circuitry for applying a current to the magnetizing inductor to generate a magnetizing field having a high magnetic flux density in and near said aperture that is sufficient to magnetize said magnetizable material and having a low magnetic flux density elsewhere that is insufficient to substantially magnetize said magnetizable material. The motion control system moves at least one of the magnetizable material or the magnetizing inductor to position the aperture of the magnetizing inductor adjacent to one or more locations at a surface of the magnetizable material where the one or more magnetic field sources are magnetized into the magnetizable material. The one or more magnetic field sources have a first polarity exposed at the surface of the magnetizable material and a second polarity not exposed at the surface of the magnetizable material.
    • 用于将磁场源磁化成可磁化材料的磁化器包括磁化子系统,运动控制系统和磁化器控制系统。 磁化子系统包括磁化电感器,其包括多个扁平导体层和多个绝缘层,其形成具有孔径的线圈的匝数和用于向磁化电感器施加电流以产生具有高的磁化场的磁化电路的磁化电路 所述孔内和附近的磁通密度足以使所述可磁化材料磁化并且在其它地方具有不足以基本上磁化所述可磁化材料的低磁通密度。 运动控制系统移动可磁化材料或磁化电感器中的至少一个,以将磁化电感器的孔定位成邻近可磁化材料表面处的一个或多个位置,其中一个或多个磁场源被磁化成可磁化 材料。 一个或多个磁场源具有暴露在可磁化材料表面的第一极性,而第二极性不暴露在可磁化材料的表面。
    • 45. 发明申请
    • Magnetic Structure Production
    • 磁结构生产
    • US20140152407A1
    • 2014-06-05
    • US14176052
    • 2014-02-08
    • Correlated Magnetics Research, LLC.
    • Larry W. FullertonMark D. Roberts
    • H01F13/00
    • H01F7/02H01F7/0215H01F13/003
    • Magnetic structure production may relate, by way of example but not limitation, to methods, systems, etc. for producing magnetic structures by printing magnetic pixels (aka maxels) into a magnetizable material. Disclosed herein is production of magnetic structures having, for example: maxels of varying shapes, maxels with different positioning, individual maxels with different properties, maxel patterns having different magnetic field characteristics, combinations thereof, and so forth. In certain example implementations disclosed herein, a second maxel may be printed such that it partially overwrites a first maxel to produce a magnetic structure having overlapping maxels. In certain example implementations disclosed herein, a magnetic printer may include a print head comprising multiple parts and having various properties. In certain example implementations disclosed herein, various techniques for using a magnetic printer may be employed to produce different magnetic structures. Furthermore, description of additional magnet-related technology and example implementations thereof is included herein.
    • 通过举例而非限制的方式,可以将磁性结构制造涉及通过将磁性像素(也称为maxels)印刷到可磁化材料中来产生磁性结构的方法,系统等。 本文公开了具有例如具有不同形状的maxels,具有不同定位的maxels,具有不同性质的单独maxels,具有不同磁场特性的maxel图案,其组合等等的磁性结构的制造。 在本文公开的某些示例实现中,可以打印第二maxel,使得其部分地覆盖第一maxel以产生具有重叠maxels的磁性结构。 在本文公开的某些示例实现中,磁性打印机可以包括包括多个部件并具有各种性质的打印头。 在本文公开的某些示例实现中,可以采用用于使用磁性打印机的各种技术来产生不同的磁性结构。 此外,本文还包括附加磁体相关技术的描述及其示例实施方式。
    • 50. 发明申请
    • SYSTEM FOR DETACHING A MAGNETIC STRUCTURE FROM A FERROMAGNETIC MATERIAL
    • 用于从磁致伸缩材料中分离磁性结构的系统
    • US20130222091A1
    • 2013-08-29
    • US13779611
    • 2013-02-27
    • Correlated Magnetics Research, LLC
    • Larry W. FullertonMark D. RobertsWesley SwiftJacob S. ZimmermanR. Scott Evans
    • H01F7/02
    • H01F7/0257H01F7/04
    • A detachment system includes a first piece of ferromagnetic material, a shunt plate, and at least one simple machine. The first piece of ferromagnetic material has a first side and a second side opposite the first side and has magnetically printed field sources that extend from the first side to the second side. The magnetically printed field sources have a first multi-polarity pattern. The first side of the first piece of ferromagnetic material is magnetically attached to a second piece of ferromagnetic material. The shunt plate is disposed on the second side of the first piece of ferromagnetic material. The shunt plate routes magnetic flux through the first piece of ferromagnetic material from the second side to the first side of the first ferromagnetic material. The at least one simple machine is configured to amplify an applied force into a detachment force to create an angled spacing between the first piece of ferromagnetic material and the second piece of ferromagnetic material.
    • 分离系统包括第一片铁磁材料,分流板和至少一个简单的机器。 第一片铁磁材料具有与第一侧相对的第一侧和第二侧,并且具有从第一侧延伸到第二侧的磁性印刷场源。 磁性印刷的场源具有第一多极性图案。 第一块铁磁材料的第一面磁性地附着到第二片铁磁材料上。 分流板设置在第一片铁磁材料的第二侧上。 分流板将磁通量从第一铁磁材料的第二侧向第一侧引导到第一铁磁材料的第一侧。 至少一个简单的机器被配置成将施加的力放大到分离力中,以在第一片铁磁材料和第二片铁磁材料之间形成一个有角度的间隔。