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    • 16. 发明申请
    • STATOR ASSEMBLY AND MAGNETIC BEARING OR ELECTRIC MOTOR HAVING SUCH A STATOR ASSEMBLY
    • 具有这样的定子组件的定子组件和磁性轴承或电动机
    • US20160285342A1
    • 2016-09-29
    • US15074693
    • 2016-03-18
    • Eduardo CarrascoEddy Herisse
    • Eduardo CarrascoEddy Herisse
    • H02K7/09H02K1/12
    • H02K7/09H02K1/12H02K1/185H02K5/04H02K15/028
    • A stator assembly that provides a concentric housing and stator, the stator radially positioned inside the housing, the housing having an inner surface, the stator having an outer surface radially facing the inner surface. One of the outer surface of the stator and the inner surface of the housing has recessed shapes and the other one of the outer and inner surface has protruding shapes. When the two shapes are arranged in a first relative position, the protruding shapes are inserted in the recessed shapes so that the stator can be mounted radially inside the housing along a central axis of the assembly, and in a second relative position that is angularly shifted relative to the first position around the central axis, the protruding shapes exert, against the one of the housing and the stator that bears the recessed shapes, a radial force that angularly and axially locks the stator.
    • 一种定子组件,其提供同心的壳体和定子,所述定子径向地定位在所述壳体内部,所述壳体具有内表面,所述定子具有径向面向所述内表面的外表面。 定子的外表面和壳体的内表面之一具有凹形,外表面和内表面中的另一个具有突出形状。 当两个形状被布置在第一相对位置时,突出形状被插入凹陷形状中,使得定子可以沿着组件的中心轴线径向安装在壳体内部,并且在第二相对位置中成角度地移动 相对于围绕中心轴线的第一位置,突出形状抵抗承受凹陷形状的壳体和定子中的一个施加角度和轴向锁定定子的径向力。
    • 17. 发明授权
    • Vacuum pump
    • 真空泵
    • US09267392B2
    • 2016-02-23
    • US13877523
    • 2011-07-28
    • Ulrich SchroderEduardo CarrascoBenoit Henry
    • Ulrich SchroderEduardo CarrascoBenoit Henry
    • F01D1/36F01D25/26F01D25/28F01D25/24F04D19/04F01D25/00F04D25/06F04D29/58
    • F01D25/00F04D19/042F04D25/068F04D25/0693F04D29/5813
    • A vacuum pump having substrates which can be wired together easily and cooled easily. A substrate unit structure is formed by covering the opening of the casing of the pump main unit with a plate functioning also as the casing of the control unit. Pins of a terminal fixed while penetrating the plate are soldered directly to an active magnetic bearing (AMB) control substrate and an aerial connection substrate in order to integrate these components. The casing and sealing structures can be of simple construction. A drip-proof structure can be made with the terminal at low cost without using expensive drip-proof connectors. Further, by cooling the plate, electronic components mounted respectively on the AMB control substrate in a vacuum atmosphere and the aerial connection substrate in an air atmosphere can be cooled simultaneously.
    • 一种真空泵,具有可以容易地连接在一起并容易冷却的基板。 基板单元结构通过用也用作控制单元的壳体的板覆盖泵主单元的壳体的开口而形成。 在穿透板时固定的端子的引脚直接焊接到主动磁轴承(AMB)控制基板和空中连接基板上,以便将这些部件集成。 外壳和密封结构可以简单的结构。 可以使用终端以低成本制造防滴结构,而无需使用昂贵的防滴连接器。 此外,通过冷却板,可以在真空气氛中分别安装在AMB控制基板上的电子部件和空气气氛中的空中连接基板同时冷却。
    • 18. 发明申请
    • VACUUM PUMP
    • 真空泵
    • US20130189089A1
    • 2013-07-25
    • US13877523
    • 2011-07-28
    • Ulrich SchroderEduardo CarrascoBenoit Henry
    • Ulrich SchroderEduardo CarrascoBenoit Henry
    • F01D25/00
    • F01D25/00F04D19/042F04D25/068F04D25/0693F04D29/5813
    • To be provided is a vacuum pump having substrates which can be wired together easily and cooled easily.A substrate unit structure is formed by covering the opening of the casing of the pump main unit 100 with the plate 201 functioning also as the casing of the control unit 200. Pins 207 of a terminal 210 fixed while penetrating the plate 201 are soldered directly to an AMB control substrate 209 and an aerial connection substrate 211 in order to integrate these components. Therefore, the casing and sealing structures can be made simple. Accordingly, a drip-proof structure can be made with the terminal 210 at low cost without using expensive drip-proof connectors 1 and 3. Further, by cooling the plate 201, electronic components mounted respectively on the AMB control substrate 209 in a vacuum atmosphere and the aerial connection substrate 211 in an air atmosphere can be cooled simultaneously.
    • 提供一种具有可以容易地布线在一起并容易冷却的基板的真空泵。 基板单元结构通过用也用作控制单元200的壳体的板201覆盖泵主单元100的壳体的开口而形成。在穿过板201的同时固定的端子210的引脚207被直接焊接到 AMB控制基板209和空中连接基板211,以便集成这些部件。 因此,可以使外壳和密封结构简单。 因此,不用使用昂贵的防滴连接器1和3就可以在端子210上以低成本制造防滴结构。此外,通过将板201冷却在真空气氛中分别安装在AMB控制基板209上的电子部件 并且空气气氛中的天线连接基板211可以同时冷却。
    • 19. 发明申请
    • AXIALLY-ADJUSTABLE MAGNETIC BEARING AND A METHOD OF MOUNTING IT
    • AXIALLY-ADJUSTABLE MAGNETIVE BEARING AND A METHOD OF MOUNTING IT
    • US20120025648A1
    • 2012-02-02
    • US13177746
    • 2011-07-07
    • Eduardo Carrasco
    • Eduardo Carrasco
    • H02K7/09B21D53/10
    • F16C32/047F16C23/00F16C32/0442F16C32/048F16C35/00Y10T29/49636
    • The axially adjustable magnetic bearing comprises an annular body secured to a support, a magnetic bearing stator structure having an annular sheath for supporting electromagnet windings placed concentrically relative to said body, and an annular rotor armature placed concentrically relative to the stator structure, leaving an airgap relative thereto. The annular body includes at least one radial slot associated with clamping means, and includes a set-back portion in its face facing towards the stator structure. The face of the annular body facing towards the stator structure includes a sliding surface that co-operates with a facing portion of said sheath, and the set-back portion of the annular body presents a threaded portion that co-operates with a threaded portion of an adjustment ring engaged in an annular groove formed in the face of the sheath that faces towards the body. The adjustment ring is prevented from moving in the axial direction in said annular groove.
    • 可轴向调节的磁性轴承包括固定到支撑件的环形体,具有用于支撑相对于所述主体同心放置的电磁铁圈的环形护套的磁性轴承定子结构以及相对于定子结构同心放置的环形转子电枢,留下气隙 相对于此。 环形体包括与夹持装置相关联的至少一个径向狭槽,并且在其面向着定子结构的面中包括一个靠背部分。 面向定子结构的环形体的表面包括与所述护套的相对部分配合的滑动表面,并且环形体的后退部分具有螺纹部分,其与螺纹部分 调节环,其形成在所述护套的面向所述主体的表面上形成的环形槽。 防止调节环在所述环形槽中沿轴向移动。