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    • 1. 发明授权
    • Fan housing
    • 风扇外壳
    • US5452987A
    • 1995-09-26
    • US145889
    • 1993-10-29
    • Claude BlegerJochen GoehreClaudius MuschelknautzHorst Ruf
    • Claude BlegerJochen GoehreClaudius MuschelknautzHorst Ruf
    • F01N3/32F04D25/06F04D29/42F04D29/60
    • F04D29/4226F01N3/32F04D25/0606Y02T10/20
    • The fan housing for a multistage fan has a first housing part for receiving the electric motor, a second housing part mounted coaxially on the first housing part, and a housing cover mounted on the opposing side of the second housing part. So that fan noise is minimize during fan operation, for improved protection from external effects and to avoid tension originating from thermal expansion in the blower housing the housing cover for the second housing part has a peripheral cover edge portion and is pot-shaped or cap-shaped; the housing cover completely overlaps the second housing part; an overlapping peripheral portion of this housing cover has a radial spacing from the second housing part so as to form an air cushion between the second housing part and the housing cover and the cover edge portion of the housing cover is supported on the first housing part so as to enclose the second housing part.
    • 用于多级风扇的风扇壳体具有用于接收电动机的第一壳体部分,同轴地安装在第一壳体部分上的第二壳体部分和安装在第二壳体部分的相对侧上的壳体盖。 因此,在风扇操作期间风扇噪音最小化,为了改善对外部效应的保护,并且为了避免由于鼓风机壳体中的热膨胀引起的张力,第二壳体部分的壳体盖具有周边盖边缘部分,并且是盆形或盖形, 成形; 壳体盖与第二壳体部分完全重叠; 该壳体盖的重叠周边部分具有与第二壳体部分的径向间隔,从而在第二壳体部分和壳体盖之间形成气垫,并且壳体盖的盖边缘部分被支撑在第一壳体部分上 以封闭第二壳体部分。
    • 2. 发明授权
    • Muffler for a fan, particularly for an internal combustion engine
    • 用于风扇的消声器,特别是用于内燃机
    • US5266753A
    • 1993-11-30
    • US940455
    • 1992-09-04
    • Claudius MuschelknautzClaude BlegerReuben AgnonJochen GoehreGerhard Zink
    • Claudius MuschelknautzClaude BlegerReuben AgnonJochen GoehreGerhard Zink
    • F01N1/12F01N3/30F02M35/12E04F17/04
    • F01N3/30F01N1/125F02M35/1288Y02T10/20
    • The muffler for a fan, especially a bypass air fan of an internal combustion engine, has a housing provided with an air outlet opening and an air inlet opening and including a housing pot having a top opening and a flat housing cover at least partially closing the top opening of the housing pot, the air inlet opening being coaxial to the housing axis and advantageously provided in the housing cover, and a damping insert made from a sound absorbing material and being provided with at least one helical or spiral air flow passage providing a connection between the air outlet opening and the air inlet opening so that air can flow through the air inlet opening to the air outlet opening. In one variation the air outlet opening can open radially from the housing pot and the air inlet opening can be provided centrally in a flat housing cover. In another variation the air outlet opening includes two throughgoing openings of approximately equal diameter provided in the housing cover and spaced an equal distance from the housing axis and the damping insert is made from a plurality of substantially equal disks stacked one on the other in the housing pot of the housing.
    • 用于风扇的消声器,特别是内燃机的旁通风扇具有壳体,该壳体设置有空气出口开口和空气入口开口,并且包括具有顶部开口的壳体和至少部分地关闭 空气入口开口与壳体轴线同轴并且有利地设置在壳体盖中,以及由吸声材料制成的阻尼插入件,并且设置有至少一个螺旋或螺旋形空气流动通道,其提供 空气出口开口和空气入口之间的连接,使得空气可以通过空气入口到空气出口。 在一个变型中,空气出口开口可以从壳体罐径向开放,空气入口可以设置在平坦的壳体盖中央。 在另一个实施例中,空气出口开口包括设置在壳体盖中并且与壳体轴线间隔相等距离的大致相等直径的两个通过的开口,并且阻尼插入件由在壳体中彼此堆叠的多个基本上相等的盘形成 锅的房子。
    • 5. 发明授权
    • Method for balancing an electrically driven air blower unit
    • 用于平衡电动鼓风机单元的方法
    • US5738503A
    • 1998-04-14
    • US590825
    • 1996-01-24
    • Otfried Schmidt-MarlohClaudius MuschelknautzJohann BohnertGuenter BauerJuergen HerpKay KroegerJosef WehbergGerd KnoepfelJochen GoehreHenning SchroederHans Kobschaetzky
    • Otfried Schmidt-MarlohClaudius MuschelknautzJohann BohnertGuenter BauerJuergen HerpKay KroegerJosef WehbergGerd KnoepfelJochen GoehreHenning SchroederHans Kobschaetzky
    • G01M1/30H02K15/16F04B9/02F04B35/04
    • G01M1/30H02K15/165
    • A method of balancing an electronically driven air blower unit comprising a radial blower with a high-speed electronically commutated d.c. motor which drives the blower and which is of external rotor design, utilizing a balancing device into which the completely mounted air blower unit (1) can be inserted, without housing lid, and with which electrical contact (101, 102, 103; 201, 202, 203) can be made. The balancing device is provided with a control device for the motor (3, 4, 5) of the air blower unit and with a device (9) for bridging the motor electronics (10) of the air blower unit (1) itself. In order to drive the part to balanced of the air blower unit, its electromechanical transducer (3, 4, 5) is used, which for this purpose is actuated by the control device provided in the balancing device. The balancing process is essentially carried out in two compensation planes which are spaced axially from one another and are parallel with one another. This takes place on the one hand in a first compensation plane in the plane of the radial blower with possible erosion of material, and on the other hand in the second compensation plane, which lies opposite in the region of the end side of the external rotor (5), with possible attachment of material.
    • 一种电子驱动鼓风机单元的平衡方法,该单元包括径向鼓风机和高速电子换向直流 电动机,其驱动鼓风机并且具有外部转子设计,利用平衡装置,完全安装的鼓风机单元(1)可以插入其中,而不具有壳体盖子,并且与其接触(101,102,103; 201, 202,203)。 该平衡装置设置有用于鼓风机单元的马达(3,4,5)的控制装置和用于桥接鼓风机单元(1)本身的马达电子装置(10)的装置(9)。 为了将部件驱动到鼓风机单元的平衡状态,使用其机电换能器(3,4,5),为此,由机械传感器(3,4,5)由设置在平衡装置中的控制装置启动。 平衡过程基本上在彼此轴向间隔开并且彼此平行的两个补偿平面中进行。 这一方面发生在径向鼓风机的平面中的第一补偿平面中,可能侵蚀材料,另一方面在第二补偿平面中,该第二补偿平面位于外转子的端侧的区域中 (5),可能附着材料。
    • 7. 发明申请
    • VALVE FOR CONTROLLING A FLOW
    • 用于控制流量的阀
    • US20120037828A1
    • 2012-02-16
    • US13265923
    • 2010-04-09
    • Georg ReebClaudius Muschelknautz
    • Georg ReebClaudius Muschelknautz
    • F16K1/00
    • F16K11/074F16K3/085
    • A valve (100) for controlling a flow of a medium in a heating and/or cooling system of a motor vehicle comprises a valve housing (110), which has at least one first channel (140), and a regulating wheel (170), which is provided to open and close the first channel. For this purpose, the regulating wheel is arranged at a first end of a rotatably mounted drive shaft (180), which extends from the regulating wheel through an axial opening (160) of the valve housing into a spring chamber (230) arranged in the valve housing. A second end of the drive shaft arranged in the spring chamber has a spur gear (190). Furthermore, a spring (240), the first end of which is supported on the valve housing and the second end of which is supported on the spur gear, is arranged in said spring chamber.
    • 用于控制机动车辆的加热和/或冷却系统中的介质流动的阀门(100)包括具有至少一个第一通道(140)和调节轮(170)的阀壳体(110) ,其被提供以打开和关闭第一通道。 为此,调节轮设置在可旋转地安装的驱动轴(180)的第一端,驱动轴(180)从调节轮通过阀壳体的轴向开口(160)延伸到布置在该壳体中的弹簧室(230) 阀门壳体。 布置在弹簧室中的驱动轴的第二端具有正齿轮(190)。 此外,在所述弹簧室中布置有弹簧(240),其弹簧(240)的第一端支撑在阀壳体上,其第二端支撑在正齿轮上。
    • 8. 发明授权
    • Fluid pump and method for producing a fluid pump
    • 流体泵和制造流体泵的方法
    • US08277181B2
    • 2012-10-02
    • US12373770
    • 2007-05-29
    • Bernd HeinJerome ThieryChristoph HeierClaudius Muschelknautz
    • Bernd HeinJerome ThieryChristoph HeierClaudius Muschelknautz
    • F04D29/46
    • F04D29/043F04D13/0633F04D29/047F04D29/628Y10T29/49245
    • The invention relates to a fluid pump, in particular a liquid pump for a cooling and/or heating circuit of a motor vehicle, having a pump housing and having a rotationally fixed shaft, which is arranged in the pump housing, for an inner rotor which has an impeller wheel. According to the invention, it is proposed that the shaft is mounted at one side and, at its end remote from the bearing point, supports a bearing cap which engages at least partially around the shaft. The invention also relates to a method for producing a fluid pump of said type, in which method the shaft is fixed with its first end in a housing, in particular in a plastic housing, of the pump, the inner rotor of the pump is pushed onto the shaft and is secured axially by means of a bearing cap which is placed onto the shaft and is supported by the shaft.
    • 本发明涉及一种流体泵,特别是用于机动车辆的冷却和/或加热回路的液体泵,其具有泵壳体并且具有设置在泵壳体中的用于内部转子的旋转固定轴,所述内部转子 有一个叶轮。 根据本发明,提出了轴安装在一侧,并且在其远离支承点的一端支撑轴承盖,其至少部分地围绕轴接合。 本发明还涉及一种用于生产所述类型的流体泵的方法,其中该轴将其第一端固定在泵的壳体中,特别是在塑料壳体中,泵的内转子被推动 通过轴承盖被轴向固定,所述轴承盖被放置在轴上并被轴支撑。
    • 9. 发明申请
    • SPRING-ELASTIC AXIAL SEAL
    • 弹簧轴封
    • US20120146293A1
    • 2012-06-14
    • US13391321
    • 2010-07-05
    • Georg ReebClaudius Muschelknautz
    • Georg ReebClaudius Muschelknautz
    • F16J15/16
    • F16K3/0227F16J15/3236F16K3/08F16K11/074
    • The invention relates to a seal (160) for sealing two opposite contact surfaces along a closed contour, comprising an elastic sealing element (210), which has two opposite sealing surfaces (240) to bear against the contact surfaces in the region of the contour, two spring elements (220, 230), each of which is associated with one of the sealing surfaces, and a supporting element (250) arranged between the spring elements, wherein each spring element comprises two limbs (260, 270), one limb pressing the sealing surface associated with the spring element against one of the contact surfaces and the other limb being supported on the supporting element.
    • 本发明涉及一种用于沿着封闭轮廓密封两个相对的接触表面的密封件(160),其包括弹性密封元件(210),该弹性密封元件具有两个相对的密封表面(240),以抵抗轮廓区域中的接触表面 ,两个弹簧元件(220,230),每个弹簧元件(220,230)与密封表面中的一个相关联,以及布置在弹簧元件之间的支撑元件(250),其中每个弹簧元件包括两个臂(260,270),一个肢 将与弹簧元件相关联的密封表面压靠在一个接触表面上,另一个支撑在支撑元件上。
    • 10. 发明授权
    • Spring-elastic axial seal
    • 弹簧轴向密封
    • US08668204B2
    • 2014-03-11
    • US13391321
    • 2010-07-05
    • Georg ReebClaudius Muschelknautz
    • Georg ReebClaudius Muschelknautz
    • F16J15/22
    • F16K3/0227F16J15/3236F16K3/08F16K11/074
    • The invention relates to a seal (160) for sealing two opposite contact surfaces along a closed contour, comprising an elastic sealing element (210), which has two opposite sealing surfaces (240) to bear against the contact surfaces in the region of the contour, two spring elements (220, 230), each of which is associated with one of the sealing surfaces, and a supporting element (250) arranged between the spring elements, wherein each spring element comprises two limbs (260, 270), one limb pressing the sealing surface associated with the spring element against one of the contact surfaces and the other limb being supported on the supporting element.
    • 本发明涉及一种用于沿着封闭轮廓密封两个相对的接触表面的密封件(160),其包括弹性密封元件(210),该弹性密封元件具有两个相对的密封表面(240),以抵抗轮廓区域中的接触表面 ,两个弹簧元件(220,230),每个弹簧元件(220,230)与密封表面中的一个相关联,以及布置在弹簧元件之间的支撑元件(250),其中每个弹簧元件包括两个臂(260,270),一个肢 将与弹簧元件相关联的密封表面压靠在一个接触表面上,另一个支撑在支撑元件上。