Ultrasonic flange joining method
    22.
    发明授权
    Ultrasonic flange joining method 有权
    超声波法兰连接法

    公开(公告)号:US07648057B2

    公开(公告)日:2010-01-19

    申请号:US11725540

    申请日:2007-03-19

    IPC分类号: B23K1/06 B29C65/00

    摘要: In an ultrasonic joining method for joining a flange portion of a first member to a portion of a second member, a first horn and a second horn are arranged on the flange portion on a side opposite to the second member, and the first horn is vibrated in a condition that the second horn is biased against the first horn and the first horn and the second horn are pressed against the flange portion such that the flange portion is vibrated while being pressed against the portion of the second member. Because the first horn is vibrated in a condition that the first horn and the second horn are pressed against each other at press-contact portions thereof, vibration of the first horn is transferred to the second horn through the press-contact portions.

    摘要翻译: 在将第一构件的凸缘部与第二构件的一部分接合的超声波接合方法中,在与第二构件相反的一侧的凸缘部上配置有第一喇叭和第二喇叭,第一喇叭振动 在第二喇叭被偏置抵靠第一喇叭并且第一喇叭和第二喇叭被压靠在凸缘部分上的情况下,使得凸缘部分被按压在第二部件的部分上而振动。 由于第一喇叭在其第一喇叭和第二喇叭在其压接部分彼此挤压的条件下振动,所以第一喇叭的振动通过压接部分传递到第二喇叭。

    Production method of ultrasonic weld assembly
    24.
    发明申请
    Production method of ultrasonic weld assembly 失效
    超声焊接组装的生产方法

    公开(公告)号:US20060027305A1

    公开(公告)日:2006-02-09

    申请号:US11194406

    申请日:2005-08-01

    IPC分类号: B32B37/00 B29C65/00

    摘要: When a weld area of weld surface between a flange portion 3a of a pipe 3 and a flange portion 4a of a pipe connection member 4 is S and total energy consumed on the weld surface is Et, ultrasonic welding is carried out to produce said ultrasonic weld assembly in such a manner that an energy density E defined as the quotient obtained by dividing the total energy Et by the weld area S satisfies the relation 26.69e−0.3708P

    摘要翻译: 当管3的凸缘部分3a和管连接部件4的凸缘部分4a之间的焊接表面的焊接区域为S,并且在焊接表面上消耗的总能量为Et时,进行超声波焊接以产生所述 超声波焊接组件,其中定义为通过将总能量Et除以焊接区域S获得的商的能量密度E满足关系式26.69e≤0.3708P。 优选地,以如下方式进行超声波焊接:能量密度E满足关系133.45e -0.3708P

    Electromagnetic clutch with slip ring and brush
    25.
    发明授权
    Electromagnetic clutch with slip ring and brush 失效
    带滑环和电刷的电磁离合器

    公开(公告)号:US6012563A

    公开(公告)日:2000-01-11

    申请号:US132643

    申请日:1998-08-11

    IPC分类号: F16D27/06

    CPC分类号: F16D27/06 F16D2027/008

    摘要: In order to reduce its size of a coil-rotation type electromagnetic clutch in an axial direction and to prolong the life of its brush, a sliding current supply mechanism, which has slip rings and slidable brushes which contact the slip rings, is located inside an inner circumference of a housing boss of a compressor. The current is supplied to an electromagnetic coil via the sliding current supply mechanism. Since the sliding current supply mechanism is located in the boss, a current supply passage is formed without increasing the size of the clutch in axial direction. Thus the installation of the electromagnetic clutch in the engine room is facilitated. Furthermore, since the sliding current supply mechanism is located near the rotational center of the clutch, the life of the brush is prolonged due to the small peripheral velocity of the brush.

    摘要翻译: 为了减小线圈旋转型电磁离合器在轴向上的尺寸并延长其电刷的寿命,具有滑环和滑动环接触的滑动电刷的滑动电流供给机构位于 压缩机的壳体凸起的内圆周。 电流通过滑动电流供给机构供给电磁线圈。 由于滑动电流供给机构位于凸台中,因此在不增加离合器的轴向尺寸的情况下形成电流供给通道。 因此,容易将电磁离合器安装在发动机室中。 此外,由于滑动电流供给机构位于离合器的旋转中心附近,所以由于刷子的圆周速度小,刷子的寿命延长。

    SIGNAL RECEIVING DEVICE AND SIGNAL RECEIVING METHOD USING SAME, AND SIGNAL SUPPLYING UNIT AND SIGNAL SUPPLYING METHOD USING SAME
    26.
    发明申请
    SIGNAL RECEIVING DEVICE AND SIGNAL RECEIVING METHOD USING SAME, AND SIGNAL SUPPLYING UNIT AND SIGNAL SUPPLYING METHOD USING SAME 有权
    使用该信号的信号接收装置和信号接收方法以及使用相同信号的信号提供装置和信号提供方法

    公开(公告)号:US20110148479A1

    公开(公告)日:2011-06-23

    申请号:US13058663

    申请日:2009-09-08

    申请人: Yuuichi Aoki

    发明人: Yuuichi Aoki

    IPC分类号: H03B19/00

    CPC分类号: H04L27/22 H04L2027/0046

    摘要: A signal receiving device is provided which can prevent the imbalance occurring between in-phase and quadrature signals. A polarity of a local oscillator output signal to be outputted from a local oscillator 13 is switched by a polarity switching unit 14 in a time division way. Each of signals outputted from the polarity switching unit 14 is frequency divided by a frequency divider 16. The frequency-divided local oscillation signal is supplied to a mixer 34. Frequency conversion of a receiving signal is performed by the mixer 34 which receives the signal and local oscillation signal to demodulate received data.

    摘要翻译: 提供一种信号接收装置,其可以防止在同相和正交信号之间发生不平衡。 从本地振荡器13输出的本地振荡器输出信号的极性由时分方式由极性切换单元14切换。 从极性切换单元14输出的每个信号由分频器16分频。分频本地振荡信号被提供给混频器34.接收信号的频率转换由接收信号的混频器34执行, 本地振荡信号解调接收的数据。

    Thermally conductive, electrically insulating material and production method thereof
    27.
    发明申请
    Thermally conductive, electrically insulating material and production method thereof 审中-公开
    导热,电绝缘材料及其制造方法

    公开(公告)号:US20110076406A1

    公开(公告)日:2011-03-31

    申请号:US12927965

    申请日:2010-11-29

    IPC分类号: B05D3/02

    摘要: Means for a thermally conductive and electrically insulating material containing an AlN crystal mainly comprising AlN, and a production method thereof. In production, a molten aluminum layer is formed on an AlN substrate with at least its surface comprising AlN in an atmosphere of a non-oxidizing gas, and the molten aluminum layer is then heated in an atmosphere of N2 gas to form an AlN crystal which mainly comprises an AlN layer. The means are also a thermally conductive and electrically insulating material having an AlN crystal and an Al gradient layer, and a production method thereof. In production, a heating step of forming a molten aluminum layer on the AlN layer and heating it in an atmosphere of N2 gas is repeated at least twice or more. At this time, the amount of the N2 gas dissolved in the molten aluminum layer is decreased as the heating step is repeated.

    摘要翻译: 含有主要包含AlN的AlN晶体的导热和电绝缘材料的方法及其制备方法。 在生产中,在AlN衬底上形成熔融铝层,至少在AlN衬底的表面包含非氧化性气体的气氛中的AlN,然后在N 2气氛中加热熔融的铝层,形成AlN晶体,AlN晶体 主要由AlN层构成。 该装置也是具有AlN晶体和Al梯度层的导热和电绝缘材料及其制造方法。 在制造中,将在AlN层上形成熔融铝层并在N 2气氛中加热的加热工序重复至少两次以上。 此时,随着加热步骤重复,溶解在熔融铝层中的N 2气体的量减少。

    Production method of ultrasonic weld assembly
    28.
    发明授权
    Production method of ultrasonic weld assembly 失效
    超声焊接组装的生产方法

    公开(公告)号:US07445140B2

    公开(公告)日:2008-11-04

    申请号:US11194406

    申请日:2005-08-01

    摘要: When a weld area of weld surface between a flange portion 3a of a pipe 3 and a flange portion 4a of a pipe connection member 4 is S and total energy consumed on the weld surface is Et, ultrasonic welding is carried out to produce said ultrasonic weld assembly in such a manner that an energy density E defined as the quotient obtained by dividing the total energy Et by the weld area S satisfies the relation 26.69e−0.3708P

    摘要翻译: 当管3的凸缘部分3a和管连接部件4的凸缘部分4a之间的焊接表面的焊接区域为S,并且在焊接表面上消耗的总能量为Et时,进行超声波焊接以产生所述 超声波焊接组件,其中定义为通过将总能量Et除以焊接区域S获得的商的能量密度E满足关系式26.69e≤0.3708P。 优选地,以如下方式进行超声波焊接:能量密度E满足关系133.45e -0.3708P

    Ultrasonic welding method, ultrasonic welding device and pipe joined by the same
    29.
    发明申请
    Ultrasonic welding method, ultrasonic welding device and pipe joined by the same 失效
    超声波焊接方法,超声波焊接装置与管道相连

    公开(公告)号:US20070221709A1

    公开(公告)日:2007-09-27

    申请号:US11725536

    申请日:2007-03-19

    IPC分类号: A47J36/02

    CPC分类号: B23K20/10 B23K2101/06

    摘要: An ultrasonic welding method and an ultrasonic welding device are provided to join a first member having a substantial pipe shape and a second member at a joining surface by pressure-applying and vibration-exciting. In an arranging process, each of a first horn member and a second horn member is slantways arranged in such a manner that a part of a pressure-applying surface thereof which is nearer to a division surface thereof becomes nearer to the joining surface, according to deformation in a joining process. Thus, in the joining process, the pressure-applying surfaces are disposed substantially parallel to the joining surface due to a pressure-applying reaction force, so that the first horn member and the second horn member can be pressed against each other at the division surfaces thereof.

    摘要翻译: 提供超声波焊接方法和超声波焊接装置,通过施加压力和振动激励来将具有大体管状的第一构件和第二构件接合在接合面。 在一个布置过程中,第一喇叭部件和第二喇叭部件中的每一个倾斜布置成使得其更靠近其分割表面的压力施加表面的一部分变得更接近接合表面,根据 加工过程中的变形。 因此,在接合处理中,施加压力的施加面由于施加压力的反力而与接合面大致平行地配置,从而第一喇叭部件和第二喇叭部件能够在分割面 其中。

    Mechanical fuse and method of manufacturing the same
    30.
    发明授权
    Mechanical fuse and method of manufacturing the same 有权
    机械保险丝及其制造方法

    公开(公告)号:US07156743B2

    公开(公告)日:2007-01-02

    申请号:US09993562

    申请日:2001-11-27

    摘要: An inexpensive mechanical fuse having a high fatigue limit ratio and high rupture reliability, and superior in forming performance, and a method of manufacturing the same are presented. The mechanical fuse is composed of Fe-based sintered alloy, and comprises an inner rim 2 fixed to one power transmission shaft, an outer rim 3 fixed to the other power transmission shaft, and plural arms 4 for linking the inner rim 2 and outer rim 3, which are formed integrally. The arms 4 include rupture portions 6 which are ruptured when exposed to an overload torque. By treating in steam, an iron oxide phase is formed in the surface layer and pore inner wall. The iron oxide phase is effective to form round pores and lower the notch sensitivity. As a result, the fatigue strength and fatigue limit ratio are enhanced.

    摘要翻译: 提出了具有高疲劳极限比和高破裂可靠性并且成形性能优异的廉价的机械保险丝及其制造方法。 机械保险丝由Fe基烧结合金组成,包括固定在一个动力传递轴上的内轮缘2,固定在另一个动力传递轴上的外轮缘3和用于连接内轮缘2和外轮缘的多个臂4 3,它们一体形成。 臂4包括当暴露于过载扭矩时破裂的破裂部分6。 通过蒸汽处理,在表层和孔内壁形成氧化铁相。 氧化铁相有效地形成圆孔并降低切口灵敏度。 结果,提高了疲劳强度和疲劳极限比。