会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明申请
    • Modular surface mount manifold assemblies
    • US20030209277A1
    • 2003-11-13
    • US10154154
    • 2002-05-23
    • Douglas NordstromJames McCoy
    • F17D001/00
    • F15B13/0814F15B13/0825F15B13/086F15B13/0892F16K27/003Y10S285/905Y10T137/87885
    • A modular manifold system is provided for interconnecting fluid components of a fluid system in a reduced area. The system is comprised of a one or more bridge fittings having an internal fluid passageway which has an inlet end in fluid communication with an outlet port of a first fluid component, and an outlet end in fluid communication with an inlet port of a second fluid component. The bridge fittings may additionally comprise two or more ports, which one of said ports may be in fluid communication with a manifold on another substrate level. The bridge fittings may be mounted within a channel of a backing plate for structural support or in channel blocks of varying sizes. An optional locator plate may be utilized which is mounted over the ends of the bridge fittings in order to align the inlet and outlet ports of the fluid components with the inlet and outlet ends of the bridge fittings. The bridge fittings may also be mounted to the locator plate in multiple directions forming multiple flow paths. Additionally, the bridge fittings may be stacked to form multiple layers where bridge fittings of one layer may be in fluid communication with bridge fittings of another layer. The invention may further comprise seals provided in a recess between the fluid ports and the mating bridge fittings ends.
    • 5. 发明授权
    • Pipe clamp with a headed bolt for securing a pipe connection
    • 带夹头螺栓的管夹用于固定管道连接
    • US5944365A
    • 1999-08-31
    • US936747
    • 1997-09-25
    • Wolfgang KizlerGerd Tiefenbacher
    • Wolfgang KizlerGerd Tiefenbacher
    • F16L21/06
    • F16L21/06Y10S285/905Y10T29/49398
    • A pipe clamp with a headed bolt for securing a pipe connection, in particular pipes of the exhaust system of a motor vehicle which are to be connected to one another, in the case of which the end of a first pipe is pushed into an axially slit end of a second pipe and, when the headed bolt is tightened, the pipe clamp, fitted on the slit pipe end, connects the two pipe ends to one another in a frictionally locking manner, is to be secured against a reduction in clamping force. For this purpose, the pipe clamp is formed of a material which has a higher coefficient of expansion than does the material of the pipes which are to be connected. The head of the headed bolt is elongated, in order to avoid impermissibly high local stressing during tightening of the pipe clamp. Due to the elongate form of the head of a headed bolt, the forces on the pipe clamp which support the tightening torque are reduced by a lengthening of the lever arm with respect to the axis of the headed bolt.
    • 一种管夹,其具有用于固定管连接的头螺栓,特别是将要彼此连接的机动车辆的排气系统的管道,在第一管的端部被推入轴向狭缝的情况下 第二管的端部,并且当头螺栓被拧紧时,安装在狭缝管端上的管夹将摩擦锁定的两个管端彼此连接,以防止夹紧力的减小。 为此,管夹由具有比要连接的管材料高的膨胀系数的材料形成。 头螺栓的头部是细长的,以避免在紧固管夹时产生不必要的局部应力。 由于头螺栓的头部的细长形式,通过杠杆臂相对于带头螺栓的轴线的延长来减小支撑紧固扭矩的管夹上的力。
    • 8. 发明授权
    • Connector for medical tubing and medical solution bag device using the
connector
    • 用于医疗管道的连接器和使用连接器的医疗溶液袋装置
    • US4588402A
    • 1986-05-13
    • US729080
    • 1985-05-01
    • Akira IgariKeinosuke Isono
    • Akira IgariKeinosuke Isono
    • A61M1/28A61M39/10A61M39/22A61B19/00A61M25/00
    • A61M39/221A61M39/10A61M1/28A61M2039/1027Y10S285/905Y10S29/035Y10S604/905
    • A connector for medical tubing for liquid transfusion includes a short tubular male connector member made of thermally resistant corrosionproof materia; a short tubular female connector member made of thermally resistant corrosionproof material; and a fitting surface portion on the outer surface of an insertion end of the male connector, shaped in the male form and made of a material having a smaller thermal expansion coefficient than the material of a corresponding fitting surface portion on the inner surface of an insertion end of the female connector shaped in the female form. The fitting surface portion of the insertion end shaped in the male form, and the fitting surface portion of the insertion end shaped in the female form, are of relative sizes such as to permit the insertion ends to be connected to and separated from each other by shrink fit utilizing the difference between the thermal expansion coefficients thereof. A medical solution bag device using the connector is also disclosed.
    • 用于液体输送的医用管道的连接器包括由耐热防腐材料制成的短管状阳连接器构件; 由耐热防腐材料制成的短管状阴连接器构件; 以及在阳连接器的插入端的外表面上的配合表面部分,其形状为阳形,并且由具有比插入件的内表面上的相应配合表面部分的材料的热膨胀系数小的材料制成 阴型连接器的端部以女性形式形成。 以阳模形状的插入端的配合表面部分和成形为阴形的插入端的配合表面部分具有相对的尺寸,以允许插入端通过 使用其热膨胀系数之间的差异进行收缩配合。 还公开了一种使用连接器的药液袋装置。
    • 10. 发明授权
    • Optical fibre connector
    • 光纤连接器
    • US4397522A
    • 1983-08-09
    • US188075
    • 1980-09-17
    • David T. Parr
    • David T. Parr
    • G02B6/38G02B7/26
    • G02B6/3874G02B6/3841G02B6/3887Y10S285/905
    • In an optical fiber connector component including a tubular housing and three round rods supported longitudinally side by side within the tubular housing and defining between them an intersticial space for reception of an optical fibre or optical fibres, the tubular housing is of a material having a greater coefficient of thermal expansion than that of the material of the rods. In use, prior to introducing optical fibre into the intersticial space, the tubular housing is heated to cause it to expand radially outwardly to permit radial separation of the rods and introduction of the optical fibre into the intersticial space. The tubular housing is then cooled or permitted to cool to cause the housing to contract radially inwardly to compress the rods inwardly and cause them to grip the optical fiber so that it is aligned axially in the intersticial space.
    • 在一种光纤连接器部件中,包括一个管状外壳和三个圆柱体,它们在管状外壳内纵向并排地支撑,并在它们之间形成一个用于接收光纤或光纤的间隙,管状外壳是具有较大的 热膨胀系数高于棒料的热膨胀系数。 在使用中,在将光纤引入间隙空间之前,加热管状壳体以使其径向向外扩张,以允许棒的径向分离并将光纤引入到间隙空间中。 然后将管状壳体冷却或允许冷却以使壳体径向向内收缩,以将杆向内压缩,并使它们夹紧光纤使其在间隙空间中轴向对准。