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    • 32. 发明公开
    • Vibration testing apparatus
    • Apparat zumPrüfender Vibration。
    • EP0617270A3
    • 1995-05-10
    • EP94104230.1
    • 1994-03-17
    • IMV CORPORATION
    • Aoki, HidenaoTsutsumi, ShigehisaFukushima, TakehiroSakai, Zenji
    • G01M7/02
    • G01M7/04
    • A vibration testing apparatus which is minimized in size and capable of being assembled with ease includes a vibrating section (11), a vibration generator (10), and a transmitting section (21) for transmitting vibrations from the vibration generator (10) to the vibrating section. The transmitting section (21) is formed with a pair of opposed parallel pressure-receiving plates (23, 24) that are orthogonal to the direction of vibrations, with the vibrating section (11) interposed between the pressure-receiving plates. The vibrating section (11) is formed with pressure-bearing surfaces (14) in opposed parallel relation to the pair of pressure-receiving plates (23, 24). High pressure fluid is fed into clearances (16), defined between the pressure-receiving plates (23, 24) and the pressure-bearing surfaces (14), to form a static pressure bearing. The pressure-receiving plates (23, 24) are clamped by a connecting member (25) under a load whose value enables the static pressure bearing to function as a spring.
    • 一种尺寸最小并能够组装的振动试验装置,包括振动部分(11),振动发生器(10)和传递部分(21),用于将振动从振动发生器(10)传递到 振动部分。 传动部分(21)形成有与振动方向正交的一对相对的平行压力接收板(23,24),振动部分(11)介于压力承受板之间。 振动部分(11)形成有与所述一对压力接收板(23,24)相对平行的承压表面(14)。 高压流体被供给到限定在压力接收板(23,24)和承压表面(14)之间的间隙(16)中,以形成静压力轴承。 压力接收板(23,24)在负载下由连接构件(25)夹紧,该负载使得静压承受力能够用作弹簧。
    • 34. 发明公开
    • VIBRATION GENERATOR
    • SCHWINGUNGSERZEUGER
    • EP3136077A1
    • 2017-03-01
    • EP15783012.6
    • 2015-03-27
    • IMV Corporation
    • AOKI, HidenaoNAKAMURA, KatsuhikoNAKANISHI, Kazushi
    • G01M7/02
    • G01M7/02
    • A vibration generator is provided that has a simple fluid bearing structure for a slip table and is therefore inexpensive. A vibration generator 1 includes a region including a first base plate structural element 10a and a second base plate structural element 10b. In a vertical cross-sectional view of a base plate provided under a slip table 5, the first base plate structural element 10a has each side face thereof adjacent to a side face of a different base plate structural element, and the second base plate structural element 10b has a side face adjacent to one of the side faces of the first base plate structural element 10a and a side face adjacent to one of side faces of another base plate structural element. A first flow-passage-forming element 20 is provided between the first base plate structural element 10a and the second base plate structural element 10b. The first flow-passage-forming element 20 includes a first vertical flow passage 30 and a horizontal flow passage 31. The first vertical flow passage 30 supplies oil to a bottom face of the first base plate structural element 10a and a bottom face of the second base plate structural element 10b. The horizontal flow passage 31 supplies oil to one of the side faces of the first base plate structural element 10a and one of the side faces of the second base plate structural element 10b opposite this one of the side faces of the first base plate structural element 10a.
    • 提供了一种振动发生器,其具有用于滑台的简单的流体轴承结构,因此便宜。 振动发生器1包括包括第一基板结构元件10a和第二基板结构元件10b的区域。 在设置在滑台5下方的基板的纵剖视图中,第一基板结构体10a的各侧面与不同的基板结构体的侧面相邻,第二基板结构体 10b具有与第一基板结构元件10a的一个侧面相邻的侧面和与另一个基板结构元件的一个侧面相邻的侧面。 第一流路形成元件20设置在第一基板结构元件10a和第二基板结构元件10b之间。 第一流路形成元件20包括第一垂直流动通道30和水平流动通道31.第一垂直流动通道30向第一基板结构元件10a的底面和第二流动通道30的底面提供油 基板结构元件10b。 水平流路31向第一基板结构元件10a的一个侧面和第二基板结构元件10b的与第一基板结构元件10a的一个侧面相对的一个侧面供给油 。