Method of production of anchor-bonded composite structures
    3.
    发明授权
    Method of production of anchor-bonded composite structures 失效
    锚固复合结构的生产方法

    公开(公告)号:US5121537A

    公开(公告)日:1992-06-16

    申请号:US622340

    申请日:1990-11-29

    摘要: A method of producing an anchor bonded composite plate. Anchor cavities are formed in a base plate by placing a forming plate with a circular hole therethrough over the base plate at a selected anchor cavity location. A punch placed through the circular hole then applies a punching force to the base plate, thereby forming in the base plate an annular mound with a concentrically punched hole. The mound is next pressed with a leveling plate to cause the material of the mound to flow inside the punched hole forming an anchor cavity with an overhanging internally tapered surface. A cladding plate with a plurality of anchor holes is then placed on the base plate with its holes aligned with the cavities of the base plate. An anchor pin is inserted in the thus aligned openings and is plastically deformed to mechanically bond the plates together. The cladding plate and the base plate may be made of an aluminum alloy and a hard steel, respectively. The composite plate thus produced is applicable as a reaction plate for a linear motor vehicle and as a tank material for a liquid natural gas holder.

    摘要翻译: 一种锚固复合板的制造方法。 通过在所选择的锚定腔位置处,在基板上放置具有圆形孔的成形板而在基板上形成锚定腔。 穿过圆孔的冲头然后对基板施加冲压力,从而在基板上形成具有同心冲孔的环形堆垛。 接下来用平整板压住土丘,使得土丘的材料在冲孔内流动,形成具有悬垂的内锥形表面的锚定腔。 然后将具有多个锚定孔的包覆板放置在基板上,其孔与基板的空腔对准。 锚定销插入到如此排列的开口中并且塑性变形以将板机械地结合在一起。 包层板和基板可以分别由铝合金和硬质钢制成。 这样生产的复合板可用作线性机动车辆的反作用板和用作液体天然气保持器的罐材料。

    Electron-beam excited plasma generator with side orifices in the
discharge chamber
    6.
    发明授权
    Electron-beam excited plasma generator with side orifices in the discharge chamber 失效
    电子束激发等离子体发生器,具有放电室中的侧孔

    公开(公告)号:US5942854A

    公开(公告)日:1999-08-24

    申请号:US90402

    申请日:1998-06-04

    摘要: The present invention provides an electron-beam excited plasma generator which can effectively form samples of larger areas.The electron-beam excited plasma generator according to the present invention comprises a cathode (11) for emitting thermions; a discharge electrode (23) for gas discharge between the cathode and the same; an intermediate electrode (13) positioned coaxially with the discharge electrode in an axial direction; a discharge chamber (2) to be filled with discharge gas plasma generated by the gas discharge between the cathode and the discharge electrode; a plasma processing chamber (3) formed adjacent to the discharge chamber with a partition wall (21) disposed therebetween and positioned so that a surface-to-be-processed of a workpiece-to-be-processed (35) is positioned perpendicular to the axial direction; a plurality of orifices (22) for pulling out electrons in the discharge gas plasma in the discharge chamber into the plasma processing chamber, each being formed in the partition wall substantially perpendicular to the axial line and distributed radially with respect to the axial direction; and an accelerating electrode (31) disposed in the plasma processing chamber for pulling out and accelerating the electrons through the orifices.

    摘要翻译: 本发明提供一种电子束激发等离子体发生器,能够有效地形成较大面积的样品。 根据本发明的电子束激发等离子体发生器包括用于发射热量的阴极(11) 用于在阴极与其之间进行气体放电的放电电极(23); 与所述放电电极在轴向同轴配置的中间电极(13) 放电室(2),其被填充有由阴极和放电电极之间的气体放电产生的放电气体等离子体; 等离子体处理室(3),其与排放室相邻形成有分隔壁(21),其间设置有被处理工件(35)的待处理表面与垂直于 轴向; 多个用于将放电室中的放电气体等离子体中的电子抽出到等离子体处理室中的多个孔,每个孔分别形成在基本上垂直于轴线并且相对于轴向方向径向分布的分隔壁中; 以及设置在等离子体处理室中的加速电极(31),用于拉出和加速电子通过孔。

    Plasma processing equipment
    7.
    发明授权
    Plasma processing equipment 有权
    等离子体处理设备

    公开(公告)号:US06211622B1

    公开(公告)日:2001-04-03

    申请号:US09435768

    申请日:1999-11-08

    IPC分类号: H01J2702

    CPC分类号: H01J37/32009 H01J37/3233

    摘要: A plurality of extracting orifices 42 for extracting the electron beam from a discharge portion 2 into a plasma process chamber 3 via a compartment 4 are provided radially. A plurality of accelerating electrodes 36, 37 are arranged in the process chamber 3. The electron extracting direction from the extracting orifices 42 is set in substantially parallel with an object surface 35. The number and the arrangement of the accelerating electrodes 36, 37 are set such that a density distribution of the excited plasma has an oprimal state for processing the object. The object having a large area can be processed appropriately.

    摘要翻译: 多个提取孔42用于通过隔室4将电子束从排出部分2提取到等离子体处理室3中。 多个加速电极36,37布置在处理室3中。来自提取孔42的电子提取方向被设置为与物体表面35大致平行。加速电极36,37的数量和布置被设定 使得激发的等离子体的密度分布具有用于处理物体的oprimal状态。 可以适当地处理具有大面积的物体。