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    • 1. 发明专利
    • 荷電粒子加速器および荷電粒子の加速方法
    • 带电粒子加速器和带电粒子加速的方法
    • JPWO2013002303A1
    • 2015-02-23
    • JP2012530445
    • 2012-06-28
    • 株式会社Quan Japan株式会社Quan Japan
    • 雄二 古久保雄二 古久保
    • H05H15/00H05H5/02H05H5/03H05H5/06H05H7/22H05H9/00
    • H05H7/22H05H9/042
    • 加速電極管T1の前後に、接地されたダミー電極管DT1,DT2を配置する。加速電極管T1には、高電圧直流電源P1の陰極がスイッチング素子SWR1を介して接続されている。また、加速電極管T1には、高電圧直流電源P2の陽極がスイッチング素子SWF1を介して接続されている。さらに、加速電極管T1は、コンデンサCの一方の電極に接続されており、コンデンサCの他方の電極は接地されている。加速電極管T1、高電圧直流電源P1、及びコンデンサCを含む回路は一次遅れ系となっている。イオンビームがギャップGD1を通過する間には、ギャップGD1に時間的に変化しない加速電界が形成され、イオンビームがギャップGD2を通過する間には、ギャップGD2に時間的に強さが増大する加速電界が形成される。
    • 前和加速电极管T1后,将所述虚设电极管DT1,DT2被接地。 加速电极管T1中,高压直流电源P1的阴极通过开关元件连接SWR1。 另外,加速电极管T1中,高压直流电源P2的阳极通过开关元件SWF 1相连。 另外,加速电极管T1连接到电容器C的一方的电极,电容器C的另一个电极接地。 加速电极管T1,该电路包括一高电压直流电源P1,和电容器C具有第一阶延迟系统。 之间的离子束穿过的间隙GD1,加速度电场被形成在不随时间变化的间隙GD1,在它们之间的离子束穿过的间隙GD2,增加在时间上的强度在间隙GD2加速度 形成电场。
    • 3. 发明专利
    • Accelerating tube
    • 加速管
    • JP2005243364A
    • 2005-09-08
    • JP2004050340
    • 2004-02-25
    • Kyocera Corp京セラ株式会社
    • SHUDO HIROYUKI
    • H05H5/03H01J37/04H01J37/26
    • PROBLEM TO BE SOLVED: To provide an accelerating tube which can surely and stably accelerate to a predetermined speed, without disturbing the electron flow.
      SOLUTION: The accelerating tube has an annular metal member 4 coaxially mounted on both end surfaces of an accelerating tube body 3, and an annular flange 5 coaxially welded on an outer principal surface of the annular metal member 4. In the annular metal member 4, the inner periphery side is made to be a cylindrical part 4a protruded axially outwardly, and an outer periphery side is made to be a brim 4b. In the flange 5, a protrusion 5a abutting against the outer principal surface of the brim 4b of the annular metal member 4 is formed over the entire periphery on the outer periphery part, the tip of the cylindrical part 4a of the annular metal member 4 is fitted into an opening 5b of the flange 5 and welded, and the outer principal surface of the brim 4b of the annular metal member 4 is welded to the protrusion 5a of the flange 5.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够可靠且稳定地加速到预定速度的加速管,而不干扰电子流动。 解决方案:加速管具有同轴安装在加速管体3的两个端面上的环形金属部件4和同轴焊接在环形金属部件4的外主表面上的环形凸缘5。在环形金属 构件4,内周侧被制成为轴向向外突出的圆柱形部分4a,并且外周侧被制成边缘4b。 在凸缘5中,环状金属构件4的边缘4b的外侧主面上的突出部5a形成在外周部的整个周边上,环状金属构件4的圆筒部4a的前端为 安装在凸缘5的开口5b中并焊接,并且环形金属构件4的边缘4b的外主表面焊接到凸缘5的突起5a上。(C)2005,JPO和NCIPI
    • 4. 发明专利
    • Large-diameter electrostatic accelerator having discharge breakdown preventing function
    • 具有放电防止功能的大直径静电加速器
    • JP2004259506A
    • 2004-09-16
    • JP2003047060
    • 2003-02-25
    • Japan Atom Energy Res Inst日本原子力研究所
    • INOUE TAKASHITANIGUCHI MASAKI
    • H05H5/03H01J37/04
    • PROBLEM TO BE SOLVED: To solve problems that a large-scale accelerator can not be manufactured, because it is difficult for a large-diameter ceramic tube to be manufactured, and an insulation pipe can not be disassembled easily when the insulation pipe becomes damaged. SOLUTION: The electrostatic accelerator which accelerates a beam of charged particles, such as ions and electrons up to a high energy of MeV level, has an electric field buffering ring made of a metal with a circular-arc cross section in the neighborhood of a triple-superimposed point, to reduce the electric field down to 1.5 kV/mm or smaller, to prevent electric field concentration on the neighborhood, and to prevent the discharge breakdown of the insulation pipe, where the triple-superimposed point is a contact point of a metal part supplying a potential to the inside of the accelerator, the insulation pipe made of FRP, and the vacuum side inside the accelerator, and the electric field buffering ring has a radius equal to or more than the thickness of the FRP so as to prevent the electric field concentration. COPYRIGHT: (C)2004,JPO&NCIPI
    • 要解决的问题为了解决大型加速器不能制造的问题,由于难以制造大直径陶瓷管,并且绝缘管不能容易地拆卸绝缘管 变得损坏

      解决方案:加速带电粒子束(如离子和电子)达到高能量MeV电平的静电加速器具有由邻近圆弧截面的金属制成的电场缓冲环 的三重叠点,以将电场减小到1.5kV / mm以下,以防止附近的电场集中,并且防止绝缘管的放电击穿,其中三重叠点为触点 提供加速器内部的电位的金属部分,由FRP制成的绝缘管和加速器内的真空侧,电场缓冲环的半径等于或大于FRP的厚度, 以防止电场集中。 版权所有(C)2004,JPO&NCIPI

    • 8. 发明专利
    • ELECTROSTATIC ION ACCELERATOR
    • JPH088097A
    • 1996-01-12
    • JP15959894
    • 1994-06-20
    • NISSIN HIGH VOLTAGE CO LTD
    • TAGUCHI KAZUOKIMURA TOSHIO
    • H05H5/03H01J37/08
    • PURPOSE:To reduce the rate at which X-ray is generated at the accelerating electrodes of an accelerating tube and at the extraction electrode system of an ion source. CONSTITUTION:An accelerating electrode 13 of an accelerating tube comprises an outer periphery ring member 131, a coned member 132 and a ring electrode member 133. The ring electrode member having an opening 23 through which a beam passes is formed of a material with a small atomic number such as carbon and aluminum. The ring electrode member is removably mounted on the coned member by securing a plurality of edge mounting piece portions 22 to the mounting piece portions 21 of the coned member with bolts 24. Even if secondary electrons, produced when the accelerating electrode portion and residual gas are bombarded with a beam are accelerated by an electric field and the ring electrode member is bombarded with the secondary electrons, the quantity of X-ray generated is small. For the beam takeout electrode system of an ion source, the ring electrode member formed of a material with a small atomic number is insulated and removably attached to a grounded electrode. The ring electrode member is used as an ion suppressing electrode.