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    • 1. 发明授权
    • High-voltage automatic changeover switch
    • 高压自动切换开关
    • US07679012B2
    • 2010-03-16
    • US11777639
    • 2007-07-13
    • Yaohong LiuYumei ChenHuaping TangJianjun GaoXinshui YanFeng GaoWei JiaXiaotian LiangJinsheng LiuDe WeiWei YinDan ZhangChong GuQinghui Zhang
    • Yaohong LiuYumei ChenHuaping TangJianjun GaoXinshui YanFeng GaoWei JiaXiaotian LiangJinsheng LiuDe WeiWei YinDan ZhangChong GuQinghui Zhang
    • H01H21/18
    • H01H31/20
    • A high-voltage automatic changeover switch, includes a support and a control circuit board mounted on the support. In one embodiment, the support includes an insulating frame, four high-voltage contacts mounted on each of two opposite plates of the insulating frame, four high-voltage contacts on the same plate being pair-to-pair arranged, the high-voltage contacts at the corresponding positions on the two plates being pair-to-pair arranged. A motor is provided on the support, and when switching the high voltages, the control circuit board controls the rotation of the motor to automatically switch the connection relation between the high-voltage contact pairs. Embodiments of the switch have a voltage-resistance of above 50 KV, allowing a pulse current of not less than 500 A to pass through, and good contact performance and a high stability. In one aspect, the high-voltage automatic changeover switch performs automatic switching of power source high voltages in an accelerator system, so that the accelerator obtains electron beams with different energies, thus allowing an expanded scope of application of the accelerator, including updating and upgrading of non-destructive testing systems, custom container inspection systems, and high-energy CT systems.
    • 一种高压自动切换开关,包括支撑件和安装在支撑件上的控制电路板。 在一个实施例中,支撑件包括绝缘框架,安装在绝缘框架的两个相对板板中的每一个上的四个高压触点,同一板上的四个高压触点成对配对,高压触点 在两个板上的对应位置成对配对。 在支架上设有电机,当切换高电压时,控制电路板控制电动机的转动,自动切换高电压触点对之间的连接关系。 开关的实施例具有高于50KV的电压,允许不小于500A的脉冲电流通过,良好的接触性能和高稳定性。 一方面,高压自动切换开关在加速器系统中进行电源高电压的自动切换,使得加速器获得具有不同能量的电子束,从而允许加速器的应用范围扩大,包括更新和升级 非破坏性测试系统,定制容器检查系统和高能CT系统。
    • 4. 发明授权
    • Standing wave electron linear accelerator and installation adjusting device thereof
    • 驻波电子线性加速器及其安装调整装置
    • US07751531B2
    • 2010-07-06
    • US11997442
    • 2006-12-25
    • Yaohong LiuChuanxiang TangYuanjing LiJinsheng LiuWei JiaJianjun GaoHuaping TangChong GuWei YinDan ZhangQinghui Zhang
    • Yaohong LiuChuanxiang TangYuanjing LiJinsheng LiuWei JiaJianjun GaoHuaping TangChong GuWei YinDan ZhangQinghui Zhang
    • H01J35/14
    • H05H9/04
    • The present invention discloses a standing wave linear accelerator, comprising: a microwave device configured to generate microwave; an electron beam emitting device configured to emit electron beam; an accelerating device configured to receive the microwave generated by the microwave device and form a microwave electric field, to accelerate electron beams generated from the electron beam emitting device and undertake the accelerated electron beam targeting to emit X ray beam; a synchronous device generating synchronous pulse signal; and a quick beam emitting device receiving the synchronous pulse signal generated by the synchronous device, wherein the microwave device runs and generates microwave in advance before the operation of the electron beam emitting device based on the synchronous pulse signal, and the quick beam emitting device drives the electron beam emitting device to emit electron beam after power of the microwave generated by the microwave device reaches stable state, so that the accelerating device emits X ray beam. In the accelerator, the microwave system and the electron beam emitting device do not work at the same time, and the accelerator electron beam emitting system is started only when the AFC is put into operation and runs stably.
    • 本发明公开了一种驻波直线加速器,包括:微波装置,其被配置为产生微波; 配置为发射电子束的电子束发射器件; 加速装置,被配置为接收由微波装置产生的微波并形成微波电场,以加速从电子束发射装置产生的电子束,并进行加速的电子束瞄准以发射X射线束; 产生同步脉冲信号的同步装置; 以及接收由同步装置产生的同步脉冲信号的快速光束发射装置,其中微波装置在电子束发射装置基于同步脉冲信号的操作之前预先运行并产生微波,并且快速射束发射装置驱动 在由微波装置产生的微波功率之后发射电子束的电子束发射装置达到稳定状态,从而加速装置发射X射线束。 在加速器中,微波系统和电子束发射装置不能同时工作,并且加速电子束发射系统仅在AFC投入使用并稳定运行时启动。
    • 5. 发明申请
    • STANDING WAVE ELECTRON LINEAR ACCELERATOR AND INSTALLATION ADJUSTING DEVICE THEREOF
    • 立式波形电子线性加速器及其安装调整装置
    • US20100002843A1
    • 2010-01-07
    • US11997442
    • 2006-12-25
    • Yaohong LiuChuanxiang TangYuanjing LiJinsheng LiuWei JiaJianjun GaoHuaping TangChong GuWei YinDan ZhangQinghui Zhang
    • Yaohong LiuChuanxiang TangYuanjing LiJinsheng LiuWei JiaJianjun GaoHuaping TangChong GuWei YinDan ZhangQinghui Zhang
    • H01J35/14H05H9/04
    • H05H9/04
    • The present invention discloses a standing wave linear accelerator, comprising: a microwave device configured to generate microwave; an electron beam emitting device configured to emit electron beam; an accelerating device configured to receive the microwave generated by the microwave device and form a microwave electric field, to accelerate electron beams generated from the electron beam emitting device and undertake the accelerated electron beam targeting to emit X ray beam; a synchronous device generating synchronous pulse signal; and a quick beam emitting device receiving the synchronous pulse signal generated by the synchronous device, wherein the microwave device runs and generates microwave in advance before the operation of the electron beam emitting device based on the synchronous pulse signal, and the quick beam emitting device drives the electron beam emitting device to emit electron beam after power of the microwave generated by the microwave device reaches stable state, so that the accelerating device emits X ray beam. In the accelerator, the microwave system and the electron beam emitting device do not work at the same time, and the accelerator electron beam emitting system is started only when the AFC is put into operation and runs stably.
    • 本发明公开了一种驻波直线加速器,包括:微波装置,其被配置为产生微波; 配置为发射电子束的电子束发射器件; 加速装置,被配置为接收由微波装置产生的微波并形成微波电场,以加速从电子束发射装置产生的电子束,并进行加速的电子束瞄准以发射X射线束; 产生同步脉冲信号的同步装置; 以及接收由同步装置产生的同步脉冲信号的快速光束发射装置,其中微波装置在电子束发射装置基于同步脉冲信号的操作之前预先运行并产生微波,并且快速射束发射装置驱动 在由微波装置产生的微波功率之后发射电子束的电子束发射装置达到稳定状态,从而加速装置发射X射线束。 在加速器中,微波系统和电子束发射装置不能同时工作,并且加速电子束发射系统仅在AFC投入使用并稳定运行时启动。