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    • 51. 发明申请
    • Detection Apparatus
    • 检测装置
    • US20090271068A1
    • 2009-10-29
    • US12428191
    • 2009-04-22
    • Junping ShiShangmin SunJinning LiangQuanwei SongYucheng WuBin HuYanjun HanXuejing Yang
    • Junping ShiShangmin SunJinning LiangQuanwei SongYucheng WuBin HuYanjun HanXuejing Yang
    • G06F7/00
    • G01V5/0008
    • A detection apparatus comprises a freely-movable integral framework provided with front wheels and rear wheels, characterized in that, a control portion and a scan portion, and a driving mechanism driving said framework to move are provided on said framework, wherein said framework is provided with a first interface for connecting to external power, so that said detection apparatus is driven by external power via the driving mechanism to perform detection while conducting detection on site, and wherein the semitrailer for mounting the framework is provided with a second interface connectable to a traction apparatus so as to connect the detection apparatus and the traction apparatus while carrying out site-changing transportation. Said detection apparatus is not affected by the alteration of the emission standards, has low failure rate and maintenance cost, has zero emission in the detection state, and is pollution-free.
    • 检测装置包括设置有前轮和后轮的可自由移动的整体框架,其特征在于,在所述框架上设置有控制部分和扫描部分以及驱动所述框架移动的驱动机构,其中提供所述框架 具有用于连接到外部电力的第一接口,使得所述检测装置经由驱动机构由外部电力驱动,以在现场进行检测时执行检测,并且其中用于安装框架的半挂车设置有可连接到 牵引装置,以便在进行现场改变运输时连接检测装置和牵引装置。 所述检测装置不受排放标准变更的影响,故障率低,维护成本低,检测状态为零排放,无污染。
    • 59. 发明申请
    • Scanning arm and train inspection system by imaging through radiation having the scanning arm
    • US20060203962A1
    • 2006-09-14
    • US11285974
    • 2005-11-23
    • Bin HuShangmin SunYucheng WuNan JiangZhizhong LiangWanquan ShenNing Li
    • Bin HuShangmin SunYucheng WuNan JiangZhizhong LiangWanquan ShenNing Li
    • G01N23/04
    • G01V5/0016G01N23/04
    • The present invention discloses a scanning arm and a train inspection system by imaging through radiation having the scanning arm. The train inspection system by imaging through radiation comprises a scanning arm, a detector bracket with detector arrays mounted thereon, a radiation source, a calibration device, a front collimator and a rear collimator. The scanning arm includes a rigid middle inclining section; an upper horizontal section and a lower horizontal section which are located at upper and lower ends of the rigid middle inclining section respectively and supported on a construction base; and vibration damping elements arranged between the upper horizontal section and the construction base, and between the lower horizontal section and the construction base. The detector bracket is fixedly connected with said upper horizontal section. The radiation source is suspended from the lower horizontal section by a supporting abutment. The calibration device is fixed on the horizontal ground and faces x-ray emitted from the radiation source. The front collimator is suspended from the middle inclining section, and the calibration device is located between the front collimator and the radiation source. The rear collimator is suspended from the middle inclining section, and the front collimator is located between the calibration device and the rear collimator. The sector-shaped x-ray emitted from the radiation source penetrate through the calibration device, the front collimator, the rear collimator and the train to be inspected sequentially so as to be received by the detector array provided on the detector bracket. Compared with the prior arts, the train inspection system by imaging through radiation of the present invention is advantageous in reasonable designing, good adaptation, reliable construction, stable imaging and reduced occupied area. Accordingly, the train inspection system by imaging through radiation of the present invention is advantageously applicable to inspection of trains for the customs.