Double-radiant-source framework for container detecting system
    1.
    发明授权
    Double-radiant-source framework for container detecting system 有权
    容器检测系统的双辐射源框架

    公开(公告)号:US07215737B2

    公开(公告)日:2007-05-08

    申请号:US10967698

    申请日:2004-10-15

    IPC分类号: G01N23/83

    CPC分类号: G01V5/0016

    摘要: A double-radiant-source framework used for a radiation detecting system for containers, having a horizontal accelerator, a vertical accelerator and a gantry tower composed of a left vertical girder, a right vertical girder, an upper cross girder, and a lower cross girder. A horizontal collimator and accelerator, and a vertical collimator and accelerator, are fixed on the left vertical girder and the upper cross girder of the gantry tower, respectively, and emit radiation beams as two planes oriented parallel to each other. Detector modules are disposed inside the double-detector arm of the right vertical girder, and inside the upper cross girder and the lower cross girder, respectively, to receive the two emitted planes of radiation beams. The container detecting system can reduce the area covered by the scanning channel of the system, and make the transportation, installation and use convenient, and improve the quality of the detected images.

    摘要翻译: 用于容器辐射检测系统的双辐射源框架,具有水平加速器,垂直加速器和由左垂直梁,右垂直梁,上横梁和下横梁组成的龙门塔 。 水平准直器和加速器以及垂直准直器和加速器分别固定在龙门架塔的左侧垂直梁和上横梁上,并将辐射束作为彼此平行取向的两个平面发射。 检测器模块分别设置在右垂直梁的双检测臂内部,分别位于上横梁和下横梁内部,以接收辐射束的两个发射平面。 容器检测系统可以减少系统扫描通道覆盖的区域,使运输,安装和使用方便,提高检测图像的质量。

    Double-radiant-source framework for container detecting system
    2.
    发明申请
    Double-radiant-source framework for container detecting system 有权
    容器检测系统的双辐射源框架

    公开(公告)号:US20060018428A1

    公开(公告)日:2006-01-26

    申请号:US10967698

    申请日:2004-10-15

    IPC分类号: G01N23/04

    CPC分类号: G01V5/0016

    摘要: A double-radiant-source framework used for a container detecting system, which belongs to the technical field of radiation detection, having a horizontal accelerator, a vertical accelerator and a gantry tower composed of a left vertical girder, a right vertical girder, an upper cross girder, and a lower cross girder. A horizontal collimator and a vertical collimator are disposed in front of the frontal face each of the horizontal accelerator and the vertical accelerator. The horizontal collimator and the vertical collimator are fixed on the left vertical girder and the upper cross girder of the gantry tower, respectively. The radiation beams defined by the horizontal collimator and the vertical collimator are two planes oriented parallel to each other. A double-detector arm is disposed inside the right vertical girder of the gantry tower, and detector modules are disposed inside the double-detector arm for receiving the two different planes of radiation beams defined by and emitted from the horizontal collimator and the vertical collimator. Detector modules are disposed inside the upper cross girder and the lower cross girder respectively for receiving separately radiation beams defined by and emitted from the horizontal collimator and the vertical collimator. The container detecting system can reduce the area covered by the scanning channel of the system, and make the transportation, installation and use convenient, and improve the quality of the detected images.

    摘要翻译: 属于辐射检测技术领域的容器检测系统的双辐射源框架,具有水平加速器,垂直加速器和由左垂直梁,右垂直梁,上部 横梁和下横梁。 水平准直仪和垂直准直仪设置在每个水平加速器和垂直加速器的正面之前。 水平准直仪和垂直准直器分别固定在龙门架塔的左侧垂直梁和上横梁上。 由水平准直器和垂直准直器限定的辐射束是彼此平行取向的两个平面。 双检测器臂设置在龙门塔的右垂直梁内,检测器模块设置在双检测器臂的内部,用于接收由水平准直仪和垂直准直器限定和发射的辐射束的两个不同平面。 检测器模块分别设置在上横梁和下横梁的内侧,用于分别接收由水平准直仪和垂直准直仪定义和发射的辐射束。 容器检测系统可以减少系统扫描通道覆盖的区域,使运输,安装和使用方便,提高检测图像的质量。

    Container inspection apparatus
    5.
    发明授权

    公开(公告)号:US06563903B2

    公开(公告)日:2003-05-13

    申请号:US09889998

    申请日:2001-07-23

    IPC分类号: G01N2304

    摘要: A relocatable container inspection device, which is constituted by modularized units, is used for inspecting a container. The device comprises: a first cabin unit including a radiation source for generating a beam of penetration radiation for penetrating the container to be inspected; a second cabin unit including detectors for detecting the beam of penetration radiation penetrating through the container being inspected and producing corresponding radiographic signals, the second cabin unit and the first cabin unit being arranged oppositely in both sides of an inspection passage; a gantry unit bridging the first cabin unit and the second cabin unit to form a portal-shaped frame adapted for straddling the container being inspected; means for moving the frame relative to the container being inspected along the inspection passage, so that the detectors receive the beam of the penetration radiation generated from the radiation resource and passing through the container being inspected, thereby continuously scanning the container and producing the corresponding radiographic signals, wherein the first cabin unit, the second cabin unit and the gantry unit are all individually made as modular units so as to be quickly and easily assembled and disassembled with each other on the inspection site. In the present invention, all of the modularized units of the container inspection device can be easily assembled and disassembled in the work field, and the dimensions of each modular unit are sized to be suitable for road transports and to be facilitate for the device's movement.

    TRAILER SYSTEM AND METHOD FOR INSPECTING VEHICLE BY RADIATION IMAGING OF VEHICLE THROUGH TRAILER SYSTEM
    7.
    发明申请
    TRAILER SYSTEM AND METHOD FOR INSPECTING VEHICLE BY RADIATION IMAGING OF VEHICLE THROUGH TRAILER SYSTEM 有权
    通过拖拉机系统对车辆进行辐射成像检测车辆的拖车系统和方法

    公开(公告)号:US20080159840A1

    公开(公告)日:2008-07-03

    申请号:US11966053

    申请日:2007-12-28

    IPC分类号: B66F7/00

    CPC分类号: G01V5/0008

    摘要: The present invention relates to a trailer system, and particularly to a self-driving trailer system for a radiation imaging inspection system and a method for inspecting a vehicle by radiation imaging of a vehicle through the trailer system. The self-driving trailer system comprises two trailers symmetrical in structure. Each of the trailers comprises a driving device, running wheels, a trailer body, a carrying device, a lift cylinder, a balance wheel, and two pairs of guide wheels. The driving device, the running wheels, and the balance wheel are coupled with the trailer body. The carrying device is coupled with the trailer body through the lift cylinder. A front carrying arm and a rear carrying arm can clamp front wheels of a vehicle under inspection, and move upwards and downwards by the lift cylinder. The trailer system according to the present invention is smooth and reliable in operation and simple in structure, and is applicable to different diameters of wheels of container lorries under inspection and is convenient in operation.

    摘要翻译: 拖车系统技术领域本发明涉及一种拖车系统,特别涉及用于放射线成像检查系统的自行车拖车系统和通过拖车系统通过车辆的辐射成像检查车辆的方法。 自行车拖车系统包括两个结构对称的拖车。 每个拖车包括驱动装置,行驶轮,拖车车身,运送装置,提升缸,摆轮和两对导向轮。 驱动装置,行驶轮和摆轮与拖车主体联接。 承载装置通过提升缸与拖车主体联接。 前承载臂和后承载臂可以夹紧检查车辆的前轮,并通过提升缸上下移动。 根据本发明的拖车系统操作平稳可靠,结构简单,适用于检查中集装箱货车的不同直径,操作方便。

    Mobile cantilever door-type container inspection system
    8.
    发明授权
    Mobile cantilever door-type container inspection system 有权
    移动式悬臂门式集装箱检验系统

    公开(公告)号:US07663109B2

    公开(公告)日:2010-02-16

    申请号:US11955711

    申请日:2008-03-12

    IPC分类号: G01F23/00 G01N23/04 H05G1/02

    CPC分类号: G01V5/0008 G01V5/0016

    摘要: The present invention discloses a mobile cantilever door-type container inspection system, in the art of radiation scanning imaging inspection technology. The system according to the present invention comprises a moveable scanning apparatus formed by a scanning frame and a remote control device, wherein the scanning frame comprises a radiation source and some detectors, wherein the radiation source or an apparatus cabin wherein the radiation source is disposed is connected with an L-shaped cantilever structure to form a door-type scanning frame, wherein beneath the radiation source or the apparatus cabin wherein the radiation source is disposed are provided with rollers that can reciprocatingly move on rails and are controlled by drive means. The detectors are disposed in a cross beam and a vertical beam of the cantilever structure of the door-type scanning frame. Rays of the radiation source are right in alignment with rows of detectors in the cantilever structure. The container truck to be inspected can pass through the door-like frame formed by the door-type scanning frame. Due to the cantilever structure, the inspection system is advantageous in stable operation, good-quality images, and high reliability.

    摘要翻译: 本发明公开了一种在辐射扫描成像检测技术领域的移动式悬臂门式容器检查系统。 根据本发明的系统包括由扫描框架和遥控装置形成的可移动扫描装置,其中扫描框架包括辐射源和一些检测器,其中辐射源或其中设置辐射源的装置舱是 与L形悬臂结构连接以形成门型扫描框架,其中设置放射源的辐射源或设备舱下方设置有能够在轨道上往复运动并由驱动装置控制的辊。 检测器设置在门型扫描框架的悬臂结构的横梁和垂直梁中。 辐射源的光线与悬臂结构中的检测器行对齐。 要检查的集装箱车可以通过由门型扫描架形成的门状框架。 由于悬臂结构,检测系统运行平稳,图像质量好,可靠性高。

    Container inspection system with CT tomographic scanning function
    9.
    发明申请
    Container inspection system with CT tomographic scanning function 审中-公开
    集装箱检查系统具有CT断层扫描功能

    公开(公告)号:US20060126772A1

    公开(公告)日:2006-06-15

    申请号:US11287332

    申请日:2005-11-23

    IPC分类号: G21G1/00

    摘要: A container inspection system with CT tomographic scanning function, which is related to a large container inspection system for Customs, is disclosed, comprising: a radiation source; an annular rotatable rack with the radiation source provided at the outside thereof and rotated with it; an annular rack body for supporting the annular rotatable rack in a vertical plane; a driving device for rotating the annular rotatable rack; a detector array provided in the inner side of said annular rotatable rack and opposed to a side where the radiation source is provided; a transmission device passing through the annular rotatable rack and annular rack body, and transmitting a container truck to be detected in linear movement; a remote control device for controlling the operations of the radiation source, the driving device and the transmission device, and receiving/displaying the image signal obtained by the detector array. Not only can general inspection of the objects to be detected be undertaken, but also does repeated tomographic inspection of suspicious locations within the inspected objects, thus achieves effective accuracy improvement of the contrabands detection.

    摘要翻译: 公开了一种具有CT断层扫描功能的集装箱检查系统,涉及海关的大型集装箱检验系统,包括:辐射源; 环形可旋转的齿条,其辐射源设置在其外部并随其旋转; 环形齿条体,用于在垂直平面内支撑环形旋转齿条; 用于旋转所述环形旋转齿条的驱动装置; 检测器阵列,设置在所述环形旋转齿条的内侧,并与设置有所述辐射源的一侧相对; 穿过环形可旋转齿条和环形齿条体的传动装置,并以直线运动传递待检测的集装箱卡车; 用于控制辐射源,驱动装置和传输装置的操作以及接收/显示由检测器阵列获得的图像信号的遥控装置。 不仅可以对要检测的物体进行全面检查,而且对受检物体内的可疑位置进行重复层析检查,从而实现对违禁品检测的有效准确性提高。

    Collimation and calibration integrative apparatus for container inspection system
    10.
    发明授权
    Collimation and calibration integrative apparatus for container inspection system 有权
    集装箱检验系统准直和校准综合装置

    公开(公告)号:US07327830B2

    公开(公告)日:2008-02-05

    申请号:US11490722

    申请日:2006-07-21

    IPC分类号: G21K1/02 G01D18/00 G01N23/04

    CPC分类号: G01N23/04

    摘要: A collimation and calibration integrative apparatus for container inspection system includes a collimating block; a calibrating block; a base plate; a motor and a plurality of supporting units fixed on the base plate; a transmission unit coupled to the motor for transmitting movement from the motor to a bearing plate, characterized in that the apparatus further includes: a sliding plate having one end connected to the bearing plate and the other end slidably fitted to guide rails provided on the base plate; a stationary plate fixedly connected to the sliding plate, wherein the collimating block and the calibrating block are provided on the stationary plate to form an integrative structure and an assembly gap is formed between the collimating block and the calibrating block, whereby the collimating block and the calibrating block on the stationary plate are driven by the transmission unit and the bearing plate to be moved integrally.

    摘要翻译: 用于集装箱检查系统的准直和校准一体化装置包括准直块; 校准块 基板; 电动机和固定在所述基板上的多个支撑单元; 耦合到所述电动机的传动单元,用于将运动从所述电动机传递到支承板,其特征在于,所述装置还包括:滑动板,其一端连接到所述支承板,另一端可滑动地装配到设置在所述基座上的导轨 盘子; 固定地连接到滑板的固定板,其中准直块和校准块设置在固定板上以形成一体的结构,并且在准直块与校准块之间形成组装间隙,由此准直块和 固定板上的校准块由传动单元驱动,轴承板一体移动。