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公开(公告)号:US10365397B2
公开(公告)日:2019-07-30
申请号:US15691747
申请日:2017-08-31
Applicant: NUCTECH COMPANY LIMITED
Inventor: Zhiqiang Chen , Yuanjing Li , Shangmin Sun , Yu Hu , Yuan Ma , Qiangqiang Wang , Long Du , Wei Li
Abstract: The present application relates to a container inspection system, comprising a radiation source (31), a radiation detection apparatus and a quay crane for hoisting a container onto an automated guided vehicle, said radiation source (31) and said radiation detection apparatus being provided on said quay crane, for performing a scanning inspection on said container loaded on said vehicle. The present application, which does not need a special allocation of approach of the radiation source and the radiation detection apparatus, conveniently effectuates scanning inspection of a container, and improving the inspection efficiency.
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公开(公告)号:US11614413B2
公开(公告)日:2023-03-28
申请号:US17255968
申请日:2020-01-03
Inventor: Jianmin Li , Li Zhang , Yuanjing Li , Zhiqiang Chen , Hao Yu , Shangmin Sun , Bicheng Liu , Weizhen Wang , Dongyu Wang , Yuan Ma , Yu Hu , Chunguang Zong
IPC: G01N23/20008 , G01N23/203
Abstract: The present disclosure provides a back scattering inspection system and a back scattering inspection method. The back scattering inspection system includes a frame and a back scattering inspection device. The rack includes a track arranged vertically or obliquely relative to the ground, and a space enclosed by the track forms an inspection channel; and the back scattering inspection device includes a back scattering ray emitting device and a back scattering detector, and the back scattering inspection device is movably disposed on the track for inspecting an inspected object passing through the inspection channel. The back scattering inspection system can perform back scattering inspection on a plurality of surfaces of the inspected object.
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公开(公告)号:US10795050B2
公开(公告)日:2020-10-06
申请号:US16233387
申请日:2018-12-27
Applicant: TSINGHUA UNIVERSITY , Nuctech Company Limited
Inventor: Ying Li , Jianmin Li , Jinguo Cao , Yuan Ma , Yulan Li , Yuan He , Yuanjing Li , Hui Meng , Zhiqiang Chen , Yiwei Guo , Li Zhang
Abstract: A vehicle detection system includes a transverse detector arm, two vertical detector arms, a radiation source, a plurality of transverse detectors, and a plurality of vertical detectors. The transverse detector arm may be disposed on the ground. Two vertical detector arms are disposed at both ends of the transverse detector arm. The radiation source is located above the transverse detector arm. A plurality of transverse detectors are disposed within the transverse detector arm and are laid along a length direction of the transverse detector arm for receiving ray emitted by the radiation source. The plurality of vertical detectors are symmetrically disposed on the two vertical detector arms, and each of the vertical detectors is disposed towards a center point of the radiation source for receiving ray emitted by the radiation source.
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公开(公告)号:US10156528B2
公开(公告)日:2018-12-18
申请号:US15691748
申请日:2017-08-31
Applicant: NUCTECH COMPANY LIMITED
Inventor: Zhiqiang Chen , Yuanjing Li , Shangmin Sun , Yu Hu , Yuan Ma , Qiangqiang Wang , Long Du , Wei Li
Abstract: This invention relates to a movable divided inspection system and method, wherein the scanning inspection system comprises a first radiation source, a first detection means, a first automated guided vehicle and a second automated guided vehicle. The first radiation source is mounted on the first automated guided vehicle. The first detection means is mounted on the second automated guided vehicle. The first automated guided vehicle and the second automated guided vehicle are able to drive the first radiation source and the first detection means to a preset scan inspection position, so as to form a scanning passage for passage of an article to be scanned between the first and second automated guided vehicle, such that scanning inspection of said article to be scanned is realized by relative movement of said article to be scanned with reference to said first automated guided vehicle and said second automated guided vehicle.
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公开(公告)号:US10082596B2
公开(公告)日:2018-09-25
申请号:US14582097
申请日:2014-12-23
Applicant: TSINGHUA UNIVERSITY , NUCTECH COMPANY LIMITED
Inventor: Yu Hu , Jianmin Li , Hui Meng , Yuan Ma , Weifeng Yu , Jinning Liang , Shangmin Sun
CPC classification number: G01V5/0016 , B65G15/44 , B65G17/08 , B65G47/66 , F16M13/02
Abstract: The present invention discloses a vehicle inspection system, comprising: an inspection passage; a vehicle dragging system arranged in the inspection passage, wherein the vehicle dragging system comprises a first dragging means and a second dragging means, which are sequentially arranged along a vehicle dragging direction, and in the vehicle dragging direction, the first dragging means is arranged at the upstream of the second dragging means, and a separating section is arranged between the first dragging means and the second dragging means, so that the first dragging means and the second dragging means are separated by a preset distance in the vehicle dragging direction; and a radiographic inspection system, wherein at least a part of paths of the beams of the radiographic inspection system passes through the separating section between the first dragging means and the second dragging means.
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公开(公告)号:US10718128B2
公开(公告)日:2020-07-21
申请号:US15857645
申请日:2017-12-29
Applicant: NUCTECH COMPANY LIMITED
Inventor: Zhiqiang Chen , Yuanjing Li , Jianmin Li , Shangmin Sun , Yu Hu , Yuan Ma , Qiangqiang Wang
Abstract: A vehicle inspection system is described. The vehicle inspection system comprises: an inspection device, for performing an inspection on a vehicle to be inspected; a carrier platform, for carrying the vehicle to be inspected; and an unmanned controlled travelling device for moving the carrier platform to pass through a scanning area of the inspection device, so as to perform the inspection on the vehicle to be inspected. In the present disclosure, the vehicle to be inspected is carried by the carrier platform, and the unmanned controlled travelling device is used to move the carrier platform to pass through the scanning area of the inspection device, so that the vehicle to be inspected can be subject to inspection smoothly. There is no driver required to drive through the scanning area in this process, thus avoiding exposure of a driver to a threat of radiation.
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公开(公告)号:US20180059282A1
公开(公告)日:2018-03-01
申请号:US15691747
申请日:2017-08-31
Applicant: Nuctech Company Limited
Inventor: Zhiqiang Chen , Yuanjing Li , Shangmin Sun , Yu Hu , Yuan Ma , Qiangqiang Wang , Long Du , Wei Li
IPC: G01V5/00
CPC classification number: G01V5/0066 , B66C13/16 , B66C19/002 , G01V5/0008
Abstract: The present application relates to a container inspection system, comprising a radiation source (31), a radiation detection apparatus and a quay crane for hoisting a container onto an automated guided vehicle, said radiation source (31) and said radiation detection apparatus being provided on said quay crane, for performing a scanning inspection on said container loaded on said vehicle. The present application, which does not need a special allocation of approach of the radiation source and the radiation detection apparatus, conveniently effectuates scanning inspection of a container, and improving the inspection efficiency.
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公开(公告)号:US20180059036A1
公开(公告)日:2018-03-01
申请号:US15691748
申请日:2017-08-31
Applicant: NUCTECH COMPANY LIMITED
Inventor: Zhiqiang Chen , Yuanjing Li , Shangmin Sun , Yu Hu , Yuan Ma , Qiangqiang Wang , Long Du , Wei Li
CPC classification number: G01N23/04 , G01V5/0066 , G05D1/0094 , G05D2201/0207
Abstract: This invention relates to a movable divided inspection system and method, wherein the scanning inspection system comprises a first radiation source, a first detection means, a first automated guided vehicle and a second automated guided vehicle. The first radiation source is mounted on the first automated guided vehicle. The first detection means is mounted on the second automated guided vehicle. The first automated guided vehicle and the second automated guided vehicle are able to drive the first radiation source and the first detection means to a preset scan inspection position, so as to form a scanning passage for passage of an article to be scanned between the first and second automated guided vehicle, such that scanning inspection of said article to be scanned is realized by relative movement of said article to be scanned with reference to said first automated guided vehicle and said second automated guided vehicle.
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