CN201016940Y - CT scanning safety testing fixture - Google Patents

CT scanning safety testing fixture Download PDF

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Publication number
CN201016940Y
CN201016940Y CNU2007201039199U CN200720103919U CN201016940Y CN 201016940 Y CN201016940 Y CN 201016940Y CN U2007201039199 U CNU2007201039199 U CN U2007201039199U CN 200720103919 U CN200720103919 U CN 200720103919U CN 201016940 Y CN201016940 Y CN 201016940Y
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CN
China
Prior art keywords
inspection device
safety inspection
detector
scan
detected
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
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CNU2007201039199U
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Chinese (zh)
Inventor
康克军
陈志强
李元景
李玉兰
张丽
刘以农
赵自然
吴万龙
王海林
罗希雷
桑斌
曹硕
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Tsinghua University
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Tsinghua University
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Priority to CNU2007201039199U priority Critical patent/CN201016940Y/en
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Publication of CN201016940Y publication Critical patent/CN201016940Y/en
Anticipated expiration legal-status Critical
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Abstract

The utility model relates to a radiation detection field, in particular to a safety inspection device, which takes advantage of the rotation of an object for CT scanning. The device mentioned above includes a radiation protective cavity body, a ray source and a detector which are relatively arranged to form a ray detection region, a transmission mechanism which passes through the radiation protective cavity body and a multi-dimensional motion mechanism, which makes an object and the detection region to be detected relatively move and rotate along a vertical direction. The utility model is equipped with a levelly afferent and efferent mechanism, a vertically lifting mechanism and a rotation mechanism. When the object to be detected passes through the radiation protective cavity body, the object to be detected can move levelly and at the same time can move vertically and rotate. Therefore, luggage and goods can be automatically and continuously detected when the ray source and the detector do not rotate.

Description

A kind of CT scan safety inspection device
Technical field
The utility model relates to the radiation detection field, all non-rotary safety inspection device that carries out the luggage and articles CT scan of particularly a kind of radiographic source and detection device.
Background technology
Current, the safety inspection technology of ray class luggage and articles mainly is divided into x ray two-dimensional imaging technology and CT imaging technique.Along with improving constantly that the luggage and articles safety detection is required, have significant technical advantage based on CT imaging technique itself than x ray two-dimensional imaging technology, the importance of CT imaging technique in the safety inspection work of luggage and articles is more and more obvious.
Existing luggage and articles CT imaging technique has been used for reference the technical scheme with Medical CT, promptly radiographic source, detector rotatablely move continuously and the tangential movement acting in conjunction of luggage and articles realizes the safety inspection of luggage and articles down.The Medical CT technical development time is longer, and main associated components (as slip ring etc.) has had the experience of comparative maturity to use for reference, for the exploitation of luggage and articles CT scan device provides the reliable technique assurance; But comparatively speaking, above-mentioned main associated components should satisfy the reliability of continuous rotation, also to realize the information communication and the electric power support of high speed big data quantity simultaneously, technical difficulty is big, and design and manufacture cost is very expensive, is unfavorable for the promotion and application of luggage and articles CT imaging technique.
The utility model content
(1) technical matters that will solve
The purpose of this utility model is at above-mentioned the deficiencies in the prior art, radiographic source and all non-rotary CT scan safety inspection of detector device when a kind of work is provided.
(2) technical scheme
For achieving the above object, the utility model adopts following technical scheme:
CT scan safety inspection device of the present utility model, comprise that radiation protection cavity, positioned opposite form the radiographic source and the detector in ray detection zone, pass the connecting gear of radiation protection cavity, wherein also comprise making article to be detected and surveyed area generation vertical direction relative displacement and counterrotating multi-dimensional movement mechanism.
Wherein said horizontal transport mechanism comprises that level is imported mechanism into and level spreads out of mechanism, and described multi-dimensional movement mechanism comprises vertical lifting mechanism and rotating mechanism.
Described radiographic source and detector are installed in the described vertical lifting mechanism, and article to be detected import mechanism into by level and are sent on the rotating mechanism
Described rotating mechanism is installed in the described vertical lifting mechanism, and article to be detected import mechanism into by level and are sent on the rotating mechanism.
Described radiographic source and detector are installed on the radiation protection cavity.
Wherein also comprise auxiliary vertical lifting mechanism, described radiographic source and detector are installed in the auxiliary vertical lifting mechanism.
Described level is imported mechanism into and is comprised Rolling motor, return idler and be sleeved on Rolling motor, the outer belt of return idler; Perhaps comprise synchronous motor and by the synchronous belt of its driving.
Described vertical lifting mechanism comprises motor and by the nut of its driving and the leading screw that cooperates with nut; Perhaps comprise motor and by gear, the tooth bar of its driving.
Described rotating mechanism comprises plummer, is rotatably installed in the back up pad on the plummer, the electric rotating machine that is rotatably installed in several carrying rollers on the back up pad and drives the back up pad rotation.
On the described back up pad weight sensor is installed.
Wherein also comprise and be arranged on the collimating apparatus that is used to adjust the ray detection region shape in the radiation protection cavity.
Described detector is single layer structure or is sandwich construction that the arrangement mode of detector is an one or more dimensions.
(3) beneficial effect
The advantage and the good effect of CT scan safety inspection device described in the utility model are: in the utility model, because the rotating mechanism that the level that is provided with is imported mechanism into, made article to be detected and surveyed area produce the vertical lifting mechanism of relative displacement on the vertical direction and article to be detected are rotated, when article to be detected during by the radiation protection cavity, article to be detected can be realized horizontal motion, can realize simultaneously the vertical direction motion and rotatablely move, thereby can be implemented under radiographic source and the non-rotary situation of detector and detect luggage and articles automatically, continuously.
Description of drawings
Fig. 1 is the vertical view of first kind of embodiment of CT scan safety inspection device described in the utility model;
Fig. 2 is the longitudinal sectional view of Fig. 1;
Fig. 3 is the left view of Fig. 1;
Fig. 4 is the structural representation of second kind of embodiment of CT scan safety inspection device described in the utility model.
Among the figure: 10. level is imported mechanism into; 11. level spreads out of mechanism; 20. radiographic source; 30. detector; 40. radiation protection cavity; 50. rotating mechanism; 60. vertical lifting mechanism; 70. article to be detected; 51. plummer; 52. back up pad; 53 carrying rollers; 54. weight sensor; 61. motor; 62. leading screw.
Embodiment
Following examples are used to illustrate the utility model, but are not used for limiting scope of the present utility model.
As Fig. 1, Fig. 2 and shown in Figure 3, first kind of example structure of CT scan safety inspection device of the present utility model comprises radiation protection cavity 40, be installed in radiographic source 20 that radiation protection cavity 40 1 sides form the ray detection zone and be installed in radiation protection cavity 40 opposite sides and the detector 30 relative with radiographic source 20, import into mechanism 10 and the level of passing horizontal radiation protection cavity 40 spread out of mechanism 11 and the level that is installed in and import mechanism 10 and level into and spread out of the vertical lifting mechanism 60 that makes article 70 to be detected and the relative displacement of surveyed area generation vertical direction between the mechanism 11, make the rotating mechanism 50 of article rotation to be detected.
The cross sectional shape of radiation protection cavity 40 wherein is: the lower part is rectangular, and top is divided into arch, and it also can be other shapes, as semicircle etc.;
It is identical with the structure that level spreads out of mechanism 11 that level is imported mechanism 10 into, comprise synchronous motor respectively and by the synchronous belt of its driving, level is imported mechanism 10 into article 70 to be detected is delivered in the radiation protection cavity 40, and level spreads out of article that mechanism 11 will detect by sending in the radiation protection cavity 40.
But the leading screw 62 that nut that vertical lifting mechanism 60 comprises motor 61, driven by motor 61 and the vertical direction that cooperates with the nut (not shown) move.
Rotating mechanism 50 comprises the plummer 51 that is fixed on the leading screw 62, is rotatably installed in the back up pad 52 on the plummer 51, the electric rotating machine (not shown) that is rotatably installed in several carrying rollers 53 on the back up pad 52 and drives back up pad 52 rotations.
Because the plummer 51 of this rotating mechanism 50 is fixed on the leading screw 62, can rises or descend along with leading screw.Weight sensor 54 is installed on back up pad 52, whether this weight sensor 54 perception automatically has detected material to be sent to the rotating mechanism top, and it is static promptly when weight sensor 54 has certain signal to keep detected material maintenance under the situation of rotation, stop operating by control system control carrying roller 53, and hold tightly; After detection was finished, the control system of equipment was sent rotating signal to carrying roller 53, and carrying roller rotates, and allowed carrying roller rotate, and article are sent.Transmitting detected material after detection is finished leaves.30 two parts of radiographic source 20 and detector rely on rigid element to be connected.Radiographic source 30 is x radiographic source or isotope source; Can be one or more radiographic sources, the energy of radiographic source 30 is adjustable.Detector is one dimension detector array or two-way detector array, can be single layer structure, also can be sandwich construction.
The shape in ray detection zone depends on the form that adopts detector.If what detector was selected for use is the rectangle two-way detector array, the shape of beam is shaped as rectangle by collimating apparatus; If what detector was selected for use is the one dimension line detectors, the shape of beam is shaped as linear by collimating apparatus.
In addition, in the CT scan safety inspection device of the present utility model, can also an auxiliary vertical lifting mechanism (not shown) be set separately for radiographic source 20, detector 30, like this when article to be scanned are done the vertical lifting motion, the also vertical lifting motion of radiographic source 20, detector 30 helps adding fast scan speed.
As shown in Figure 4, second kind of example structure of CT scan safety inspection device of the present utility model comprises that radiation protection cavity 40, radiographic source 20, detector 30 (not drawing among the figure), level are imported mechanism 10 into, level spreads out of the rotating mechanism 50 that mechanism 11 makes article to be detected and surveyed area produce the vertical lifting mechanism 60 of vertical direction relative displacement and makes article rotation to be detected.Radiation protection cavity 40 wherein, radiographic source 20, detector 30, rotating mechanism 50 are identical with first kind of embodiment.Vertical lifting mechanism 60 in the present embodiment comprises motor and by gear, the tooth bar of its driving.Plummer 51 in the rotating mechanism 50 is fixed on the tooth bar upper end.
It is identical that level is imported the structure that mechanism 10, level spread out of mechanism 11 into, comprises Rolling motor, return idler and be sleeved on Rolling motor, the outer belt of return idler that its effect is identical with first embodiment.
Because the plummer 51 in the rotating mechanism 50 is fixed on the tooth bar, can rises or descend along with tooth bar.On the plummer 51 weight sensor is installed, its automatically perception whether have detected material to be sent on the rotating mechanism, and keep detected material and under the situation of rotation, keep static, the transmission detected material leaves detection is finished after.
Above-mentioned two kinds of frame modes be article to be detected under vertical lifting mechanism, rotating mechanism effect, carry out elevating movement simultaneously and rotatablely move, by surveyed area, finish the CT tomoscan.
In addition, in the CT scan safety inspection device of the present utility model, radiographic source 20 and detector 30 also can be installed in the described vertical lifting mechanism.Like this, the level in the utility model is imported mechanism, vertical lifting mechanism, rotating mechanism into and is mechanism independently separately., article to be detected import mechanism into by level and are transported to rotating mechanism, cooperate the vertical lifting motion of x radiographic source and detector again, make the ray detection zone can realize the CT scan of article through the thing to be detected of rotation.
During detection, at first make radiographic source 20, detector 30 in working order down, form the ray detection zone by beam and detector; The level that article 70 to be detected are placed into the porch is imported in the mechanism 10, imported into mechanism 10 by level and will be with detection article 70 to be sent to rotating mechanism.The rotating mechanism upper surface is equipped with the synchronous bearing of induction type, and when detected article 70 were sent on the plummer 51, the automatic perception of weight sensor made detected article 70 be still on the carrying roller 53, and rotating mechanism 50 carries detected article 70 and is rotated.Rotating mechanism 50 is fixed on the leading screw end of vertical lifting mechanism 60, rotation drives elevating movement on the leading screw vertical direction thereby the electric rotating machine of vertical lifting mechanism drives nut, thereby carry rotating mechanism 50 and finish the vertical lifting motion, and then finish the process of CT scan.After finishing the CT scan process, rotating mechanism 50 and elevating mechanism 60 return to original state, and rotating mechanism rotates automatically, the article 70 that detected are sent to the exit level spread out of in the mechanism 11, spread out of mechanism's 11 belongings by level and leave surveyed area.Above-mentioned course of action can be finished with existing circuit control.
More than be preferred forms of the present utility model, according to the disclosed content of the utility model, some identical, replacement schemes that those of ordinary skill in the art can expect apparently all should fall into the scope that the utility model is protected.

Claims (12)

1. CT scan safety inspection device, comprise that radiation protection cavity (40), positioned opposite form radiographic source (20) and the detector (30) in ray detection zone, pass the connecting gear of radiation protection cavity (40), it is characterized in that also comprising making article to be detected and surveyed area generation vertical direction relative displacement and counterrotating multi-dimensional movement mechanism.
2. CT scan safety inspection device as claimed in claim 1 is characterized in that described horizontal transport mechanism comprises that level is imported mechanism (10) into and level spreads out of mechanism (11), and described multi-dimensional movement mechanism comprises vertical lifting mechanism (60) and rotating mechanism (50).
3. CT scan safety inspection device as claimed in claim 2 is characterized in that described radiographic source (20) and detector (30) are installed in the described vertical lifting mechanism, and article to be detected import mechanism into by level and are sent on the rotating mechanism.
4. CT scan safety inspection device as claimed in claim 2 is characterized in that described rotating mechanism is installed in the described vertical lifting mechanism, and article to be detected import mechanism into by level and are sent on the rotating mechanism.
5. CT scan safety inspection device as claimed in claim 4 is characterized in that described radiographic source (20) and detector (30) are installed on the radiation protection cavity (40).
6. CT scan safety inspection device as claimed in claim 4 is characterized in that also comprising auxiliary vertical lifting mechanism, and described radiographic source (20) and detector (30) are installed in the auxiliary vertical lifting mechanism.
7. as the arbitrary described CT scan safety inspection device of claim 1-6, it is characterized in that described level imports mechanism into and comprise Rolling motor, return idler and be sleeved on Rolling motor, the outer belt of return idler; Perhaps comprise synchronous motor and by the synchronous belt of its driving.
8. as the arbitrary described CT scan safety inspection device of claim 1-6, it is characterized in that described vertical lifting mechanism comprises motor and by the nut of its driving and the leading screw that cooperates with nut; Perhaps comprise motor and by gear, the tooth bar of its driving.
9. as the arbitrary described CT scan safety inspection device of claim 1-6, it is characterized in that described rotating mechanism comprises plummer (51), is rotatably installed in the back up pad (52) on the plummer (51), the electric rotating machine that is rotatably installed in several carrying rollers (53) on the back up pad (52) and drives back up pad (52) rotation.
10. CT scan safety inspection device as claimed in claim 9 is characterized in that being equipped with on the described back up pad (52) weight sensor (54).
11. CT scan safety inspection device as claimed in claim 10 is characterized in that also comprising being arranged on the collimating apparatus that is used to adjust the ray detection region shape in the radiation protection cavity (40).
12. CT scan safety inspection device as claimed in claim 11 is characterized in that described detector is single layer structure or is sandwich construction, the arrangement mode of detector is an one or more dimensions.
CNU2007201039199U 2007-03-22 2007-03-22 CT scanning safety testing fixture Expired - Lifetime CN201016940Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CNU2007201039199U CN201016940Y (en) 2007-03-22 2007-03-22 CT scanning safety testing fixture

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CNU2007201039199U CN201016940Y (en) 2007-03-22 2007-03-22 CT scanning safety testing fixture

Publications (1)

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CN201016940Y true CN201016940Y (en) 2008-02-06

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CNU2007201039199U Expired - Lifetime CN201016940Y (en) 2007-03-22 2007-03-22 CT scanning safety testing fixture

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106353349A (en) * 2016-08-31 2017-01-25 天津三英精密仪器股份有限公司 X-ray multi-angle on-line detection and real-time packaging equipment
CN106809624A (en) * 2015-11-30 2017-06-09 富泰华工业(深圳)有限公司 Scanning Detction equipment
CN109115810A (en) * 2018-09-06 2019-01-01 厦门铂丰电子科技有限公司 A kind of two-in-one X-ray common source inspection system and method
CN112858347A (en) * 2021-01-04 2021-05-28 中国神华能源股份有限公司国华电力分公司 Device for flaw detection
CN115219529A (en) * 2022-09-16 2022-10-21 深圳市伟铭光电有限公司 X-ray detection equipment for large-sized workpiece

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106809624A (en) * 2015-11-30 2017-06-09 富泰华工业(深圳)有限公司 Scanning Detction equipment
CN106353349A (en) * 2016-08-31 2017-01-25 天津三英精密仪器股份有限公司 X-ray multi-angle on-line detection and real-time packaging equipment
CN106353349B (en) * 2016-08-31 2023-05-23 天津三英精密仪器股份有限公司 X-ray multi-angle online detection and real-time packaging equipment
CN109115810A (en) * 2018-09-06 2019-01-01 厦门铂丰电子科技有限公司 A kind of two-in-one X-ray common source inspection system and method
CN112858347A (en) * 2021-01-04 2021-05-28 中国神华能源股份有限公司国华电力分公司 Device for flaw detection
CN115219529A (en) * 2022-09-16 2022-10-21 深圳市伟铭光电有限公司 X-ray detection equipment for large-sized workpiece

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CU01 Correction of utility model patent

Correction item: Co-patentee

Correct: Tongfangweishi technology Limited by Share Ltd.

Number: 06

Page: The title page

Volume: 24

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Correct: Tongfangweishi technology Limited by Share Ltd.

Number: 06

Volume: 24

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Granted publication date: 20080206