CN202649142U - X-ray detection equipment for flat composite material - Google Patents
X-ray detection equipment for flat composite material Download PDFInfo
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- CN202649142U CN202649142U CN 201220248359 CN201220248359U CN202649142U CN 202649142 U CN202649142 U CN 202649142U CN 201220248359 CN201220248359 CN 201220248359 CN 201220248359 U CN201220248359 U CN 201220248359U CN 202649142 U CN202649142 U CN 202649142U
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Abstract
X-ray detection equipment for a flat composite material can satisfy a demand for a user to omnidirectionally and completely execute all detection tasks with one time of loading, which is mainly characterized in that multi-axial operation mechanisms co-ordinate with one another to execute the detection tasks during the detection of the flat composite material. According to the X-ray detection equipment, a work piece is placed in the middle of a rotary platform, moreover, the upper and the lower faces of the rotary platform are reasonably arranged, and all operation mechanisms are placed on the side faces or the ends of the rotary platform, thus a traditional method of placing the operation mechanisms below the rotary platform is changed, a C-shaped arm can rotate to a vertical direction, and an X-ray tube is directly transferred just below the rotary platform, so as to achieve detection of the horizontal plane of the work piece. After all the detection tasks, most parts of the rotary platform are transferred outside a lead room, thereby facilitating dismounting of the work piece.
Description
Technical field
The utility model relates to a kind of x-ray detection device, relates in particular to a kind of device that utilizes X ray some special flat compound substances to be carried out Real-time Imaging.
Background technology
Along with the reach of science, technical continuous progress, the application of compound substance is more and more extensive.Compound substance refers to the material that combined by different way by two or more different material, and it can bring into play the advantage of various materials, overcomes the defective of homogenous material, enlarges the range of application of material.Because lightweight, the characteristics such as intensity is high, machine-shaping is convenient, resistance to chemical attack and good weatherability that compound substance has, replace gradually timber and part metals alloy, be widely used in Aero-Space, automobile, the field such as electric, obtained especially develop rapidly in recent years.Compound substance inherent vice can occur unavoidably in manufacture process.For the important parts in some important fields, avoiding using the compound substance of inherent vice is a very important ring, uses X-ray detecting equipment that composite inner is carried out Nondestructive Detection, guarantees its zero defect, meet the usability requirement, safe and reliable.Existing detection to the flat compound substance all needs to carry out the adjustment of secondary position, and testing process is not only loaded down with trivial details but also increased detection time, simultaneously because the flat compound substance feels like jelly, and the detection position is frequently moved in inconvenience, otherwise easily produces the problem such as folding line.At present, still comprehensive carrying out for the flat compound substance, all standing is not being carried out tested material in the situation about adjusting the secondary position, once loads the x-ray detection device that just can finish whole Detection tasks.
Summary of the invention
For the existing deficiency that flat compound substance context of detection is existed, the utility model provides the requirement of a kind of user's of meeting Site Detection, carry out comprehensive to the flat compound substance, all standing, tested material is not being carried out in the situation about adjusting the secondary position, once loading the x-ray detection device that just can finish whole Detection tasks.
Addressing the above problem the technical scheme of taking is:
A kind of flat compound substance x-ray detection device, it is characterized in that: fixed mount 1 is fixed on the ground in protective lead room 29, rotation platform moving guide rail 2 and cylinder 31 are installed on the fixed mount 1, movable stand 3 is connected with cylinder by rotation platform moving guide rail 2 and is connected with fixed mount 1, four positioning supports wheels 7 are equipped with on the top of movable stand 3, rotation platform 4 is positioned on the movable stand 3 by positioning supports wheel 7, but a side of movable stand 3 is fixed with driven rotary platform 4 and does 360 ° of rotating turning motors 30, down fixing rack 9 is fixed on the edge-on face wall in protective lead room 29, riser guide 8 is housed on the down fixing rack 9, elevating translational mechanism 11 is connected with down fixing rack 9 by riser guide 8, the top of elevating screw mechanism 19 is fixedly connected with elevating mechanism motor 20, elevating screw 21 is equipped with in the below of elevating screw mechanism 19, the first half of elevating screw 21 is fixedly connected with elevating mechanism reducing motor 20, the latter half of elevating screw 21 and elevating translational mechanism 11 spiral slides are dynamically connected, C type arm 5 is connected guide rail 6 by mobile device 22 and is connected with elevating translational mechanism 11 with C type arm, C type arm rotating mechanism 33 is fixed on the mobile device 22 and with C type arm 5 and is fixedly connected with, the rear side rotation side, position of C type arm rotating mechanism 33 is connected with C type arm electric rotating machine 25, the rotation position, front of C type arm rotating mechanism 33 is connected with C type arm 5, the both sides of C type arm 5 are separately installed with X-ray tube 15 and receiver 28, X-ray tube 15 is fixed on the ray tube fixed mount 16, ray tube fixed mount 16 is connected with C type arm 5 by the traversing guide rail 12 of ray tube, ray tube mobile motor 18 is fixed on the right part of C type arm 5 and is connected with ray tube fixed mount 16 by distance adjustment Timing Belt 17 and the traversing leading screw 14 of ray tube, ray tube fixed mount 16 is fixed on the traversing guide rail 12 of ray tube, X-ray tube 15 is fixed on the ray tube fixed mount 16, receiver 28 is fixed on the receiver fixed mount 27, receiver mobile motor 26 is fixed on the left part of C type arm 5 and is connected with receiver fixed mount 27 by distance adjustment Timing Belt 17 and the traversing leading screw 24 of receiver, receiver 28 is fixed on the receiver fixed mount 27, receiver fixed mount 27 is fixed on the traversing guide rail 23 of receiver, the right-hand member of down fixing rack 9 is fixed with the traversing motor 13 of C type arm, C type arm reducing motor 13 is connected with C type arm 5 by the traversing Timing Belt 10 of C type arm, C type arm 5 is connected on the traversing guide rail 6 of C type arm, and plumbous door 29 is connected with protective lead room 32.
The beneficial effects of the utility model: the structure that the utility model adopts has satisfied the user flat compound substance has been carried out comprehensive, all standing, once load the demand that just can finish whole Detection tasks, main inventive point is that Detection task is finished in the mutual coordination of multiaxis working mechanism in flat compound substance testing process.This device is place work piece in the middle of rotation platform, and upper and lower surface is through reasonable Arrangement, all working mechanism is placed on side or end, changed the mode below working mechanism is placed in the past, so that C type arm can rotate to vertical direction, with X-ray tube directly forward to rotation platform under, so just can the surface level of workpiece be detected.After all detection is finished, the major part of rotation platform can be moved on to outside, plumbous room, make things convenient for the loading and unloading of workpiece.
Description of drawings
Fig. 1 is structural representation of the present utility model;
Fig. 2 is the A-A cut-open view of Fig. 1;
Fig. 3 is the B-B cut-open view of Fig. 1;
Fig. 4 is the C-C cut-open view of Fig. 2.
Embodiment
Below in conjunction with accompanying drawing the utility model is described further.
A kind of flat compound substance x-ray detection device such as Fig. 1, Fig. 2, Fig. 3, shown in Figure 4, utilizes X ray that special compound substance is detected, and is specially adapted to the Real-time Imaging that some special flat compound substances are carried out.Its main inventive point is that Detection task is finished in the mutual coordination of multiaxis working mechanism in flat compound substance testing process.Its concrete structure is: fixed mount 1 is fixed by bolts on the ground in protective lead room 29, rotation platform moving guide rail 2 and cylinder 31 are installed on the fixed mount 1, movable stand 3 is connected with cylinder by rotation platform moving guide rail 2 and is connected with fixed mount 1, the top of movable stand 3 is equipped with four positioning supports wheels 7, rotation platform 4 is positioned on the movable stand 3 by positioning supports wheel 7, but a side of movable stand 3 is fixed with driven rotary platform 4 and does 360 ° of rotating turning motors 30, down fixing rack 9 is fixed by bolts on the edge-on face wall in protective lead room 29, riser guide 8 is installed on the down fixing rack 9, elevating translational mechanism 11 is connected with down fixing rack 9 by riser guide 8, the top of elevating screw mechanism 19 is bolted to connection elevating mechanism motor 20, the below of elevating screw mechanism 19 is provided with elevating screw 21, the first half of elevating screw 21 is fixedly connected with elevating mechanism reducing motor 20, elevating screw 21 the latter halfs and elevating translational mechanism 11 spiral slides are dynamically connected, C type arm 5 is connected guide rail 6 by mobile device 22 and is connected with elevating translational mechanism 11 with C type arm, C type arm rotating mechanism 33 is fixed on the mobile device 22 and with C type arm 5 and is fixedly connected with, the rear side rotation side, position of C type arm rotating mechanism 33 is connected with C type arm electric rotating machine 25 by bolt, the rotation position, front of C type arm rotating mechanism 33 is connected with C type arm 5 by bolt, the both sides of C type arm 5 are separately installed with X-ray tube 15 and receiver 28, X-ray tube 15 is fixed on the ray tube fixed mount 16, ray tube fixed mount 16 is connected with C type arm 5 by the traversing guide rail 12 of ray tube, ray tube mobile motor 18 is fixed on the right part of C type arm 5 and is connected with ray tube fixed mount 16 by distance adjustment Timing Belt 17 and the traversing leading screw 14 of ray tube, ray tube fixed mount 16 is fixed on the traversing guide rail 12 of ray tube, X-ray tube 15 is fixed on the ray tube fixed mount 16, receiver 28 is fixed on the receiver fixed mount 27, receiver mobile motor 26 is fixed on the left part of C type arm 5 and is connected with receiver fixed mount 27 by distance adjustment Timing Belt 17 and the traversing leading screw 24 of receiver, receiver 28 is fixed on the receiver fixed mount 27, receiver fixed mount 27 is fixed on the traversing guide rail 23 of receiver, the right-hand member of down fixing rack 9 is fixed with the traversing motor 13 of C type arm, C type arm reducing motor 13 is connected with C type arm 5 by the traversing Timing Belt 10 of C type arm, C type arm 5 is connected on the traversing guide rail 6 of C type arm, and plumbous door 29 is connected with protective lead room 32.
During the work of this device, at first be that cylinder 31 promotes movable stands 3, rotation platform over half moved on to beyond the plumbous door 32 in plumbous room, by the staff tested material workpiece is put on the rotation platform 4, cylinder 31 promotes movable stand 3 and gets back to 29 interior detection positions, protective lead room, shuts plumbous door 32.When C type arm 5 was horizontal or rotates in 15 °, the elevating mechanism motor 20 in the elevating screw mechanism 19 and elevating screw 21 drove C type arm 5 lifting moving, and workpiece is detected.Before lifting moving detects, the X-ray tube 15 of C type arm 5 both sides, the focal length between the receiver 28 are regulated, satisfy the side of the workpiece of different size and detect, drive X-ray tubes 15 by ray tube mobile motor 18 by distance adjustment Timing Belt 17 and the traversing leading screw 14 of ray tube and move to adjust the position along the traversing guide rail 12 of ray tube; Driving receivers 28 by receiver mobile motor 26 by distance adjustment Timing Belt 17 and the traversing leading screw 24 of receiver moves to focus along the traversing guide rail 23 of receiver.Rotation platform 4 is done 360 ° of revolutions during detection, and the part corresponding to each angle of workpiece detects.After the along continuous straight runs detection was finished, X-ray tube 15, the receiver 28 of C type arm 5 both sides returned to respectively farthest, C type arm 5 both sides.C type arm electric rotating machine 25 and C type arm rotating mechanism 33 drives C type arms 5 and rotates to the direction vertical with rotation platform 4, make X-ray tube 15 below rotation platform 4, the focal length that regulates between ray tube 15 receivers 28 arrives optimum condition, driving C type arm 5 by the traversing motor 13 of C type arm by the traversing Timing Belt 10 of C type arm and mobile device 22 laterally moves along traversing guide rail 6 directions of C type arm, upper and lower end face and inside to workpiece are detected, rotation platform 4 is done 360 ° of revolutions simultaneously, and the part corresponding to each angle of workpiece detects.After detection was finished, X-ray tube 15, the receiver 28 of C type arm 5 both sides returned to respectively farthest, C type arm 5 both sides, and C type arm electric rotating machine 25 drives C type arm 5 and rotates to horizontal level.Open plumbous door 32, promote movable stand 3 outside the plumbous room of moving on to of rotation platform by cylinder 31, the staff unloads workpiece, and whole testing process finishes.
Claims (1)
1. flat compound substance x-ray detection device, it is characterized in that: fixed mount (1) is fixed on the ground of protective lead room (29), rotation platform moving guide rail (2) and cylinder (31) are installed on the fixed mount (1), movable stand (3) is connected 31 by rotation platform moving guide rail (2) with cylinder) be connected with fixed mount (1), four positioning supports wheels (7) are equipped with on the top of movable stand (3), rotation platform (4) is positioned on the movable stand (3) by positioning supports wheel (7), movable stand (3) but a side be fixed with driven rotary platform (4) and do 360 ° of rotating turning motors (30), down fixing rack (9) is fixed on the edge-on face wall in protective lead room (29), riser guide (8) is housed on the down fixing rack (9), elevating translational mechanism (11) is connected with down fixing rack (9) by riser guide (8), the top of elevating screw mechanism (19) is fixedly connected with elevating mechanism motor (20), elevating screw (21) is equipped with in the below of elevating screw mechanism (19), the first half of elevating screw (21) is fixedly connected with elevating mechanism reducing motor (20), the latter half of elevating screw (21) and elevating translational mechanism (11) spiral slide are dynamically connected, C type arm (5) is connected guide rail (6) by mobile device (22) and is connected with elevating translational mechanism (11) with C type arm, C type arm rotating mechanism (33) is fixed on mobile device (22) and upward and with C type arm (5) is fixedly connected with, the rear side rotation side, position of C type arm rotating mechanism (33) is connected with C type arm electric rotating machine (25), the rotation position, front of C type arm rotating mechanism (33) is connected with C type arm (5), X-ray tube (15) and receiver (28) are equipped with respectively in the both sides of C type arm (5), X-ray tube (15) is fixed on the ray tube fixed mount (16), ray tube fixed mount (16) is connected with C type arm (5) by the traversing guide rail of ray tube (12), ray tube mobile motor (18) is fixed on the right part of C type arm (5) and is connected with ray tube fixed mount (16) by distance adjustment Timing Belt (17) and the traversing leading screw of ray tube (14), ray tube fixed mount (16) is fixed on the traversing guide rail of ray tube (12), X-ray tube (15) is fixed on the ray tube fixed mount (16), receiver (28) is fixed on the receiver fixed mount (27), receiver mobile motor (26) is fixed on the left part of C type arm (5) and is connected with receiver fixed mount (27) by distance adjustment Timing Belt (17) and the traversing leading screw of receiver (24), receiver (28) is fixed on the receiver fixed mount (27), receiver fixed mount (27) is fixed on the traversing guide rail of receiver (23), the right-hand member of down fixing rack (9) is fixed with the traversing motor of C type arm (13), C type arm reducing motor (13) is connected with C type arm (5) by the traversing Timing Belt of C type arm (10), C type arm (5) is connected on the traversing guide rail of C type arm (6), and plumbous door (29) is connected with protective lead room (32).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN 201220248359 CN202649142U (en) | 2012-05-30 | 2012-05-30 | X-ray detection equipment for flat composite material |
Applications Claiming Priority (1)
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CN 201220248359 CN202649142U (en) | 2012-05-30 | 2012-05-30 | X-ray detection equipment for flat composite material |
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CN 201220248359 Expired - Fee Related CN202649142U (en) | 2012-05-30 | 2012-05-30 | X-ray detection equipment for flat composite material |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102706907A (en) * | 2012-05-30 | 2012-10-03 | 丹东奥龙射线仪器有限公司 | X-ray inspection device of flat composite material |
CN103792244A (en) * | 2014-03-04 | 2014-05-14 | 东北林业大学 | Wood nondestructive testing device capable of conducting imaging in real time at any angle |
CN107449791A (en) * | 2017-09-12 | 2017-12-08 | 山东大学 | A kind of the cannot-harm-detection device and its method of carbon fibre composite wire plug |
-
2012
- 2012-05-30 CN CN 201220248359 patent/CN202649142U/en not_active Expired - Fee Related
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102706907A (en) * | 2012-05-30 | 2012-10-03 | 丹东奥龙射线仪器有限公司 | X-ray inspection device of flat composite material |
CN103792244A (en) * | 2014-03-04 | 2014-05-14 | 东北林业大学 | Wood nondestructive testing device capable of conducting imaging in real time at any angle |
CN103792244B (en) * | 2014-03-04 | 2015-12-30 | 东北林业大学 | A kind of wood nondestructive testing device of arbitrarily angled real time imagery |
CN107449791A (en) * | 2017-09-12 | 2017-12-08 | 山东大学 | A kind of the cannot-harm-detection device and its method of carbon fibre composite wire plug |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130102 Termination date: 20150530 |
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EXPY | Termination of patent right or utility model |