CN208013112U - Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device - Google Patents

Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device Download PDF

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Publication number
CN208013112U
CN208013112U CN201820497679.3U CN201820497679U CN208013112U CN 208013112 U CN208013112 U CN 208013112U CN 201820497679 U CN201820497679 U CN 201820497679U CN 208013112 U CN208013112 U CN 208013112U
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China
Prior art keywords
wall
fixed
shaft
rack
side outer
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Expired - Fee Related
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CN201820497679.3U
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Chinese (zh)
Inventor
孙连伟
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Individual
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Individual
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Anticipated expiration legal-status Critical

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Abstract

The utility model discloses chain-drive storage tank welding seam X-rays to digitize non-destructive testing device, including rack, the top exterior walls and bottom outer wall of the rack are provided with shaft mounting hole, and the inner wall of two shaft mounting holes is connected with shaft by bearing, the top exterior walls of the rack are fixed with the second motor by screw, and second motor output shaft one end outer wall of shaft is fixed on by shaft coupling, the side outer wall of two shafts has fixed plate and lower fixing sucking disk by key connection respectively, and the bottom interior wall of fixed plate is fixed with hydraulic cylinder by screw, the both sides inner wall of the rack is fixed with support plate by screw.The utility model can quickly adjust the position of fixing sucking disk, convenient for being adjusted in time according to the size of holding vessel, convenient for fixed various specifications holding vessel, use scope is extensive, holding vessel rotation is driven by the second motor, Imaging fast, can it is reliable, objective, be accurately finished storage tank welding seam X-ray digital measuring operation.

Description

Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device
Technical field
The utility model is related to X-ray digitlization non-destructive testing device technical field more particularly to the welderings of chain-drive storage tank It stitches X-ray and digitizes non-destructive testing device.
Background technology
It is detected currently, x-ray inspection is widely used in the welding quality of storage tank welding seam, since construction condition is disliked It is bad, generally x-ray flaw detector is hung on tank skin by simple cage, and is moved by manpower traction, artificial patch is taken a picture Flaw detection, x-ray flaw detector expose a film every time, every length of a film 300mm, hundreds of meters of large-scale storage tank perimeter, patch and comment piece Heavy workload, this storage tank welding seam is detected a flaw using X-ray film method since it is desired that consuming a large amount of films leads to of high cost, detection week Phase is long, labor intensity is big, and because of patch and tedious process of developing a film, real-time is poor, therefore working efficiency is low, especially working at height, It is inconvenient, it influences to detect quality, existing device structure is cumbersome larger, and cost is higher.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, and the chain-drive storage tank weldering proposed It stitches X-ray and digitizes non-destructive testing device.
To achieve the goals above, the utility model uses following technical solution:
Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device, including rack, the top exterior walls of the rack and Bottom outer wall is provided with shaft mounting hole, and the inner wall of two shaft mounting holes is connected with shaft, the rack by bearing Top exterior walls the second motor is fixed with by screw, and the second motor output shaft is fixed on by shaft coupling outside one end of shaft The side outer wall of wall, two shafts has fixed plate and lower fixing sucking disk by key connection respectively, and in the bottom of fixed plate Wall is fixed with hydraulic cylinder by screw, and the both sides inner wall of the rack is fixed with support plate, and the one of support plate by screw Side outer wall bottom and top, the both sides outer wall bottom of rack and top have sprocket wheel shaft mounting hole, driving shaft installation and from Moving axis mounting hole, the inner wall of two sprocket wheel shaft mounting holes, the inner wall of two active shaft mounting holes and two driven shafts installations The inner wall in hole is connected with sprocket shaft, driving shaft and driven shaft by bearing respectively, and the side outer wall of the rack is solid by screw Surely there is first motor, and first motor output shaft is fixed on one end outer wall of driving shaft, two driven shafts by shaft coupling Side outer wall respectively by key connection there is driven gear and drive sprocket, the side outer wall of two sprocket shafts to pass through key It is connected with driven sprocket, and the side outer wall of two driven sprockets and the side outer wall of two drive sprockets are socketed with transmission Chain.
Preferably, piston rod one end of the hydraulic cylinder is fixed with upper fixing sucking disk by screw, and upper fixing sucking disk and The opposite side outer wall of lower fixing sucking disk is adsorbed with the same holding vessel.
Preferably, there are driving gear, and two driving gear difference in the outer wall both sides of the driving shaft by key connection It is intermeshed with two driven gears.
Preferably, the bottom interior wall both sides of the rack are fixed with guide plate, and the phase of two guide plates by screw Guide chute is provided with to side outer wall, two sliding blocks are slidably connected to the inner wall of two guide chutes respectively.
Preferably, the first motor, the second motor and hydraulic cylinder are respectively connected with switch, and switch is connected with model The controller of DATA-7311.
Preferably, the opposite side outer wall of two transmission chains, which is connected through the hinge, sliding block, and two sliding blocks Opposite side outer wall is fixed with X-ray detectoscope and digital imager by screw respectively.
The beneficial effects of the utility model are:
1. by the way that two fixing sucking disk stationary storage tanks are arranged, setting hydraulic cylinder can quickly adjust the position of fixing sucking disk It sets, convenient for being adjusted in time according to the size of holding vessel, convenient for fixed various specifications holding vessel, use scope is extensive;
2. driving two transmission chain Synchronous Transmissions, two transmission chains to drive digital imager and X by the way that gear drive is arranged The synchronous operation of ray inspection machine continuous and stable in speed and position drives holding vessel rotation, imaging fast by the second motor Speed, can it is reliable, objective, be accurately finished storage tank welding seam X-ray digital measuring operation.
Description of the drawings
Fig. 1 be the utility model proposes chain-drive storage tank welding seam X-ray digitize non-destructive testing device structure show It is intended to;
Fig. 2 be the utility model proposes chain-drive storage tank welding seam X-ray digitize non-destructive testing device side view knot Structure schematic diagram.
In figure:1 rack, 2 first motors, 3 support plates, 4 holding vessels, 5 times fixing sucking disks, 6 driven gears, 7 sliding blocks, 8X are penetrated Line defectoscope, 9 fixed plates, 10 second motors, 11 hydraulic cylinders, 12 digital imagers, 13 guide plates, 14 drive sprockets, 15 transmissions Chain, 16 driving gears.
Specific implementation mode
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole Embodiment.
Referring to Fig.1-2, chain-drive storage tank welding seam X-ray digitizes non-destructive testing device, including rack 1, the top of rack 1 Portion's outer wall and bottom outer wall are provided with shaft mounting hole, and the inner wall of two shaft mounting holes is connected with shaft by bearing, The top exterior walls of rack 1 are fixed with the second motor 10 by screw, and 10 output shaft of the second motor is fixed on by shaft coupling and is turned The side outer wall of one end outer wall of axis, two shafts has fixed plate 9 and lower fixing sucking disk 5, and fixed plate 9 by key connection respectively Bottom interior wall hydraulic cylinder 11 is fixed with by screw, the both sides inner wall of rack 1 is fixed with support plate 3 by screw, and props up The side outer wall bottom and top of fagging 3, the both sides outer wall bottom of rack 1 and top have sprocket wheel shaft mounting hole, active Axis is installed and driven shaft mounting hole, and the inner wall of two sprocket wheel shaft mounting holes, the inner wall of two active shaft mounting holes and two are driven The inner wall of shaft mounting hole is connected with sprocket shaft, driving shaft and driven shaft by bearing respectively, and the side outer wall of rack 1 passes through screw It is fixed with first motor 2, and 2 output shaft of first motor is fixed on one end outer wall of driving shaft, two driven shafts by shaft coupling Side outer wall respectively by key connection there is driven gear 6 and drive sprocket 14, the side outer wall of two sprocket shafts to pass through key It is connected with driven sprocket, and the side outer wall of two driven sprockets and the side outer wall of two drive sprockets 14 are socketed with transmission Chain 15.
In the utility model, piston rod one end of hydraulic cylinder 11 is fixed with upper fixing sucking disk, and upper fixed suction by screw The opposite side outer wall of disk and lower fixing sucking disk 5 is adsorbed with the same holding vessel 4, and the outer wall both sides of driving shaft pass through key connection There is driving gear 16, and two driving gears 16 are intermeshed with two driven gears 6 respectively, the bottom interior wall both sides of rack 1 Guide plate 13 is fixed with by screw, and the opposite side outer wall of two guide plates 13 is provided with guide chute, two sliding blocks 7 It is slidably connected to the inner wall of two guide chutes respectively, first motor 2, the second motor 10 and hydraulic cylinder 11 are respectively connected with switch, And switch is connected with the controller of model DATA-7311, the opposite side outer wall of two transmission chains 15 is connected through the hinge There is sliding block 7, and the opposite side outer wall of two sliding blocks 7 is fixed with X-ray detectoscope 8 and digital imager by screw respectively 12。
Operation principle:Start hydraulic cylinder 11,5 absorbing storage tank 4 of upper fixing sucking disk and lower fixing sucking disk starts the second motor 10, holding vessel 4 rotates, and starts first motor 2, by the transmission of driving gear 16 and driven gear 6, drives two transmission chains 15 Transmission drives two sliding blocks 7 to be slided along guide chute, and two sliding blocks 7 are same with digital imager 12 and x-ray flaw detector 8 Step movement, detection holding vessel 4 whether there is crack.
The preferable specific implementation mode of the above, only the utility model, but the scope of protection of the utility model is not Be confined to this, any one skilled in the art within the technical scope disclosed by the utility model, according to this practicality Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model Within enclosing.

Claims (6)

1. chain-drive storage tank welding seam X-ray digitizes non-destructive testing device, including rack (1), which is characterized in that the rack (1) top exterior walls and bottom outer wall are provided with shaft mounting hole, and the inner wall of two shaft mounting holes is connected by bearing There is shaft, the top exterior walls of the rack (1) are fixed with the second motor (10) by screw, and the second motor (10) output shaft is logical One end outer wall that shaft coupling is fixed on shaft is crossed, the side outer wall of two shafts has fixed plate (9) by key connection respectively With lower fixing sucking disk (5), and the bottom interior wall of fixed plate (9) is fixed with hydraulic cylinder (11) by screw, and the two of the rack (1) Side inner wall is fixed with support plate (3), and the both sides of the side outer wall bottom and top of support plate (3), rack (1) by screw Outer wall bottom and top have sprocket wheel shaft mounting hole, driving shaft installation and driven shaft mounting hole, two sprocket shaft peaces The inner wall for filling the inner wall in hole, the inner wall of two active shaft mounting holes and two driven shaft mounting holes is connected with chain by bearing respectively The side outer wall of wheel shaft, driving shaft and driven shaft, the rack (1) is fixed with first motor (2), and first motor by screw (2) output shaft is fixed on one end outer wall of driving shaft by shaft coupling, and the side outer wall of two driven shafts passes through key respectively It is connected with driven gear (6) and drive sprocket (14), the side outer wall of two sprocket shafts has driven chain by key connection Wheel, and the side outer wall of two driven sprockets and the side outer wall of two drive sprockets (14) are socketed with transmission chain (15).
2. chain-drive storage tank welding seam X-ray according to claim 1 digitizes non-destructive testing device, which is characterized in that Piston rod one end of the hydraulic cylinder (11) is fixed with upper fixing sucking disk, and upper fixing sucking disk and lower fixing sucking disk by screw (5) opposite side outer wall is adsorbed with the same holding vessel (4).
3. chain-drive storage tank welding seam X-ray according to claim 1 digitizes non-destructive testing device, which is characterized in that There are a driving gear (16) in the outer wall both sides of the driving shaft by key connection, and two driving gears (16) respectively with two from Moving gear (6) is intermeshed.
4. chain-drive storage tank welding seam X-ray according to claim 1 digitizes non-destructive testing device, which is characterized in that The bottom interior wall both sides of the rack (1) are fixed with guide plate (13), and opposite the one of two guide plates (13) by screw Side outer wall is provided with guide chute, and two sliding blocks (7) are slidably connected to the inner wall of two guide chutes respectively.
5. chain-drive storage tank welding seam X-ray according to claim 1 digitizes non-destructive testing device, which is characterized in that The first motor (2), the second motor (10) and hydraulic cylinder (11) are respectively connected with switch, and switch is connected with model DATA- 7311 controller.
6. chain-drive storage tank welding seam X-ray according to claim 1 digitizes non-destructive testing device, which is characterized in that The opposite side outer wall of two transmission chains (15), which is connected through the hinge, sliding block (7), and opposite the one of two sliding blocks (7) Side outer wall is fixed with X-ray detectoscope (8) and digital imager (12) by screw respectively.
CN201820497679.3U 2018-04-09 2018-04-09 Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device Expired - Fee Related CN208013112U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820497679.3U CN208013112U (en) 2018-04-09 2018-04-09 Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820497679.3U CN208013112U (en) 2018-04-09 2018-04-09 Chain-drive storage tank welding seam X-ray digitizes non-destructive testing device

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CN208013112U true CN208013112U (en) 2018-10-26

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115266776A (en) * 2022-09-15 2022-11-01 深圳市伟铭光电有限公司 Nondestructive testing device for X-ray steel cylinder

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115266776A (en) * 2022-09-15 2022-11-01 深圳市伟铭光电有限公司 Nondestructive testing device for X-ray steel cylinder

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20181026

Termination date: 20200409

CF01 Termination of patent right due to non-payment of annual fee