CN217786108U - Gas cylinder detects uses size measurement device - Google Patents

Gas cylinder detects uses size measurement device Download PDF

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Publication number
CN217786108U
CN217786108U CN202221219156.5U CN202221219156U CN217786108U CN 217786108 U CN217786108 U CN 217786108U CN 202221219156 U CN202221219156 U CN 202221219156U CN 217786108 U CN217786108 U CN 217786108U
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China
Prior art keywords
gas cylinder
wall surface
pair
box body
box
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CN202221219156.5U
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Chinese (zh)
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杨根保
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Liaoning Dingsheng Special Equipment Testing Co ltd
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Liaoning Dingsheng Special Equipment Testing Co ltd
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Abstract

The utility model discloses a gas cylinder detects uses size measurement device relates to gas cylinder size detection technical field, has solved the device when measuring, and the gas cylinder body can not obtain effectively fixedly, and then takes place to play easily at the gas cylinder in the measurement process, and then reduces the stability when the gas cylinder is measured to reduce the technical problem of gas cylinder measuring accuracy, the power distribution box comprises a box body, fixed mounting has the arch frame on the box, fixed mounting has the back wallboard between wall behind the arch frame and the box behind the wall, be equipped with two-way clamping structure in the box, the utility model discloses a two-way clamping structure carries out two-way centre gripping fixed to the gas cylinder bottom, and then takes place to rock when preventing that the gas cylinder from detecting, improves the stability that the gas cylinder examined time measuring, drives laser range finder through elevating gear and carries out high regulation to be applicable to the gas cylinder of arbitrary height, improve the detection scope of gas cylinder, and then improve the work efficiency and the accuracy of detecting.

Description

Gas cylinder detects uses size measurement device
Technical Field
The utility model relates to a gas cylinder size detection technical field specifically is a gas cylinder detects uses size measurement device.
Background
The gas cylinder is that the major structure is the bottle form, generally fill a mobilizable class of pressure vessel of dress gas (can be compressed gas, liquefied gas, dissolve adsorbed gas etc.), the gas cylinder needs to measure when using, so that different operating modes use the gas cylinder of co-altitude, from this need measuring device to highly detect the gas cylinder, in the utility model patent of name CN208458618U, a frock once-through measurement location has been designed, the machining dimension is accurate, gas cylinder length is unanimous, neat pleasing to the eye, size measurement's repeat work has been avoided, human error has been stopped, and do not do over again, man-hour has been saved, labor efficiency has been improved, but the device is when measuring, the gas cylinder body must not effectively be fixed, and then the gas cylinder is easy to be taken place the cluster in the measurement process, and then stability when reducing the measurement, thereby reduce the accuracy of gas cylinder measurement.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides a gas cylinder detects uses size measurement device has solved the device when measuring, and the gas cylinder body can not be effectively fixed, and then takes place to move at the gas cylinder easily in the measurement process, and then reduces the stability of gas cylinder when measuring to reduce the technical problem of gas cylinder measuring accuracy.
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides a gas cylinder detects uses size measuring device, includes the box, fixed mounting has the bow member on the box, fixed mounting has the back wallboard between wall and the box back wall behind the bow member, be equipped with two-way centre gripping structure in the box, install elevating gear on the wall of both sides in the bow member respectively, fixed mounting has the loading board between the elevating gear removal end, seted up a plurality of through-holes on the loading board, it is a plurality of the through-hole interpolation is equipped with a plurality of gag lever posts, gag lever post upper end fixed mounting respectively has the limiting plate, and is a plurality of fixed mounting has the clamp plate between the gag lever post lower extreme, fixed mounting has a plurality of springs between clamp plate and the loading board, and is a plurality of the spring suit is in on a plurality of the gag lever post, wall center department fixed mounting has pressure sensor under the loading board, wall fixed mounting has laser range finder on the clamp plate, the through-hole has been seted up on the clamp plate, laser emission end of laser range finder runs through and lies in same water flat line with clamp plate lower wall, fixed mounting has the controller on the bow member outside wall.
Preferably, the bidirectional clamping structure comprises a slide rail, the slide rail is fixedly mounted on the inner lower wall surface of the box body, a pair of moving blocks are slidably mounted in the slide rail, a pair of moving blocks are provided with first threaded holes respectively, mounting holes are formed in the two side wall surfaces of the box body respectively, first bearings are fixedly mounted in the mounting holes, a pair of pull rod is fixedly mounted between inner rings of the first bearings, two ends of the pair of pull rod are exposed out of the box body, the pair of moving blocks are meshed with the pair of pull rod through the first threaded holes, a pair of moving blocks are fixedly mounted on the upper wall surface of the moving blocks respectively, an opening is formed in the upper wall surface of the box body, the upper end of the connecting rod penetrates through the opening, an arc-shaped plate is fixedly mounted at the upper end of the connecting rod, and the arc-shaped plate is located above the outer wall surface of the box body.
Preferably, elevating gear includes a pair of assembly box, and is a pair of assembly box fixed mounting is on the both sides wall face in the arch-shaped frame, fixed mounting has the motor in the assembly box, fixed mounting has the lead screw on the motor drive end, the reservation groove has been seted up on the wall in the assembly box down, fixed mounting has the second bearing in the reservation groove, lead screw lower extreme fixed mounting is in the second bearing inner circle, the guide mouth has been seted up on the assembly box side wall face, slidable mounting has the elevator in the guide mouth, set up flutedly on the wall around the elevator respectively, the elevator passes through recess and guide mouth sliding connection, set up the second screw hole on the elevator, the elevator passes through the second screw hole and is connected with the lead screw meshing.
Preferably, one half of the threads on the pair of tension rods are opposite to the other half of the threads.
Preferably, the arc-shaped plate is fixedly provided with an anti-slip pad, and the two ends of the opposite pull rod are respectively and fixedly provided with a handle.
Preferably, a third threaded hole is formed in one side wall surface of the arch frame, a threaded groove is formed in the other side wall surface of the assembly box, and a bolt is screwed in the third threaded hole and is screwed in the threaded groove.
Advantageous effects
The utility model provides a gas cylinder detects uses size measurement device, solved the device when measuring, the gas cylinder body can not be effectively fixed, and then takes place to cluster easily at the gas cylinder in the measurement process and move, and then reduces the stability when the gas cylinder is measured, thereby reduces the technical problem of gas cylinder measuring accuracy, the utility model discloses a two-way clamping structure carries out two-way centre gripping to the gas cylinder bottom fixed, and then takes place to rock when preventing that the gas cylinder from detecting, improves the gas cylinder and examines the stability of time measuring, drives laser range finder through elevating gear and carries out high regulation, thereby is applicable to the gas cylinder of arbitrary height, improves the detection range of gas cylinder, and then improves the work efficiency and the accuracy that the gas cylinder detected.
Drawings
Fig. 1 is the utility model discloses a gas cylinder detects uses size measurement device's main visual structure schematic diagram.
Fig. 2 is the utility model discloses a gas cylinder detects uses size measuring device's assembly box overlooks structural schematic.
In the figure: 1. a box body; 2. an arch frame; 3. a rear wall panel; 4. a carrier plate; 5. a limiting rod; 6. a limiting plate; 7. pressing a plate; 8. a spring; 9. a pressure sensor; 10. a laser range finder; 11. a controller; 12. a slide rail; 13. a moving block; 14. a first bearing; 15. a split lead screw; 16. a connecting rod; 17. an opening; 18. an arc-shaped plate; 19. assembling a box; 20. a motor; 21. a lead screw; 22. a second bearing; 23. a guide port; 24. a lifting block; 25. a groove; 26. a handle; 27. and (4) bolts.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-2, the present invention provides a technical solution: a size measuring device for gas cylinder detection comprises a box body 1, wherein an arch frame 2 is fixedly installed on the box body 1, a rear wall plate 3 is fixedly installed between the rear wall surface of the arch frame 2 and the rear wall surface of the box body 1, a bidirectional clamping structure is arranged in the box body 1, lifting devices are respectively installed on two side wall surfaces in the arch frame 2, a bearing plate 4 is fixedly installed between moving ends of the lifting devices, a plurality of through holes are formed in the bearing plate 4, a plurality of limiting rods 5 are inserted into the through holes, limiting plates 6 are respectively and fixedly installed at the upper ends of the limiting rods 5, a pressing plate 7 is fixedly installed between the lower ends of the limiting rods 5, a plurality of springs 8 are fixedly installed between the pressing plate 7 and the bearing plate 4, a plurality of springs 8 are sleeved on the limiting rods 5, and a pressure sensor 9 is fixedly installed at the center of the lower wall surface of the bearing plate 4, the upper wall surface of the pressing plate 7 is fixedly provided with a laser range finder 10, the pressing plate 7 is provided with a through hole, the laser emitting end of the laser range finder 10 penetrates through the through hole and is positioned on the same horizontal line with the lower wall surface of the pressing plate 7, the outer side wall surface of the arch-shaped frame 2 is fixedly provided with a controller 11, the bidirectional clamping structure comprises a slide rail 12, the slide rail 12 is fixedly arranged on the inner lower wall surface of the box body 1, a pair of moving blocks 13 is slidably arranged in the slide rail 12, a pair of moving blocks 13 are respectively provided with a first threaded hole, the side wall surfaces of the box body 1 are respectively provided with a mounting hole, a first bearing 14 is fixedly arranged in the mounting hole, a pair of pull rod 15 is fixedly arranged between the inner rings of the first bearing 14, two ends of the pair of pull rod 15 are exposed out of the box body 1, and the pair of moving blocks 13 are engaged with the pair of pull rod 15 through the first threaded holes, a connecting rod 16 is fixedly mounted on the upper wall surface of each of the pair of moving blocks 13, an opening 17 is formed in the upper wall surface of the box body 1, the upper end of each connecting rod 16 penetrates through the opening 17, an arc-shaped plate 18 is fixedly mounted at the upper end of each connecting rod 16, the arc-shaped plate 18 is positioned above the outer wall surface of the box body 1, the lifting device comprises a pair of assembly boxes 19, the pair of assembly boxes 19 are fixedly mounted on two side wall surfaces in the arch-shaped frame 2, a motor 20 is fixedly mounted in each assembly box 19, a lead screw 21 is fixedly mounted at the driving end of each motor 20, a reserved groove is formed in the inner lower wall surface of each assembly box 19, a second bearing 22 is fixedly mounted in each reserved groove, the lower end of each lead screw 21 is fixedly mounted on the inner ring of the second bearing 22, and a guide opening 23 is formed in the side wall surface of each assembly box 19, sliding mounting has elevator 24 in leading mouthful 23, set up fluted 25 on the wall respectively around the elevator 24, elevator 24 passes through recess 25 and leads mouthful 23 sliding connection, set up the second screw hole on the elevator 24, elevator 24 is connected with lead screw 21 meshing through the second screw hole, half screw direction on the opposite direction of half screw thread on the wire drawing pole 15, fixed mounting has the slipmat on the arc 18, fixed mounting has handle 26 respectively on the wire drawing pole 15 both ends, set up the third screw hole on the wall surface of arch frame 2 side, set up the thread groove on the wall surface of another side of assembly box 19, the downthehole bolt 27 that has connect soon of third screw thread, bolt 27 connects soon in the thread groove.
The detailed connection means is well known in the art, and the following mainly describes the working principle and process, and the specific operation is as follows.
The embodiment is as follows: according to the attached drawings of the specification, a motor 20, a pressure sensor 9 and a laser range finder 10 are respectively connected with a controller 11 in an electric control mode, when the gas cylinder is used, the gas cylinder is placed on the upper wall surface of a box body 1, a handle 26 is rotated at the moment, so that a tension rod 15 rotates under the action of a first bearing 14, the tension rod 15 is meshed and connected with a moving block 13 through a first threaded hole, so that the tension rod 15 has a driving trend for the moving block 13, the moving block 13 moves oppositely along a path of a sliding rail 12, so that the moving block 13 drives a connecting rod 16 to move oppositely, so that arc plates 18 move oppositely, the arc plates 18 clamp and fix the bottom of the gas cylinder at the moment, the motor 20 is started, a driving end of the motor 20 rotates to drive the screw rod 21 to rotate, the screw rod 21 rotates under the action of a second bearing 22, and a lifting block 24 is meshed and connected with the screw rod 21 through a second threaded hole, and then lead screw 21 has a driving trend to lifting block 24, lifting block 24 moves downwards along the path of guide port 23 under the limit of groove 25, lifting block 24 drives bearing plate 4 to move downwards until pressing plate 7 contacts with the top end of the gas cylinder, due to the mutual principle of force action, pressing plate 7 is pushed upwards by the gas cylinder, and further pressing plate 7 moves upwards along the path of through hole under the action of limiting rod 5, and further pressing plate 7 and bearing plate 4 compress spring 8, due to the mutual principle of force action, spring 8 releases elasticity, and further spring 8 pushes pressing plate 7 to tightly contact with the top end of the gas cylinder downwards, at this moment pressing plate 7 contacts with pressure sensor 9, pressure sensor 9 detects pressure signal and transmits the pressure signal to controller 11, controller 11 receives the pressure signal and controls motor 20 to stop working, at this moment, the laser range finder 10 is started, the laser range finder 10 emits laser, the laser is emitted to the outer upper wall surface of the box body 1, the height of the gas cylinder is detected, and height data detected by the laser range finder 10 are displayed through a screen of the controller 11.
It is noted that, herein, relational terms such as first and second, and the like may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions.

Claims (6)

1. A dimension measuring device for detecting a gas cylinder comprises a box body (1) and is characterized in that, an arch frame (2) is fixedly arranged on the box body (1), a rear wall plate (3) is fixedly arranged between the rear wall surface of the arch frame (2) and the rear wall surface of the box body (1), a bidirectional clamping structure is arranged in the box body (1), lifting devices are respectively arranged on the two side wall surfaces in the arch-shaped frame (2), a bearing plate (4) is fixedly arranged between the moving ends of the lifting device, a plurality of through holes are formed in the bearing plate (4), a plurality of limiting rods (5) are inserted in the through holes, limiting plates (6) are respectively fixedly arranged at the upper ends of the limiting rods (5), pressing plates (7) are fixedly arranged among the lower ends of the limiting rods (5), a plurality of springs (8) are fixedly arranged between the pressure plate (7) and the bearing plate (4), the plurality of springs (8) are sleeved on the plurality of limiting rods (5), a pressure sensor (9) is fixedly arranged at the center of the lower wall surface of the bearing plate (4), the upper wall surface of the pressure plate (7) is fixedly provided with a laser range finder (10), a through hole is arranged on the pressing plate (7), the laser emitting end of the laser range finder (10) penetrates through the through hole and is positioned on the same horizontal line with the lower wall surface of the pressing plate (7), and a controller (11) is fixedly arranged on the outer side wall surface of the arch frame (2).
2. The dimension measuring device for detecting the gas cylinder as defined in claim 1, wherein the bidirectional clamping structure comprises a slide rail (12), the slide rail (12) is fixedly mounted on a lower wall surface in the box body (1), a pair of moving blocks (13) is slidably mounted in the slide rail (12), a pair of first threaded holes are respectively formed in the pair of moving blocks (13), mounting holes are respectively formed in two side wall surfaces of the box body (1), a first bearing (14) is fixedly mounted in the mounting holes, a pair of tension rods (15) are fixedly mounted between inner rings of the first bearing (14), two ends of the pair of tension rods (15) are exposed out of the box body (1), the pair of moving blocks (13) are meshed with the pair of tension rods (15) through the first threaded holes, connecting rods (16) are respectively and fixedly mounted on an upper wall surface of the pair of moving blocks (13), an opening (17) is formed in the upper wall surface of the box body (1), an upper end of each connecting rod (16) penetrates through the opening (17), an arc-shaped plate (18) is fixedly mounted at an upper end of the connecting rod (16), and the arc-shaped plate (18) is located above an outer wall surface of the box body (1).
3. The dimension measuring device for detecting the gas cylinder as claimed in claim 1, wherein the lifting device comprises a pair of assembly boxes (19), the assembly boxes (19) are fixedly mounted on two side wall surfaces in the arch frame (2), a motor (20) is fixedly mounted in each assembly box (19), a lead screw (21) is fixedly mounted on a driving end of the motor (20), a reserved groove is formed in the inner lower wall surface of each assembly box (19), a second bearing (22) is fixedly mounted in each reserved groove, the lower end of each lead screw (21) is fixedly mounted in the inner ring of the corresponding second bearing (22), a guide opening (23) is formed in the side wall surface of each assembly box (19), a lifting block (24) is slidably mounted in each guide opening (23), grooves (25) are formed in the front wall surface and the rear wall surface of each lifting block (24), each lifting block (24) is slidably connected with each guide opening (23) through each groove (25), a second threaded hole is formed in each lifting block (24), and each lifting block (24) is connected with each lead screw hole (21) in a meshed manner through each second threaded hole.
4. A gas cylinder detecting dimension measuring device according to claim 2, characterized in that one half of the thread direction on the pair of tension rods (15) is opposite to the other half of the thread direction.
5. The dimension measuring device for detecting the gas cylinder as claimed in claim 2, wherein an anti-slip pad is fixedly arranged on the arc-shaped plate (18), and handles (26) are respectively and fixedly arranged at two ends of the opposite tension rod (15).
6. A dimension measuring device for detecting a gas cylinder according to claim 3, characterized in that a third threaded hole is formed in a side wall surface of the arch frame (2), a threaded groove is formed in the other side wall surface of the assembling box (19), a bolt (27) is screwed into the third threaded hole, and the bolt (27) is screwed into the threaded groove.
CN202221219156.5U 2022-05-20 2022-05-20 Gas cylinder detects uses size measurement device Active CN217786108U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221219156.5U CN217786108U (en) 2022-05-20 2022-05-20 Gas cylinder detects uses size measurement device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221219156.5U CN217786108U (en) 2022-05-20 2022-05-20 Gas cylinder detects uses size measurement device

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CN217786108U true CN217786108U (en) 2022-11-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117346635A (en) * 2023-12-06 2024-01-05 成都格瑞特高压容器有限责任公司 Outer diameter measuring device and measuring method for cylindrical gas cylinder

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117346635A (en) * 2023-12-06 2024-01-05 成都格瑞特高压容器有限责任公司 Outer diameter measuring device and measuring method for cylindrical gas cylinder
CN117346635B (en) * 2023-12-06 2024-03-12 成都格瑞特高压容器有限责任公司 Outer diameter measuring device and measuring method for cylindrical gas cylinder

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