CN215218753U - Gas monitoring device convenient to remove - Google Patents

Gas monitoring device convenient to remove Download PDF

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Publication number
CN215218753U
CN215218753U CN202121398933.2U CN202121398933U CN215218753U CN 215218753 U CN215218753 U CN 215218753U CN 202121398933 U CN202121398933 U CN 202121398933U CN 215218753 U CN215218753 U CN 215218753U
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China
Prior art keywords
seat
pivot
electric putter
drive gear
gas monitoring
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CN202121398933.2U
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Chinese (zh)
Inventor
李贵茹
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Fujian Zhuoyue Environmental Monitoring Co ltd
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Fujian Zhuoyue Environmental Monitoring Co ltd
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Priority to CN202121398933.2U priority Critical patent/CN215218753U/en
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Abstract

The utility model belongs to the gas monitoring field specifically is a gas monitoring devices convenient to remove, including be convenient for remove the in-process can the absorbing rotatory elevating system who bears mechanism, fixed establishment, can adjust not co-altitude and carry out the detection, bear the mechanism top and be provided with fixed establishment, the fixed establishment inboard is provided with rotatory elevating system, bear the mechanism and include mobile station, spring, spacing seat, removal wheel, fixing base, handrail. The utility model discloses a bear mechanism and rotatory elevating system, the staff promotes the handrail and makes gaseous detection remove the in-process, utilizes the spring of mobile station below installation and the interact of spacing seat, plays the shock attenuation effect, avoids the road surface uneven, carries out upset elevating movement through rotatory elevating system, can adjust the co-altitude and carry out gaseous detection, reduces artificial operation, has improved detection efficiency.

Description

Gas monitoring device convenient to remove
Technical Field
The utility model belongs to the gas monitoring field specifically is a relate to a gas monitoring devices convenient to remove.
Background
The gas detector, also called as a gas detector, is an instrument and meter tool for detecting gas leakage concentration, and mainly refers to a portable/handheld gas detector. The current gas monitoring device in the existing market is often uneven in the moving process road surface when in use, so that the gas detection data is unbalanced, and meanwhile, the gas detection needs to be manually adjusted in height, so that the detection time is long, and the detection efficiency is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a gas monitoring device convenient to remove.
The utility model discloses the technical scheme who adopts as follows:
a gas monitoring device convenient to move comprises a bearing mechanism capable of absorbing shock in the moving process, a fixing mechanism and a rotary lifting mechanism capable of adjusting different heights to detect, wherein the fixing mechanism is arranged above the bearing mechanism, the rotary lifting mechanism is arranged on the inner side of the fixing mechanism, the bearing mechanism comprises a moving platform, a spring, a limiting seat, a moving wheel, a fixed seat and a handrail, the spring is arranged at four corners below the moving platform, the limiting seat is arranged below the spring, the moving wheel is arranged below the limiting seat, the fixed seat is arranged above the moving platform, the handrail is arranged on the inner side of the fixed seat, the fixing mechanism comprises a detection box, a cover, a hinge and a bearing box, the cover is arranged on the rear side of the detection box, and the hinge is arranged on the inner side of the detection box, the front side of the detection box is provided with the bearing box.
Preferably: rotatory elevating system includes gaseous detection body, pinch-off blades, electric putter, roating seat, pivot, drive gear, first motor, gaseous detection body outside is provided with the pinch-off blades, pinch-off blades one side is provided with electric putter, electric putter one side is provided with the roating seat, the roating seat inboard is provided with the pivot, the pivot front side is provided with drive gear, drive gear one side is provided with drive gear, the drive gear front side is provided with first motor.
So set up, start first motor drive gear with drive gear rotates, drive gear drives the pivot with roating seat and electric putter and gas detection body is rotary motion.
Preferably: rotatory elevating system includes gaseous detection body, grip block, electric putter, roating seat, pivot, follows driving wheel, action wheel, second motor, gaseous detection body outside is provided with the grip block, grip block one side is provided with electric putter, electric putter one side is provided with the roating seat, the roating seat inboard is provided with the pivot, the pivot front side is provided with follow the driving wheel, be provided with from driving wheel one side the action wheel, the action wheel front side is provided with the second motor.
So set up, start the second motor drive the action wheel with from the driving wheel rotation, it drives from the driving wheel the pivot with roating seat and electric putter and the gas detection body is rotary motion.
Preferably: the mobile station is connected with the spring in a welding mode, the spring is connected with the limiting seat in a welding mode, the limiting seat is connected with the moving wheel through a bolt, the mobile station is connected with the fixed seat in a welding mode, and the fixed seat is connected with the handrail through a bearing.
By the arrangement, the mobile station, the spring, the limiting seat and the fixed seat are connected firmly.
Preferably: the detection box is connected with the hinge through a bolt, the cover is connected with the hinge through a bolt, and the detection box is connected with the bearing box through welding.
By the arrangement, the detection box and the bearing box are connected firmly.
Preferably: the gas detection body with the clamp plate passes through bolted connection, the clamp plate with electric putter passes through bolted connection, electric putter with the roating seat passes through bolted connection, the roating seat with welded connection is passed through in the pivot, the pivot with drive gear passes through welded connection, drive gear with drive gear meshing transmission, drive gear with first motor key-type connection.
So set up, make things convenient for the dismouting to change gaseous detection body electric putter maintains.
Preferably: the gas detection body with the clamp plate passes through bolted connection, the clamp plate with electric putter passes through bolted connection, electric putter with the roating seat passes through bolted connection, the roating seat with welded connection is passed through in the pivot, the pivot with pass through welded connection from the driving wheel, from the driving wheel with the action wheel passes through the belt and connects, the action wheel with second motor key-type connection.
So set up, make things convenient for the dismouting to change gaseous detection body electric putter maintains.
In the structure, firstly, a worker can easily move the detection box to any working environment by pushing the moving platform and the moving wheels through the handrails, the moving wheels are provided with the interaction of the springs and the limiting seats to play a role in damping, uneven road surfaces are avoided, the cover is opened through the hinges, the first motor is started to drive the driving gear and the driving gear to rotate, the driving gear drives the rotating shaft and the rotating seat to rotate, or the second motor is started to drive the driving wheel and the driven wheel to rotate, the driven wheel drives the rotating shaft and the rotating seat to rotate, the rotating seat drives the electric push rod and the clamping plate to fix the gas detection body to turn over and lift, so that the worker can conveniently adjust according to different environments, therefore, the gas with different heights can be detected, and the detection effect is improved.
The utility model has the advantages that: the adoption bears mechanism and rotatory elevating system, and the staff promotes the handrail and makes gaseous detection at the removal in-process, utilizes the spring of mobile station below installation and the interact of spacing seat, plays the shock attenuation effect, avoids the road surface uneven, carries out upset elevating movement through rotatory elevating system, can adjust the co-altitude not and carry out gaseous detection, reduces artificial operation, has improved detection efficiency.
Drawings
The accompanying drawings, which are included to provide a further understanding of the invention and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the principles of the invention and not to limit the invention. In the drawings:
fig. 1 is a schematic front view of an embodiment 1 of a portable gas monitoring device according to the present invention;
fig. 2 is a schematic perspective view of an embodiment 1 of a portable gas monitoring device according to the present invention;
fig. 3 is a schematic view of a carrying mechanism of a portable gas monitoring device according to the present invention;
fig. 4 is a schematic view of a fixing mechanism of a portable gas monitoring device according to the present invention;
fig. 5 is a schematic view of a rotary lifting mechanism of embodiment 1 of a portable gas monitoring device according to the present invention;
fig. 6 is a schematic view of a rotary lifting mechanism of embodiment 2 of a portable gas monitoring device according to the present invention.
The reference numerals are explained below:
1. a carrying mechanism; 2. a fixing mechanism; 3. a rotary lifting mechanism; 11. a mobile station; 12. a spring; 13. a limiting seat; 14. a moving wheel; 15. a fixed seat; 16. a handrail; 21. a detection box; 22. a cover; 23. hinge; 24. a carrying box; 31. a gas detection body; 32. a clamping plate; 33. an electric push rod; 34. a rotating base; 35. a rotating shaft; 36. a transmission gear; 37. a drive gear; 38. a first motor; 301. a driven wheel; 302. a driving wheel; 303 a second motor.
Detailed Description
The present invention will be further described with reference to the following examples and drawings.
Example 1
As shown in fig. 1, 2, 3, 4, and 5, a gas monitoring device convenient for movement comprises a bearing mechanism 1 capable of absorbing shock during movement, a fixing mechanism 2, and a rotary lifting mechanism 3 capable of adjusting different heights to perform detection, wherein the fixing mechanism 2 is arranged above the bearing mechanism 1, the rotary lifting mechanism 3 is arranged inside the fixing mechanism 2, the bearing mechanism 1 comprises a moving platform 11, a spring 12, a limiting seat 13, a moving wheel 14, a fixing seat 15, and handrails 16, the springs 12 are arranged at four corners below the moving platform 11, the limiting seat 13 is arranged below the spring 12, the moving wheel 14 is arranged below the limiting seat 13, the fixing seat 15 is arranged above the moving platform 11, the handrail 16 is arranged inside the fixing seat 15, the fixing mechanism 2 comprises a detection box 21, a cover 22, a hinge 23, and a bearing box 24, the cover 22 is arranged at the rear side of the detection box 21, the hinge 23 is arranged inside the detection box 21, the front side of the detection box 21 is provided with a bearing box 24, the rotary lifting mechanism 3 comprises a gas detection body 31, a clamping plate 32, an electric push rod 33, a rotary seat 34, a rotary shaft 35, a transmission gear 36, a driving gear 37 and a first motor 38, the clamping plate 32 is arranged on the outer side of the gas detection body 31, the electric push rod 33 is arranged on one side of the clamping plate 32, the rotary seat 34 is arranged on one side of the electric push rod 33, the rotary shaft 35 is arranged on the inner side of the rotary seat 34, the transmission gear 36 is arranged on the front side of the rotary shaft 35, the driving gear 37 is arranged on one side of the transmission gear 36, and the first motor 38 is arranged on the front side of the driving gear 37.
Preferably: the movable table 11 is connected with the spring 12 through welding, the spring 12 is connected with the limiting seat 13 through welding, the limiting seat 13 is connected with the movable wheel 14 through a bolt, the movable table 11 is connected with the fixed seat 15 through welding, and the fixed seat 15 is connected with the handrail 16 through a bearing; the detection box 21 is connected with the hinge 23 through a bolt, the cover 22 is connected with the hinge 23 through a bolt, and the detection box 21 is connected with the bearing box 24 through welding; the gas detection body 31 is connected with the clamping plate 32 through a bolt, the clamping plate 32 is connected with the electric push rod 33 through a bolt, the electric push rod 33 is connected with the rotary seat 34 through a bolt, the rotary seat 34 is connected with the rotary shaft 35 through welding, the rotary shaft 35 is connected with the transmission gear 36 through welding, the transmission gear 36 is in meshing transmission with the driving gear 37, and the driving gear 37 is in key connection with the first motor 38.
Example 2
As shown in fig. 3, 4, and 6, the present embodiment is different from embodiment 1 in that: the rotary lifting mechanism 3 comprises a gas detection body 31, a clamping plate 32, an electric push rod 33, a rotary seat 34, a rotary shaft 35, a driven wheel 301, a driving wheel 302 and a second motor 303, wherein the clamping plate 32 is arranged on the outer side of the gas detection body 31, the electric push rod 33 is arranged on one side of the clamping plate 32, the rotary seat 34 is arranged on one side of the electric push rod 33, the rotary shaft 35 is arranged on the inner side of the rotary seat 34, the driven wheel 301 is arranged on the front side of the rotary shaft 35, the driving wheel 302 is arranged on one side of the driven wheel 301, and the second motor 303 is arranged on the front side of the driving wheel 302; gaseous body 31 that detects passes through bolted connection with clamping plate 32, and clamping plate 32 passes through bolted connection with electric putter 33, and electric putter 33 passes through bolted connection with roating seat 34, and roating seat 34 passes through welded connection with pivot 35, and pivot 35 passes through welded connection with follow driving wheel 301, follows driving wheel 301 and drive wheel 302 and pass through the belt and be connected, and drive wheel 302 is connected with second motor 303 key-type.
The working principle is as follows: firstly, the staff can easily move the detection box 21 to any working environment by pushing the moving platform 11 and the moving wheel 14 through the handrail 16, the moving wheel 14 is provided with the interaction of the spring 12 and the limiting seat 13, the shock absorption effect is achieved, the uneven road surface is avoided, the cover 22 is opened through the hinge 23, then the first motor 38 is started to drive the driving gear 37 and the transmission gear 36 to rotate, the transmission gear 36 drives the rotating shaft 35 and the rotating seat 34 to rotate, or the second motor 303 is started to drive the driving wheel 302 and the driven wheel 301 to rotate, the driven wheel 301 drives the rotating shaft 35 and the rotating seat 34 to rotate, the rotating seat 34 drives the electric push rod 33 and the clamping plate 32 to fix the gas detection body 31 to perform overturning lifting motion, the staff can adjust according to different environments, the gas with different heights can be detected, and the detection effect is improved.
The preferred embodiments of the present invention have been described in detail with reference to the accompanying drawings, but the present invention is not limited to the above embodiments, and various changes can be made without departing from the gist of the present invention within the knowledge of those skilled in the art.

Claims (7)

1. The utility model provides a gaseous monitoring devices convenient to remove which characterized in that: the device comprises a bearing mechanism (1) which is convenient to absorb shock in the moving process, a fixing mechanism (2) and a rotary lifting mechanism (3) which can adjust different heights for detection, wherein the fixing mechanism (2) is arranged above the bearing mechanism (1), and the rotary lifting mechanism (3) is arranged on the inner side of the fixing mechanism (2);
the bearing mechanism (1) comprises a mobile platform (11), springs (12), a limiting seat (13), moving wheels (14), a fixed seat (15) and handrails (16), wherein the springs (12) are arranged at four corners below the mobile platform (11), the limiting seat (13) is arranged below the springs (12), the moving wheels (14) are arranged below the limiting seat (13), the fixed seat (15) is arranged above the mobile platform (11), and the handrails (16) are arranged on the inner side of the fixed seat (15);
the fixing mechanism (2) comprises a detection box (21), a cover (22), a hinge (23) and a bearing box (24), wherein the cover (22) is arranged on the rear side of the detection box (21), the hinge (23) is arranged on the inner side of the detection box (21), and the bearing box (24) is arranged on the front side of the detection box (21).
2. A portable gas monitoring apparatus according to claim 1, wherein: rotatory elevating system (3) are including gaseous detection body (31), grip block (32), electric putter (33), roating seat (34), pivot (35), drive gear (36), drive gear (37), first motor (38), gaseous detection body (31) outside is provided with grip block (32), grip block (32) one side is provided with electric putter (33), electric putter (33) one side is provided with roating seat (34), roating seat (34) inboard is provided with pivot (35), pivot (35) front side is provided with drive gear (36), drive gear (36) one side is provided with drive gear (37), drive gear (37) front side is provided with first motor (38).
3. A portable gas monitoring apparatus according to claim 1, wherein: rotatory elevating system (3) are including gaseous detection body (31), grip block (32), electric putter (33), roating seat (34), pivot (35), follow driving wheel (301), action wheel (302), second motor (303), gaseous detection body (31) outside is provided with grip block (32), grip block (32) one side is provided with electric putter (33), electric putter (33) one side is provided with roating seat (34), roating seat (34) inboard is provided with pivot (35), pivot (35) front side is provided with follow driving wheel (301), follow driving wheel (301) one side is provided with action wheel (302), action wheel (302) front side is provided with second motor (303).
4. A portable gas monitoring apparatus according to claim 1, wherein: the movable table is characterized in that the movable table (11) is connected with the spring (12) in a welding mode, the spring (12) is connected with the limiting seat (13) in a welding mode, the limiting seat (13) is connected with the movable wheel (14) through a bolt, the movable table (11) is connected with the fixed seat (15) in a welding mode, and the fixed seat (15) is connected with the handrail (16) through a bearing.
5. A portable gas monitoring apparatus according to claim 1, wherein: the detection box (21) is connected with the hinge (23) through bolts, the cover (22) is connected with the hinge (23) through bolts, and the detection box (21) is connected with the bearing box (24) through welding.
6. A portable gas monitoring apparatus according to claim 2, wherein: gaseous detection body (31) with pinch-off blades (32) pass through bolted connection, pinch-off blades (32) with electric putter (33) pass through bolted connection, electric putter (33) with roating seat (34) pass through bolted connection, roating seat (34) with pivot (35) are through welded connection, pivot (35) with drive gear (36) pass through welded connection, drive gear (36) with drive gear (37) meshing transmission, drive gear (37) with first motor (38) key-type connection.
7. A portable gas monitoring apparatus according to claim 3, wherein: gaseous detection body (31) with pinch-off blades (32) pass through bolted connection, pinch-off blades (32) with electric putter (33) pass through bolted connection, electric putter (33) with roating seat (34) pass through bolted connection, roating seat (34) with pivot (35) are through welded connection, pivot (35) with from driving wheel (301) through welded connection, from driving wheel (301) with driving wheel (302) pass through the belt and connect, driving wheel (302) with second motor (303) key-type connection.
CN202121398933.2U 2021-06-23 2021-06-23 Gas monitoring device convenient to remove Active CN215218753U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121398933.2U CN215218753U (en) 2021-06-23 2021-06-23 Gas monitoring device convenient to remove

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121398933.2U CN215218753U (en) 2021-06-23 2021-06-23 Gas monitoring device convenient to remove

Publications (1)

Publication Number Publication Date
CN215218753U true CN215218753U (en) 2021-12-17

Family

ID=79434336

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121398933.2U Active CN215218753U (en) 2021-06-23 2021-06-23 Gas monitoring device convenient to remove

Country Status (1)

Country Link
CN (1) CN215218753U (en)

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