CN211249922U - Insulator assembly workbench - Google Patents
Insulator assembly workbench Download PDFInfo
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- CN211249922U CN211249922U CN201922152258.4U CN201922152258U CN211249922U CN 211249922 U CN211249922 U CN 211249922U CN 201922152258 U CN201922152258 U CN 201922152258U CN 211249922 U CN211249922 U CN 211249922U
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Abstract
The utility model discloses an insulator assembling workbench, which comprises a first processing component, a second processing component and a third processing component; the first processing assembly comprises a first fixing block, an extensible member and a top plate, a first positioning groove for fixing a clamping jaw of an insulator is formed in the first fixing block, and the output end of the extensible member is connected with the top plate and drives the top plate to move towards or away from the first positioning groove; the second processing assembly comprises a second fixed block, and a second positioning groove for fixing an insulating block of the insulator is formed in the second fixed block; the third processing assembly comprises a third fixed block and a detection piece, a third positioning groove for fixing an insulating block of the insulator is formed in the third fixed block, and the detection piece detects the relative position of the bolt and the insulator through infrared rays; the problems of low efficiency, high labor cost and low product percent of pass of manual assembly in the prior art are solved.
Description
Technical Field
The utility model relates to an insulator technical field for the wiping line, concretely relates to insulator assembly workstation.
Background
Insulator for wiping line is formed by jack catch, liner, insulating block and connecting block assembly, the flow of assembly does, go into the recess of jack catch with the liner card, and press the liner, make the liner paste firmly on the inner wall of recess, then fix the both sides at the connecting block respectively with the jack catch and the connecting block that have the liner, adopt manual assembly at present mostly, however manual assembly, inefficiency, there is the liner not laminate completely with the jack catch, or the bolt does not tighten the equal condition, lead to product quality not to pass, and consume a large amount of manpowers.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to overcome above-mentioned technique not enough, provide insulator assembly workstation, solved prior art in the manual assembly, it is inefficient, the cost of labor is high, the problem that the product percent of pass is low.
In order to solve the technical problem, the utility model provides an insulator assembly workbench, which comprises a first processing component, a second processing component and a third processing component; the first processing assembly comprises a first fixing block, an extensible member and a top plate, a first positioning groove for fixing a clamping jaw of an insulator is formed in the first fixing block, and the output end of the extensible member is connected with the top plate and drives the top plate to move towards or away from the first positioning groove; the second processing assembly comprises a second fixed block, and a second positioning groove for fixing an insulating block of the insulator is formed in the second fixed block; the third processing assembly comprises a third fixing block and a detection piece, a third positioning groove for fixing an insulating block of the insulator is formed in the third fixing block, and the detection piece is used for detecting the relative position of the bolt and the insulator.
The utility model has the advantages that: be different from the prior art's condition, the utility model discloses a set up first constant head tank and be convenient for fixed jack catch, not and through setting up extensible member and roof, be convenient for closely install the liner in the recess of jack catch, through setting up the second constant head tank, be convenient for be connected between jack catch and the insulating block, through setting up the third constant head tank, the location of the whole insulator of being convenient for to through the infrared ray that detects the piece and send, can know whether the bolt locks, and machining efficiency is high, only need an operation can, the product percent of pass is high.
Drawings
Fig. 1 is a schematic structural diagram of an embodiment of the present invention;
FIG. 2 is a schematic structural view of a first processing assembly according to an embodiment of the present invention;
FIG. 3 is a schematic structural view of a second processing assembly according to an embodiment of the present invention;
fig. 4 is a schematic structural diagram of a third processing assembly according to an embodiment of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying 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 all belong to the protection scope of the present invention.
As shown in fig. 1, the utility model provides an insulator assembling workbench, including first processing subassembly 100, second processing subassembly 200 and third processing subassembly 300, during the implementation, first processing subassembly 100 packs into the gasket 411 in the recess of jack catch 410, and makes the inseparable subsides of gasket 411 in the recess of jack catch 410, second processing subassembly 200 is used for fixed jack catch 410 and the collets 420 that are equipped with gasket 411, and through tools such as wind criticize, link up gasket 411 and collets 420 through the bolt, third processing subassembly 300 is used for fixed whole insulator, connecting block 430 is up, after connecting block 430 and collets 420 through the bolt, whether detecting element 330 detectable bolt is tightened, set forth in more detail below.
As shown in fig. 2, the first processing assembly 100 in this embodiment includes a first table 120, a telescopic member 130, and a top plate 140, the first table 120 is provided with a first positioning groove 121 for fixing the jaws 410, and an output end of the telescopic member 130 is connected to the top plate 140 and drives the top plate 140 to move toward or away from the first positioning groove 121.
Preferably, the first processing assembly 100 further includes a first worktable 110, the first worktable 110 has a planar end and a vertical end, the first worktable 120 is installed on the planar end, the extensible member 130 is installed on the vertical end, the second processing assembly 200 further includes a second worktable 210, the third processing assembly 300 further includes a third worktable 310, and the planar end of the first worktable 110, the second worktable 210 and the third worktable 310 are sequentially connected.
The first positioning groove is matched with the outer wall of the clamping jaw 410, the gasket 411 is placed on one side, far away from the first positioning groove, of the clamping jaw 410, and it can be understood that the shape and the size of the first positioning groove are determined according to the shape and the size of the clamping jaw 410 to be assembled, and the clamping jaw 410 to be assembled can be clamped and embedded in the first positioning groove.
Preferably, the telescopic member 130 is a cylinder, and it is understood that the telescopic member 130 may be replaced by other telescopic structures.
As shown in fig. 3, the second processing assembly 200 in this embodiment includes a second fixing block 220, and a second positioning groove 221 for fixing the insulating block 420 is disposed on the second fixing block 220.
Wherein, insulating block 420 in second constant head tank and the insulator is kept away from pad 411 one side cooperation joint, and can understand, the shape size of second constant head tank is decided according to the shape size of insulating block 420 of required assembly, satisfies the insulating block 420 card that can assemble with needs and inlays in the second constant head tank, and the one side of being connected with jack catch 410 towards the direction of keeping away from second fixed block 220 can to the installation is convenient for.
After the insulating block 420 is fixed, the jaw 410 with the gasket 411 is placed on the insulating block 420, the through hole of the jaw 410 is aligned with the threaded hole of the insulating block 420, and a bolt is inserted through the through hole and threadedly coupled with the threaded hole by a tool such as a pneumatic screwdriver.
As shown in fig. 4, the third processing assembly 300 in this embodiment includes a third fixing block 320 and a detecting element 330, the third fixing block 320 is provided with a third positioning groove 321 for fixing the insulator, and the detecting element 330 detects the relative position of the bolt and the insulator through infrared rays.
Wherein, insulating block 420 in third constant head tank and the insulator is kept away from jack catch 410 one side cooperation joint, and it can be understood, the shape size of third constant head tank is according to the shape size of the insulator that has assembled and decide, and it can to satisfy can inlay the insulator card of required assembly in the third constant head tank.
Preferably, the detecting member 330 is an infrared emitter, the insulating block 420 is connected to the connecting block 430 by a bolt, the infrared emitted by the infrared emitter is directed to the bolt vertically, and the vertical distance from the infrared to the connecting block 430 is the locking range of the bolt.
Specifically, the number of the infrared emitters is the same as that of the bolts, the infrared emitters correspond to the bolts one to one, infrared rays emitted by the infrared emitters are perpendicular to the axis of the corresponding bolts, and when the bolts block the infrared rays, the bolts are not locked.
The working process is as follows: placing the jack 410 in a first positioning groove of the first workbench 120, placing the pad 411 in a groove of the jack 410, opening the telescopic member 130 to drive the top plate 140 to move downwards until the top plate 140 presses the pad 411 to enable the pad 411 to be tightly attached to the groove, resetting the telescopic member 130, taking out the card, placing the insulating block 420 in a second positioning groove 221 of the second fixing block 220 and enabling the side, connected with the pad 411, of the insulating block 420 to face upwards, placing the jack 410 provided with the pad 411 on the insulating block 420, connecting through a bolt, placing the insulating block 420 in a third positioning groove 321 of the third fixing block 320 and enabling the side, far away from the jack 410, of the insulating block 420 to face upwards, placing the connecting block 430 on the connecting block 430, connecting the insulating block 420 and the connecting block 430 through the bolt, starting an infrared emitter, if the infrared ray is blocked by the bolt, indicating that the bolt is unlocked, if not blocked by the bolt, it represents that the bolt is locked.
Be different from prior art's condition, the utility model discloses a set up first constant head tank 121 and be convenient for fixed jack catch 410, and not through setting up extensible member 130 and roof 140, be convenient for closely install liner 411 in jack catch 410's recess, through setting up second constant head tank 221, be convenient for be connected between jack catch 410 and the collets 420, through setting up third constant head tank 321, be convenient for the location of whole insulator, and the infrared ray that sends through detection piece 330, can know whether the bolt locks, high processing efficiency, only need an operation can, the product percent of pass is high.
It should be noted that the above embodiments belong to the same utility model concept, and the description of each embodiment has its emphasis, and the description of each embodiment is not described in detail, and reference may be made to the description of other embodiments.
The above-mentioned embodiments only express the embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the utility model. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.
Claims (7)
1. Insulator assembly workstation, its characterized in that includes:
the first processing assembly comprises a first fixing block, an extensible part and a top plate, a first positioning groove for fixing a clamping jaw of an insulator is formed in the first fixing block, and the output end of the extensible part is connected with the top plate and drives the top plate to move towards the direction close to or far away from the first positioning groove;
the second processing assembly comprises a second fixed block, and a second positioning groove for fixing the insulating block of the insulator is formed in the second fixed block;
and the third processing assembly comprises a third fixing block and a detection piece, a third positioning groove for fixing the insulating block of the insulator is formed in the third fixing block, and the detection piece is used for detecting the relative position of the bolt and the insulator.
2. An insulator assembly workbench according to claim 1, wherein the first machining assembly further comprises a first workbench having a planar end and a vertical end, the first fixing block is mounted on the planar end, the extensible member is mounted on the vertical end, the second machining assembly further comprises a second workbench, the third machining assembly further comprises a third workbench, and the planar end of the first workbench, the second workbench and the third workbench are sequentially connected.
3. An insulator assembling workbench according to claim 1, wherein the first positioning groove is matched with the outer wall of the clamping jaw, and the gasket is arranged on the side of the clamping jaw far away from the first positioning groove.
4. An insulator assembling workbench according to claim 1, wherein the second positioning groove is in fit clamping connection with one side, away from the pad, of the insulating block in the insulator.
5. An insulator assembling workbench according to claim 1, wherein the third positioning groove is in fit clamping connection with one side, away from the clamping jaw, of the insulating block in the insulator.
6. An insulator assembly workstation according to claim 1, wherein the telescoping member is a cylinder.
7. An insulator assembling workbench according to claim 1, wherein the detecting member is an infrared emitter, the insulating block is connected with the connecting block through a bolt, the infrared emitted by the infrared emitter is vertically directed to the bolt, and the vertical distance from the infrared to the connecting block is the locking range of the bolt.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922152258.4U CN211249922U (en) | 2019-12-04 | 2019-12-04 | Insulator assembly workbench |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922152258.4U CN211249922U (en) | 2019-12-04 | 2019-12-04 | Insulator assembly workbench |
Publications (1)
Publication Number | Publication Date |
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CN211249922U true CN211249922U (en) | 2020-08-14 |
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CN201922152258.4U Active CN211249922U (en) | 2019-12-04 | 2019-12-04 | Insulator assembly workbench |
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CN (1) | CN211249922U (en) |
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2019
- 2019-12-04 CN CN201922152258.4U patent/CN211249922U/en active Active
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