CN216227875U - Tear nozzle frock open - Google Patents
Tear nozzle frock open Download PDFInfo
- Publication number
- CN216227875U CN216227875U CN202122877190.3U CN202122877190U CN216227875U CN 216227875 U CN216227875 U CN 216227875U CN 202122877190 U CN202122877190 U CN 202122877190U CN 216227875 U CN216227875 U CN 216227875U
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- clamping block
- nozzle
- tube head
- mounting seat
- nozzle clamping
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Abstract
The utility model relates to the technical field of fittings of dispensing machines, in particular to a nozzle dismounting tool which comprises a lower mounting seat, a nozzle clamping assembly and a pipe head clamping assembly, wherein the nozzle clamping assembly and the pipe head clamping assembly are arranged oppositely from top to bottom; when the nozzle is disassembled, the rotating driving assembly drives the nozzle clamping assembly to drive the nozzle to rotate, and meanwhile, the lifting assembly drives the upper mounting seat to ascend, so that the nozzle can be cleaned and maintained after being taken down from the nozzle clamping assembly; the utility model has convenient assembly and disassembly, and effectively avoids the condition that the nozzle and the hose head are easy to be misplaced when being repeatedly disassembled.
Description
Technical Field
The utility model relates to the technical field of fittings of dispensing machines, in particular to a nozzle dismounting tool.
Background
The glue dispenser is also called a glue spreader, a glue dripping machine, a glue spreading machine, a glue pouring machine and the like, and is specially used for controlling fluid; the fluid is dripped and coated on the surface of the product or in the product by an automatic machine, so that three-dimensional and four-dimensional path dispensing, accurate positioning, accurate glue control, no wire drawing, no glue leakage and no glue dripping can be realized; the glue dispenser is mainly used for accurately dispensing, injecting, coating and dripping glue, paint and other liquids in a product process to each accurate position of a product, and can be used for realizing dispensing, line drawing, circular or arc.
The dispenser is in long-time use, need regularly to pull down the washing maintenance with the nozzle from the rubber tube, and current dispenser nozzle adopts threaded connection's mode and rubber tube head to install usually, and the mode that uses threaded connection leads to the fact the installation dislocation of shower nozzle after dismantling repeatedly very easily to lead to the nozzle to install inseparably, bring the influence to the point gluey work.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the defects and provide the nozzle dismounting tool which is convenient to mount and dismount and effectively avoids the condition that the nozzle and the rubber tube head are easily dislocated after being repeatedly dismounted.
In order to achieve the purpose, the utility model adopts the following technical scheme:
the utility model provides a tear nozzle frock open, includes mount pad down, from top to bottom just to the nozzle clamping component and the tube head clamping component who sets up, is used for the drive the rotatory drive assembly who adopts of nozzle clamping component is used for the installation the last mount pad that the rotary drive assembly adopted is used for the drive go up the lift subassembly that the mount pad ascended or descended and adopt, lift subassembly's bottom and the equal fixed mounting of tube head clamping component are in down on the mount pad.
Further, tube head clamping unit is including just pressing from both sides tight piece of left side tube head and the tight piece of right side tube head clamp that sets up, is used for the drive the tight piece of right side tube head clamp is close to or keeps away from the tight piece of tube head clamp that the left side tube head adopted drives actuating cylinder, the bottom fixed connection that the tight piece of left side tube head clamp is in on the mount pad down, the tight piece of tube head clamp drives actuating cylinder and fixes in the tight piece of left side tube head clamp, the piston rod pole head level that the tight piece of tube head clamp drove actuating cylinder of tube head stretches out right behind the tight piece of left side tube head clamp, the tight piece of right side tube head clamp, all be provided with on the right face of the tight piece of left side tube head clamp and the tight piece of right side tube head clamp and be used for holding the tight arc wall of tube head clamp that the rubber tube head adopted.
Further, the nozzle clamping assembly comprises a left nozzle clamping block and a right nozzle clamping block which are just opposite to each other and are used for driving the right nozzle clamping block to be close to or far away from a nozzle clamping block driving cylinder adopted by the left nozzle clamping block and used for installation, a fixing seat adopted by the left nozzle clamping block is installed by the nozzle clamping block driving cylinder in the left nozzle clamping block, a piston rod head level of the nozzle clamping block driving cylinder penetrates out of the left nozzle clamping block in the right direction, the left nozzle clamping block is in driving connection with the right nozzle clamping block, and a nozzle clamping arc-shaped groove used for accommodating the nozzle is formed in the right opposite surface of the left nozzle clamping block and the right nozzle clamping block.
Furthermore, the rotary driving assembly is a rotary driving motor arranged in the upper mounting seat, and an output shaft of the rotary driving motor vertically penetrates out of the upper mounting seat downwards and is in driving connection with the fixed seat.
Further, the upper mounting seat is a rectangular mounting seat; the lifting assembly is composed of four lifting cylinders fixed on the lower mounting seat, a piston rod head of each lifting cylinder vertically extends upwards to drive and connect the rectangular mounting seat, and the four lifting cylinders are respectively close to the four corners of the rectangular mounting seat.
The utility model has the beneficial effects that:
in practical application, during installation, the hose head is clamped through the hose head clamping assembly, the nozzle is clamped through the nozzle clamping assembly, the rotating driving assembly drives the nozzle clamping assembly to drive the nozzle to rotate, and meanwhile, the lifting assembly drives the upper mounting base to descend, so that the nozzle is screwed on the hose head; when the nozzle is disassembled, the rotating driving assembly drives the nozzle clamping assembly to drive the nozzle to rotate, and meanwhile, the lifting assembly drives the upper mounting seat to ascend, so that the nozzle can be cleaned and maintained after being taken down from the nozzle clamping assembly; the utility model has convenient assembly and disassembly, and effectively avoids the condition that the nozzle and the hose head are easy to be misplaced when being repeatedly disassembled.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a right side view of the present invention;
FIG. 3 is a cross-sectional view taken at A-A in FIG. 2;
reference numerals: a lower mounting base 1; a nozzle clamping assembly 2; a left nozzle clamping block 21; a right nozzle clamping block 22; the nozzle clamping block drives the cylinder 23; a fixed seat 24; the nozzle clamping arc slot 25; a tube head clamping assembly 3; a left tube head clamping block 31; a right tube head clamping block 32; the tube head clamping block drives the cylinder 33; a tip clamping arc slot 34; a rotary drive assembly 4; a rotation driving motor 41; an upper mounting base 5; a lifting assembly 6; and an elevating cylinder 61.
Detailed Description
As shown in fig. 1, 2 and 3, a tear nozzle frock open, includes mount pad 1 down, from top to bottom just to the nozzle clamping component 2 and the tube head clamping component 3 that set up, be used for the drive the rotatory drive assembly 4 that adopts of nozzle clamping component 2 is used for the installation last mount pad 5 that rotatory drive assembly 4 adopted is used for the drive go up mount pad 5 and rise or descend the lifting unit 6 that adopts, lifting unit 6's bottom and tube head clamping component 3 equal fixed mounting be in on the mount pad 1 down.
During installation, the hose head is clamped through the hose head clamping assembly 3, the nozzle is clamped through the nozzle clamping assembly 2, the nozzle clamping assembly 2 is driven by the rotation driving assembly 4 to drive the nozzle to rotate, and meanwhile, the upper mounting base 5 is driven by the lifting assembly 6 to descend, so that the nozzle is screwed on the hose head; when the nozzle is disassembled, the rotating driving component 4 drives the nozzle clamping component 2 to drive the nozzle to rotate, meanwhile, the lifting component 6 drives the upper mounting seat 5 to ascend, and the nozzle can be cleaned and maintained after being taken down from the nozzle clamping component 2; the utility model has convenient assembly and disassembly, and effectively avoids the condition that the nozzle and the hose head are easy to be misplaced when being repeatedly disassembled.
As shown in fig. 1, 2 and 3, the tube head clamping assembly 3 includes a left tube head clamping block 31 and a right tube head clamping block 32 which are opposite to each other and are arranged, and is used for driving the right tube head clamping block 32 to be close to or far away from a tube head clamping block driving cylinder 33 adopted by the left tube head clamping block 31, the bottom end of the left tube head clamping block 31 is fixedly connected to the lower mounting base 1, the tube head clamping block driving cylinder 33 is fixed in the left tube head clamping block 31, a piston rod head of the tube head clamping block driving cylinder 33 horizontally extends to the right to form the left tube head clamping block 31 and then is in driving connection with the right tube head clamping block 32, and the right surfaces of the left tube head clamping block 31 and the right tube head clamping block 32 are respectively provided with a tube head clamping arc-shaped groove 34 used for accommodating a rubber tube head; in this embodiment, because the left side tube head presss from both sides tight piece 31 and the right side tube head and presss from both sides tight piece 32 of tube head that is the shape of falling L, the tube head presss from both sides tight arc 34 and all sets up in the horizontal portion that the tube head pressed from both sides tight piece, and it is flexible to drive the piston rod pole head of cylinder 33 through the tight piece of tube head clamp, and the tight piece 32 of drive right side tube head clamp is close to the tight piece 31 of left side tube head clamp, can press from both sides the tube head in the tight arc 34 of tube head clamp.
As shown in fig. 1, 2 and 3, the nozzle clamping assembly 2 includes a left nozzle clamping block 21 and a right nozzle clamping block 22 which are oppositely disposed, a nozzle clamping block driving cylinder 23 for driving the right nozzle clamping block 22 to approach or depart from the left nozzle clamping block 21, and a fixing seat 24 for mounting the left nozzle clamping block 21, the nozzle clamping block driving cylinder 23 is mounted in the left nozzle clamping block 21, a piston rod head of the nozzle clamping block driving cylinder 23 horizontally penetrates through the left nozzle clamping block 21 rightwards and is in driving connection with the right nozzle clamping block 22, and nozzle clamping arc-shaped grooves 25 for accommodating nozzles are respectively disposed on the opposite surfaces of the left nozzle clamping block 21 and the right nozzle clamping block 22; in this embodiment, because the left nozzle clamping block 21 and the right nozzle clamping block 22 are both L-shaped nozzle clamping blocks, the nozzle clamping arc-shaped groove 25 is disposed at the transverse portion of the nozzle clamping block, and the right nozzle clamping block 22 is driven to approach the left nozzle clamping block 21 by the piston rod head of the nozzle clamping block driving cylinder 23 in a telescopic manner, so that the nozzle can be clamped in the nozzle clamping arc-shaped groove 25.
As shown in fig. 1, 2 and 3, the rotation driving assembly 4 is a rotation driving motor 41 disposed in the upper mounting seat 5, and an output shaft of the rotation driving motor 41 vertically penetrates through the upper mounting seat 5 downward and then is connected to the fixed seat 24 in a driving manner; in this embodiment, the fixing base 24 is driven to rotate by the rotation driving motor 41.
As shown in fig. 1, 2 and 3, the upper mounting seat 5 is a rectangular mounting seat; the lifting assembly 6 is four lifting cylinders 61 fixed on the lower mounting base 1, a piston rod head of each lifting cylinder 61 vertically extends upwards to be in driving connection with the rectangular mounting base, and the four lifting cylinders 61 are respectively arranged close to four corners of the rectangular mounting base; in this embodiment, the upper mount 5 is driven to ascend or descend by the extension and contraction of the rod head of the lift cylinder 61.
The specific embodiments described herein are merely illustrative of the spirit of the utility model. Various modifications, additions and substitutions for the described embodiments may be made by those skilled in the art without departing from the scope and spirit of the utility model as defined by the accompanying claims.
Claims (5)
1. The utility model provides a tear nozzle frock open which characterized in that: including mount pad (1) down, from top to bottom just nozzle clamping component (2) and tube head clamping component (3) to setting up are used for the drive rotatory drive assembly (4) that nozzle clamping component (2) rotation adopted are used for the installation last mount pad (5) that rotatory drive assembly (4) adopted are used for the drive go up mount pad (5) and rise or descend lifting unit (6) that adopt, the bottom and the equal fixed mounting of tube head clamping component (3) of lifting unit (6) are in down on mount pad (1).
2. The tool for disassembling the nozzle according to claim 1, wherein: the tube head clamping assembly (3) comprises a left tube head clamping block (31) and a right tube head clamping block (32) which are arranged oppositely, a tube head clamping block driving cylinder (33) used for driving the right tube head clamping block (32) to be close to or far away from the left tube head clamping block (31), the bottom end of the left tube head clamping block (31) is fixedly connected to the lower mounting seat (1), the tube head clamping block driving cylinder (33) is fixed in the left tube head clamping block (31), the piston rod head of the tube head clamping block driving cylinder (33) horizontally extends rightwards to the left side of the tube head clamping block (31) and then is in driving connection with the right side of the tube head clamping block (32), and the right opposite surfaces of the left tube head clamping block (31) and the right tube head clamping block (32) are respectively provided with a tube head clamping arc-shaped groove (34) for accommodating the rubber tube head.
3. The tool for disassembling the nozzle according to claim 1, wherein: the nozzle clamping component (2) comprises a left nozzle clamping block (21) and a right nozzle clamping block (22) which are oppositely arranged, a nozzle clamping block driving cylinder (23) used for driving the right nozzle clamping block (22) to approach or depart from the left nozzle clamping block (21), a fixing seat (24) used for installing the left nozzle clamping block (21), the nozzle clamping block driving cylinder (23) is arranged in the left nozzle clamping block (21), the piston rod head of the nozzle clamping block driving cylinder (23) horizontally penetrates through the left nozzle clamping block (21) rightwards and is connected with the right nozzle clamping block (22) in a driving way, and nozzle clamping arc-shaped grooves (25) used for accommodating nozzles are formed in the right opposite surfaces of the left nozzle clamping block (21) and the right nozzle clamping block (22).
4. The tool for disassembling the nozzle according to claim 3, wherein: the rotary driving component (4) is a rotary driving motor (41) arranged in the upper mounting seat (5), and an output shaft of the rotary driving motor (41) vertically penetrates out of the upper mounting seat (5) downwards and is in driving connection with the fixed seat (24).
5. The tool for disassembling the nozzle according to claim 1, wherein: the upper mounting seat (5) is a rectangular mounting seat; the lifting assembly (6) is fixed on four lifting cylinders (61) on the lower mounting seat (1), a piston rod head of each lifting cylinder (61) vertically extends upwards to drive and is connected with the rectangular mounting seat, and the four lifting cylinders (61) are respectively close to the four corners of the rectangular mounting seat.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122877190.3U CN216227875U (en) | 2021-11-23 | 2021-11-23 | Tear nozzle frock open |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202122877190.3U CN216227875U (en) | 2021-11-23 | 2021-11-23 | Tear nozzle frock open |
Publications (1)
Publication Number | Publication Date |
---|---|
CN216227875U true CN216227875U (en) | 2022-04-08 |
Family
ID=80953828
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202122877190.3U Active CN216227875U (en) | 2021-11-23 | 2021-11-23 | Tear nozzle frock open |
Country Status (1)
Country | Link |
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CN (1) | CN216227875U (en) |
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2021
- 2021-11-23 CN CN202122877190.3U patent/CN216227875U/en active Active
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