CN218761948U - Pipeline structure for spraying - Google Patents

Pipeline structure for spraying Download PDF

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Publication number
CN218761948U
CN218761948U CN202223090490.8U CN202223090490U CN218761948U CN 218761948 U CN218761948 U CN 218761948U CN 202223090490 U CN202223090490 U CN 202223090490U CN 218761948 U CN218761948 U CN 218761948U
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China
Prior art keywords
plug
sleeve
driving
pipe body
pipe
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CN202223090490.8U
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Chinese (zh)
Inventor
蔡吉钊
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Fengqi Shandong Intelligent Equipment Co ltd
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Fengqi Shandong Intelligent Equipment Co ltd
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Priority to CN202223090490.8U priority Critical patent/CN218761948U/en
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Abstract

The application discloses pipeline structure for spraying relates to pipeline technical field. This application includes the body, the one end intercommunication of body has the plug bush, the other end structure of body has the spacing ring, the one end of spacing ring is constructed to be used for inserting and establishes the grafting pipe in the plug bush, the internal link that is constructed of body, wind on the link the circular array slidable mounting in plug bush axis direction has a plurality of slide bars, the one end of slide bar is located in the plug bush and be constructed and have the grafting piece. This application makes a plurality of plug blocks insert simultaneously through a plurality of slide bar cooperation adjusting part and establishes in the inserting groove to realize quick installation, thereby when carrying out the overall arrangement installation to atomizer's pipeline, need not carry too much pipe connection spare, improved pipe connection's efficiency, more convenience when pipe connection of staff, consequently more have the practicality.

Description

Pipeline structure for spraying
Technical Field
The application relates to the technical field of pipelines, in particular to a pipeline structure for spraying.
Background
At present, in water supply atomization operation, if water supply atomization is carried out in an indoor environment, mainly in a textile workshop, a metal processing workshop and the like, due to the fact that floating objects exist in air, the space of the indoor environment needs to be subjected to humidification treatment through water source atomization, and pipelines used indoors are usually hard pipes. Carry out the overall arrangement when installing atomizing shower nozzle pipeline if weaving workshop, be connected generally through pipe connection spare between pipeline and the pipeline, when the pipeline butt joint, need realize the pipe connection with the help of spanner cooperation pipe connection spare, need consume longer time during the installation, and the atomizing shower nozzle in weaving workshop generally installs at the workshop top, belong to high altitude construction, this not only needs to carry pipeline and atomizing shower nozzle when the pipe connection that just leads to the staff, still need carry more pipe connection spare and connect required instrument, carry the more inconvenient staff high altitude butt joint pipeline of article, for this application provide a pipeline structure for the spraying and solve current not enough.
SUMMERY OF THE UTILITY MODEL
The purpose of this application lies in: in order to solve the problems set forth in the background above, the present application provides a piping structure for spraying.
The following technical scheme is specifically adopted in order to achieve the purpose:
the utility model provides a pipeline structure for spraying, includes the body, the one end intercommunication of body has the plug bush, the other end structure of body has the spacing ring, the one end of spacing ring is constructed and is used for inserting the grafting pipe of establishing in the plug bush, the body is constructed has the link, wind on the link plug bush axis direction circular array slidable mounting has a plurality of slide bars, the one end of slide bar is located the plug bush just is constructed and is had the grafting piece, the intraductal week side circular array of grafting has seted up a plurality of confessions the grafting groove that the grafting piece was inserted and is established, the body externally mounted have act on a plurality ofly the adjusting part of slide bar, through adjusting part so that a plurality of the slide bar is close to or keeps away from in step the body axis, has formed a plurality ofly the grafting piece is inserted simultaneously and is located a plurality ofly in the grafting groove.
Furthermore, a penetrating groove is formed in the outer peripheral side of the pipe body, the adjusting assembly comprises a driving sleeve which is horizontally sleeved on the pipe body in a sliding mode, the driving sleeve covers the penetrating grooves, an adjusting piece which drives the driving sleeve to move is installed on the outer side of the pipe body, a driving piece which acts on the sliding rods is installed on the driving sleeve, and when the driving sleeve moves, the driving piece enables the sliding rods to be close to or far away from the axis of the pipe body synchronously.
Further, the driving piece is in including the structure the inboard connecting rod of actuating sleeve, the one end of connecting rod is passed the wearing groove is located the body, the free end of connecting rod install with the coaxial drive ring of body, the slide bar is kept away from the one end of grafting piece is constructed with the guide inclined plane, it is a plurality of to install on the link the slide bar provides and keeps away from the elastic component of body axis direction elasticity, in order to form a plurality of guide inclined plane with drive ring internal side forms the conflict.
Furthermore, the elastic component comprises a sleeve arranged on the connecting frame in a circular array manner, one end of the sleeve faces the sliding rod and is inserted with the butt joint rod in a sliding manner, the free end of the butt joint rod is connected with the sliding rod, and a U-shaped collision elastic sheet is arranged between the butt joint rod and the inner wall of the sleeve.
Further, the periphery of the pipe body is partially threaded along the length direction of the pipe body, the adjusting piece comprises a threaded cylinder sleeved on the pipe body in a threaded manner, one end of the driving sleeve is rotatably sleeved on the threaded cylinder, and a knob is mounted on the periphery of the threaded cylinder.
Furthermore, a guide inclined plane is formed on the insertion block, and one side of the insertion groove is attached to the guide inclined plane.
Furthermore, a plurality of guide grooves are formed in the circular array on the inner peripheral side of the plug-in sleeve, and a guide convex plate used for being inserted into the guide grooves is formed in the circular array on the outer peripheral side of the plug-in pipe.
Furthermore, the plug-in type elevator car further comprises a sealing sleeve, wherein the sealing sleeve is sleeved on the plug-in pipe and the guide convex plate, and the sealing sleeve is made of rubber.
The beneficial effect of this application is as follows:
this application makes a plurality of plug blocks insert simultaneously through a plurality of slide bar cooperation adjusting part and establishes in the inserting groove to realize quick installation, thereby when carrying out the overall arrangement installation to atomizer's pipeline, need not carry too much pipe connection spare, improved pipe connection's efficiency, more convenience when pipe connection of staff, consequently more have the practicality.
Drawings
FIG. 1 is a schematic perspective view of the present application;
FIG. 2 is another schematic view of FIG. 1 of the present application;
FIG. 3 is a schematic view of the present application after the pipes have been connected;
FIG. 4 is a partial perspective cross-sectional view of FIG. 1 of the present application;
FIG. 5 is a partial perspective cross-sectional view of FIG. 3 of the present application;
FIG. 6 is an enlarged view of the structure at A in FIG. 4 of the present application;
FIG. 7 is an enlarged view of the structure of FIG. 5;
reference numerals are as follows: 1. a tube body; 2. a plug bush; 3. a limiting ring; 4. inserting a pipe; 5. a connecting frame; 6. a slide bar; 7. an insertion block; 8. inserting grooves; 9. an adjustment assembly; 901. penetrating a groove; 902. a driving sleeve; 10. a drive member; 1001. a connecting rod; 1002. a drive ring; 1003. a guide ramp; 11. an elastic member; 1101. a sleeve; 1102. a docking rod; 1103. abutting against the elastic sheet; 12. an adjustment member; 1201. a threaded barrel; 13. a guide slope; 14. a guide groove; 15. a guide projection plate; 16. and (5) sealing the sleeve.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application.
As shown in fig. 1-7, a pipeline structure for spraying comprises a pipe body 1, one end of the pipe body 1 is communicated with an insertion sleeve 2, the other end of the pipe body 1 is provided with a limiting ring 3, one end of the limiting ring 3 is provided with an insertion pipe 4 inserted in the insertion sleeve 2, a connecting frame 5 is arranged in the pipe body 1, a plurality of sliding rods 6 are slidably arranged on the connecting frame 5 in a circular array around the axis direction of the insertion sleeve 2, one end of each sliding rod 6 is arranged in the insertion sleeve 2 and provided with an insertion block 7, a plurality of insertion grooves 8 for the insertion blocks 7 to be inserted are arranged in the circular array on the inner peripheral side of the insertion pipe 4, an adjusting component 9 acting on the plurality of sliding rods 6 is arranged outside the pipe body 1, the plurality of sliding rods 6 are synchronously close to or far away from the axis of the pipe body 1 through the adjusting component 9, the plurality of insertion blocks 7 are formed and simultaneously inserted in the plurality of insertion grooves 8, when the pipe body a is connected with the pipe body 1, firstly, the inserting pipe 4 of the A pipe body 1 is inserted into the inserting sleeve 2 on another B pipe body 1, at the moment, the inserting block 7 of the B pipe body 1 is not contacted with the inserting groove 8 of the A pipe body 1, so the inserting pipe 4 of the A pipe body 1 is not influenced to be inserted into the inserting sleeve 2 of the B pipe body 1, the inserting is completed when the limiting ring 3 of the A pipe body 1 is attached to one end of the inserting sleeve 2 of the B pipe body 1, at the moment, the sliding rods 6 are mutually far away through the adjusting component 9 of the B pipe body 1, so the inserting block 7 of the sliding rod 6 indirectly moves towards the inserting groove 8 of the A pipe body 1 until the inserting block 7 of the B pipe body 1 is inserted into the inserting groove 8 of the A pipe body 1, thereby realizing the quick installation, when the pipeline of the atomizing nozzle is arranged and installed in a textile workshop, excessive pipeline connecting pieces do not need to be carried, and the pipeline connecting efficiency is improved, the staff is more convenient when the pipe connection, consequently more has the practicality.
As shown in fig. 1, 6 and 7, in some embodiments, a penetrating groove 901 is formed on the outer periphery of the pipe body 1, the adjusting assembly 9 includes a driving sleeve 902 horizontally slidably sleeved on the pipe body 1, the driving sleeve 902 blocks the plurality of penetrating grooves 901, that is, the driving sleeve 902 can prevent water in the pipe body 1 from flowing out from the penetrating grooves 901 during the moving process, preferably, an annular groove can be formed on the inner periphery of the driving sleeve 902, a sealing ring is installed in the annular groove, so as to further improve the sealing effect, an adjusting member 12 for driving the driving sleeve 902 to move is installed on the outer side of the pipe body 1, a driving member 10 acting on the plurality of sliding rods 6 is installed on the driving sleeve 902, when the driving sleeve 902 moves, the plurality of sliding rods 6 are synchronously close to or far from the axis of the pipe body 1 through the driving member 10, that when the driving sleeve 902 moves through the adjusting member 12, the sliding rods 6 are synchronously close to or far from the axis of the pipe body 1 through the driving member 10 being re-fitted, so as to achieve that the plurality of insertion blocks 7 are simultaneously inserted in the corresponding insertion grooves 8.
As shown in fig. 1, 6 and 7, in some embodiments, the driving member 10 includes a connecting rod 1001 configured inside the driving sleeve 902, one end of the connecting rod 1001 passes through the through slot 901 and is located inside the pipe body 1, a driving ring 1002 coaxial with the pipe body 1 is installed at a free end of the connecting rod 1001, one end of the sliding rod 6 away from the insertion block 7 is configured with a guiding inclined surface 1003, an elastic component 11 providing elastic force in a direction away from the axis of the pipe body 1 to the plurality of sliding rods 6 is installed on the connecting frame 5, so as to form a plurality of guiding inclined surfaces 1003 to abut against the inner peripheral side of the driving ring 1002, when the driving sleeve 902 is moved by the adjusting component 12, the driving rod 1001 is moved during the movement of the driving sleeve 902, thereby indirectly driving the driving ring 1002 to move, as shown in fig. 7, when the driving ring 1002 moves toward the sliding rod 6 of the a pipe body 1, at this time, the driving ring 1002 contacts with the guiding inclined surface, thereby forcing the plurality of sliding rods 6 to approach toward the axis of the pipe body 1, thereby separating the insertion block 7 from the insertion groove 8, and when the driving ring 1002 does not contact with the guiding inclined surface 1003, at this time, the pipe body 1003 makes the insertion block 7 move toward the insertion groove 8.
As shown in fig. 1, 6 and 7, in some embodiments, the elastic assembly 11 includes a sleeve 1101 installed on the connecting frame 5 in a circular array, one end of the sleeve 1101 faces the sliding rod 6 and is slidably inserted with the docking rod 1102, a free end of the docking rod 1102 is connected with the sliding rod 6, a U-shaped abutting elastic sheet 1103 is installed between the docking rod 1102 and an inner wall of the sleeve 1101, specifically, two sides of the U-shaped abutting elastic sheet 1103, which are away from each other and parallel, are installation surfaces, one of the installation surfaces is connected with one end of the docking rod 1102 located inside the sleeve 1101, the other installation surface is connected with a bottom end inside the sleeve 1101, when the plurality of sliding rods 6 approach each other, the U-shaped abutting elastic sheet 1103 indirectly drives the docking rod 1102 to move, the docking rod 1102 moves to press the abutting elastic sheet 1103, when the driving ring 1002 does not contact with the guiding inclined surfaces 1003 of the plurality of sliding rods 6, the abutting elastic sheet 1103 is reset due to elastic deformation thereof, so that the plurality of sliding rods 6 move away from each other, and the plurality of inserting blocks 7 abut against the corresponding inserting grooves 8.
As shown in fig. 1, 6 and 7, in some embodiments, a thread is partially formed on the outer peripheral side of the pipe body 1 along the length direction thereof, the adjusting member 12 includes a thread cylinder 1201 sleeved on the pipe body 1 by a thread, one end of the driving sleeve 902 is rotatably sleeved on the thread cylinder 1201, a knob is installed on the outer peripheral side of the thread cylinder 1201, when the driving sleeve 902 is required to move, the knob is firstly screwed, the knob indirectly drives the thread cylinder 1201 to rotate when rotating, because the thread cylinder 1201 is rotatably matched with the driving sleeve 902, the rotating force of the thread cylinder 1201 cannot be transmitted to the driving sleeve 902, so that the driving sleeve 902 horizontally moves along the axis direction of the pipe body 1, because the thread matching has self-locking property, so that the driving sleeve 902 is not easy to rotate by itself due to external collision.
As shown in fig. 1, 6 and 7, in some embodiments, the insertion block 7 is configured with a guiding inclined surface 13, one side of the insertion groove 8 is attached to the guiding inclined surface 13, as shown in fig. 7, the guiding inclined surface 1003 is designed such that the insertion block 7 can be inserted into the insertion groove 8 when the insertion tube 4 is not completely inserted into the insertion sleeve 2, and when the insertion block 7 is completely inserted into the insertion groove 8, the insertion tube 4 is driven to move towards the insertion sleeve 2, thereby completing installation of the pipeline, and playing a role of guiding installation.
As shown in fig. 1, 6 and 7, in some embodiments, the plurality of guide grooves 14 are formed in the circular array on the inner periphery of the insertion sleeve 2, the guide protruding plates 15 for inserting into the guide grooves 14 are formed in the circular array on the outer periphery of the insertion tube 4, and the guide grooves 14 and the guide protruding plates 15 are designed to perform guiding and limiting functions, so that after the insertion tube 4 is inserted into the insertion sleeve 2, the plurality of insertion grooves 8 face the corresponding insertion blocks 7, and it is ensured that the subsequent insertion blocks 7 can be inserted into the insertion grooves 8.
As shown in fig. 1, fig. 6 and fig. 7, in some embodiments, the sealing device further includes a sealing sleeve 16, the sealing sleeve 16 is sleeved on the insertion tube 4 and the guide protruding plate 15, the sealing sleeve 16 is made of rubber, and the sealing sleeve 16 is designed to prevent water from flowing out from a mounting gap between the insertion tube 4 and the insertion sleeve 2 after the tube body 1 is connected to the tube body 1, thereby further improving the sealing effect.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (8)

1. The utility model provides a pipeline structure for spraying, its characterized in that includes body (1), the one end intercommunication of body (1) has plug bush (2), the other end of body (1) constructs spacing ring (3), the one end of spacing ring (3) is constructed and is used for inserting plug pipe (4) of establishing in plug bush (2), the body (1) is constructed and is equipped with link (5), on link (5) around plug bush (2) axis direction circular array slidable mounting has a plurality of slide bars (6), the one end of slide bar (6) is located plug bush (2) and is constructed and be equipped with plug block (7), the round array of side of circumference in the interior periphery of plug pipe (4) is seted up a plurality of confession plug groove (8) that plug block (7) were inserted and establish, body (1) externally mounted has an adjusting part (9) that acts on a plurality of slide bars (6), through adjusting part (9) so that a plurality of slide bars (6) are close to or keep away from in step body (1), a plurality of plug blocks (7) have formed simultaneously plug groove (8).
2. The pipeline structure for spraying according to claim 1, characterized in that a through groove (901) is formed in the outer periphery of the pipe body (1), the adjusting assembly (9) comprises a driving sleeve (902) horizontally slidably sleeved on the pipe body (1), the driving sleeve (902) covers the through grooves (901), an adjusting piece (12) for driving the driving sleeve (902) to move is installed on the outer side of the pipe body (1), a driving piece (10) acting on the sliding rods (6) is installed on the driving sleeve (902), and when the driving sleeve (902) moves, the sliding rods (6) are synchronously close to or far away from the axis of the pipe body (1) through the driving piece (10).
3. The pipeline structure for spraying according to claim 2, wherein the driving member (10) comprises a connecting rod (1001) configured inside the driving sleeve (902), one end of the connecting rod (1001) passes through the through slot (901) and is located inside the pipe body (1), a driving ring (1002) coaxial with the pipe body (1) is installed at a free end of the connecting rod (1001), a guiding inclined surface (1003) is configured at an end of the sliding rod (6) far away from the insertion block (7), and an elastic assembly (11) providing elastic force to the plurality of sliding rods (6) in the direction far away from the axis of the pipe body (1) is installed on the connecting frame (5) so as to form a plurality of guiding inclined surfaces (1003) to abut against the inner peripheral side of the driving ring (1002).
4. A pipeline structure for spraying according to claim 3, wherein the elastic component (11) comprises a circular array of sleeves (1101) installed on the connecting frame (5), one end of the sleeve (1101) faces the sliding rod (6) and is slidably inserted with a butt-joint rod (1102), the free end of the butt-joint rod (1102) is connected with the sliding rod (6), and a U-shaped abutting shrapnel (1103) is installed between the butt-joint rod (1102) and the inner wall of the sleeve (1101).
5. The pipeline structure for spraying according to claim 2, characterized in that the outer circumference of the pipe body (1) is threaded along the length direction thereof, the adjusting member (12) comprises a threaded cylinder (1201) which is threaded on the pipe body (1), one end of the driving sleeve (902) is rotatably sleeved on the threaded cylinder (1201), and a knob is mounted on the outer circumference of the threaded cylinder (1201).
6. A spray pipe structure according to claim 1, characterized in that the plug-in block (7) is provided with a guide slope (13), and one side of the plug-in groove (8) is in contact with the guide slope (13).
7. A pipe structure for spraying according to claim 1, characterized in that the plug bush (2) is provided with a plurality of guide grooves (14) in a circular array on the inner circumference side, and the plug tube (4) is provided with guide convex plates (15) in a circular array on the outer circumference side for insertion into the guide grooves (14).
8. The pipeline structure for spraying according to claim 7, further comprising a sealing sleeve (16), wherein the sealing sleeve (16) is sleeved on the insertion pipe (4) and the guide convex plate (15), and the sealing sleeve (16) is made of rubber.
CN202223090490.8U 2022-11-17 2022-11-17 Pipeline structure for spraying Active CN218761948U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223090490.8U CN218761948U (en) 2022-11-17 2022-11-17 Pipeline structure for spraying

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223090490.8U CN218761948U (en) 2022-11-17 2022-11-17 Pipeline structure for spraying

Publications (1)

Publication Number Publication Date
CN218761948U true CN218761948U (en) 2023-03-28

Family

ID=85650583

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202223090490.8U Active CN218761948U (en) 2022-11-17 2022-11-17 Pipeline structure for spraying

Country Status (1)

Country Link
CN (1) CN218761948U (en)

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