CN217922488U - Automatic accuse gas network nozzle device - Google Patents

Automatic accuse gas network nozzle device Download PDF

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Publication number
CN217922488U
CN217922488U CN202221997348.9U CN202221997348U CN217922488U CN 217922488 U CN217922488 U CN 217922488U CN 202221997348 U CN202221997348 U CN 202221997348U CN 217922488 U CN217922488 U CN 217922488U
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network nozzle
mounting panel
nozzle body
sides
wheel
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CN202221997348.9U
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Chinese (zh)
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吴文坦
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Suzhou Hongju Fiber Technology Co ltd
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Suzhou Hongju Fiber Technology Co ltd
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Abstract

The utility model discloses an automatic accuse gas network nozzle device, including mounting panel, network nozzle body, connecting plate, coupling assembling, fixed subassembly, gas-supply pipe, solenoid valve, control assembly, the network nozzle body is installed through the connecting plate to mounting panel bottom intermediate position, network nozzle body both sides all are provided with control assembly, network nozzle body top intake pipe runs through the mounting panel and installs the solenoid valve through the flange, there is the gas-supply pipe at the solenoid valve top through the flange mounting, connecting plate top both sides all are provided with coupling assembling. The utility model discloses a set up gas-supply pipe, solenoid valve, network nozzle body and control assembly and not only realized the automatic control work that the network nozzle admitted air in the use, also reduced the consumption of the energy, improve the feature of environmental protection that the device used, and improved the convenience of user to the dismantlement of network nozzle body through setting up connecting plate, coupling assembling and fixed subassembly.

Description

Automatic accuse gas network nozzle device
Technical Field
The utility model relates to a relevant technical field of network nozzle specifically is an automatic accuse gas network nozzle device.
Background
The chemical fiber is a chemical fiber, which is made of natural or artificial high molecular substance, and the interlaced yarn is used as the product of chemical fiber, because it can reduce the aurora effect and wax feeling of common synthetic fiber filament, it is widely produced and used, and during the production process, it mainly uses interlaced nozzle to entangle the monofilament with each other through the action of jet air flow to form periodic interlaced point to form filament.
The prior art has the following defects: the air inlet pipe and the air delivery pipe of the network nozzle device adopted at the present stage are mostly directly connected through a flange or the air inlet pipe and the air delivery pipe are controlled by installing a manual control valve, and because the number of network nozzles on one set of spinning equipment is large, the structure can not close the air delivery pipe quickly and timely under the condition that a spinning thread is broken or the thread is stopped at a single position or a plurality of positions, thereby causing the waste of energy.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an automatic accuse gas network nozzle device to solve the problem that proposes among the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an automatic accuse gas network nozzle device, includes mounting panel, network nozzle body, connecting plate, coupling assembling, fixed subassembly, gas-supply pipe, solenoid valve, control assembly, network nozzle body is installed through the connecting plate to mounting panel bottom intermediate position, network nozzle body both sides all are provided with control assembly, network nozzle body top intake pipe runs through the mounting panel and installs the solenoid valve through the flange, the gas-supply pipe is installed through the flange in the solenoid valve top, connecting plate top both sides all are provided with coupling assembling, and the inside both sides of mounting panel all are provided with fixed subassembly.
As a further preferred option in the technical scheme, guide wheels are arranged on both sides of the network nozzle body, the two guide wheels are fixedly connected with the bottom of the mounting plate through a first connecting frame, and the outer walls of the tops of the guide wheel bodies are flush with the central line positions of the wire inlet of the network nozzle body and the wire outlet of the network nozzle body.
As a further preferred of this technical scheme, it is two sets of control assembly sets up about the vertical central line symmetry of network nozzle body, and is two sets of control assembly comprises spacing round, wire wheel, fixed plate, kelly, draw-in groove, control switch, guide arm, limiting plate and reset spring the mounting panel both sides are provided with spacing round respectively spacing round both sides are provided with the wire wheel respectively, spacing round top is provided with the fixed plate, fixed plate one side top fixedly connected with kelly the draw-in groove has been seted up respectively to mounting panel bottom both sides, draw-in groove inner wall fixed connection control switch, control switch passes through wire and solenoid valve electric connection mounting panel both sides sliding connection respectively have the guide arm, the guide arm bottom run through the mounting panel and with fixed plate top fixed connection, the guide arm top runs through mounting panel and fixedly connected with limiting plate, and be in fixedly connected with reset spring between mounting panel top and the limiting plate bottom, the reset spring cover is established at the guide arm outer wall.
As a further preferable mode of this technical solution, the limiting wheel is fixedly connected to the bottom of the fixing plate through a second connecting frame, the wire guide wheel is fixedly connected to the bottom of the mounting plate through a third connecting frame, and the height of the second connecting frame is 1/3 of the height of the third connecting frame.
As a further optimization of the technical scheme, the diameter of the section of the clamping rod is the same as that of the section of the inner wall of the clamping groove, the section of the top of the clamping rod is of a semicircular structure, and the section of the bottom of the clamping groove is of a horn-shaped structure.
As a further preferred of this technical scheme, coupling assembling comprises connecting block, spread groove connecting block fixedly connected with connecting block respectively in connecting plate top both sides, the through-hole has been seted up to the connecting block intermediate position the spread groove has been seted up respectively to mounting panel bottom both sides, the card hole has been seted up to spread groove one side intermediate position, just connecting plate and spread groove inner wall block.
As a further preferred of this technical scheme, fixed subassembly comprises smooth chamber, check lock lever, compression spring and control block the smooth chamber has been seted up respectively to mounting panel both sides inside, the inside sliding connection in smooth chamber has the check lock lever, check lock lever one end run through the through-hole and with spread groove one side card hole inner wall block, fixedly connected with compression spring between the check lock lever other end and smooth chamber one side inner wall, just check lock lever one side outer wall passes through connecting rod fixedly connected with control block, the control block set up at mounting panel one side outer wall and with mounting panel outer wall sliding connection.
The utility model provides an automatic accuse gas network nozzle device possesses following beneficial effect:
(1) The utility model discloses a set up the gas-supply pipe, the solenoid valve, network nozzle body and control assembly, during the use, the user is carrying out the inlet wire through network nozzle one side control assembly and leading wheel with the spinning, later can make spacing round drive the guide arm and keep a take the altitude after moving down under the spinning tension effect at the leading wheel of network nozzle opposite side and the in-process that control assembly goes out the line, reset spring is compressed this moment, also make kelly and draw-in groove separation, the device can normally process the spinning this moment, and in-process that the device used because the spinning breaks or stops under the circumstances of line appears, spacing round loses pressure, the guide arm can shift up and drive the kelly of fixed plate top one side under reset spring's effect this moment and get into inside and the press control switch of draw-in groove, control switch produces the signal of telecommunication through the wire and makes the solenoid valve close, and then make the gas-supply pipe can carry out quick closing in time, the automatic control work that the network nozzle admitted air in the use has not only been realized, also reduce the consumption of the energy, the feature of environmental protection that the improvement device used.
(2) The utility model discloses a set up the connecting plate, coupling assembling and fixed subassembly, during the use, when the long-time use of network nozzle body needs overhaul, can dismantle through the intake pipe with network nozzle body top and the flange between the solenoid valve, only need make the check lock lever keep away from card hole and through-hole and extract the network nozzle body downwards again through the traveling control piece after that and can accomplish the dismantlement work to the network nozzle body, and then improved the convenience of user to the dismantlement of network nozzle body.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention;
fig. 2 is a schematic view of the internal structure of the mounting plate of the present invention;
fig. 3 is a schematic view of the connection structure of the locking lever and the control block of the present invention;
fig. 4 is an enlarged schematic structural diagram of a in fig. 2 according to the present invention.
In the figure: 1. mounting a plate; 2. a network nozzle body; 3. a connecting plate; 4. a connecting assembly; 5. a fixing assembly; 6. a gas delivery pipe; 7. an electromagnetic valve; 8. a control component; 9. a guide wheel; 10. a limiting wheel; 11. a wire guide wheel; 12. a fixing plate; 13. a clamping rod; 14. a card slot; 15. a control switch; 16. a guide bar; 17. a limiting plate; 18. a return spring; 19. connecting blocks; 20. connecting grooves; 21. a clamping hole; 22. a through hole; 23. a slide chamber; 24. a locking lever; 25. a compression spring; 26. a control block; 27. a connecting rod.
Detailed Description
The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.
As shown in fig. 1-4, the utility model provides a technical scheme: the utility model provides an automatic accuse gas network nozzle device, includes mounting panel 1, network nozzle body 2, connecting plate 3, coupling assembling 4, fixed subassembly 5, gas-supply pipe 6, solenoid valve 7, control assembly 8, 1 bottom intermediate position of mounting panel installs network nozzle body 2 through connecting plate 3, 2 both sides of network nozzle body all are provided with control assembly 8, 2 top intake pipes of network nozzle body run through mounting panel 1 and install solenoid valve 7 through the flange, gas-supply pipe 6 is installed through the flange at 7 tops of solenoid valve, 3 top both sides of connecting plate all are provided with coupling assembling 4, and are in 1 inside both sides of mounting panel all are provided with fixed subassembly 5.
In this embodiment, specifically: 2 both sides of network nozzle body all are provided with leading wheel 9, and are two sets of leading wheel 9 is through 1 bottom fixed connection of first link and mounting panel, just rotate between leading wheel 9 and the link and be connected, and two sets of 9 wheel body top outer walls of leading wheel are parallel and level mutually with 2 inlet wire mouths of network nozzle body and 2 outlet wire mouth positions of network nozzle body, through the leading wheel 9 that sets up, can keep the parallel and level when having guaranteed 2 inlet wires of network nozzle body with when being qualified for the next round of competitions, and then the effectual fracture of having avoided spinning and inlet wire mouth or outlet to rub and lead to.
In this embodiment, specifically: two sets of control assembly 8 sets up about the vertical central line symmetry of network nozzle body 2, and two sets of control assembly 8 comprises spacing round 10, wire wheel 11, fixed plate 12, kelly 13, draw-in groove 14, control switch 15, guide arm 16, limiting plate 17 and reset spring 18 mounting panel 1 both sides are provided with spacing round 10 respectively spacing round 10 both sides are provided with wire wheel 11 respectively spacing round 10 both sides, spacing round 10 top is provided with fixed plate 12, fixed plate 12 one side top fixedly connected with kelly 13 draw-in groove 14 has been seted up respectively to mounting panel 1 bottom both sides, draw-in groove 14 inner wall fixed connection control switch 15, control switch 15 passes through wire and 7 electric connection of solenoid valve 1 both sides sliding connection respectively has guide arm 16 mounting panel 1 both sides, guide arm 16 bottom run through mounting panel 1 and with fixed plate 12 top fixed connection, mounting panel 1 and fixedly connected with limiting plate 17 are run through at the guide arm 16 top, and fixedly connected with reset spring 18 between mounting panel 1 top and the limiting plate bottom, reset spring 18 cover is established at the outer wall of guide arm 16, and can spin the device in-process fracture or the state of stopping the line through the control assembly 8 that sets up and carry out the energy consumption that the quick that has also been realized reducing the automatic use to 6 in the working process of the air inlet pipe.
In this embodiment, specifically: spacing wheel 10 passes through second link and fixed plate 12 bottom fixed connection, rotate between spacing wheel 10 and the second link and be connected, wire wheel 11 passes through third link and 1 bottom fixed connection of mounting panel, rotate between wire wheel 11 and the third link and be connected, just the height of second link is 1/3 of third link, through being 1/3 of third link with the height of second link, and then can guarantee that spacing wheel 10 keeps the state of tensioning, and then guarantee the normal use of device.
In this embodiment, specifically: the cross-sectional diameter of kelly 13 is the same with the cross-sectional diameter of draw-in groove 14 inner wall, just the cross-section at kelly 13 top is semi-circular structure, the cross-section of draw-in groove 14 bottom is loudspeaker column structure, has made things convenient for kelly 13 to get into draw-in groove 14 through setting up kelly 13 top into semi-circular structure, and has set up into loudspeaker column structure through the cross-section with draw-in groove 14 bottom, has further made things convenient for kelly 13 to get into draw-in groove 14.
In this embodiment, specifically: coupling assembling 4 comprises connecting block 19, spread groove 20 3 top both sides difference fixedly connected with connecting block 19, through-hole 22 has been seted up to connecting block 19 intermediate position spread groove 20 has been seted up respectively to 1 bottom both sides of mounting panel, spread groove 20 one side intermediate position has been seted up calorie hole 21, just connecting plate 3 and the 20 inner wall blocks of spread groove, coupling assembling 4 through the setting has made things convenient for the installation and the dismantlement work of connecting plate 3 and mounting panel 1.
In this embodiment, specifically: fixed subassembly 5 comprises smooth chamber 23, check lock lever 24, compression spring 25 and control block 26 smooth chamber 23 has been seted up respectively to 1 both sides inside of mounting panel, the inside sliding connection in smooth chamber 23 has check lock lever 24, check lock lever 24 one end run through-hole 22 and with the 21 inner wall blocks in connecting groove 20 one side card hole, fixedly connected with compression spring 25 between the check lock lever 24 other end and the smooth chamber 23 one side inner wall, just 24 one side outer wall of check lock lever passes through connecting rod 27 fixedly connected with control block 26, control block 26 set up at mounting panel 1 one side outer wall and with mounting panel 1 outer wall sliding connection, guaranteed the stability in the use of network nozzle body 2 through the fixed subassembly 5 that sets up.
The working principle is that when in use, a user can respectively pass the spinning thread through the thread guide wheel 11, the limiting wheel 10, the thread guide wheel 11 and the guide wheel 9 in the control component 8 at one side of the thread inlet of the network nozzle body 2 to enter the thread inlet of the network nozzle body 2, and then pass through the thread outlet and the guide wheel 9 at one side of the thread outlet and the thread guide wheel 11, the limiting wheel 10 and the thread guide wheel 11 in the control component 8 to wind up, because the tension of the spinning thread during processing through the network nozzle body 2 and the relationship between the height of the second connecting frame and the height of the third connecting frame enable the limiting wheel 10 to move downwards under the action of the spinning thread, at the moment, the guide rod 16 can move downwards under the action of the downward movement of the limiting wheel 10, further the reset spring 18 is compressed, simultaneously the clamping rod 13 is separated from the clamping groove 14, at the moment, the electromagnetic valve 7 is in an open state, further, and the air supply is carried out to the interior of the network nozzle body 2 through the air pipe 6 to realize the processing of the spinning thread, and in the in-process that the device used because under the condition that the spinning line broke or stopped the line, spacing wheel 10 loses pressure, guide arm 16 can move up and drive kelly 13 of fixed plate 12 top one side under reset spring 18's effect this moment and get into draw-in groove 14 inside and press control switch 15, control switch 15 produces the signal of telecommunication through the wire and makes solenoid valve 7 close, and then realize closing to gas-supply pipe 6, thereby realize the automatic control work to network nozzle body 2 uses, further when network nozzle body 2 uses for a long time and needs to overhaul, can dismantle through the flange between the intake pipe at network nozzle body 2 top and solenoid valve 7, only need to make check lock lever 24 keep away from card hole 21 and through-hole 22 through removal control block 26 and pull out network nozzle body 2 downwards again and can accomplish the dismantlement to network nozzle body 2 And (6) working.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides an automatic accuse gas network nozzle device, its characterized in that, includes mounting panel (1), network nozzle body (2), connecting plate (3), coupling assembling (4), fixed subassembly (5), gas-supply pipe (6), solenoid valve (7), control assembly (8), network nozzle body (2) are installed through connecting plate (3) to mounting panel (1) bottom intermediate position, network nozzle body (2) both sides all are provided with control assembly (8), network nozzle body (2) top intake pipe runs through mounting panel (1) and installs solenoid valve (7) through the flange, gas-supply pipe (6) are installed through the flange in solenoid valve (7) top, connecting plate (3) top both sides all are provided with coupling assembling (4), and are in mounting panel (1) inside both sides all are provided with fixed subassembly (5).
2. An automatic gas control network nozzle device according to claim 1, wherein: network nozzle body (2) both sides all are provided with leading wheel (9), and are two sets of leading wheel (9) are through first link and mounting panel (1) bottom fixed connection, and are two sets of leading wheel (9) wheel body top outer wall and network nozzle body (2) inlet and network nozzle body (2) outlet line position central line position looks parallel and level.
3. An automatic gas control network nozzle device according to claim 1, wherein: two sets of control assembly (8) are set up about network nozzle body (2) vertical central line symmetry, and two sets of control assembly (8) comprise spacing wheel (10), wire wheel (11), fixed plate (12), kelly (13), draw-in groove (14), control switch (15), guide arm (16), limiting plate (17) and reset spring (18) mounting panel (1) both sides are provided with spacing wheel (10) respectively spacing wheel (10) both sides are provided with wire wheel (11) respectively, spacing wheel (10) top is provided with fixed plate (12), fixed plate (12) one side top fixedly connected with kelly (13) mounting panel (1) bottom both sides have seted up draw-in groove (14) respectively, draw-in groove (14) inner wall fixed connection control switch (15), control switch (15) are through wire and solenoid valve (7) electric connection, mounting panel (1) both sides respectively sliding connection have guide arm (16), guide arm (16) bottom runs through mounting panel (1) and with fixed plate (12) top fixed connection, guide arm (16) top runs through mounting panel (1) and fixes limiting plate (17), and is connected with reset spring (17) between limiting plate (17) top fixed plate (17), the reset spring (18) is sleeved on the outer wall of the guide rod (16).
4. An automatic gas control network nozzle device according to claim 3, wherein: the limiting wheel (10) is fixedly connected with the bottom of the fixing plate (12) through a second connecting frame.
5. An automatic gas control network nozzle device according to claim 3, wherein: the wire guide wheel (11) is fixedly connected with the bottom of the mounting plate (1) through a third connecting frame.
6. An automatic gas control network nozzle device according to claim 4, wherein: the height of the second connecting frame is 1/3 of that of the third connecting frame.
7. An automatic gas control network nozzle device according to claim 3, wherein: the cross-sectional diameter of kelly (13) is the same with the cross-sectional diameter of draw-in groove (14) inner wall, just the cross-section at kelly (13) top is semicircular structure, the cross-section of draw-in groove (14) bottom is loudspeaker column structure.
8. An automatic gas control network nozzle device according to claim 1, wherein: coupling assembling (4) comprise connecting block (19), spread groove (20) connecting plate (3) top both sides fixedly connected with connecting block (19) respectively, through-hole (22) have been seted up to connecting block (19) intermediate position spread groove (20) have been seted up respectively to mounting panel (1) bottom both sides, card hole (21) have been seted up to spread groove (20) one side intermediate position.
9. An automatic gas control network nozzle device according to claim 8, wherein: the connecting plate (3) is clamped with the inner wall of the connecting groove (20).
10. An automatic gas control network nozzle device according to claim 1, wherein: fixed subassembly (5) comprise smooth chamber (23), check lock lever (24), compression spring (25) and control block (26) installing board (1) both sides are inside to have seted up smooth chamber (23) respectively, the inside sliding connection in smooth chamber (23) has check lock lever (24), check lock lever (24) one end run through-hole (22) and with spread groove (20) one side card hole (21) inner wall block, fixedly connected with compression spring (25) between check lock lever (24) the other end and the smooth chamber (23) one side inner wall, just check lock lever (24) one side outer wall passes through connecting rod (27) fixedly connected with control block (26), control block (26) set up at installing board (1) one side outer wall and with installing board (1) outer wall sliding connection.
CN202221997348.9U 2022-08-01 2022-08-01 Automatic accuse gas network nozzle device Active CN217922488U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221997348.9U CN217922488U (en) 2022-08-01 2022-08-01 Automatic accuse gas network nozzle device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221997348.9U CN217922488U (en) 2022-08-01 2022-08-01 Automatic accuse gas network nozzle device

Publications (1)

Publication Number Publication Date
CN217922488U true CN217922488U (en) 2022-11-29

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Application Number Title Priority Date Filing Date
CN202221997348.9U Active CN217922488U (en) 2022-08-01 2022-08-01 Automatic accuse gas network nozzle device

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CN (1) CN217922488U (en)

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