CN115258843A - Quick winding device for plug - Google Patents

Quick winding device for plug Download PDF

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Publication number
CN115258843A
CN115258843A CN202210944046.3A CN202210944046A CN115258843A CN 115258843 A CN115258843 A CN 115258843A CN 202210944046 A CN202210944046 A CN 202210944046A CN 115258843 A CN115258843 A CN 115258843A
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CN
China
Prior art keywords
clamping
driving
plate
winding
rod
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Pending
Application number
CN202210944046.3A
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Chinese (zh)
Inventor
汪拥军
卢莹
叶志德
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Jianglang Technology Co ltd
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Jianglang Technology Co ltd
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Application filed by Jianglang Technology Co ltd filed Critical Jianglang Technology Co ltd
Priority to CN202210944046.3A priority Critical patent/CN115258843A/en
Publication of CN115258843A publication Critical patent/CN115258843A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H81/00Methods, apparatus, or devices for covering or wrapping cores by winding webs, tapes, or filamentary material, not otherwise provided for

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  • Winding Of Webs (AREA)

Abstract

The invention relates to the field of winding of plug raw material belts, in particular to a quick plug winding device which comprises an operation bottom plate, wherein a plug clamping device is installed at the upper end of the operation bottom plate, the plug clamping device comprises a clamping disc, a clamping bevel gear, a driving bevel gear and a radial sliding rod, a clamping disc fixing frame is arranged at the upper end of the operation bottom plate, a winding unit for winding the raw material belts on plugs and a driving device for driving the winding unit are arranged on the rear side of the clamping disc, and a material ejecting device is arranged on the rear side of the plug clamping device, so that the quick plug winding device can ensure that winding force can be matched with each other, can be adjusted according to the types of the raw material belts, and can also ensure that the number of winding turns is consistent.

Description

Quick winding device for plug
Technical Field
The invention relates to the field of winding of plug raw material belts, in particular to a quick plug winding device.
Background
The plug is one of mechanical fasteners, mainly has a sealing effect, is usually suitable for media such as water, oil, steam and the like, and plugs unnecessary openings in a pipeline.
When twining the end cap with the raw material area, the winding direction often can appear and the screwing up opposite direction of end cap, leads to the raw material area to tear down and twine again, and the raw material area can appear twining inseparably when the secondary winding, or directly abandons this section raw material area. The tightness of the raw material belt in the winding process is not uniform, the winding force used by each worker is different, and the number of winding turns is not uniform, so that the phenomenon of water leakage of the product in the pressure test process is easily caused.
Therefore, it is necessary to provide a plug quick winding device to solve the above technical problems.
Disclosure of Invention
In order to solve the technical problem, the invention provides the quick plug winding device which can ensure the winding force to be consistent, can adjust according to the type of the thread seal tape and can ensure the winding number to be consistent.
The invention provides a quick plug winding device which comprises an operating base plate, wherein a plug clamping device is installed at the upper end of the operating base plate, the plug clamping device comprises a clamping disc, a clamping bevel gear, a driving bevel gear and a radial sliding rod, a clamping disc fixing frame is arranged at the upper end of the operating base plate, the middle of the clamping disc is in a through shape, the middle of the clamping disc is rotatably connected with the clamping bevel gear, the middle of the clamping bevel gear is in a through hole shape, the toothed surface of the clamping bevel gear is meshed with the driving bevel gear, the driving bevel gear is uniformly distributed along the circumferential direction of the clamping bevel gear, the driving bevel gear is rotatably connected with the clamping disc, the toothless section of the driving bevel gear is provided with a regulating hole in a shape of a vortex, the toothless surface of the clamping bevel gear is fixedly connected with a clamping strip in a vortex shape, the clamping strip is slidably connected with the radial sliding rod, the radial sliding rod is slidably connected with the clamping disc along the radial direction of the clamping disc, the radial sliding rod is uniformly distributed along the circumferential direction of the clamping disc, one side of the radial sliding rod, which is close to the central shaft of the clamping disc, a feeding groove is arranged on one side of the clamping disc, and one end of the clamping disc, which is far away from the clamping disc, and one end of the clamping unit is used for winding of the clamping bar, and is connected with a feeding groove.
Preferably, end cap clamping device's rear side is provided with liftout device, the liftout device includes liftout mounting panel, actuating sleeve, liftout screw rod and directional cover, the liftout mounting panel is located the rear side of centre gripping dish is just right the centre gripping dish, the liftout mounting panel with operating floor fixed connection, the actuating sleeve runs through the liftout mounting panel and with the liftout mounting panel rotates to be connected, the actuating sleeve is just right the intermediate position of centre gripping dish, the side fixedly connected with turning handle of actuating sleeve, the intermediate position of actuating sleeve runs through have the liftout screw rod just the liftout screw rod with actuating sleeve threaded connection, set up on the liftout screw rod along the directional dead slot of liftout screw rod, just the dead slot the circumference evenly distributed of liftout screw rod, the directional cover parcel is in the periphery of liftout screw rod and with dead slot sliding block.
Preferably, the winding unit includes winding mounting disc, winding ring, raw material area fixture and presss from both sides tight adjustment mechanism, the winding mounting disc mount is established operation bottom plate's upper end, just the winding mounting disc is just right to the liftout mounting panel, the intermediate position of winding mounting disc is for lining up the form, the centre of winding mounting disc is rotated and is connected with the winding ring, fixedly connected with raw material area fixture and the tight adjustment mechanism that presss from both sides that is used for supporting tight raw material area fixture on the winding ring, raw material area fixture includes rotating sleeve, centre gripping slider, supporting rod and centre gripping spring, the inside fixed mounting of winding ring has the fixed plate, the intermediate position of fixed plate rotates and is connected with the rotating sleeve, rotating sleeve's left side end parcel has the centre gripping slider, the centre gripping slider along left and right directions with rotating sleeve sliding connection, radially set up locking groove and locking groove along it on the left side terminal surface of centre gripping slider and enclose the circumference evenly distributed of centre gripping slider has a plurality ofly, the centre gripping slider with the one end that the locking groove is close to the center pin of centre gripping slider is fixed connection has the centre gripping spring, the centre gripping slider is kept away from the left side of center pin processing into inclined plane, the centre gripping slider is connected with the centre gripping screw rod.
Preferably, the clamping adjusting mechanism comprises a clamping mounting plate, a clamping rod, a clamping sliding plate, a clamping sliding column, an adjusting spring, an adjusting plate and an adjusting stud, wherein the clamping mounting plate is provided with a first sliding groove along the radial direction of the winding mounting disc, the clamping rod is an L-shaped rod, one end of the clamping rod is in contact with the rotating sleeve, the other end of the clamping rod is in incomplete annular shape, the other end of the clamping rod is in sliding connection with the first sliding groove, the clamping rod penetrates through the first sliding groove and is fixedly connected with the clamping sliding plate, one end, far away from the winding mounting disc, of the clamping sliding plate is fixedly connected with the clamping sliding column, the clamping sliding column is in sliding connection with the adjusting plate, the adjusting spring is sleeved on the clamping sliding column, two ends of the adjusting spring are respectively fixed on the clamping sliding plate and the adjusting plate, the adjusting stud is in threaded connection with the adjusting stud, and one end, far away from the winding mounting disc, of the adjusting stud is in rotating connection with the clamping mounting plate.
Preferably, still be provided with latched device on the tight mounting panel of clamp, latched device includes hasp board and hasp spring beam, the hasp board with press from both sides tight mounting panel sliding connection, evenly seted up a plurality of one end inclined planes on the hasp board, one end is the hasp tooth of straight face, the hasp board with press from both sides fixedly connected with hasp spring beam between the tight mounting panel, just press from both sides tight sliding plate with hasp looks lock.
Preferably, drive arrangement includes drive lagging, drive from gear, drive master gear, drive mounting panel and drive ratchet, drive lagging fixed connection be in on the winding ring, the centre of drive lagging is the ring form and wraps up the outside of liftout screw rod, the drive is from the centre of gear for lining up the form, the drive from the gear with the coaxial fixed connection of centre department of drive lagging, the drive has the drive master gear from the edge meshing of gear, the diameter of drive master gear is far away than the diameter of drive from the gear, drive mounting panel fixed mounting be in the upper end of operation bottom plate, the drive master gear with the drive mounting panel rotates and connects, the rear side of drive master gear is provided with drive ratchet, drive ratchet is including drive ratchet dish, plectrum, reset spring and actuating lever, drive ratchet dish rotates with the drive master gear and is connected, the plectrum with tooth on the drive ratchet dish is buckled mutually, the plectrum with the drive master gear rotates and connects, the plectrum with fixed connection has reset spring between the drive master gear, drive master gear fixed connection with the actuating lever.
Preferably, the drive mounting panel around its with the drive master gear has rotated the outside of junction and has seted up the spacing groove, the spacing groove is the ring form, the drive mounting panel centers on the spacing groove evenly seted up with the communicating spacing hole of spacing groove, the first stopper of terminal fixedly connected with in right side spacing groove, sliding connection has the second stopper in the spacing groove, set up the second sliding tray in the second stopper, sliding connection has the gag lever post in the second sliding tray, the gag lever post lock is in one of them spacing hole, the gag lever post with fixedly connected with spacing spring between the bottom surface in spacing hole, the side fixedly connected with of gag lever post dials the board.
Compared with the related art, the quick plug winding device provided by the invention has the following beneficial effects:
1. according to the invention, the distance between the radial sliding rod and the center of the clamping disc is adjusted according to the size of the polygonal screwing end of the plug so as to clamp the plug, and the plug is firstly contacted with the inclined surface of the feeding rod, so that the feeding rod moves towards the direction far away from the central shaft of the bevel gear to be clamped until the screwing part of the plug moves to the position between the radial sliding rods, and the plug can be quickly clamped.
2. According to the invention, the friction force is applied to the raw material belt clamping mechanism by utilizing the clamping and adjusting mechanism, so that the tensioning state of the raw material belt is ensured in the process of continuously winding the plug, and the tensioning force is not changed, thereby ensuring the consistency of the winding effect.
3. According to the invention, the position of the adjusting plate is adjusted by rotating the adjusting stud, the adjusting plate applies pressure to the adjusting spring, the adjusting spring applies pressure to the clamping sliding plate, and the clamping sliding plate drives the clamping rod to apply pressure to the rotating sleeve, so that the friction force applied to the rotating sleeve in the rotating process is further changed, the tension force applied to the raw material tape in the plug winding process can be adjusted, and different tension forces required by different raw material tapes in the plug winding process can be aimed at.
Drawings
Fig. 1 is a schematic view of the general structure of the present invention.
Fig. 2 is a partially enlarged schematic view of a portion a in fig. 1.
Fig. 3 is a general structural diagram of another view angle in the present invention.
Fig. 4 is a schematic view of the end structure of the radial slide rod of the present invention.
Fig. 5 is a schematic structural view of the clamping adjustment mechanism of the present invention.
Fig. 6 is a partially enlarged structural view at B in fig. 5.
Fig. 7 is a schematic structural view of another view angle of the clamping adjustment mechanism of the present invention.
Fig. 8 is a schematic structural diagram of the driving device of the present invention.
FIG. 9 is a schematic structural view of a second stopper according to the present invention.
Reference numbers in the figures: 1. operating the bottom plate; 2. a plug clamping device; 21. a clamping plate; 22. clamping a bevel gear; 221. A clamping bar; 23. a drive bevel gear; 231. an adjustment hole; 24. a radially sliding rod; 241. a feeding trough; 242. A feeding rod; 243. feeding the spring rod; 3. a winding unit; 31. winding the mounting disc; 32. a winding ring; 321. A fixing plate; 33. a raw material belt clamping mechanism; 331. rotating the sleeve; 332. clamping the sliding block; 3321. a locking groove; 333. a clamping rod; 334. a clamping spring; 335. clamping the screw rod; 34. a clamping adjustment mechanism; 341. Clamping the mounting plate; 3411. a first sliding groove; 342. a clamping lever; 343. clamping the sliding plate; 344. clamping the sliding column; 345. adjusting the spring; 346. an adjusting plate; 347. adjusting the stud; 4. a drive device; 41. a drive bushing plate; 42. driving the slave gear; 43. driving a main gear; 44. driving the mounting plate; 441. a limiting groove; 442. A limiting hole; 443. a first stopper; 444. a second limiting block; 4441. a second sliding groove; 4442. a limiting rod; 4443. a limiting spring; 4444. a poking plate; 45. driving a ratchet mechanism; 451. driving the ratchet plate; 452. a shifting sheet; 453. a return spring; 454. a drive rod; 5. a material ejecting device; 51. a material ejecting and mounting plate; 52. A drive sleeve; 521. rotating the handle; 53. a material ejecting screw rod; 531. a directional tank; 54. an orientation sleeve; 6. a latch mechanism; 61. a locking plate; 611. a latch tooth; 62. a locking spring rod.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the invention and are not intended to limit the invention.
Specific implementations of the present invention are described in detail below with reference to specific embodiments.
As shown in fig. 1, the invention provides a quick plug winding device, which comprises an operation bottom plate 1, wherein a plug clamping device 2 is installed at the upper end of the operation bottom plate 1.
As shown in fig. 1, 2 and 3, the plug clamping device 2 includes a clamping disk 21, a clamping bevel gear 22, a driving bevel gear 23 and a radial sliding rod 24, the clamping disk 21 is fixed at the upper end of the operating base plate 1, the middle of the clamping disk 21 is through-shaped, the middle of the clamping disk 21 is rotatably connected with the clamping bevel gear 22, the middle of the clamping bevel gear 22 is through-hole-shaped, the toothed surface of the clamping bevel gear 22 is engaged with the driving bevel gear 23, the driving bevel gear 23 is uniformly distributed along the circumferential direction of the clamping bevel gear 22, the driving bevel gear 23 is rotatably connected with the clamping disk 21, the toothless section of the driving bevel gear 23 is provided with a polygonal adjusting hole 231, the toothless surface of the clamping bevel gear 22 is fixedly connected with a clamping strip 221, the radial sliding rod 24 is slidably connected on the clamping strip 221, the radial sliding rod 24 is slidably connected with the clamping disk 21 along the radial direction of the clamping disk 21, the radial sliding rod 24 is uniformly distributed along the clamping vortex-shaped clamping strip 221 of the clamping disk 21, one side of the radial rod 24 close to the central axis of the clamping disk 21 is provided with a clamping groove 242 for winding of the clamping rod 242, and one end of the clamping rod 242 is connected with a clamping groove 242 for winding of the clamping unit, which is far away from the clamping groove 242, which is connected with the clamping groove 242, which is provided on the clamping rod 242, which is provided on the clamping disk 21.
It should be noted that, in the process of winding the raw material tape on the plug, firstly, the plug needs to be fixedly clamped, a general plug is mostly provided with a polygonal tightening end, the distance between the radial sliding rod 24 and the center of the clamping disc 21 is adjusted according to the size of the polygonal tightening end of the plug, so as to clamp the plug, in the process, a wrench is used to drive the bevel gear 23 to rotate through a variable hole on the driving bevel gear 23, the bevel gear 23 is driven to rotate the clamping bevel gear 22, the clamping strip 221 on the clamping bevel gear 22 drives the radial sliding rod 24 to slide along the radial direction of the clamping disc 21 until the position of the radial sliding rod 24 meets the clamping size of the plug, then, the plug is installed at a position between the plurality of radial sliding rods 24, in the process, the plug first contacts with the inclined plane of the feeding rod 242, the feeding rod 242 moves in the direction away from the central axis of the clamping bevel gear 22 until the tightening position of the plug moves to the radial sliding rod 24, then, the bevel gear 23 is further driven to clamp the radial sliding rod 24 to clamp the plug by the clamping bevel rod 24, and then, the driving unit 4 winds the raw material tape to wind the plug 3.
As shown in fig. 2 and 3, an ejecting device 5 is disposed at the rear side of the plug clamping device 2, the ejecting device 5 includes an ejecting mounting plate 51, a driving sleeve 52, an ejecting screw 53 and a directional sleeve 54, the ejecting mounting plate 51 is located at the rear side of the clamping disc 21 and faces the clamping disc 21, the ejecting mounting plate 51 is fixedly connected with the operating base plate 1, the driving sleeve 52 penetrates through the ejecting mounting plate 51 and is rotatably connected with the ejecting mounting plate 51, the driving sleeve 52 faces the middle position of the clamping disc 21, a rotating handle 521 is fixedly connected to the side surface of the driving sleeve 52, an ejecting screw 53 penetrates through the middle position of the driving sleeve 52 and is in threaded connection with the driving sleeve 52, a directional groove 531 pointing along the ejecting screw 53 is formed in the ejecting screw 53, the directional groove 531 is circumferentially and uniformly distributed in the ejecting screw 53, and the directional sleeve 54 is wrapped around the ejecting screw 53 and slidably engaged with the directional groove 531.
It should be noted that, in order to further improve the efficiency when installing the plug, the position of the ejection screw 53 in the ejection device 5 is adjusted according to the length of the plug, so that the ejection screw 53 and the feeding rod 242 can further clamp the plug, thereby omitting the process of further clamping the plug through the radial sliding rod 24, in the process of adjusting the position of the ejection screw 53, the rotating handle 521 drives the driving sleeve 52 to rotate, the driving sleeve 52 is in threaded connection with the ejection screw 53, and the ejection screw 53 moves back and forth under the constraint action of the orientation sleeve 54 until the ejection screw 53 and the plug contact each other.
As shown in fig. 3, 5 and 6, the winding unit 3 includes a winding mounting disc 31, a winding ring 32, a raw material belt clamping mechanism 33 and a clamping adjusting mechanism 34, the winding mounting disc 31 is fixedly mounted at the upper end of the operating base plate 1, the winding mounting disc 31 faces the ejector mounting plate 51, the middle position of the winding mounting disc 31 is through, the winding ring 32 is rotatably connected to the middle of the winding mounting disc 31, the raw material belt clamping mechanism 33 and the clamping adjusting mechanism 34 for tightly supporting the raw material belt clamping mechanism 33 are fixedly connected to the winding ring 32, the raw material belt clamping mechanism 33 includes a rotating sleeve 331, a clamping slider 332, a clamping rod 333 and a clamping spring 334, a fixing plate 321 is fixedly mounted inside the winding ring 32, a rotating sleeve 331 is rotatably connected to the middle position of the fixing plate 321, a clamping slider 332 is wrapped at the left end of the rotating sleeve 331, the clamping slider 332 is slidably connected to the rotating sleeve 331 in the left-right direction, a locking groove 3321 is radially provided on the left end face of the clamping slider 332, a locking groove 3321 surrounds the clamping slider, a clamping slider 332, a plurality of clamping sliders are uniformly wrapped around the clamping slider 332, and a clamping slider 332, one end of the clamping slider 335 of the clamping slider is connected to the clamping slider 335 is circumferentially connected to one end of the clamping slider, and a clamping slider 335 of a clamping slider, and one end of the clamping slider is connected to one clamping slider 335 of the clamping slider, and one clamping slider 332, and one clamping slider is connected to one clamping slider 332, and one end of the clamping slider 332, and one clamping slider is connected to the clamping slider 335 of the clamping slider 335, and one clamping slider 332, and one clamping slider is connected to the clamping slider 332, and one end of the clamping slider is connected to the clamping slider 335 is connected to the clamping slider 332, and one clamping slider 332, and the clamping slider 335 is connected to the clamping slider, and one end of the clamping slider 335 is connected to the clamping slider, and one end of the clamping slider 332.
It should be noted that, in the process of winding the raw material tape on the plug by the winding unit 3, firstly, glue is applied on the plug, the raw material tape on the raw material tape clamping mechanism 33 is attached to the plug, then, the winding ring 32 is driven by the driving device 4 to rotate around the plug, firstly, the clamping adjusting mechanism is separated from the raw material tape clamping mechanism 33, after the raw material tape is wound on the plug for one turn, the clamping adjusting mechanism 34 is used to apply friction to the raw material tape clamping mechanism 33, so as to ensure that the raw material tape is in a tensioned state in the process of continuously winding the plug, and the tensioned force does not change, so as to ensure consistency of winding effect, in the process of clamping the raw material tape by the raw material tape clamping device, the sleeve inside the raw material tape first contacts with the inclined plane on the clamping rod 333, the clamping rod 333 moves to the central axis of the rotating sleeve 331, when the sleeve of the raw material tape crosses the clamping rod 333, under the rebound effect of the clamping spring 334, and then the clamping slider 332 is moved in the front-back direction by rotating the clamping screw 335, so as to clamp the clamping slider 333.
As shown in fig. 6, the clamping adjustment mechanism 34 includes a clamping mounting plate 341, a clamping bar 342, a clamping sliding plate 343, a clamping sliding column 344, an adjustment spring 345, an adjustment plate 346, and an adjustment stud 347, wherein the clamping mounting plate 341 is provided with a first sliding groove 3411 along the radial direction of the winding mounting plate 31, the clamping bar 342 is an L-shaped bar, one end of the clamping bar 342 is in contact with the rotating sleeve 331 and is in an incomplete ring shape, the other end of the clamping bar 342 is slidably connected with the first sliding groove 3411, the clamping bar 342 passes through the first sliding groove 3411 and is fixedly connected with the clamping sliding plate 343, one end of the clamping sliding plate 343 away from the winding mounting plate 31 is fixedly connected with the clamping sliding column 344, the clamping sliding column 344 is slidably connected with the adjustment plate 346, the adjustment spring 345 is sleeved on the clamping sliding column 344, both ends of the adjustment spring 345 are respectively fixed on the clamping sliding plate 343 and the adjustment plate 346, the adjustment stud 347 is threadedly connected with the adjustment stud 347, and one end of the adjustment stud 347 away from the winding mounting plate 31 is rotatably connected with the clamping mounting plate 341.
It should be noted that, when the friction force to the raw material tape clamping mechanism 33 is adjusted by the clamping adjustment mechanism, the position of the adjustment plate 346 is adjusted by rotating the adjustment stud 347, pressure is applied to the adjustment spring 345 by the adjustment plate 346, pressure is applied to the clamping sliding plate 343 by the adjustment spring 345, the clamping sliding plate 343 drives the clamping rod 342 to apply pressure to the rotating sleeve 331, so that the friction force applied to the rotating sleeve 331 in the rotating process is further changed, and thus the tension force applied to the raw material tape in the process of winding the plug can be adjusted, and different tension forces required in the process of winding the plug for different raw material tapes are aimed at.
As shown in fig. 5, the clamping and mounting plate 341 is further provided with a locking mechanism 6, the locking mechanism 6 includes a locking plate 61 and a locking spring rod 62, the locking plate 61 is slidably connected to the clamping and mounting plate 341, the locking plate 61 is uniformly provided with a plurality of locking teeth 611 with one end being an inclined plane and one end being a straight plane, the locking spring rod 62 is fixedly connected between the locking plate 61 and the clamping and mounting plate 341, and the clamping and sliding plate 343 is fastened to the locking plate 61.
It should be noted that when the clamping sliding plate 343 is pressed downward, the clamping sliding plate 343 moves downward and engages with the straight tooth surfaces of the locking teeth 611, the locking plate 61 is moved in a direction away from the clamping sliding plate 343, the locking plate 61 is separated from the clamping sliding plate 343, and the clamping rod 342 is again attached to the rotating sleeve 331 by the resilient action of the adjusting spring 345, so that the raw material tape holding mechanism 33 and the clamping adjusting mechanism 34 are separated and contacted.
As shown in fig. 3 and 8, the driving device 4 includes a driving sleeve plate 41, a driving slave gear 42, a driving master gear 43, a driving mounting plate 44 and a driving ratchet mechanism 45, the driving sleeve plate 41 is fixedly connected to the winding ring 32, the middle of the driving sleeve plate 41 is circular and is wrapped on the outer side of the ejection screw 53, the middle of the driving slave gear 42 is a through shape, the driving slave gear 42 is coaxially and fixedly connected with the middle of the driving sleeve plate 41, the driving master gear 43 is engaged with the edge of the driving slave gear 42, the diameter of the driving master gear 43 is much larger than that of the driving slave gear 42, the driving mounting plate 44 is fixedly mounted on the upper end of the operation bottom plate 1, the driving master gear 43 is rotatably connected with the driving mounting plate 44, the driving ratchet mechanism 45 is disposed on the rear side of the driving master gear 43, the driving ratchet mechanism 45 includes a driving ratchet disc 451, a dial 452, a return spring 453 and a driving lever 454, the driving ratchet disc 451 is rotatably connected with the driving master gear 452, and the driving ratchet mechanism 452 is rotatably connected with the driving master gear 452, and the driving ratchet mechanism 43, and the driving ratchet mechanism 454 is connected with the driving master gear 452.
It should be noted that, in the process of driving the winding unit 3 by the driving device 4, firstly, by lifting the driving rod 454 upwards, the driving rod 454 drives the driving ratchet wheel 451 to rotate, the oblique tooth surface of the edge tooth of the driving ratchet wheel 451 contacts with the shifting piece 452 without affecting the rotation of the ratchet wheel, and then pressing the driving rod 454 downwards, the driving rod 454 drives the driving ratchet wheel 451 to rotate, the straight tooth surface of the edge tooth of the driving ratchet wheel 451 contacts with the shifting piece 452, so that the driving ratchet wheel 451 can drive the driving main gear 43 to rotate, the driving main gear 43 drives the driving driven gear 42 to rotate, the driving driven gear 42 drives the driving strap 41 to rotate, and the driving strap 41 drives the winding ring 32 to rotate.
As shown in fig. 8 and 9, a limiting groove 441 is formed around the outer side of the rotational connection portion of the driving mounting plate 44 and the driving main gear 43, the limiting groove 441 is annular, limiting holes 442 communicated with the limiting groove 441 are uniformly formed around the limiting groove 441 on the driving mounting plate 44, a first limiting block 443 is fixedly connected to the end of the right limiting groove 441, a second limiting block 444 is slidably connected to the limiting groove 441, a second sliding groove 4441 is formed in the second limiting block 444, a limiting rod 4442 is slidably connected to the second sliding groove 4441, the limiting rod 4442 is fastened to one of the limiting holes 442, a limiting spring 4443 is fixedly connected between the limiting rod 4442 and the bottom surface of the limiting hole 442, and a toggle plate 4444 is fixedly connected to the side surface of the limiting rod 4442.
It should be noted that, in order to limit the number of winding turns of the plug, the position of the second limiting block 444 in the limiting groove 441 is changed, the angle of the driving rod 454 which can rotate each time is adjusted, so as to limit the number of winding turns of the plug, in the process of moving the limiting block, the poking plate 4444 is pressed down to separate the limiting rod 4442 from the limiting hole 442, and the second limiting block 444 is moved along the limiting groove 441, when the second limiting block 444 is moved to a required position, the poking plate 4444 is released, and under the rebounding action of the limiting spring 4443, the limiting rod 4442 is buckled into the limiting hole 442 again.
The working process of the device in the invention is that in the winding process of the raw material belt for the plug, firstly, the plug needs to be fixedly clamped, a common plug is provided with a plurality of polygonal screwing ends, the distance between the radial sliding rod 24 and the center of the clamping disc 21 is adjusted according to the size of the polygonal screwing end of the plug so as to clamp the plug, then the driving device 4 drives the winding unit 3 to wind the raw material belt for the plug, in the process, the distance between the radial sliding rod 24 and the center of the clamping disc 21 is adjusted according to the size of the polygonal screwing end of the plug so as to clamp the plug, the plug is firstly contacted with the inclined plane of the feeding rod 242, the feeding rod 242 moves towards the direction away from the central axis of the clamping bevel gear 22 until the screwing position of the plug moves to the position between the radial sliding rods 24, so that the clamping of the plug can be quickly realized, the friction force is applied to the raw material belt clamping mechanism 33 through the clamping adjusting mechanism 34, so that the raw material belt is guaranteed to be in a tensioned state in the process of continuously winding the plug, the tensioned force cannot change, the uniformity of the winding effect is guaranteed, the position of the adjusting plate 346 is adjusted by rotating the adjusting stud 347, pressure is applied to the adjusting spring 345 through the adjusting plate 346, the adjusting spring 345 applies pressure to the clamping sliding plate 343, the clamping sliding plate 343 drives the clamping rod 342 to apply pressure to the rotating sleeve 331, the friction force applied to the rotating sleeve 331 in the rotating process is further changed, the tension force applied to the raw material belt in the process of winding the plug can be adjusted, and different tension forces required by different raw material belts in the process of winding the plug are achieved.
The circuits and controls involved in the present invention are all the prior art, and are not described herein in detail.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (7)

1. A quick plug winding device comprises an operation bottom plate (1), wherein a plug clamping device (2) is installed at the upper end of the operation bottom plate (1);
the plug clamping device is characterized in that the plug clamping device (2) comprises a clamping disc (21), a clamping bevel gear (22), a driving bevel gear (23) and a radial sliding rod (24), a fixing frame of the clamping disc (21) is arranged at the upper end of the operating base plate (1), the middle of the clamping disc (21) is in a through shape, the clamping bevel gear (22) is rotatably connected to the middle of the clamping disc (21), the middle of the clamping bevel gear (22) is in a through hole shape, a toothed surface of the clamping bevel gear (22) is meshed with the driving bevel gear (23), the driving bevel gear (23) is uniformly distributed along the circumferential direction of the clamping bevel gear (22), the driving bevel gear (23) is rotatably connected with the clamping disc (21), a non-toothed section of the driving bevel gear (23) is provided with a polygonal adjusting hole (231), a non-toothed surface of the clamping bevel gear (22) is fixedly connected with a vortex-shaped clamping strip (221), the clamping strip (221) is slidably connected with the radial sliding rod (24) along the radial sliding rod (24) of the clamping disc (21), and a plurality of clamping grooves (24) are uniformly distributed along the circumferential direction of the clamping disc (21), go up silo (241) edge the radial sliding connection of centre gripping dish (21) has material loading pole (242), one side processing that material loading pole (242) are close to radial slide bar (24) and this end deviates from radial slide bar (24) is the inclined plane near the one end of centre gripping dish (21) center pin, material loading pole (242) with fixedly connected with material loading spring pole (243) between the one end that centre gripping dish (21) center pin was kept away from in material loading groove (241), the rear side of centre gripping dish (21) is provided with winding unit (3) that are used for twining the raw material area on the end cap and is used for driving drive arrangement (4) of winding unit (3).
2. The quick plug product winding device according to claim 1, wherein an ejecting device (5) is arranged on the rear side of the plug clamping device (2), the ejecting device (5) comprises an ejecting mounting plate (51), a driving sleeve (52), an ejecting screw (53) and an orienting sleeve (54), the ejecting mounting plate (51) is located on the rear side of the clamping disc (21) and is right opposite to the clamping disc (21), the ejecting mounting plate (51) is fixedly connected with the operating base plate (1), the driving sleeve (52) penetrates through the ejecting mounting plate (51) and is rotatably connected with the ejecting mounting plate (51), the driving sleeve (52) is right opposite to the middle position of the clamping disc (21), a rotating handle (521) is fixedly connected to the side surface of the driving sleeve (52), an ejecting screw (53) penetrates through the middle position of the driving sleeve (52) and is connected with the driving sleeve (52), an ejecting screw (53) and an ejecting groove (531) are formed in the ejecting screw (53), the ejecting screw (531) is clamped with the orienting sleeve (53), and the ejecting groove (531) is uniformly distributed on the periphery of the ejecting screw (53).
3. The quick plug winding device according to any one of claims 1 or 2, wherein the winding unit (3) comprises a winding installation disc (31), a winding ring (32), a raw material belt clamping mechanism (33) and a clamping adjustment mechanism (34), the winding installation disc (31) is fixedly arranged at the upper end of the operation bottom plate (1), the winding installation disc (31) is right opposite to the ejection installation plate (51), the middle position of the winding installation disc (31) is a through shape, the winding ring (32) is rotatably connected to the middle of the winding installation disc (31), the raw material belt clamping mechanism (33) and the clamping adjustment mechanism (34) for abutting against the raw material belt clamping mechanism (33) are fixedly connected to the winding ring (32), raw material area fixture (33) is including rotating sleeve (331), centre gripping slider (332), clamping rod (333) and centre gripping spring (334), the inside fixed mounting of winding ring (32) has fixed plate (321), the intermediate position of fixed plate (321) is rotated and is connected with and rotates sleeve (331), the left side end parcel of rotating sleeve (331) has centre gripping slider (332), centre gripping slider (332) along left right direction with rotate sleeve (331) sliding connection, radially seted up locking groove (3321) and locking groove (3321) along it on the left side terminal surface of centre gripping slider (332) and center on the clamp The clamping device is characterized in that a plurality of clamping sliders (332) are uniformly distributed in the circumferential direction, a clamping spring (334) is fixedly connected between the clamping sliders (332) and one end, close to the central shaft of the clamping slider (332), of the locking groove (3321), an inclined plane is machined on the left side of one end, away from the central shaft of the clamping slider (332), of the clamping rod (333), a clamping screw (335) is rotatably connected to the middle of the rotating sleeve (331), and the clamping screw (335) is in threaded connection with the clamping slider (332).
4. The quick plug winding device according to claim 3, wherein the clamping adjustment mechanism (34) comprises a clamping mounting plate (341), a clamping rod (342), a clamping sliding plate (343), a clamping sliding column (344), an adjustment spring (345), an adjustment plate (346) and an adjustment stud (347), the clamping mounting plate (341) is provided with a first sliding groove (3411) along a radial direction of the winding mounting plate (31), the clamping rod (342) is an L-shaped rod, one end of the clamping rod (342) is in contact with the rotating sleeve (331) and is in an incomplete ring shape, the other end of the clamping rod (342) is in sliding connection with the first sliding groove (3411) and the clamping rod (342) penetrates through the first sliding groove (3411) to be fixedly connected with the clamping sliding plate (343), one end of the clamping sliding plate (343) far away from the winding mounting plate (31) is fixedly connected with the clamping sliding column (344), the adjustment plate (346) is in sliding connection with the clamping sliding column (344), the adjustment spring (345) is sleeved on the clamping sliding column (344), the two ends of the adjustment plate (345) are respectively fixed on the adjustment plate (31), and one end of the adjustment plate (347) far away from the clamping sliding plate (343) is connected with the adjustment plate (346), and one end of the adjustment plate (347), and one end of the adjustment plate (345) is connected with the adjustment plate (347), and one end of the adjustment plate (31) far away from the adjustment plate (347), and the adjustment plate (346) is connected with the adjustment plate (346) respectively connected with the adjustment plate (345), and the adjustment plate (347), the adjustment plate (346) and the adjustment plate (347), and the adjustment plate (346) is connected with the adjustment plate (347), and the adjustment plate (346) on the adjustment plate (345) on the adjustment plate (347), the adjustment plate (345) on the adjustment plate (346) on the adjustment plate (347), the adjustment plate (346) on the adjustment plate (345), the adjustment plate (346) on the adjustment plate (347), and the adjustment plate (347), the adjustment plate (345), the adjustment plate (346) on the adjustment plate The plate (341) is rotatably connected.
5. The quick plug winding device as claimed in claim 4, wherein a locking mechanism (6) is further disposed on the clamping mounting plate (341), the locking mechanism (6) comprises a locking plate (61) and a locking spring rod (62), the locking plate (61) is slidably connected to the clamping mounting plate (341), a plurality of locking teeth (611) with one end being a straight surface are uniformly formed on the locking plate (61), the locking spring rod (62) is fixedly connected between the locking plate (61) and the clamping mounting plate (341), and the clamping sliding plate (343) is locked to the locking plate (61).
6. The quick plug winding device as claimed in claim 4 or 5, wherein the driving device (4) comprises a driving strap (41), a driving driven gear (42), a driving main gear (43), a driving mounting plate (44) and a driving ratchet mechanism (45), the driving strap (41) is fixedly connected to the winding ring (32), the middle of the driving strap (41) is circular and wraps outside the ejecting screw (53), the middle of the driving driven gear (42) is through-shaped, the driving driven gear (42) is coaxially and fixedly connected with the middle of the driving strap (41), the driving driven gear (42) is engaged with a driving main gear (43) at the edge of the driving driven gear (42), the diameter of the driving main gear (43) is much larger than that of the driving driven gear (42), the driving mounting plate (44) is fixedly mounted at the upper end of the operating base plate (1), the driving mounting plate (43) is rotatably connected with the driving mounting plate (44), the rear side of the driving main gear (43) is provided with a ratchet driving main gear (45), the driving main gear (451) and a driving ratchet mechanism (45) are connected with the driving main gear (451), and the driving ratchet mechanism (454), the poking sheet (452) is buckled with teeth on the driving ratchet wheel disc (451), the poking sheet (452) is rotationally connected with the driving main gear (43), a return spring (453) is fixedly connected between the plectrum (452) and the driving main gear (43), and the driving rod (454) is fixedly connected with the driving main gear (43).
7. The quick plug winding device as claimed in claim 6, wherein a limiting groove (441) is formed around the outer side of the rotational connection portion of the driving mounting plate (44) and the driving main gear (43), the limiting groove (441) is circular, the driving mounting plate (44) is uniformly provided with limiting holes (442) around the limiting groove (441) and communicated with the limiting groove (441), the end of the right limiting groove (441) is fixedly connected with a first limiting block (443), a second limiting block (444) is slidably connected in the limiting groove (441), a second sliding groove (4441) is formed in the second limiting block (444), a limiting rod (4442) is slidably connected in the second sliding groove (4441), the limiting rod (4442) is buckled in one of the limiting holes (442), a limiting spring (4443) is fixedly connected between the limiting rod (4442) and the bottom surface of the limiting hole (442), and a toggle plate (4444) is fixedly connected to the side surface of the limiting rod (4442).
CN202210944046.3A 2022-08-05 2022-08-05 Quick winding device for plug Pending CN115258843A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202210944046.3A CN115258843A (en) 2022-08-05 2022-08-05 Quick winding device for plug

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202210944046.3A CN115258843A (en) 2022-08-05 2022-08-05 Quick winding device for plug

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CN115258843A true CN115258843A (en) 2022-11-01

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116140425A (en) * 2023-04-14 2023-05-23 西安奥若特材料技术有限公司 Forming device for local reinforced structure of low-pressure pipeline

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116140425A (en) * 2023-04-14 2023-05-23 西安奥若特材料技术有限公司 Forming device for local reinforced structure of low-pressure pipeline
CN116140425B (en) * 2023-04-14 2023-06-30 西安奥若特材料技术有限公司 Forming device for local reinforced structure of low-pressure pipeline

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