CN117532896B - Bracelet compresses tightly forming device and children's protection bracelet - Google Patents

Bracelet compresses tightly forming device and children's protection bracelet Download PDF

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Publication number
CN117532896B
CN117532896B CN202311472259.1A CN202311472259A CN117532896B CN 117532896 B CN117532896 B CN 117532896B CN 202311472259 A CN202311472259 A CN 202311472259A CN 117532896 B CN117532896 B CN 117532896B
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China
Prior art keywords
bracelet
wall
plate
piece
moving
Prior art date
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Application number
CN202311472259.1A
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Chinese (zh)
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CN117532896A (en
Inventor
刘辉煌
曾剑峰
吴永汉
谭琪琪
邱国梁
丘志浩
刘铭
钟惠燕
吴宏锐
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Yonglin Electronics Co Ltd
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Yonglin Electronics Co Ltd
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Priority to CN202311472259.1A priority Critical patent/CN117532896B/en
Publication of CN117532896A publication Critical patent/CN117532896A/en
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Publication of CN117532896B publication Critical patent/CN117532896B/en
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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/18Status alarms
    • G08B21/182Level alarms, e.g. alarms responsive to variables exceeding a threshold
    • AHUMAN NECESSITIES
    • A44HABERDASHERY; JEWELLERY
    • A44CPERSONAL ADORNMENTS, e.g. JEWELLERY; COINS
    • A44C5/00Bracelets; Wrist-watch straps; Fastenings for bracelets or wrist-watch straps
    • A44C5/0007Bracelets specially adapted for other functions or with means for attaching other articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C65/00Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor
    • B29C65/56Joining or sealing of preformed parts, e.g. welding of plastics materials; Apparatus therefor using mechanical means or mechanical connections, e.g. form-fits
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C66/00General aspects of processes or apparatus for joining preformed parts
    • B29C66/80General aspects of machine operations or constructions and parts thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C66/00General aspects of processes or apparatus for joining preformed parts
    • B29C66/80General aspects of machine operations or constructions and parts thereof
    • B29C66/87Auxiliary operations or devices
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B3/00Audible signalling systems; Audible personal calling systems
    • G08B3/10Audible signalling systems; Audible personal calling systems using electric transmission; using electromagnetic transmission

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Electromagnetism (AREA)
  • Adornments (AREA)

Abstract

The invention relates to the technical field of bracelet manufacturing, and discloses a bracelet compacting and forming device and a child protection bracelet, wherein the bracelet compacting and forming device comprises a supporting seat, the supporting seat comprises a bottom plate, a vertical plate arranged at the top of the bottom plate and a supporting reinforcement arranged at the back of the vertical plate, the outer wall of the supporting reinforcement is attached to the outer wall of the bottom plate, a compacting and forming unit is arranged on the supporting seat and comprises a compacting part arranged at the top of the bottom plate. The maximum moving distance of the moving plate is limited by adjusting the limiting assembly, so that the pressing down distance of the pressing down die is controlled, the influence on the finished product effect caused by improper control pressure is avoided, a worker pulls down the pressing down part to the lowest position, the pressing down part is enabled to press down and strengthen the connection between the display screen and the bracelet, meanwhile, the first reset piece is stretched, the pressing down part is loosened after the forming of the bracelet for children, and under the reset action of the first reset piece, the moving plate drives the pressing down die to reset, and then the bracelet for children is taken down.

Description

Bracelet compresses tightly forming device and children's protection bracelet
Technical Field
The invention relates to the technical field of bracelet manufacturing, in particular to a bracelet compacting and forming device and a child protection bracelet.
Background
The child bracelet is an intelligent device specially designed to be worn by children, and is composed of the bracelet, a display, a battery, an electronic control module and the like, and aims to provide additional safety and protection for the children and facilitate parents to monitor and manage the children.
The manufacturing process flow of the child bracelet is generally material preparation, mold manufacturing, injection molding, electronic assembly, testing and debugging, compression molding, assembly and packaging, wherein the compression molding is to put the assembled bracelet into a special compression device for compression molding, so that the subsequent service life of the child bracelet is ensured.
In the compression molding process, proper pressure and temperature are required to be applied to tightly attach the bracelet to the internal component, and if the pressure is too high, the surface of the display can be deformed or damaged; and if the pressure is too little, the effect of close combination can not be reached, at the in-process of staff's operation, often can't control the pressure of applyied well, and the improper operation is so that shaping effect and outward appearance of product receive the influence, and compress tightly the shaping back because the bracelet is mostly rubber material, the adhesion is on placing the seat after receiving the pressure, needs the staff to detain with the finger and breaks away from, the operation is inconvenient.
And the existing children's bracelet generally plays only with the function of parents ' conversation connection and time of seeing, when the parents are not at the side, when children try to reach to touch the high-temperature object or have the high-temperature object to be close to, children's bracelet can not sound the warning in order to alert children to pay attention to safety, does not play the function of reminding children to keep away from the high temperature.
Disclosure of Invention
The present invention has been made in view of the above-mentioned problems occurring in the prior art.
In one aspect of the present application, a bracelet compacting and forming device is provided, and the purpose of the device is that: the problem that the finished product effect is affected due to the fact that staff control pressure is improper in the bracelet compacting and forming process, and a product is inconvenient to take down after forming is solved.
The technical scheme of the invention is as follows: the utility model provides a bracelet compresses tightly forming device, includes the supporting seat, the supporting seat includes the bottom plate, sets up the riser at bottom plate top to and set up the support reinforcement at riser back, and the outer wall of support reinforcement is laminated mutually with the outer wall of bottom plate, and the support reinforcement is right triangle-shaped has the effect of strengthening stability, be provided with on the supporting seat and compress tightly forming unit, compress tightly forming unit including setting up the compressing tightly part at bottom plate top, the front of compressing tightly part is provided with stripping off the part, be provided with guide part on the stripping off the part, it has the rubber bracelet of waiting to process to compress tightly to place on the part;
The pressing part comprises a moving plate arranged on the front surface of the vertical plate, two fixed plates arranged on the top of the moving plate, a pressing piece arranged between the two fixed plates, a first rotating seat arranged on one side of the fixed plate far away from the pressing piece, a second rotating seat arranged on the outer wall of the moving plate, two first reset pieces arranged between the first rotating seat and the second rotating seat, a pressing die arranged at the bottom of the moving plate, a placing seat arranged at the bottom of the pressing die and matched with the shape of a rubber bracelet to be processed, and a limiting assembly arranged on the front surface of the moving plate, wherein the number of the pressing piece is two;
the stripping component is used for loosening and stripping the child bracelet from the placement seat after the child bracelet is pressed and molded by the lower pressing die;
The guide component is used for moving the child bracelet for a certain distance after the stripping component loosens and strips the child bracelet, and the child bracelet falls to a designated position through the weight of the child bracelet.
By adopting the technical scheme, the first reset piece can be a spring, the child bracelet is sleeved on the placement seat, the maximum moving distance of the moving plate is limited by adjusting the limiting component, so that the pressing distance of the pressing die is controlled, a worker pulls down the pressing piece to the lowest position, the pressing die presses down to strengthen the connection between the display screen and the bracelet, meanwhile, the first reset piece is stretched, the pressing piece is loosened after the child bracelet is molded, the moving plate drives the pressing die to reset under the reset action of the first reset piece, and then the child bracelet is taken down.
Further, the casting die includes two convex blocks that the symmetry set up, runs through the pivot that sets up in two convex block bottoms, and the both ends activity of pivot runs through the outer wall of fixed plate, and the convex block is installed in the inboard of fixed plate through the pivot, sets up in the connecting piece at two convex block tops to and set up in the depression bar at connecting piece top.
By adopting the technical scheme, the staff pulls down the lower pressure lever, drives two convex blocks and the rotating shaft to synchronously rotate under the connection of the connecting piece, and the convex surface of the convex block extrudes the movable plate, so that the movable plate moves downwards.
Further, the quantity of spacing subassembly sets up two sets of for the symmetry, spacing subassembly is including setting up in the first pole setting at bottom plate top, and first pole setting runs through in the movable plate, sets up in the stopper at first pole setting top, sets up a plurality of regulation holes in first pole setting to and set up the locating pin in one of them regulation hole.
By adopting the technical scheme, before the pressing die is pressed down, the positioning pins at two sides are inserted into the corresponding adjusting holes according to the protruding thickness of the display screen on the bracelet, so that the downward moving distance of the moving plate is limited.
Further, the stripping component comprises a side plate arranged on one side of the front surface of the movable plate, the outer wall of the side plate is attached to the outer wall of the bottom plate, the side plate is close to the cutting on one side of the placing seat, the first movable rod is arranged between the cutting and the side plate, the movable block connected to the outer wall of the first movable rod is rotated, the driving piece arranged at the bottom of the movable block is arranged, the second vertical rod is arranged between the movable block and the driving piece, the top end of the second vertical rod is positioned in the inner cavity of the movable block, the parallel sliding groove on one side of the side plate close to the placing seat is formed, the sliding rod is arranged on the outer wall of the driving piece, and one end of the sliding rod, far away from the driving piece, is positioned in the parallel sliding groove.
By adopting the technical scheme, the staff pushes the finger belly to the placing seat on the driving piece, the sliding rod slides in the parallel sliding groove to drive the first moving rod, the moving block and the second vertical rod to synchronously move, so that the cutting is inserted into the inner wall of the tightly pressed child bracelet, and the child bracelet is separated from the placing seat.
Further, the cutting comprises a cutting main body, an arc section arranged at one end of the cutting main body, and a stop block arranged at the other end of the cutting main body.
By adopting the technical scheme, the arc section firstly contacts with the inner wall of the children's bracelet, and then the children's bracelet is loosened by extrusion along the appearance of the arc section, so that the children's bracelet can be conveniently taken out and separated.
Further, the driving piece comprises a translation block arranged at the bottom end of the second vertical rod, a rectangular block arranged on the front face of the translation block and a second cambered surface arranged in the rectangular block.
By adopting the technical scheme, the second cambered surface is arranged in the rectangular block, so that a worker can push the translation block by using the abdomen.
Further, the guide part is including setting up in the curb plate and being close to the guide way of placing seat one side, and the quantity of guide way is two that set up from top to bottom to the outer wall of guide way laminates mutually with the outer wall of curb plate, sets up the guide block in the guide way, and one of them guide block's outer wall is connected with the tip of first movable rod, and the outer wall of another guide block is connected with the dog through the connecting rod, sets up the second piece that resets between movable block inner wall and second pole setting outer wall.
By adopting the technical scheme, the second reset piece can be a spring, when the driving piece is pushed, under the reset action of the second reset piece, the guide block moves in parallel or obliquely along the shape of the guide groove to drive the cutting to move in a whole translational manner or move obliquely, and the moving block and the second vertical rod move and simultaneously stretch out and draw back in order to adapt to the moving path in the second vertical rod.
Further, the guide groove comprises a first parallel section, a declining section obliquely arranged on the front face of the first parallel section, an inclining section obliquely arranged on the front face of the declining section, a V-shaped included angle formed between the declining section and the inclining section, and a second parallel section arranged on the front face of the inclining section.
By adopting the technical scheme, the guide block drives the cutting to move towards the placement seat in parallel, then moves backwards in parallel, then moves obliquely downwards along the declination section, moves obliquely upwards along the upward declination section, and finally moves to the tail end of the second parallel section.
Further, the guide part further comprises a first movable groove arranged at the end part of the cutting, a third reset piece arranged in the first movable groove, and the third reset piece comprises a first cambered surface section, a second section arranged on the front surface of the first cambered surface section, a third section arranged at the bottom of the second section, a second movable groove arranged on the placing seat, and a guide piece arranged between the third reset piece and the stop block, wherein the guide piece comprises a first inclined surface and a second inclined surface arranged on the front surface of the first inclined surface, an included angle formed between the first inclined surface and the outer wall of the cutting is 20 degrees, and an included angle formed between the second inclined surface and the outer wall of the cutting is 45 degrees.
By adopting the technical scheme, the third reset piece can be an elastic piece, after the arc section of the cutting is inserted between the inner wall of the bracelet of the child and the outer wall of the placement seat, the third reset piece is extruded, the first arc section and the second section of the third reset piece retract into the inner cavity of the first movable groove, when the arc section moves to the second movable groove, the first arc section and the second section of the third reset piece are popped up again, and then the bracelet of the child is hooked out by the second section, so that the bracelet of the child moves along with the movement of the cutting.
Further, the application also provides a child protection hand ring, which aims at: the problem that children try to reach to touch a high-temperature object or have the high-temperature object to approach, can not sound an alarm to alert the children to pay attention to safety is solved.
The technical scheme of the invention is as follows: the utility model provides a children prevent bracelet, includes the rubber bracelet, and the inner wall diameter and the children wrist size assorted of rubber bracelet, be provided with the display on the rubber bracelet outer wall, the display bottom is provided with the mouth that charges, be provided with anti-skidding line on the rubber bracelet outer wall, be provided with buzzer siren on the display.
The invention has the beneficial effects that:
1. The child bracelet is sleeved on the placement seat, the maximum moving distance of the moving plate is limited through adjusting the limiting assembly, accordingly, the pressing-down distance of the pressing-down die is controlled, the influence of improper control pressure on the finished product effect is avoided, a worker pulls down the pressing-down die to the lowest position, the pressing-down die is enabled to press down and strengthen the connection between the display screen and the bracelet, meanwhile, the first resetting piece is stretched, the pressing-down die is loosened after the child bracelet is molded, the moving plate drives the pressing-down die to reset under the resetting action of the first resetting piece, and then the child bracelet is taken down.
2. Through the staff with the finger abdomen place to place the seat and pass on the driving piece, the slide bar slides in parallel spout, drives first movable rod, movable block and second pole setting synchronous movement for the cutting inserts the inner wall that compresses tightly fashioned children's bracelet, makes children's bracelet break away from placing the seat, is convenient for take off children's bracelet.
3. Through setting up first movable groove, third setting element and guide spare on the cutting, insert the arc section of cutting and insert between the inner wall of children's bracelet and the outer wall of placing the seat, the third setting element receives the extrusion, and first cambered surface section and the second section of third setting element shrink first movable groove inner chamber, and when the arc section moved to the second movable groove, first cambered surface section and the second section of third setting element popped out again, utilized the second section to hook out children's bracelet afterwards, make children's bracelet remove along with the removal of cutting.
4. When a child tries to reach the hand to touch a high-temperature object or the high-temperature object approaches, the thermopile sensor detects that the temperature exceeds a preset high-temperature threshold value, the thermopile sensor sends a signal to an electronic control module in the display, the electronic control module triggers an alarm action according to the signal, activates a buzzer alarm to give out sound to remind the child not to touch the high-temperature object or leave a high-temperature area, and the function of reminding the child to keep away from the high temperature is achieved.
Drawings
FIG. 1 is a schematic view of the overall structure of a first view angle according to the present invention;
FIG. 2 is a schematic view of the structure of the rubber-removed wristband of the present invention;
FIG. 3 is a schematic view of the structure of the hold-down member of the present invention;
FIG. 4 is a schematic view of an adjustment of the spacing assembly of the present invention;
FIG. 5 is a first partial schematic view of the present invention;
FIG. 6 is an enlarged schematic view of FIG. 5A in accordance with the present invention;
FIG. 7 is a schematic view of the structure of the cutting according to the present invention;
FIG. 8 is a cut-away plan view of a slip of the present invention;
FIG. 9 is an enlarged schematic view of the invention at B in FIG. 8;
FIG. 10 is a cutaway perspective view of a traveling block of the present invention;
FIG. 11 is a second partial schematic structural view of the present invention;
Fig. 12 is a schematic structural view of the rubber bracelet of the present invention.
In the figure:
1. A support base; 11. a bottom plate; 12. a vertical plate; 13. supporting the stiffener; 2. a pressing member; 21. a moving plate; 22. a fixing plate; 23. a pressing piece; 231. a male block; 232. a rotating shaft; 233. a connecting piece; 234. pressing down a rod; 24. a first rotating seat; 25. a second rotating seat; 26. a first reset member; 27. pressing down the die; 28. a placement seat; 29. a limit component; 291. a first upright; 292. a limiting block; 293. an adjustment aperture; 294. a positioning pin; 3. a peeling member; 31. a side plate; 32. cutting; 321. a cutting body; 322. an arc section; 323. a stop block; 33. a first moving lever; 34. a moving block; 35. a driving member; 351. a translation block; 352. rectangular blocks; 353. a second cambered surface; 36. a second upright; 37. parallel sliding grooves; 38. a slide bar; 4. a guide member; 41. a guide groove; 411. a first parallel section; 412. a declining section; 413. an upward tilting section; 414. a second parallel section; 42. a guide block; 43. a second reset member; 44. a first movable groove; 45. a third reset member; 46. a second movable groove; 47. a guide member; 471. a first inclined surface; 472. a second inclined surface; 5. a rubber bracelet; 6. a display; 7. a charging port; 8. anti-skid lines; 9. and a buzzer alarm.
Detailed Description
In order that the above-recited objects, features and advantages of the present invention will become more readily apparent, a more particular description of the invention will be rendered by reference to specific embodiments thereof which are illustrated in the appended drawings.
Referring to fig. 1-4, in a first embodiment of the present invention, a hand ring compression molding device is provided, which includes a support base 1, the support base 1 includes a bottom plate 11, a vertical plate 12 connected to the top of the bottom plate 11, and a support reinforcement 13 connected to the back of the vertical plate 12, wherein the outer wall of the support reinforcement 13 is attached to the outer wall of the bottom plate 11, and the support reinforcement 13 is a right triangle with a reinforcing stability, a compression molding unit is installed on the support base 1, the compression molding unit includes a compression member 2 disposed on the top of the bottom plate 11, a stripping member 3 is installed on the front surface of the compression member 2, the stripping member 3 can be an openable gripper to strip a child hand ring from the compression member 2, a guiding member 4 is installed on the stripping member 3, the guiding member 4 can be held by a worker to place the stripped child hand ring in a designated area, and a rubber hand ring 5 to be processed is placed on the compression member 2;
The pressing part 2 comprises a movable plate 21 positioned on the front surface of the vertical plate 12, fixed plates 22 connected to the top of the movable plate 21, two fixed plates 22 symmetrically arranged, a pressing piece 23 positioned between the two fixed plates 22, a first rotating seat 24 arranged on one side of the fixed plates 22 far away from the pressing piece 23, a second rotating seat 25 arranged on the outer wall of the movable plate 21, two second rotating seats 25 symmetrically arranged, a first reset piece 26 connected between the first rotating seat 24 and the second rotating seat 25, a pressing die 27 arranged at the bottom of the movable plate 21, a placing seat 28 positioned at the bottom of the pressing die 27 and matched with the shape of the rubber bracelet 5 to be processed, and a limiting assembly 29 arranged on the front surface of the movable plate 21.
Specifically, the first resetting piece 26 may be a spring, the child bracelet is sleeved on the placement seat 28, the maximum moving distance of the moving plate 21 is limited by adjusting the limiting component 29, so that the pressing distance of the pressing die 27 is controlled, a worker pulls the pressing die 23 to the lowest position, the pressing die 27 presses the connection between the display screen and the bracelet, meanwhile, the first resetting piece 26 is stretched, the pressing die 23 is loosened after the child bracelet is formed, under the resetting action of the first resetting piece 26, the moving plate 21 drives the pressing die 27 to reset, and then the child bracelet is taken down.
Referring to fig. 2, the pressing member 23 includes two convex blocks 231 symmetrically disposed, a rotation shaft 232 penetrating through the bottoms of the two convex blocks 231 and fixedly coupled thereto, and both ends of the rotation shaft 232 movably penetrate through the outer wall of the fixing plate 22, the convex blocks 231 are mounted inside the fixing plate 22 through the rotation shaft 232, a coupling member 233 coupled to the tops of the two convex blocks 231, and a pressing bar 234 coupled to the top of the coupling member 233.
Specifically, the worker pulls down the pressing rod 234, and drives the two convex blocks 231 and the rotating shaft 232 to rotate synchronously under the connection of the connecting piece 233, and the "convex" surface of the convex block 231 presses the moving plate 21, so that the moving plate 21 moves down.
Referring to fig. 4, the number of the limiting assemblies 29 is two, the limiting assemblies 29 include a first upright 291 positioned at the top of the bottom plate 11, the first upright 291 is disposed in the moving plate 21 in a penetrating manner, a limiting block 292 mounted at the top of the first upright 291, a plurality of adjusting holes 293 formed in the first upright 291, and a positioning pin 294 inserted into one of the adjusting holes 293.
Specifically, before the pressing down of the pressing down die 27, the positioning pins 294 on both sides are inserted into the corresponding adjustment holes 293 according to the protruding thickness of the display screen on the bracelet, so that the downward movement distance of the moving plate 21 is defined.
The working principle is that the child bracelet is sleeved on the placement seat 28, the positioning pins 294 on two sides are inserted into the corresponding adjusting holes 293 according to the protruding thickness of the display screen on the bracelet, a worker pulls down the lower pressing rod 234, the convex block 231 extrudes the movable plate 21, the movable plate 21 drives the lower pressing die 27 to move downwards, meanwhile, the first reset piece 26 is stretched, the lower pressing die 27 presses the child bracelet, the lower pressing rod 234 is loosened after being molded, and under the reset action of the first reset piece 26, the movable plate 21 drives the lower pressing die 27 to reset.
Embodiment 2, referring to fig. 1-11, is a second embodiment of the present invention, which differs from the first embodiment in that: the stripping part 3 comprises a side plate 31 connected to one side of the front surface of the movable plate 21, wherein the outer wall of the side plate 31 is attached to the outer wall of the bottom plate 11, a cutting 32 positioned on one side of the side plate 31 close to the placing seat 28, a first movable rod 33 arranged between the cutting 32 and the side plate 31, a movable block 34 rotatably connected to the outer wall of the first movable rod 33, a driving piece 35 positioned at the bottom of the movable block 34, a second upright rod 36 arranged between the movable block 34 and the driving piece 35, the top end of the second upright rod 36 positioned in the inner cavity of the movable block 34, a parallel chute 37 arranged on one side of the side plate 31 close to the placing seat 28, and a slide rod 38 arranged on the outer wall of the driving piece 35, wherein one end of the slide rod 38 far from the driving piece 35 is positioned in the parallel chute 37; the driving part 35 includes a translation block 351 connected to the bottom end of the second upright 36, a rectangular block 352 connected to the front surface of the translation block 351, and a second arc surface 353 disposed in the rectangular block 352.
Specifically, the worker pushes the abdomen to the placement seat 28 by placing the abdomen on the driving member 35, the slide bar 38 slides in the parallel slide groove 37 to drive the first moving rod 33, the moving block 34 and the second upright rod 36 to move synchronously, so that the insert 32 is inserted into the inner wall of the tightly pressed child bracelet, the child bracelet is separated from the placement seat 28, and the second cambered surface 353 is arranged in the rectangular block 352, so that the worker can push the translation block 351 with the abdomen.
Referring to fig. 7, the slip body 321, an arc section 322 provided at one end of the slip body 321, and a stopper 323 provided at the other end of the slip body 321.
Specifically, the arc section 322 firstly contacts the inner wall of the bracelet of the child, and then the bracelet of the child is squeezed loose along the shape of the arc section 322, so that the bracelet of the child is conveniently taken out and separated.
Referring to fig. 10 and 11, the guide member 4 includes guide grooves 41 connected to one side of the side plate 31 near the placement base 28, and the number of the guide grooves 41 is two, and the outer wall of the guide groove 41 is fitted to the outer wall of the side plate 31, guide blocks 42 are slidably connected in the guide groove 41, and the outer wall of one of the guide blocks 42 is connected to the end of the first moving rod 33, and the outer wall of the other guide block 42 is connected to a stopper 323 through a connecting rod, and a second restoring member 43 is connected between the inner wall of the moving block 34 and the outer wall of the second upright 36.
Specifically, the second restoring member 43 may be a spring, and when the driving member 35 is pushed, under the restoring action of the second restoring member 43, the guide block 42 moves in parallel or in an inclined manner along the shape of the guide slot 41, so as to drive the cutting 32 to move in a translational manner or in an inclined manner integrally, and the moving block 34 and the second upright 36 move while the moving block 34 is telescopic in the second upright 36 to adapt to the moving path.
Referring to fig. 11, the guide groove 41 includes a first parallel section 411, a declining section 412 obliquely disposed at the front of the first parallel section 411, an ascending section 413 obliquely disposed at the front of the declining section 412, and a V-shaped included angle formed between the declining section 412 and the ascending section 413, and a second parallel section 414 disposed at the front of the ascending section 413.
Specifically, the guide block 42 drives the cutting 32 to move parallel to the placement base 28, then moves parallel to the placement base, then moves obliquely downward along the downward inclined section 412, then moves obliquely upward along the upward inclined section 413, and finally moves to the tail end of the second parallel section 414.
Referring to fig. 8 and 9, the guide member 4 further includes a first movable groove 44 formed at an end portion of the cutting 32, a third restoring member 45 connected in the first movable groove 44, and the third restoring member 45 includes a first arc surface section, a second section disposed at a front surface of the first arc surface section, and a third section disposed at a bottom of the second section, a second movable groove 46 formed on the placement base 28, and a guide member 47 between the third restoring member 45 and the stopper 323, and the guide member 47 is fixedly connected with an outer wall of the cutting 32, the guide member 47 includes a first inclined surface 471 and a second inclined surface 472 disposed at a front surface of the first inclined surface 471, and an angle formed between the first inclined surface 471 and the outer wall of the cutting 32 is 20 °, and an angle formed between the second inclined surface 472 and the outer wall of the cutting 32 is 45 °.
Specifically, the third restoring member 45 may be a spring, after the arc segment 322 of the cutting 32 is inserted between the inner wall of the bracelet for the child and the outer wall of the placement seat 28, the third restoring member 45 is extruded, the first arc segment and the second segment of the third restoring member 45 retract into the inner cavity of the first movable slot 44, and when the arc segment 322 moves to the second movable slot 46, the first arc segment and the second segment of the third restoring member 45 pop up again, and then the second segment is utilized to hook out the bracelet for the child, so that the bracelet for the child moves along with the movement of the cutting 32.
The working principle is that a worker puts the finger belly on the second cambered surface 353, pushes the whole driving piece 35 towards the direction of the placement seat 28, the sliding rod 38 slides in the parallel sliding groove 37 to drive the first moving rod 33, the moving block 34 and the second upright rod 36 to synchronously move, so that the arc section 322 of the cutting 32 firstly contacts the inner wall of the child bracelet, then the child bracelet is squeezed loose along the shape of the arc section 322, the third reset piece 45 is extruded between the inner wall of the child bracelet and the outer wall of the placement seat 28, the first cambered surface section and the second section of the third reset piece 45 are contracted into the inner cavity of the first movable groove 44, and when the arc section 322 moves to the second movable groove 46, the first cambered surface section and the second section of the third reset piece 45 are popped up again, and then the child bracelet is hooked by the second section; the child bracelet is firstly parallel with the cutting 32 between the third resetting piece 45 and the guiding piece 47, when the guiding block 42 moves downwards in a tilting way in the tilting section 412, the cutting 32 tilts downwards, so that the child bracelet slides on the first inclined plane 471 of the guiding piece 47 and slides between the second inclined plane 472 and the stop block 323 of the cutting 32, when the guiding block 42 moves upwards in a tilting way in the tilting section 413, the cutting 32 tilts upwards, so that the child bracelet moves downwards under the action of gravity and falls on the bottom plate 11 beyond the third resetting piece 45.
The rest of the structure is the same as that of embodiment 1.
Embodiment 3 referring to fig. 12, a child-resistant hand ring according to a third embodiment of the present invention is used in a hand ring compression molding apparatus: including rubber bracelet 5, and the inner wall diameter and the children wrist size phase-match of rubber bracelet 5, be provided with display 6 on the rubber bracelet 5 outer wall, display 6 bottom is provided with the mouth 7 that charges, be provided with anti-skidding line 8 on the rubber bracelet 5 outer wall, be provided with buzzer siren 9 on the display 6.
Specifically, the display 6 is composed of a touch screen, a battery pack, an electronic control module, a wireless transmission module, and the like, and the interactive operation is realized through the touch screen, which can be a capacitive touch screen, which uses induced current to detect touch, can provide higher sensitivity and accuracy, and supports multi-touch; the battery pack can be a battery which is designed to be rechargeable, is electrically connected with the charging port 7, realizes recharging through reversible chemical reaction, such as a lithium polymer battery, is one of the batteries, belongs to a secondary battery, and has the working principle that the internal active substances are regenerated by utilizing external electric energy during charging, the electric energy is stored as chemical energy, and the chemical energy is converted into electric energy for output again when discharging is needed, so that the battery pack has high energy density, lighter weight and smaller size, and is suitable for the requirement of a small bracelet; the rubber bracelet 5 is internally provided with a plurality of temperature sensors, the temperature sensors can be thermistor chips which can be arranged in the bracelet, the thermistor chips are sensors integrated with a thermistor and a signal processing circuit, the temperature sensors have high precision and stability and are suitable for measuring the ambient temperature, and the thermistor chips monitor the ambient temperature in real time and transmit the monitored data to the electronic control module; the wireless transmission module can be STMicroelectronics STM-32 series, the STM32 series is a series of 32-bit ARM Cortex-M microcontrollers, and the wireless transmission module is commonly used for various applications, including wearable equipment, and has rich peripheral equipment and low power consumption characteristics; the buzzer alarm 9 is a common bracelet adapting buzzer alarm 9 in the market, and is connected with the wireless transmission module through a circuit, and the connected circuit structure is selected according to the actual use situation.
When the child tries to reach the hand to touch a high-temperature object or the high-temperature object approaches, the thermopile sensor detects that the temperature exceeds a preset high-temperature threshold value, the thermopile sensor sends a signal to an electronic control module in the display 6, the electronic control module triggers an alarm action according to the signal, activates the buzzer alarm 9 to make a sound to remind the child not to touch the high-temperature object or leave a high-temperature area, and meanwhile, the wireless transmission module sends the detected temperature to preset parent equipment in a mode of sending information.
It should be noted that the above embodiments are only for illustrating the technical solution of the present invention and not for limiting the same, and although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solution of the present invention may be modified or substituted without departing from the spirit and scope of the technical solution of the present invention, which is intended to be covered in the scope of the claims of the present invention.

Claims (10)

1. The utility model provides a bracelet compresses tightly forming device, includes supporting seat (1), its characterized in that: the supporting seat (1) comprises a bottom plate (11), a vertical plate (12) arranged at the top of the bottom plate (11), and a supporting reinforcing piece (13) arranged at the back of the vertical plate (12), wherein the outer wall of the supporting reinforcing piece (13) is attached to the outer wall of the bottom plate (11), a compression molding unit is arranged on the supporting seat (1) and comprises a compression part (2) arranged at the top of the bottom plate (11), the front surface of the compression part (2) is provided with a stripping part (3), the stripping part (3) is provided with a guide part (4), and a rubber bracelet (5) to be processed is placed on the compression part (2);
The pressing part (2) comprises a moving plate (21) arranged on the front surface of the vertical plate (12), fixed plates (22) arranged on the top of the moving plate (21), two pressing pieces (23) symmetrically arranged between the two fixed plates (22), a first rotating seat (24) arranged on one side of the fixed plates (22) far away from the pressing pieces (23), a second rotating seat (25) arranged on the outer wall of the moving plate (21), two first reset parts (26) symmetrically arranged between the first rotating seat (24) and the second rotating seat (25), a pressing die (27) arranged at the bottom of the moving plate (21), a placing seat (28) arranged at the bottom of the pressing die (27) and matched with the shape of a rubber hand ring (5) to be processed, and a limiting assembly (29) arranged on the front surface of the moving plate (21);
The stripping part (3) is used for loosening and stripping the child bracelet from the placement seat (28) after the child bracelet is pressed and molded by the lower pressing die (27);
The guide part (4) is used for moving the child bracelet a certain distance after the stripping part (3) loosens and strips the child bracelet, and the child bracelet falls to a designated position through the weight of the child bracelet.
2. The wristband compression molding device according to claim 1, wherein: the pushing piece (23) comprises two convex blocks (231) which are symmetrically arranged, a rotating shaft (232) which is arranged at the bottom of the two convex blocks (231) in a penetrating mode, two ends of the rotating shaft (232) movably penetrate through the outer wall of the fixed plate (22), a connecting piece (233) which is arranged at the top of the two convex blocks (231) and a pushing rod (234) which is arranged at the top of the connecting piece (233).
3. The bracelet compacting-shaping apparatus of claim 2 wherein: the quantity of spacing subassembly (29) sets up two sets of for the symmetry, spacing subassembly (29) are including setting up in first pole setting (291) at bottom plate (11) top, and first pole setting (291) run through in movable plate (21), set up stopper (292) at first pole setting (291) top, set up a plurality of regulation holes (293) on first pole setting (291) to and set up locating pin (294) in one of them regulation hole (293).
4. A bracelet compression molding apparatus according to claim 3, wherein: the stripping part (3) comprises a side plate (31) arranged on the front side of the moving plate (21), a cutting (32) arranged on one side of the side plate (31) close to the placing seat (28), a first moving rod (33) arranged between the cutting (32) and the side plate (31), a moving block (34) connected to the outer wall of the first moving rod (33) in a rotating mode, a driving piece (35) arranged at the bottom of the moving block (34), a second vertical rod (36) arranged between the moving block (34) and the driving piece (35), the top end of the second vertical rod (36) is located in an inner cavity of the moving block (34), a parallel sliding groove (37) arranged on one side of the side plate (31) close to the placing seat (28) and a sliding rod (38) arranged on the outer wall of the driving piece (35), and one end of the sliding rod (38) away from the driving piece (35) is located in the parallel sliding groove (37).
5. The wristband compression molding device according to claim 4, wherein: the cutting (32) comprises a cutting main body (321), an arc section (322) arranged at one end of the cutting main body (321), and a stop block (323) arranged at the other end of the cutting main body (321).
6. The wristband compression molding device according to claim 5, wherein: the driving piece (35) comprises a translation block (351) arranged at the bottom end of the second vertical rod (36), a rectangular block (352) arranged on the front surface of the translation block (351), and a second cambered surface (353) arranged in the rectangular block (352).
7. The wristband compression molding device according to claim 6, wherein: the guide part (4) comprises guide grooves (41) which are arranged on one side of the side plate (31) close to the placement seat (28), the number of the guide grooves (41) is two, the guide blocks (42) are arranged in the guide grooves (41), the outer wall of one guide block (42) is connected with the end part of the first moving rod (33), the outer wall of the other guide block (42) is connected with the stop block (323) through a connecting rod, and a second reset piece (43) is arranged between the inner wall of the moving block (34) and the outer wall of the second vertical rod (36).
8. The wristband compression molding device according to claim 7, wherein: the guide groove (41) comprises a first parallel section (411), a declining section (412) obliquely arranged on the front face of the first parallel section (411), an ascending section (413) obliquely arranged on the front face of the declining section (412), a V-shaped included angle formed between the declining section (412) and the ascending section (413), and a second parallel section (414) obliquely arranged on the front face of the ascending section (413).
9. The wristband compression molding device according to claim 8, wherein: the guide member (4) further comprises a first movable groove (44) formed at the end part of the cutting (32), a third reset piece (45) arranged in the first movable groove (44), a second movable groove (46) formed on the placing seat (28), and a guide piece (47) arranged between the third reset piece (45) and the stop block (323), wherein the guide piece (47) comprises a first inclined surface (471) and a second inclined surface (472) arranged on the front surface of the first inclined surface (471), an included angle formed between the first inclined surface (471) and the outer wall of the cutting (32) is 20 degrees, and an included angle formed between the second inclined surface (472) and the outer wall of the cutting (32) is 45 degrees.
10. A child-resistant hand ring for use with the hand ring compression molding device of claim 9, characterized in that: including rubber bracelet (5), and the inner wall diameter and the children wrist size phase-match of rubber bracelet (5), be provided with display (6) on rubber bracelet (5) outer wall, display (6) bottom is provided with charge mouth (7), be provided with anti-skidding line (8) on rubber bracelet (5) outer wall, be provided with buzzer siren (9) on display (6).
CN202311472259.1A 2023-11-07 2023-11-07 Bracelet compresses tightly forming device and children's protection bracelet Active CN117532896B (en)

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