CN114766801A - Weaving and sending machine conveyed by guide rail - Google Patents

Weaving and sending machine conveyed by guide rail Download PDF

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Publication number
CN114766801A
CN114766801A CN202210324461.9A CN202210324461A CN114766801A CN 114766801 A CN114766801 A CN 114766801A CN 202210324461 A CN202210324461 A CN 202210324461A CN 114766801 A CN114766801 A CN 114766801A
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CN
China
Prior art keywords
guide rail
rotating wheel
shaped
sliding block
hair
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Granted
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CN202210324461.9A
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Chinese (zh)
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CN114766801B (en
Inventor
吴裕飞
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Shenzhen Yufei Editing Machine Co ltd
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Shenzhen Yufei Editing Machine Co ltd
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Priority to CN202210324461.9A priority Critical patent/CN114766801B/en
Publication of CN114766801A publication Critical patent/CN114766801A/en
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Publication of CN114766801B publication Critical patent/CN114766801B/en
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    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45DHAIRDRESSING OR SHAVING EQUIPMENT; EQUIPMENT FOR COSMETICS OR COSMETIC TREATMENTS, e.g. FOR MANICURING OR PEDICURING
    • A45D8/00Hair-holding devices; Accessories therefor
    • A45D8/34Hair-braid holders; Hair-plait holders

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  • Braiding, Manufacturing Of Bobbin-Net Or Lace, And Manufacturing Of Nets By Knotting (AREA)

Abstract

A hair braider conveyed by a guide rail is characterized in that a motor (71) drives a left rotating wheel (6) to synchronously rotate clockwise and anticlockwise with a right rotating wheel (7) through a gear, a U-shaped part (8) synchronously rotates in a directional manner in a left U-shaped groove (65) and a right U-shaped groove (78), the U-shaped part (8) is linearly conveyed from the left upper part of the left rotating wheel (6) to the right lower part of the right rotating wheel (7) and the U-shaped part (8) is linearly conveyed from the right upper part of the right rotating wheel (7) to the left lower part of the left rotating wheel (7) through a sliding block on the U-shaped part (8) to be positioned in a corresponding guide rail to linearly run, the three U-shaped parts (8) circularly run at corresponding positions in turn, three bundles of hair are braided into braids, and the structure is simple and stable; the annular hair clip (9) is opened, the middle part of the hair (1) is filled and then closed, the sliding cover (10) is pulled open, the annular hair clip (9) is filled into the U-shaped piece (8), the rotating cover (81) is covered, the sliding cover (10) is closed, the hair (1) is filled into the corresponding position, and the operation is convenient and practical.

Description

Weaving and sending machine conveyed by guide rail
Technical Field
The invention relates to hair weaving in the hairdressing industry, in particular to a hair braider for automatically weaving three bundles of hair into braids.
Background
There have been used hair braiders for automatically braiding three hair bundles into a braid, and related patent documents include: CN113692236A (Wangzhi incense), a hair braiding machine; a hair knitting machine of CN 101374436a (illinois beauty products limited); CN 1317941a (plum crown rain), an auxiliary device for a hair styler, etc.
However, the machine for braiding hair in the invention CN113692236A (Wangzhi incense) uses 4 motors to drive and operate alternately, and has a complex structure; the hair braider of CN 101374436A (Irish beauty products Co., Ltd.) has the disadvantages that the operation is inconvenient when the hair braider is used for threading hair into a special sleeve, and the action is complex when the hair sleeve is transferred from one rotor to another rotor by using the structure of an actuating part to transfer; the CN 1317941A (plum crown rain) auxiliary device for the hair plaiting device only clamps the tail of the hair through the nozzle, and the practical operation is inconvenient.
While these existing machines can handle braided hair, they have their own drawbacks and problems, and therefore, there is a need for improvements in the art of automatic hair braiding machines, which are simple and easy to operate.
Disclosure of Invention
The technical problem is solved.
Aiming at the defects of the prior art, the invention provides the hair braider conveyed by the guide rail, the U-shaped part rotates synchronously along with the left rotating wheel and the right rotating wheel in an oriented mode, the U-shaped part rotates synchronously in the left U-shaped groove and the right U-shaped groove, the U-shaped part is positioned and linearly runs in the corresponding guide rail through the sliding block on the U-shaped part, the U-shaped part is linearly conveyed from the upper left part of the left rotating wheel to the lower right part of the right rotating wheel, the U-shaped part is linearly conveyed from the upper right part of the right rotating wheel to the lower left part of the left rotating wheel, and the three U-shaped parts circularly run in corresponding positions in turn, so that three bundles of hair are braided into braids, and the situation of simple structure is solved. The annular hair clip is opened, the middle part of the hair is filled and then closed, the sliding cover is pulled open, the annular hair clip is filled into the U-shaped piece, the rotating cover is covered, the sliding cover is closed, the hair is filled into the corresponding position, and the problem of convenient operation is solved.
The second technical proposal.
In order to achieve the purpose, the invention is realized by the following technical scheme: a braider that guide rail conveying, its characterized in that: the motor drives the left rotating wheel to synchronously rotate clockwise and anticlockwise through the gear; the U-shaped piece synchronously rotates directionally along with the right rotating wheel, and the driving surface is driven to synchronously run in the right U-shaped groove; when the tangent point of the circle and the linear guide rail is reached, the right front shell sliding block on the U-shaped part linearly runs in the right upper guide rail of the front shell in an oriented manner, and meanwhile, the right rear shell sliding block on the U-shaped part linearly runs in the right upper guide rail of the rear shell in an oriented manner; under the action of the centripetal force of the right rotating wheel and the guide rail, the U-shaped part slides linearly along the guide rail tangent to the right rotating wheel; continuing to rotate, and when the opposite linear guide rails are intersected, positioning and conveying linear operation of a right front cover sliding block on the U-shaped part in the front cover left upper guide rail, and positioning and conveying linear operation of a right rear cover sliding block on the U-shaped part in the rear cover left upper guide rail; a left front shell sliding block on the U-shaped part is in direct line operation in the front shell left lower guide rail in a meeting and positioning mode, and meanwhile, a left rear shell sliding block on the U-shaped part is in direct line operation in the rear shell left lower guide rail in a meeting and positioning mode; continuing to rotate to finish the linear transmission of the U-shaped piece from the upper right part of the right rotating wheel to the lower left part of the left rotating wheel; the rotation is continued, the U-shaped piece rotates synchronously along with the left rotating wheel, and the driving surface in the left U-shaped groove drives the rotating cover to synchronously run; when the tangent point of the circle and the linear guide rail is reached, the left front shell sliding block on the U-shaped part linearly runs on the left upper guide rail of the front shell in an oriented mode, and meanwhile, the left rear shell sliding block on the U-shaped part linearly runs on the left upper guide rail of the rear shell in an oriented mode; under the action of the centripetal force of the left turning wheel and the guide rail, the U-shaped part slides linearly along the guide rail tangent to the left turning wheel;
the left U-shaped part is rotated continuously, and when the opposite linear guide rails are crossed, the right front cover sliding block on the left U-shaped part is arranged in the right upper guide rail of the front cover
The positioning transmission linear operation is carried out, and meanwhile, the right rear cover sliding block on the U-shaped part is positioned in the right upper guide rail of the rear cover to carry out the linear transmission operation; a right front shell sliding block on the U-shaped part is in direct line operation in the front shell right lower guide rail in a meeting and positioning mode, and meanwhile, a right rear shell sliding block on the U-shaped part is in direct line operation in the rear shell right lower guide rail in a meeting and positioning mode; continuing to rotate to finish the linear transmission of the U-shaped piece from the left upper part of the left rotating wheel to the right lower part of the right rotating wheel;
continuing to rotate, and synchronously rotating the U-shaped part along with the right rotating wheel in a directional manner so as to circulate; three U-shaped spare follows the three left U type inslot of left runner and the three right U type inslot of right runner directional synchronous revolution in corresponding the position of mending mutually, and the centre passes through the guide rail and conveys on the runner of opposite face, from left to right, from right to left, and the circulation operation is gone round in turn to the hair in the annular hairpin in the drive U-shaped spare, the annular hairpin, realizes that three bundles of hair are woven into the pigtail.
Preferably, the driving gear on the motor drives the second transmission gear to rotate through the first reduction gear, the second reduction gear and the third reduction gear, and the second transmission gear drives the first transmission gear, the reversing gear, the third transmission gear, the left rotating wheel and the right rotating wheel to synchronously rotate.
Preferably, the front and back positioning horizontal planes on the U-shaped part slide with the rear left horizontal plane, the front left horizontal plane, the rear right horizontal plane, the front shell horizontal plane and the rear shell horizontal plane in a horizontal positioning manner.
Preferably, when the U-shaped part rotates synchronously along with the left runner, the left orientation lug is matched and oriented in the orientation groove of the rotary cover; when the U-shaped piece rotates synchronously along with the right rotating wheel, the right orientation lug is matched and oriented in the orientation groove.
Preferably, the rotating cover is arranged on the opening side of the U-shaped part, the rotating cover is opened in a rotating mode around the rotating column, the annular hair clip is conveniently installed, and when the rotating cover rotates to a corresponding angle, the spherical convex points are fixed in the holes.
Preferably, promote the retaining member that the slip was covered, pull open the slip lid, protecgulum T type groove and slip lid T type groove location slip in the track, push away and close the slip lid, the accurate location of slip lid locating piece is in positioning groove.
Preferably, the annular rubber band is fixed in an upper clamping groove of the upper half-ring hair clip, penetrates through the rotating shaft, and is fixed in a lower clamping groove of the lower half-ring hair clip at the other side.
(III) the beneficial effects.
The invention provides a hair braider conveyed by guide rails, which has the following beneficial effects.
(1) The motor drives the left rotating wheel to synchronously rotate clockwise and the right rotating wheel to synchronously rotate anticlockwise through the gear, the U-shaped piece synchronously rotates directionally in the left U-shaped groove and the right U-shaped groove, the U-shaped piece is positioned and linearly moves in the corresponding guide rail through the sliding block on the U-shaped piece, the U-shaped piece is linearly transmitted from the left upper part of the left rotating wheel to the right lower part of the right rotating wheel and is linearly transmitted from the right upper part of the right rotating wheel to the left lower part of the left rotating wheel, the three U-shaped pieces circularly operate at the corresponding positions, three bundles of hair are woven into braids, and the structure is simple and stable; the problem of complicated structure is solved.
(2) The annular hair clip is opened, the middle part of the hair is filled and then closed, the sliding cover is pulled open, the annular hair clip is filled into the U-shaped piece, the rotating cover is covered, the sliding cover is closed, the hair is filled into the corresponding position, and the operation is convenient and practical; the problem of inconvenient operation is solved.
Drawings
FIG. 1 is a schematic view of the overall structure of the working state of the present invention;
FIGS. 2-3 are schematic diagrams of the overall structure of the present invention;
FIGS. 4-6 are schematic views of the internal structure of the present invention;
FIG. 7 is a partial schematic view of the open slide lid construction of the present invention;
FIG. 8 is a schematic view of the front cover structure of the present invention;
FIG. 9 is a schematic view of the front housing construction of the present invention;
FIG. 10 is a schematic view of the rear housing structure of the present invention;
FIG. 11 is a schematic view of the construction of the rear cover of the present invention;
FIG. 12 is a schematic view of a right wheel construction of the present invention;
FIG. 13 is a schematic view of the left wheel construction of the present invention;
FIG. 14 is a schematic view of a U-shaped member of the present invention;
FIG. 15 is a schematic view of the rotary cap construction of the present invention;
FIG. 16 is a schematic view of the open structure of the circular hair clip of the present invention;
FIG. 17 is a schematic representation of a circular hairpin structure of the invention;
FIG. 18 is a schematic view of the rubber band of the present invention;
FIG. 19 is a partial schematic view of the internal structure of the sliding cover of the present invention;
FIG. 20 is a schematic view of the sliding front cover configuration of the present invention;
fig. 21 is a schematic view of the sliding back cover structure of the present invention.
In the drawings: 1. hair; 2. a front cover; 3. a front housing; 4. a rear housing; 5. a rear cover; 6. a left rotating wheel; 7. a right wheel; 8. a U-shaped member; 9. a circular hair clip; 10. a sliding cover; 11. sliding the front cover; 12. sliding the rear cover; 13. A locking member; 14. a charging port; 16. a sliding cover positioning block; 17. a T-shaped groove of the front cover; 18. a sliding cover T-shaped groove; 19. a positioning groove; 21. a front cover left upper guide rail; 22. a front cover right upper guide rail; 23. a power switch; 24. a speed regulation knob; 25. starting a key; 31. a front housing left upper guide rail; 32. a front housing right upper guide rail; 33. a front housing left lower guide rail; 34. a front housing right lower guide rail; 35. a front shell horizontal plane; 41. a rear housing left upper guide rail; 42. a rear housing right upper guide rail; 43. a rear housing left lower rail; 44. a rear housing right lower guide rail; 45. the rear shell horizontal plane; 51. the upper left guide rail of the rear cover; 52. the right upper guide rail of the rear cover; 53. a battery; 54. a PCB circuit board; 60. a rear left horizontal plane 61 and a first transmission gear; 62. a reverse gear; 63. a second transmission gear; 64. a left directional bump; 65. a left U-shaped groove 66 and a front left horizontal plane; 67. a safety switch; 70. a rear right horizontal plane; 71. a motor; 72. a drive gear; 73. a first reduction gear; 74. a second reduction gear; 75. a third reduction gear; 76. a third transmission gear; 77. a right directional bump; 78. a right U-shaped groove, 79, a front right horizontal plane; 81. rotating the cover; 82. a driving surface; 83. an orientation groove; 84. positioning a horizontal plane; 801. a right front cover slider; 802. a right front shell slide block; 803. a right rear housing slide block; 804. a left rear cover slider; 805. a left front cover slider; 806. a left front shell slider; 807. a left rear shell slider; 808. a left rear cover slider; 811. spin cap orientation wells 812, spin columns; 813. spherical salient points; 814. rotating the cap drive face; 91. a rotating shaft; 92. an upper half-ring hairpin; 93. a lower half-ring hairpin; 94. a rubber band; 95. an upper clamping groove; 96. a lower clamping groove; 97. and a diversion trench.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the examples of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the scope of protection of the present invention.
As shown in fig. 1 to 21, the present invention provides a technical solution: a guide rail transmission hair braider, a charging port 14 is arranged at the right side of a front cover 2, and a PCB 54 is connected to charge a battery 55 through the charging port 14. Turning on the power switch 23, adjusting the motor 71 to slow speed by rotating the speed adjusting knob 24, pushing the sliding cover 10, turning on the safety switch 67, connecting the starting key 25 and starting the motor 71; the driving gear 72 on the motor 71 drives the second transmission gear 63 to rotate in a speed reduction mode through the first reduction gear 73, the second reduction gear 74 and the third reduction gear 75, and the second transmission gear 63 drives the first transmission gear 61, the reverse gear 62, the third transmission gear 76, the left rotating wheel 6 and the right rotating wheel 7 to rotate synchronously; the three U-shaped parts 8 rotate synchronously in the corresponding positions and directionally in the three left U-shaped grooves 65 of the left wheel 6 and the three right U-shaped grooves 78 of the right wheel 7.
When the U-shaped part 8 is aligned with the sliding cover 10 at the upper right corner of the right rotating wheel 7, the starting button 25 is released, and the motor 71 stops rotating; pushing the locking piece 13 on the sliding cover 10, and pulling the sliding cover 10 open, wherein the front cover T-shaped groove 17 and the sliding cover T-shaped groove 18 are positioned and slide in the track; the opening side of the U-shaped part 8 is provided with a rotary cover 81, the rotary cover 81 rotates around the rotary column 812 to be opened, and when the rotary cover rotates to a corresponding angle, the spherical convex points 813 are fixed in corresponding holes to be positioned; taking out the annular hairpin 9; closing the rotating cover 81, pushing the sliding cover 10, and accurately positioning the sliding cover positioning block 16 in the positioning groove; in the same way, the other two ring hairpins 9 are taken out.
The upper half-ring hair clip 92 and the lower half-ring hair clip 93 are opened by rotating around the rotating shaft 9, the annular rubber band 94 is fixed in the upper clamping groove 95 of the upper half-ring hair clip 92, and the other side of the annular rubber band is fixed in the lower clamping groove of the lower half-ring hair clip 93 after passing through the rotating shaft 91; the gathered hair 1 is put into the circular hair clip 9, and then the upper half-ring hair clip 92 and the lower half-ring hair clip 93 are closed by rotating around the rotating shaft 9; while sandwiching all three hair loops 9 into the hair 1.
The sliding cover 10 is pulled open, and the rotating cover 81 is rotated open; the three annular hair clips 9 are respectively arranged in the U-shaped part 8, and the annular hair clips 9 can freely rotate in the clamping grooves of the U-shaped part 8; the rotating lid 81 is closed and the sliding lid 10 is pushed in.
The speed regulating knob 24 is rotated to regulate the speed, the motor 71 is started, and the U-shaped part 8 rotates along with the right runner 7; the front and back positioning horizontal plane 84 on the U-shaped part 8 horizontally slides with the rear left horizontal plane 60, the front left horizontal plane 66, the rear right horizontal plane 70, the front right horizontal plane 79, the front shell horizontal plane 35 and the rear shell horizontal plane 45; when the U-shaped part 8 rotates synchronously along with the right rotating wheel 7, the right orientation lug 77 rotates in the orientation groove 83 in a matching orientation mode, and the driving surface 82 is driven to synchronously run in the right U-shaped groove 78.
Continuing to rotate, when the point of tangency of the circle and the linear guide rail is reached, the right front shell sliding block 802 on the U-shaped piece 8 runs in a straight line in a direction on the front shell right upper guide rail 32, and meanwhile, the right rear shell sliding block 803 on the U-shaped piece 8 runs in a straight line in a direction on the rear shell right upper guide rail 42; under the action of the centripetal force of the right rotating wheel 7 and the guide rail, the U-shaped part 8 slides linearly along the guide rail tangent to the right rotating wheel 7; when the rotation is continued and the opposite linear guide rails are crossed, the right front cover sliding block 801 on the U-shaped part 8 is positioned in the front cover left upper guide rail 21 to carry out linear motion, and meanwhile, the right rear cover sliding block 804 on the U-shaped part 8 is positioned in the rear cover left upper guide rail 51 to carry out linear motion; a left front shell sliding block 806 on the U-shaped part 8 runs in a straight line in the front shell left lower guide rail 33 in an attachment and positioning mode, and meanwhile, a left rear shell sliding block 807 on the U-shaped part 8 runs in a straight line in the rear shell left lower guide rail 43 in an attachment and positioning mode; and the U-shaped part 8 is linearly transmitted from the upper right part of the right rotating wheel 7 to the lower left part of the left rotating wheel 6 after continuing to rotate.
When the U-shaped part 8 rotates synchronously along with the left rotating wheel 6 continuously, the left orientation lug 64 rotates in the orientation groove 811 in a matching orientation mode, and the left U-shaped groove 65 drives the driving surface 814 in the rotating cover to synchronously run; (ii) a Continuing to rotate, when reaching the point of tangency of the circle and the linear guide rail, the left front shell sliding block 806 on the U-shaped part 8 linearly runs in an oriented manner on the front shell left upper guide rail 31, and simultaneously, the left rear shell sliding block 807 on the U-shaped part 8 linearly runs in an oriented manner on the rear shell left upper guide rail 41; under the action of the centripetal force of the left-turning wheel 6 and the guide rail, the U-shaped part 8 slides linearly along the guide rail tangent to the left-turning wheel 6; when the rotation is continued and the opposite linear guide rails are intersected, the right front cover slide block 805 on the left U-shaped piece 8 is positioned in the front cover right upper guide rail 22 for linear movement, and meanwhile, the right rear cover slide block 808 on the U-shaped piece 8 is positioned in the rear cover right upper guide rail 52 for linear movement; a right front shell sliding block 802 on the U-shaped part 8 runs in a straight line in a front shell right lower guide rail 34 in an attaching and positioning mode, and meanwhile, a right rear shell sliding block 803 on the U-shaped part 8 runs in a straight line in a rear shell right lower guide rail 44 in an attaching and positioning mode; and the U-shaped part 8 is linearly transferred from the upper left part of the left rotating wheel 6 to the lower right part of the right rotating wheel 7 after continuing to rotate.
The U-shaped part 8 rotates continuously, and rotates synchronously along with the right runner 7, so that the circulation is realized; the three U-shaped parts 8 rotate synchronously and directionally in the three left U-shaped grooves 65 of the left rotating wheel 6 and the three right U-shaped grooves 78 of the right rotating wheel 7 at the corresponding complementary positions, the middle of the three U-shaped parts is conveyed to the opposite rotating wheel through the guide rail, and the three U-shaped parts move from left to right and from right to left alternately to drive the hair 1 in the annular hair clip 9 and the annular hair clip 9 in the U-shaped parts 8 to move circularly and alternately, so that three bundles of hair are woven into braids.
The above mentioned embodiments are only preferred embodiments of the present invention, and not intended to limit the scope of the present invention, and various modifications and applications made by the above mentioned embodiments are within the scope of the present invention.

Claims (7)

1. A braider that guide rail conveying, its characterized in that: the motor (71) drives the left rotating wheel (6) to rotate clockwise and the right rotating wheel (7) to rotate anticlockwise synchronously through a gear;
the U-shaped part (8) synchronously rotates along with the right rotating wheel (7) in a directional mode, and a driving surface (82) is driven to synchronously run in the right U-shaped groove (78);
when the tangent point of the circle and the linear guide rail is reached, the right front shell sliding block (802) on the U-shaped piece (8) directionally and linearly runs on the front shell right upper guide rail (32), and meanwhile, the right rear shell sliding block (803) on the U-shaped piece (8) directionally and linearly runs on the rear shell right upper guide rail (42); under the action of the centripetal force of the right rotating wheel (7) and the guide rail, the U-shaped part (8) slides linearly along the guide rail tangent to the right rotating wheel (7);
when the rotation is continued and the opposite linear guide rails are crossed, the right front cover sliding block (801) on the U-shaped part (8) is positioned in the front cover left upper guide rail (21) to carry out linear motion, and meanwhile, the right rear cover sliding block (804) on the U-shaped part (8) is positioned in the rear cover left upper guide rail (51) to carry out linear motion; a left front shell sliding block (806) on the U-shaped piece (8) is in direct contact with and positioned in the front shell left lower guide rail (33) to run linearly, and meanwhile, a left rear shell sliding block 807 on the U-shaped piece (8) is in direct contact with and positioned in the rear shell left lower guide rail (43) to run linearly; the U-shaped part (8) is continuously rotated to be linearly transmitted from the upper right part of the right rotating wheel (7) to the lower left part of the left rotating wheel (6);
the U-shaped part (8) continuously rotates along with the left rotating wheel (6) synchronously, and a driving surface (814) in the left U-shaped groove (65) driving rotating cover synchronously runs;
when the tangent point of the circle and the linear guide rail is reached, a left front shell sliding block (806) on the U-shaped part (8) linearly runs in a directional mode on the front shell left upper guide rail (31), and meanwhile, a left rear shell sliding block (807) on the U-shaped part (8) linearly runs in a directional mode on the rear shell left upper guide rail (41); under the action of the centripetal force of the left-turning wheel (6) and the guide rail, the U-shaped part (8) slides linearly along the guide rail tangent to the left-turning wheel (6);
when the opposite linear guide rails are intersected, the right front cover sliding block (805) on the left U-shaped piece (8) is positioned in the front cover right upper guide rail (22) to carry out linear operation, and meanwhile, the right rear cover sliding block (808) on the U-shaped piece (8) is positioned in the rear cover right upper guide rail (52) to carry out linear operation; a right front shell sliding block (802) on the U-shaped piece (8) is in direct-contact positioning linear operation in a front shell right lower guide rail (34), and meanwhile, a right rear shell sliding block (803) on the U-shaped piece (8) is in direct-contact positioning linear operation in a rear shell right lower guide rail (44); continuing to rotate, and linearly transmitting the U-shaped part (8) from the upper left part of the left rotating wheel (6) to the lower right part of the right rotating wheel (7);
the U-shaped part (8) rotates continuously, synchronously and directionally rotates along with the right runner (7), and the rotation is circulated; three U type spare (8) follow three left U type groove (65) of left runner (6) and three right U type groove (78) of right runner (7) in corresponding complementary position directional synchronous revolution, the centre passes through the guide rail and conveys to the runner of opposite side, from left to right, from right to left, the rotation moves in turn, drives annular hairpin (9) in U type spare (8), hair (1) in the annular hairpin (9) circulation operation in turn, realizes that three bundles of hair weave into the braid.
2. A track-fed braider according to claim 1, characterized in that: the driving gear (72) on the motor (71) drives the second transmission gear (63) to rotate in a speed reducing mode through the first reduction gear (73), the second reduction gear (74) and the third reduction gear (75), and the second transmission gear (63) drives the first transmission gear (61), the reverse gear (62), the third transmission gear (76), the left rotating wheel (6) and the right rotating wheel (7) to rotate synchronously.
3. A track-fed braider according to claim 1, characterized in that: the front and back positioning horizontal plane (84) on the U-shaped piece (8) is horizontally positioned and slides with the rear left horizontal plane (60), the front left horizontal plane (66), the rear right horizontal plane (70), the front right horizontal plane (79), the front shell horizontal plane (35) and the rear shell horizontal plane (45).
4. A track-fed braider according to claim 1, characterized in that: when the U-shaped piece (8) rotates synchronously with the left rotating wheel (6), the left orientation lug (64) is matched and oriented in the orientation groove (811) of the rotating cover; when the U-shaped piece (8) rotates synchronously along with the right rotating wheel (7), the right orientation lug (77) is matched and oriented in the orientation groove (83).
5. A track-fed hair braider according to claim 1, characterized in that: u type spare (8) opening side is equipped with rotatory lid (81), and rotatory lid (81) are rotated around column (812) and are opened, conveniently pack into annular hairpin (9), and when rotatory corresponding angle, spherical bump (813) are fixed downtheholely.
6. A track-fed braider according to claim 1, characterized in that: promote retaining member (13) on slip lid (10), pull open slip lid (10), protecgulum T type groove (17) and slip lid T type groove (18) are fixed a position in the track and are slided, push up slip lid (10), and accurate location of slip lid locating piece (16) is in positioning groove.
7. A track-fed hair braider according to claim 1, characterized in that: the annular rubber band (94) is fixed in an upper clamping groove (95) of the upper half-ring hair clip (92), penetrates through the rotating shaft (91), and is fixed in a lower clamping groove of the lower half-ring hair clip (93) at the other side.
CN202210324461.9A 2022-03-30 2022-03-30 Hair braiding machine with guide rail conveying function Active CN114766801B (en)

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CN202210324461.9A CN114766801B (en) 2022-03-30 2022-03-30 Hair braiding machine with guide rail conveying function

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Application Number Priority Date Filing Date Title
CN202210324461.9A CN114766801B (en) 2022-03-30 2022-03-30 Hair braiding machine with guide rail conveying function

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CN114766801A true CN114766801A (en) 2022-07-22
CN114766801B CN114766801B (en) 2024-02-02

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Publication number Priority date Publication date Assignee Title
JP3024761U (en) * 1995-11-17 1996-05-31 株式会社大熊製作所 Hair braiding machine
CN1317941A (en) * 2000-01-28 2001-10-17 李冕雨 Hair plaiting device and its auxiliary device
CN2707911Y (en) * 2004-07-12 2005-07-06 李宝坚 Electronic lock for drawer
CN101374436A (en) * 2003-01-17 2009-02-25 伊莱丝美容产品有限公司 Hair knitting machine
CN203416914U (en) * 2013-09-06 2014-02-05 晋江力利玩具有限公司 Automatic hair plaiting apparatus
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