CN115194463A - Automatic clothes hanger production equipment - Google Patents

Automatic clothes hanger production equipment Download PDF

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Publication number
CN115194463A
CN115194463A CN202210620297.6A CN202210620297A CN115194463A CN 115194463 A CN115194463 A CN 115194463A CN 202210620297 A CN202210620297 A CN 202210620297A CN 115194463 A CN115194463 A CN 115194463A
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CN
China
Prior art keywords
cylinder
feeding
feeding channel
channel
installation module
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Granted
Application number
CN202210620297.6A
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Chinese (zh)
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CN115194463B (en
Inventor
汪文军
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Maoming Rongtong Electronic Technology Co.,Ltd.
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Foshan Lisheng Machinery Equipment Co ltd
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Priority to CN202210620297.6A priority Critical patent/CN115194463B/en
Publication of CN115194463A publication Critical patent/CN115194463A/en
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Publication of CN115194463B publication Critical patent/CN115194463B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P21/00Machines for assembling a multiplicity of different parts to compose units, with or without preceding or subsequent working of such parts, e.g. with programme control
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47GHOUSEHOLD OR TABLE EQUIPMENT
    • A47G25/00Household implements used in connection with wearing apparel; Dress, hat or umbrella holders
    • A47G25/14Clothing hangers, e.g. suit hangers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P19/00Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23PMETAL-WORKING NOT OTHERWISE PROVIDED FOR; COMBINED OPERATIONS; UNIVERSAL MACHINE TOOLS
    • B23P19/00Machines for simply fitting together or separating metal parts or objects, or metal and non-metal parts, whether or not involving some deformation; Tools or devices therefor so far as not provided for in other classes
    • B23P19/001Article feeders for assembling machines
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Branching, Merging, And Special Transfer Between Conveyors (AREA)
  • Feeding Of Articles To Conveyors (AREA)

Abstract

The invention discloses automatic clothes hanger production equipment which comprises a workbench, wherein a central rotary table is arranged at the central position of the workbench and rotates under the driving of a driving motor, a feeding conveyor belt, a third installation module, a second installation module, a first installation module, a fifth installation module and a fourth installation module are sequentially arranged on the workbench in an anticlockwise direction by taking the central rotary table as the circle center, the feeding conveyor belt is used for conveying flat iron to the central rotary table, the first installation module is used for embedding a sliding piece into the flat iron, the second installation module is used for installing a first connecting piece into the flat iron, the third installation module is used for installing a fixing piece into the first connecting piece, the fourth installation module is used for installing a second connecting piece into the flat iron, the fifth installation module is used for embedding a hanging rod into the fixing piece and the sliding piece, and a blanking groove is arranged right below the fifth installation module.

Description

Automatic clothes hanger production equipment
Technical Field
The invention relates to the technical field of clothes hanger production equipment, in particular to automatic clothes hanger production equipment.
Background
The clothes hanger can be fixed inside the wardrobe, the clothes hanger extends out of the wardrobe through the push-pull hanging rod, and then a user can take and place clothes conveniently. Referring to fig. 21, the structure of the clothes hanger comprises a flat iron, a hanging rod, a sliding part, a first connecting part, a second connecting part, a fixing screw and a fixing part, during the production process, the first connecting part and the second connecting part are firstly installed on the flat iron, the first connecting part and the second connecting part are fixed by the fixing screw, the sliding part is installed between the first connecting part and the second connecting part, the fixing part is inserted into a circular ring of the first connecting part, and the hanging ring is arranged on the fixing part and the sliding part in a penetrating manner to finally complete the manufacturing of the clothes hanger.
Disclosure of Invention
Aiming at the problems, the invention provides automatic clothes hanger production equipment, which mainly solves the problems in the background technology.
The invention provides automatic clothes hanger production equipment which comprises a workbench, wherein a central rotary table is arranged at the central position of the workbench, the central rotary table rotates under the driving of a driving motor, a feeding conveyor belt, a third installation module, a second installation module, a first installation module, a fifth installation module and a fourth installation module are sequentially arranged on the workbench in an anticlockwise direction by taking the central rotary table as a circle center, the feeding conveyor belt is used for conveying flat iron to the central rotary table, the first installation module is used for embedding a sliding piece into the flat iron, the second installation module is used for installing a first connecting piece for the flat iron, the third installation module is used for installing a fixing piece for the first connecting piece, the fourth installation module is used for installing a second connecting piece for the flat iron, the fifth installation module is used for embedding a hanging rod into the fixing piece and the sliding piece, and a blanking groove is arranged right below the fifth installation module.
The improved structure of the feeding device is characterized in that a material guiding channel is arranged on the central turntable, an installation channel is arranged at a position adjacent to the material guiding channel, a material guiding block is arranged on the material guiding channel, a first rotating mechanism is further arranged on the central turntable, the first rotating mechanism comprises a first rotating motor and a first rotating platform, the first rotating motor is used for driving the first rotating platform to rotate, a first clamping piece and a first telescopic cylinder are arranged on the first rotating platform, the first telescopic cylinder is used for driving the first clamping piece to move on the first rotating platform, the first clamping piece comprises a first clamping cylinder and a first clamping hand, and the first clamping cylinder is used for controlling loosening and clamping of the first clamping hand.
The improved structure of the sliding part is characterized in that the first installation module comprises a first shell, a first working face is arranged on the first shell, a first feeding channel is arranged on the first working face, a first pushing cylinder is arranged on the first feeding channel, a first pushing block is arranged at the end of a piston rod of the first pushing cylinder, a rectangular groove and a positioning cylinder are arranged on the first pushing block, the outer diameter of the positioning cylinder is equal to the rod diameter of a hanging rod, the groove width of the rectangular groove is equal to the size of the flat iron, a first trough is arranged above the first feeding channel, the first trough is provided with a first feeding channel, the first feeding channel is communicated with the first feeding channel through a first feeding hole, the outline of the first feeding hole is matched with the outline of the sliding part, a first vibrating disc is arranged in the first trough, and a limiting plate is arranged on one side of the first working face.
The second mounting module comprises a second shell, a second working surface is arranged on the second shell, a first feeding mechanism is arranged on the second working surface and used for providing a first connecting piece, a first extrusion plate is arranged on the right side of the first feeding mechanism, a second feeding channel is formed in the first extrusion plate, a second pushing cylinder is arranged on the second feeding channel, a second pushing block is arranged at the piston rod end of the second pushing cylinder, a second trough is arranged above the second feeding channel, a second feeding channel is arranged between the second trough and the second feeding channel, the second trough is communicated with the second feeding channel through a second feeding hole, the outline of the second feeding hole is matched with the outline of a fixing screw, and a second vibrating disc is arranged in the second trough; a first material pressing cylinder is arranged on the left side of the first feeding mechanism, and a first pressing block is arranged at the piston rod end of the first material pressing cylinder.
The improved structure of the hanging rod is characterized in that an opening is formed in the second shell, the shape of the opening is matched with the outline of the first connecting piece, the opening is provided with the first feeding mechanism, the first feeding mechanism comprises a cylinder, a first material pushing sleeve and a first sleeve cylinder, the cylinder is used for hanging the first connecting piece, the outer diameter of the cylinder is smaller than the outer diameter of the hanging rod, the inner diameter of the first material pushing sleeve is larger than the outer diameter of the cylinder and equal to the outer diameter of the first connecting piece, the first material pushing sleeve is sleeved outside the cylinder, and the first sleeve cylinder is used for driving the first material pushing sleeve.
The improvement lies in that the third installation module includes the third casing, be provided with the third working face on the third casing, be provided with third pay-off passageway on the third working face, it pushes away the material cylinder to be provided with the third on the third pay-off passageway, the third pushes away the tailpiece of the piston rod of material cylinder and is provided with the third ejector pad, the top of third pay-off passageway is provided with the third silo, the third silo with be provided with third feed channel between the third pay-off passageway, the third silo passes through third feed inlet UNICOM third feed channel, the outline looks adaptation of third feed inlet profile and mounting, be provided with the third vibration dish in the third silo, the right side of third pay-off passageway is provided with the second and presses the material cylinder, the tailpiece of the piston rod of second and presses the material cylinder to be provided with the second briquetting.
The fourth mounting module comprises a fourth shell, a fourth working surface is arranged on the fourth shell, a second feeding mechanism is arranged on the fourth working surface and used for providing a second connecting piece, a second extrusion plate is arranged on the right side of the second feeding mechanism, a fourth feeding channel is formed in the second extrusion plate and provided with a fourth pushing cylinder, a piston rod end of the fourth pushing cylinder is provided with a fourth pushing block, a fourth trough is arranged above the fourth feeding channel, a fourth feeding channel is arranged between the fourth trough and the fourth feeding channel and communicated with the fourth feeding channel through a fourth feeding hole, the contour of the fourth feeding hole is matched with the contour of a fixing screw, and a fourth vibrating disc is arranged in the fourth trough; the left side of the second feeding mechanism is provided with a third material pressing cylinder, a piston rod end of the third material pressing cylinder is provided with a third pressing block, the bottom of the fourth shell is provided with a translation mechanism, and the translation mechanism is used for controlling the fourth installation module to extend forwards or retreat.
The improved structure of the connector is characterized in that an opening is formed in the fourth shell, the shape of the opening is matched with the outline of the second connecting piece, the opening is provided with the second feeding mechanism, the second feeding mechanism comprises a bar column body, a second pushing sleeve and a second sleeve cylinder, the bar column body is used for hanging the second connecting piece, the second pushing sleeve is arranged outside the bar column body, and the second sleeve cylinder is used for driving the second pushing sleeve.
The further improvement is that the fifth installation module comprises a fifth working surface, a fifth feeding channel is arranged on the fifth working surface, a second rotating mechanism is arranged on one side of the fifth feeding channel, and the second rotating mechanism is used for rotating and clamping the hanging rod; a driving mechanism is arranged on the other side of the fifth feeding channel and comprises a second telescopic cylinder, a third telescopic cylinder, a positioning block and a supporting block, the supporting block is arranged on the side wall of the fifth feeding channel, and the supporting block is used for supporting the flat iron; the piston rod end of the second telescopic cylinder is connected with the third telescopic cylinder, a positioning block is arranged at the piston rod end of the third telescopic cylinder, and the positioning block is used for grabbing the first connecting piece.
The improved structure is characterized in that the second rotating mechanism comprises a second rotating motor, a second rotating platform, a third rotating motor and a third rotating platform, the second rotating motor is used for controlling the second rotating platform to rotate, the third rotating motor is used for controlling the third rotating platform to rotate, the third rotating platform and the second rotating platform are adjacently arranged, a second clamping piece is arranged on the second rotating platform, a third clamping piece is arranged on the third rotating platform, a fourth material pressing air cylinder is arranged in front of the second rotating platform, and a fourth pressing block is arranged at the piston rod end of the fourth material pressing air cylinder.
Compared with the prior art, the invention has the following beneficial effects: the automatic clothes hanger equipment can replace more than 90% of manual operation procedures, improve the automation level of clothes hanger production and obviously improve the production efficiency of clothes hangers.
Drawings
The drawings are for illustrative purposes only and are not to be construed as limiting the patent; for the purpose of better illustrating the present embodiments, certain elements of the drawings may be omitted, enlarged or reduced, and do not represent the size of an actual product; it will be understood by those skilled in the art that certain well-known structures in the drawings and descriptions thereof may be omitted.
FIG. 1 is a schematic perspective view of an embodiment of the present invention;
FIG. 2 is a schematic plan view of an embodiment of the present invention;
FIG. 3 is a schematic plan view of a center turntable according to an embodiment of the present invention;
FIG. 4 is a schematic perspective view of a first mounting module according to an embodiment of the present invention;
FIG. 5 is a cross-sectional view of a first mounting module according to an embodiment of the present invention;
FIG. 6 is a schematic plan view of a first pushing block according to an embodiment of the present invention;
FIG. 7 is a schematic top view of a second mounting module according to an embodiment of the present invention;
FIG. 8 is a schematic view of a second feed through channel according to an embodiment of the present invention;
FIG. 9 is a schematic view of a first feed mechanism channel according to an embodiment of the present invention;
FIG. 10 is a perspective view of a second mounting module according to an embodiment of the present invention;
FIG. 11 is a front view of a second mounting module according to an embodiment of the present invention;
FIG. 12 is a cross-sectional view of a third mounting module according to an embodiment of the present invention;
FIG. 13 is a schematic view of a third feed channel according to an embodiment of the invention;
FIG. 14 is a perspective view of a third mounting module according to an embodiment of the present invention;
FIG. 15 is a plan view of a fourth mounting module in accordance with one embodiment of the present invention;
FIG. 16 is a schematic view of a fourth feed channel according to an embodiment of the invention;
FIG. 17 is a schematic view of a second feed mechanism according to an embodiment of the invention;
FIG. 18 is a front view of a fourth mounting module according to an embodiment of the present invention;
FIG. 19 is a top view of a fifth mounting module in accordance with one embodiment of the present invention;
FIG. 20 is a perspective view of a fifth mounting module in accordance with one embodiment of the present invention;
FIG. 21 is a perspective view of a garment hanger according to an embodiment of the present invention;
FIG. 22 is a schematic plan view of a hanger bar of an embodiment of the present invention;
wherein: 1. a work table; 2. a feed conveyor; 3. a central turntable; 31. a turntable body; 32. a material guide channel; 33. installing a channel; 34. a material guide block; 35. a first rotating electrical machine; 36. a first rotating platform; 37. a first telescopic cylinder; 38. a first clamping member; 391. a first clamping cylinder; 392. a first gripper; 4. a first mounting module; 41. a first housing; 42. a first working surface; 43. a first feed channel; 44. a first material pushing cylinder; 45. a first push block; 451. a rectangular groove; 452. positioning the cylinder; 46. a limiting plate; 47. a first trough; 5. a second mounting module; 51. a second housing; 52. a second working surface; 53. a first feeding mechanism; 531. a cylinder; 532. a first pusher sleeve; 533. a first sleeve cylinder; 54. a second feed channel; 541. a second push block; 542. a second material pushing cylinder; 543. a second feed channel; 544. a second feed port; 545. a second trough; 55. a first squeeze plate; 561. a first pressing block; 562. a first material pressing cylinder; 6. a third mounting module; 61. a third housing; 62. a third working face; 63. a third feed channel; 641. a third push block; 642. a third material pushing cylinder; 651. a second material pressing cylinder; 652. a second pressing block; 66. a third feed channel; 67. a third feed inlet; 68. a third trough; 7. a fourth mounting module; 71. a fourth housing; 72. a fourth working surface; 73. a second feeding mechanism; 731. a bar column; 732. a second pusher sleeve; 733. a second sleeve cylinder; 74. a fourth feed channel; 741. a fourth push block; 742. a fourth material pushing cylinder; 75. a second compression plate; 761. a third pressing block; 762. a third material pressing cylinder; 77. a translation mechanism; 8. a fifth installation module; 81. a fifth working face; 82. a fifth feed channel; 83. a second rotating mechanism; 831. a second rotary platform; 832. a second rotating electrical machine; 833. a second gripping member; 834. a third rotating electrical machine; 835. a third rotary platform; 836. a fourth material pressing cylinder; 84. a drive mechanism; 841. a second telescopic cylinder; 842. a third telescopic cylinder; 843. positioning a block; 844. a supporting block; 9. a charging chute; 100. flat iron; 200. a hanging rod; 300. a slider; 400. a first connecting member; 500. a second connecting member; 600. a fixing screw; 700. and a fixing member.
Detailed Description
In the description of the present invention, it should be noted that, unless otherwise explicitly specified or limited, the terms "mounted" and "connected" are to be construed broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through an intermediary, so to speak, communicating between the two elements. The specific meaning of the above terms in the present invention can be understood in specific cases to those skilled in the art. The technical solution of the present invention is further described with reference to the drawings and the embodiments.
Referring to fig. 1 and 2, an automatic clothes hanger production apparatus includes a workbench 1, a central turntable 3 is disposed at a central position of the workbench 1, the central turntable 3 rotates under the driving of a driving motor, a feeding conveyor 2, a third installation module 6, a second installation module 5, a first installation module 4, a fifth installation module 8, and a fourth installation module 7 are sequentially disposed on the workbench 1 in an anticlockwise direction with the central turntable 3 as a center, the feeding conveyor 2 is configured to convey a flat iron 100 to the central turntable 3, the first installation module 4 is configured to embed a slider 300 into the flat iron 100, the second installation module 5 is configured to install a first connector 400 into the flat iron 100, the third installation module 6 is configured to install a fixture 700 into the first connector 400, the fourth installation module 7 is configured to install a second connector 500 into the flat iron 100, the fifth installation module 8 is configured to embed a hanging rod 200 into the fixture 700 and the slider 300, and a chute 9 is disposed right below the fifth installation module 8.
Specifically, the feeding conveyor belt 2 is used for conveying the flat iron 100 into the central turntable 3, and the structural design thereof is not the same as that of the conveyor belt in the prior art, and is a conventional technical means of those skilled in the art, and is not described herein again; the central turntable 3 is a core component of the automatic equipment, the central turntable 3 can clamp the flat iron 100 to complete two actions of stretching and rotating, and the flat iron 100 is respectively sent into five installation modules to be processed so as to complete the manufacture of the clothes hanger; the first installation module 4 is used for embedding the flat iron 100 into the sliding part 300, the second installation module 5 and the fourth installation module 7 are used for fixedly installing the first connecting piece 400 and the second connecting piece 500 for the flat iron 100 at the same time, the third installation module 6 is used for embedding the first connecting piece 400 into the fixing piece 700, the fifth installation module 8 is used for embedding the fixing piece 700 and the sliding part 300 into the hanging rod 200, the independent manufacturing of the clothes hanger is completed, and then the blanking is completed to the blanking groove 9 to complete the collection. The specific structure of the central turntable 3 and the respective mounting modules is referred to below.
Referring to fig. 2 and 3, a material guiding channel 32 is disposed on the central rotating disk 3, an installation channel 33 is disposed at a position adjacent to the material guiding channel 32, a material guiding block 34 is disposed on the material guiding channel 32, the material guiding channel 32 is used for abutting against a feeding conveyor belt, the material guiding block 34 is designed to send the flat iron 100 to the installation channel 33 according to a specific position, the installation channel 33 is a working channel of the flat iron 100, a first rotating mechanism is further disposed on the central rotating disk 3, the first rotating mechanism includes a first rotating motor 35 and a first rotating platform 36, the first rotating motor 35 is used for driving the first rotating platform 36 to rotate, a first clamping member 38 and a first telescopic cylinder 37 are disposed on the first rotating platform 36, the first clamping member 38 includes a first clamping cylinder 391 and a first clamping hand 392, the first clamping cylinder 392 is used for controlling the unclamping of the first clamping hand 391, and a specific clamping cylinder is a clamping cylinder, and a clamping structure of the prior art is not described herein.
Referring to fig. 4 to 6, the first mounting module 4 includes a first housing 41, a first working surface 42 is provided on the first housing 41, a first feeding channel 43 is provided on the first working surface 42, a first pushing cylinder 44 is provided on the first feeding channel 43, a first pushing block 45 is provided at a piston rod end of the first pushing cylinder 44, a rectangular groove 451 and a positioning cylinder 452 are provided on the first pushing block 45, an outer diameter of the positioning cylinder 452 is equal to a rod diameter of the hanging rod 200, a groove width of the rectangular groove 451 is the same as a size of the flat iron 100, a first chute 47 is provided above the first feeding channel 43, a shape of the first pushing block 45 is fitted to a shape of the slider 300, which is intended to completely feed the slider 300 into the flat iron 100, a first feeding channel is provided between the first chute 47 and the first feeding channel 43, the first chute 47 communicates with the first feeding channel through a first feeding inlet, the first profile is adapted to an outer contour of the slider 300, the first feeding channel 47 is provided with a first feeding channel 47 that is provided with a feeding inlet, the first chute 47 communicates with the first feeding channel, and a limiting plate 46 is designed to prevent the slider from entering the main feeding hole, and the main vibration disc 300, and the main vibration disc is designed to prevent the slider from being misaligned, and the first feeding hole 46 is provided at a limiting plate design, and the first feeding hole 46.
Referring to fig. 7 to 11, the second mounting module 5 includes a second housing 51, a second working surface 52 is disposed on the second housing 51, the second working surface 52 is provided with a first feeding mechanism 53, the first feeding mechanism 53 is used for providing a first connecting piece 400, a first pressing plate 55 is provided at the right side of the first feeding mechanism 53, and after the fixing bolt is inserted into the flat iron 100 and the first connecting member 400, the first telescopic cylinder 37 drives the flat iron 100 to retreat onto the extrusion plate, the fixing screw 600 can be tightly pressed on the extrusion plate, then the fixing screw 600 is fastened by the force of the first pressing cylinder 562 to complete the fixed connection of the first connecting piece 400, the first extrusion plate 55 is provided with a second feeding channel 54, the second feeding channel 54 is provided with a second pushing cylinder 542, a second pushing block 541 is arranged at the piston rod end of the second pushing cylinder 542, the second pushing cylinder 542 is used for embedding the fixing screw 600 into the flat iron 100 and the first connecting piece 400, a second material groove 545 is arranged above the second feeding channel 54, a second feeding channel 543 is arranged between the second material groove 545 and the second feeding channel 54, the second trough 545 is communicated with the second feed channel 543 through a second feed inlet 544, the profile of the second feed inlet 544 is matched with the profile of the fixing screw 600, a second vibrating disk is arranged in the second trough 545, the design of the trough and the design of the vibrating disk are conventional in material pouring in the industrial field, and will not be described in detail herein, meanwhile, the shape of the second feed opening 544 fits the shape of the set screw 600, which may play a role in selection, so that the fixing screws 600 can enter the second feeding channel 54 according to the preset placing positions; a first material pressing cylinder 562 is arranged on the left side of the first feeding mechanism 53, and a first pressing block 561 is arranged at the piston rod end of the first material pressing cylinder 562.
Referring to fig. 9, an opening is formed in the second housing 51, the shape of the opening is adapted to the outer contour of the first connecting element 400, the first feeding mechanism 53 is disposed at the opening, the first feeding mechanism 53 includes a cylinder 531, a first pushing sleeve 532 and a first sleeve cylinder 533, the cylinder 531 is used for suspending the first connecting element 400, the first connecting element 400 needs to be manually placed on the cylinder 531, the outer diameter of the cylinder 531 is smaller than the outer diameter of the hanging rod 200, the inner diameter of the first pushing sleeve 532 is larger than the outer diameter of the cylinder 531 and equal to the outer diameter of the first connecting element 400, the first pushing sleeve 532 is sleeved on one side of the cylinder 531, the first sleeve cylinder 533 is used for driving the first pushing sleeve 532, an infrared sensor is disposed on the other side of the cylinder 531, and when there is no first connecting element 400 on the other side of the cylinder 531 to block the infrared sensor, the first sleeve cylinder 533 pushes the first pushing sleeve 532 to withdraw the first connecting element 400 from the end of the cylinder 531.
Referring to fig. 12 to 14, the third mounting module 6 includes a third housing 61, the third housing 61 is provided with a third working surface 62, the third working surface 62 is provided with a third feeding channel 63, the third feeding channel 63 is provided with a third pushing cylinder 642, a piston rod end of the third pushing cylinder 642 is provided with a third push block 641, the third pushing cylinder 642 is used for embedding the fixing member 700 into the first connecting member 400, a third trough 68 is provided above the third feeding channel 63, a third feeding channel 66 is provided between the third trough 68 and the third feeding channel 63, the third trough 68 is communicated with the third feeding channel 66 through a third feeding hole 67, the contour of the third feeding hole 67 is adapted to the outer contour of the fixing member 700, a third vibration disc is provided in the third trough 68, the design of either a trough or a vibration disc is a conventional design of material pouring in the industrial field, which is not described herein, and the shape of the third feeding hole 67 is fitted to the shape of the fixing member 700, so that the fixing member 67 can play a role of placing a fixing member 700, and a role of placing a pressing block 652 can be placed in a position where the second pressing cylinder 652 is provided at which the second pressing cylinder 652 can be placed in a position where the second pressing block 700 is not provided.
Referring to fig. 15 to 18, the fourth mounting module 7 includes a fourth housing 71, a fourth working surface 72 is disposed on the fourth housing 71, a second feeding mechanism 73 is disposed on the fourth working surface 72, the second feeding mechanism 73 is used for providing a second connecting member 500, a second pressing plate 75 is disposed on the right side of the second feeding mechanism 73, the second pressing plate 75 is used for embedding a fixing bolt into the flat iron 100 and the second connecting member 500, the translation mechanism 77 retracts to drive the flat iron 100 to the pressing plate, the fixing bolt 600 can be tightly pressed against the pressing plate, the fixing bolt 600 is fastened by a force of a third pressing cylinder 762 to complete the fixed connection of the second connecting member 500, a fourth feeding channel 74 is disposed on the second pressing plate 75, a fourth pushing cylinder 742 is disposed on the fourth feeding channel 74, a piston rod end of the fourth pushing cylinder 742 is disposed with a fourth pushing block 741, the fourth material pushing cylinder 742 is used for embedding the fixing screw 600 into the flat iron 100 and the second connecting piece 500, a fourth material groove is arranged above the fourth material feeding channel 74, a fourth material feeding channel is arranged between the fourth material groove and the fourth material feeding channel 74, the fourth material groove is communicated with the fourth material feeding channel through a fourth material feeding hole, the contour of the fourth material feeding hole is matched with the outer contour of the fixing screw 600, a fourth vibration disc is arranged in the fourth material groove, the design of the material groove and the design of the vibration disc are both conventional design of material dumping in the industrial field, and redundant description is omitted herein, meanwhile, the shape of the fourth material feeding hole is matched with the shape of the fixing screw 600, so that a selecting function can be achieved, and the fixing screw 600 can enter the fourth material feeding channel 74 according to a preset placing position; the left side of the second feeding mechanism 73 is provided with a third material pressing cylinder 762, a piston rod end of the third material pressing cylinder 762 is provided with a third pressing block 761, the bottom of the fourth housing 71 is provided with a translation mechanism 77, the translation mechanism 77 is used for controlling the fourth installation module 7 to extend forward or backward, due to the first rotation mechanism and the arrangement, the flat iron 100 cannot be close to and extend into the working surface of the fourth installation module 7, and therefore the fourth installation module 7 needs to be actively close to the flat iron 100, and therefore the translation mechanism 77 is needed, and the specific structure of the translation mechanism 77 is the prior art, any structure capable of driving an object to extend forward or retract in the prior art can be used on the translation mechanism 77 of the present application, and no specific limitation is made here.
Referring to fig. 17, an opening is formed in the fourth housing 71, the shape of the opening is adapted to the outer contour of the second connector 500, the second feeding mechanism 73 is disposed at the opening, the second feeding mechanism 73 includes a bar column 731, a second pushing sleeve 732 and a second sleeve cylinder 733, the bar column 731 is used for suspending the second connector 500, and the second connector 500 needs to be manually placed on the bar column 731, the second pushing sleeve 732 is sleeved on one side of the bar column 731, the second sleeve cylinder 733 is used for driving the second pushing sleeve 732, an infrared sensor is disposed on the other side of the bar column 731, and when there is no second connector 500 on the other side of the bar column 731 to block the infrared sensor, the second sleeve cylinder 733 pushes the second pushing sleeve 732 to withdraw the second connector 500 to the end of the bar column 731.
Referring to fig. 19 to 20, the fifth installation module 8 includes a fifth working surface 81, a fifth feeding channel 82 is disposed on the fifth working surface 81, a second rotating mechanism 83 is disposed on one side of the fifth feeding channel 82, and the second rotating mechanism 83 is used for rotating and clamping the hanging rod 200; a driving mechanism 84 is arranged on the other side of the fifth feeding channel 82, the driving mechanism 84 comprises a second telescopic cylinder 841, a third telescopic cylinder 842, a positioning block 843 and a supporting block 844, the supporting block 844 is arranged on the side wall of the fifth feeding channel 82, and the supporting block 844 is used for supporting the flat iron 100; the piston rod end of the second telescopic cylinder 841 is connected with the third telescopic cylinder 842, the piston rod end of the third telescopic cylinder 842 is provided with a positioning block 843, the positioning block 843 is used for grabbing the first connecting piece 400, the positioning piece and the clamping piece are the same as in the prior art, and any structure capable of fixing the flat iron 100 in the prior art can be used on the positioning piece in the application, and is not specifically limited here.
Referring to fig. 19 to 20, the second rotating mechanism 83 includes a second rotating motor 832, a second rotating platform 831, a third rotating motor 834 and a third rotating platform 835, the second rotating motor 832 is configured to control the second rotating platform 831 to rotate, the third rotating motor 834 is configured to control the third rotating platform 835 to rotate, the third rotating platform 835 and the second rotating platform 831 are adjacently disposed, the second rotating platform 831 is provided with a second clamping member 833, the third rotating platform 835 is provided with a third clamping member, a fourth pressing cylinder 836 is disposed in front of the second rotating platform 831, a piston rod end of the fourth pressing cylinder 836 is provided with a fourth pressing block, specifically, referring to fig. 22, the second rotating platform 831 is provided with a second clamping member 833, and the second clamping member 833 is configured to clamp the a surface a of the hanging rod 200, so as to control the rotating direction of the a surface of the hanging rod 200; the third rotating platform 835 is provided with a third clamping member for clamping the surface B of the hanging rod 200, and further controls the rotating direction of the surface B of the hanging rod 200. The purpose is that after the hanging rod 200 is clamped, the second rotating platform 831 controls the surface a of the hanging rod 200 to rotate to a position parallel to the flat iron 100, the sliding part 300 and the fixing part 700 on the flat iron 100 are respectively arranged on the hanging rod 200 in a penetrating manner through the driving mechanism 84, the third rotating platform 835 controls the surface B of the hanging rod 200 to rotate to a position parallel to the flat iron 100, the fourth material pressing cylinder 836 is synchronously started, the fourth pressing block presses the sliding part 300, so that the surface B of the hanging rod 200 is completely embedded into the sliding part 300, and automatic production of the clothes hanger is achieved. It should be noted that the fourth pressing block does not obstruct the entrance of the fixing member 700, but obstructs the entrance of the sliding member 300, that is, the sliding member 300 cannot be disposed behind the fourth pressing block as the fixing member 700, but can be stopped at the front to wait to be inserted into the B surface of the rack 200.
The automatic production method and the working principle of the invention are as follows:
(1) The flat iron 100 is sent into the central turntable 3 by the feeding conveyor belt and enters the mounting channel 33 under the material guiding of the material guiding channel 32, and the first clamping cylinder 391 controls the first clamping piece 38 to clamp the flat iron 100;
(2) After the central turntable 3 rotates for a certain angle, the central turntable is opposite to the first installation module 4, the first telescopic cylinder 37 controls the first clamping piece 38 to extend, the flat iron 100 enters the first working surface 42, the first material pushing cylinder 44 pushes the first pushing block 45 to embed the sliding piece 300 into the flat iron 100, then the first pushing block 45 retracts, the sliding piece 300 of the first feeding channel enters the first feeding channel 43 again, and the first telescopic cylinder 37 controls the first clamping piece 38 to retract;
(3) After the central turntable 3 rotates for a certain angle, the central turntable 3 is opposite to the second installation module 5, the first rotating motor 35 controls the first rotating platform 36 to rotate so that the first clamping piece 38 and the central turntable 3 are perpendicular to each other, meanwhile, the first telescopic cylinder 37 controls the first clamping piece 38 to extend, the flat iron 100 enters the second working surface 52, the first sleeve cylinder 533 withdraws the first connecting piece 400, the second pushing cylinder 542 controls the second pushing block 541 to insert the fixing screw 600 into the flat iron 100 and the first connecting piece 400, the first telescopic cylinder 37 controls the flat iron 100 to retract to the first extrusion plate 55, the first pressing cylinder 562 drives the first pressing block 561 to fasten the fixing screw 600 on the first connecting piece 400, the new fixing screw 600 on the second feeding channel 543 falls into the second feeding channel 54, the first sleeve cylinder 533 pushes the new first connecting piece 400 to the tail end of the cylinder 531, and the first telescopic cylinder 37 controls the flat iron 100 to retract;
(4) The translation mechanism 77 controls the fourth installation module 7 to extend forwards, the other end of the flat iron 100 passively enters the fourth working surface 72, the second sleeve cylinder 733 pushes out the second connecting piece 500, the fourth pushing cylinder 742 controls the fourth pushing block 741 to embed the fixing screw 600 into the flat iron 100 and the second connecting piece 500, the translation mechanism 77 retreats to control the second connecting piece 500 to the second extrusion plate 75, and the third pressing cylinder 762 drives the third pressing block 761 to fasten the fixing screw 600 on the second connecting piece 500; then the fourth push block 741 retracts, a new fixing screw 600 on the fourth feeding channel falls into the fourth feeding channel 74, the second sleeve cylinder 733 pushes the new second connecting piece 500 to the tail end of the bar column 731, and the translation mechanism 77 controls the fourth installation module 7 to reset;
(5) After the central turntable 3 rotates for a certain angle, the central turntable is opposite to the third installation module 6, the first telescopic cylinder 37 controls the first clamping piece 38 to extend, the flat iron 100 enters the third working surface 62, the third pushing cylinder 642 pushes the third pushing block 641 to embed the fixing piece 700 into the flat iron 100, and meanwhile, the second pressing cylinder 651 controls the second pressing block 652 to tightly push against the lower side of the first connecting piece 400 to prevent the second connecting piece 500 from moving; then the third pushing block 641 retracts, the fixing member 700 of the third feeding channel 66 reenters the third feeding channel 63, and the first telescopic cylinder 37 controls the first clamping member 38 to retract;
(6) After the central turntable 3 rotates for a certain angle, the central turntable 3 is opposite to the fifth installation module 8, the first rotating platform 36 is reset until the flat iron 100 and the central turntable 3 are parallel to each other, the first telescopic cylinder 37 controls the first clamping piece 38 to extend, the flat iron 100 enters the fifth feeding channel 82, the first clamping piece 38 is loosened, the positioning piece clamps the flat iron 100 and moves forward under the driving of the second telescopic cylinder 841, and the supporting block 844 prevents the flat iron 100 from falling down, so that the flat iron 100 can always move forward at an angle parallel to the surface of the workbench 1; meanwhile, in the advancing process, the second clamping piece 833 is clamped to clamp the hanging rod 200, and the second rotating platform 831 rotates to the angle at which the hanging rod 200 is flush with the flat iron 100, noting that: at this time, the fact that the hanging rod 200 is flush with the flat iron 100 means that other surfaces of the hanging rod 200 except the surface B are flush with the flat iron 100, the surface B of the hanging rod 200 is still at a position forming a certain angle with the flat iron 100 under clamping of the third clamping piece, and preferably, the angle is smaller than 90 degrees;
(7) The fixed part 700 extends into the hanging rod 200, then the sliding part 300 also extends into the hanging rod 200 and is blocked by a fourth pressing block, at the moment, the third rotating platform 835 controls the third clamping part to rotate, so that the surface of the hanging rod 200B rotates and falls to the same horizontal plane with the surface of the hanging rod 200A, and the fourth pressing air cylinder 836 controls the fourth pressing block to push the sliding block, so that a round rod on the surface of the hanging rod 200A is embedded into the sliding part 300, and the clothes rack is assembled;
(8) The third telescopic cylinder 842 controls the positioning piece to reset, and the flat iron 100 loses the driving force instantly and falls into the charging chute 9 as a free falling body to complete material collection.
In the drawings, the positional relationship is described for illustrative purposes only and is not to be construed as limiting the present patent; it should be understood that the above-described embodiments of the present invention are merely examples for clearly illustrating the present invention, and are not intended to limit the embodiments of the present invention. Other variations and modifications will be apparent to persons skilled in the art in light of the above description. This need not be, nor should it be exhaustive of all embodiments. Any modification, equivalent replacement, and improvement made within the spirit and principle of the present invention should be included in the protection scope of the claims of the present invention.

Claims (10)

1. The utility model provides a clothes hanger automated production equipment, characterized in that, includes workstation (1), the central point of workstation (1) puts and is provided with central carousel (3), central carousel (3) rotation under driving motor's drive, use on workstation (1) central carousel (3) is the centre of a circle, has set gradually feeding conveyer belt (2), third installation module (6), second installation module (5), first installation module (4), fifth installation module (8) and fourth installation module (7) on the counter-clockwise, feeding conveyer belt (2) are used for conveying band iron (100) central carousel (3), first installation module (4) are used for embedding slider (300) for band iron (100), second installation module (5) are used for installing first connecting piece (400) for band iron (100), third installation module (6) are used for installing mounting (700) for first connecting piece (400), fourth installation module (7) are used for installing second connecting piece (500) for band iron (100), fifth installation module (8) are used for hanging rod (200) embedding slider (200) and mounting module (9) are provided with the silo (700), the interior.
2. The automatic clothes hanger production equipment as claimed in claim 1, wherein a material guiding channel (32) is arranged on the central rotary table (3), a mounting channel (33) is arranged at a position adjacent to the material guiding channel (32), a material guiding block (34) is arranged on the material guiding channel (32), a first rotating mechanism is further arranged on the central rotary table (3), the first rotating mechanism comprises a first rotating motor (35) and a first rotating platform (36), the first rotating motor (35) is used for driving the first rotating platform (36) to rotate, a first clamping member (38) and a first telescopic cylinder (37) are arranged on the first rotating platform (36), the first telescopic cylinder (37) is used for driving the first clamping member (38) to move on the first rotating platform (36), the first clamping member (38) comprises a first clamping cylinder (391) and a first clamping hand (392), and the first clamping cylinder (392) is used for controlling the loosening clamping of the first clamping hand (392).
3. The automatic clothes hanger production equipment according to claim 1, wherein the first mounting module (4) comprises a first casing (41), a first working surface (42) is formed on the first casing (41), a first feeding channel (43) is formed on the first working surface (42), a first pushing cylinder (44) is arranged on the first feeding channel (43), a first pushing block (45) is arranged at a piston rod end of the first pushing cylinder (44), a rectangular groove (451) and a positioning cylinder (452) are formed on the first pushing block (45), the outer diameter of the positioning cylinder (452) is equal to the rod diameter of the hanging rod (200), the groove width of the rectangular groove (451) is equal to the size of the flat iron (100), a first feeding groove (47) is formed above the first feeding channel (43), a first feeding channel is formed between the first feeding groove (47) and the first feeding channel (43), the first feeding channel (47) is communicated with the first feeding hole, a first feeding hole is formed in the first feeding channel, a first feeding hole is communicated with the first feeding hole, a first outer contour of the first feeding disc (46) is formed in the first feeding hole (47), and a first feeding disc (46) is arranged in the first feeding hole.
4. The automatic clothes hanger production equipment according to claim 1, wherein the second mounting module (5) comprises a second housing (51), a second working surface (52) is arranged on the second housing (51), a first feeding mechanism (53) is arranged on the second working surface (52), the first feeding mechanism (53) is used for providing a first connecting piece (400), a first pressing plate (55) is arranged on the right side of the first feeding mechanism (53), a second feeding channel (54) is arranged on the first pressing plate (55), a second feeding cylinder (542) is arranged on the second feeding channel (54), a second pushing block (541) is arranged at the piston rod end of the second feeding cylinder (542), a second trough (545) is arranged above the second feeding channel (54), a second feeding channel (543) is arranged between the second trough (545) and the second feeding channel (54), the second feeding channel (543) is communicated with a second feeding hole (544), and a second feeding hole (545) is arranged in the second feeding channel (545) and is matched with the outer contour of the vibrating plate (600); a first material pressing cylinder (562) is arranged on the left side of the first feeding mechanism (53), and a first pressing block (561) is arranged at the piston rod end of the first material pressing cylinder (562).
5. The automatic clothes hanger production equipment according to claim 4, wherein an opening is formed in the second casing (51), the shape of the opening is matched with the outer contour of the first connecting piece (400), the first feeding mechanism (53) is arranged at the opening, the first feeding mechanism (53) comprises a cylinder (531), a first pushing sleeve (532) and a first sleeve cylinder (533), the cylinder (531) is used for hanging the first connecting piece (400), the outer diameter of the cylinder (531) is smaller than the outer diameter of the hanging rod (200), the inner diameter of the first pushing sleeve (532) is larger than the outer diameter of the cylinder (531) and equal to the outer diameter of the first connecting piece (400), the first pushing sleeve (532) is sleeved on the outside of the cylinder (531), and the first sleeve cylinder (533) is used for driving the first pushing sleeve (532).
6. The automatic clothes hanger production equipment according to claim 1, wherein the third mounting module (6) comprises a third housing (61), a third working surface (62) is arranged on the third housing (61), a third feeding channel (63) is arranged on the third working surface (62), a third pushing cylinder (642) is arranged on the third feeding channel (63), a third pushing block (641) is arranged at a piston rod end of the third pushing cylinder (642), a third trough (68) is arranged above the third feeding channel (63), a third feeding channel (66) is arranged between the third trough (68) and the third feeding channel (63), the third trough (68) is communicated with the third feeding channel (66) through a third feeding port (67), the contour of the third feeding channel (67) is matched with the outer contour of the fixing piece (700), a third material tray is arranged in the third trough (68), a second material pressing cylinder (651) is arranged at the right side of the third feeding channel (63), and a second pressing block (652) is arranged at a piston rod end of the second pressing cylinder (652).
7. The automatic clothes hanger production equipment according to claim 1, wherein the fourth mounting module (7) comprises a fourth housing (71), a fourth working surface (72) is arranged on the fourth housing (71), a second feeding mechanism (73) is arranged on the fourth working surface (72), the second feeding mechanism (73) is used for providing the second connecting piece (500), a second pressing plate (75) is arranged on the right side of the second feeding mechanism (73), a fourth feeding channel (74) is arranged on the second pressing plate (75), a fourth pushing cylinder (742) is arranged on the fourth feeding channel (74), a fourth push block (741) is arranged at the piston rod end of the fourth pushing cylinder (742), a fourth trough is arranged above the fourth feeding channel (74), a fourth feeding channel is arranged between the fourth trough and the fourth feeding channel (74), the fourth trough is communicated with the fourth feeding channel through a fourth feeding port, the contour of the fourth feeding channel is adapted to the outer contour of the fixed vibrating channel (600), and a fourth trough is arranged in the fourth feeding channel; the left side of second feeding mechanism (73) is provided with third material cylinder (762), the tailpiece of the piston rod of third material cylinder (762) is provided with third briquetting (761), the bottom of fourth casing (71) is provided with translation mechanism (77), translation mechanism (77) are used for controlling fourth installation module (7) is stretched forward or is retreated.
8. The automatic clothes hanger production equipment according to claim 7, wherein an opening is formed in the fourth casing (71), the shape of the opening is matched with the outer contour of the second connecting piece (500), the second feeding mechanism (73) is arranged at the opening, the second feeding mechanism (73) comprises a bar cylinder (731), a second pushing sleeve (732) and a second sleeve cylinder (733), the bar cylinder (731) is used for hanging the second connecting piece (500), the second pushing sleeve (732) is sleeved outside the bar cylinder (731), and the second sleeve cylinder (733) is used for driving the second pushing sleeve (732).
9. The automatic clothes hanger production equipment according to claim 1, wherein the fifth mounting module (8) comprises a fifth working surface (81), a fifth feeding channel (82) is arranged on the fifth working surface (81), a second rotating mechanism (83) is arranged on one side of the fifth feeding channel (82), and the second rotating mechanism (83) is used for rotating and clamping the hanging rod (200); a driving mechanism (84) is arranged on the other side of the fifth feeding channel (82), the driving mechanism (84) comprises a second telescopic cylinder (841), a third telescopic cylinder (842), a positioning block (843) and a supporting block (844), the supporting block (844) is arranged on the side wall of the fifth feeding channel (82), and the supporting block (844) is used for supporting the flat iron (100); the piston rod end of the second telescopic cylinder (841) is connected with the third telescopic cylinder (842), the piston rod end of the third telescopic cylinder (842) is provided with a positioning block (843), and the positioning block (843) is used for grabbing the first connecting piece (400).
10. The automatic clothes hanger production equipment according to claim 9, wherein the second rotating mechanism (83) comprises a second rotating motor (832), a second rotating platform (831), a third rotating motor (834) and a third rotating platform (835), the second rotating motor (832) is used for controlling the second rotating platform (831) to rotate, the third rotating motor (834) is used for controlling the third rotating platform (835) to rotate, the third rotating platform (835) and the second rotating platform (831) are adjacently arranged, a second clamping piece (833) is arranged on the second rotating platform (831), the third rotating platform (835) is provided with a third clamping piece, a fourth pressing cylinder (836) is arranged in front of the second rotating platform (831), and a piston rod end of the fourth pressing cylinder (836) is provided with a fourth pressing block.
CN202210620297.6A 2022-06-02 2022-06-02 Automatic production equipment for clothes hanger Active CN115194463B (en)

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Application Number Priority Date Filing Date Title
CN202210620297.6A CN115194463B (en) 2022-06-02 2022-06-02 Automatic production equipment for clothes hanger

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Application Number Priority Date Filing Date Title
CN202210620297.6A CN115194463B (en) 2022-06-02 2022-06-02 Automatic production equipment for clothes hanger

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CN115194463A true CN115194463A (en) 2022-10-18
CN115194463B CN115194463B (en) 2023-06-13

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5272806A (en) * 1988-12-20 1993-12-28 Plasti-Form Enterprises, Inc. Machine for injection molding and stacking indexing caps for clothes hangers
CN107350800A (en) * 2017-08-11 2017-11-17 嘉兴国松衣架有限公司 A kind of clothes hanger automatic assembling mechanism
CN109950774A (en) * 2019-03-27 2019-06-28 乐清市世创电子有限公司 A kind of DC socket process equipment
CN110977455A (en) * 2019-12-20 2020-04-10 嘉兴国松衣架有限公司 Automatic film and clamp spring assembling integrated machine for producing clothes hangers
CN211363543U (en) * 2019-12-10 2020-08-28 黄生荣 Full-automatic clothes hanger hook inserting machine
CN113771180A (en) * 2020-06-10 2021-12-10 刘伟明 Solid wood clothes hanger and production method thereof

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5272806A (en) * 1988-12-20 1993-12-28 Plasti-Form Enterprises, Inc. Machine for injection molding and stacking indexing caps for clothes hangers
CN107350800A (en) * 2017-08-11 2017-11-17 嘉兴国松衣架有限公司 A kind of clothes hanger automatic assembling mechanism
CN109950774A (en) * 2019-03-27 2019-06-28 乐清市世创电子有限公司 A kind of DC socket process equipment
CN211363543U (en) * 2019-12-10 2020-08-28 黄生荣 Full-automatic clothes hanger hook inserting machine
CN110977455A (en) * 2019-12-20 2020-04-10 嘉兴国松衣架有限公司 Automatic film and clamp spring assembling integrated machine for producing clothes hangers
CN113771180A (en) * 2020-06-10 2021-12-10 刘伟明 Solid wood clothes hanger and production method thereof

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