CN113276590B - Soft packet of gold spring onions powder filling device of skin carving that can pinpoint - Google Patents

Soft packet of gold spring onions powder filling device of skin carving that can pinpoint Download PDF

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Publication number
CN113276590B
CN113276590B CN202110544613.1A CN202110544613A CN113276590B CN 113276590 B CN113276590 B CN 113276590B CN 202110544613 A CN202110544613 A CN 202110544613A CN 113276590 B CN113276590 B CN 113276590B
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fixedly connected
rotating shaft
groups
powder
soft package
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CN113276590A (en
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苏皓
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Suzhou Quanxing Furniture Co ltd
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Suzhou Quanxing Furniture Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C1/00Processes, not specifically provided for elsewhere, for producing decorative surface effects
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C1/00Processes, not specifically provided for elsewhere, for producing decorative surface effects
    • B44C1/18Applying ornamental structures, e.g. shaped bodies consisting of plastic material
    • 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
    • Y02P70/00Climate change mitigation technologies in the production process for final industrial or consumer products
    • Y02P70/10Greenhouse gas [GHG] capture, material saving, heat recovery or other energy efficient measures, e.g. motor control, characterised by manufacturing processes, e.g. for rolling metal or metal working

Abstract

The invention relates to the field of leather carving soft package production, in particular to a leather carving soft package glitter powder filling device capable of being accurately positioned. The technical problem of the invention is that: the utility model provides a but soft packet of gold spring onions powder filling device of skin carving of accurate location. The technical implementation scheme of the invention is as follows: the utility model provides a but soft packet of gold spring onions powder filling device of skin carving of accurate location, is including expansion and conveying subassembly, powder sprinkling subassembly, compress tightly and remove dust subassembly, fore-stock, after-poppet, control cabinet, first vibrations parts, second vibrations parts, gold spring onions powder output parts and conveyer pipe. The invention realizes the sequential gold onion powder filling treatment and the excessive gold onion powder absorbing treatment of the soft package, ensures that the concave part of the soft package is in an outward expansion state when the gold onion powder filling treatment is carried out, and can realize that the gold onion powder is tightly attached to and compacted at each inner surface of the concave part of the soft package when rebounding inwards through the inner surfaces of four sides of the soft package in the subsequent compaction work.

Description

Soft packet of gold spring onions powder filling device of skin carving that can pinpoint
Technical Field
The invention relates to the field of leather carving soft package production, in particular to a leather carving soft package glitter powder filling device capable of being accurately positioned.
Background
As a surface treatment material with unique effect, the glitter powder is widely applied to the fields of artware, cosmetics, silk-screen printing industry, furniture spray painting and the like, and is characterized in that the visual effect of the product is enhanced, and the decorative part is concave-convex and layered and has better stereoscopic impression. The high-flash property of the decoration makes the decoration more vivid and more colorful.
In the process of producing the leather carving soft package, after the lacquer line carving is fixed in the concave part of the soft package, glitter powder is required to be adhered to the concave part of the soft package at the periphery of the lacquer line carving, so that the glitter powder can cover and shield the joint of the lacquer line carving and the concave part of the soft package, and the lacquer line carving and the soft package are in natural transitional connection, however, when the glitter powder is filled in the leather carving soft package in the prior art, the following problems exist, firstly, because the concave part in the soft package has position deviation, the bottom surface of a used pressing plate is smaller than the upper surface of the glitter powder filled in the concave part of the soft package, during the glitter powder is compacted, the pressing plate cannot completely cover the glitter powder, so that the glitter powder obtained after compaction is in a state that the middle is compact and the periphery is loose, in addition, after the pressing plate presses the glitter powder, and a dust suction device sucks and removes redundant glitter powder scattered on the non-concave part of the soft package, dust extraction easily removes the partly gold spring onions powder that the clamp plate can not cover when the sunken department with soft package, finally leads to the gold spring onions powder of soft package to pack the product and deviates from the anticipated effect.
Therefore, an automatic device capable of accurately positioning the concave part of the soft bag for loading glitter powder is urgently needed to solve the problems.
Disclosure of Invention
In order to overcome the defects that the depressed part in the soft package has position deviation, the bottom surface of the used pressing plate is smaller than the upper surface of the glitter powder filled in the depressed part of the soft package, so that the pressing plate can not completely cover the glitter powder, the glitter powder obtained after compaction is in a state that the middle is compact and the periphery is loose, and in addition, a dust suction device can easily suck and remove part of glitter powder which can not be covered by the pressing plate when passing through the depressed part of the soft package, the invention has the technical problems that: the utility model provides a but soft packet of gold spring onions powder filling device of skin carving of accurate location.
The technical implementation scheme of the invention is as follows: a leather carving soft-package glitter powder filling device capable of being accurately positioned comprises an expansion and transmission assembly, a powder spraying assembly, a pressing and dedusting assembly, a front support, a rear support, a control console, a first vibration machine part, a second vibration machine part, glitter powder output machine parts and a conveying pipe; the expansion and transmission assembly is connected with the front bracket; the expansion and transmission assembly is connected with the rear support; the expansion and transmission assembly is connected with the first vibrating machine element; the expansion and transmission assembly is connected with the second vibrating machine element; the powder sprinkling assembly is connected with the front bracket; the powder spraying assembly is connected with the conveying pipe; the compressing and dedusting assembly is connected with the rear support; the console is connected with the front bracket; the glitter powder output machine part is connected with the front bracket; the glitter powder output machine member is connected with the conveying pipe.
Furthermore, the expanding and conveying assembly comprises a first slide rail, a second slide rail, an electric slide plate, a limiting spring, a carrier plate, a supporting slide block, a return spring, a carrier disc, a first electric slide block, a locking block, a fixing frame and an expanding unit; the first slide rail is fixedly connected with the front support; the first slide rail is fixedly connected with the rear support; on one side of the first slide rail, the second slide rail is fixedly connected with the front bracket; the second slide rail is fixedly connected with the rear support; two ends of the electric sliding plate are respectively connected with the first sliding rail and the second sliding rail in a sliding manner; the four groups of limiting springs are fixedly connected with four corners at the top end of the electric skateboard respectively; each group of limiting springs is fixedly connected with the support plate; the two groups of supporting slide blocks are respectively connected with the carrier plate in a sliding way; each group of supporting slide blocks is fixedly connected with the carrier disc; the four groups of reset springs are fixedly connected with two ends of the carrying disc respectively; each group of reset springs is fixedly connected with the support plate; the two groups of first electric sliding blocks are respectively connected with the two sides of the carrier plate in a sliding manner; the four groups of locking blocks are fixedly connected with the corresponding group of first electric sliding blocks; the surface of the carrying disc is provided with grooves corresponding to the four groups of locking blocks; two ends of the fixed frame are fixedly connected with the corresponding group of first electric sliding blocks respectively; the four groups of expansion units are connected with the fixed frame; one side of the bottom end of the carrier plate is contacted with the surface of the first vibrating machine element; the other side of the bottom end of the carrier plate is contacted with the surface of the second vibrating machine element.
Furthermore, the powder sprinkling assembly comprises a third slide rail, a fourth slide rail, a second electric slide block and a powder sprinkling pipe fitting; the third slide rail is fixedly connected with the front support; on one side of the third slide rail, the fourth slide rail is fixedly connected with the front bracket; the second electric sliding block is respectively connected with the third sliding rail and the fourth sliding rail in a sliding manner; the powder spraying pipe fitting is fixedly connected with the second electric sliding block; the conveying pipe is fixedly connected with the powder spraying pipe fitting.
Furthermore, the compressing and dedusting assembly comprises a main motor, a missing gear, a second rotating shaft, a first straight gear, a first shaft sleeve, a telescopic transmission rod, an end position slide block, a third rotating shaft, a fixed disc, a second torsion spring, a second shaft sleeve, an L-shaped pull rod, a hollow pressure plate, a pull plate, a fourth rotating shaft, a second straight gear, a first transmission wheel, a fifth rotating shaft, a second transmission wheel, a third shaft sleeve, a first push rod, a second push rod and an electrostatic roller; the main motor is fixedly connected with the rear support; the gear lack is fixedly connected with an output shaft of the main motor; the second rotating shaft is rotatably connected with the rear support above the main motor; the first straight gear and the first shaft sleeve are fixedly connected with the second rotating shaft; when the tooth profile of the gear-lacking wheel is meshed with the first straight gear, the first straight gear rotates; when the tooth profile of the gear-lacking wheel is not meshed with the first straight gear, the first straight gear does not rotate; the telescopic transmission rod is fixedly connected with the first shaft sleeve; two groups of end position slide blocks are connected with the rear support in a sliding manner on two sides of the telescopic transmission rod; two ends of the third rotating shaft are respectively in rotating connection with the corresponding group of end position slide blocks; the telescopic transmission rod is in transmission connection with the third rotating shaft; two groups of fixed disks are fixedly connected with the third rotating shaft on two sides of the telescopic transmission rod; two ends of the two groups of second torsion springs are fixedly connected with the corresponding group of fixed discs and end position sliding blocks respectively; on one side of the fixed disc, two groups of second shaft sleeves are fixedly connected with a third rotating shaft; the two groups of L-shaped pull rods are fixedly connected with the corresponding group of second shaft sleeves respectively; two groups of pulling plates are fixedly connected with two sides of the hollow pressing plate respectively below the L-shaped pull rod; each group of L-shaped pull rods is respectively contacted with the surface of a corresponding group of pull plates; the fourth rotating shaft is rotatably connected with the rear support below the main motor; the second straight gear and the first driving wheel are fixedly connected with the fourth rotating shaft; when the tooth profile of the gear-lacking wheel is meshed with the second straight gear, the second straight gear rotates; when the tooth profile of the gear-lacking wheel is not meshed with the second straight gear, the second straight gear does not rotate; on one side of the fourth rotating shaft, the fifth rotating shaft is rotatably connected with the rear support; the second driving wheel and the third shaft sleeve are fixedly connected with the fifth rotating shaft; the first driving wheel is in transmission connection with the second driving wheel through a belt; the first push rod is fixedly connected with the third shaft sleeve; the second push rod is in transmission connection with the first push rod through a rotating shaft; the electrostatic roller is in transmission connection with the second push rod through a rotating shaft.
Furthermore, the expansion unit comprises a spring slide block, a fixed frame, a first rotating shaft, a long pressing plate and a first torsion spring; the two groups of spring sliding blocks are connected with the fixed frame; each group of spring sliding blocks is fixedly connected with the fixed frame; the first rotating shaft is rotatably connected with the fixed frame; the long pressing plate is fixedly connected with the first rotating shaft; the two groups of first torsion springs are fixedly connected with the first rotating shaft and the fixed frame respectively.
Furthermore, two sides of the long pressure plate are provided with grooves corresponding to the fixing frame.
Furthermore, the powder spraying pipe fitting is formed by connecting a plurality of groups of nozzles which can be opened and closed independently.
Furthermore, two sides of the hollow pressure plate are provided with grooves below the pulling plate.
The beneficial effects of the invention are as follows: firstly, in order to overcome the defect that the position deviation exists at the concave position in the soft package, the bottom surface of a used pressing plate is smaller than the upper surface of the glitter powder filled in the concave position of the soft package, so that the pressing plate can not completely cover the glitter powder, the glitter powder obtained after compaction is in a state that the middle is compact and the periphery is loose, and in addition, a dust suction device can easily suck and remove the glitter powder which can not be covered by the pressing plate when passing through the concave position of the soft package;
second, the device of the present invention: when in use, the device is placed and keeps the front support and the rear support stable, the power supply is switched on and the control console adjusting device is regulated, then an operator places a soft package which is brushed with glue and placed with lacquer line engraving in the expanding and conveying assembly, the expanding and conveying assembly presses and outwards expands the inner surfaces of four sides of the sunken part of the soft package, then the glitter powder spraying assembly sprays glitter powder on the sunken part of the soft package, meanwhile, the glitter powder in the expanding and conveying assembly is vibrated by the first vibrating machine part and the second vibrating machine part, so that the glitter powder can be uniformly vibrated in the sunken part of the soft package, then the expanding and conveying assembly keeps the sunken part of the soft package in an outwards expanded state, the soft package which finishes the powdering operation is conveyed to the lower part of the compressing and dedusting assembly by the expanding and conveying assembly, and the glitter powder in the sunken part of the soft package is downwards compressed by the compressing and dedusting assembly, the expansion and conveying assembly loosens the soft package, so that the inner surfaces of four sides of the soft package in an outward expansion state rebound inwards, the gold onion powder is pressed by the pressing and dust removing assembly, the inner surface of the concave part of the soft package clamps the gold onion powder inwards, the gold onion powder can be tightly attached to the inner surfaces of all positions of the concave part of the soft package and is compacted, and finally the gold onion powder scattered on the surface of the non-concave part of the soft package is subjected to electrostatic absorption and removal work by the pressing and dust removing assembly;
thirdly, the golden onion powder filling processing and the surplus golden onion powder absorbing and removing processing are sequentially carried out on the soft package, the concave part of the soft package is in an outward expansion state when the golden onion powder filling processing is carried out, and the golden onion powder can be tightly attached to the inner surfaces of the concave part of the soft package and compacted when the inner surfaces of the four sides of the soft package rebound inwards in the subsequent compacting operation.
Drawings
FIG. 1 is a schematic perspective view of a first embodiment of the present invention;
FIG. 2 is a schematic perspective view of a second embodiment of the present invention;
FIG. 3 is a third perspective view of the present invention;
FIG. 4 is a schematic perspective view of a first embodiment of the expansion and transfer assembly of the present invention;
FIG. 5 is a schematic view of a second perspective view of the expansion and transfer assembly of the present invention;
FIG. 6 is a partial perspective view of the expansion and transfer assembly of the present invention;
FIG. 7 is a perspective view of the expansion unit of the present invention;
FIG. 8 is a schematic perspective view of the region A according to the present invention;
FIG. 9 is a schematic perspective view of the long platen of the present invention;
FIG. 10 is a schematic perspective view of a powdering assembly according to the present invention;
FIG. 11 is a schematic perspective view of a powder spraying pipe fitting according to the present invention;
FIG. 12 is a schematic perspective view of the compacting and dust removing assembly of the present invention;
FIG. 13 is a schematic perspective view of an L-shaped compression bar according to the present invention;
fig. 14 is a schematic perspective view of the hollow pressing plate of the present invention.
In the above drawings: 1: expansion and delivery assembly, 2: powder sprinkling assembly, 3: compress tightly and dust removal subassembly, 4: front bracket, 5: rear bracket, 6: console, 7: first vibrating mechanism, 8: second vibrating element, 9: glitter powder output machine member, 10: delivery pipe, 101: first slide rail, 102: second slide rail, 103: electric skateboard, 104: limiting spring, 105: carrier plate, 106: support slider, 107: return spring, 108: boat, 109: first electric slider, 110: locking piece, 111: fixed frame, 112: expansion unit, 11201: spring slider, 11202: mount, 11203: first rotating shaft, 11204: long press plate, 11205: first torsion spring, 201: third slide rail, 202: fourth slide rail, 203: second electric slider, 204: powdering pipe fitting, 301: main motor, 302: missing gear, 303: second rotating shaft, 304: first straight gear, 305: first bushing, 306: telescopic driving rod, 307: end position slider, 308: third rotation shaft, 309: fixed disk, 310: second torsion spring, 311: second shaft sleeve, 312: l-shaped tie bar, 313: hollow pressing plate, 314: pulling plate, 315: fourth rotation shaft, 316: second spur gear, 317: first drive wheel, 318: fifth rotating shaft, 319: second drive wheel, 320: third sleeve, 321: first push rod, 322: second push rod, 323: and (4) electrostatic roller rolling.
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 embodiments 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 protection scope of the present invention.
Example 1
A leather carving soft-package glitter powder filling device capable of being accurately positioned is shown in figures 1-14 and comprises an expansion and conveying assembly 1, a powder spraying assembly 2, a compaction and dust removal assembly 3, a front support 4, a rear support 5, a control console 6, a first vibrating machine part 7, a second vibrating machine part 8, glitter powder output machine parts 9 and a conveying pipe 10; the expansion and transmission assembly 1 is connected with the front bracket 4; the expansion and transmission assembly 1 is connected with a rear bracket 5; the expansion and transmission assembly 1 is connected with a first vibrating machine element 7; the expansion and transmission assembly 1 is connected with a second vibrating machine element 8; the powder spraying assembly 2 is connected with the front bracket 4; the powder spraying component 2 is connected with the conveying pipe 10; the compressing and dedusting component 3 is connected with the rear bracket 5; the console 6 is connected with the front bracket 4; the glitter powder output machine member 9 is connected with the front bracket 4; the glitter powder output machine member 9 is connected with a delivery pipe 10.
The working steps are as follows: when in use, the device is placed and kept stable at the front bracket 4 and the rear bracket 5, the power supply is switched on, the control device 6 is regulated and controlled, then an operator places a soft package which is brushed with glue and placed with lacquer thread carving in the expansion and conveying assembly 1, the expansion and conveying assembly 1 presses and outwards expands the inner surfaces of four sides of the sunken part of the soft package, then the glitter powder spraying work is carried out on the sunken part of the soft package by the glitter powder spraying assembly 2, meanwhile, the glitter powder in the expansion and conveying assembly 1 is vibrated by the first vibrating machine part 7 and the second vibrating machine part 8, so that the glitter powder can be uniformly vibrated in the sunken part of the soft package, then the expansion and conveying assembly 1 keeps the sunken part of the soft package in an outwards expanded state, the soft package which finishes the powder work is conveyed to the position below the pressing and dust removing assembly 3 by the expansion and conveying assembly 1, the glitter powder in the sunken part of the soft package is pressed downwards by the pressing and dust removing assembly 3, meanwhile, the expansion and conveying assembly 1 loosens the soft package, so that the inner surfaces of four sides of the soft package in an outward expansion state rebound inwards, the gold onion powder is clamped inwards by the inner surface of the concave part of the soft package while the gold onion powder is compressed by the compression and dust removal assembly 3, the gold onion powder can be tightly attached to the inner surfaces of all parts of the concave part of the soft package and is compacted, and finally, the gold onion powder scattered on the surface of the non-concave part of the soft package is subjected to electrostatic absorption and removal work by the compression and dust removal assembly 3; the golden onion powder filling and residual golden onion powder sucking and removing device realizes that the golden onion powder is sequentially filled and treated in the soft package, the sunken part of the soft package is in an outward expansion state when the golden onion powder is filled, and the golden onion powder can cling to and be compacted on the inner surfaces of the sunken part of the soft package when rebounding inwards through the inner surfaces of four sides of the soft package in the subsequent compaction work.
The expanding and conveying assembly 1 comprises a first slide rail 101, a second slide rail 102, an electric slide plate 103, a limiting spring 104, a carrier plate 105, a supporting slide block 106, a return spring 107, a carrier disc 108, a first electric slide block 109, a locking block 110, a fixing frame 111 and an expanding unit 112; the first slide rail 101 is fixedly connected with the front bracket 4; the first slide rail 101 is fixedly connected with the rear bracket 5; on one side of the first slide rail 101, the second slide rail 102 is fixedly connected with the front bracket 4; the second slide rail 102 is fixedly connected with the rear bracket 5; two ends of the electric skateboard 103 are respectively connected with the first slide rail 101 and the second slide rail 102 in a sliding manner; four groups of limit springs 104 are respectively fixedly connected with four corners at the top end of the electric skateboard 103; each group of limiting springs 104 is fixedly connected with the carrier plate 105; the two groups of supporting sliding blocks 106 are respectively connected with the carrier plate 105 in a sliding manner; each group of supporting sliding blocks 106 is fixedly connected with a carrying disc 108; the four groups of return springs 107 are fixedly connected with two ends of the carrier disc 108 respectively; each group of return springs 107 is fixedly connected with the carrier plate 105; the two groups of first electric sliding blocks 109 are respectively connected with the two sides of the carrier plate 105 in a sliding manner; the four groups of locking blocks 110 are fixedly connected with the corresponding group of first electric sliding blocks 109; the surface of the carrying disc 108 is provided with grooves corresponding to the four groups of locking blocks 110; two ends of the fixed frame 111 are fixedly connected with a corresponding group of first electric sliding blocks 109; the four groups of expansion units 112 are connected with the fixed frame 111; one side of the bottom end of the carrier plate 105 is in contact with the surface of the first vibrating element 7; the other side of the bottom end of the carrier plate 105 is in contact with the surface of the second vibrating mechanism 8.
Firstly, an operator places a soft bag which is painted with glue and provided with lacquer line engraving in a carrying disc 108, then a first electric slide block 109 drives components connected with the first electric slide block to move downwards, a locking block 110 is inserted into a groove of the carrying disc 108, a fixing frame 111 drives an expansion unit 112 to move downwards and insert into a concave part of the soft bag, meanwhile, four groups of expansion units 112 press and expand the inner surfaces of four sides of the concave part of the soft bag outwards, simultaneously, the soft bag is pushed by the expansion unit 112 to drive a supporting slide block 106 to move along the surface of a carrying plate 105 through the carrying disc 108, simultaneously, two groups of reset springs 107 on one side of the carrying plate 105 are compressed, two groups of reset springs 107 on the other side of the carrying plate 105 are compressed, the soft bag is adjusted to a specified position right below a powder sprinkling assembly 2, the powder sprinkling assembly 2 sprays gold onion powder on the concave part of the soft bag, and simultaneously, the carrying disc 108 is vibrated by a first vibration machine element 7 and a second machine element 8, the glitter powder can be uniformly vibrated in the concave part of the soft package, then the concave part of the soft package is kept in an outward expansion state, the electric sliding plate 103 conveys the soft package which finishes the powder scattering work to the position below the compressing and dust removing assembly 3 along the first sliding rail 101 and the second sliding rail 102, the glitter powder in the concave part of the soft package is downwards compressed by the compressing and dust removing assembly 3, meanwhile, the first electric sliding block 109 drives the connected components to upwards move, the expanding unit 112 loosens the soft package, the inner surfaces of four sides of the soft package in the outward expansion state are inwards rebounded, the glitter powder is inwards clamped by the inner surface of the concave part of the soft package when the compressing and dust removing assembly 3 compresses the glitter powder, and the glitter powder can be tightly attached to the inner surfaces of the concave parts of the soft package and compacted; this subassembly has accomplished and has carried out the work of packing of gold spring onions powder to the depressed part of soft package to accomplished and carried out conveying work to soft package.
The powder sprinkling assembly 2 comprises a third slide rail 201, a fourth slide rail 202, a second electric slide block 203 and a powder sprinkling pipe fitting 204; the third slide rail 201 is fixedly connected with the front bracket 4; on one side of the third slide rail 201, the fourth slide rail 202 is fixedly connected with the front bracket 4; the second electric sliding block 203 is respectively connected with the third sliding rail 201 and the fourth sliding rail 202 in a sliding manner; the powder spraying pipe fitting 204 is fixedly connected with the second electric sliding block 203; the conveying pipe 10 is fixedly connected with the powder spraying pipe fitting 204.
Firstly, a glitter powder output machine part 9 conveys glitter powder to a powdering pipe fitting 204 through a conveying pipe 10, meanwhile, a second electric sliding block 203 drives the powdering pipe fitting 204 to move above a sunken part of a soft package along a third sliding rail 201 and a fourth sliding rail 202, and meanwhile, the powdering pipe fitting 204 carries out powdering work on the sunken part of the soft package; the assembly finishes the powder sprinkling work on the concave part of the soft bag.
The compacting and dedusting assembly 3 comprises a main motor 301, a missing gear 302, a second rotating shaft 303, a first straight gear 304, a first shaft sleeve 305, a telescopic transmission rod 306, an end position slide block 307, a third rotating shaft 308, a fixed disc 309, a second torsion spring 310, a second shaft sleeve 311, an L-shaped pull rod 312, a hollow pressing plate 313, a pulling plate 314, a fourth rotating shaft 315, a second straight gear 316, a first transmission wheel 317, a fifth rotating shaft 318, a second transmission wheel 319, a third shaft sleeve 320, a first push rod 321, a second push rod 322 and an electrostatic roller 323; the main motor 301 is fixedly connected with the rear bracket 5; the gear lack 302 is fixedly connected with an output shaft of the main motor 301; above the main motor 301, the second rotating shaft 303 is rotatably connected with the rear bracket 5; the first straight gear 304 and the first shaft sleeve 305 are both fixedly connected with the second rotating shaft 303; when the tooth profile of the missing gear 302 is engaged with the first straight gear 304, the first straight gear 304 rotates; when the tooth profile of the missing gear 302 is not engaged with the first straight gear 304, the first straight gear 304 does not rotate; the telescopic transmission rod 306 is fixedly connected with the first shaft sleeve 305; two groups of end position slide blocks 307 are in sliding connection with the rear bracket 5 at two sides of the telescopic transmission rod 306; two ends of the third rotating shaft 308 are respectively connected with a corresponding group of end position sliding blocks 307 in a rotating way; the telescopic transmission rod 306 is in transmission connection with the third rotating shaft 308; two groups of fixed disks 309 are fixedly connected with a third rotating shaft 308 at two sides of the telescopic transmission rod 306; two ends of the two sets of second torsion springs 310 are fixedly connected with a corresponding set of fixed disc 309 and end position slide block 307; on one side of the fixed disk 309, two groups of second shaft sleeves 311 are fixedly connected with the third rotating shaft 308; the two groups of L-shaped pull rods 312 are fixedly connected with the corresponding group of second shaft sleeves 311; under the L-shaped pull rod 312, two groups of pull plates 314 are respectively fixedly connected with two sides of the hollow pressing plate 313; each group of L-shaped pull rods 312 is in surface contact with a corresponding group of pull plates 314; below the main motor 301, the fourth rotating shaft 315 is rotatably connected to the rear bracket 5; the second spur gear 316 and the first driving wheel 317 are both fixedly connected with the fourth rotating shaft 315; when the tooth profile of the missing gear 302 is engaged with the second spur gear 316, the second spur gear 316 rotates; when the profile of the missing gear 302 is not engaged with the second spur gear 316, the second spur gear 316 does not rotate; on the fourth rotating shaft 315 side, the fifth rotating shaft 318 is rotatably connected with the rear bracket 5; the second driving wheel 319 and the third shaft sleeve 320 are fixedly connected with the fifth rotating shaft 318; the first transmission wheel 317 is in transmission connection with a second transmission wheel 319 through a belt; the first push rod 321 is fixedly connected with the third shaft sleeve 320; the second push rod 322 is in transmission connection with the first push rod 321 through a rotating shaft; the electrostatic roller 323 is in transmission connection with the second push rod 322 through a rotating shaft.
Firstly, the expansion and transmission assembly 1 transmits the soft pack to the lower part of a hollow pressing plate 313, then an output shaft of a main motor 301 drives a gear-lacking 302 to rotate, so that the tooth profile of the gear-lacking 302 is meshed with a first straight gear 304 to drive a second rotating shaft 303 to rotate, the second rotating shaft 303 drives a first shaft sleeve 305 to rotate, the first shaft sleeve 305 drives a telescopic transmission rod 306 to rotate, the telescopic transmission rod 306 drives a third rotating shaft 308 to drive an end position slide block 307 to move downwards along a rear bracket 5, so that the hollow pressing plate 313 is completely pressed on the upper surface of glitter powder in a concave part of the soft pack, meanwhile, the expansion unit 112 loosens the soft pack, so that the inner surfaces of four sides of the soft pack in an outward expansion state rebound inwards, the glitter powder is tightly attached to the inner surfaces of all parts of the concave part of the soft pack and is compacted, then the tooth profile of the gear-lacking 302 leaves the first straight gear 304 and is meshed with the second straight gear 316 to drive a fourth rotating shaft 315 to rotate, and the fourth rotating shaft 315 drives a first transmission wheel 317 to rotate, the first driving wheel 317 drives the second driving wheel 319 to drive the fifth rotating shaft 318 to rotate through a belt, the fifth rotating shaft 318 drives the third shaft sleeve 320 to rotate, the third shaft sleeve 320 drives the first push rod 321 to rotate downwards, the first push rod 321 drives the second push rod 322 through the rotating shaft to drive the electrostatic roller 323 to move along the surface of the soft package, the surface of the hollow pressing plate 313 and the surface of the painted line carving in sequence, the surplus glitter powder is subjected to electrostatic absorption work, meanwhile, the second push rod 322 drives the L-shaped pull rod 312 to drive the second shaft sleeve 311 to rotate away from the pulling plate 314, meanwhile, the second torsion spring 310 generates a reset torque, so that the electrostatic roller 323 can smoothly pass through the surface of the hollow pressing plate 313, then the output shaft of the main motor 301 drives the omitted gear 302 to rotate in the reverse direction, the electrostatic roller 323 and the hollow pressing plate 313 are reset in sequence, and finally, an operator takes out the treated soft package; this subassembly has accomplished and has carried out compaction work to the glitter powder to accomplished and carried out static absorption work to unnecessary glitter powder.
The expansion unit 112 comprises a spring slider 11201, a fixed frame 11202, a first rotating shaft 11203, a long pressing plate 11204 and a first torsion spring 11205; the two groups of spring sliders 11201 are connected with the fixed frame 111; each group of spring sliders 11201 is fixedly connected with the fixed frame 11202; the first rotating shaft 11203 is rotatably connected with the fixed frame 11202; the long pressing plate 11204 is fixedly connected with the first rotating shaft 11203; the two groups of first torsion springs 11205 are fixedly connected with the first rotating shaft 11203 and the fixed frame 11202 respectively.
Firstly, the fixing frame 111 drives the spring slider 11201 and parts connected with the spring slider 11201 to move downwards, meanwhile, the long pressing plate 11204 is tightly attached to the concave inner side face of the soft package to drive the first rotating shaft 11203 to rotate, meanwhile, the first torsion spring 11205 generates torque, meanwhile, the spring slider 11201 is compressed inwards along the fixing frame 111, and the long pressing plate 11204 presses the concave inner side face of the soft package to complete outward expansion work.
The two sides of the long press plate 11204 are provided with slots corresponding to the fixing frame 11202.
The long pressing plate 11204 can be driven to rotate the first rotating shaft 11203.
The powder spraying pipe 204 is formed by a plurality of groups of nozzles which can be opened and closed independently.
The powder spraying pipe 204 can be prevented from spraying a large amount of glitter powder on the paint line carving.
Under the pulling plate 314, slots are provided on both sides of the hollow pressing plate 313.
The L-shaped pull rod 312 can be smoothly separated from the pull plate 314 from the hollow pressing plate 313.
It should be understood that this example is only for illustrating the present invention and is not intended to limit the scope of the present invention. Further, it should be understood that various changes or modifications of the present invention may be made by those skilled in the art after reading the teaching of the present invention, and such equivalents may fall within the scope of the present invention as defined in the appended claims.

Claims (5)

1. A leather carving soft-package glitter powder filling device capable of being accurately positioned comprises a control console, a first vibrating machine part, a second vibrating machine part, glitter powder output machine parts and a conveying pipe; the method is characterized in that: the device also comprises an expansion and transmission assembly, a powder spraying assembly, a compaction and dust removal assembly, a front support and a rear support; the expansion and transmission assembly is connected with the front bracket; the expansion and transmission assembly is connected with the rear support; the expansion and transmission assembly is connected with the first vibrating machine element; the expansion and transmission assembly is connected with the second vibrating machine element; the powder spraying assembly is connected with the front support; the powder spraying assembly is connected with the conveying pipe; the compressing and dedusting assembly is connected with the rear support; the console is connected with the front bracket; the glitter powder output machine part is connected with the front bracket; the glitter powder output machine part is connected with the conveying pipe;
the expansion and transmission assembly comprises a first slide rail, a second slide rail, an electric slide plate, a limiting spring, a carrier plate, a supporting slide block, a return spring, a carrier disc, a first electric slide block, a locking block, a fixed frame and an expansion unit; the first slide rail is fixedly connected with the front support; the first slide rail is fixedly connected with the rear support; on one side of the first slide rail, the second slide rail is fixedly connected with the front bracket; the second slide rail is fixedly connected with the rear support; two ends of the electric sliding plate are respectively connected with the first sliding rail and the second sliding rail in a sliding manner; the four groups of limiting springs are fixedly connected with four corners at the top end of the electric skateboard respectively; each group of limiting springs is fixedly connected with the carrier plate; the two groups of supporting slide blocks are respectively connected with the carrier plate in a sliding way; each group of supporting slide blocks is fixedly connected with the carrier disc; the four groups of reset springs are fixedly connected with two ends of the carrying disc respectively; each group of reset springs is fixedly connected with the support plate; the two groups of first electric sliding blocks are respectively connected with the two sides of the carrier plate in a sliding manner; the four groups of locking blocks are fixedly connected with the corresponding group of first electric sliding blocks; the surface of the carrying disc is provided with grooves corresponding to the four groups of locking blocks; two ends of the fixed frame are fixedly connected with the corresponding group of first electric sliding blocks respectively; the four groups of expansion units are connected with the fixed frame; one side of the bottom end of the carrier plate is contacted with the surface of the first vibrating machine element; the other side of the bottom end of the carrier plate is contacted with the surface of the second vibrating machine element;
the compressing and dedusting assembly comprises a main motor, a missing gear, a second rotating shaft, a first straight gear, a first shaft sleeve, a telescopic transmission rod, an end position slide block, a third rotating shaft, a fixed disc, a second torsion spring, a second shaft sleeve, an L-shaped pull rod, a hollow pressing plate, a pulling plate, a fourth rotating shaft, a second straight gear, a first transmission wheel, a fifth rotating shaft, a second transmission wheel, a third shaft sleeve, a first push rod, a second push rod and an electrostatic roller; the main motor is fixedly connected with the rear support; the gear lack is fixedly connected with an output shaft of the main motor; the second rotating shaft is rotatably connected with the rear support above the main motor; the first straight gear and the first shaft sleeve are fixedly connected with the second rotating shaft; when the tooth profile of the gear-lacking wheel is meshed with the first straight gear, the first straight gear rotates; when the tooth profile of the gear-lacking wheel is not meshed with the first straight gear, the first straight gear does not rotate; the telescopic transmission rod is fixedly connected with the first shaft sleeve; two groups of end position slide blocks are connected with the rear support in a sliding manner on two sides of the telescopic transmission rod; two ends of the third rotating shaft are respectively in rotating connection with the corresponding group of end position sliding blocks; the telescopic transmission rod is in transmission connection with the third rotating shaft; two groups of fixed disks are fixedly connected with the third rotating shaft on two sides of the telescopic transmission rod; two ends of the two groups of second torsion springs are fixedly connected with the corresponding group of fixed discs and end position sliding blocks respectively; on one side of the fixed disc, two groups of second shaft sleeves are fixedly connected with a third rotating shaft; the two groups of L-shaped pull rods are fixedly connected with the corresponding group of second shaft sleeves respectively; two groups of pulling plates are fixedly connected with two sides of the hollow pressing plate respectively below the L-shaped pull rod; each group of L-shaped pull rods is respectively contacted with the surface of a corresponding group of pull plates; a fourth rotating shaft is rotatably connected with the rear support below the main motor; the second straight gear and the first driving wheel are fixedly connected with the fourth rotating shaft; when the tooth profile of the gear-lacking wheel is meshed with the second straight gear, the second straight gear rotates; when the tooth profile of the gear-lacking wheel is not meshed with the second straight gear, the second straight gear does not rotate; on one side of the fourth rotating shaft, the fifth rotating shaft is rotatably connected with the rear support; the second driving wheel and the third shaft sleeve are fixedly connected with the fifth rotating shaft; the first driving wheel is in transmission connection with the second driving wheel through a belt; the first push rod is fixedly connected with the third shaft sleeve; the second push rod is in transmission connection with the first push rod through a rotating shaft; the electrostatic roller is in transmission connection with the second push rod through a rotating shaft;
the expansion unit comprises a spring slide block, a fixed frame, a first rotating shaft, a long pressing plate and a first torsion spring; the two groups of spring sliding blocks are connected with the fixed frame; each group of spring sliding blocks is fixedly connected with the fixed frame; the first rotating shaft is rotationally connected with the fixed frame; the long pressing plate is fixedly connected with the first rotating shaft; the two groups of first torsion springs are fixedly connected with the first rotating shaft and the fixed frame respectively.
2. The leather carving soft package glitter powder filling device capable of being accurately positioned according to claim 1, which is characterized in that: the powder spraying assembly comprises a third slide rail, a fourth slide rail, a second electric slide block and a powder spraying pipe fitting; the third slide rail is fixedly connected with the front support; on one side of the third slide rail, the fourth slide rail is fixedly connected with the front support; the second electric sliding block is respectively connected with the third sliding rail and the fourth sliding rail in a sliding manner; the powder spraying pipe fitting is fixedly connected with the second electric sliding block; the conveying pipe is fixedly connected with the powder spraying pipe fitting.
3. The device for filling the leather carving soft package glitter powder capable of being accurately positioned according to claim 2, which is characterized in that: the two sides of the long press plate are provided with slots corresponding to the fixing frame.
4. The device for filling the leather carving soft package glitter powder capable of being accurately positioned according to claim 2, which is characterized in that: the powder spraying pipe fitting is formed by connecting a plurality of groups of nozzles which can be opened and closed independently.
5. The leather carving soft package glitter powder filling device capable of being accurately positioned according to claim 3, which is characterized in that: and grooves are arranged on two sides of the hollow pressing plate below the pulling plate.
CN202110544613.1A 2021-05-19 2021-05-19 Soft packet of gold spring onions powder filling device of skin carving that can pinpoint Active CN113276590B (en)

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Effective date of registration: 20220914

Address after: South side of Mei'an Road, Bianhe Town, Suzhou City, Anhui Province 234000

Applicant after: SUZHOU QUANXING FURNITURE Co.,Ltd.

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Denomination of invention: A precise positioning device for filling golden onion powder in leather carving soft bag

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Pledgor: SUZHOU QUANXING FURNITURE Co.,Ltd.

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