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CN109330110B - Full-automatic sole side calico printing machine - Google Patents

Full-automatic sole side calico printing machine Download PDF

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Publication number
CN109330110B
CN109330110B CN201811484664.4A CN201811484664A CN109330110B CN 109330110 B CN109330110 B CN 109330110B CN 201811484664 A CN201811484664 A CN 201811484664A CN 109330110 B CN109330110 B CN 109330110B
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China
Prior art keywords
ink
sole
plate
printing
rubber roller
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Application number
CN201811484664.4A
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Chinese (zh)
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CN109330110A (en
Inventor
刘立新
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Mastone Safety Equipment Tianjin Co ltd
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Mastone Safety Equipment Tianjin Co ltd
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Publication of CN109330110A publication Critical patent/CN109330110A/en
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    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D8/00Machines for cutting, ornamenting, marking or otherwise working up shoe part blanks
    • A43D8/16Ornamentation
    • A43D8/22Ornamentation by embossing or printing
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D117/00Racks for receiving or transporting shoes or shoe parts; Other conveying means
    • AHUMAN NECESSITIES
    • A43FOOTWEAR
    • A43DMACHINES, TOOLS, EQUIPMENT OR METHODS FOR MANUFACTURING OR REPAIRING FOOTWEAR
    • A43D2200/00Machines or methods characterised by special features
    • A43D2200/10Fully automated machines, i.e. machines working without human intervention

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  • Manufacture Or Reproduction Of Printing Formes (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Abstract

The invention relates to a full-automatic shoe sole side printing machine which comprises a frame, a rubber roll printing device and a shoe sole pushing device, wherein the rubber roll printing device is arranged on one side of the upper end of the frame, and the shoe sole pushing device is arranged on the other side of the upper end of the frame; the sole pushing device pushes the sole side edge to be processed to be closely attached to the rubber roll printing device, and the driving motor drives the sole to be processed to rotate, so that the printing roller ink plate of the rubber roll printing device is driven to synchronously rotate, and uniform and clear patterns are printed on the printing roller ink plate along the outline shape of the sole side edge. The invention adopts the bottom die of the shoe with the same model to control the printing curve, thereby effectively ensuring the stability of the printing of the side edge of the sole, consistent pattern depth, good processing effect and high processing efficiency.

Description

Full-automatic sole side calico printing machine
Technical Field
The invention belongs to the field of mechanical equipment, relates to automatic shoemaking equipment, and particularly relates to a full-automatic sole side edge printing machine.
Background
Along with the improvement of life quality of people, shoes are used as daily necessary wearing articles, the design requirements of the shoes are also continuously improved, and the sole printing has wide production requirements. At present, in sole printing, the planar printing of sole is comparatively easy, and automatic sole face printing machine is more common in the market, but the printing of sole side receives the influence of sole outline shape great, and the difference that its radian of different shoes sizes changes also can produce very big influence to the stamp moreover, lacks the effective automatic stamp equipment to the sole side.
Through the search, no similar published patent documents are found.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides the full-automatic sole side printing machine which is scientific in design, reasonable in structure, automatic, efficient, energy-saving and environment-friendly.
The invention solves the technical problems by adopting the following technical scheme:
a full-automatic sole side calico printing machine, its characterized in that: comprises a frame, a rubber roll printing device and a sole pushing device, wherein the rubber roll printing device is arranged on one side of the upper end of the frame, and the sole pushing device is arranged on the other side of the upper end of the frame; the sole pushing device pushes the side edge of the sole to be processed to be closely attached to the rubber roller printing device, and the printing roller ink plate prints patterns along the outline shape of the side edge of the sole.
The shoe sole pushing device comprises a positioning plate, sliding rails, sliding blocks, a clamp frame, a driving motor, a shoe sole outline template, a clamp plate lower die, a clamp plate upper die, a clamp cylinder and a pushing cylinder, wherein the positioning plate is fixedly arranged at the upper end of a rack, two parallel sliding rails are horizontally and fixedly arranged at the upper end of the positioning plate, the pushing cylinder parallel to the sliding rails is arranged on the positioning plate between the two sliding rails, the end part of a piston rod of the pushing cylinder is connected with the clamp frame, two sliding blocks are fixedly arranged at the lower end of the clamp frame at intervals, the two sliding blocks are respectively and slidably embedded on the two parallel sliding rails, and the clamp frame can reciprocate along the guiding direction of the sliding rails;
a driving motor is arranged in a frame corresponding to the middle part below the clamp frame, a driving rod of the driving motor extends upwards into the clamp frame and is fixedly provided with a sole profile template, the sole profile template is provided with an outer edge profile curve consistent with the sole to be processed, and a clamping plate lower die is arranged above the sole profile template at intervals;
the middle part of the upper end of the clamp frame corresponding to the upper part of the clamp lower die is provided with a clamp cylinder, the lower end of a piston rod of the clamp cylinder stretches into the clamp frame, the lower end of the piston rod of the clamp cylinder is connected with a clamp upper die, and the clamp cylinder drives the clamp upper die to move up and down.
And a rotary joint is arranged between the clamping plate upper die and the piston rod.
The printing device comprises a printing machine support, a rubber roll shaft, a black plate shaft, a limiting support, a rubber roll, a printing roller black plate, a driving gear and a driven gear, wherein the printing machine support is a cubic frame, the vertically installed rubber roll shaft and black plate shaft are arranged in the printing machine support at intervals, the limiting support is fixedly arranged at the lower end of the rubber roll shaft coaxially, the limiting support is of a disc structure, and the limiting support is in compression fit with the sole contour template and drives the rubber roll shaft to rotate through friction force; the middle part of the rubber roll shaft is provided with a driving gear, and the middle part of the ink plate shaft is coaxially and fixedly provided with a driven gear meshed with the driving gear, so that the ink plate of the printing roll and the rubber roll reversely and synchronously rotate;
the lower part of the rubber roll shaft is coaxially provided with a rubber roll, the lower part of the ink plate shaft is coaxially provided with a printing roll ink plate, the printing roll ink plate is in tangential contact with the outer circumference of the rubber roll, the surface of the printing roll ink plate is provided with pattern concave-convex textures, the printing ink carried on the printing roll ink plate is transferred onto the rubber roll, and the rubber roll further prints the patterns on the side edge of the sole.
In addition, the rubber roller printing device is provided with an inking and cleaning structure, and the concrete structure is as follows: the printing roller ink plate, the rubber roller and the sole are sequentially transversely and tangentially arranged, an ink adding spray pipe is arranged at the outer side of the printing roller ink plate, and an ink plate scraping plate is arranged at one radial side of the printing roller ink plate in the clockwise direction of the ink adding spray pipe; a cleaning ink tube is arranged on one radial side of the rubber roller, and a cleaning scraper is arranged on one radial side of the rubber roller in the anticlockwise direction of the cleaning ink tube.
Furthermore, the ink adding spray pipe and the cleaning ink pipe are externally connected with the same ink injecting device.
In addition, the frame is a cuboid frame structure, and the four corners of the lower end of the frame are provided with height-adjustable foot pads.
Moreover, the working method comprises the following steps:
firstly, clamping a sole to be processed between a clamping plate upper die and a clamping plate lower die of a sole pushing device, wherein the clamping plate upper die is pressed downwards to clamp the sole for fixing;
the sole pushing device works so that the soles are tightly attached to the rubber rollers and synchronously rotate;
thirdly, the rubber roller printing device works to print patterns on the side edge of the sole;
after finishing all printing of the side edges of the soles, stopping working, retracting the pushing cylinder, opening the upper clamping plate die and the lower clamping plate die, and taking down the finished soles;
and replacing the sole to be processed with a new sole, and repeating the steps.
Moreover, the working steps of the sole pushing device are as follows:
(1) the pushing cylinder horizontally pushes the sole to enable the outer edge of the side edge of the sole to be tightly attached to the rubber roller;
(2) the driving motor works to drive the sole outline template and the sole to synchronously rotate, and the pushing cylinder always provides a pretightening force in the horizontal direction, so that the sole outline template is tightly attached to the limiting support to rotate, and meanwhile, the outer edge of the side edge of the sole is guaranteed to be tightly attached to the rubber roller all the time.
Moreover, the specific steps of the working of the rubber roller printing device are as follows:
(1) the sole contour template rotates clockwise, the sole contour template rubs to drive the limit bracket to synchronously rotate anticlockwise, the limit bracket drives the rubber roller to rotate anticlockwise, and the driving gear on the rubber roller shaft is meshed with the driven gear on the ink plate shaft, so that the ink plate of the printing roller is driven to rotate clockwise;
(2) the ink adding spray pipe sprays ink to the surface of the printing roller ink plate, the printing roller ink plate rotates to reach the position of an ink plate scraping plate, the ink plate scraping plate scrapes redundant ink on the surface of the printing roller ink plate, ink is reserved in concave patterns with concave-convex patterns on the surface of the printing roller ink plate, and the ink in the concave patterns is transferred to the surface of the rubber roller when the ink rotates to be contacted with the rubber roller, so that the ink patterns with the patterns are formed;
(3) the rubber roller continues to rotate until contacting the side edge of the sole, and ink patterns in the pattern shape are transferred to the side edge of the sole to form clear patterns;
(4) the rubber roller continues to rotate, and the ink tube is cleaned to jet ink to the rubber roller when reaching the position of the ink tube, so that residual ink marks on the surface of the rubber roller are fused, after the ink tube is cleaned to jet ink to the surface of the rubber roller, the cleaning scraper scrapes off the ink on the surface of the rubber roller, and the surface of the rubber roller is recovered to be cleaned;
and then enters the next circulation printing process.
The invention has the advantages and positive effects that:
the invention adopts the bottom die of the shoe with the same model to control the printing curve, thereby effectively ensuring the stability of the printing of the side edge of the sole, consistent pattern depth, good processing effect and high processing efficiency.
Drawings
FIG. 1 is a front elevational view of the structure of the present invention;
FIG. 2 is a left side view of FIG. 1;
FIG. 3 is a top view of FIG. 1;
fig. 4 is a cross-sectional view taken along A-A of fig. 1.
Detailed Description
The invention will now be described in further detail by way of specific examples, which are given by way of illustration only and not by way of limitation, with reference to the accompanying drawings.
A full-automatic shoe sole side printing machine comprises a frame 11, a rubber roll printing device and a shoe sole pushing device, wherein the rubber roll printing device is arranged on one side of the upper end of the frame, and the shoe sole pushing device is arranged on the other side of the upper end of the frame; the sole pushing device pushes the side edge of the sole to be processed to be closely attached to the rubber roll printing device,
the driving motor 10 drives the sole to be processed to rotate, so that the printing roller ink plate of the tight rubber roller printing device is driven to synchronously rotate, and uniform and clear patterns are printed on the printing roller ink plate along the outline shape of the side edge of the sole.
The frame is a cuboid frame structure, and the four corners of the lower end of the frame are provided with height-adjustable foot pads to ensure the stable support of the frame.
The shoe sole pushing device comprises a positioning plate 21, slide rails 8, slide blocks 7, a clamp frame 22, a driving motor 10, a shoe sole contour template 6, a clamp plate lower die 20, a clamp plate upper die 19, a clamp cylinder 3, a rotary joint 18 and a pushing cylinder 9, wherein the upper end of a rack is fixedly provided with the positioning plate, the upper end of the positioning plate is horizontally provided with two parallel slide rails, the slide rails are respectively embedded with one slide block, and the two slide blocks are fixedly arranged at the lower end of one clamp frame so that the clamp frame can reciprocate along the guide of the slide rails;
a driving motor is arranged in a frame corresponding to the middle part below the clamp frame, a driving rod of the driving motor extends upwards into the clamp frame and is fixedly provided with a sole profile template, an outer edge profile curve consistent with a sole to be processed is formed on the sole profile template, a clamping plate lower die is arranged above the sole profile template at intervals, and the driving motor drives the sole profile template and the clamping plate lower die to synchronously rotate; a clamp cylinder is arranged in the middle of the upper end of the clamp frame above the clamp plate lower die, the lower end of a piston rod of the clamp cylinder extends into the clamp frame, the lower end of the piston rod of the clamp cylinder is connected with a clamp plate upper die, and the clamp cylinder drives the clamp plate upper die to move up and down; a rotary joint is arranged between the clamping plate upper die and the piston rod, and the rotary joint ensures that the clamping plate upper die can rotate freely. The sole 4 to be processed can be clamped and fixed between the upper clamping plate die and the lower clamping plate die, the side edges of the sole are exposed out of the upper clamping plate die and the lower clamping plate die, and when the sole to be processed is clamped by the upper clamping plate die and the lower clamping plate die, the sole to be processed is driven to synchronously rotate by the driving motor;
a push cylinder parallel to the slide rails is arranged on the positioning plate between the two slide rails, the end part of a piston rod of the push cylinder is propped against the middle part of one side of the lower end of the clamp frame, the pretightening force generated by the push cylinder enables the side edge of the sole outline template to be kept in a clinging state with the limit bracket 12 of the rubber roll printing device, the generated friction force drives the limit bracket to synchronously rotate, and meanwhile, the outer edge of the side edge of the sole to be processed, which faces one side of the rubber roll printer, is kept in clinging contact with the rubber roll.
The sole profile template can be replaced according to the model of the sole to be processed.
The rubber roll printing device comprises a printing machine support 15, a rubber roll shaft 1, a rubber roll plate shaft 2, a limiting support 12, a rubber roll 13, a printing roll ink plate 14, a driving gear 16 and a driven gear 17, wherein the printing machine support is a cubic frame, the rubber roll shaft and the rubber roll plate shaft which are vertically installed are arranged in the printing machine support at intervals, the limiting support is coaxially and fixedly arranged at the lower end of the rubber roll shaft, the limiting support is of a disc structure, and the limiting support is in compression fit with a sole outline template and drives the rubber roll shaft to rotate through friction force; the middle part of the rubber roll shaft is provided with a driving gear, and the middle part of the ink plate shaft is coaxially and fixedly provided with a driven gear meshed with the driving gear, so that the ink plate of the printing roll and the rubber roll reversely and synchronously rotate;
the lower part of the rubber roll shaft is coaxially provided with a rubber roll, the lower part of the ink plate shaft is coaxially provided with a printing roll ink plate, the printing roll ink plate is in tangential contact with the outer circumference of the rubber roll, the surface of the printing roll ink plate is provided with pattern concave-convex textures, the printing ink carried on the printing roll ink plate is transferred onto the rubber roll, and the rubber roll further prints the patterns on the side edge of the sole.
The inking and cleaning structure of the rubber roller printing device is described with reference to the direction shown in fig. 4, the ink plates of the printing roller, the rubber roller and the sole are sequentially transversely and tangentially arranged, the ink plates of the printing roller rotate clockwise, the rubber roller rotates anticlockwise, and the sole rotates clockwise;
an ink adding spray pipe 23 is arranged on the outer side of the printing roller ink plate, an ink plate scraping plate 24 is arranged on one radial side of the printing roller ink plate in the clockwise direction of the ink adding spray pipe, after the ink adding spray pipe sprays ink to the surface of the printing roller ink plate, the ink plate scraping plate scrapes redundant ink on the surface of the printing roller ink plate, ink is reserved in concave patterns with concave patterns on the surface of the printing roller ink plate, and the ink in the concave patterns is transferred to the surface of the rubber roller when the ink is rotated to be in contact with the rubber roller;
a cleaning ink tube 26 is installed on one radial side of the rubber roller, a cleaning scraping plate is installed on one radial side of the rubber roller in the anticlockwise direction of the cleaning ink tube, and after the cleaning ink tube ejects ink to the surface of the rubber roller, the cleaning scraping plate scrapes ink on the surface of the rubber roller, and the surface of the rubber roller is recovered to be clean.
The ink adding spray pipe and the ink cleaning pipe adopt the same ink, and the rubber roller printing device is also provided with an ink injecting device matched with a printing roller ink plate, which is not shown in the embodiment.
The working principle of the machine is as follows:
firstly, clamping a sole to be processed between a clamping plate upper die and a clamping plate lower die of a sole pushing device, wherein the clamping plate upper die is pressed downwards to clamp the sole for fixing;
work of sole pushing device
The pushing cylinder horizontally pushes the sole to enable the outer edge of the side edge of the sole to be tightly attached to the rubber roller;
the driving motor works to drive the sole outline template and the sole to synchronously rotate, and the pushing cylinder always provides a pretightening force in the horizontal direction, so that the sole outline template is tightly attached to the limiting support to rotate, and meanwhile, the outer edge of the side edge of the sole is always attached to the rubber roller;
thirdly, the rubber roller printing device works to print patterns on the side edge of the sole;
the specific working steps of the rubber roller printing device are as follows:
(1) the sole contour template rotates clockwise, the sole contour template rubs to drive the limit bracket to synchronously rotate anticlockwise, the limit bracket drives the rubber roller to rotate anticlockwise, and the driving gear on the rubber roller shaft is meshed with the driven gear on the ink plate shaft, so that the ink plate of the printing roller is driven to rotate clockwise;
(2) the ink adding spray pipe sprays ink to the surface of the printing roller ink plate, the printing roller ink plate rotates to reach the position of an ink plate scraping plate, the ink plate scraping plate scrapes redundant ink on the surface of the printing roller ink plate, ink is reserved in concave patterns with concave-convex patterns on the surface of the printing roller ink plate, and the ink in the concave patterns is transferred to the surface of the rubber roller when the ink rotates to be contacted with the rubber roller, so that the ink patterns with the patterns are formed;
(3) the rubber roller continues to rotate until contacting the side edge of the sole, and ink patterns in the pattern shape are transferred to the side edge of the sole to form clear patterns;
(4) the rubber roller continues to rotate, and the ink tube is cleaned to jet ink to the rubber roller when reaching the position of the ink tube, so that residual ink marks on the surface of the rubber roller are fused, after the ink tube is cleaned to jet ink to the surface of the rubber roller, the cleaning scraper scrapes off the ink on the surface of the rubber roller, and the surface of the rubber roller is recovered to be cleaned;
and then enters the next circulation printing process.
After finishing all printing of the side edges of the soles, stopping working, retracting the pushing cylinder, opening the upper clamping plate die and the lower clamping plate die, and taking down the finished soles;
and replacing the sole to be processed with a new sole, and repeating the steps.
Although the embodiments of the present invention and the accompanying drawings have been disclosed for illustrative purposes, those skilled in the art will appreciate that: various substitutions, changes and modifications are possible without departing from the spirit and scope of the invention and the appended claims, and therefore the scope of the invention is not limited to the embodiments and the disclosure of the drawings.

Claims (8)

1. A full-automatic sole side calico printing machine, its characterized in that: comprises a frame, a rubber roll printing device and a sole pushing device, wherein the rubber roll printing device is arranged on one side of the upper end of the frame, and the sole pushing device is arranged on the other side of the upper end of the frame; the sole pushing device pushes the side edge of the sole to be processed to be closely attached to the rubber roller printing device, and the printing roller ink plate prints patterns along the shape of the outline of the outer edge of the side edge of the sole;
the shoe sole pushing device comprises a positioning plate, sliding rails, sliding blocks, a clamp frame, a driving motor, a shoe sole contour template, a clamping plate lower die, a clamping plate upper die, a clamp cylinder and a pushing cylinder, wherein the positioning plate is fixedly arranged at the upper end of a rack, two parallel sliding rails are horizontally and fixedly arranged at the upper end of the positioning plate, the pushing cylinder parallel to the sliding rails is arranged on the positioning plate between the two sliding rails, the end part of a piston rod of the pushing cylinder is connected with the clamp frame, two sliding blocks are fixedly arranged at the lower end of the clamp frame at intervals, and are respectively and slidably embedded on the two parallel sliding rails, and the clamp frame can reciprocate along the guiding direction of the sliding rails;
a driving motor is arranged in a frame corresponding to the middle part below the clamp frame, a driving rod of the driving motor extends upwards into the clamp frame and is fixedly provided with a sole profile template, the sole profile template is provided with an outer edge profile curve consistent with the sole to be processed, and a clamping plate lower die is arranged above the sole profile template at intervals;
a clamp cylinder is arranged in the middle of the upper end of the clamp frame above the clamp plate lower die, the lower end of a piston rod of the clamp cylinder extends into the clamp frame, the lower end of the piston rod of the clamp cylinder is connected with a clamp plate upper die, and the clamp cylinder drives the clamp plate upper die to move up and down;
the working method of the machine is as follows:
firstly, clamping a sole to be processed between a clamping plate upper die and a clamping plate lower die of a sole pushing device, wherein the clamping plate upper die is pressed downwards to clamp the sole for fixing;
the sole pushing device works so that the soles are tightly attached to the rubber rollers and synchronously rotate;
thirdly, the rubber roller printing device works to print patterns on the side edge of the sole;
after finishing all printing of the side edges of the soles, stopping working, retracting the pushing cylinder, opening the upper clamping plate die and the lower clamping plate die, and taking down the finished soles;
and replacing the sole to be processed with a new sole, and repeating the steps.
2. The fully automatic side printer for soles according to claim 1, characterized in that: a rotary joint is arranged between the clamping plate upper die and the piston rod.
3. The fully automatic side printer for soles according to claim 1, characterized in that: the rubber roller printing device comprises a printing machine support, a rubber roller shaft, a black plate shaft, a limiting support, a rubber roller, a printing roller black plate, a driving gear and a driven gear, wherein the printing machine support is a cubic frame, the rubber roller shaft and the black plate shaft which are vertically installed are arranged in the printing machine support at intervals, the limiting support is coaxially and fixedly arranged at the lower end of the rubber roller shaft, the limiting support is of a disc structure, and the limiting support is in compression fit with a sole contour template and drives the rubber roller shaft to rotate through friction force; the middle part of the rubber roll shaft is provided with a driving gear, and the middle part of the ink plate shaft is coaxially and fixedly provided with a driven gear meshed with the driving gear, so that the ink plate of the printing roll and the rubber roll reversely and synchronously rotate;
the lower part of the rubber roll shaft is coaxially provided with a rubber roll, the lower part of the ink plate shaft is coaxially provided with a printing roll ink plate, the printing roll ink plate is in tangential contact with the outer circumference of the rubber roll, the surface of the printing roll ink plate is provided with pattern concave-convex textures, the printing ink carried on the printing roll ink plate is transferred onto the rubber roll, and the rubber roll further prints the patterns on the side edge of the sole.
4. A fully automatic side printer for soles according to claim 3, characterized in that: the rubber roller printing device is provided with an inking and cleaning structure, and the concrete structure is as follows: the printing roller ink plate, the rubber roller and the sole are sequentially transversely and tangentially arranged, an ink adding spray pipe is arranged at the outer side of the printing roller ink plate, and an ink plate scraping plate is arranged at one radial side of the printing roller ink plate in the clockwise direction of the ink adding spray pipe; a cleaning ink tube is arranged on one radial side of the rubber roller, and a cleaning scraper is arranged on one radial side of the rubber roller in the anticlockwise direction of the cleaning ink tube.
5. A fully automatic side printer for soles according to claim 3, characterized in that: the ink adding spray pipe and the cleaning ink pipe are externally connected with the same ink injecting device.
6. The fully automatic side printer for soles according to claim 1, characterized in that: the frame is a cuboid frame structure, and the four corners of the lower end of the frame are provided with height-adjustable foot pads.
7. The fully automatic side printer for soles according to claim 1, characterized in that: the step, sole pusher work concrete step does:
(1) the pushing cylinder horizontally pushes the sole to enable the outer edge of the side edge of the sole to be tightly attached to the rubber roller;
(2) the driving motor works to drive the sole outline template and the sole to synchronously rotate, and the pushing cylinder always provides a pretightening force in the horizontal direction, so that the sole outline template is tightly attached to the limiting support to rotate, and meanwhile, the outer edge of the side edge of the sole is guaranteed to be tightly attached to the rubber roller all the time.
8. The fully automatic side printer for soles according to claim 7, characterized in that: the specific steps of the work of the rubber roller printing device are as follows:
(1) the sole contour template rotates clockwise, the sole contour template rubs to drive the limit bracket to synchronously rotate anticlockwise, the limit bracket drives the rubber roller to rotate anticlockwise, and the driving gear on the rubber roller shaft is meshed with the driven gear on the ink plate shaft, so that the ink plate of the printing roller is driven to rotate clockwise;
(2) the ink adding spray pipe sprays ink to the surface of the printing roller ink plate, the printing roller ink plate rotates to reach the position of an ink plate scraping plate, the ink plate scraping plate scrapes redundant ink on the surface of the printing roller ink plate, ink is reserved in concave patterns with concave-convex patterns on the surface of the printing roller ink plate, and the ink in the concave patterns is transferred to the surface of the rubber roller when the ink rotates to be contacted with the rubber roller, so that the ink patterns with the patterns are formed;
(3) the rubber roller continues to rotate until contacting the side edge of the sole, and ink patterns in the pattern shape are transferred to the side edge of the sole to form clear patterns;
(4) the rubber roller continues to rotate, and the ink tube is cleaned to jet ink to the rubber roller when reaching the position of the ink tube, so that residual ink marks on the surface of the rubber roller are fused, after the ink tube is cleaned to jet ink to the surface of the rubber roller, the cleaning scraper scrapes off the ink on the surface of the rubber roller, and the surface of the rubber roller is recovered to be cleaned;
and then enters the next circulation printing process.
CN201811484664.4A 2018-12-06 2018-12-06 Full-automatic sole side calico printing machine Active CN109330110B (en)

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CN109330110B true CN109330110B (en) 2023-05-02

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CN110884247B (en) * 2019-11-18 2021-04-20 温州职业技术学院 Stamp equipment is stabilized to upper of a shoe cloth

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GB402817A (en) * 1932-06-09 1933-12-11 British United Shoe Machinery Improvements in or relating to the application of coatings to boot or shoe parts
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GB645451A (en) * 1948-04-17 1950-11-01 United Shoe Machinery Corp Improvements in or relating to the application of coatings to peripheral portions ofworkpieces
GB723908A (en) * 1952-03-06 1955-02-16 John William Lawrence An improved machine for producing lock seamed tubing
ES381122A1 (en) * 1970-06-24 1972-11-16 Molfort S S A Procedure for the stamping of gender garments, especially calcetería. (Machine-translation by Google Translate, not legally binding)
US4664672A (en) * 1982-12-01 1987-05-12 Rohm Gmbh Chemische Fabrik Transfer printing process for solid objects employing high-pressure gas
EP0238424A1 (en) * 1986-03-05 1987-09-23 Centre Technique Cuir Chaussure Maroquinerie Method for colouring shoe sole edges, and device therefor
DE19511271A1 (en) * 1994-03-25 1996-09-19 Roman Koller Support device (for keyboard)
CN2346571Y (en) * 1998-05-28 1999-11-03 谢乐天 Sole periphery printing machine
CN209152472U (en) * 2018-12-06 2019-07-26 天津马士通机械设备有限公司 A kind of Full-automatic shoe bottom side printing machine

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