CN119953077A - A special intelligent pad printing machine for tool production - Google Patents
A special intelligent pad printing machine for tool production Download PDFInfo
- Publication number
- CN119953077A CN119953077A CN202510455717.3A CN202510455717A CN119953077A CN 119953077 A CN119953077 A CN 119953077A CN 202510455717 A CN202510455717 A CN 202510455717A CN 119953077 A CN119953077 A CN 119953077A
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- pad printing
- ink
- wheel
- hollow shaft
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F17/00—Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
- B41F17/001—Pad printing apparatus or machines
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F23/00—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
- B41F23/002—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing cleaning devices for sheets or webs
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F23/00—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing
- B41F23/04—Devices for treating the surfaces of sheets, webs, or other articles in connection with printing by heat drying, by cooling, by applying powders
- B41F23/044—Drying sheets, e.g. between two printing stations
- B41F23/0443—Drying sheets, e.g. between two printing stations after printing
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F31/00—Inking arrangements or devices
- B41F31/002—Heating or cooling of ink or ink rollers
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41F—PRINTING MACHINES OR PRESSES
- B41F31/00—Inking arrangements or devices
- B41F31/02—Ducts, containers, supply or metering devices
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41P—INDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
- B41P2217/00—Printing machines of special types or for particular purposes
- B41P2217/10—Printing machines of special types or for particular purposes characterised by their constructional features
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41P—INDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
- B41P2217/00—Printing machines of special types or for particular purposes
- B41P2217/50—Printing presses for particular purposes
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02P—CLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
- Y02P70/00—Climate change mitigation technologies in the production process for final industrial or consumer products
- Y02P70/10—Greenhouse 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
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Inking, Control Or Cleaning Of Printing Machines (AREA)
Abstract
The invention relates to the field of pad printing equipment, in particular to a special intelligent pad printing machine for cutter production, which comprises an organic table, a protective shell and the like; the machine is connected with a protective shell, and the left part and the right part of the protective shell are respectively provided with a preformed hole for the feeding and discharging of the blade material belt. According to the invention, the pad printing wheel is contacted with the ink wheel, the ink on the pad printing wheel is transferred to the blade material belt in a rolling manner, compared with the existing vertical pad printing equipment, the printing efficiency is greatly improved, the spacer is arranged on the pad printing wheel, the cooling water is poured into the pad printing wheel, the cooling water is sequentially poured into the fan-shaped space separated by the spacer, the circulating water flows along with the rotation of the pad printing wheel, the pad printing wheel and the ink wheel are cooled, the condition that the ink is easily evaporated by heat on the pad printing wheel, and the ink is dry and hard is avoided, so that the printing pattern on the blade material belt is in the condition of missing, ghost and the like.
Description
Technical Field
The invention relates to the field of pad printing equipment, in particular to a special intelligent pad printing machine for cutter production.
Background
Each blade is required to be printed with patterns such as enterprise LOGO, model data and the like on two planes of the blade after production is finished, the patterns are used as marks and distinguished, a vertical pad printer is generally used for finishing printing of the patterns in the prior art, so that the other surface is required to be printed after one surface is printed, the printing efficiency is low, when the blade is continuously used for printing, the temperature of the pad printing head is gradually increased, and therefore, when the printing is carried out, the dry ink on the pad printing head is dried, when the ink is printed on the blade, the condition that the patterns are lack of leakage and ghost appears on the blade, the printing quality is poor, a large amount of material resources are required to be consumed due to subsequent reworking, and the production cost of enterprises is increased.
Disclosure of Invention
The invention provides a special intelligent pad printing machine for cutter production, which aims to overcome the defects that the printing efficiency of the conventional pad printing equipment is low, the temperature of a pad printing head is gradually increased when a blade is subjected to continuous printing work, and the printing quality is seriously affected due to dry ink on the pad printing head.
The technical scheme is that the special intelligent pad printing machine for cutter production comprises an organic table and a protective shell, wherein the machine table is connected with the protective shell, a reserved hole is formed in the left part and the right part of the protective shell and used for feeding and discharging a cutter blade material belt, the intelligent pad printing machine further comprises a mounting plate, a reference wheel, an ink box, a hollow shaft lever, a pad printing wheel, a motor, a water inlet pipe I, a water outlet pipe, a water injection pipe and a water outlet pipe, wherein the mounting plate is fixedly connected in the protective shell, the mounting plate is rotatably connected with the reference wheel, the mounting plate is rotatably connected with the two ink wheels, printing grooves are engraved on the ink wheel, the mounting plate is fixedly connected with two ink boxes, each ink wheel is matched with one ink box, the ink wheel is used for picking ink from the ink box, redundant ink is scraped at the edge of the ink box, the mounting plate is connected with two hollow shaft levers, each hollow shaft lever is rotatably connected with one pad printing wheel, each pad printing wheel is in contact with one ink wheel, the mounting plate is provided with two motors, an output shaft of each motor is fixedly connected with one ink wheel, a partition plate is fixedly connected in each hollow shaft lever, the hollow shaft lever is rotatably connected with the partition plate, the partition plate is provided with the water inlet pipe I, the two water inlet pipe I is commonly connected with the water outlet pipe is commonly connected with the partition plate, and the partition plate is commonly connected with the water inlet pipe I.
Preferably, the outer ring surface of the pad printing wheel is provided with elastic silica gel.
Preferably, the elastic piece I is also included; the mounting plate is in sliding connection with the two hollow shaft rods, two arc-shaped grooves which are distributed up and down are formed in the mounting plate, each hollow shaft rod slides in one arc-shaped groove, each arc-shaped groove is fixedly connected with an elastic piece I, and each elastic piece I is fixedly connected with one hollow shaft rod.
The transfer printing device is characterized by further comprising a spacer and sleeves, wherein the inside of each transfer printing wheel is grooved, a plurality of spacers are fixedly connected in an annular array mode in the grooves, a sleeve is rotatably connected to the outer annular surface of each hollow shaft rod, each sleeve is positioned in one transfer printing wheel, each sleeve is fixedly connected with the corresponding spacer, a plurality of slotted holes are formed in the side wall of each sleeve at equal intervals, and each slotted hole is positioned between two spacers.
Preferably, the protective cover also comprises a sliding door I, and the protective cover is provided with two sliding doors I.
Preferably, the sliding door I is made of flexible transparent materials.
Preferably, the protective cover also comprises a sliding door II, and the protective cover is provided with two sliding doors II.
The water-saving type water-saving device is characterized by further comprising support plates, guide rods, elastic pieces II, fixing plates, water inlet pipes II, guide pipes and water discharge pipes, wherein the upper part and the lower part of the mounting plate are fixedly connected with two support plates respectively, two guide rods are fixedly connected between each two support plates corresponding to each upper part and the lower part, two elastic pieces II are fixedly connected to opposite sides of each support plate corresponding to each upper part and the lower part respectively, each guide rod penetrates through the two elastic pieces II corresponding to each upper part and the lower part, all guide rods are connected with the two fixing plates in a sliding mode, each fixing plate is fixedly connected with the corresponding elastic pieces II, each water outlet pipe is communicated with one water inlet pipe II, each water inlet pipe II is communicated with a plurality of guide pipes, each fixing plate is fixedly connected with the corresponding guide pipes, and the front ends of all guide pipes are communicated with the water discharge pipes together.
Preferably, the device further comprises a roller, each guide pipe is rotatably connected with one roller, the rear side of each guide pipe is provided with a heating sleeve, the side wall of each guide pipe is grooved, the groove opening is positioned in the roller, and each roller is communicated with the corresponding guide pipe.
Preferably, the outer ring surface of each roller is provided with fine textures, each fixing plate is internally provided with a cavity, the cavity is provided with a plurality of dust collection openings, and each dust collection opening corresponds to one roller.
The invention has the beneficial effects that 1, the pad printing wheel is contacted with the ink wheel, the ink on the pad printing wheel is transferred to the blade material belt in a rolling way, compared with the existing vertical pad printing equipment, the printing efficiency is greatly improved, the pad printing wheel is provided with the spacer, the pad printing wheel is filled with cooling water, the cooling water is sequentially filled into the fan-shaped space separated by the spacer, the circulating water flows along with the rotation of the pad printing wheel, the pad printing wheel and the ink wheel are cooled, and the conditions of missing, ghost and the like of a printed pattern on the blade material belt caused by dry ink due to the fact that the heat on the pad printing wheel easily evaporates the ink are avoided.
2. Through setting up the cylinder, press the cylinder on the blade stock area, utilize cylinder fine texture, catch the dust impurity on the blade stock area, avoid dust impurity to influence subsequent transfer printing quality, and transfer the heat in the pad printing wheel to the cylinder on, realize heat recycle, and heat up to circulating water on this basis, reuse is used for the heating to the blade stock area, can the rapid draing with the printing ink that is transferred to on the blade stock area, make printing ink stable adhesion on the blade stock area, can realize high-efficient, high-quality printing ink transfer printing.
Drawings
FIG. 1 is a perspective view of a first embodiment of the present invention;
FIG. 2 is a schematic view of a second perspective view of the present invention;
FIG. 3 is a schematic illustration of the relative positions of components mounted on the front of the mounting plate of the present invention;
FIG. 4 is a schematic illustration of the relative positions of the back-mounted components of the mounting plate of the present invention;
FIG. 5 is a schematic view of the relative positions of the ink wheel, hollow shaft, pad printing wheel and elastic member I of the present invention;
FIG. 6 is a schematic view of the internal structure of the pad printing wheel of the present invention;
FIG. 7 is a schematic view of the mounting position of the partition plate and the open position of the through slot of the present invention;
FIG. 8 is a schematic perspective view of the support plate, guide rod, elastic member II, water inlet pipe II and guide pipe according to the present invention;
FIG. 9 is a schematic perspective view of the support plate, guide rod, elastic member II, fixing plate, guide tube and roller according to the present invention;
fig. 10 is a sectional view of a fixing plate and a drum of the present invention.
The reference numerals indicate that the device comprises a 001-blade material belt, a 1-machine table, a 2-protective shell, a 3-sliding door I, a 4-sliding door II, a 5-mounting plate, a 6-reference wheel, a 7-ink wheel, an 8-ink box, a 9-hollow shaft rod, a 10-pad printing wheel, an 11-motor, a 12-elastic piece I, a 13-water inlet pipe I, a 14-water outlet pipe, a 15-water injection pipe, a 16-water outlet pipe, a 5001-arc-shaped groove, a 101-spacer, a 102-sleeve, a 10201-slotted hole, a 9001-spacer, a 9002-through groove, a 201-support plate, a 202-guide rod, a 203-elastic piece II, a 204-fixing plate, a 205-water inlet pipe II, a 206-guide pipe, a 207-roller and a 20401-dust collection opening.
Detailed Description
The invention is further described below with reference to the drawings and examples.
Example 1
The intelligent pad printing machine for the cutter production comprises an organic table 1 and a protective shell 2, wherein the machine table 1 is connected with the protective shell 2, and the left part and the right part of the protective shell 2 are respectively provided with a preformed hole for the feeding and the discharging of a cutter material belt 001;
the ink box comprises a mounting plate 5, a reference wheel 6, ink wheels 7, ink boxes 8, hollow shaft rods 9, transfer printing wheels 10, motors 11, a water inlet pipe I13, a water outlet pipe 14, water injection pipes 15 and water discharge pipes 16, wherein the mounting plate 5 is welded in a protective shell 2, the reference wheel 6 is rotationally connected to the mounting plate 5, two ink wheels 7 distributed up and down are rotationally connected to the mounting plate 5, printing grooves are engraved on the ink wheels 7, the two ink boxes 8 distributed up and down are connected to the mounting plate 5 through bolts, each ink wheel 7 is matched with one ink box 8, the ink boxes 7 are soaked with ink from the ink boxes 8, redundant ink is scraped at the edge of each ink box 8, the mounting plate 5 is connected with two hollow shaft rods 9 distributed up and down, each hollow shaft rod 9 is rotationally connected with one transfer printing wheel 10, each transfer printing wheel 10 is in contact fit with one ink wheel 7, two motors 11 distributed up and down are mounted on the back of the mounting plate 5, an output shaft of each motor 11 is fixedly connected with one ink wheel 7, each hollow shaft rod 9 is internally provided with a partition plate 1, each hollow shaft rod 9 is matched with one ink box 8, each ink box 8 is connected with a water inlet pipe I, each hollow shaft rod 9 is connected with a water discharge pipe 13 which is distributed up and down, all water inlet pipes 14 are symmetrically distributed in the hollow shaft rods 9 are connected with two water discharge pipes 13, all the hollow shaft rods 13 are connected with water inlet pipes 13, respectively, the hollow shafts 13 are connected with water inlet pipes 13 are respectively, respectively and the water inlet pipes 13 are connected to each water pipes 13 are respectively and are connected.
The outer ring surface of the pad printing wheel 10 is provided with elastic silica gel, and when the pad printing wheel 10 is in contact with the ink wheel 7, the elastic silica gel is pressed and deformed to be embedded into a printing groove of the ink wheel 7, so that the ink in the printing groove of the ink wheel 7 is transferred to the pad printing wheel 10.
The device also comprises elastic pieces I12, wherein the mounting plate 5 is in sliding connection with the two hollow shaft rods 9, two arc-shaped grooves 5001 which are distributed up and down are formed in the mounting plate 5, each hollow shaft rod 9 slides in one arc-shaped groove 5001, each arc-shaped groove 5001 is fixedly connected with one elastic piece I12, each elastic piece I12 is a spring, and each elastic piece I12 is fixedly connected with one hollow shaft rod 9.
The transfer printing machine further comprises a spacer 101 and sleeves 102, each transfer printing wheel 10 is internally provided with grooves, a plurality of spacers 101 are fixedly connected in an annular array mode in the grooves, the spacers 101 are made of high heat conduction materials, each sleeve 102 is rotatably connected to the outer annular surface of each hollow shaft rod 9, each sleeve 102 is positioned in one transfer printing wheel 10, each sleeve 102 is fixedly connected with the corresponding spacer 101, a plurality of slotted holes 10201 are formed in the side wall of each sleeve 102 at equal intervals, and each slotted hole 10201 is positioned between two spacers 101.
The protective shell is characterized by further comprising a sliding door I3, wherein two symmetrically arranged sliding doors I3 are arranged at the front part of the protective shell 2.
The sliding door I3 is made of flexible transparent materials, so that workers can observe the pad printing process of the blade material belt 001 conveniently.
The ink box is characterized by further comprising a sliding door II4, wherein two symmetrically arranged sliding doors II4 are arranged at the rear part of the protective shell 2, so that ink can be conveniently supplemented to the ink box 8 and corresponding parts can be conveniently maintained.
The working steps of the embodiment are as follows:
Before the pad printing machine is used, a worker firstly opens the sliding door II4, fills ink into the ink box 8 through a reserved pipe on the ink box 8, then re-closes the sliding door II4, then connects the water injection pipe 15 and the water discharge pipe 16 with water circulation equipment respectively, then opens the sliding door I3 again, penetrates a traction belt from a reserved hole on the left side of the protective shell 2, then passes through the reference wheel 6, then manually separates two pad printing wheels 10 by the worker, each pad printing wheel 10 drives a hollow shaft lever 9 to move, a corresponding elastic piece I12 is compressed, then penetrates the traction belt from the reserved hole on the right side of the protective shell 2, then resets the pad printing wheels 10 by the worker, all elastic pieces I12 restore, the two pad printing wheels 10 press the traction belt, and then re-closes the sliding door I3 in order to avoid the influence of dust on the pad printing process, and the preparation before pad printing is completed.
Then the left end of the traction belt is fixed with a charging barrel on an external electric winding roller, the charging barrel of the blade belt 001 is fixed with an external electric unwinding roller, then the movable end of the blade belt 001 is connected with the right end of the traction belt, finally the external electric unwinding roller and the external electric winding roller are controlled to tension the traction belt and the blade belt 001, the tensioned traction belt is tightly attached to a reference wheel 6, the external electric winding roller is controlled to wind the traction belt, the external electric unwinding roller unwinds the blade belt 001, the reference wheel 6 rotates along with the movement of the traction belt under the friction effect of the traction belt, namely, the intelligent transfer printing machine is in a normal working state, then normal transfer printing operation can be started on the blade belt 001, two motors 11 are controlled to start, the output shaft of the motors 11 rotates to drive the ink wheel 7, the upper ink wheel 7 rotates anticlockwise when seen from front to back, the ink wheel 7 drives the pad printing wheel 10 to rotate, the upper pad printing wheel 10 rotates clockwise, the lower ink wheel 7 rotates in the opposite direction to the pad printing wheel 10, then the output shaft of the motor 11, the external electric winding roller and the external electric unwinding roller are controlled to synchronously rotate, when the ink wheel 7 rotates, the ink in the ink box 8 adheres to the outer annular surface of the ink wheel 7, when the outer annular surface of the ink wheel 7 passes through the edge of the ink box 8, the ink box 8 scrapes off the ink except for a printing groove, then the ink wheel 7 drives the pad printing wheel 10 to rotate in the rotating process, when the printing groove with the ink contacts with the pad printing wheel 10, the ink in the printing groove is transferred onto the pad printing wheel 10, then the ink is transferred onto the blade material belt 001 along with the rotation of the pad printing wheel 10 when the pad printing wheel 10 contacts with the blade material belt 001, at this time, the blade material belt 001 is clamped by the two pad printing wheels 10 up and down respectively, so that the upper surface and the lower surface of the blade material belt 001 can be synchronously printed by the rotation of the two pad printing wheels 10, and the continuous rotation of the ink wheel 7 is matched, so that the pad printing process is continuously carried out, and the working efficiency of printing the blade material belt 001 is greatly improved.
Considering that the blade belt 001 and the pad printing wheel 10 are in rolling friction and the pad printing wheel 10 and the ink wheel 7 are in rolling friction in the printing process of the blade belt 001, as the pad printing work is continuously carried out, the solvent of the ink is easily evaporated by heat generated by friction, the ink is dry and the printing pattern on the blade belt 001 is easily lost, ghost and the like, before printing is started, the external circulating water equipment injects cooling water into each water inlet pipe I13 through the water injection pipe 15, controls and closes the electromagnetic valve on the water discharge pipe 16, the hollow shaft rod 9 is divided into an upper space and a lower space by the partition plate 9001, the cooling water firstly flows out of the lower space of the hollow shaft rod 9, then flows out of the through groove 9002 at the lower part of the hollow shaft rod 9, enters into the inner space of the pad printing wheel 10 after passing through the slotted holes 10201, the inner space of the pad printing wheel 10 is divided into a corresponding number of fan-shaped spaces by the plurality of spacers 101, as shown in fig. 6, when the lowermost fan-shaped space is filled with cooling water, the pad printing wheel 10 is rotated to align the next slot 10201 with the through groove 9002, thereby filling the fan-shaped space with water, repeating the above operation to fill the lower space of the pad printing wheel 10 with cooling water, controlling the solenoid valve of the drain pipe 16 to be opened when the water line in the pad printing wheel 10 is lower than the partition 9001, and then starting the pad printing operation, wherein during the pad printing process, the pad printing wheel 10 rotates to synchronously drive the spacer 101 thereon to rotate, the adjacent spacer 101 also drives the cooling water in the fan-shaped space to rotate together, when the fan-shaped space to be filled with cooling water rotates to the uppermost, the slot 10201 of the fan-shaped space is matched with the upper through groove 9002, the circulating water sequentially passes through the slot 10201 and the upper through groove 9002, enters the upper space of the hollow shaft 9, and then circulating water returns to external circulating water equipment through the water outlet pipe 14 and the water outlet pipe 16, is cooled by circulating water and is pumped into the water injection pipe 15 again, when the pad printing wheel 10 rotates, the hollow fan-shaped space rotates to be communicated with the through groove 9002 below, and cooling water in the lower space of the hollow shaft lever 9 enters the fan-shaped space, so that heat of the pad printing wheel 10 in the working process is taken away through the flow of the circulating water, the temperature of the pad printing wheel 10 is kept at about 20 ℃, and the condition that the heat on the pad printing wheel 10 easily evaporates ink and causes dry and hard ink is avoided.
Example 2
On the basis of the 1 st embodiment, according to the figures 1-3 and 8-10, the water draining device further comprises supporting plates 201, guide rods 202, elastic pieces II203, fixing plates 204, water inlet pipes II205, guide pipes 206 and water draining pipes 16, wherein two supporting plates 201 are welded on the upper portion and the lower portion of each mounting plate 5, two guide rods 202 are fixedly connected between every two supporting plates 201 corresponding to each other, two elastic pieces II203 are fixedly connected on opposite sides of each supporting plate 201 corresponding to each other, each elastic piece II203 is a spring, each guide rod 202 penetrates through the two elastic pieces II203 corresponding to each guide rod, all guide rods 202 are connected with two fixing plates 204 in a sliding mode in a combined mode, each fixing plate 204 is fixedly connected with the corresponding elastic piece II203, each water outlet pipe 14 is communicated with one water inlet pipe II205, each water inlet pipe II205 is communicated with a plurality of guide pipes 206, each fixing plate 204 is fixedly connected with the corresponding guide pipe 206, and the front ends of all guide pipes 206 are communicated with the water draining pipes 16.
Also included are rollers 207, one roller 207 being rotatably connected to each conduit 206, one heating jacket being provided on the rear side of each conduit 206, the side walls of each conduit 206 being slotted, the slots being located within the rollers 207, each roller 207 being in communication with a respective conduit 206.
Each roller 207 is provided with fine textures on the outer ring surface, each fixing plate 204 is internally provided with a cavity, a plurality of dust collection holes 20401 are formed in the cavity, and each dust collection hole 20401 corresponds to one roller 207.
The working steps of the embodiment are as follows:
On the basis of embodiment 1, considering that the blade tape 001 is in contact with air during the transfer and transportation before printing, dust impurities in the air are easy to adhere to the blade tape 001, if dust impurities are carried on the blade tape 001 at this time, the ink which is not dried on the blade tape 001 is combined with the dust impurities, the combination of the printing pattern and the blade tape 001 is easy to be loose, the processing quality of the blade tape 001 is low, the blade tape 001 is made to pass through a plurality of rollers 207 before the blade tape 001 is transferred, the elastic member II203 is compressed when the blade tape 001 passes between the rollers 207 which are symmetrically arranged up and down, the fixing plate 204 and the corresponding parts thereon are pressed against the blade tape 001 by the reaction force of the elastic member II203, thereby making the up-down symmetrical rollers 207 all in contact with the blade tape 001, the roller 207 rotates along with the roller 207 under the friction action, the surface of the roller 207 is provided with fine textures, the fine textures play a role similar to capillary tubes, dust impurities can be effectively captured, meanwhile, the flatness of the roller 207 is not obviously influenced, the roller 207 can capture the dust impurities on the surface of the blade material belt 001, the surface of the blade material belt 001 is cleaned, further the subsequent transfer printing precision is higher, then an external air pump is connected with the inner cavity of the fixed plate 204 through an air pipe, the air in the inner cavity of the fixed plate 204 is pumped out, the inner cavity of the fixed plate 204 is negative pressure, therefore, the external air enters the inner cavity of the fixed plate 204 through the dust collection opening 20401, when the external air passes through the surface of the roller 207, the dust impurities on the surface of the roller 207 also enter the inner cavity of the fixed plate 204 along with the external air, and then the external air is pumped away, so that the dust impurities on the surface of the roller 207 are timely cleaned, the problem of the drum 207 affecting the cleaning of the blade-stock-belt 001 surface is avoided by filling up fine textures on the drum 207 surface with dust impurities.
The water outlet pipe 14 in the 1 st embodiment is connected with the guide pipe 206, then the guide pipe 206 is connected with the water outlet pipe 16, water discharged from the water outlet pipe 14 passes through the guide pipe 206 and then enters the roller 207, then comes out of the roller 207, flows out of the front part of the guide pipe 206 to the water outlet pipe 16, part of heat generated by the pad printing wheel 10 can be transferred to the roller 207, recycling of the heat is realized, the water outlet pipe 16 flowing in is matched with a heating sleeve at the rear part of the guide pipe 206 to heat the circulating water again, the temperature of the circulating water is raised to about 60 ℃, and then the temperature of the blade material belt 001 is raised to between 40 and 60 ℃, so that the ink transferred to the blade material belt 001 can be dried quickly, the ink is stably adhered to the blade material belt 001, meanwhile, the transfer speed is adjusted, part of the ink cannot be solidified prematurely in the transfer process, and part of the ink remains on the pad printing wheel 10, and the high-efficiency and high-quality ink transfer printing can be realized.
The above embodiments are provided to illustrate the technical concept and features of the present invention and are intended to enable those skilled in the art to understand the content of the present invention and implement the same, and are not intended to limit the scope of the present invention. All equivalent changes or modifications made in accordance with the spirit of the present invention should be construed to be included in the scope of the present invention.
Claims (10)
1. A special intelligent pad printing machine for cutter production comprises an organic table (1) and a protective shell (2), wherein the machine table (1) is connected with the protective shell (2), the left part and the right part of the protective shell (2) are respectively provided with a reserved hole for feeding and discharging a cutter blade material belt (001), the special intelligent pad printing machine is characterized by further comprising a mounting plate (5), a reference wheel (6), ink wheels (7), ink boxes (8), a hollow shaft lever (9), a pad printing wheel (10), a motor (11), a water inlet pipe I (13), a water outlet pipe (14), a water injection pipe (15) and a water outlet pipe (16), the mounting plate (5) is fixedly connected in the protective shell (2), the mounting plate (5) is rotatably connected with two ink wheels (7), printing grooves are engraved on the ink wheels (7), the mounting plate (5) is fixedly connected with two ink boxes (8), each ink wheel (7) is matched with one ink box (8), the ink wheels (7) are used for dipping ink from the ink boxes (8), the ink box comprises an ink box body, wherein an ink box (8) is arranged on the ink box body, two hollow shaft rods (9) are connected to the mounting plate (5), each hollow shaft rod (9) is rotatably connected with a pad printing wheel (10), each pad printing wheel (10) is in contact fit with one ink wheel (7), two motors (11) are mounted on the mounting plate (5), an output shaft of each motor (11) is fixedly connected with one ink wheel (7), each hollow shaft rod (9) is internally provided with a partition plate (9001), the hollow shaft rods (9) and the partition plates (9001) are made of heat-insulating materials, each partition plate (9001) divides the corresponding hollow shaft rod (9) into an upper space and a lower space, the lower space is communicated with a water inlet pipe I (13), the upper space is communicated with a water outlet pipe (14), each hollow shaft rod (9) is provided with two through grooves (9002), all the water inlet pipes I (13) are jointly communicated with a water injection pipe (15), all the water outlet pipes (14) are jointly connected with a water outlet pipe (16), and electromagnetic valves (16) are arranged in the water outlet pipes (16).
2. The special intelligent pad printing machine for cutter production according to claim 1, wherein the outer ring surface of the pad printing wheel (10) is provided with elastic silica gel.
3. The intelligent pad printing machine for cutter production according to claim 2 is characterized by further comprising elastic pieces I (12), wherein the mounting plate (5) is in sliding connection with two hollow shaft rods (9), two arc-shaped grooves (5001) distributed up and down are formed in the mounting plate (5), each hollow shaft rod (9) slides in one arc-shaped groove (5001), each arc-shaped groove (5001) is fixedly connected with one elastic piece I (12), and each elastic piece I (12) is fixedly connected with one hollow shaft rod (9).
4. The intelligent pad printing machine for cutter production according to claim 3 is characterized by further comprising a spacer (101) and sleeves (102), wherein grooves are formed in each pad printing wheel (10), a plurality of spacers (101) are fixedly connected in an annular array mode in the grooves, each sleeve (102) is rotatably connected to the outer annular surface of each hollow shaft lever (9), each sleeve (102) is located in one pad printing wheel (10), each sleeve (102) is fixedly connected with the corresponding spacer (101), a plurality of slots (10201) are formed in the side wall of each sleeve (102) at equal intervals, and each slot (10201) is located between two spacers (101).
5. The intelligent pad printing machine for cutter production according to claim 4 is characterized by further comprising a sliding door I (3), wherein the protective shell (2) is provided with two sliding doors I (3).
6. The intelligent pad printing machine for cutter production according to claim 5, wherein the sliding door I (3) is made of flexible transparent materials.
7. The intelligent pad printing machine for cutter production according to any one of claims 1-6, further comprising a sliding door II (4), wherein the protective shell (2) is provided with two sliding doors II (4).
8. The intelligent pad printing machine for cutter production according to claim 7, further comprising a support plate (201), guide rods (202), elastic pieces II (203), fixing plates (204), water inlet pipes II (205), guide pipes (206) and water discharge pipes (16), wherein two support plates (201) are fixedly connected to the upper portion and the lower portion of the mounting plate (5), two guide rods (202) are fixedly connected between each two support plates (201) corresponding to the upper portion and the lower portion, two elastic pieces II (203) are fixedly connected to the opposite sides of each two support plates (201) corresponding to the upper portion and the lower portion, each guide rod (202) penetrates through the two elastic pieces II (203) corresponding to the upper portion and the lower portion, all guide rods (202) are connected with two fixing plates (204) in a sliding mode in a combined mode, each fixing plate (204) is fixedly connected with the corresponding elastic pieces II (203), each water outlet pipe (14) is communicated with one water inlet pipe II (205), each water inlet pipe II (205) is communicated with a plurality of guide pipes (206), each fixing plate (204) is fixedly connected with all guide pipes (206) are communicated with the front ends of the corresponding guide pipes (206).
9. The intelligent pad printing machine for cutter production according to claim 8, further comprising rollers (207), wherein each guide tube (206) is rotatably connected with one roller (207), a heating jacket is arranged on the rear side of each guide tube (206), the side wall of each guide tube (206) is grooved, the grooves are formed in the rollers (207), and each roller (207) is communicated with the corresponding guide tube (206).
10. The intelligent pad printing machine for cutter production according to claim 9, wherein fine textures are respectively arranged on the outer ring surface of each roller (207), a cavity is formed in each fixing plate (204), a plurality of dust collection openings (20401) are formed in the cavity, and each dust collection opening (20401) corresponds to one roller (207).
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| Application Number | Priority Date | Filing Date | Title |
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| CN202510455717.3A CN119953077B (en) | 2025-04-11 | 2025-04-11 | A special intelligent pad printing machine for cutter production |
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| CN202510455717.3A CN119953077B (en) | 2025-04-11 | 2025-04-11 | A special intelligent pad printing machine for cutter production |
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| CN119953077A true CN119953077A (en) | 2025-05-09 |
| CN119953077B CN119953077B (en) | 2025-12-30 |
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| CN2709159Y (en) * | 2004-06-21 | 2005-07-13 | 李新忠 | Satellite type flexible plate printing machine |
| CN210733548U (en) * | 2019-08-19 | 2020-06-12 | 四川长河科技有限公司 | Circulation cooling heat transfer printing machine |
| CN212194640U (en) * | 2020-05-06 | 2020-12-22 | 宝鸡市群盛机械科技有限公司 | Single input single output circulating water cooling printing roller |
| CN216423820U (en) * | 2021-09-15 | 2022-05-03 | 云南天欣彩印包装有限公司 | Continuous cooling device of printing machine |
| CN218749905U (en) * | 2022-11-18 | 2023-03-28 | 湖北楚之翼彩印有限责任公司 | Dust collecting device of printing machine |
| CN118438802A (en) * | 2024-06-20 | 2024-08-06 | 江西犀瑞制造有限公司 | Blade printer |
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2025
- 2025-04-11 CN CN202510455717.3A patent/CN119953077B/en active Active
Patent Citations (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN2709159Y (en) * | 2004-06-21 | 2005-07-13 | 李新忠 | Satellite type flexible plate printing machine |
| CN210733548U (en) * | 2019-08-19 | 2020-06-12 | 四川长河科技有限公司 | Circulation cooling heat transfer printing machine |
| CN212194640U (en) * | 2020-05-06 | 2020-12-22 | 宝鸡市群盛机械科技有限公司 | Single input single output circulating water cooling printing roller |
| CN216423820U (en) * | 2021-09-15 | 2022-05-03 | 云南天欣彩印包装有限公司 | Continuous cooling device of printing machine |
| CN218749905U (en) * | 2022-11-18 | 2023-03-28 | 湖北楚之翼彩印有限责任公司 | Dust collecting device of printing machine |
| CN118438802A (en) * | 2024-06-20 | 2024-08-06 | 江西犀瑞制造有限公司 | Blade printer |
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| CN119953077B (en) | 2025-12-30 |
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