CN115157853B - Gilding press rubberizing mechanism and install gilding press of this rubberizing mechanism - Google Patents

Gilding press rubberizing mechanism and install gilding press of this rubberizing mechanism Download PDF

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Publication number
CN115157853B
CN115157853B CN202210886298.5A CN202210886298A CN115157853B CN 115157853 B CN115157853 B CN 115157853B CN 202210886298 A CN202210886298 A CN 202210886298A CN 115157853 B CN115157853 B CN 115157853B
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frame
spring
rod
roller
positioning
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CN115157853A (en
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周丽君
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Zhejiang New Minglong Warp Knitting Co ltd
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Zhejiang New Minglong Warp Knitting Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F19/00Apparatus or machines for carrying out printing operations combined with other operations
    • B41F19/02Apparatus or machines for carrying out printing operations combined with other operations with embossing
    • B41F19/06Printing and embossing between a negative and a positive forme after inking and wiping the negative forme; Printing from an ink band treated with colour or "gold"
    • B41F19/062Presses of the rotary type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F16/00Transfer printing apparatus
    • B41F16/02Transfer printing apparatus for textile 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

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Treatment Of Fiber Materials (AREA)

Abstract

The invention discloses a stamping machine rubberizing mechanism and a stamping machine provided with the rubberizing mechanism, which comprise a frame, wherein a rubberizing groove is formed in the frame, a pair of lifting tables are arranged above the rubberizing groove in an up-and-down sliding manner in the frame, a compression roller is rotatably arranged between the two lifting tables, an oil cylinder for controlling the compression roller to lift up and down is arranged on the frame, a lifting frame is arranged in the frame in an up-and-down sliding manner, a mounting frame is arranged in the lifting frame in a left-and-right sliding manner, a plurality of flower rollers with different flower shapes are rotatably arranged on the mounting frame, a control mechanism for controlling the lifting frame to lift is arranged on the frame, and a first positioning switch is arranged between the lifting frame and the mounting frame. The structure makes the change of the roller more convenient and quick, and further improves the production efficiency.

Description

Gilding press rubberizing mechanism and install gilding press of this rubberizing mechanism
Technical Field
The invention relates to the field of cloth production equipment, in particular to a gilding press rubberizing mechanism and a gilding press provided with the rubberizing mechanism.
Background
The gold stamping technology on the gold stamping machine clothing is mainly electrochemical aluminum hot stamping foil, and mainly adopts a heating and pressurizing method to transfer patterns or characters to the surface of a material to be hot stamped. The old money gilt technology uses oily gilt thick liquid, commonly called gilt glue, and the glue is used for gilt of cloth of whole roll in most cases. According to the conventional operation sequence, the gold stamping glue is coated on the gold stamping film, heated and air-dried by an oven, and then cloth is followed on a gold stamping roller.
The application number is: the Chinese patent of CN202011312435.1 discloses a novel gilding press, which comprises an offset printing support, a gilding support and a winding frame which are sequentially arranged, wherein the offset printing support comprises a first material roller and a pattern roller assembly; wherein the bottom of the pattern roller assembly positioned below is positioned in the glue groove; a first cloth guide roller is arranged above the first material roller; wherein one side of the gold stamping bracket is provided with a discharging roller, and the other side is provided with a pressing roller; a feeding cloth guide roller is arranged above the discharging roller, and a discharging cloth guide roller is arranged below the discharging roller; wherein the feeding cloth guide roller and the discharging cloth guide roller are both fixed on the gold stamping bracket; wherein the upper and lower parts of the pressing roller are respectively provided with a silica gel pressing roller; the ends of the silica gel compression rollers are fixed on adjusting brackets, and each adjusting bracket is fixedly connected with an adjusting cylinder on the gold stamping bracket; one end of the gold stamping bracket is sequentially provided with a cloth stretching device, a rubber bending roller and a silica gel flattening roller from top to bottom; and the winding frame is provided with a material collecting cloth guide roller and a winding roller. Putting PUR glue into a glue groove 6 for melting in the working process, wherein a gold stamping film is placed on a first material roller 4, and a cloth feeding piece is placed on a material discharging roller 8; the gilt film sequentially passes through the pattern roller assembly 5, and because the pattern roller assembly 5 is positioned in the glue groove 6, the gilt film is transferred to the gilt film through the pattern roller, then is sent into the ironing roller 9 through the first cloth guide roller 7 and the silica gel flattening roller 17, meanwhile, cloth is sequentially sent into the ironing roller 9 through the feeding cloth guide roller 10, the cloth stretching machine 15 and the silica gel bending roller 16, the cloth feeding and gilt film are matched with the ironing roller 9 and the silica gel pressing roller 12, pressure is applied to gilt, finally, the gilt film is discharged through the discharging cloth guide roller 11, and the heat dissipation device 20 dissipates heat in the discharging process; after the heat dissipation is finished, the surface of the material is further dedusted by a dedusting box 21, and then the material is fed into a material receiving and cloth guiding roller for progressive winding, and finally the material is collected by a winding roller 19.
The gilding press has a disadvantage: in the cloth production process, the cloth with different patterns is often produced, so that after the cloth with one batch of patterns is produced, another corresponding pattern roller is required to be replaced to produce the cloth with another pattern, the original pattern roller is required to be detached and then a new pattern roller is required to be installed by the gilding press, the disassembly and the installation are more troublesome, and the production efficiency is low.
Disclosure of Invention
In order to improve when needing the cloth of another pattern of production, need change another kind of embossing roller, the embossing roller is installed and is dismantled the trouble problem relatively, this application provides a gilding press rubberizing mechanism.
The application provides a gilding press rubberizing mechanism adopts following technical scheme:
the utility model provides a gilding press rubberizing mechanism, includes the frame, be provided with the gluey groove in the frame, be equipped with a pair of elevating platform in the frame of gluey groove top with sliding from top to bottom, be provided with the compression roller between two elevating platform rotationally, be equipped with the hydro-cylinder of control compression roller oscilaltion in the frame, be provided with the crane in the frame with sliding from top to bottom, be provided with the mounting bracket with sliding from side to side on the crane, rotationally be provided with the flower roller of a plurality of different flower types on the mounting bracket, be provided with the control mechanism that control crane riseed in the frame, be equipped with first positioning switch between crane and the mounting bracket.
Through adopting above-mentioned technical scheme, after the cloth of a batch of flower type has been produced, when needing the cloth of another flower type of production, can control the compression roller through the hydro-cylinder earlier and rise, then the control mechanism control crane rises for the flower roller on the crane breaks away from gluey inslot, opens first location switch, the horizontal promotion mounting bracket, the flower roller that makes needs is located gluey groove's top, the control crane descends again, make the glue contact of corresponding flower roller in gluey inslot, at last with first switch closed, the hydro-cylinder control compression roller descends to support and presses on the flower roller that corresponds can, such structure makes to change flower roller more convenient and fast, production efficiency has also been further improved simultaneously.
Optionally, the control mechanism includes the locating piece and is located the first spring of crane bottom play supporting role, when first spring is in natural state, the flower roller all is located the top in gluey groove, the compression roller supports and presses in the flower roller, when first spring is in compressed state, the crane is contradicted with the locating piece, and flower roller descends and contacts with glue in the gluey groove.
Through adopting above-mentioned technical scheme, in the in-process of changing the colored roller, after the cylinder control compression roller upwards lifts, the colored roller loses the pressure of supporting of compression roller and can upwards remove along with whole mounting bracket under the effect of first spring, make colored roller follow the gluey inslot and remove, follow-up after having changed colored roller, cylinder control compression roller down removes, and the compression roller can promote corresponding colored roller down to remove together until crane and locating piece conflict, make the glue contact in corresponding colored roller and the gluey inslot, such control mechanism can realize automatic control crane and go up and down under the effect of cylinder, do not need operating personnel to deliberately go to control mechanism, make operating personnel operate more conveniently.
Optionally, the compression roller supports and presses in the embossing roller, when the crane is contradicted with the locating piece, be equipped with the second location switch between frame and the crane.
Through adopting above-mentioned technical scheme, the setting of second positioning switch makes can play the effect of further location to the crane at gilt in-process, reduces the range that the dancer roller beats from top to bottom in gilt in-process for gilt effect is better.
Optionally, the first positioning switch includes the locating lever, the locating lever sets up on the elevating platform, be equipped with on the mounting bracket with the locating hole of colored roller one-to-one, be equipped with the through-hole that supplies the locating lever to pass on the elevating bracket, when the locating lever passed the through-hole and inserts in arbitrary locating hole, the colored roller that corresponds with this locating hole is located gluey groove.
By adopting the technical scheme, the first positioning switch is linked with the oil cylinder, so that the oil cylinder can be separated from the through hole and the positioning hole in the process of controlling the lifting platform to ascend, the first positioning switch is opened, and the mounting frame can be horizontally pushed; after the through hole aligns with the corresponding locating hole, the oil cylinder controls the lifting platform to descend, the locating rod penetrates through the through hole and is inserted into the locating hole, the first locating switch is closed, the mounting frame and the lifting frame are fixed, and the structure enables an operator to operate more conveniently, and production efficiency is improved.
Optionally, the second positioning switch includes clamping rod, second spring, preceding baffle and backplate, the clamping rod slides and connects on the crane, the frame be equipped with the draw-in groove of clamping rod joint, preceding baffle is fixed with clamping rod lateral wall, the backplate is fixed with the crane, second spring one end is connected with preceding baffle, and the other end is connected with the backplate, the clamping rod is equipped with the inclined plane that the atress was forced to the locating lever impel the clamping rod card to go into the draw-in groove for the other end of draw-in groove, when the second spring was in natural state, the locating lever was located directly over the inclined plane.
By adopting the technical scheme, the second positioning switch is linked with the oil cylinder, so that after the oil cylinder is controlled to ascend together with the lifting table and the positioning rod, the clamping rod can fall out of the clamping groove under the action of the second spring, and the second positioning switch is opened; when the oil cylinder pushes the lifting platform to move downwards together with the positioning rod, the positioning rod can prop against the inclined surface of the clamping rod and push the lifting frame to move downwards together, and when the lifting frame moves to align with the clamping groove, the clamping rod can be automatically clamped into the clamping groove under the action of the positioning rod, so that an operator can operate more conveniently, and the production efficiency is improved.
Optionally, the locating lever includes body of pipe, body of rod and third spring, the body of rod sets up in the body of pipe slidingly, the one end of third spring is fixed with the inner of body of rod, and the other end is fixed with the inside wall of body of pipe, when the third spring is in natural state, the outer end of body of rod extends outside the body of pipe.
Through adopting above-mentioned technical scheme, when hydro-cylinder promotion elevating platform and locating lever move down the in-process that the pole body can conflict earlier on the inclined plane, at the in-process that continues to move down, the third spring takes place the compression, the pole body contracts in toward the body of pipe, just can promote the flower roller and the crane to move down together until the crane is contradicted with the locating piece after the compression roller is contradicted to the flower roller, at this moment, the clamping pole just aligns with the draw-in groove, the pole body moves outside the body of pipe under the effect of third spring and promotes the clamping pole and remove for in the clamping pole card goes into the draw-in groove, such setting makes flower roller and crane be realized through compression roller and flower roller conflict at the in-process that moves down, but realize through clamping pole and locating lever, make clamping pole and locating lever not fragile.
Optionally, a lifting mechanism for adjusting the height of the first spring is arranged on the frame, one end of the first spring is connected with the bottom of the lifting frame, and the other end of the first spring is connected with the lifting mechanism.
Through adopting above-mentioned technical scheme, elevating system's setting can control the softness degree of first spring, when elevating system contradicts with the locating piece, the compression roller also supports to press on the colored roller that corresponds, when elevating system control first spring risees, first spring can take place to compress for compression roller and colored roller both can grow to the extrusion force that cloth produced, when elevating system control first spring descends, first spring can become long, make compression roller and colored roller both can diminish to the extrusion force that cloth produced, the required different extrusion force of different cloth of such setting can adapt to needs of its application scope is enlarged.
Optionally, elevating system includes mobile station and screw rod, the mobile station slides from top to bottom and connects in the frame, the screw rod is vertical to be set up and with mobile station threaded connection, the screw rod rotates with the frame to be connected.
The stamping machine comprises a machine body, wherein the machine body is provided with the stamping machine rubberizing mechanism.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the gilding press rubberizing mechanism of this application can be more convenient change the embossing roller, has improved production efficiency greatly.
2. Gilding press is fixed the crane through second positioning switch at the in-process of work for the flowers roller is difficult for taking place to beat by a wide margin, makes gilding effect better.
Drawings
Fig. 1 is a perspective view of a first embodiment of the present application.
Fig. 2 is a block diagram of fig. 1 with the right side plate of the frame and a patterned roll removed.
Fig. 3 is a schematic diagram for illustrating the structure of the first positioning switch.
Fig. 4 is a partial enlarged view at a in fig. 2.
Fig. 5 is a schematic diagram of a second embodiment of the present application.
Reference numerals illustrate: 1. a frame; 2. a glue groove; 3. a lifting table; 4. a press roller; 5. an oil cylinder; 6. a lifting frame; 7. a mounting frame; 8. a patterned roll; 9. a control mechanism; 91. a first spring; 92. a positioning block; 10. a first positioning switch; 101. a positioning rod; 1011. a tube body; 1012. a rod body; 1013. a third spring; 102. positioning holes; 103. a through hole; 11. a second positioning switch; 111. a clamping rod; 112. a second spring; 113. a front baffle; 114. a rear baffle; 115. a clamping groove; 116. an inclined surface; 12. a lifting mechanism; 121. a mobile station; 122. a screw; 13. a receiving groove; 14. a cloth guide roller; 15. a body; 16. and a gilding press rubberizing mechanism.
Description of the embodiments
The present application is described in further detail below in conjunction with figures 1-5.
An embodiment first, this application embodiment discloses gilding press rubberizing mechanism. Referring to fig. 1 and 2, gilding press rubberizing mechanism includes frame 1, be provided with gluey groove 2 in frame 1, be provided with two cloth guide roll 14 rotationally in frame 1, two cloth guide roll 14 are provided with the left and right sides of gluey groove 2 top respectively, slide respectively in frame 1 of gluey groove 2 top and be connected with a pair of elevating platform 3, be provided with compression roller 4 rotationally between two elevating platform 3, be equipped with the hydro-cylinder 5 that control corresponds elevating platform 3 oscilaltion respectively in the left and right sides of frame 1, slide respectively in frame 1 and be connected with crane 6 from top to bottom, crane 6 is two, be located respectively in the below of elevating platform 3, horizontal slip is connected with mounting bracket 7 about between two crane 6, be provided with the flower roll 8 of three different flower types rotationally on mounting bracket 7, three flower roll 8 are located same horizontal height, be provided with the control mechanism 9 that control each crane 6 risen respectively in the left and right sides of frame 1, be equipped with between crane 6 and the mounting bracket 7 and the first location switch 10 that fixes a position to 7, be provided with below 7 in frame 1 can follow the glue groove 13 in the mounting bracket 13 can follow the glue groove in the frame 2 and drop down.
Referring to fig. 2, the control mechanism 9 includes a positioning block 92 and a first spring 91 located at the bottom of the lifting frame 6 and having a supporting function, the first spring 91 is provided with two springs, when the cylinder 5 controls the pressing roller 4 to rise, the first spring 91 is in a natural state, the patterned roller 8 is located above the glue groove 2, so that the mounting frame 7 can move left and right to replace the patterned roller 8, when the pressing roller 4 abuts against the patterned roller 8, the lifting frame 6 abuts against the positioning block 92 when the first spring 91 is in a compressed state, and the corresponding patterned roller 8 descends and contacts glue in the glue groove 2.
Referring to fig. 2, when the press roller 4 abuts against the patterned roller 8 and the lifting frame 6 abuts against the positioning block 92, a second positioning switch 11 is arranged between the frame 1 and the lifting frame 6, and the second positioning switch 11 can further limit the lifting frame 6, so that the lifting frame 6 is not easy to jump up and down in a large extent.
Referring to fig. 2 and 3, the first positioning switch 10 includes a positioning rod 101, the positioning rod 101 is fixedly disposed below the lifting platform 3, positioning holes 102 corresponding to the rollers 8 one by one are provided on the mounting frame 7, through holes 103 through which the positioning rod 101 passes are provided on the lifting frame 6, when the positioning rod 101 passes through the through holes 103 and is inserted into any positioning hole 102, the rollers 8 corresponding to the positioning holes 102 are located in the glue groove 2, at this time, left and right positioning of the mounting frame 7 can be achieved, when the lifting platform 3 ascends, after the positioning rod 101 is separated from the through holes 103 and the positioning holes 102, opening of the first positioning switch 10 can be achieved, and thus the mounting frame 7 can move left and right.
Referring to fig. 2 and 4, the second positioning switch 11 includes a clamping rod 111, a second spring 112, a front baffle 113 and a rear baffle 114, where the clamping rod 111 is slidably connected to the lifting frame 6, the frame 1 is provided with a clamping groove 115 clamped with the clamping rod 111, the front baffle 113 is fixed to the side wall of the clamping rod 111, the rear baffle 114 is fixed to the lifting frame 6, one end of the second spring 112 is connected with the front baffle 113, the other end is connected with the rear baffle 114, the other end of the clamping rod 111 opposite to the clamping groove 115 is provided with an inclined surface 116 stressed by the positioning rod 101 to enable the clamping rod 111 to be clamped into the clamping groove 115, and when the second spring 112 is in a natural state, the positioning rod 101 is located right above the inclined surface 116.
Referring to fig. 3 and 4, the positioning rod 101 includes a tube 1011, a rod 1012, and a third spring 1013, wherein the rod 1012 is slidably disposed in the tube 1011 up and down, one end of the third spring 1013 is fixed to the inner end of the rod 1012, the other end is fixed to the inner side wall of the tube 1011, and when the third spring 1013 is in a natural state, the outer end of the rod 1012 extends out of the tube 1011. When the clamping rod 111 is forced to move down by the oil cylinder 5, the rod body 1012 will firstly abut against the inclined surface 116 of the clamping rod 111, the clamping rod 111 will move down, the rod body 1012 will retract into the pipe body 1011, the third spring 1013 will compress until the press roller 4 abuts against the lower roller 8 and pushes the roller 8, the mounting frame 7, the lifting frame 6, the clamping rod 111 and the positioning rod 101 to move down together until the lifting frame 6 abuts against the positioning block 92, at this time, the clamping rod 111 just aligns with the clamping groove 115, the third spring 1013 will push the rod body 1012 to move down and push the clamping rod 111 to move towards the clamping groove 115, so that the clamping rod 111 will be clamped into the clamping groove 115, and the rod body 1012 will be inserted into the positioning hole 102 through the through hole 103.
Referring to fig. 2, a lifting mechanism 12 for adjusting the height of a first spring 91 is arranged on a frame 1, one end of the first spring 91 is connected with the bottom of a lifting frame 6, the other end of the first spring 91 is connected with the lifting mechanism 12, the lifting mechanism 12 comprises a moving table 121 and a screw rod 122, the moving table 121 is connected on the frame 1 in a sliding manner up and down, the screw rod 122 is vertically arranged and is in threaded connection with the moving table 121, the screw rod 122 is rotationally connected with the frame 1, a nut is fixedly sleeved on the screw rod 122, and the screw rod 122 can be rotated by rotating the nut through a wrench, so that the moving table 121 can be adjusted up and down.
The sliding connection structure related in the application can be used for firstly installing the sliding block into the sliding groove, and then welding the corresponding part with the sliding block, so that the sliding connection structure is installed.
In this application, the rotation of the patterned roll 8 and the press roll 4 can be driven by the transmission of cloth, and in another embodiment, a set of motor can be installed on the frame 1, a gear is installed on the motor, and a gear is also fixedly sleeved on each patterned roll 8, and the patterned rolls are mutually meshed through gears to be independently driven by the motor.
The implementation principle of the stamping machine rubberizing mechanism of the embodiment of the application is as follows: when the patterned roll 8 needs to be replaced, firstly, the lifting table 3, the press roll 4 and the positioning rod 101 are moved upwards together through the oil cylinder 5, in the process that the positioning rod 101 moves upwards, the positioning rod 101 is separated from the positioning hole 102 and the through hole 103, so that the first positioning switch 10 is opened, the clamping rod 111 is separated from the clamping groove 115 under the action of the second spring 112 (the surface of the clamping rod 111 is covered with a stainless steel layer, the surface of the clamping rod 111 is smooth and is easier to separate from the clamping groove 115), the second positioning switch 11 is opened, the lifting frame 6, the mounting frame 7 and the patterned roll 8 are lifted upwards under the action of the first spring 91, the patterned roll 8 originally in the glue groove 2 is moved out of the glue groove 2, and an operator can push the mounting frame 7, so that the required patterned roll 8 is moved above the glue groove 2, and at the moment, the corresponding positioning hole 102 is communicated with the through hole 103; then, the lifting table 3 and the pressing roller 4 move downwards through the oil cylinder 5, after the rod 1012 of the positioning rod 101 is abutted against the inclined surface 116 of the clamping rod 111, the rod 1012 gradually retracts into the pipe 1011, the third spring 1013 compresses until the pressing roller 4 is abutted against the lower roller 8 and pushes the roller 8, the mounting frame 7, the lifting frame 6, the clamping rod 111 and the positioning rod 101 to move downwards together until the lifting frame 6 is abutted against the positioning block 92, at the moment, the clamping rod 111 is just aligned with the clamping groove 115, the rod 1012 extends out of the pipe 1011 under the action of the third spring 1013, the rod 1012 acts on the inclined surface 116 and pushes the clamping rod 111 to be clamped into the clamping groove 115, the closing of the second positioning switch 11 is realized, and after the clamping rod 111 moves sideways, the rod 1012 continues to move downwards under the action of the third spring 1013 and is inserted into the corresponding positioning hole 102 through the through hole 103, so that the closing of the first positioning switch 10 is realized.
The number of the embossing rollers 8 on the mounting frame 7 can be adjusted in design according to actual needs. The patterned roll 8 is fixed in the mounting groove of the mounting frame 7 through the pressing plate and the bolts, and can be independently detached from one patterned roll 8, so that when the patterned roll 8 outside the mounting frame 7 needs to be replaced, the other patterned roll 8 can be independently detached and replaced under the condition of no shutdown, and the production efficiency can be greatly improved.
Embodiment two: referring to fig. 5, the gilding press comprises a machine body 15, wherein the machine body 15 and the application number are as follows: the machine body 15 in CN202011312435.1 is the same except that the gumming mechanism in the machine body 15 is replaced with the gilding press gumming mechanism 16 in the first embodiment.
The foregoing are all preferred embodiments of the present application, and are not intended to limit the scope of the present application in any way, therefore: all equivalent changes in structure, shape and principle of this application should be covered in the protection scope of this application.

Claims (5)

1. The utility model provides a gilding press rubberizing mechanism, includes frame (1), be provided with on frame (1) and glue groove (2), frame (1) of gluey groove (2) top are equipped with a pair of elevating platform (3) with sliding from top to bottom, are provided with compression roller (4) rotationally between two elevating platform (3), be equipped with hydro-cylinder (5) of control compression roller (4) oscilaltion on frame (1), its characterized in that: the utility model discloses a machine frame, including frame (1), frame (6), frame (7), frame (6), frame (1) are provided with crane (6) from top to bottom to slide ground, frame (6) are provided with mounting bracket (7) in side-to-side sliding ground, be provided with flower roller (8) of a plurality of different patterns on mounting bracket (7) rotationally, be provided with control mechanism (9) that control crane (6) risen on frame (1), be equipped with first location switch (10) between crane (6) and mounting bracket (7), control mechanism (9) include locating piece (92) and be located crane (6) bottom and play first spring (91) of supporting role, when first spring (91) are in the natural state, flower roller (8) all are located the top of gluing groove (2), compression roller (4) are pressed in flower roller (8), when first spring (91) are in the compression state, crane (6) and (92) conflict, and flower roller (8) descend and contact with glue in the locating piece (2), compression roller (4) are located between locating piece (6) and frame (1), location switch (10), the positioning rod (101) is arranged on the lifting table (3), positioning holes (102) corresponding to the rollers (8) one by one are formed in the mounting frame (7), through holes (103) for the positioning rod (101) to pass through are formed in the lifting frame (6), when the positioning rod (101) passes through the through holes (103) and is inserted into any positioning hole (102), the rollers (8) corresponding to the positioning holes (102) are positioned in the glue groove (2), the second positioning switch (11) comprises a clamping rod (111), a second spring (112), a front baffle plate (113) and a rear baffle plate (114), the clamping rod (111) is slidingly connected to the lifting frame (6), the frame (1) is provided with a clamping groove (115) clamped with the clamping rod (111), the front baffle plate (113) is fixed with the side wall of the clamping rod (111), one end of the second spring (112) is connected with the front baffle plate (113), the other end of the second spring (112) is connected with the rear baffle plate (114), the other end of the clamping rod (111) is connected with the clamping rod (111) in a natural state of being positioned in the inclined plane (116) opposite to the clamping rod (111), the positioning rod (101) is positioned right above the inclined surface (116).
2. A stamping press gumming mechanism as claimed in claim 1, wherein: the locating rod (101) comprises a pipe body (1011), a rod body (1012) and a third spring (1013), wherein the rod body (1012) is slidably arranged in the pipe body (1011), one end of the third spring (1013) is fixed with the inner end of the rod body (1012), the other end of the third spring is fixed with the inner side wall of the pipe body (1011), and when the third spring (1013) is in a natural state, the outer end of the rod body (1012) extends out of the pipe body (1011).
3. A stamping press gumming mechanism as claimed in claim 2, wherein: the lifting mechanism (12) for adjusting the height of the first spring (91) is arranged on the frame (1), one end of the first spring (91) is connected with the bottom of the lifting frame (6), and the other end of the first spring is connected with the lifting mechanism (12).
4. A stamping press gumming mechanism as claimed in claim 3, wherein: the lifting mechanism (12) comprises a moving table (121) and a screw (122), the moving table (121) is connected to the frame (1) in a vertical sliding mode, the screw (122) is vertically arranged and is in threaded connection with the moving table (121), and the screw (122) is rotationally connected with the frame (1).
5. Gilding press, including organism (15), its characterized in that: the machine body (15) is provided with a gilding press rubberizing mechanism (16) according to any one of claims 1-4.
CN202210886298.5A 2022-07-26 2022-07-26 Gilding press rubberizing mechanism and install gilding press of this rubberizing mechanism Active CN115157853B (en)

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CN202210886298.5A CN115157853B (en) 2022-07-26 2022-07-26 Gilding press rubberizing mechanism and install gilding press of this rubberizing mechanism

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CN115157853B true CN115157853B (en) 2023-06-30

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Denomination of invention: A hot stamping machine gluing mechanism and a hot stamping machine equipped with the gluing mechanism

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