CN114211904B - Embossing plate roller for three-dimensional embossing - Google Patents

Embossing plate roller for three-dimensional embossing Download PDF

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Publication number
CN114211904B
CN114211904B CN202111529071.7A CN202111529071A CN114211904B CN 114211904 B CN114211904 B CN 114211904B CN 202111529071 A CN202111529071 A CN 202111529071A CN 114211904 B CN114211904 B CN 114211904B
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CN
China
Prior art keywords
embossing
block
roller
auxiliary
frame body
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CN202111529071.7A
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Chinese (zh)
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CN114211904A (en
Inventor
贾文广
李红军
竹涛
石建峰
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Longyou Yuncheng Press Grain Plate Making Co ltd
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Longyou Yuncheng Press Grain Plate Making Co ltd
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Priority to CN202111529071.7A priority Critical patent/CN114211904B/en
Publication of CN114211904A publication Critical patent/CN114211904A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44BMACHINES, APPARATUS OR TOOLS FOR ARTISTIC WORK, e.g. FOR SCULPTURING, GUILLOCHING, CARVING, BRANDING, INLAYING
    • B44B5/00Machines or apparatus for embossing decorations or marks, e.g. embossing coins
    • B44B5/02Dies; Accessories
    • B44B5/026Dies

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  • Shaping Metal By Deep-Drawing, Or The Like (AREA)
  • Machines For Manufacturing Corrugated Board In Mechanical Paper-Making Processes (AREA)

Abstract

The invention provides an embossing plate roller for three-dimensional embossing, which relates to the technical field of plate rollers and comprises: a frame body and an embossing part; the frame body is fixed on the ground, and the frame body is rotationally connected with a roller body; the connecting blocks are welded on the frame body and are of rectangular block structures; an auxiliary block is welded in each clamping groove, the auxiliary blocks are of rectangular block structures, and the head ends of the auxiliary blocks are subjected to oblique angle treatment; when the seat body is clamped with the clamping groove, the stress block is elastically contacted with the top end surface of the auxiliary block, and the embossing block is exposed at the moment, so that the automatic extension of the embossing block is realized, and the problem that the existing device is easy to collide in the placing process is solved; secondly, the existing device can not automatically realize the cooling of the embossing plate roller without an electric element when embossing; finally, the problem of the shake-off of residues on the embossed structure cannot be automatically achieved in the embossing process.

Description

Embossing plate roller for three-dimensional embossing
Technical Field
The invention relates to the technical field of plate rollers, in particular to an embossing plate roller with three-dimensional embossing.
Background
The embossing process is a technology for carrying out artistic processing on the surface of a decorative packaging material by using an embossing plate roller with concave-convex lines to deform a pressure-bearing material (PVC, aluminum, wood board, paper and the like) at a certain pressure and temperature to form a certain pattern; the problem of collision needs to be noted when manufacturing the embossing plate roller.
The application number is as follows: CN202021193241.X relates to the technical field of plate rollers, in particular to an embossing plate roller, which comprises a hollow roller body, a water pipe positioning block and a cooling water pipe, wherein the surface of the roller body is provided with a copper plating layer and a chromium plating layer arranged on the surface of the copper plating layer, and the surface of the copper plating layer is engraved with embossing patterns; the central point of water pipe locating piece puts and is provided with the socket joint hole that is used for supplying condenser tube to run through, is provided with the cooling water route on condenser tube's the axis direction, and condenser tube's pipe wall is provided with a plurality of jet orifices with cooling water route intercommunication. The high-pressure cooling water body is injected into a cooling water channel, and the cooling water body in the cooling water channel is directly sprayed to the inner wall of the roller body through a plurality of spray holes, so that the cooling water body cools the inner wall of the roller body; the inner wall that this mode can make the roll body can be direct with the water contact to make the inner wall of roll body can obtain abundant cooling and quick cooling, and then improve the cooling effect and the cooling efficiency of roll body.
However, with respect to the above-mentioned application and the current conventional embossing roller, first, the existing apparatus is easily knocked during the placement process; secondly, the existing device can not automatically realize the cooling of the embossing plate roller without an electric element when embossing; finally, the shake off of residues on the embossed structure cannot be automatically realized in the embossing process.
Disclosure of Invention
In view of the above, the present invention provides an embossing roller for stereoscopic embossing, which has an embossing part, and by structural improvement of the embossing part, embossing blocks are contracted when placed, so that the embossing blocks are prevented from being bumped, and the embossing blocks automatically extend after the embossing part is installed; the embossing roller is also provided with a through hole A and a through hole B, and through the arrangement of the through holes A and the through holes B, the air flow type cooling of the embossing roller can be realized; still have elastic expansion link and auxiliary tank, through the setting of elastic expansion link and auxiliary tank, can realize the shake of residue on the embossing block automatically at embossing roller pivoted in-process and fall.
The invention provides an embossing plate roller for three-dimensional embossing, which specifically comprises: a frame body and an embossing part; the frame body is fixed on the ground, and the frame body is rotationally connected with a roller body; the connecting blocks are welded on the frame body and are of rectangular block structures; two fixing bolts A are inserted into the connecting block, and the two fixing bolts A are in threaded connection with expansion nuts pre-buried on the ground; the bottom end surface of the connecting block is higher than the bottom end surface of the frame body, the height difference of the two is 5cm, and the connecting block is in an elastic bending shape after the two fixing bolts A are screwed down; ten embossing parts are arranged in total, and each embossing part consists of a seat body, a sliding rod, an embossing block, a stress block, an elastic piece and a fixing bolt B.
Optionally, two baffle seats are symmetrically arranged on the roller body; the inner sides of the two baffle seats are contacted with the frame body, and the inner sides of the two baffle seats are polished.
Optionally, two keep off the seat and all be annular structure, and the external diameter that keeps off the seat is all greater than the external diameter of roll body to two keep off the seat and have constituteed the support protective structure when the roll body is placed jointly.
Optionally, two sliding rods are connected to the base in a sliding manner, embossing blocks are arranged at the head ends of the sliding rods, and stress blocks are welded at the tail ends of the sliding rods; elastic pieces are sleeved on the two sliding rods, and the lower embossing block is pushed by the elasticity of the two elastic pieces to be in a contracted shape.
Optionally, the roll body is provided with clamping grooves in a ring-shaped array shape, each clamping groove is internally provided with a seat body in a clamping way, and the clamping grooves form a quick replacement structure of the seat body.
Optionally, an auxiliary block is welded in each clamping groove, the auxiliary block is of a rectangular block structure, and the head ends of the auxiliary blocks are subjected to oblique angle treatment; when the seat body is clamped with the clamping groove, the stress block is elastically contacted with the top end surface of the auxiliary block, and the embossing block is exposed at the moment.
Optionally, an installation seat is welded on the frame body, an elastic telescopic rod is fixedly connected to the installation seat through a bolt, and the head end of the elastic telescopic rod is of a hemispherical structure;
the roller body is provided with auxiliary grooves in a ring-shaped array shape, the auxiliary grooves are of hemispherical groove-shaped structures, and the elastic telescopic rods are in elastic clamping connection with the auxiliary grooves.
Optionally, the seat body is fixedly connected with the roller body through a fixing bolt B, and a gap between the fixing bolt B and the frame body is 0.2cm after the fixing bolt B is screwed.
Optionally, the roller body is of a hollow structure, a through hole A and a through hole B are formed in the roller body, and the through hole A and the through hole B are of rectangular hole structures; the through holes A and B are all obliquely arranged, the inclination angles of the through holes A and B are 30 degrees and-30 degrees respectively, and the through holes A and B jointly form an auxiliary heat dissipation structure of the roller body.
Advantageous effects
Through the arrangement of the through holes A and B, the roller body is of a hollow structure, the through holes A and B are formed in the roller body, and the through holes A and B are of rectangular hole structures; the through hole A and the through hole B are all obliquely arranged, the inclination angles of the through hole A and the through hole B are 30 degrees and-30 degrees respectively, and the through hole A and the through hole B form an auxiliary heat dissipation structure of the roller body together, so that when the roller body rotates, automatic wind collection can be realized through the through hole A, collected wind force can enter the roller body and then flow out through the through hole B, and finally, the air flow cooling of the roller body is realized.
By the arrangement of the embossing part, two sliding rods are connected to the base body in a sliding way, the head ends of the sliding rods are provided with embossing blocks, and the tail ends of the sliding rods are welded with stress blocks; elastic pieces are sleeved on the two sliding rods, and the lower embossing blocks are pushed to be in a contracted shape by the elastic force of the two elastic pieces, so that the embossing blocks can be prevented from being bumped in the placing process.
Through the cooperation setting of the embossing part and the auxiliary blocks, as each clamping groove is welded with one auxiliary block, the auxiliary block is of a rectangular block structure, and the head end of the auxiliary block is subjected to oblique angle treatment; when the seat body is clamped with the clamping groove, the stress block is elastically contacted with the top end surface of the auxiliary block, and the embossing block is exposed at the moment, so that the embossing block can automatically extend.
Through setting up of keeping off the seat, because two keep off the seat and be annular structure, and the external diameter that two kept off the seat is all greater than the external diameter of roll body to two keep off the support protection architecture when the seat has formed the roll body jointly and has placed, thereby accessible comes to keep off the seat and supports when placing the roll body, and then reduced the roll body and knocked with the probability.
Through support body and fixing bolt B's cooperation setting, because of the pedestal passes through fixing bolt B and roll body fixed connection, and when fixing bolt B screw up the clearance between fixing bolt B and the support body be 0.2cm after, thereby can realize fixing bolt B's not hard up suggestion through the support body.
Drawings
In order to more clearly illustrate the technical solution of the embodiments of the present invention, the drawings of the embodiments will be briefly described below.
The drawings described below are only for illustration of some embodiments of the invention and are not intended to limit the invention.
In the drawings:
fig. 1 is a schematic diagram of the front view structure of the present invention.
Fig. 2 is an enlarged schematic view of the structure of fig. 1 at a.
Fig. 3 is a schematic view showing an axial structure of a roll body and an embossed portion according to the present invention.
Fig. 4 is an enlarged schematic view of the structure of fig. 3B according to the present invention.
Fig. 5 is a schematic diagram of the right-hand structure of fig. 3 according to the present invention.
Fig. 6 is an enlarged schematic view of the structure of fig. 5 at C according to the present invention.
Fig. 7 is a schematic diagram of the split structure of fig. 3 in an isometric view.
Fig. 8 is an enlarged schematic view of the structure of fig. 7D according to the present invention.
FIG. 9 is a schematic sectional view of a roll body of the present invention in a disassembled configuration.
List of reference numerals
1. A frame body; 101. a connecting block; 102. a fixing bolt A; 103. a mounting base; 104. an elastic telescopic rod; 2. a roller body; 201. a blocking seat; 202. a clamping groove; 203. an auxiliary block; 204. an auxiliary groove; 205. a through hole A; 206. a through hole B; 3. an embossing part; 301. a base; 302. a slide bar; 303. embossing blocks; 304. a stress block; 305. an elastic member; 306. and fixing the bolt B.
Detailed Description
In order to make the objects, aspects and advantages of the technical solution of the present invention more clear, the technical solution of the embodiment of the present invention will be clearly and completely described below with reference to the accompanying drawings of the specific embodiment of the present invention. Unless otherwise indicated, terms used herein have the meaning common in the art. Like reference numerals in the drawings denote like parts.
Examples: please refer to fig. 1 to 9:
the invention provides an embossing plate roller for three-dimensional embossing, which comprises: a frame body 1 and an embossing part 3;
the frame body 1 is fixed on the ground, and the frame body 1 is rotatably connected with a roller body 2;
ten embossing parts 3 are provided in total, and the embossing part 3 is composed of a seat 301, a slide rod 302, an embossing block 303, a stress block 304, an elastic member 305, and a fixing bolt B306.
In addition, according to the embodiment of the present invention, as shown in fig. 1, a connection block 101 is welded on the frame body 1, and the connection block 101 has a rectangular block structure; two fixing bolts A102 are inserted into the connecting block 101, and the two fixing bolts A102 are in threaded connection with expansion nuts pre-buried on the ground; the bottom end surface of the connecting block 101 is higher than the bottom end surface of the frame body 1, the height difference of the two is 5cm, and when the two fixing bolts A102 are screwed down, the connecting block 101 is in an elastic bending shape, and then the locking movement of the fixing bolts A102 can be realized through elastic deformation return of the connecting block 101.
Furthermore, according to the embodiment of the present invention, as shown in fig. 1, two blocking seats 201 are symmetrically installed on the roller body 2; the inner sides of the two blocking seats 201 are contacted with the frame body 1, and the inner sides of the two blocking seats 201 are polished, so that the limit of the rotation of the roller body 2 can be realized through the two blocking seats 201.
In addition, according to the embodiment of the invention, as shown in fig. 1, the two blocking seats 201 are of annular structures, the outer diameters of the two blocking seats 201 are larger than the outer diameter of the roller body 2, and the two blocking seats 201 jointly form a supporting and protecting structure when the roller body 2 is placed, so that the roller body 2 can be supported by the blocking seat 201 when being placed, and the probability of collision of the roller body 2 is reduced.
In addition, according to the embodiment of the present invention, as shown in fig. 6, two sliding rods 302 are slidably connected to a base 301, an embossing block 303 is mounted at the head end of the sliding rod 302, and a stress block 304 is welded at the tail end of the sliding rod 302; the two sliding rods 302 are sleeved with the elastic pieces 305, and the elastic force of the two elastic pieces 305 pushes the lower embossing block 303 to be in a contracted shape, so that the embossing block 303 can be prevented from being knocked in the placing process.
In addition, according to the embodiment of the present invention, as shown in fig. 7 and 8, the roller body 2 is provided with the clamping grooves 202 in a ring-shaped array, each clamping groove 202 is clamped with one base 301, and the clamping grooves 202 form a quick replacement structure of the base 301, so that the base 301 can be conveniently disassembled, maintained and replaced.
In addition, according to the embodiment of the present invention, as shown in fig. 6, an auxiliary block 203 is welded in each card slot 202, the auxiliary block 203 has a rectangular block structure, and the head end of the auxiliary block 203 is subjected to an oblique angle treatment; when the base 301 is clamped with the clamping groove 202, the stress block 304 is elastically contacted with the top end surface of the auxiliary block 203, and the embossing block 303 is exposed, so that the embossing block 303 automatically stretches out.
In addition, according to the embodiment of the present invention, as shown in fig. 3, an installation seat 103 is welded on the frame body 1, an elastic telescopic rod 104 is fixedly connected to the installation seat 103 through a bolt, and the head end of the elastic telescopic rod 104 has a hemispherical structure;
the auxiliary groove 204 is formed in the roller body 2 in an annular array shape, the auxiliary groove 204 is of a hemispherical groove structure, and the elastic telescopic rod 104 is in an elastic clamping connection shape with the auxiliary groove 204, so that the roller body 2 and the embossing block 303 are in a continuous vibration shape when the roller body 2 rotates, and sundries on the embossing block 303 can be vibrated.
In addition, according to the embodiment of the present invention, as shown in fig. 2, the seat 301 is fixedly connected with the roller 2 through the fixing bolt B306, and when the fixing bolt B306 is screwed down, the gap between the fixing bolt B306 and the frame 1 is 0.2cm, so that the loosening prompt of the fixing bolt B306 can be realized through the frame 1.
In addition, according to the embodiment of the present invention, as shown in fig. 9, the roller body 2 has a hollow structure, the roller body 2 is provided with a through hole a205 and a through hole B206, and the through hole a205 and the through hole B206 have rectangular hole structures; the through hole A205 and the through hole B206 are all obliquely arranged, the inclination angles of the through hole A205 and the through hole B206 are 30 degrees and 30 degrees respectively, and the through hole A205 and the through hole B206 form an auxiliary heat dissipation structure of the roller body 2 together, so that when the roller body 2 rotates, automatic wind collection can be realized through the through hole A205, collected wind power can enter the roller body 2 and then flow out through the through hole B206, and finally, the air flow cooling of the roller body 2 is realized.
Specific use and action of the embodiment:
when the embossing part 3 is installed, an auxiliary block 203 is welded in each clamping groove 202, the auxiliary block 203 is of a rectangular block structure, and the head end of the auxiliary block 203 is subjected to oblique angle treatment; when the base 301 is clamped with the clamping groove 202, the stress block 304 is elastically contacted with the top end surface of the auxiliary block 203, and the embossing block 303 is exposed at the moment, so that the embossing block 303 automatically stretches out;
when the embossing part 3 is placed, two sliding rods 302 are connected on the base 301 in a sliding way, an embossing block 303 is arranged at the head end of each sliding rod 302, and a stress block 304 is welded at the tail end of each sliding rod 302; the two sliding rods 302 are sleeved with the elastic pieces 305, and the elastic force of the two elastic pieces 305 pushes the lower embossing block 303 to be in a contracted shape, so that the embossing block 303 can be prevented from being knocked in the placing process;
when the roller body 2 is placed, as the two baffle seats 201 are of annular structures, the outer diameters of the two baffle seats 201 are larger than the outer diameter of the roller body 2, and the two baffle seats 201 jointly form a supporting and protecting structure when the roller body 2 is placed, the roller body 2 can be supported by the baffle seat 201 when placed, and the probability of collision of the roller body 2 is reduced;
when the roller body 2 rotates, firstly, the seat body 301 is fixedly connected with the roller body 2 through the fixing bolt B306, and after the fixing bolt B306 is screwed down, the gap between the fixing bolt B306 and the frame body 1 is 0.2cm, so that the loosening prompt of the fixing bolt B306 can be realized through the frame body 1; second, because the roller body 2 is of a hollow structure, the roller body 2 is provided with a through hole A205 and a through hole B206, and the through hole A205 and the through hole B206 are of rectangular hole structures; the through holes A205 and the through holes B206 are all obliquely arranged, the inclination angles of the through holes A205 and the through holes B206 are 30 degrees and 30 degrees respectively, and the through holes A205 and the through holes B206 form an auxiliary heat dissipation structure of the roller body 2 together, so that when the roller body 2 rotates, automatic wind collection can be realized through the through holes A205, collected wind power can enter the roller body 2 and then flow out through the through holes B206, and finally, the air flow cooling of the roller body 2 is realized;
in the use process, two baffle seats 201 are symmetrically arranged on the roller body 2; the inner sides of the two blocking seats 201 are contacted with the frame body 1, and the inner sides of the two blocking seats 201 are polished, so that the limit of the rotation of the roller body 2 can be realized through the two blocking seats 201.
Finally, it should be noted that the present invention is generally described in terms of a/a pair of components, such as the location of each component and the mating relationship therebetween, however, those skilled in the art will appreciate that such location, mating relationship, etc. are equally applicable to other components/other pairs of components.
The above is only an exemplary embodiment of the present invention and is not intended to limit the scope of the present invention, which is defined by the appended claims.

Claims (4)

1. An embossing plate roller for three-dimensional embossing, comprising: a frame body (1) and an embossing part (3); the frame body (1) is fixed on the ground, and the roller body (2) is rotationally connected to the frame body (1); a connecting block (101) is welded on the frame body (1), and the connecting block (101) is of a rectangular block structure; two fixing bolts A (102) are inserted on the connecting block (101), and the two fixing bolts A (102) are in threaded connection with expansion nuts pre-buried on the ground; the bottom end surface of the connecting block (101) is higher than the bottom end surface of the frame body (1), the height difference of the two is 5cm, and the connecting block (101) is in an elastic bending shape after the two fixing bolts A (102) are screwed; ten embossing parts (3) are arranged in total, and each embossing part (3) consists of a seat body (301), a sliding rod (302), an embossing block (303), a stress block (304), an elastic piece (305) and a fixing bolt B (306); two sliding rods (302) are connected to the base body (301) in a sliding manner, embossing blocks (303) are arranged at the head ends of the sliding rods (302), and stress blocks (304) are welded at the tail ends of the sliding rods (302); the two sliding rods (302) are sleeved with elastic pieces (305), and the lower embossing block (303) is pushed to be in a contracted shape by the elastic force of the two elastic pieces (305);
the roller body (2) is provided with clamping grooves (202) in an annular array shape, each clamping groove (202) is internally clamped with a seat body (301), and the clamping grooves (202) form a quick replacement structure of the seat body (301);
an auxiliary block (203) is welded in each clamping groove (202), the auxiliary blocks (203) are of rectangular block structures, and the head ends of the auxiliary blocks (203) are subjected to oblique angle treatment; when the seat body (301) is clamped with the clamping groove (202), the stress block (304) is elastically contacted with the top end surface of the auxiliary block (203), and the embossing block (303) is exposed at the moment;
an installation seat (103) is welded on the frame body (1), an elastic telescopic rod (104) is fixedly connected to the installation seat (103) through a bolt, and the head end of the elastic telescopic rod (104) is of a hemispherical structure;
the roller body (2) is provided with auxiliary grooves (204) in an annular array shape, the auxiliary grooves (204) are of a hemispherical groove-shaped structure, and the elastic telescopic rods (104) are elastically clamped with the auxiliary grooves (204);
the seat body (301) is fixedly connected with the roller body (2) through the fixing bolt B (306), and when the fixing bolt B (306) is screwed down, the gap between the fixing bolt B (306) and the frame body (1) is 0.2cm.
2. An embossing roller for three-dimensional embossing as set forth in claim 1, wherein: two baffle seats (201) are symmetrically arranged on the roller body (2); the inner sides of the two baffle seats (201) are contacted with the frame body (1), and the inner sides of the two baffle seats (201) are subjected to polishing treatment.
3. An embossing roller for three-dimensional embossing as set forth in claim 2, wherein: the two baffle seats (201) are of annular structures, the outer diameters of the two baffle seats (201) are larger than the outer diameter of the roller body (2), and the two baffle seats (201) jointly form a supporting and protecting structure capable of placing the roller body (2).
4. An embossing roller for three-dimensional embossing as set forth in claim 1, wherein: the roller body (2) is of a hollow structure, a through hole A (205) and a through hole B (206) are formed in the roller body (2), and the through hole A (205) and the through hole B (206) are of rectangular hole structures; the through holes A (205) and the through holes B (206) are all obliquely arranged, the inclination angles of the through holes A (205) and the through holes B (206) are 30 degrees and-30 degrees respectively, and the through holes A (205) and the through holes B (206) form an auxiliary heat dissipation structure of the roller body (2) together.
CN202111529071.7A 2021-12-14 2021-12-14 Embossing plate roller for three-dimensional embossing Active CN114211904B (en)

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Application Number Priority Date Filing Date Title
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CN114211904B true CN114211904B (en) 2024-03-22

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Publication number Priority date Publication date Assignee Title
CN114950973A (en) * 2022-05-13 2022-08-30 陆丹丹 Swift sorting device based on storage commodity circulation is used

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