CN213441381U - Carton production cross cutting machine - Google Patents

Carton production cross cutting machine Download PDF

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Publication number
CN213441381U
CN213441381U CN202022172580.6U CN202022172580U CN213441381U CN 213441381 U CN213441381 U CN 213441381U CN 202022172580 U CN202022172580 U CN 202022172580U CN 213441381 U CN213441381 U CN 213441381U
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plate
cutting
engraving
male
female
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CN202022172580.6U
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Chinese (zh)
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王欢
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Bazhou Rongrunteng Packaging Products Co ltd
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Bazhou Rongrunteng Packaging Products Co ltd
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Abstract

The utility model discloses a carton production die-cutting machine, which comprises a male cutting plate and a female cutting plate which are meshed with each other, wherein cutting holes are arranged at the same positions of the male cutting plate and the female cutting plate, a limiting plate is arranged below the female cutting plate, and the back surface of the female cutting plate is fixedly connected with an air cylinder; a cutting plate is arranged behind the male engraving plate, and the male engraving plate is fixedly connected with the cutting plate through a plurality of strong springs; a cutting knife is arranged at the position of the cutting plate corresponding to the cutting hole; the limiting plate, the positive engraving plate and the cutting plate are not overlapped in spatial position; the heights of the male engraving plate, the female engraving plate and the cutting plate are not less than the height of the paperboard; the left and right sides same position of positive carving board, negative carving board and cutting board is provided with a plurality of locating hole, positive carving board, negative carving board and cutting board pass through the locating hole cover is established on the locating lever. The utility model adopts the above structure cross cutting machine, the indentation preparation, the fluting preparation with the carton cardboard are integrated one process and are accomplished.

Description

Carton production cross cutting machine
Technical Field
The utility model belongs to the technical field of the processing of carton cardboard and specifically relates to a carton production cross cutting machine is related to.
Background
With the rapid development of industries such as logistics, storage and the like, the demand of paper packing boxes is increasing. The existing carton die-cutting machine completes the paperboard indentation work and the slotting work in two flows, and the paperboard processing technology is relatively complex. The cardboard manufacturing procedure increases, and the needs spending of some subsequent equipment and place also increases correspondingly, has improved carton manufacturing cost.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a carton production cross cutting machine solves the loaded down with trivial details problem of carton cardboard processing technology.
In order to achieve the purpose, the utility model provides a carton production die-cutting machine, which comprises a male engraving plate, wherein a male engraving is arranged on the male engraving plate, the male engraving is divided into a cross grain male engraving and a vertical grain male engraving which are arranged in a staggered manner, rectangular cutting holes are arranged above and below the vertical grain male engraving, and the cutting holes below are positioned at the bottommost side of the male engraving plate;
a female engraving plate is arranged in front of the male engraving plate, female engraving is arranged on the female engraving plate, the female engraving is divided into cross-grain female engraving and vertical-grain female engraving which are arranged in a staggered mode, the male engraving and the female engraving are meshed with each other, a limiting plate is arranged below the female engraving plate, and the back face of the female engraving plate is fixedly connected with an air cylinder;
a cutting plate is arranged behind the male engraving plate, and the male engraving plate is fixedly connected with the cutting plate through a plurality of strong springs; a cutting knife is arranged at the position of the cutting plate corresponding to the cutting hole;
the limiting plate, the positive engraving plate and the cutting plate are not overlapped in spatial position; the heights of the male engraving plate, the female engraving plate and the cutting plate are not less than the height of the paperboard;
the left side and the right side of the male engraving plate, the female engraving plate and the cutting plate are provided with a plurality of positioning holes at the same positions, and the male engraving plate, the female engraving plate and the cutting plate are sleeved on the guide rod through the positioning holes; the male engraving plate and the female engraving plate are in sliding connection with the guide rod, and the cutting plate is fixedly connected with the guide rod.
Preferably, the intaglio plate is provided with a rectangular cutting hole corresponding to the cutting knife, and the limiting plate is provided with a notch corresponding to the cutting hole.
Preferably, a plurality of vent holes are formed in the bottom side of the engraving plate, and powerful fans are arranged at the vent holes in the back of the engraving plate.
Preferably, the male engraving plate is arranged in a concave structure, the width of the groove of the male engraving plate is not less than the width of the paperboard, and the male engraving plate is arranged on the concave structure; the intaglio plate is arranged to be a convex surface structure corresponding to the male intaglio plate, and the intaglio is arranged on the convex surface structure.
Preferably, the cutting knife is of a V-shaped structure, a strong spring and a triangular plate are arranged in a V-shaped groove of the cutting knife, and two ends of the strong spring are fixedly connected with the cutting plate and the triangular plate respectively.
Preferably, the front end of the cutting knife is positioned in the cutting hole.
The utility model adopts the above structure a carton production cross cutting machine integrates the indentation preparation of carton cardboard, fluting preparation to one process completion, has improved the machining efficiency of carton cardboard.
Drawings
Fig. 1 is a top view of an embodiment of a die cutting machine for producing cartons according to the present invention;
fig. 2 is a side view of an embodiment of a carton production die cutting machine of the present invention;
FIG. 3 is a top view of an intaglio plate of an embodiment of the carton production die cutting machine of the present invention;
fig. 4 is a top view of a male cutting board of an embodiment of the die cutting machine for carton production according to the present invention;
fig. 5 is a top view of a cutting board of an embodiment of the carton production die cutting machine of the present invention;
FIG. 6 is a side view of an intaglio plate of an embodiment of the carton production die cutting machine of the present invention;
fig. 7 is a side view of a male cutting board of an embodiment of the die cutting machine for carton production of the present invention;
FIG. 8 is an internal structure view of a cutter of an embodiment of the die-cutting machine for carton production according to the present invention;
fig. 9 is a side view of a cutting knife of an embodiment of the carton production die cutting machine of the present invention.
Reference numerals
1. A guide bar; 2. a cylinder; 3. a powerful fan; 4. engraving a plate in a negative mode; 5. a cutting knife; 6. carrying out male engraving; 7. a strong spring; 8. cutting the board; 9. a limiting plate; 10. positioning holes; 11. cutting the hole; 12. cross grain intaglio engraving; 13. a vent; 14. transverse striation and male engraving; 15. a cutting knife; 16. vertical line intaglio engraving; 17. vertical line etching; 18. etching in the sun; 19. a triangular plate.
Detailed Description
The technical solution of the present invention is further described in detail by the accompanying drawings and examples.
As shown in fig. 1-9, a carton production die-cutting machine comprises a male cutting plate 6, a male cutting 18 is arranged on the male cutting plate 6, the male cutting 18 is divided into a cross grain male cutting 14 and a vertical grain male cutting 17 which are arranged in a staggered manner, rectangular cutting holes 11 are arranged above and below the vertical grain male cutting 17, and the cutting holes 11 are used for a rear side cutting knife 15 to pass through. The lower cutting hole 11 is positioned at the bottommost side of the male engraving plate 6, so that the lower part of the paperboard is completely cut in the cutting process.
The front of the male engraving plate 6 is provided with a female engraving plate 4, the female engraving plate 4 is provided with female engraving, and the female engraving is divided into cross-grain female engraving 12 and vertical-grain female engraving 16 which are arranged in a staggered manner. The male 18 and female segments are intermeshed. In the paperboard processing process, the indentation manufacturing of the paperboard is completed through the extrusion effect of the male engraving 18 and the female engraving. A limiting plate 9 is arranged below the female engraving plate 4, and the limiting plate 9 is used for preventing the paperboard from falling in the processing process. The back of the female engraving plate 4 is fixedly connected with the cylinder 2, the female engraving plate 4 is driven to move back and forth by the cylinder 2, and then the extrusion operation of the female engraving plate 4 on the male engraving plate 6 is completed. For protecting 5 front ends of cutting knife and receive the damage less, the position that intaglio plate 4 corresponds cutting knife 5 is provided with rectangle cutting hole 11, and the position that limiting plate 9 corresponds cutting hole 11 is provided with the breach, and then avoids cutting knife 5 and intaglio plate 4 and limiting plate 9 to contact.
A cutting board 8 is arranged behind the positive carving board 6, and the positive carving board 6 is fixedly connected with the cutting board 8 through a plurality of strong springs 7. When the female engraving plate 4 extrudes the male engraving plate 6, the male engraving plate 6 slides backwards, and then the front end of the cutting knife 5 passes through the cutting hole 11, so as to complete slotting on the paper board. In order to prevent the front end of the cutting knife 5 from touching the male engraving plate 6, the front end of the cutting knife 5 is positioned in the cutting hole 11 of the male engraving plate 6.
Cartons are commonly provided with trapezoidal flaps for ease of packaging. In this embodiment, to achieve the above effect, the cutting knife 5 is set to a V-shaped structure. A strong spring 7 and a triangular plate 19 are arranged in the groove of the cutting knife 5, and two ends of the strong spring 7 are respectively fixedly connected with the cutting plate 8 and the triangular plate 19. Through strong spring 7, the cardboard piece that will cut the production pushes away from cutting knife 5, avoids blocking in the cutting knife 5 recess.
The limiting plate 9 is not overlapped with the male engraving plate 6 and the cutting plate 8 in the spatial position, so that the limiting plate 9 is prevented from being clamped on the male engraving plate 6 or the cutting plate 8, and the extrusion operation between the male engraving plate 6 and the female engraving plate 4 cannot be finished.
The heights of the male engraving plate 6, the female engraving plate 4 and the cutting plate 8 are not less than the height of the paperboard.
The left and right sides of the male engraving plate 6, the female engraving plate 4 and the cutting plate 8 are provided with a plurality of positioning holes 10 at the same positions, and the male engraving plate 6, the female engraving plate 4 and the cutting plate 8 are sleeved on the guide rod 1 through the positioning holes 10. The male engraving plate 6 and the female engraving plate 4 are in sliding connection with the guide rod 1, and the cutting plate 8 is fixedly connected with the guide rod 1.
In order to facilitate the placement of the paper boards, the placed paper boards are ensured to be positioned on the male engraving 18 of the male engraving 6, the male engraving 6 is arranged in a concave structure, and the male engraving 18 is arranged on the concave structure. And placing the paperboard into the groove. The groove width of the male cutting board 6 is not less than the width of the paperboard, and in the embodiment, the groove width of the male cutting board 6 is slightly larger than the width of the paperboard. The female engraving plate 4 is arranged in a convex structure corresponding to the male engraving plate 6, and correspondingly, the female engraving plate is arranged on the convex structure so as to complete the extrusion operation.
In order to ensure that the paperboard can be separated from the female engraving plate 4 and the male engraving plate 6 after being cut and does not stay on the limiting plate 9, a plurality of vent holes 13 are formed in the bottom side of the female engraving plate 4, and the positions of the vent holes 13 in the back of the female engraving plate 4 are provided with the powerful fan 3. After the cutting is completed, the powerful fan 3 is started to blow the paperboard off the engraving plate 4.
Before the cardboard was put into, set up to certain clearance between intaglio plate 4 and the positive board 6 of carving, limiting plate 9 was located positive 6 below of carving simultaneously, and the cardboard of being convenient for is put into and does not drop.
After the paperboard is placed in the groove, the cylinder 2 pushes the female engraving plate 4 to extrude the male engraving plate 6, and then the male engraving plate 6 moves backwards. In the process that the male engraving plate 6 moves backwards, the front end of the cutting knife 5 penetrates through the cutting hole 11 of the male engraving plate 6, and the slotting work of the paperboard is completed. When the strong spring 7 is extruded to the maximum compression length by the positive engraving plate 6, the positive engraving plate 6 does not move backwards any more, the maximum extrusion strength between the positive engraving plate 6 and the negative engraving plate 4 is reached, and the indentation manufacture of the paperboard is completed. At this point, the intaglio plate 4 starts to gradually move backwards. In the backward moving process of the female engraving plate 4, the male engraving plate 6 moves forward under the action of the strong spring 7, the cutting knife 5 is separated from the paperboard and enters the cutting hole 11 again, and meanwhile, the paperboard stays on the limiting plate 9. When the intaglio plate 4 moves to a specified distance, the limiting plate 9 and the male engraving plate generate a certain distance in the horizontal direction 6, and the powerful fan 3 is started to blow the paperboard away from the intaglio plate 4. The female engraving plate 4 moves forward a certain distance again, and the limiting plate 9 returns to the position below the male engraving plate 6 again to wait for the next paper board to be put in.
To sum up, the utility model adopts the above structure a carton production cross cutting machine integrates the indentation preparation of carton cardboard, fluting to one process completion, has improved the machining efficiency of carton cardboard.
The above are specific embodiments of the present invention, but the scope of protection of the present invention should not be limited thereto. Any changes or substitutions which can be easily conceived by those skilled in the art within the technical scope of the present invention are covered by the protection scope of the present invention, and therefore, the protection scope of the present invention is subject to the protection scope defined by the claims.

Claims (6)

1. The utility model provides a carton production cross cutting machine which characterized in that: the cutting device comprises a positive engraving plate, wherein positive engraving is arranged on the positive engraving plate and is divided into cross grain positive engraving and vertical grain positive engraving which are arranged in a staggered mode, rectangular cutting holes are arranged above and below the vertical grain positive engraving, and the cutting holes below the vertical grain positive engraving are located at the bottommost side of the positive engraving plate;
a female engraving plate is arranged in front of the male engraving plate, female engraving is arranged on the female engraving plate, the female engraving is divided into cross-grain female engraving and vertical-grain female engraving which are arranged in a staggered mode, the male engraving and the female engraving are meshed with each other, a limiting plate is arranged below the female engraving plate, and the back face of the female engraving plate is fixedly connected with an air cylinder;
a cutting plate is arranged behind the male engraving plate, and the male engraving plate is fixedly connected with the cutting plate through a plurality of strong springs; a cutting knife is arranged at the position of the cutting plate corresponding to the cutting hole;
the limiting plate, the positive engraving plate and the cutting plate are not overlapped in spatial position; the heights of the male engraving plate, the female engraving plate and the cutting plate are not less than the height of the paperboard;
the left side and the right side of the male engraving plate, the female engraving plate and the cutting plate are provided with a plurality of positioning holes at the same positions, and the male engraving plate, the female engraving plate and the cutting plate are sleeved on the guide rod through the positioning holes; the male engraving plate and the female engraving plate are in sliding connection with the guide rod, and the cutting plate is fixedly connected with the guide rod.
2. The carton production die cutting machine according to claim 1, characterized in that: the position of the female engraving plate, which corresponds to the cutting knife, is provided with a rectangular cutting hole, and the position of the limiting plate, which corresponds to the cutting hole, is provided with a notch.
3. The carton production die cutting machine according to claim 1, characterized in that: the bottom side of the female engraving plate is provided with a plurality of vent holes, and the vent holes at the back of the female engraving plate are provided with powerful fans.
4. The carton production die cutting machine according to claim 1, characterized in that: the male engraving plate is arranged to be of a concave structure, the width of a groove of the male engraving plate is not smaller than that of the paperboard, and the male engraving plate is arranged on the concave structure; the intaglio plate is arranged to be a convex surface structure corresponding to the male intaglio plate, and the intaglio is arranged on the convex surface structure.
5. The carton production die cutting machine according to claim 1, characterized in that: the cutting knife is of a V-shaped structure, a strong spring and a triangular plate are arranged in a V-shaped groove of the cutting knife, and two ends of the strong spring are fixedly connected with the cutting plate and the triangular plate respectively.
6. The carton production die cutting machine according to claim 1, characterized in that: the front end of the cutting knife is positioned in the cutting hole.
CN202022172580.6U 2020-09-28 2020-09-28 Carton production cross cutting machine Active CN213441381U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022172580.6U CN213441381U (en) 2020-09-28 2020-09-28 Carton production cross cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022172580.6U CN213441381U (en) 2020-09-28 2020-09-28 Carton production cross cutting machine

Publications (1)

Publication Number Publication Date
CN213441381U true CN213441381U (en) 2021-06-15

Family

ID=76282539

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022172580.6U Active CN213441381U (en) 2020-09-28 2020-09-28 Carton production cross cutting machine

Country Status (1)

Country Link
CN (1) CN213441381U (en)

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