Cardboard label jig capable of improving punching efficiency
By designing a pallet label fixture with a cutting blade assembly and a template assembly, the problems of low efficiency and waste entanglement in existing pallet label punching devices have been solved, achieving efficient and stable pallet label production.
Patent Information
- Application Number
- CN202422661285.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-01
AI Technical Summary
Existing cardboard label punching equipment has low production efficiency, and waste material easily gets tangled on the cutter, resulting in defective products and cutter obstruction, affecting cutting speed and cardboard quality.
A cardboard label fixture including a cutter assembly and a template assembly is designed. The cutter assembly contains four rectangularly distributed cutters, the template assembly has four cutting holes, and the limiting plate has through holes. After cutting, the cutters pass through the through holes to avoid waste material entanglement, ensuring that only a single layer of cardboard is cut each time.
It improves the production efficiency of cardboard labels, avoids waste entanglement, ensures cutting quality and cardboard integrity, and reduces the generation of defective products.
Smart Images

Figure CN223519832U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fixture technology, and in particular, it is a cardboard label fixture that can improve punching efficiency. Background Technology
[0002] Cardboard labels are cards used to mark product information and are widely used in daily production and sales, as well as in warehouse classification and storage. Cardboard labels are generally formed by cutting large pieces of cardboard. Existing cutting methods generally use a cutter to directly cut small pieces of cardboard of the appropriate size from the large pieces of cardboard. Existing punching devices generally include a cutter and a cutting hole on one side of the cutter. The cutter quickly passes through the cutting hole, thereby cutting out cardboard labels of the same size as the cross-section of the cutter.
[0003] However, existing punching devices have shortcomings in use: the existing punching method can only cut one label at a time, resulting in very low production efficiency. After one punching, the remaining waste material is easily caught on the outside of the cutter and moves with the cutter. The waste material caught on the cutter is easily partially dropped onto the cutting edge of the cutter as the cutter swings, and is also punched in the next punching. This will result in incomplete defective products in the punched label card. At the same time, the stacking of waste material and cardboard will also affect the cutting speed of the cutter, and the cardboard will have burrs on the edges due to the obstruction of the punching. Utility Model Content
[0004] In view of this, the present invention provides a cardboard label fixture that can improve punching efficiency to solve the above problems.
[0005] A cardboard label fixture capable of improving punching efficiency includes a cutter assembly and a template assembly disposed on one side of the cutter assembly. The cutter assembly includes two spaced-apart supports, a movable block slidably disposed between the two supports, a slide rail assembly disposed between the supports and the movable block, and four cutters disposed at the bottom of the movable block. The slide rail assembly is vertically distributed, and the cutters are rectangularly distributed at the bottom of the movable block. The template assembly includes a template body disposed between the two supports, a limiting plate covering the top of the template body, and a top groove disposed on the top of the template body. The template body has four cutting holes. The limiting plate has four through holes. The cross-sectional shape of the cutting holes is the same as the cutting surface shape of the cutters. The cross-sectional shape of the through holes is larger than the cutting surface shape of the cutters. Each cutter corresponds to one through hole and one cutting hole. The template assemblies are spaced apart at the bottom of the cutter assembly.
[0006] Further, the slide rail assembly comprises two slide rails arranged on opposite side walls of the support respectively, and two sliders arranged on two sides of the movable block respectively, the cross-sectional shape of the slider is same as that of the slide rail, and each slider is arranged in the slide rail in a sliding mode.
[0007] Further, a plurality of oil guide grooves are arranged on the surface of the movable block and the slider, the oil guide grooves are arranged on the side of the movable block in contact with the support and on two sides of the slider in contact with the side walls of the slide rail, the two ends of the oil guide groove are not communicated with the edge of the plane, and the oil guide groove is in an S shape.
[0008] Further, the two side walls of the top groove are communicated with the side walls of the template body respectively, so that the paper is inserted from the communicated position.
[0009] Further, a bottom groove is arranged on the bottom of the template body, so that the receiving box is installed.
[0010] Further, a template positioning block is arranged at each end of the template body, the cross-sectional shape of the template positioning block is same as that of the slide rail, and the template positioning block is fixedly installed in the slide rail through bolts.
[0011] Further, two protective plates are arranged between the two supports, the two protective plates and the support are connected to surround the movable block, and the protective plate is a transparent plate.
[0012] Compared with the prior art, the card label jig capable of improving the punching efficiency provided by the utility model can improve the production efficiency by arranging a cutter assembly and a template assembly on one side of the cutter assembly, the cutter assembly comprises four cutters arranged in a rectangular shape, the template assembly comprises a template body and a limiting plate arranged on the top of the template body, four cutters are arranged on the template body, the cutters can cut out four labels from the film on the top of the template body at a time, the limiting plate is provided with a through hole corresponding to each cutter, the cutter can pass through the through hole freely, when the cutter completes a cutting and is lifted back to the original position, the cutter will pass through the through hole, at this time, the through hole can block the waste material hung on the cutter, avoid the waste material from winding on the cutter to affect the cutting efficiency, and ensure that the cutter cuts only a single layer of card paper each time, and the quality of the punched card paper is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 The structure schematic view of the card label jig capable of improving the punching efficiency provided by the utility model.
[0014] Figure 2 for Figure 1 A schematic diagram of the structure of the card label fixture after removing the front protective plate, which can improve punching efficiency.
[0015] Figure 3 for Figure 1 A schematic diagram of the cutter assembly of a cardboard label fixture that can improve punching efficiency.
[0016] Figure 4 for Figure 1 A schematic diagram of the template assembly of a cardboard label fixture that can improve punching efficiency.
[0017] Figure 5 for Figure 1 A schematic diagram of the support structure for a cardboard label fixture that can improve punching efficiency.
[0018] Figure 6 for Figure 1 A schematic diagram of the cutter structure of a cardboard label fixture that can improve punching efficiency. Detailed Implementation
[0019] The specific embodiments of this utility model are described in further detail below. It should be understood that the description of the embodiments of this utility model herein is not intended to limit the scope of protection of this utility model.
[0020] like Figures 1 to 6 The diagram shows a structural schematic of the cardboard label fixture that improves punching efficiency according to this utility model. The cardboard label fixture includes a cutter assembly 10 and a template assembly 20 disposed on one side of the cutter assembly 10. The cardboard label fixture also includes other functional modules, such as a linear drive mold disposed on one side of the cutter assembly 10 for controlling the movement of the cutter assembly 10, a power supply module, and a controller, etc. These are technologies known to those skilled in the art and will not be described in detail here.
[0021] The cutter assembly 10 includes two spaced supports 11, a movable block 12 slidably disposed between the two supports 11, a slide rail assembly 13 disposed between the supports 11 and the movable block 12, and four cutters 14 arranged in a rectangular shape at the bottom of the slide rail 13.
[0022] It should be noted that the top of the cutter assembly 10 is provided with a linear drive module, such as a linear cylinder, the driving direction of the linear drive module is vertically downward along the vertical direction, for driving the cutter assembly 10 to approach or away from the template assembly 20, so that the following cutter 14 passes through the template assembly 20 and punches the film, since the principle and specific structure of the linear drive module driving the cutter to move in the linear direction are familiar to those skilled in the art, and will not be repeated here, and the linear drive module is not drawn in the figure.
[0023] The support 11 is L-shaped, the bottom of the support 11 extends outward to form a convex portion 111, thereby increasing the bottom area of the support 11, and thereby enhancing the stability of the support 11. Two protective plates 15 are respectively arranged between the two supports 11. The two protective plates 15 and the supports 11 form a rectangle, thereby protecting the movable block 12 and the cutter 14 located therein. The protective plate 15 is a transparent plate, and the user can observe the movement of the movable block 12 through the protective plate 15.
[0024] The movable block 12 includes a movable block body 121, and four symmetrical cutter grooves 122 opened on both sides of the movable block body 121. The thickness of the movable block body 121 is less than the thickness of the support 11, so that the movable block 12 does not exceed the edge of the support 11. Two of the four cutter grooves 122 are a group and are respectively opened on both sides of the movable block 12, and the two groups of cutter grooves 122 are symmetrically arranged with each other, and the two cutter grooves 122 in the same group are symmetrically arranged and spaced apart. The cutter groove 122 is in communication with the bottom of the movable block body 121. A positioning groove 123 is arranged in each cutter groove 122, and the shape of the positioning groove 123 matches the shape of the cutter 14, so that the cutter 15 can be stably arranged in the cutter groove 122.
[0025] The slide rail assembly 13 comprises two slide rails 131 respectively arranged on the opposite side walls of the support 11, two slide blocks 132 respectively arranged on the movable block 12, and a plurality of oil guide grooves 133 arranged on the movable block 12. The two slide rails 131 extend in the vertical direction perpendicular to the ground, and the two ends of the slide rails 131 are respectively communicated with the top and bottom of the support 11, so that the cleaning is facilitated and dust is not easy to accumulate. The slide rails 131 are sliding structures arranged on the two supports 11 respectively, which are two oppositely arranged rectangular grooves in this embodiment, i.e. the cross sections of the groove bodies are rectangular, and the directions of the groove openings are opposite to each other. The slide blocks 132 are protruding structures symmetrically arranged at the two ends of the movable block 12 and slidingly installed in the slide rails 131. The cross-sectional area of the slide block 132 is the same as that of the slide rail 131, and in this embodiment, the cross section of the slide block 132 is rectangular, and the side surface of the protruding part is at a right angle with the end surface of the movable block 12, so as to facilitate the arrangement of the oil guide grooves 133 on the two mutually perpendicular surfaces respectively. The groove body of the oil guide groove 133 extends in an S shape, and the two ends of the oil guide groove 133 are not communicated with the edges of the plane, and the oil guide groove 133 is used for containing lubricating oil, so that the smooth movement of the slide block 132 in the slide rail 131 can be ensured. The oil guide groove 133 is arranged on the side of the slide block 132 in contact with the side wall of the slide rail 131, and the oil guide groove 133 is arranged on the side of the movable block 12 in contact with the support 11.
[0026] The cutter 14 comprises a cutter body 141 and a positioning block 142 arranged on one side of the cutter body 141. One end of the cutter body 141 is a rectangular cutter, and the edge thereof is flat, which is used for cooperating with the following template assembly 20 to cut the film located on the top of the template assembly 20 into a film with the same shape as the end surface of the cutting end of the cutter body 141. The positioning block 142 is matched with the positioning groove 123 on the cutter groove 122, and when the cutter 14 is clamped in the cutter groove 122, the positioning block 142 is clamped in the positioning groove 123, so that the cutter 14 can be stably installed in the cutter groove 122. The cutter 14 and the cutter groove 122 are detachably connected through bolts.
[0027] The template assembly 20 comprises a template body 21 arranged between the two supports 11 and located at the bottom of the movable block 12, a limiting plate 22 arranged on the top of the template body 21, a top groove 23 arranged on the top of the template body 21, a bottom groove 24 arranged on the bottom of the template body 21, and two template positioning blocks 25 respectively arranged at the two ends of the template body 21.
[0028] The template body 21 is horizontally arranged, and four cut holes 211 are arranged on the upper portion of the template body 21. The position of each cut hole 211 is aligned with the position of one cutting knife 14, and the shape of the cut hole 211 is the same as the shape of the cutting end surface of the cutting knife 14. The cutting knife 14 is controlled to pass through the cut hole 211, so as to cut the film sheet on the top of the template body 21 along the shape of the cut hole 211.
[0029] The limiting plate 22 is horizontally arranged, and four through holes 221 are arranged on the limiting plate 22. The position of each through hole 221 is aligned with the position of one cutting knife 14. The shape of the through hole 211 is a rectangle and is larger than the area of the end surface of the cutting knife 14. When the cutting knife 14 passes through the through hole 211, the four cutting edges of the cutting knife 14 are arranged at intervals from the inner wall of the through hole 211.
[0030] The top groove 23 is used for placing the cut film sheet. The shape of the groove bottom of the top groove 23 is the same as the film sheet to be cut, and a pair of side walls of the top groove 23 are communicated with the two sides of the template body 21, so as to facilitate the placing and taking of the film sheet.
[0031] The bottom groove 24 is used for placing the receiving box with an opening on the top. The cut label directly falls into the bottom groove 24 and enters the receiving box for storage, so as to facilitate the collection.
[0032] The template positioning block 25 is used for stably arranging the template body 21 between the two supports 11. The cross-sectional shape of the template positioning block 25 is the same as the cross-sectional shape of the sliding rail 131. The template positioning block 25 is arranged in the sliding rail 131 and is fixed in the sliding rail 131 by bolts. The template positioning block 25 is fixed in the sliding rail 131. In use, the template positioning block 25 fixes the template body 21, and the movable block 12 moves relative to the template positioning block 25. When the movable block 12 approaches the template body 21, the cutting knife 14 on the movable block 12 is inserted into the cut hole 211 on the template body 21, so as to cut the paper sheet on the top of the template body 21.
[0033] Compared with the prior art, the card label jig capable of improving the punching efficiency provided by the utility model can cut out four labels from the film sheet on the top of the template main body 21 at one time, improve the production efficiency, and ensure that the card paper punched out is of high quality.
[0034] The above is only the preferred embodiment of the utility model, and is not used for limiting the protection scope of the utility model, and any modification, equivalent replacement or improvement in the spirit of the utility model is covered in the claim scope of the utility model.
Claims
1. A card label fixture capable of improving die cutting efficiency, characterized in that: The cutting efficiency improved card board label jig comprises a cutter assembly and a template assembly arranged on one side of the cutter assembly, the cutter assembly comprises two spaced-apart supports, a movable block slidingly arranged between the two supports, a slide rail assembly arranged between the supports and the movable block, and four cutters arranged at the bottom of the movable block, the slide rail assembly is distributed in the vertical direction, the cutters are distributed in a rectangular shape at the bottom of the movable block, the template assembly comprises a template main body arranged between the two supports, a limiting plate arranged on the top of the template main body, and a top groove arranged on the top of the template main body, four cutting holes are arranged on the template main body, four through holes are arranged on the limiting plate, the cross-sectional shape of the cutting hole is the same as the cutting surface shape of the cutter, the cross-sectional shape of the through hole is larger than the cutting surface shape of the cutter, one cutter corresponds to one through hole and one cutting hole in position, and the template assembly is arranged at the bottom of the cutter assembly in a spaced-apart manner.
2. The card label jig capable of improving the die cutting efficiency according to claim 1, wherein: The slide rail assembly comprises two slide rails arranged on the opposite side walls of the supports, respectively, and two sliders arranged on the two sides of the movable block, respectively, the cross-sectional shape of the slider is the same as that of the slide rail, and each slider is slidingly arranged in the slide rail.
3. The card label jig capable of improving the die cutting efficiency according to claim 2, wherein: A plurality of oil guide grooves are arranged on the surface of the movable block and the slider, the oil guide grooves are located on the side of the movable block in contact with the supports and on the two sides of the slider in contact with the side walls of the slide rails, the two ends of the oil guide groove are not communicated with the edges of the plane, and the oil guide groove is in an S shape.
4. The card label jig capable of improving the die cutting efficiency according to claim 1, wherein: The two side walls of the top groove are communicated with the side walls of the template main body, so that the paper is inserted from the communicated part.
5. The card label jig capable of improving the die cutting efficiency according to claim 1, wherein: A bottom groove is arranged at the bottom of the template main body, so as to facilitate the installation of a storage box.
6. The card label jig capable of improving the die cutting efficiency according to claim 1, wherein: A template positioning block is arranged at each end of the template main body, the cross-sectional shape of the template positioning block is the same as that of the slide rail, and the template positioning block is fixedly installed in the slide rail by bolts.
7. The card label jig capable of improving the die cutting efficiency according to claim 1, wherein: Two protective plates are arranged between the two supports, the two protective plates and the supports are connected with each other to surround the movable block, and the protective plate is a transparent plate.