Novel wire pressing device

By designing the combination of bearing components and lifting components, the problem that existing cardboard line pressing devices can only press vertically is solved, and the vertical and horizontal lines are pressed while the cardboard is realized, improving the precision of line pressing and simplifying the processing process.

CN223161436UActive Publication Date: 2025-07-29CANGZHOU FENGMAI PACKAGING MACHINERY MANUFACTURING CO LTD
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Patent Information

Application Number
CN202421583653.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-05
Publication Date
2025-07-29
Estimated Expiration
2034-07-05

AI Technical Summary

Technical Problem

The existing cardboard line pressing devices can only perform vertical line pressing, and secondary processing is required to achieve horizontal line pressing. The lack of a fixed structure causes the cardboard to be easily tilted during line pressing, reducing accuracy.

Method used

A new type of line pressing device including load-bearing parts, lifting parts and sliding parts is designed. Through the combination of rectangular grooves, slide grooves and circular rods, vertical and horizontal line pressing of the cardboard is realized, and through the coordination of the wedge-shaped countertop and the pressing block, the cardboard is prevented from tilting.

Benefits of technology

The vertical and horizontal lines are pressed while the cardboard is realized, which improves the accuracy of line pressing, avoids the skew of the cardboard during line pressing, and simplifies the processing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a novel line pressing device, relates to the technical field of line pressing devices, and aims to solve the problem that when an existing line pressing device is used for pressing lines on paperboards, the paperboards are easy to incline in the line pressing process due to lack of a fixing structure, so that the accuracy of line pressing processing is reduced. The bearing part comprises a main frame, a guide groove and a sliding groove, and rectangular grooves are formed in the two sides of the main frame; the guide grooves are symmetrically formed in the two ends of the bottom of the inner side of the main frame. The sliding grooves are symmetrically formed in the inner ends of the two sides of the main frame, and vertically-arranged circular rods are arranged in the sliding grooves. When the paperboard needs to be subjected to line pressing machining, the pushing plate with the paperboard is pushed backwards, the end with the wedge-shaped table top is made to move to the rear side, the pressing block can fall down, the pressing block can press the paperboard, the situation that when the paperboard is subjected to line pressing machining, line pressing is unqualified due to deflection is prevented, and the line pressing accuracy is effectively improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of wire pressing devices, and more specifically, it particularly relates to a novel wire pressing device. Background Art

[0002] With the continuous development of the economy, the demand for carton packaging is increasing, and the industries involved are becoming more and more extensive. The production of cartons widely adopts assembly line operation. During the manufacturing process of cartons, cardboard needs to be folded, and the folding should be along the pre-pressed wire. Therefore, before folding the carton, it is necessary to use a wire pressing device to press out creases on the cardboard, so as to facilitate subsequent folding. Based on the existing technology, it is found that there are some deficiencies in the existing cardboard wire pressing devices. First of all, most wire pressing devices use rollers for straight wire pressing. This processing method can only press the cardboard vertically. To press the cardboard horizontally and vertically at the same time, it is necessary to perform secondary processing on the cardboard after vertical wire pressing, which makes this processing method too cumbersome. Secondly, when pressing the wire on the cardboard, due to the lack of a fixing structure, it is easy to cause the cardboard to tilt during the wire pressing process, thereby reducing the accuracy of the wire pressing processing. Summary of the Utility Model

[0003] Aiming at the above-mentioned technical problems, the utility model relates to a novel wire pressing device to solve some deficiencies of the existing cardboard wire pressing devices. First of all, most wire pressing devices use rollers for straight wire pressing. This processing method can only press the cardboard vertically. To press the cardboard horizontally and vertically at the same time, it is necessary to perform secondary processing on the cardboard after vertical wire pressing, which makes this processing method too cumbersome. Secondly, when pressing the wire on the cardboard, due to the lack of a fixing structure, it is easy to cause the cardboard to tilt during the wire pressing process, thereby reducing the accuracy of the wire pressing processing.

[0004] In the first aspect of the present disclosure, a novel wire pressing device is provided, which is achieved by the following specific technical means:

[0005] A novel wire pressing device includes: <(

[0006] A bearing member; the bearing member includes a main frame, a guide groove and a sliding groove. Rectangular grooves are provided on both sides of the main frame; the guide grooves are symmetrically opened at both ends of the bottom inside the main frame; the sliding grooves are symmetrically opened at the inner ends of both sides of the main frame, and a vertically arranged circular rod is provided inside the sliding groove; an elevating member is provided on the bearing member, and the control board of the elevating member is slidably installed at the upper end inside the main frame. Both ends of the control board are slidably matched with the rectangular grooves on both sides of the main frame through lead screws; a sliding member is provided on the elevating member, and the sliders of the sliding member are respectively installed in the rectangular grooves and the external grooves on both sides of the control board. The sliders on both sides are threadedly connected to the double-headed lead screw inside the control board, and the screws at the outer ends of the front and rear sliders penetrate through the limit grooves on the external grooves.

[0007] According to some solutions of the present utility model, the bearing component includes: a pushing plate and a guiding block; the pushing plate is slidably installed inside the main frame, and a wedge-shaped tabletop is provided at the upper end of the rear side of the pushing plate; the guiding blocks are symmetrically arranged on both sides of the bottom of the pushing plate, and the guiding blocks are slidably engaged with the guiding grooves.

[0008] According to some solutions of the present utility model, the bearing component includes: a pressing block and a movable groove; the pressing blocks are symmetrically arranged at both ends inside the main frame, and both sides of the pressing block are slidably engaged with the sliding grooves through elastic members, a wedge-shaped block is provided at the rear end of the pressing block, and the pressing block is lapped on the wedge-shaped tabletop at the rear side of the pushing plate; the movable grooves are symmetrically opened on both sides of the pressing block, and the movable grooves are penetrated by circular rods in the sliding grooves.

[0009] According to some solutions of the present utility model, the lifting component includes: a control board and a double-headed lead screw; rectangular grooves are symmetrically opened on both sides of the control board; the double-headed lead screw is horizontally rotatably installed inside the control board.

[0010] According to some solutions of the present utility model, the lifting component includes: an external groove and a limiting groove; the external groove is opened on the front and rear sides of the control board; the limiting groove is opened at the upper end inside the external groove, and the limiting groove penetrates the control board.

[0011] According to some solutions of the present utility model, the sliding component includes: a slider and a screw; a rectangular through groove is opened at the bottom inside the slider; the screw is fixedly installed at the top of the sliders at the front and rear positions, and a nut is screwed onto the upper end of the screw.

[0012] According to some solutions of the present utility model, the sliding component includes: a telescopic rod, a bottom groove, and a pressing rod; the telescopic rod is located at the lower end of the slider, and the top of the telescopic rod is slidably engaged with the rectangular groove at the bottom of the slider through an elastic member; the bottom groove is opened at the bottom of the telescopic rod; the pressing rod is inserted into the bottom groove.

[0013] Compared with the prior art, the present utility model has the following beneficial effects:

[0014] 1. In this device, a lifting component and a sliding component are provided. Rectangular grooves are opened at both ends of the control board, and the sliders are movably installed on the left and right sides of the control board through the double-headed lead screw. In this way, the pressing rods at the bottom can press the cardboard vertically. When it is necessary to press the cardboard horizontally and vertically at the same time, the sliders with screws are installed in the external grooves at the front and rear sides of the control board, and the screws are passed through the limiting grooves, and bolts are screwed onto the tops of the screws to fix the sliders with pressing rods at the front and rear sides in the external grooves. In this way, this device can press the cardboard horizontally and vertically at the same time.

[0015] 2. In this device, a bearing component is provided. A push plate with a wedge-shaped tabletop is slidably installed inside the main frame, and pressing blocks with wedge-shaped blocks at the rear ends are arranged on both sides of the main frame. The two sides of the pressing blocks are slidably engaged with the sliding grooves through elastic members, and the pressing blocks are lapped on the wedge-shaped tabletops of the push plate. When wire pressing processing is required for the cardboard, the push plate with the cardboard is pushed backward, so that the end with the wedge-shaped tabletop moves to the rear side, and the pressing blocks can fall. The pressing blocks can press the cardboard to prevent the situation of unqualified wire pressing caused by skewing during wire pressing processing, effectively improving the accuracy of wire pressing. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Those skilled in the art will have a better understanding of the present disclosure through the following drawings, and the advantages of the present disclosure can be more clearly reflected. The drawings described here are only for the purpose of illustration of the selected embodiments, rather than all possible embodiments and are not intended to limit the scope of the present disclosure.

[0017] In the drawings:

[0018] Figure 1 is the three-dimensional structural schematic diagram of the present utility model.

[0019] Figure 2 is the sectional structural schematic diagram of the present utility model.

[0020] Figure 3 is the disassembled structural schematic diagram of the present utility model.

[0021] Figure 4 is the three-dimensional structural schematic diagram of the bearing component of the present utility model.

[0022] Figure 5 is the top sectional structural schematic diagram of the present utility model.

[0023] Figure 6 is the present utility model from Figure 5 lead out the enlarged structural schematic diagram at A.

[0024] In the figure, the corresponding relationship between the component names and the drawing reference numerals is:

[0025] 1. Bearing component;

[0026] 101. Main frame; 1011. Guide groove; 1012. Sliding groove;

[0027] 102. Push plate; 1021. Guide block;

[0028] 103. Pressing block; 1031. Activity groove;

[0029] 2. Lifting component;

[0030] 201. Control panel; 2011. Double-headed lead screw;

[0031] 202. External slot; 2021. Limit slot;

[0032] 3. Sliding member;

[0033] 301. Slide block; 3011. Screw rod;

[0034] 302. Telescopic rod; 3021. Bottom slot; 3022. Pressing rod. Detailed implementation mode

[0035] For the purpose of making the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the drawings of the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the described embodiments of the present invention without creative efforts shall fall within the scope of protection of the present invention.

[0036] Embodiment 1: As shown in the attached Figure 1 to the attached Figure 6 figures:

[0037] The present utility model provides a novel wire pressing device, comprising: a bearing member 1; the bearing member 1 includes a main frame 101, a guiding groove 1011 and a sliding groove 1012, rectangular grooves are provided on both sides of the main frame 101; the guiding grooves 1011 are symmetrically opened at both ends of the bottom inside the main frame 101; the sliding grooves 1012 are symmetrically opened at the inner ends of both sides of the main frame 101, and a vertically arranged circular rod is provided inside the sliding groove 1012; a lifting member 2 is provided on the bearing member 1, the control panel 201 of the lifting member 2 is slidably installed at the upper end inside the main frame 101, and both ends of the control panel 201 are slidably matched with the rectangular grooves on both sides of the main frame 101 through lead screws; a sliding member 3 is provided on the lifting member 2, the slide blocks 301 of the sliding member 3 are respectively installed in the rectangular grooves on both sides of the control panel 201 and the external slot 202, the slide blocks 301 on both sides are threadedly connected to the double-headed lead screw 2011 inside the control panel 201, and the screw rods 3011 at the outer ends of the slide blocks 301 on the front and rear sides penetrate through the limit slots 2021 on the external slot 202.

[0038] As the second embodiment of the present application, on the basis of Embodiment 1, as Figure 3As shown in the figure, the bearing member 1 includes: a push plate 102 and a guide block 1021; the push plate 102 is slidably installed inside the main frame 101, and a wedge-shaped table surface is provided at the upper end of the rear side of the push plate 102; the guide blocks 1021 are symmetrically arranged on both sides of the bottom of the push plate 102, and the guide blocks 1021 are slidably engaged with the guide grooves 1011; a pressing block 103 and a movable groove 1031; the pressing blocks 103 are symmetrically arranged at both ends inside the main frame 101, and both sides of the pressing block 103 are slidably engaged with the sliding grooves 1012 through elastic members. A wedge-shaped block is provided at the rear end of the pressing block 103, and the pressing block 103 is lapped on the wedge-shaped table surface at the rear side of the push plate 102; the movable grooves 1031 are symmetrically opened on both sides of the pressing block 103, and the movable grooves 1031 are penetrated by the circular rods in the sliding grooves 1012.

[0039] In this application, by setting the push plate 102, the cardboard can be placed on the push plate 102 and then the push plate 102 is pushed to the middle position of the main frame 101 to perform creasing processing on the cardboard; by setting the guide blocks 1021 and slidingly mating the guide blocks 1021 with the guide grooves 1011, the push plate 102 can slide inside the main frame 101; by setting the C-shaped pressing blocks 103, after the push plate 102 with the cardboard is pushed to the inside of the main frame 101, the pressing blocks 103 can press the cardboard; by setting the movable grooves 1031 and slidingly mating the movable grooves 1031 with the circular rods in the sliding grooves 1012, the pressing blocks 103 can move left and right inside the main frame 101.

[0040] As the third embodiment of this application, on the basis of the first embodiment, as Figure 5 shown, the lifting member 2 includes: a control board 201 and a double-headed lead screw 2011; rectangular grooves are symmetrically opened on both sides of the control board 201; the double-headed lead screw 2011 is horizontally rotatably installed inside the control board 201; an external slot 202 and a limit slot 2021; the external slot 202 is opened on the front and rear sides of the control board 201; the limit slot 2021 is opened at the upper inner side of the external slot 202, and the limit slot 2021 penetrates the control board 201.

[0041] In this application, by setting the cross-shaped control board 201, four groups of sliders 301 can be installed at one time; by setting the double-headed lead screw 2011, by rotating the double-headed lead screw 2011, the sliders 301 on both the left and right sides can be controlled to slide simultaneously; by setting the rectangular external slot 202, the sliders 301 on the front and rear sides can be inserted and mated with the control board 201 through the external slot 202; by setting the limit slot 2021 and passing the screw 3011 through the limit slot 2021, the sliders 301 can move along the limit slot 2021 in the external slot 202.

[0042] As the fourth embodiment of this application, on the basis of the first embodiment, as Figure 5-6As shown in the figure, the sliding member 3 includes: a slider 301 and a screw 3011; a rectangular through groove is formed in the bottom side inside the slider 301; the screw 3011 is fixedly installed on the top of the slider 301 at the front and rear positions, and a nut is screwed onto the upper end of the screw 3011; a telescopic rod 302, a bottom groove 3021 and a pressing rod 3022; the telescopic rod 302 is located at the lower end of the slider 301, and the top of the telescopic rod 302 is slidably engaged with the rectangular groove at the bottom of the slider 301 through an elastic member; the bottom groove 3021 is formed in the bottom of the telescopic rod 302; the pressing rod 3022 is inserted into the bottom groove 3021.

[0043] In this application, by setting the slider 301, the telescopic rod 302 can be slidably installed at the inner end of the slider 301; by setting the screw 3011, by passing the screw 3011 through the limiting groove 2021 and screwing a nut onto the upper end of the screw 3011, the sliders 301 on the front and rear sides can be fixed in the external groove 202; by setting the I-shaped telescopic rod 302, the pressing rod 3022 can be movably installed at the bottom side of the slider 301 through the telescopic rod 302; by setting the T-shaped bottom groove 3021, the pressing rod 3022 can be inserted into the lower end of the telescopic rod 302 through the bottom groove 3021; by setting the strip-shaped pressing rod 3022, by pressing the cardboard with the pressing rod 3022, the cardboard can be scored.

[0044] The specific usage method and function of this embodiment:

[0045] In the present utility model, as Figure 1-6 shown, the pushing plate 102 is slidably installed along the guiding groove 1011 to the inside of the main frame 101. Pressing blocks 103 are arranged on both sides of the main frame 101, so that the pressing blocks 103 are placed on the wedge-shaped table surface at the rear side of the pushing plate 102. The control board 201 is installed at the upper end of the main frame 101 through a lead screw. The sliders 301 are respectively installed in the external grooves 202 on both sides and the front and rear ends of the control board 201. The pressing rod 3022 is inserted into the telescopic rod 302 at the lower end of the slider 301. The cardboard is laid flat on the pushing plate 102, and then the pushing plate 102 is pushed backward, so as to send the cardboard to the inside of the main frame 101. When the pushing plate 102 moves to the rear side, the pressing blocks 103 lose the restriction of the wedge-shaped table surface and thus fall, and press the cardboard. At this time, by pressing down the control board 201, the pressing rod 3022 at the lower end of the slider 301 can perform scoring processing on the cardboard. After the scoring is completed, the control board 201 and the slider 301 are lifted, and then the pushing plate 102 is pulled forward, so that the wedge-shaped table surface on the pushing plate 102 lifts the pressing blocks 103 again, so that the scored cardboard can be taken off from the pushing plate 102.

[0046] The foregoing disclosure provides illustration and description, but is not intended to be exhaustive or to limit the embodiments to the precise forms disclosed. Modifications and variations can be made in light of the above disclosure, or can be obtained from the practice of the embodiments.

[0047] Even if a particular combination of features is recited in the claims or disclosed in the specification, such combinations are not intended to limit the disclosure of the various embodiments. In fact, many of these features may be combined in ways not specifically recited in the claims and / or not specifically disclosed in the specification. Although each dependent claim listed below may directly depend on only one claim, the disclosure of the various embodiments includes each dependent claim in combination with every other claim in the claim set.

Claims

1. A new type of wire pressing device, comprising: Load-bearing component (1); the load-bearing component (1) includes a main frame (101), a guide groove (1011), and a sliding groove (1012). Rectangular grooves are provided on both sides of the main frame (101); the guide grooves (1011) are symmetrically opened at both ends of the bottom inside the main frame (101); the sliding grooves (1012) are symmetrically opened at the inner ends on both sides of the main frame (101), and a vertically arranged circular rod is provided inside the sliding groove (1012). It is characterized in that a lifting component (2) is provided on the load-bearing component (1). The control board (201) of the lifting component (2) is slidably installed at the upper end inside the main frame (101), and both ends of the control board (201) are slidably matched with the rectangular grooves on both sides of the main frame (101) through lead screws; a sliding component (3) is provided on the lifting component (2). The sliders (301) of the sliding component (3) are respectively installed in the rectangular grooves on both sides of the control board (201) and the external groove (202). The sliders (301) on both sides are threadedly connected to the double-headed lead screw (2011) inside the control board (201), and the screws (3011) at the outer ends of the front and rear sliders (301) penetrate through the limit grooves (2021) on the external groove (202).

2. The novel wire pressing device according to claim 1, wherein The load-bearing component (1) includes: a push plate (102) and guide blocks (1021); the push plate (102) is slidably installed inside the main frame (101), and a wedge-shaped table surface is provided at the upper end of the rear side of the push plate (102); the guide blocks (1021) are symmetrically arranged on both sides of the bottom of the push plate (102), and the guide blocks (1021) are slidably matched with the guide grooves (1011).

3. A novel wire pressing device according to claim 2, characterized in that, The load-bearing component (1) includes: a pressing block (103) and an activity groove (1031); the pressing blocks (103) are symmetrically arranged at both ends of the inside of the main frame (101), and both sides of the pressing block (103) are slidably matched with the sliding groove (1012) through elastic members. A wedge-shaped block is provided at the rear end of the pressing block (103), and the pressing block (103) is lapped on the wedge-shaped table surface at the rear side of the push plate (102); the activity grooves (1031) are symmetrically opened on both sides of the pressing block (103), and the activity grooves (1031) are penetrated by the circular rods inside the sliding groove (1012).

4. A novel wire pressing device according to claim 1, characterized in that, The lifting component (2) includes: a control board (201) and a double-headed lead screw (2011); rectangular grooves are symmetrically opened on both sides of the control board (201); the double-headed lead screw (2011) is horizontally rotatably installed inside the control board (201).

5. A novel wire pressing device according to claim 4, characterized in that, The lifting component (2) includes: an external groove (202) and a limit groove (2021); the external groove (202) is opened on the front and rear sides of the control board (201); the limit groove (2021) is opened at the upper end inside the external groove (202), and the limit groove (2021) penetrates the control board (201).

6. A novel wire pressing device according to claim 1, characterized in that, The sliding component (3) includes: a slider (301) and a screw (3011); a rectangular through groove is opened at the bottom inside the slider (301); the screw (3011) is fixedly installed at the top of the sliders (301) at the front and rear positions, and a nut is screwed on the upper end of the screw (3011).

7. A novel wire pressing device according to claim 6, characterized in that, The sliding member (3) includes: a telescopic rod (302), a bottom groove (3021), and a pressing rod (3022); the telescopic rod (302) is located at the lower end of the slider (301), and the top of the telescopic rod (302) is slidably engaged with a rectangular groove at the bottom of the slider (301) through an elastic member; the bottom groove (3021) is formed at the bottom of the telescopic rod (302); the pressing rod (3022) is inserted into the bottom groove (3021).