Corrugated paper press forming machine with guide structure
By introducing a guiding structure into the corrugated paper pressing and forming machine, and using components such as limit blocks and support guide rails to stabilize the position of the paperboard, the problems of unstable paperboard placement and uneven force distribution are solved, thereby improving the stamping accuracy and equipment stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- CHONGQING NANCHUAN DISTRICTJIN PAPER CO LTD
- Filing Date
- 2025-05-22
- Publication Date
- 2026-06-23
AI Technical Summary
Existing corrugated cardboard pressing and forming equipment results in unstable cardboard placement during processing, which easily moves the cardboard, affecting stamping accuracy and causing poor stress stability during stamping.
A corrugated paper pressing and forming machine with a guiding structure includes a machine base, a linear guide rail slider mechanism, a slide block, a support plate, a limit block, a support guide rail, a reinforcing column, a T-block, a driving component, a stabilizing seat, a descending device, and a guiding device. The limit block guides the placement of the paperboard and limits its position on the four right-angled sides. The support guide rail, reinforcing column, and T-block increase the number of support points and improve the stress stability of the slide block and support plate.
This technology enables stable placement of cardboard, improves stamping accuracy and equipment stress stability, and solves the problem of positional deviation caused by unstable cardboard movement.
Smart Images

Figure CN224392088U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of corrugated paper forming and processing technology, and in particular to a corrugated paper pressing and forming machine with a guiding structure. Background Technology
[0002] Currently, the production process of corrugated cardboard generally involves first making the cardboard separately, then applying glue to the top and bottom surfaces of the cardboard, laying it flat, and finally pressing it into shape with a heavy object. There is currently no dedicated equipment for the pressing and forming process of corrugated cardboard, and it involves a lot of manual operation, resulting in low production efficiency.
[0003] A search revealed that prior art CN211307640U discloses a corrugated cardboard flat press. A drive assembly moves a U-shaped limiting groove back and forth above a slide rail. Two parallel support plates are arranged, their bottoms fixed to the top of the housing with screws. The lower surface of the upper cover is fixed to the top of the support plates with screws. An upper cylinder is fixed to the middle of the upper cover with screws. An upper pressure plate is located below the upper cover. A pad is located above the upper pressure plate, and the pad is fixed to one end of the upper piston of the upper cylinder and the upper pressure plate with screws, enabling the upper cylinder to move the upper pressure plate up and down. A switch is located on the upper part of the housing and connected to the upper cylinder. By using an upper cylinder, the upper cylinder moves the pad up and down, placing the corrugated cardboard on the upper support plate. Then, the upper cylinder controls the upper pressure plate to descend, pressing it against the corrugated cardboard, thus pressing the cardboard into shape and greatly improving work efficiency.
[0004] However, the above equipment has the following problems during processing: the support plate is not equipped with a cardboard placement limiting mechanism, the cardboard is easy to move when moving, and it is difficult to cooperate with the stable position of the lower pressure plate to complete the stamping. In addition, the support plate is only supported by four sliders when under force, resulting in poor stability. Utility Model Content
[0005] The purpose of this invention is to provide a corrugated paper pressing and forming machine with a guiding structure, which aims to solve the problems of unstable movement of cardboard after placement in existing processing equipment, which easily causes positional displacement affecting stamping accuracy, and poor stress stability during stamping.
[0006] To achieve the above objectives, this utility model provides a corrugated paper pressing and forming machine with a guiding structure, including a machine base, on which a linear guide rail slider mechanism is provided, the linear guide rail slider mechanism being symmetrically arranged, and also including an auxiliary mechanism;
[0007] The auxiliary mechanism includes a slide, a support plate, a limiting block, a support guide rail, reinforcing columns, a T-block, a driving component, a stabilizing seat, a descending device, and a guiding device. The slide is connected to the linear slider of the linear guide rail slider mechanism. The support plate is installed on the top of the slide. Four limiting blocks are detachably connected to the support plate. The support guide rail is detachably connected to the machine base and is symmetrically arranged. Multiple reinforcing columns are welded to the support guide rail. The T-block is detachably connected to the slide and slidably connected to the support guide rail. The driving component is located on the rear side of the machine base, and its output end is connected to the slide. The stabilizing seat is installed on the outside of the linear slider of the linear guide rail slider mechanism. The descending device is located above the support plate. A pressure plate is provided at the bottom of the descending device. The pressure plate is slidably connected to the limiting block. The guiding device is slidably engaged with the stabilizing seat.
[0008] The descending device includes a descending cylinder and a guide assembly. The descending cylinder is mounted on the top of the machine platform, and the guide assembly is located on the side of the machine platform near the pressure plate.
[0009] The guiding device includes a T-shaped sliding sleeve and a mating assembly. The T-shaped sliding sleeve is mounted on the stabilizing seat, and the mating assembly is disposed on the machine base.
[0010] The fitting components include a guide rod frame and a limiting plate. The guide rod frame is detachably connected to the machine base and slides in cooperation with the T-shaped sliding sleeve. The limiting plate slides into the guide rod frame and is integrally formed with the machine base.
[0011] The auxiliary mechanism also includes a buffer, which is symmetrically mounted on the top of the machine platform.
[0012] This utility model discloses a corrugated paper pressing and forming machine with a guiding structure. During processing, four limiting blocks guide the placement of the cardboard and limit its four right-angled edges, facilitating stable placement of the cardboard on top of the support plate. Then, the driving component moves the slide block, allowing the support plate to move below the pressure plate. The descending device then moves the pressure plate downward for stamping and forming. Furthermore, the supporting guide rails, reinforcing columns, and T-block structures increase the support points during sliding guidance, improving the stress stability of the slide block and support plate during pressing. This solves the problems of unstable cardboard movement after placement in existing processing equipment, which easily causes positional shifts affecting stamping accuracy and poor stress stability during stamping. Attached Figure Description
[0013] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0014] Figure 1 This is a schematic diagram of the overall structure of the corrugated paper pressing and forming machine with a guide structure according to the first embodiment of this utility model.
[0015] Figure 2 This is a front view of the corrugated paper pressing and forming machine with a guide structure according to the first embodiment of this utility model.
[0016] Figure 3 This is a schematic diagram of the overall structure of the corrugated paper pressing and forming machine with a guide structure according to the second embodiment of this utility model.
[0017] In the diagram: 101-Machine base, 102-Linear guide rail slider mechanism, 103-Slide seat, 104-Support plate, 105-Limit block, 106-Support guide rail, 107-Reinforcing column, 108-T-block, 109-Drive component, 110-Stabilizing seat, 111-Pressure plate, 112-Downward cylinder, 113-Guide assembly, 114-T-slide sleeve, 115-Guide rod frame, 116-Limit plate, 201-Buffer. Detailed Implementation
[0018] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0019] Example 1:
[0020] like Figure 1 and Figure 2 As shown, where Figure 1 This is a schematic diagram of the overall structure of a corrugated paper pressing and forming machine with a guiding structure. Figure 2 This is a front view of a corrugated paper pressing and forming machine with a guiding structure. The present invention provides a corrugated paper pressing and forming machine with a guiding structure, including a machine base 101, a linear guide rail slider mechanism 102, and an auxiliary mechanism. The auxiliary mechanism includes a slide block 103, a support plate 104, a limiting block 105, a supporting guide rail 106, a reinforcing column 107, a T-block 108, a driving component 109, a stabilizing seat 110, a descending device, and a guiding device. The descending device includes a descending cylinder 112 and a guiding assembly 113. The guiding device includes a T-shaped sliding sleeve 114 and a mating assembly. The mating assembly includes a guide rod frame 115 and a limiting plate 116. This solution solves the problems of unstable movement of cardboard after placement in existing processing equipment, which easily causes positional shifts affecting stamping accuracy and poor stress stability during stamping. It is understood that the aforementioned solution facilitates stable movement of the cardboard after placement, improving processing accuracy and equipment stress stability.
[0021] In this embodiment, a linear guide slider mechanism 102 is provided on the machine base 101. The linear guide slider mechanism 102 is symmetrically arranged and consists of a linear guide and a linear slider. The linear guide is fixed by countersunk bolts.
[0022] The slide block 103 is connected to the linear slider of the linear guide slider mechanism 102. The support plate 104 is installed on the top of the slide block 103. The limiting block 105 is detachably connected to the support plate 104, and four of them are provided. The support guide rail 106 is detachably connected to the machine base 101 and is symmetrically arranged. Multiple reinforcing columns 107 are welded to the support guide rail 106. The T-shaped block 108 is detachably connected to the slide block 103 and is slidably connected to the support guide rail 106. The driving component 109 is located on the rear side of the machine base 101, and its output end is connected to the slide block 103. The stabilizing seat 110 is installed on the outside of the linear slider of the linear guide slider mechanism 102. The descending device is located above the support plate 104. The bottom of the descending device is provided with a pressure plate 111, which is slidably connected to the limiting block 105. The guiding device is slidably engaged with the stabilizing seat 110. The slide block 103 is connected to the linear slider by countersunk bolts. The support plate 104 is fixed by bolts arranged from bottom to top. The limiting blocks 105 are installed at the four right angles of the support plate 104 by locating pins and bolts. The pressure plate 111 slides with the limiting blocks 105. The support guide rail 106 is fixed by bolts and multiple reinforcing columns 107 are welded to improve the pressure-bearing capacity. The top of the support guide rail 106 is provided with a T-shaped groove to facilitate the sliding of the T-shaped block 108. The contact surface between the T-shaped block 108 and the T-shaped groove is provided with a smooth wear-resistant layer. The inner surface is provided with a smooth wear-resistant layer, which helps to improve the service life of the T-block 108. The T-block 108 is fixed to the bottom of the slide block 103 by countersunk bolts arranged from bottom to top. The driving component 109 is a cylinder, which is fixed to the positioning plate on the machine base 101 by bolts. The output end is connected to the connecting end at the bottom of the slide block 103 by bolts. The stabilizing seat 110 is connected to the linear slider by bolts. The downward device is used to drive the pressure plate 111 to move vertically. The guiding device cooperates with the stabilizing seat 110 to achieve further guidance.
[0023] Secondly, the downward cylinder 112 is mounted on the top of the machine base 101; the guide assembly 113 is located on the side of the machine base 101 near the pressure plate 111. The downward cylinder 112 is bolted to the machine base 101, and its output end is threaded to engage with the threaded connection hole at the top of the pressure plate 111. The guide assembly 113 consists of a guide rod and a T-shaped linear sliding bearing. The T-shaped linear sliding bearing is fixed to the machine base 101, and the bottom threaded end of the guide rod is directly engaged with the threaded connection hole at the top of the pressure plate 111.
[0024] Then, the T-shaped sliding sleeve 114 is installed on the stabilizer 110; the mating assembly is disposed on the machine base 101. The T-shaped sliding sleeve 114 is fixed to the stabilizer 110 by bolts, and the mating assembly is used for sliding engagement.
[0025] Finally, the guide rod frame 115 is detached from the machine base 101 and slides in engagement with the T-shaped sliding sleeve 114; the limiting plate 116 slides into the guide rod frame 115 and is integrally formed with the machine base 101. A fixing part is provided on the rear side of the guide rod frame 115, which is fixed by positioning pins and bolts. The end of the optical axis slides in engagement with the T-shaped sliding sleeve 114, and the stepped part on the front side is inserted into the limiting plate 116 for limiting and support.
[0026] When using this utility model to solve the problems of unstable movement of cardboard after placement in existing processing equipment, which easily causes positional displacement affecting stamping accuracy and poor force stability during stamping, the four limiting blocks 105 guide the placement of the cardboard and limit its four right-angled edges during processing. This facilitates the stable placement of the cardboard on top of the support plate 104, preventing the cardboard from shifting when the slide block 103 moves. Then, the driving component 109 actuates and, in cooperation with the linear guide rail slider mechanism 102, drives the slide block 103 to move, allowing the support plate 104 to move below the pressure plate 111. Then, the descending device actuates to drive the pressure plate 111 downward for stamping and forming. Furthermore, the structure of the support guide rail 106, the reinforcing column 107, and the T-block 108 increases the support points during sliding guidance, which helps improve the force stability of the slide block 103 and the support plate 104 during pressing. This solves the problems of unstable movement of cardboard after placement in existing processing equipment, which easily causes positional displacement affecting stamping accuracy and poor force stability during stamping.
[0027] Example 2:
[0028] like Figure 3 As shown, where Figure 3This is a schematic diagram of the overall structure of a corrugated paper pressing and forming machine with a guide structure. Based on the first embodiment, this utility model provides a corrugated paper pressing and forming machine with a guide structure. The auxiliary mechanism also includes a buffer 201, which is symmetrically installed on the top of the machine base 101. The buffer 201 adopts an ACA series hydraulic buffer, and its specific structure has a threaded column outer shell, which can be locked by two nuts to achieve installation.
[0029] In this embodiment, by providing the buffer 201, buffering is achieved when the pressure plate 111 stops after resetting to its limit position during upward movement. This improves the stability of the pressure plate 111 during upward movement.
[0030] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that implementing all or part of the above embodiments and making equivalent changes in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A corrugated paper pressing and forming machine with a guiding structure, comprising a machine base, wherein a linear guide rail slider mechanism is provided on the machine base, the linear guide rail slider mechanism being symmetrically arranged, characterized in that: It also includes auxiliary mechanisms; The auxiliary mechanism includes a slide, a support plate, a limiting block, a support guide rail, reinforcing columns, a T-block, a driving component, a stabilizing seat, a descending device, and a guiding device. The slide is connected to the linear slider of the linear guide rail slider mechanism. The support plate is installed on the top of the slide. Four limiting blocks are detachably connected to the support plate. The support guide rail is detachably connected to the machine base and is symmetrically arranged. Multiple reinforcing columns are welded to the support guide rail. The T-block is detachably connected to the slide and slidably connected to the support guide rail. The driving component is located on the rear side of the machine base, and its output end is connected to the slide. The stabilizing seat is installed on the outside of the linear slider of the linear guide rail slider mechanism. The descending device is located above the support plate. A pressure plate is provided at the bottom of the descending device. The pressure plate is slidably connected to the limiting block. The guiding device is slidably engaged with the stabilizing seat.
2. The corrugated paper pressing and forming machine with a guiding structure as described in claim 1, characterized in that: The descending device includes a descending cylinder and a guide assembly. The descending cylinder is mounted on the top of the machine platform; the guide assembly is located on the side of the machine platform near the pressure plate.
3. The corrugated paper pressing and forming machine with a guiding structure as described in claim 1, characterized in that: The guiding device includes a T-shaped sliding sleeve and a mating assembly. The T-shaped sliding sleeve is mounted on the stabilizing seat, and the mating assembly is disposed on the machine base.
4. The corrugated paper pressing and forming machine with a guiding structure as described in claim 3, characterized in that: The mating components include a guide rod frame and a limiting plate. The guide rod frame is detachably connected to the machine base and slides in cooperation with the T-shaped sliding sleeve. The limiting plate slides into the guide rod frame and is integrally formed with the machine base.
5. The corrugated paper pressing and forming machine with a guiding structure as described in claim 1, characterized in that... : The auxiliary mechanism also includes a buffer, which is symmetrically mounted on the top of the machine platform.
Citation Information
Patent Citations
Corrugated board flat pressing machine
CN211307640U