Rapid cutting equipment for foam box production

By designing the rapid segmentation equipment for foam box production, and using technical means such as hydraulic cylinders and clamping plates, the misalignment problem caused by deformation during cutting of the foam box is solved, and the accuracy and consistency of the cutting value is achieved.

CN119927984APending Publication Date: 2025-05-06YUNNAN CUIZHUO NEW MATERIAL TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510350432.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

The existing foam boxes are easily deformed when clamped and positioned, resulting in misalignment during cutting, and inaccurate cutting values.

Method used

A rapid splitting equipment for foam box production is designed, including installation unit, transmission unit and limiting unit. The cutting assembly is driven by the hydraulic cylinder, combined with the clamping plate and the sliding mechanism, stable positioning and cutting of the foam box is achieved.

Benefits of technology

It effectively prevents misalignment caused by side wall deformation during the cutting process of the foam box, ensuring the accuracy and consistency of the cutting value.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119927984A_ABST
    Figure CN119927984A_ABST
Patent Text Reader

Abstract

The invention relates to the technical field of foam boxes, and discloses rapid cutting equipment for foam box production, which comprises a mounting unit, a transmission unit and a limiting unit, the mounting unit comprises a workbench, supporting legs are fixedly mounted on the periphery above the workbench, a top plate is mounted above the four supporting legs, and a hydraulic cylinder is arranged at the bottom of the top plate; mounting frames are arranged at the bottoms of the hydraulic cylinders. When a first inclined block and a second inclined block horizontally move, a placement plate can be extruded by an inclined surface to horizontally move under the assistance of a third sliding groove and a third sliding block, and the placement plate drives a third clamping plate to clamp the side wall of a foam box body, so that the foam box body can be positioned; and through a first clamping plate, a second clamping plate and a third clamping plate, it can be guaranteed that the side wall of the foam box body cannot deform under the condition that the side wall is extruded by external force, at the moment, a worker starts a hydraulic cylinder, and the hydraulic cylinder drives a cutting assembly arranged on a mounting frame to cut the foam box body.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention belongs to the technical field of foam boxes, and in particular relates to a rapid splitting device for producing foam boxes. Background Art

[0002] Foam boxes are box-type packaging containers made of foam plastic (porous plastic). Plastic foam is a plastic with many tiny pores inside. Foam boxes are often used in the transportation of fruits and the packaging of goods. Expandable polystyrene foam plastic is a new type of shockproof packaging material and thermal insulation material.

[0003] The existing foam box is prone to deformation during clamping and positioning, which can easily lead to misalignment during cutting. This is because the deformation of the surface of the foam box causes the edge to deform. Therefore, when cutting, the edge is not straight, resulting in inaccurate cutting values ​​and easy misalignment.

[0004] In view of this, the present invention is proposed. Summary of the invention

[0005] In order to solve the above technical problems, the basic concept of the technical solution adopted by the present invention is:

[0006] A rapid splitting device for foam box production, comprising an installation unit, a transmission unit and a limit unit, wherein the installation unit comprises a workbench, support legs are fixedly installed around the top of the workbench, a top plate is installed above four support legs, a hydraulic cylinder is arranged at the bottom of the top plate, a mounting frame is arranged at the bottom of the hydraulic cylinder, a cutting assembly is arranged in the mounting frame, an installation slot is opened above the workbench, two mutually symmetrical rectangular slots are also opened above the workbench, a foam box body is placed above the installation slot, and side plates are installed between the four support legs;

[0007] The limiting unit includes four third clamping plates, the four third clamping plates are symmetrical with each other in pairs and are respectively arranged on the opposite side walls of the foam box body, one end of the four third clamping plates is fixedly connected to a placement plate, and a third sliding mechanism is arranged at the bottom of each placement plate, and the third sliding mechanism includes four third slide grooves, the four third slide grooves are respectively opened on the workbench, the four third slide grooves are symmetrical with each other in pairs, two third sliding blocks symmetrical with each other are slidably installed in the inner cavities of the four third slide grooves, a third clamping plate is fixedly installed above each of the third sliding blocks in pairs, a second return spring is arranged in the inner cavities of the four third slide grooves, and the other end of the second return spring is fixedly connected to the third slide block;

[0008] The transmission unit includes two first clamping plates and a driving assembly, and the driving assembly is used to drive the first clamping plates to move horizontally. The two first clamping plates are symmetrical to each other, and a first flip plate and a second flip plate are respectively arranged above the two first clamping plates. A first rotating rod is fixedly installed between the first flip plate and the second flip plate, and both ends of the two first rotating rods are respectively rotatably connected to the side plates.

[0009] As a preferred embodiment of the present invention, the driving assembly includes a servo motor, which is arranged on the side wall of the workbench, and a first threaded rod is fixedly installed on the output end of the servo motor, and the first threaded rod movably passes through the side wall of the workbench, and a second threaded rod is fixedly installed on the end of the first threaded rod away from the servo motor, and a bearing is arranged on the end of the second threaded rod away from the servo motor, and the bearing is installed on the inner wall of the workbench, and a first threaded sleeve and a second threaded sleeve are respectively meshed and installed on the first threaded rod and the second threaded rod.

[0010] As a preferred embodiment of the present invention, the first threaded sleeve and the second threaded sleeve are respectively provided with a first sliding mechanism at the bottom, the first sliding mechanism includes two first sliding grooves, the two first sliding grooves are respectively opened at the bottom of the inner cavity of the workbench, the two first sliding grooves are symmetrical to each other, the inner cavities of the two first sliding grooves are both slidably installed with a first slider, the two first sliders are symmetrical to each other, and the tops of the two first sliders are respectively fixedly connected to the first threaded sleeve and the second threaded sleeve.

[0011] As a preferred embodiment of the present invention, a moving rod is fixedly installed on the first threaded sleeve and the second threaded sleeve respectively, the two moving rods are symmetrical to each other, the two moving rods are movable through the rectangular slots respectively, and the first clamping plates are fixedly installed on the opposite ends of the two moving rods respectively.

[0012] As a preferred embodiment of the present invention, movable rods are movably mounted on the first flip plate and the second flip plate respectively, the two movable rods are symmetrical to each other, and a moving plate is movably mounted on the other end of the two movable rods.

[0013] As a preferred embodiment of the present invention, the two opposite side walls of the two movable plates are provided with a second sliding mechanism, a plurality of linearly distributed fixing rods are fixedly installed at the bottom of the two movable plates, and a second clamping plate is fixedly installed at the bottom of each fixing rod, and the two second clamping plates are symmetrical to each other.

[0014] As a preferred embodiment of the present invention, the second sliding mechanism includes two special-shaped slide grooves, which are respectively opened on the side panels, symmetrical to each other, and distributed from low to high to low from left to right. Two symmetrical guide sliders are slidably installed in the inner cavities of the two special-shaped slide grooves, and a movable plate is fixedly installed on one opposite end of each guide slider.

[0015] As a preferred embodiment of the present invention, two first cams and second cams are fixedly installed on the two first rotating rods respectively, each of the first cams and the second cams are symmetrical to each other, and a first inclined block and a second inclined block are respectively provided on the side walls opposite to each other of the first cam and the second cam.

[0016] As a preferred embodiment of the present invention, the two first tilting blocks and the second tilting blocks are symmetrical to each other, and the fourth sliding mechanism is disposed at the bottom of the two first tilting blocks and the second tilting blocks.

[0017] As a preferred embodiment of the present invention, the fourth sliding mechanism includes a plurality of second slide grooves, each of the second slide grooves is respectively opened on the workbench, a second slider is slidably installed in the inner cavity of each second slide groove, a first inclined block and a second inclined block are fixedly installed above each second slider, a first return spring is fixedly installed on one side wall of the inner cavity of each second slide groove, each of the first return springs are symmetrical with each other, and the other end of each first return spring is fixedly connected to the third slider.

[0018] Compared with the prior art, the present invention has the following beneficial effects:

[0019] According to the present invention, when the first rotating rod rotates, it will be able to drive the first cam and the second cam to rotate. Therefore, the first cam and the second cam can be squeezed respectively during the rotation of the first cam and the second cam, and the first inclined block and the second inclined block can be moved horizontally with the assistance of the second slide groove and the second sliding block. When the first inclined block and the second inclined block move horizontally, the placement plate can be squeezed by the inclined surface to move horizontally with the assistance of the third slide groove and the third sliding block. Therefore, the placement plate can drive the third clamping plate to clamp the side wall of the foam box body, thereby positioning the foam box body. The first clamping plate, the second clamping plate and the third clamping plate can ensure that the side wall of the foam box body will not be deformed when squeezed by external force. At this time, the staff starts the hydraulic cylinder to drive the cutting assembly set on the mounting frame to split the foam box body.

[0020] The specific implementation modes of the present invention are further described in detail below in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In the attached picture:

[0022] Figure 1 It is a three-dimensional structural schematic diagram of a rapid splitting device for foam box production;

[0023] Figure 2 It is a side view structural schematic diagram of a rapid splitting device for foam box production;

[0024] Figure 3 It is a schematic diagram of the cross-sectional structure of a workbench of a rapid splitting device for producing foam boxes;

[0025] Figure 4 It is a schematic diagram of the cross-sectional and upward view of the working table of a rapid splitting device for foam box production;

[0026] Figure 5 It is a schematic diagram of the three-dimensional structure after clamping above the workbench of a rapid splitting device for foam box production;

[0027] Figure 6 It is a schematic diagram of a quick splitting device for foam box production, viewed from above after being clamped on a workbench;

[0028] Figure 7 The present invention is a schematic diagram of the structure of a rapid splitting device for producing foam boxes, viewed from the side after clamping above the workbench.

[0029] In the figure:

[0030] 100, mounting unit; 101, workbench; 1011, supporting leg; 1012, top plate; 1013, side plate; 1015, rectangular notch; 1016, mounting notch; 102, hydraulic cylinder; 1021, mounting frame; 1022, cutting assembly; 103, foam box body;

[0031] 200, transmission unit; 201, servo motor; 2011, first threaded rod; 2012, second threaded rod; 2013, bearing; 2014, second threaded sleeve; 2015, first threaded sleeve; 2016, first slide groove; 2017, first slider; 202, moving rod; 2021, first clamping plate; 203, first flip plate; 2031, first rotating rod; 2032, movable rod; 2033, second flip plate; 204, moving plate; 2041, special-shaped slide groove; 2042, guide slider; 2043, fixed rod; 2044, second clamping plate;

[0032] 300, limiting unit; 301, first cam; 3011, first tilting block; 3012, second slide groove; 3013, second slider; 3014, first return spring; 3015, second tilting block; 3016, second cam; 302, third slide groove; 3021, third slider; 3022, second return spring; 3023, placement plate; 3024, third clamping plate. DETAILED DESCRIPTION

[0033] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. The following embodiments are used to illustrate the present invention.

[0034] Embodiment 1:

[0035] like Figures 1 to 7As shown, a rapid splitting device for foam box production includes an installation unit 100, a transmission unit 200 and a limit unit 300. The installation unit 100 includes a workbench 101. Support legs 1011 are fixedly installed around the top of the workbench 101. A top plate 1012 is installed above the four support legs 1011. A hydraulic cylinder 102 is arranged at the bottom of the top plate 1012. A mounting frame 1021 is arranged at the bottom of the hydraulic cylinder 102. A cutting assembly 1022 is arranged in the mounting frame 1021. A mounting slot is opened above the workbench 101. 1016, two symmetrical rectangular notches 1015 are also provided above the workbench 101, a foam box body 103 is placed above the installation notches 1016, and side panels 1013 are installed between the four support legs 1011; the limiting unit 300 includes four third clamping plates 3024, the four third clamping plates 3024 are symmetrical to each other, and are respectively arranged on the opposite side walls of the foam box body 103, one end of the four third clamping plates 3024 is fixedly connected to a placement plate 3023, and the bottom of each placement plate 3023 is fixedly connected to the foam box body 103. The third sliding mechanism is provided on each of the parts, and the third sliding mechanism includes four third slide grooves 302, and the four third slide grooves 302 are respectively opened on the workbench 101, and the four third slide grooves 302 are symmetrical to each other. The inner cavities of the four third slide grooves 302 are slidably installed with two symmetrical third sliders 3021, and each third slider 3021 is fixedly installed with a third clamping plate 3024 above the two third sliders 3021. The inner cavities of the four third slide grooves 302 are provided with second return springs 3022, and the other end of the second return spring 3022 is fixedly connected to On the third slider 3021; ​​the transmission unit 200 includes two first clamping plates 2021 and a driving component, the driving component is used to drive the first clamping plates 2021 to move horizontally, the two first clamping plates 2021 are symmetrical to each other, and the first flip plates 203 and the second flip plates 2033 are respectively arranged above the two first clamping plates 2021, and the first rotating rod 2031 is fixedly installed through the middle of the first flip plate 203 and the second flip plate 2033, and the two ends of the two first rotating rods 2031 are respectively rotatably connected to the side plate 1013.When the first rotating rod 2031 rotates, it can drive the first cam 301 and the second cam 3016 to rotate. Therefore, the first tilting block 3011 and the second tilting block 3015 can be squeezed by the first cam 301 and the second cam 3016 respectively during the rotation process. The first tilting block 3011 and the second tilting block 3015 can move horizontally with the assistance of the second sliding groove 3012 and the second sliding block 3013. When the first tilting block 3011 and the second tilting block 3015 move horizontally, the placement plate 3023 can be squeezed by the inclined surface with the assistance of the third sliding groove 302 and the third sliding block 3021. The first clamping plate 2021, the second clamping plate 2044 and the third clamping plate 3024 can ensure that the side walls of the foam box body 103 will not be deformed when squeezed by external force. At this time, the staff starts the hydraulic cylinder 102 to drive the cutting assembly 1022 set on the mounting frame 1021 to split the foam box body 103.

[0036] like Figure 3 to Figure 4 As shown, in a specific embodiment, the driving assembly includes a servo motor 201, which is arranged on the side wall of the workbench 101, and a first threaded rod 2011 is fixedly installed at the output end of the servo motor 201, and the first threaded rod 2011 movably penetrates the side wall of the workbench 101, and a second threaded rod 2012 is fixedly installed at one end of the first threaded rod 2011 away from the servo motor 201, and a bearing 2013 is arranged at one end of the second threaded rod 2012 away from the servo motor 201, and the bearing 2013 is installed on the inner wall of the workbench 101, and a first threaded sleeve 2015 and a second threaded sleeve 2014 are respectively meshed and installed on the first threaded rod 2011 and the second threaded rod 2012. In this setting, the installation position and components of the driving assembly are determined.

[0037] like Figure 3 to Figure 4As shown, further, a first sliding mechanism is respectively provided at the bottom of the first threaded sleeve 2015 and the second threaded sleeve 2014, and the first sliding mechanism includes two first slide grooves 2016, and the two first slide grooves 2016 are respectively opened at the bottom of the inner cavity of the workbench 101, and the two first slide grooves 2016 are symmetrical to each other. The inner cavities of the two first slide grooves 2016 are both slidably installed with a first slider 2017, and the two first sliders 2017 are symmetrical to each other. The tops of the two first sliders 2017 are respectively fixedly connected to the first threaded sleeve 2015 and the second threaded sleeve 2014. In this setting, the servo motor 201 is controlled by the controller to run. When the servo motor 201 is running, it will be able to drive the first threaded rod 2011 to rotate. When the first threaded rod 2011 rotates, it will be able to drive the second threaded rod 2012 to rotate. When the first threaded rod 2011 and the second threaded rod 2012 rotate, they will be able to drive the first threaded sleeve 2015 and the second threaded sleeve 2014 to move horizontally with the assistance of the first slide groove 2016 and the first slider 2017.

[0038] like Figures 3 to 7 As shown, further, the first threaded sleeve 2015 and the second threaded sleeve 2014 are respectively fixedly mounted with a moving rod 202, the two moving rods 202 are symmetrical to each other, the two moving rods 202 are respectively movable and penetrate the rectangular slot 1015, and the opposite ends of the two moving rods 202 are respectively fixedly mounted with a first clamping plate 2021. In this configuration, when the first threaded sleeve 2015 and the second threaded sleeve 2014 move relative to each other, the first clamping plate 2021 can be driven to move horizontally by the moving rod 202, so that the two sides of the foam box body 103 can be clamped.

[0039] like Figures 5 to 7 As shown, further, movable rods 2032 are movably mounted on the first flip plate 203 and the second flip plate 2033, respectively. The two movable rods 2032 are symmetrical to each other, and the other ends of the two movable rods 2032 are movably mounted with a moving plate 204. In this configuration, when the moving rods 202 move, the first flip plate 203 and the second flip plate 2033 can be flipped by squeezing the top end, and when the first flip plate 203 and the second flip plate 2033 rotate, the movable rods 2032 can be driven to move, so the moving plate 204 can be pulled by the movable rods 2032 to move horizontally with the assistance of the special-shaped slide grooves 2041 and the guide sliders 2042.

[0040] like Figures 5 to 7As shown, further, the two opposite side walls of the two movable plates 204 are both provided with a second sliding mechanism, and a plurality of fixed rods 2043 arranged in a linear distribution are fixedly installed at the bottom of the two movable plates 204, and a second clamping plate 2044 is fixedly installed at the bottom of each fixed rod 2043, and the two second clamping plates 2044 face each other. In this arrangement, when the first flip plate 203 and the second flip plate 2033 rotate, the movable rod 2032 can be driven to move, so that the movable plate 204 can be pulled by the movable rod 2032 to move horizontally first, then move downwardly obliquely, and finally move horizontally with the assistance of the special-shaped slide groove 2041 and the guide slider 2042, so that the movable plate 204 can drive the fixed rod 2043 to move horizontally first, then move downwardly obliquely, and finally move horizontally, so that the second clamping plate 2044 at the bottom of the fixed rod 2043 can move to the inner wall of the foam box body 103, thereby positioning the inner wall of the foam box body 103.

[0041] like Figures 5 to 7 As shown, further, the second sliding mechanism includes two special-shaped slide grooves 2041, the two special-shaped slide grooves 2041 are respectively opened on the side plate 1013, the two special-shaped slide grooves 2041 are symmetrical to each other, and the two special-shaped slide grooves 2041 are distributed from low to high to low from left to right. Two symmetrical guide sliders 2042 are slidably installed in the inner cavity of the two special-shaped slide grooves 2041, and the moving plate 204 is fixedly installed at one end opposite to each other of each guide slider 2042. In this setting, the installation position and composition of the second sliding mechanism are determined.

[0042] Embodiment 2:

[0043] The difference between the above-mentioned embodiment 1 and this embodiment is that: Figures 5 to 7 As shown, a rapid splitting device for foam box production, two first cams 301 and second cams 3016 are respectively fixedly mounted on two first rotating rods 2031, each first cam 301 and second cam 3016 are symmetrical to each other, and a first tilting block 3011 and a second tilting block 3015 are respectively disposed on one side wall opposite to each other of each first cam 301 and second cam 3016. In this configuration, the installation positions and components of the first cam 301 and second cam 3016 are determined.

[0044] like Figures 5 to 7 As shown, in a specific embodiment, the two first tilting blocks 3011 and the second tilting blocks 3015 are symmetrical to each other, and a fourth sliding mechanism is disposed at the bottom of the two first tilting blocks 3011 and the second tilting blocks 3015. In this configuration, the installation positions and components of the first tilting blocks 3011 and the second tilting blocks 3015 are determined.

[0045] like Figures 5 to 7As shown, further, the fourth sliding mechanism includes a plurality of second slide grooves 3012, each second slide groove 3012 is respectively opened on the workbench 101, a second slider 3013 is slidably installed in the inner cavity of each second slide groove 3012, a first tilting block 3011 and a second tilting block 3015 are fixedly installed above each second slider 3013, a first return spring 3014 is fixedly installed on one side wall of the inner cavity of each second slide groove 3012, each first return spring 3014 is symmetrical to each other, and the other end of each first return spring 3014 is fixedly connected to the third slider 3021. In this configuration, the installation position and components of the fourth sliding mechanism are determined.

[0046] The implementation principle of a rapid splitting device for foam box production in this embodiment is as follows:

[0047] First, the staff places the foam box body 103 on the workbench 101. When the placement is completed, the staff controls the servo motor 201 to operate through the controller. When the servo motor 201 operates, it can drive the first threaded rod 2011 to rotate. When the first threaded rod 2011 rotates, it can drive the second threaded rod 2012 to rotate. When the first threaded rod 2011 and the second threaded rod 2012 rotate, they can drive the first threaded sleeve 2015 and the second threaded sleeve 2014 to move horizontally with the assistance of the first slide groove 2016 and the first slider 2017. Because the first threaded rod 2011 and the second threaded rod 2012 have opposite thread directions, the first threaded sleeve 2015 and the second threaded sleeve 2014 can move relative to each other. When the first threaded sleeve 2015 and the second threaded sleeve 2014 move relative to each other, the first clamping plate 2021 can be driven to move horizontally through the moving rod 202, so that the two sides of the foam box body 103 can be clamped.

[0048] When the moving rod 202 moves, it can flip the first flip plate 203 and the second flip plate 2033 by squeezing the top end, because the first flip plate 203 and the second flip plate 2033 are fixedly installed with the first rotating rod 2031, and the two ends of the first rotating rod 2031 are rotatably connected to the side plate 1013. When the first flip plate 203 and the second flip plate 2033 rotate, they can drive the movable rod 2032 to move. Therefore, the movable plate 204 can be pulled by the movable rod 2032 to move horizontally, then move downwardly, and finally move horizontally with the assistance of the special-shaped slide groove 2041 and the guide slider 2042. Therefore, the movable plate 204 can drive the fixed rod 2043 to move horizontally, then move downwardly, and finally move horizontally, so that the second clamping plate 2044 at the bottom of the fixed rod 2043 can move to the inner wall of the foam box body 103, thereby positioning the inner wall of the foam box body 103;

[0049] When the first rotating rod 2031 rotates, it can drive the first cam 301 and the second cam 3016 to rotate. Therefore, the first tilting block 3011 and the second tilting block 3015 can be squeezed by the first cam 301 and the second cam 3016 respectively during the rotation process. The first tilting block 3011 and the second tilting block 3015 can move horizontally with the assistance of the second sliding groove 3012 and the second sliding block 3013. When the first tilting block 3011 and the second tilting block 3015 move horizontally, the placement plate 3023 can be squeezed by the inclined surface with the assistance of the third sliding groove 302 and the third sliding block 3021. The first clamping plate 2021, the second clamping plate 2044 and the third clamping plate 3024 can ensure that the side walls of the foam box body 103 will not be deformed when squeezed by external force. At this time, the staff starts the hydraulic cylinder 102 to drive the cutting assembly 1022 set on the mounting frame 1021 to split the foam box body 103.

Claims

1. A rapid splitting device for foam box production, comprising an installation unit (100), a transmission unit (200) and a limit unit (300), characterized in that: The installation unit (100) comprises a workbench (101), support legs (1011) are fixedly installed around the top of the workbench (101), a top plate (1012) is installed above the four support legs (1011), a hydraulic cylinder (102) is arranged at the bottom of the top plate (1012), a mounting frame (1021) is arranged at the bottom of the hydraulic cylinder (102), a cutting assembly (1022) is arranged in the mounting frame (1021), a mounting slot (1016) is opened above the workbench (101), two mutually symmetrical rectangular slots (1015) are also opened above the workbench (101), a foam box body (103) is placed above the mounting slot (1016), and side plates (1013) are installed between two of the four support legs (1011); The limiting unit (300) includes four third clamping plates (3024), the four third clamping plates (3024) are symmetrical with each other and are respectively arranged on two opposite side walls of the foam box body (103), one end of the four third clamping plates (3024) is fixedly connected to a placement plate (3023), and the bottom of each placement plate (3023) is provided with a third sliding mechanism, and the third sliding mechanism includes four third sliding grooves (302), and the four third sliding grooves (302) are respectively opened at On the workbench (101), the four third slide grooves (302) are symmetrical to each other, and two symmetrical third sliders (3021) are slidably installed in the inner cavities of the four third slide grooves (302), and a third clamping plate (3024) is fixedly installed above each of the third sliders (3021). The inner cavities of the four third slide grooves (302) are provided with second return springs (3022), and the other end of the second return spring (3022) is fixedly connected to the third slider (3021); The transmission unit (200) comprises two first clamping plates (2021) and a driving assembly, wherein the driving assembly is used to drive the first clamping plates (2021) to move horizontally, the two first clamping plates (2021) are symmetrical to each other, a first flip plate (203) and a second flip plate (2033) are respectively arranged above the two first clamping plates (2021), a first rotating rod (2031) is fixedly installed in the middle of the first flip plate (203) and the second flip plate (2033), and the two ends of the two first rotating rods (2031) are respectively rotatably connected to the side plate (1013).

2. The rapid splitting equipment for foam box production according to claim 1 is characterized in that: The driving assembly comprises a servo motor (201), the servo motor (201) being arranged on a side wall of a workbench (101), a first threaded rod (2011) being fixedly mounted on an output end of the servo motor (201), the first threaded rod (2011) being movably inserted through the side wall of the workbench (101), a second threaded rod (2012) being fixedly mounted on one end of the first threaded rod (2011) away from the servo motor (201), a bearing (2013) being arranged on one end of the second threaded rod (2012) away from the servo motor (201), and the bearing (2013) being mounted on an inner wall of the workbench (101), and a first threaded sleeve (2015) and a second threaded sleeve (2014) being respectively meshed and mounted on the first threaded rod (2011) and the second threaded rod (2012).

3. The rapid splitting equipment for foam box production according to claim 2 is characterized in that: A first sliding mechanism is respectively arranged at the bottom of the first threaded sleeve (2015) and the second threaded sleeve (2014), and the first sliding mechanism comprises two first sliding grooves (2016), the two first sliding grooves (2016) are respectively opened at the bottom of the inner cavity of the workbench (101), the two first sliding grooves (2016) are symmetrical to each other, and a first sliding block (2017) is slidably installed in the inner cavity of the two first sliding grooves (2016), the two first sliding blocks (2017) are symmetrical to each other, and the tops of the two first sliding blocks (2017) are respectively fixedly connected to the first threaded sleeve (2015) and the second threaded sleeve (2014).

4. The rapid splitting equipment for foam box production according to claim 3 is characterized in that: A moving rod (202) is fixedly mounted on the first threaded sleeve (2015) and the second threaded sleeve (2014), respectively. The two moving rods (202) are symmetrical to each other. The two moving rods (202) are movable through the rectangular slots (1015), respectively. A first clamping plate (2021) is fixedly mounted on opposite ends of the two moving rods (202).

5. The rapid splitting equipment for foam box production according to claim 1, characterized in that: A movable rod (2032) is movably mounted on the first flip plate (203) and the second flip plate (2033), respectively. The two movable rods (2032) are symmetrical to each other, and a moving plate (204) is movably mounted on the other ends of the two movable rods (2032).

6. The rapid splitting equipment for foam box production according to claim 5, characterized in that: The two opposite side walls of the two movable plates (204) are each provided with a second sliding mechanism, a plurality of linearly distributed fixed rods (2043) are fixedly mounted at the bottom of the two movable plates (204), and a second clamping plate (2044) is fixedly mounted at the bottom of each fixed rod (2043), and the two second clamping plates (2044) are symmetrical to each other.

7. The rapid splitting equipment for foam box production according to claim 6, characterized in that: The second sliding mechanism comprises two special-shaped slide grooves (2041), the two special-shaped slide grooves (2041) are respectively opened on the side plate (1013), the two special-shaped slide grooves (2041) are symmetrical to each other, and the two special-shaped slide grooves (2041) are distributed from low to high to low from left to right. Two symmetrical guide sliders (2042) are slidably installed in the inner cavity of the two special-shaped slide grooves (2041), and a movable plate (204) is fixedly installed at one end opposite to each other of each guide slider (2042).

8. The rapid splitting equipment for foam box production according to claim 1, characterized in that: Two first cams (301) and two second cams (3016) are respectively fixedly mounted on the two first rotating rods (2031); each of the first cams (301) and the second cams (3016) are symmetrical to each other; and a first tilting block (3011) and a second tilting block (3015) are respectively disposed on opposite side walls of each of the first cams (301) and the second cams (3016).

9. The rapid splitting equipment for foam box production according to claim 8, characterized in that: The two first tilting blocks (3011) and the second tilting blocks (3015) are symmetrical to each other, and a fourth sliding mechanism is provided at the bottom of the two first tilting blocks (3011) and the second tilting blocks (3015).

10. The rapid splitting equipment for foam box production according to claim 9, characterized in that: The fourth sliding mechanism comprises a plurality of second slide grooves (3012), each of the second slide grooves (3012) being respectively opened on the workbench (101), a second slider (3013) being slidably installed in the inner cavity of each second slide groove (3012), a first tilting block (3011) and a second tilting block (3015) being fixedly installed above each second slider (3013), a first return spring (3014) being fixedly installed on one side wall of the inner cavity of each second slide groove (3012), each of the first return springs (3014) being symmetrical with each other, and the other end of each first return spring (3014) being fixedly connected to the third slider (3021).