A folding and forming device capable of processing and cutting carton scraps
By designing a carton scrap processing device that conveys membrane folding structure, powder cutting structure and folding components, the problem of traditional devices being unable to press and collect scraps is solved, and the precise pressing mold and automatic collection of scraps of cartons is realized, reducing costs and improving production efficiency.
Patent Information
- Application Number
- CN202310573691.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-22
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2043-05-22
AI Technical Summary
Traditional folding molding devices cannot press molds at different locations of different cartons, and cannot effectively collect and recover scraps.
A device including a conveying membrane folding structure, a powder cutting structure and a folding assembly is designed. The pressure roller distance is adjusted by conveying the press mold assembly, the crushing conveying assembly collects scraps, the folding assembly realizes automatic folding of carton raw materials, and the cutting of cartons of different sizes is achieved through the cutting assembly.
It realizes accurate mold pressing of different carton locations, automatically collects and crushes scraps, reduces procurement costs, and improves production efficiency and resource utilization.
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Figure CN116872557B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of cartons, and in particular to a folding and forming device capable of processing and cutting carton scraps. Background Art
[0002] Cartons are the most widely used packaging products. According to different materials, there are corrugated boxes, single-layer cardboard boxes, etc., with various specifications and models. Commonly used cartons are three-layer and five-layer, and seven-layer is less used. Each layer is divided into lining paper, corrugated paper, core paper, and face paper. The lining and face paper are tea board paper and kraft paper, and the core paper is corrugated paper. The color and feel of various papers are different. The paper (color, feel) produced by different manufacturers is also different. In the process of carton production, it is necessary to cut the entire carton material to get the desired corresponding carton, so that the carton is suitable for different products and conditions. Since the raw materials of the carton cannot be used directly, it is necessary to cut the carton to different degrees and directions so that the carton can become a fixed shape. , more convenient to fold and applicable to more situations. In the process of carton production, cartons will be cut into different lengths and widths according to requirements. Another necessary condition for cartons is that the fixed positions of the cartons need to be folded and indented, so that the cartons are indented before forming, so that the cartons can be folded better. The traditional folding and forming device cannot perform die-casting on different positions of different cartons. After the cartons are cut and die-casted, unwanted scraps will be generated on the same plane. At this time, the processed cartons need to be collected, and the scraps generated by the cartons need to be collected so that they can be recycled in a unified manner. The traditional folding and forming device cannot collect the scraps for recycling. Summary of the Invention
[0003] The purpose of the present invention is to address the shortcomings of the existing technology and provide a folding and forming device that can process and cut carton scraps, so as to solve the problems proposed in the above background technology that the traditional folding and forming device cannot mold different positions of different cartons, and the traditional folding and forming device cannot collect scraps for recycling.
[0004] To achieve the above-mentioned object, the present invention provides the following technical solution: a folding and forming device capable of processing and cutting carton scraps, comprising a conveying film folding structure for die-folding carton raw materials, a cutting structure for processing and cutting carton raw materials and carton scraps provided between the conveying film folding structures;
[0005] The conveying film folding structure includes a conveying die assembly installed on the folding assembly, and the conveying die assembly includes a conveyor for conveying carton raw materials. At the same time, the conveyor is provided with a connecting frame that is convenient for installing the installation frame. In turn, a wire block is provided inside the installation frame that is relatively driven and adjusted by a bidirectional screw rod and a motor.
[0006] By adopting the above technical solution, the connection frame is provided to achieve the effects of installation and force support.
[0007] Preferably, an electric telescopic rod is provided at the bottom of the wire block for mounting the connecting plate, and a pressure roller for folding the carton raw material is provided below the connecting plate through a movable connecting piece and a connecting pin.
[0008] By adopting the above technical solution, the connecting plate can be lifted and driven by the provided electric telescopic rod.
[0009] Preferably, the folding assembly includes a connecting frame with a hollow structure inside, and a telescopic cylinder for driving and adjusting the adjustment plate is provided inside the connecting frame. At the same time, the adjustment plate is provided with guide blocks extending from both sides of the adjustment plate to facilitate the carton raw materials. The guide blocks are tangentially adjusted to the folding blocks in turn.
[0010] By adopting the above technical solution, the guide blocks are provided to facilitate the folding blocks to achieve better contact and folding effect on the carton raw materials.
[0011] Preferably, one side of the folding block is movably arranged inside the connecting frame through a spring rod, and the overall shape of the folding block is an "L" shape with a beveled edge.
[0012] By adopting the above technical solution and arranging the spring rod, a bidirectional connection setting effect is achieved.
[0013] Preferably, the powder cutting structure includes a crushing and conveying assembly installed on the cutting assembly, and the crushing and conveying assembly includes a hollow frame with an inlet and outlet and a hollow groove, and a through groove is opened at the bottom of the hollow frame to facilitate the installation of the crushing roller, and the crushing roller is connected to the crushing motor.
[0014] By adopting the above technical solution, the provided crushing roller can achieve the effect of crushing and collecting the scraps.
[0015] Preferably, the hollow frame is also provided with a mounting plate with a through slot, and the mounting plate is also provided with a conveying roller that is rotated and adjusted by a rotating motor through the inside of the through slot. At the same time, one side of the mounting plate is provided with a rotationally adjustable adsorption unloading plate through a connecting pin and an adjusting cylinder.
[0016] By adopting the above technical solution, the provided conveying rollers facilitate the conveying and pressing of the cut carton raw materials.
[0017] Preferably, the hollow frame is provided with a movably adjustable polyethylene transparent plate through a hollow groove and a hinge, and a handle is provided on the surface of the polyethylene transparent plate for the operator to hold, pull and adjust. At the same time, the handle is provided with a limit plate movably connected to the concave block through the polyethylene transparent plate, and a collection box for collecting and processing the crushed scraps is provided under the hollow frame.
[0018] By adopting the above technical solution, the polyethylene transparent plate is provided to achieve a movable opening and closing effect.
[0019] Preferably, the cutting assembly includes a first cutter with a storage slot, and a sliding slot for adjusting the slider is provided inside the storage slot. At the same time, the slider is connected to the adjustable cutter, and the first cutter is provided with an electromagnet for adsorbing and adjusting the adjustable cutter through a connecting rod.
[0020] By adopting the above technical solution, the first cutter is provided to achieve the effects of opening and force-driven adjustment.
[0021] Preferably, the first cutters are connected to the rotating cylinder via a fixing plate, and the rotating cylinder is arranged above the interior of the hollow frame via a mounting plate and a control cylinder.
[0022] By adopting the above technical solution, the provided rotating cylinder can achieve a rotational reversing cutting effect on the first cutter.
[0023] Compared with the prior art, the beneficial effects of the present invention are: the folding and forming device that can process and cut carton scraps,
[0024] (1) This case solves the problem that the traditional folding and forming device cannot perform die pressing on different positions of different cartons by setting a conveying die assembly in the conveying film folding structure. When the relative interval distance between the pressing rollers needs to be adjusted, the operator controls the motor to work. During the operation of the motor, the electric telescopic rod is driven by the bidirectional screw rod and the wire block to move relative to each other under force. In addition, the electric telescopic rod drives the pressing roller and the connecting plate to move relative to each other under force during the relative movement of the electric telescopic rod. By changing the relative interval distance between the pressing rollers, the above-mentioned situation is avoided.
[0025] (2) The crushing and conveying assembly provided in the powder cutting structure solves the problem that the traditional folding and forming device is unable to collect and recycle the scraps. When the cutting assembly cuts the carton raw materials, the scraps generated are controlled by the regulating cylinder. During the operation of the regulating cylinder, the scraps are made to fall between the crushing rollers through the blanking plate. At this time, the crushing motor drives the crushing rollers to crush the falling scraps during the force movement. At the same time, the crushed scraps fall into the collection box for collection, which makes it convenient for the operator to take the crushed and collected scraps for reuse. The above situation is avoided by the crushing and conveying assembly provided;
[0026] (3) By setting a folding component in the conveying film folding structure, the problem of the existing folding mechanism being large in size and high in procurement cost is solved. When the carton raw material after die pressing falls into the interior of the connecting frame, the telescopic cylinder drives the adjustment plate to move under force. During the movement of the adjustment plate under force, the guide block and both sides of the carton raw material are driven to move relative to the folding block under force. When the adjustment plate is forced to move downward, the spring rod elastically recovers and drives the folding block to fold both sides of the carton raw material. The folded carton raw material is again driven by the telescopic cylinder to rise and unload. When all the folding components are set inside the connecting frame, the above situation can be avoided.
[0027] (4) The cutting structure is provided with a cutting assembly, which solves the problem of frequently replacing the cutting tool when cutting carton materials of different sizes. When it is necessary to cut carton materials of different sizes, the operator manually holds the adjusting cutter and applies a pulling force. At this time, the adjusting cutter drives the slider and the first cutting knife to move relative to each other. When the adjusting cutter is adjusted to the corresponding interval distance, the electromagnet is controlled to work. During the working process of the electromagnet, the adjusting cutter is adsorbed and fixed. The above situation is avoided at the same time by using the provided cutting assembly. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a schematic diagram of the front cross-sectional structure of the present invention;
[0029] Figure 2 This is a schematic diagram of the film folding structure of the present invention;
[0030] Figure 3 This is a schematic diagram of the structure of the conveyor, connecting plate and pressure roller of the present invention;
[0031] Figure 4 For the present invention Figure 3 A in the middle is an enlarged structural diagram;
[0032] Figure 5 This is a schematic diagram of the folding assembly structure of the present invention;
[0033] Figure 6 This is a schematic structural diagram of the adjustment plate, guide block and folding block of the present invention;
[0034] Figure 7 This is a schematic diagram of the powder cutting structure of the present invention;
[0035] Figure 8 This is a schematic structural diagram of the crushing and conveying assembly of the present invention;
[0036] Figure 9 This is a schematic diagram of the structure of the first cutter, adjustment cutter, electromagnet, rotary cylinder and control cylinder of the present invention;
[0037] Figure 10 For the present invention Figure 9Enlarged structural diagram at point B in the middle.
[0038] In the figure: 1. Conveying film folding structure, 101. Conveying die assembly, 1011. Conveyor, 1012. Mounting frame, 1013. Bidirectional screw, 1014. Motor, 1015. Wire block, 1016. Electric telescopic rod, 1017. Connecting plate, 1018. Pressing roller, 102. Folding assembly, 1021. Connecting frame, 1022. Telescopic cylinder, 1023. Adjusting plate, 1024. Guide block, 1025. Folding block, 1026. Spring rod, 2. Powder cutting structure, 201. Crushing conveying assembly, 2011. Hollow frame, 201 2. Crushing roller, 2013. Crushing motor, 2014. Mounting plate, 2015. Rotating motor, 2016. Conveyor roller, 2017. Adjusting cylinder, 2018. Adsorption blanking plate, 2019. Polyethylene transparent plate, 20110. Concave block, 20111. Limiting plate, 20112. Collection box, 202. Cutting assembly, 2021. First cutter, 2022. Storage slot, 2023. Slide, 2024. Slider, 2025. Adjusting cutter, 2026. Electromagnet, 2027. Rotating cylinder, 2028. Control cylinder. DETAILED DESCRIPTION
[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0040] See also Figure 1-10 The present invention provides a technical solution: a folding and forming device that can process and cut carton scraps, such as Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 and Figure 6As shown, it includes a conveying film folding structure 1 for die-folding carton raw materials, the conveying film folding structure 1 includes a conveying die assembly 101 installed on the folding assembly 102, and the conveying die assembly 101 includes a conveyor 1011 for conveying carton raw materials, and the conveyor 1011 is provided with a connecting frame for facilitating the installation of the installation frame 1012, and the installation frame 1012 is provided with a wire block 1015 that is relatively driven and adjusted by a bidirectional screw rod 1013 and a motor 1014. Among them, the conveyor 1011, the installation frame 1012, the screw rod 1013, the motor 1014 and the wire block 1015 are all arranged with the existing technical structure, and the existing technical structure is used to effectively achieve a relative drive adjustment effect between the pressing rollers 1018 when the above-mentioned components are installed, and it is convenient to perform die-casting on different positions of different cartons.
[0041] Furthermore, the above scheme has an electric telescopic rod 1016 installed on the connecting plate 1017 at the bottom of the wire block 1015, and a pressure roller 1018 for die-casting and folding the carton raw material is provided below the connecting plate 1017 through a movable connecting part and a connecting pin, wherein the electric telescopic rod 1016, the connecting plate 1017 and the pressure roller 1018 constitute a lifting and adjusting structure, and when the above components are used to form a lifting structure, carton raw materials of different thicknesses can be effectively die-cast, and the above components are also installed and arranged using existing components, and at the same time, the interval adjustment effect between the pressure roller 1018 and the carton can be effectively changed.
[0042] The above scheme is further developed. The folding component 102 includes a connecting frame 1021 with a hollow structure inside, and a telescopic cylinder 1022 for driving and adjusting the adjusting plate 1023 is provided inside the connecting frame 1021. At the same time, the adjusting plate 1023 is provided with guide blocks 1024 on both sides of the adjusting plate 1023 for convenient extension of the carton raw materials. The guide blocks 1024 and the folding blocks 1025 are adjusted to move tangentially in sequence. The connection shape between the adjusting plate 1023 and the guide blocks 1024 is an equilateral trapezoid. When the above two are connected in an equilateral trapezoidal shape, it not only has the effect of blanking and connecting the carton raw materials, but also facilitates the carton raw materials on both sides to extend out of the adjusting plate 1023 on both sides to facilitate contact with the folding blocks 1025 for folding processing.
[0043] The above scheme is further improved. One side of the folding block 1025 is movably arranged inside the connecting frame 1021 through a spring rod 1026, and the overall shape of the folding block 1025 is an "L" shape with a bevel. There are two folding blocks 1025. The symmetrically arranged folding blocks 1025 are used to facilitate the contact force folding effect on both sides of the carton raw material. When the overall shape of the folding block 1025 is an "L" shape with a bevel, it reflects the adjustability of the above-mentioned component settings and the force tangency between the above-mentioned components and the guide block 1024 and the contact extrusion folding effect on both sides of the carton raw material.
[0044] In the above scheme, when the carton raw material passes through the powder cutting structure 2 and is transported again above the conveyor 1011, the conveyor 1011 transports the carton raw material to the bottom of the pressure roller 1018. At this time, the carton raw material is subjected to force to drive the pressure roller 1018 to rotate and thereby perform rolling die processing on the carton raw material. When it is necessary to change the relative interval distance between the pressure rollers 1018, the operator controls the motor 1014 to work. During the operation of the motor 1014, the electric telescopic rod 1016 and the connecting plate 1017 are driven to move relative to each other through the bidirectional screw rod 1013 and the wire block 1015. By changing the relative movement interval between the connecting plates 1017, the relative interval distance between the pressure rollers 1018 is changed. When the pressure rollers 1018 are spaced apart, the electric telescopic rod 1016 and the connecting plate 1017 are driven to move relative to each other through the bidirectional screw rod 1013 and the wire block 1015. After the interval distance is adjusted, the motor 1014 stops working. At this time, the carton raw material after die pressing is transported to the inside of the connecting frame 1021. At this time, the telescopic cylinder 1022 inside the connecting frame 1021 is forced to move downward. During the downward movement of the telescopic cylinder 1022, the adjustment plate 1023 and the guide block 1024 are driven to move synchronously. When the guide block 1024 is forced to move, it moves tangentially to the folding block 1025. At this time, the folding block 1025 performs elastic recovery movement through the spring rod 1026. When the folding block 1025 is subjected to elastic force, it drives the two sides of the carton raw material to move relative to each other and fold. After the two sides of the carton raw material are folded, the telescopic cylinder 1022 moves in the opposite direction to drive the folded carton raw materials to be collected and unloaded by the employees.
[0045] like Figure 7 、 Figure 8 、 Figure 9 and Figure 10 As shown, a powder cutting structure 2 for processing and cutting carton raw materials and carton scraps is provided between the conveying film folding structure 1, and the powder cutting structure 2 includes a crushing conveying component 201 installed on the cutting component 202, and the crushing conveying component 201 includes a hollow frame 2011 with an inlet and outlet and a hollow groove, and a through groove for facilitating the installation of a crushing roller 2012 is opened at the bottom inside the hollow frame 2011, and the crushing roller 2012 is connected by a crushing motor 2013, wherein three groups of crushing motors 2013 and crushing rollers 2012 are provided, and the multiple crushing motors 2013 and crushing rollers 2012 are provided to fully crush and collect the carton scraps, while avoiding the entire carton scraps falling below the inside of the collection box 20112, which not only occupies the internal collection space of the collection box 20112 but also causes the collected carton scraps to be placed again inside other crushing equipment for crushing.
[0046] The above scheme further provides a mounting plate 2014 with a through slot in the hollow frame 2011, and the mounting plate 2014 is also provided with a conveying roller 2016 which is rotatably adjusted by a rotating motor 2015 through the through slot. At the same time, one side of the mounting plate 2014 is provided with a rotationally adjustable adsorption blanking plate 2018 through a connecting pin and an adjusting cylinder 2017, wherein the adjusting cylinder 2017 and the adsorption blanking plate 2018 constitute a rotation adjustment structure. When the above two components are used to constitute a rotation adjustment structure, it is convenient to perform rotational blanking processing on the cut carton scraps. At the same time, the rotating motor 2015 and the conveying roller 2016 are also installed and arranged using existing technical components, and the cut carton raw materials can be effectively conveyed and delivered when the existing technical components are installed and arranged in sequence.
[0047] The above scheme is further developed in that the hollow frame 2011 is provided with a movably adjustable polyethylene transparent plate 2019 through a hollow groove and a hinge, and the surface of the polyethylene transparent plate 2019 is provided with a handle for the operator to hold, pull and adjust. At the same time, the handle is provided with a limit plate 20111 movably connected to the concave block 20110 through the polyethylene transparent plate 2019, and a collection box 20112 for collecting and processing the crushed scraps is provided under the hollow frame 2011, wherein the concave block 20110 and the limit plate 20111 are provided in 2 groups of 4, and the symmetrically arranged parts are used to intercept and open the polyethylene transparent plate 2019, and the overall shape of the limit plate 20111 is L-shaped, and the L-shaped limit plate 20111 is used to facilitate the rotational engagement and limiting effect with the concave block 20110.
[0048] The above scheme is further developed. The cutting assembly 202 includes a first cutter 2021 with a storage slot 2022, and a slide slot 2023 for adjusting the limit of the slider 2024 is opened inside the storage slot 2022. At the same time, the slider 2024 is connected to the adjustment cutter 2025. In turn, the first cutter 2021 is provided with an electromagnet 2026 for adsorbing and adjusting the limit of the adjustment cutter 2025 through a connecting rod. Among them, there are 4 first cutters 2021, and a single first cutter 2021 is provided with 1 storage slot. 2022 and two slide grooves 2023, the storage groove 2022 and the slide groove 2023 are used to adjust the sliding storage adjustment effect between the adjustment cutter 2025 and the slider 2024. At the same time, the overall shape of the adjustment cutter 2025 is set in a P-shaped structure, and the adjustment cutter 2025 set in the P-shaped structure is used to facilitate the extension of the storage adjustment effect. At the same time, the surface of the adjustment cutter 2025 is provided with a scale, and the scale is used to clearly observe the adjustment distance of the adjustment cutter 2025.
[0049] The above scheme is further taken one step further. The first cutter 2021 is connected to the rotating cylinder 2027 through a fixed plate, and the rotating cylinder 2027 is set above the inside of the hollow frame 2011 through a mounting plate and a control cylinder 2028. The rotating cylinder 2027 and the control cylinder 2028 also adopt the existing technical structure setting. The above two are set to achieve the lifting and lowering adjustment and rotation reversing cutting adjustment effect of the first cutter 2021.
[0050] In the above scheme, when the carton raw material needs to be cut, the operator manually rotates the limit plate 20111 to separate the limit plate 20111 from the concave block 20110, and then holds the handle to apply tension to separate the polyethylene transparent plate 2019 from the hollow frame 2011. At this time, the operator manually holds the adjusting cutter 2025 to apply thrust. At this time, the adjusting cutter 2025 drives the slider 2024 to move relative to the storage groove 2022 and the slide groove 2023. When the adjusting cutter 2025 is adjusted to the corresponding distance, the electromagnet 2026 is controlled to work to adsorb and limit the adjusting cutter 2025. Then the above steps are reversed to close the polyethylene transparent plate 2019. At this time, the operator places the carton raw material on the conveyor 1011, and the conveyor 1011 transports the carton raw material to the adsorption unloading inside the hollow frame 2011. Plate 2018, at this time, the control cylinder 2028 drives the first cutter 2021 and the adjusting cutter 2025 to move downward under force to cut the carton raw material along the x-axis. After the carton raw material is cut along the x-axis, the rotating cylinder 2027 drives the first cutter 2021 and the adjusting cutter 2025 to rotate and cut the carton raw material along the Y-axis. After the carton raw material is cut, the adjusting cylinder 2017 is forced to drive the adsorption blanking plate 2018 to move under force. At this time, the carton scraps fall between the crushing roller 2012 and the crushing motor 2013 for crushing, and the crushed carton scraps fall into the collection box 20112. When other carton raw materials are conveyed to the adsorption blanking plate 2018, the cut carton raw materials are conveyed to another conveyor 1011 through the rotating motor 2015 and the conveying roller 2016 for conveying, molding and folding processing.
[0051] The directions or positional relationships indicated by terms such as "center", "longitudinal", "lateral", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inside" and "outside" are based on the directions or positional relationships shown in the accompanying drawings. They are merely simplified descriptions for the convenience of describing the present invention, and do not indicate or imply that the devices or elements referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as limiting the protection content of the present invention.
[0052] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A folding and forming device capable of processing and cutting carton scraps, characterized in that: It comprises a conveying film folding structure (1) for die-forming and folding carton raw materials, and a cutting structure (2) for processing and cutting carton raw materials and carton scraps is provided between the conveying film folding structure (1); The conveying film folding structure (1) includes a conveying die assembly (101) installed on the folding assembly (102), and the conveying die assembly (101) includes a conveyor (1011) for conveying carton raw materials, and the conveyor (1011) is provided with a connecting frame for facilitating the installation of the installation frame (1012), and the installation frame (1012) is provided with a wire block (1015) that is relatively driven and adjusted by a bidirectional screw rod (1013) and a motor (1014); The folding assembly (102) comprises a connecting frame (1021) having a hollow structure inside, and a telescopic cylinder (1022) is provided inside the connecting frame (1021) for driving and adjusting the adjustment plate (1023). The adjustment plate (1023) is provided with guide blocks (1024) extending from both sides of the adjustment plate (1023) to facilitate the carton raw material to extend out of both sides of the adjustment plate (1023). The guide blocks (1024) and the folding blocks (1025) are adjusted to move tangentially in sequence. One side of the folding block (1025) is movably arranged inside the connecting frame (1021) via a spring rod (1026), and the overall shape of the folding block (1025) is an "L" shape with a beveled edge.
2. A folding and forming device capable of processing and cutting carton scraps according to claim 1, characterized in that: An electric telescopic rod (1016) for mounting the connecting plate (1017) is provided at the bottom of the wire block (1015), and a pressing roller (1018) for folding the carton raw material is provided below the connecting plate (1017) via a movable connecting piece and a connecting pin.
3. The folding and forming device for processing and cutting carton scraps according to claim 1 is characterized in that: The powder cutting structure (2) comprises a crushing and conveying assembly (201) installed on the cutting assembly (202), and the crushing and conveying assembly (201) comprises a hollow frame (2011) with an inlet and outlet and a hollow groove, and a through groove is provided at the bottom of the hollow frame (2011) for facilitating the installation of a crushing roller (212), and the crushing roller (212) is connected to the crushing motor (213).
4. A folding and forming device capable of processing and cutting carton scraps according to claim 3, characterized in that: The hollow frame (2011) is also provided with a mounting plate (2014) with a through slot, and the mounting plate (2014) is also provided with a conveying roller (2016) that is rotatably adjusted by a rotating motor (2015) through the interior of the through slot. At the same time, one side of the mounting plate (2014) is provided with a rotatably adjusted adsorption blanking plate (2018) through a connecting pin and an adjusting cylinder (2017).
5. The folding and forming device capable of processing and cutting carton scraps according to claim 3 is characterized in that: The hollow frame (211) is provided with a polyethylene transparent plate (2019) that can be adjusted movably through a hollow groove and a hinge, and a handle is provided on the surface of the polyethylene transparent plate (2019) for the operator to hold, pull and adjust. At the same time, the handle is provided with a limit plate (20111) movably connected to the concave block (20110) through the polyethylene transparent plate (2019). In turn, a collection box (20112) for collecting and processing the crushed scraps is provided below the hollow frame (20111).
6. The folding and forming device for processing and cutting carton scraps according to claim 3, characterized in that: The cutting assembly (202) comprises a first cutter (2021) provided with a receiving slot (2022), and a sliding slot (2023) for adjusting and limiting the position of a slider (2024) is provided inside the receiving slot (2022). The slider (2024) is connected to the adjusting cutter (2025), and the first cutter (2021) is provided with an electromagnet (2026) for adsorbing and adjusting the position of the adjusting cutter (2025) via a connecting rod.
7. A folding and forming device capable of processing and cutting carton scraps according to claim 6, characterized in that: The first cutter (2021) is connected to the rotating cylinder (2027) via a fixed plate, and the rotating cylinder (2027) is arranged above the interior of the hollow frame (2011) via a mounting plate and a control cylinder (2028).
Citation Information
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