Cutting and marking device

By designing a cutting and marking device, mechanized cutting and marking of food cups has been achieved, solving the problem of low efficiency in manual cutting and improving production efficiency.

CN223961400UActive Publication Date: 2026-03-03FUXIANG PRECISION IND KUNSHAN
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Patent Information

Application Number
CN202520313290.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-03-03
Estimated Expiration
2035-02-25

AI Technical Summary

Technical Problem

In existing technologies, the cutting process of food cups mainly relies on manual operation, which results in high labor intensity, low cutting efficiency, and restricts production efficiency.

Method used

Design a cutting and marking device, including a conveying mechanism, a feeding mechanism, a pressing mechanism, a cutting mechanism, a marking mechanism and a unloading mechanism, to achieve product cutting and marking through mechanized coordination, replacing manual operation.

Benefits of technology

It enables mechanized cutting and mechanized joining and marking of products, reducing the intensity of manual labor and improving production efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Abstract

The utility model relates to the technical field of product cutting and marking, and particularly discloses a cutting and marking device which comprises a conveying mechanism, a feeding mechanism, a pressing mechanism, a cutting mechanism, a marking mechanism and a discharging mechanism, the conveying mechanism comprises a bearing assembly capable of circularly moving, and the bearing assembly comprises a rotatable bearing part used for bearing products; the feeding mechanism is used for placing products on the bearing piece, the downward pressing mechanism comprises a downward pressing piece which can move close to or far away from the conveying mechanism and can rotate, the cutting mechanism comprises a cutting piece which can move close to or far away from the downward pressing mechanism, and the marking mechanism is used for marking the products cut by the cutting piece. And the discharging mechanism is used for transferring the products marked by the marking mechanism on the conveying mechanism to a designated position. According to the cutting and marking device, mechanical cutting and mechanical joint marking of products are achieved, manual operation is replaced, the labor intensity of workers is reduced, and the production efficiency is improved.
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Description

Technical Field

[0001] This application relates to the field of product cutting and marking technology, specifically to a cutting and marking device. Background Technology

[0002] In the food packaging container manufacturing industry, such as the production of edible cups, the formed cups still require subsequent processing steps such as cutting and marking to ensure they meet specifications and usage requirements. Currently, the cutting process mainly relies on manual operation. However, manual cutting is labor-intensive and inefficient, thus limiting the production efficiency of edible cups. Utility Model Content

[0003] In view of the above, it is necessary to propose a cutting and marking device to realize mechanized cutting of products and mechanized connection of marking products, thereby improving production efficiency.

[0004] This application provides a cutting and marking device, including:

[0005] A conveying mechanism includes a recirculating carrier assembly, the carrier assembly including a rotatable carrier member for carrying products;

[0006] A feeding mechanism is disposed above the conveying mechanism, and the feeding mechanism is used to transfer the product from the external device and place it on the carrier of the conveying mechanism;

[0007] A pressing mechanism is disposed above the conveying mechanism and spaced apart from the feeding mechanism. The pressing mechanism includes a pressing member that can move closer to or away from the conveying mechanism and is rotatable. The pressing member is used to move closer to the conveying mechanism to press the product against the carrier and to drive the product and the carrier to rotate.

[0008] A cutting mechanism is disposed above the conveying mechanism and on the side of the pressing mechanism away from the feeding mechanism. The cutting mechanism includes a cutting element that can move toward or away from the pressing mechanism. The cutting element is used to cut the rotating product.

[0009] A marking mechanism is disposed above the conveying mechanism and on the side of the cutting mechanism opposite to the pressing mechanism. The marking mechanism is used to mark the product cut by the cutting piece.

[0010] The unloading mechanism is located above the conveying mechanism and between the cutting mechanism and the marking mechanism. The unloading mechanism is used to transfer the product marked by the marking mechanism on the conveying mechanism to a designated position.

[0011] In some embodiments, the pressing mechanism further includes a pressing drive, a pressing mounting plate, a pressing elastic member, and a pressing rotating member. The pressing drive is disposed above the conveying mechanism. The pressing mounting plate is movably connected to and stops the output end of the pressing drive. The pressing elastic member is sleeved on the output end of the pressing drive and abuts against the pressing mounting plate and the output end of the pressing drive. The pressing rotating member is disposed on the pressing mounting plate and connected to the pressing member. The pressing drive is used to drive the pressing mounting plate, the pressing elastic member, the pressing rotating member, and the pressing member to move closer to or away from the conveying mechanism. The pressing rotating member is used to drive the pressing member to rotate.

[0012] In some embodiments, the pressing mounting plate has a clearance groove on the side facing the cutting mechanism, the clearance groove is disposed adjacent to the pressing rotating member, and the pressing mounting plate avoids the cutting mechanism through the clearance groove.

[0013] In some embodiments, the cutting mechanism further includes a cutting transverse component, a cutting mounting plate, and a cutting rotating component. The cutting transverse component is disposed above the conveying mechanism. The cutting mounting plate is connected to the cutting transverse component. The cutting rotating component is disposed on the cutting mounting plate and connected to the cutting rotating component. The cutting transverse component is used to drive the cutting mounting plate, the cutting rotating component, and the cutting component to move closer to or away from the pressing mechanism. The cutting rotating component is used to drive the cutting component to rotate.

[0014] In some embodiments, the cutting mechanism further includes a cutting transverse component, a cutting assembly plate, a cutting vertical component, a cutting mounting plate, and a cutting rotating component. The cutting transverse component is disposed above the conveying mechanism. The cutting assembly plate is connected to the cutting transverse component. The cutting vertical component is disposed on the cutting assembly plate. The cutting mounting plate is slidably disposed on the cutting assembly plate and connected to the cutting vertical component. The cutting rotating component is disposed on the cutting mounting plate and connected to the cutting rotating component. The cutting transverse component drives the cutting assembly plate, the cutting vertical component, the cutting mounting plate, the cutting rotating component, and the cutting component to move closer to or away from the pressing mechanism. The cutting vertical component drives the cutting mounting plate, the cutting rotating component, and the cutting component to move closer to or away from the conveying mechanism. The cutting rotating component drives the cutting component to rotate.

[0015] In some embodiments, the conveying mechanism includes a conveying assembly, a rotating shaft, mounting strips, and a conveying drive. There are two sets of conveying assemblies arranged in parallel. Each set includes a guide rail, sprockets, and a chain. There are two sprockets, each rotatably mounted at one end of a corresponding guide rail. The chain surrounds the two sprockets and the guide rail, and meshes with each of the two sprockets. There are two rotating shafts, each located between the guide rails of the two sets of conveying assemblies, and each shaft is connected to the corresponding two sprockets. There are multiple mounting strips spaced apart between the chains of the two sets of conveying assemblies. Each mounting strip has at least one load-bearing component. The conveying drive is connected to either one of the rotating shafts or one of the sprockets.

[0016] In some embodiments, the support assembly further includes a base, a rotating cylinder, a guide rod, and a spring rod. The rotating cylinder is rotatably sleeved on the outside of the base, and the guide rod is movably inserted inside the base. The support assembly is disposed opposite to the base and opposite to the rotating cylinder. One end of the guide rod protrudes from the base and is connected to the support member. The spring rod is elastically connected between the support member and the rotating cylinder.

[0017] In some embodiments, the feeding mechanism includes a feeding transverse component, a feeding assembly base, a feeding vertical component, a feeding mounting base, and a feeding adsorption component. The feeding transverse component is disposed above the conveying mechanism. The feeding assembly base is connected to the feeding transverse component. The feeding vertical component is disposed on the feeding assembly base. The feeding mounting base is connected to the feeding vertical component. The feeding adsorption component is disposed on the feeding mounting base. The feeding transverse component is used to drive the feeding assembly base, the feeding vertical component, the feeding mounting base, and the feeding adsorption component to move between the external device and the conveying mechanism. The feeding vertical component is used to drive the feeding mounting base and the feeding adsorption component to move closer to or away from the conveying mechanism. The feeding adsorption component is used to adsorb the product.

[0018] In some embodiments, the feeding mechanism includes a feeding transverse component, a feeding assembly seat, a feeding vertical component, a feeding mounting seat, and a feeding suction component. The feeding transverse component is disposed above the conveying mechanism and between the cutting mechanism and the marking mechanism. The feeding assembly seat is connected to the feeding transverse component. The feeding vertical component is disposed on the feeding assembly seat. The feeding mounting seat is connected to the feeding vertical component. The feeding suction component is disposed on the feeding mounting seat. The feeding transverse component drives the feeding assembly seat, the feeding vertical component, the feeding mounting seat, and the feeding suction component to move between the conveying mechanism and a designated position. The feeding vertical component drives the feeding mounting seat and the feeding suction component to move closer to or away from the conveying mechanism. The feeding suction component is used to suction the product.

[0019] In some embodiments, the marking mechanism includes a marking mounting base, an adjusting component, a marking assembly base, and a marking machine. The marking mounting base is disposed above the conveying mechanism. The adjusting component is disposed on the marking mounting base. The marking assembly base is slidably disposed on the marking mounting base and connected to the adjusting component. The marking machine is disposed on the marking mounting base. The adjusting component is used to drive the marking assembly base and the marking machine to move, so as to adjust the distance between the marking machine and the conveying mechanism.

[0020] When the above-mentioned cutting and marking device is in use, the carrying component of the conveying mechanism moves below the feeding mechanism, which transfers the product from the external device and places it on the carrying component of the conveying mechanism; then, the carrying component of the conveying mechanism moves with the product below the pressing mechanism, and the pressing component of the pressing mechanism moves closer to the conveying mechanism to press the product onto the carrying component; when the pressing component of the pressing mechanism presses the product onto the carrying component, the pressing component rotates and, through the friction between itself and the product and the carrying component, drives the product and the carrying component to rotate synchronously. At the same time, the cutting component of the cutting mechanism moves closer to the pressing mechanism, so that the cutting component cuts the rotating product; when the cutting component cuts the product... Afterwards, the cutting component of the cutting mechanism moves away from the pressing mechanism and resets, while the pressing component of the pressing mechanism stops rotating and moves away from the conveying mechanism to reset. Then, the carrying component of the conveying mechanism carries the product cut by the cutting component to the bottom of the unloading mechanism, so that the marking mechanism marks the product cut by the cutting component. After the marking mechanism marks the product, the unloading mechanism transfers the product marked by the marking mechanism on the carrying component of the conveying mechanism to the designated position. After the unloading mechanism transfers the product on the carrying component to the designated position, the carrying component moves cyclically to the bottom of the loading mechanism to receive the product again. In this way, mechanized cutting and mechanized marking of the product are realized.

[0021] The cutting and marking device provided in this application embodiment achieves mechanized cutting and mechanized marking of products through the coordinated cooperation of the conveying mechanism, feeding mechanism, pressing mechanism, cutting mechanism, marking mechanism and unloading mechanism, replacing manual operation, which helps to reduce the labor intensity of manual labor and improve production efficiency. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the cutting and marking device provided in the embodiments of this application.

[0023] Figure 2 yes Figure 1 The diagram shows the structure of the conveying mechanism in the cutting and marking device.

[0024] Figure 3 yes Figure 2 An exploded view of the load-bearing components in the conveying mechanism shown.

[0025] Figure 4 yes Figure 1 The diagram shows the structure of the feeding mechanism in the cutting and marking device.

[0026] Figure 5 yes Figure 1 The diagram shows the structure of the pressing mechanism in the cutting and marking device.

[0027] Figure 6 yes Figure 1 The diagram shows the structure of the cutting mechanism in the cutting and marking device.

[0028] Figure 7 yes Figure 1 The diagram shows the structure of the marking mechanism in the cutting and marking device.

[0029] Figure 8 yes Figure 1 The diagram shows the structure of the feeding mechanism in the cutting and marking device.

[0030] Key component symbols: Cutting and marking device 100, conveying mechanism 10, bearing assembly 11, bearing component 111, base 112, rotating drum 113, guide rod 114, spring rod 115, cutting groove 116, conveying assembly 12, guide rail frame 121, sprocket 122, chain 123, bearing seat 124, protective cover 125, rotating shaft 13, mounting strip 14, conveying drive component 15, feeding mechanism 20, feeding transverse movement component 21, feeding assembly seat 22, feeding vertical movement component 23, feeding mounting seat 24, feeding suction component 25, pressing mechanism 30, pressing component 31, pressing drive... Moving part 32, pressing mounting plate 33, clearance groove 331, pressing elastic part 34, pressing rotating part 35, pressing top plate 36, pressing side plate 37, cutting mechanism 40, cutting part 41, cutting transverse moving part 42, cutting assembly plate 43, cutting vertical moving part 44, cutting mounting plate 45, cutting rotating part 46, marking mechanism 50, marking mounting seat 51, adjusting component 52, marking assembly seat 53, marking machine 54, unloading mechanism 60, unloading transverse moving part 61, unloading assembly seat 62, unloading vertical moving part 63, unloading mounting seat 64, unloading suction part 65, machine base 70, product 200. Detailed Implementation

[0031] The embodiments of this application are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0032] In the description of this application, it should be understood that the terms indicating orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include one or more of the stated features. In the description of this application, it should be noted that "a plurality of" means two or more, unless otherwise explicitly specified.

[0033] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the term "connection" should be interpreted broadly. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection, an electrical connection, or a connection that allows communication between the two components; it can be a direct connection or an indirect connection through an intermediate medium; it can be the internal communication between two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.

[0034] The following will describe some embodiments of this application in detail with reference to the accompanying drawings.

[0035] Please see Figure 1 This application provides a cutting and marking device 100. The cutting and marking device 100 is used to cut and mark products 200, such as food cups, so that the food cups meet specifications and usage requirements.

[0036] The cutting and marking device 100 includes a conveying mechanism 10, a feeding mechanism 20, a pressing mechanism 30, a cutting mechanism 40, a marking mechanism 50, and a discharging mechanism 60. The conveying mechanism 10 circulates and conveys products 200 between the feeding mechanism 20, the pressing mechanism 30, the cutting mechanism 40, the marking mechanism 50, and the discharging mechanism 60. The feeding mechanism 20 transfers and places products 200 from an external device, such as a food cup forming machine, onto the conveying mechanism 10. The pressing mechanism 30 presses down on the products 200. The cutting mechanism 40 cuts the products 200 pressed down by the pressing mechanism 30. The marking mechanism 50 marks the marked products 200. The discharging mechanism 60 transfers the marked products 200 to a designated location, such as a packaging machine or an inspection machine.

[0037] In this embodiment, the cutting and marking device 100 further includes a machine base 70. The conveying mechanism 10, the feeding mechanism 20, the pressing mechanism 30, the cutting mechanism 40, the marking mechanism 50, and the unloading mechanism 60 are all disposed on the machine base 70, so that the cutting and marking device 100 can be modularly configured. It can be understood that the specific structure of the machine base 70 can be adapted to install the conveying mechanism 10, the feeding mechanism 20, the pressing mechanism 30, the cutting mechanism 40, the marking mechanism 50, and the unloading mechanism 60. The specific structure of the machine base 70 will not be described in detail in this embodiment, which is not a limitation of this embodiment.

[0038] A conveying mechanism 10 is mounted on a machine base 70 and includes a cyclically movable carrier assembly 11. The carrier assembly 11 includes a rotatable carrier member 111, which carries the product 200. The carrier member 111 and the product 200 can rotate synchronously. A loading mechanism 20 is mounted on the machine base 70 and positioned above the conveying mechanism 10. The loading mechanism 20 transfers the product 200 from an external device and places it onto the carrier member 111 of the conveying mechanism 10. A pressing mechanism 30 is mounted on the machine base 70 and positioned above the conveying mechanism 10. The pressing mechanism 30 is spaced apart from the loading mechanism 20. The pressing mechanism 30 includes a rotatable pressing member 31 that can move closer to or away from the conveying mechanism 10. The pressing member 31 moves closer to the conveying mechanism 10 to press the product 200 against the carrier member 111 and drives the product 200 and the carrier member 111 to rotate. A cutting mechanism 40 is mounted on the machine base 70 and above the conveying mechanism 10. The cutting mechanism 40 is located on the side of the pressing mechanism 30 away from the feeding mechanism 20. The cutting mechanism 40 includes a cutting element 41 that can move closer to or away from the pressing mechanism 30. The cutting element 41 is used to cut the rotating product 200. That is, when the pressing mechanism 31 drives the product 200 and the carrier 111 to rotate, the cutting element 41 moves closer to the product 200, and the rotation of the product 200 causes the cutting element 41 to cut the product 200. A marking mechanism 50 is mounted on the machine base 70 and above the conveying mechanism 10. The marking mechanism 50 is located on the side of the cutting mechanism 40 away from the pressing mechanism 30. The marking mechanism 50 is used to mark the product 200 cut by the cutting element 41. The unloading mechanism 60 is set on the machine base 70 and above the conveying mechanism 10. The unloading mechanism 60 is located between the cutting mechanism 40 and the marking mechanism 50. The unloading mechanism 60 is used to transfer the product 200 marked by the marking mechanism 50 on the conveying mechanism 10 to the designated position.

[0039] In this embodiment, when the cutting and marking device 100 is in use, the carrying component 11 of the conveying mechanism 10 moves to below the feeding mechanism 20, and the feeding mechanism 20 transfers the product 200 from the external device and places it on the carrying member 111 of the carrying component 11 of the conveying mechanism 10; then the carrying component 11 of the conveying mechanism 10 moves with the product 200 to below the pressing mechanism 30, and the pressing member 31 of the pressing mechanism 30 moves close to the conveying mechanism 10 to press the product 200 onto the carrying member 111; when the pressing member 31 of the pressing mechanism 30 presses the product 200 onto the carrying member 111, the pressing member 31 rotates and drives the product 200 and the carrying member 111 to rotate synchronously through the friction between the pressing member 31 and the product 200 and the carrying member 111, while the cutting member 41 of the cutting mechanism 40 moves close to the pressing mechanism 30, so that the cutting member 41 cuts the rotating product 200; when the cutting member 41 After the product 200 is cut, the cutting component 41 of the cutting mechanism 40 moves away from the pressing mechanism 30 and resets. The pressing component 31 of the pressing mechanism 30 stops rotating and moves away from the conveying mechanism 10 to reset. Then, the carrying component 11 of the conveying mechanism 10 moves the product 200 cut by the cutting component 41 to the bottom of the unloading mechanism 60, so that the marking mechanism 50 marks the product 200 cut by the cutting component 41. After the marking mechanism 50 marks the product 200, the unloading mechanism 60 transfers the product 200 marked by the marking mechanism 50 on the carrying component 111 of the conveying mechanism 10 to the designated position. After the unloading mechanism 60 transfers the product 200 on the carrying component 111 to the designated position, the carrying component 11 moves cyclically to the bottom of the loading mechanism 20 to receive the product 200 again. In this way, the mechanized cutting and mechanized marking of the product 200 are realized.

[0040] Please see Figure 2 and Figure 3In this embodiment, the conveying mechanism 10 further includes a conveying assembly 12, a rotating shaft 13, a mounting strip 14, and a conveying drive component 15. There are two sets of conveying assemblies 12, arranged in parallel on the machine base 70. Each set of conveying assemblies 12 includes a guide rail frame 121, sprockets 122, and a chain 123. There are two sprockets 122, each rotatably mounted at both ends of the corresponding guide rail frame 121. The chain 123 surrounds the two sprockets 122 and the guide rail frame 121, and is meshed with each of the two sprockets 122. There are two rotating shafts 13, each located between the guide rail frames 121 of the two sets of conveying assemblies 12, and each rotating shaft 13 is connected between the corresponding two sprockets 122. There are multiple mounting strips 14, which are spaced apart between the chains 123 of the two sets of conveying components 12. Each mounting strip 14 is provided with at least one bearing component 11. The conveying drive component 15 is connected to any one of the rotating shafts 13, or the conveying drive component 15 is connected to any one of the sprockets 122. In this embodiment, each mounting strip 14 is provided with four sets of bearing components 11, and there are eight mounting strips 14 in total. The eight mounting strips 14 are always divided into four on the top and four on the bottom. The four mounting strips 14 on the top correspond to the feeding mechanism 20, the pressing mechanism 30, and the marking mechanism 50, respectively, so that the feeding mechanism 20, the pressing mechanism 30, the marking mechanism 50, and the unloading mechanism 60 can operate synchronously, thereby improving the cutting and marking efficiency of the cutting and marking device 100. Thus, by setting the specific structure of the conveying mechanism 10, the conveying drive component 15 drives the rotating shaft 13 or the sprocket 122 to rotate, thereby driving the chain 123 to rotate cyclically, and then driving the bearing component 11 to rotate cyclically through the chain 123, so that the conveying mechanism 10 achieves the effect of cyclically conveying the bearing component 11. At the same time, the feeding mechanism 20, the pressing mechanism 30, the marking mechanism 50 and the unloading mechanism 60 can operate synchronously, improving the cutting and marking efficiency of the cutting and marking device 100.

[0041] In this embodiment, each conveying assembly 12 further includes two bearing seats 124 and a protective cover 125. The two bearing seats 124 are respectively mounted on the machine base 70 and correspond one-to-one with the two sprockets 122, with each bearing seat 124 positioned opposite to its corresponding sprocket 122. Both ends of each rotating shaft 13 pass through the sprockets 122 on both sides and are rotatably connected to the bearing seat 124. The conveying drive component 15 is mounted on one of the bearing seats 124 and connected to the rotating shaft 13. The protective cover 125 is mounted on the guide rail frame 121 and is used to protect the guide rail frame 121 and the chain 123, improving the safety of the conveying mechanism 10.

[0042] In this embodiment, the supporting assembly 11 further includes a base 112, a rotating cylinder 113, a guide rod 114, and a spring rod 115. The base 112 is disposed on the corresponding mounting strip 14, and the rotating cylinder 113 is rotatably sleeved on the outside of the base 112. Understandably, the rotating cylinder 113 is rotatably sleeved on the outside of the base 112 via a bearing. The guide rod 114 is movably inserted into the base 112 and abuts against the base 112. The supporting assembly 11 is disposed opposite to the base 112 and opposite to the rotating cylinder 113. One end of the guide rod 114 protrudes from the base 112 and is connected to the supporting member 111. The spring rod 115 is elastically connected between the supporting member 111 and the rotating cylinder 113. Thus, when the pressing member 31 presses down on the product 200, the product 200 and the supporting member 111 move downward together. The supporting member 111 drives the guide rod 114 to move downward, while simultaneously compressing the spring rod 115, preventing the pressing member 31 from excessively pressing against the product 200 and ensuring the quality of the product 200. The spring rod 115 can be composed of a rod-shaped object and a spring sleeved on the rod-shaped object; this will not be described in detail in this embodiment.

[0043] In this embodiment, to improve the applicability of the supporting component 11, the rotating drum 113 is provided with multiple cutting slots 116, which allow the cutting component 41 to be avoided. Thus, by providing cutting slots 116 on the rotating drum 113, the cutting component 41 can easily cut the product 200; furthermore, by providing multiple cutting slots 116, the cutting of products 200 of various specifications can be accommodated, improving the applicability of the supporting component 11, and consequently improving the applicability of the cutting and marking mechanism 50.

[0044] Please see Figure 4In this embodiment, the feeding mechanism 20 includes a feeding transverse component 21, a feeding assembly base 22, a feeding vertical component 23, a feeding mounting base 24, and a feeding suction component 25. The feeding transverse component 21 is mounted on the machine base 70 and positioned above the conveying mechanism 10. The feeding transverse component 21 can be a linear module. The feeding assembly base 22 is connected to the feeding transverse component 21. The feeding vertical component 23 is mounted on the feeding assembly base 22 and can be a linear motor module. The feeding mounting base 24 is connected to the feeding vertical component 23, and the feeding suction component 25 is mounted on the feeding mounting base 24. The feeding suction component 25 can be a suction nozzle. The horizontal feeding component 21 drives the feeding assembly 22, the vertical feeding component 23, the feeding mounting base 24, and the feeding adsorption component 25 to move between the external device and the conveying mechanism 10. The vertical feeding component 23 drives the feeding mounting base 24 and the feeding adsorption component 25 to move closer to or away from the conveying mechanism 10. The feeding adsorption component 25 is used to adsorb the product 200. In this embodiment, the number of feeding adsorption components 25 is equal to the number of sets of bearing components 11 on each mounting strip 14, that is, the number of feeding adsorption components 25 is four. Thus, by setting the specific structure of the feeding mechanism 20, when the feeding mechanism 20 transfers the product 200, the horizontal feeding component 21 drives the feeding adsorption component 25 to move above the external device, and the vertical feeding component 23 drives the feeding adsorption component 25 closer to the product 200 on the external device so that the feeding adsorption component 25 can adsorb the product 200. After the feeding adsorption component 25 adsorbs the product 200, the feeding vertical movement component 23 drives the feeding adsorption component 25 and the product 200 away from the external device. The feeding horizontal movement component 21 drives the feeding adsorption component 25 and the product 200 to move above the conveying mechanism 10. Then, the feeding vertical movement component 23 drives the feeding adsorption component 25 and the product 200 to approach the bearing component 11, so as to place the product 200 on the bearing component 111 of the corresponding bearing component 11, thereby realizing the transfer and feeding of the product 200.

[0045] Please see Figure 5In this embodiment, the pressing mechanism 30 further includes a pressing drive component 32, a pressing mounting plate 33, a pressing elastic component 34, and a pressing rotating component 35. The pressing drive component 32 is mounted on the machine base 70 and positioned above the conveying mechanism 10. The pressing drive component 32 is spaced apart from the feeding transverse conveyor component 21. The pressing drive component 32 can be a linear module. The pressing mounting plate 33 is movable and stops at the output end of the pressing drive component 32; that is, the output end of the pressing drive component 32 movably passes through the pressing mounting plate 33 and stops at it. The pressing elastic component 34 can be a spring, sleeved on the output end of the pressing drive component 32 and abutting between the pressing mounting plate 33 and the output end of the pressing drive component 32. The pressing rotating component 35 is mounted on the pressing mounting plate 33 and can be a motor. The pressing component 31 is connected to the pressing rotating component 35. The downward driving component 32 is used to drive the downward mounting plate 33, the downward elastic component 34, the downward rotating component 35, and the downward component 31 to move closer to or away from the conveying mechanism 10. The downward rotating component 35 is used to drive the downward component 31 to rotate. In this embodiment, there are four downward components 31 and four downward rotating components 35, corresponding to the four sets of bearing components 11 on each mounting strip 14. Thus, by setting the specific structure of the downward mechanism 30, the effect of the downward component 31 moving closer to or away from the conveying mechanism 10 and being rotatable is achieved.

[0046] In this embodiment, the pressing mechanism 30 further includes a pressing top plate 36 and pressing side plates 37. The pressing top plate 36 is connected to the machine base 70, and the pressing drive component 32 is disposed on the pressing top plate 36. There are two pressing side plates 37, which are spaced apart and both are connected to the pressing top plate 36. Each pressing side plate 37 is connected to the machine base 70, and both ends of the pressing mounting plate 33 are slidably disposed on the two pressing side plates 37. Thus, by setting the pressing top plate 36 and pressing side plates 37 as described above, the pressing mechanism 30 is connected to the machine base 70.

[0047] In this embodiment, a clearance groove 331 is provided on the side of the pressing mounting plate 33 facing the cutting mechanism 40. The clearance groove 331 is disposed adjacent to the pressing rotating member 35, and the pressing mounting plate 33 avoids the cutting mechanism 40 through the clearance groove 331. In this way, by providing a clearance groove 331 on the pressing mounting plate 33 to avoid the cutting mechanism 40, the cutting member 41 of the cutting mechanism 40 can smoothly cut the product 200.

[0048] Please see Figure 6In this embodiment, the cutting mechanism 40 further includes a cutting transverse component 42, a cutting assembly plate 43, a cutting vertical component 44, a cutting mounting plate 45, and a cutting rotating component 46. The cutting transverse component 42 is disposed on the machine base 70 and above the conveying mechanism 10; the cutting transverse component 42 can be a linear module. The cutting assembly plate 43 is connected to the cutting transverse component 42. The cutting vertical component 44 is disposed on the cutting assembly plate 43 and is a motor lead screw module. The cutting mounting plate 45 is slidably disposed on the cutting assembly plate 43 and connected to the cutting vertical component 44; the cutting vertical component 44 and the cutting mounting plate 45 are located on opposite sides of the cutting assembly plate 43. The cutting rotating component 46 is disposed on the cutting mounting plate 45 and can be a motor. The cutting component 41 is connected to the cutting rotating component 46. The cutting transverse component 42 drives the cutting assembly plate 43, the cutting vertical component 44, the cutting mounting plate 45, the cutting rotating component 46, and the cutting component 41 to move closer to or away from the pressing mechanism 30. The cutting vertical component 44 drives the cutting mounting plate 45, the cutting rotating component 46, and the cutting component 41 to move closer to or away from the conveying mechanism 10. The cutting rotating component 46 drives the cutting component 41 to rotate. Thus, by setting the specific structure of the cutting mechanism 40, firstly, the cutting component 41 can move closer to or away from the pressing mechanism 30 to cut the product 200; secondly, the cutting component 41 can move closer to or away from the conveying mechanism 10, thereby cutting the product 200 into products 200 of different specifications and improving the applicability of the cutting mechanism 40.

[0049] Understandably, in other embodiments, the cutting mechanism 40 may also include only a cutting transverse member 42, a cutting mounting plate 45, and a cutting rotating member 46. The cutting transverse member 42 is disposed above the conveying mechanism 10, the cutting mounting plate 45 is connected to the cutting transverse member 42, the cutting rotating member 46 is disposed on the cutting mounting plate 45, and the cutting member 41 is connected to the cutting rotating member 46. The cutting transverse member 42 is used to drive the cutting mounting plate 45, the cutting rotating member 46, and the cutting member 41 to move closer to or away from the pressing mechanism 30, and the cutting rotating member 46 is used to drive the cutting member 41 to rotate. In this way, the cutting member 41 of the cutting mechanism 40 can move closer to or away from the pressing mechanism 30, thereby realizing the cutting of the product 200.

[0050] Please see Figure 7In this embodiment, the marking mechanism 50 includes a marking mounting base 51, an adjusting component 52, a marking assembly base 53, and a marking machine 54. The marking mounting base 51 is disposed on the machine base 70 and is positioned above the conveying mechanism 10. The adjusting component 52 is disposed on the marking mounting base 51 and is generally composed of a handle, a lead screw, and a lead screw seat. The marking assembly base 53 is slidably disposed on the marking mounting base 51 and connected to the adjusting component 52. The marking machine 54 is disposed on the marking mounting base 51. The adjusting component 52 is used to drive the marking assembly base 53 and the marking machine 54 to move, thereby adjusting the distance between the marking machine 54 and the conveying mechanism 10. Thus, by setting the specific structure of the marking mechanism 50, the distance between the marking machine 54 and the product 200 is adjustable, thereby improving the applicability of the marking mechanism 50. The marking mounting base 51, the adjustment component 52, the marking assembly base 53, and the marking machine 54 are all in pairs, thus marking two products 200 at the same time and improving the marking efficiency of the marking mechanism 50.

[0051] Please see Figure 8 In this embodiment, the feeding mechanism 60 includes a feeding transverse component 61, a feeding assembly base 62, a feeding vertical component 63, a feeding mounting base 64, and a feeding suction component 65. The feeding transverse component 61 is disposed on the machine base 70 and above the conveying mechanism 10, and is located between the cutting mechanism 40 and the marking mechanism 50. The feeding transverse component 61 can be a linear module. The feeding assembly base 62 is connected to the feeding transverse component 61, and the feeding vertical component 63 is disposed on the feeding assembly base 62. The feeding vertical component 63 can be a linear cylinder. The feeding mounting base 64 is connected to the feeding vertical component 63, and the feeding suction component 65 is disposed on the feeding mounting base 64. The horizontal feeding component 61 drives the feeding assembly 62, the vertical feeding component 63, the feeding mounting base 64, and the feeding suction component 65 to move between the conveying mechanism 10 and a designated position. The vertical feeding component 63 drives the feeding mounting base 64 and the feeding suction component 65 to move closer to or away from the conveying mechanism 10. The feeding suction component 65 is used to absorb the product 200. In this embodiment, there are four feeding suction components 65. Thus, by setting the specific structure of the feeding mechanism 60, when the feeding mechanism 60 transfers the product 200, the horizontal feeding component 61 drives the feeding suction component 65 to move above the conveying mechanism 10, and the vertical feeding component 63 drives the feeding suction component 65 closer to the product 200 on the conveying mechanism 10 so that the feeding suction component 65 can absorb the product 200. After the feeding adsorption component 65 adsorbs the product 200, the feeding vertical movement component 63 drives the feeding adsorption component 65 and the product 200 away from the conveying mechanism 10. The feeding horizontal movement component 61 drives the feeding adsorption component 65 and the product 200 to move above the designated position. Then, the feeding vertical movement component 63 drives the feeding adsorption component 65 and the product 200 closer to the designated position to place the product 200 in the designated position, thereby realizing the transfer and feeding of the product 200.

[0052] The cutting and marking device 100 provided in this application embodiment achieves mechanized cutting and mechanized connection marking of product 200 through the coordinated cooperation between conveying mechanism 10, feeding mechanism 20, pressing mechanism 30, cutting mechanism 40, marking mechanism 50 and unloading mechanism 60, replacing manual operation, which helps to reduce the labor intensity of manual labor and improve production efficiency.

[0053] It will be apparent to those skilled in the art that this application is not limited to the details of the exemplary embodiments described above, and that this application can be implemented in other specific forms without departing from the spirit or essential characteristics of this application. Therefore, the embodiments should be regarded as exemplary and non-limiting in all respects, and the scope of this application is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be embraced within this application.

[0054] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application and are not intended to limit it. Although this application has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this application without departing from the spirit and scope of the technical solutions of this application.

Claims

1. A cutting and marking apparatus, characterized in that, The application relates to a product conveying device, which comprises a conveying mechanism, an upper feeding mechanism, a lower pressing mechanism, a cutting mechanism, a marking mechanism and a lower discharging mechanism. The conveying mechanism comprises a circulating movable bearing assembly, which comprises a rotatable bearing for bearing products. The upper feeding mechanism is arranged above the conveying mechanism and is used for transferring the products on an external device and placing the products on the bearing. The lower pressing mechanism is arranged above the conveying mechanism and is spaced apart from the upper feeding mechanism, and comprises a rotatable pressing member which can move close to or away from the conveying mechanism, is used for moving close to the conveying mechanism to press the products on the bearing, and is used for driving the products and the bearing to rotate. The cutting mechanism is arranged above the conveying mechanism and is located on the side of the lower pressing mechanism away from the upper feeding mechanism, and comprises a cutting member which can move close to or away from the lower pressing mechanism and is used for cutting the rotating products. The marking mechanism is arranged above the conveying mechanism and is located on the side of the cutting mechanism away from the lower pressing mechanism, and is used for marking the products cut by the cutting member. The lower discharging mechanism is arranged above the conveying mechanism and is located between the cutting mechanism and the marking mechanism, and is used for transferring the products marked by the marking mechanism on the conveying mechanism to a designated position.

2. The cutting and marking apparatus of claim 1, wherein The lower pressing mechanism further comprises a pressing driving member, a pressing mounting plate, a pressing elastic member and a pressing rotating member.

3. The cutting and marking apparatus of claim 2, wherein, The pressing mounting plate is movably and stop-connected with the output end of the pressing driving member.

4. The cutting and marking apparatus of claim 1, wherein The pressing elastic member is sleeved on the output end of the pressing driving member and abuts between the pressing mounting plate and the output end of the pressing driving member. The pressing rotating member is arranged on the pressing mounting plate. The pressing member is connected with the pressing rotating member. The pressing driving member is used for driving the pressing mounting plate, the pressing elastic member, the pressing rotating member and the pressing member to move close to or away from the conveying mechanism. The pressing rotating member is used for driving the pressing member to rotate. The cutting mechanism further comprises a cutting horizontal moving member, a cutting mounting plate and a cutting rotating member. The cutting horizontal moving member is arranged above the conveying mechanism. The cutting mounting plate is connected with the cutting horizontal moving member. The cutting rotating member is arranged on the cutting mounting plate. The cutting member is connected with the cutting rotating member. The cutting horizontal moving member is used for driving the cutting mounting plate, the cutting rotating member and the cutting member to move close to or away from the lower pressing mechanism. The cutting rotating member is used for driving the cutting member to rotate.

5. The cutting and marking apparatus of claim 1 wherein, The cutting mechanism further comprises a cutting horizontal moving element, a cutting assembly plate, a cutting vertical moving element, a cutting mounting plate and a cutting rotating element. The cutting horizontal moving element is arranged above the conveying mechanism. The cutting assembly plate is connected with the cutting horizontal moving element. The cutting vertical moving element is arranged on the cutting assembly plate. The cutting mounting plate is slidingly arranged on the cutting assembly plate and connected with the cutting vertical moving element. The cutting rotating element is arranged on the cutting mounting plate. The cutting element is connected with the cutting rotating element. The cutting horizontal moving element is used to drive the cutting assembly plate, the cutting vertical moving element, the cutting mounting plate, the cutting rotating element and the cutting element to move close to or away from the pressing mechanism. The cutting vertical moving element is used to drive the cutting mounting plate, the cutting rotating element and the cutting element to move close to or away from the conveying mechanism. The cutting rotating element is used to drive the cutting element to rotate.

6. The cutting and marking apparatus of claim 1, wherein The conveying mechanism comprises a conveying assembly, a rotating shaft, a mounting strip and a conveying driving element. The conveying assembly is in two groups. The two groups of conveying assemblies are arranged in parallel. Each group of conveying assemblies comprises a guide rail frame, a chain wheel and a chain. The number of chain wheels is two. The two chain wheels are rotatably arranged at the two ends of the corresponding guide rail frame. The chain is arranged around the two chain wheels and the guide rail frame. The chain is meshingly connected with the two chain wheels. The number of rotating shafts is two. The two rotating shafts are arranged between the guide rail frames of the two groups of conveying assemblies. Each rotating shaft is connected between the corresponding two chain wheels. The number of mounting strips is multiple. The mounting strips are arranged in pairs between the chains of the two groups of conveying assemblies. At least one bearing assembly is arranged on each mounting strip. The conveying driving element is connected with any one of the rotating shafts or any one of the chain wheels.

7. The cutting and marking apparatus of claim 1 wherein, The bearing assembly further comprises a base, a rotating cylinder, a guide rod and a spring rod. The rotating cylinder is rotatably arranged outside the base. The guide rod is movably arranged in the base. The bearing assembly is arranged opposite to the base and opposite to the rotating cylinder. One end of the guide rod protrudes from the base and is connected with the bearing element. The spring rod is elastically connected between the bearing element and the rotating cylinder.

8. The cutting and marking apparatus of claim 1 wherein, The feeding mechanism comprises a feeding horizontal moving element, a feeding assembly seat, a feeding vertical moving element, a feeding mounting seat and a feeding suction accessory. The feeding horizontal moving element is arranged above the conveying mechanism. The feeding assembly seat is connected with the feeding horizontal moving element. The feeding vertical moving element is arranged on the feeding assembly seat. The feeding mounting seat is connected with the feeding vertical moving element. The feeding suction accessory is arranged on the feeding mounting seat. The feeding horizontal moving element is used to drive the feeding assembly seat, the feeding vertical moving element, the feeding mounting seat and the feeding suction accessory to move between the external device and the conveying mechanism. The feeding vertical moving element is used to drive the feeding mounting seat and the feeding suction accessory to move close to or away from the conveying mechanism. The feeding suction accessory is used to suck the product.

9. The cutting and marking apparatus of claim 1 wherein, The blanking mechanism comprises a blanking horizontal moving piece, a blanking assembly seat, a blanking vertical moving piece, a blanking mounting seat and a blanking suction accessory. The blanking horizontal moving piece is arranged above the conveying mechanism and between the cutting mechanism and the marking mechanism. The blanking assembly seat is connected with the blanking horizontal moving piece. The blanking vertical moving piece is arranged on the blanking assembly seat. The blanking mounting seat is connected with the blanking vertical moving piece. The blanking suction accessory is arranged on the blanking mounting seat. The blanking horizontal moving piece is used to drive the blanking assembly seat, the blanking vertical moving piece, the blanking mounting seat and the blanking suction accessory to move between the conveying mechanism and a designated position. The blanking vertical moving piece is used to drive the blanking mounting seat and the blanking suction accessory to move close to or away from the conveying mechanism. The blanking suction accessory is used to suck the product.

10. The cutting and marking apparatus of claim 1, wherein, The marking mechanism comprises a marking mounting seat, an adjusting assembly, a marking assembly seat and a marking machine. The marking mounting seat is arranged above the conveying mechanism. The adjusting assembly is arranged on the marking mounting seat. The marking assembly seat is slidingly arranged on the marking mounting seat and connected with the adjusting assembly. The marking machine is arranged on the marking mounting seat. The adjusting assembly is used to drive the marking assembly seat and the marking machine to move, so as to adjust the distance between the marking machine and the conveying mechanism.