A product conveying mechanism integrated with a clamshell packaging separation device

By integrating a clamshell packaging separation device into the product conveying mechanism, the problem of bagged packaging equipment not being able to be integrated into the conveying equipment is solved, realizing automated packaging and separation, simplifying the operation process, reducing costs and improving space utilization efficiency.

CN117508798BActive Publication Date: 2025-12-19JIANGSU HAOYONG PACKING MATERIAL CO LTD
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Patent Information

Application Number
CN202311656134.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-04
Publication Date
2025-12-19
Estimated Expiration
2043-12-04

AI Technical Summary

Technical Problem

Existing bag packaging equipment requires a separate location and cannot be directly integrated into conveyor equipment, resulting in cumbersome operation and high costs.

Method used

Design a product conveying mechanism for an integrated clamshell packaging separation device, including a bottom main frame, upper and lower flipping covers, an electrically controlled conveyor belt, an electrically controlled extrusion packaging separation device, and a linkage transmission mechanism, to achieve the integration of packaging equipment and conveying equipment, and to realize automated packaging and separation through electrical and magnetic control devices.

Benefits of technology

It integrates packaging and conveying equipment, simplifies operation, improves packaging accuracy and efficiency, reduces costs, and makes more rational use of space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of packaging transportation, in particular to a product conveying mechanism integrated with a bivalve type packaging separation device, which comprises a bottom mainframe, an upper electric control conveying belt installed on the upper surface of the bottom mainframe, and a front electric control conveying belt installed on the front side wall of the bottom mainframe through a lateral assembly frame. The product conveying mechanism integrated with the bivalve type packaging separation device adopts double-layer conveying mechanisms to horizontally convey the goods before and after packaging, and people only need to carry out feeding and discharging operations at the same position, so that the operation is simple and convenient; a bivalve type packaging bin is fixedly assembled in the lateral installation frame between the upper electric control conveying belt and the front electric control conveying belt, can be automatically controlled to open and close according to the position and state of the goods, and can complete packaging and separation of the goods in the opening and closing process, so that the packaging precision and efficiency are very high.
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Description

TECHNICAL FIELD

[0001] The present application relates to the packaging conveying technical field, especially a product conveying mechanism integrated with a clamshell packaging and separating device. BACKGROUND

[0002] In order to improve the safety and convenience of goods in the distribution process, it is necessary to perform packaging operation on the outside of the goods. Traditional packaging includes box packaging, barrel packaging, bag packaging, bundle packaging and other jar, tank, bottle-shaped, reel-shaped, woven basket-shaped and other packaging methods. As the most common bagging method on the market, it has the advantages of lightness, speed, safety and sealing, and is favored by the majority of users. At present, bagging mainly places products inside the vacuum packaging equipment at a designated position, and a separate position is needed to place the packaging equipment. The packaging equipment cannot be directly integrated on the conveying equipment, resulting in a relatively cumbersome operation process, weak linkage and high packaging cost. SUMMARY

[0003] The technical problem to be solved by the present application is that the current bagging mainly places products inside the vacuum packaging equipment at a designated position, and a separate position is needed to place the packaging equipment. The packaging equipment cannot be directly integrated on the conveying equipment, resulting in a relatively cumbersome operation process, weak linkage and high packaging cost.

[0004] The technical scheme adopted by the present application to solve the technical problem is a product conveying mechanism integrated with a clamshell packaging and separating device, comprising a bottom mainframe, an upper electric control conveying belt installed on the upper surface of the bottom mainframe, a front electric control conveying belt installed on the front side wall of the bottom mainframe through a lateral assembly frame one, a lateral installation frame fixedly installed on the left side wall of the bottom mainframe through a lateral assembly frame two, a clamshell packaging bin fixedly assembled in the lateral installation frame, and an electric control type extrusion packaging and separating device installed in the clamshell packaging bin.

[0005] The clamshell packaging bin comprises an external fixed frame fixedly installed in the lateral installation frame, an upper turnover cover movably installed at the opening position of the upper end of the external fixed frame, a lower turnover cover movably installed at the opening position of the lower end of the external fixed frame, and a linkage type transmission mechanism movably installed on the inner side of the external fixed frame.

[0006] The upper surface of the upper turnover cover is provided with an upper packaging raw material storage bin and an upper packaging waste material storage bin protruding upward on both sides, and the external fixed frame is provided with a lower packaging raw material storage bin and a lower packaging waste material storage bin protruding downward on both sides.

[0007] The electric control type extrusion packaging separation device comprises an electric driving roller installed in the interior of the upper packaging raw material storage bin, the upper packaging waste material storage bin, the lower packaging raw material storage bin and the lower packaging waste material storage bin, an upper electric control type packaging frame installed on the inner top surface of the upper overturning cover shell, a lower electric control type packaging frame installed on the inner bottom surface of the lower overturning cover shell, an electric heating plastic sealing frame installed on the upper surface of the lower electric control type packaging frame and a magnetic control type cutting separation device installed on the outer side of the upper electric control type packaging frame.

[0008] The linkage type transmission mechanism comprises a first annular tooth groove formed on the lateral assembly shaft of the upper overturning cover shell, a second annular tooth groove formed on the lateral assembly shaft of the lower overturning cover shell, a transverse connecting rod interactively assembled on the inner side surface of the external fixed frame through the inner side limiting frame and a conical tooth head fixed on the two ends of the transverse connecting rod.

[0009] A lateral electric control support rod for controlling the overturning of the upper overturning cover shell is movably assembled on the outer side surface of the external fixed frame.

[0010] An obliquely arranged material guide plate is arranged between the front electric control type conveying belt and the lower overturning cover shell on the lateral assembly frame.

[0011] An embedded sensor controller is installed on the upper surface of the external fixed frame close to the end of the upper electric control type conveying belt.

[0012] The magnetic control type cutting separation device comprises an external guide seat installed on the outer side of the upper electric control type packaging frame, a cutting blade slidably sleeved on the periphery of the upper electric control type packaging frame, an upper guide rod fixed on the upper end of the cutting blade, an embedded annular electromagnet fixed on the upper surface of the external guide seat and a ferrous control spring installed on the outer side of the upper guide rod.

[0013] A bottom storage groove for storing the lower electric control type packaging frame is formed on the inner bottom surface of the lower overturning cover shell.

[0014] The beneficial effects of the present application are as follows:

[0015] (1) The product conveying mechanism of the integrated clamshell type packaging separation device adopts a double-layer conveying mechanism to horizontally convey the goods before and after packaging, and people only need to carry out feeding and discharging operations at the same position, so that the operation is simple and convenient.

[0016] (2) A clamshell type packaging bin is fixedly assembled in the lateral installation frame between the upper electric control type conveying belt and the front electric control type conveying belt, and can be automatically controlled to open and close according to the position and state of the goods, so that the packaging and separation of the material are completed in the opening and closing process, and the packaging precision and efficiency are high.

[0017] (3) Through the embedded sensor controller installed on the upper surface of the lower flip cover, not only the clamshell packaging bin can be controlled, but also the size of the electric control type extrusion packaging and separating equipment can be controlled, and the packaging applicability is improved;

[0018] (4) The whole packaging equipment is directly integrated with the conveying equipment, without occupying extra space, the space layout is more reasonable, and the storage, placement and transportation are facilitated;

[0019] (5) The upper flip cover and the lower flip cover are synchronously controlled through the linkage transmission mechanism on the inner side of the external fixed frame, and the automatic discharging can be realized when the lower flip cover is flipped downward, and the linkage performance is strong;

[0020] (6) By directly pressing and covering the packaging through the double-layer packaging film, the cost of raw materials is lower, the hot plastic sealing is formed and simultaneously cut and separated, and the waste material is wound for convenient waste collection. BRIEF DESCRIPTION OF DRAWINGS

[0021] The application will be further described below in conjunction with the drawings and embodiments.

[0022] Figure 1 is a structural schematic diagram of the application.

[0023] Figure 2 is a schematic diagram of the internal structure of the clamshell packaging bin in the expanded state.

[0024] Figure 3 is a structural schematic diagram of the upper electric control type packaging frame in the application.

[0025] Figure 4 is a structural schematic diagram of the magnetic control type cutting and separating device in the application.

[0026] Figure 5 is a structural schematic diagram of the linkage transmission mechanism in the application. DETAILED DESCRIPTION

[0027] The application will be further described below in conjunction with the drawings and embodiments.

[0028] In the description of the application, it should be noted that unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0029] Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 and Figure 5 The product conveying mechanism of an integrated mussel type packaging and separating device is shown in the drawings, which comprises a bottom main frame 1, an upper electric control conveying belt 2 installed on the upper surface of the bottom main frame 1, a front electric control conveying belt 4 installed on the front side wall of the bottom main frame 1 through a lateral assembly frame one 3, a lateral installation frame 6 fixedly installed on the left side wall of the bottom main frame 1 through a lateral assembly frame two 5, a mussel type packaging bin 7 fixedly assembled inside the lateral installation frame 6, and an electric control type extrusion packaging and separating device 8 installed inside the mussel type packaging bin 7.

[0030] The upper electric control conveying belt 2 and the front electric control conveying belt 4 are both prior art, which are used to control the conveying of goods.

[0031] In order to cooperate with the opening and closing control, the mussel type packaging bin 7 comprises an external fixed frame 71 fixedly installed inside the lateral installation frame 6, an upper turnover cover 72 movably installed at the opening position of the upper end of the external fixed frame 71, a lower turnover cover 73 movably installed at the opening position of the lower end of the external fixed frame 71, and a linkage type transmission mechanism 74 movably installed on the inner side surface of the external fixed frame 71.

[0032] In order to cooperate with the storage of raw material and waste packaging film, the upper turnover cover 72 is provided with an upper packaging raw material storage bin 75 and an upper packaging waste material storage bin 76 protruding upward on both sides of the upper surface of the upper turnover cover 72, and the external fixed frame 71 is provided with a lower packaging raw material storage bin 77 and a lower packaging waste material storage bin 78 protruding downward on both sides of the external fixed frame 71.

[0033] In order to cooperate with the packaging and separating, the electric control type extrusion packaging and separating device 8 comprises an electric drive roller 81 installed inside the upper packaging raw material storage bin 75, the upper packaging waste material storage bin 76, the lower packaging raw material storage bin 77, and the lower packaging waste material storage bin 78, an upper electric control type packaging frame 82 installed on the inner top surface of the upper turnover cover 72, a lower electric control type packaging frame 83 installed on the inner bottom surface of the lower turnover cover 73, an electric heating plastic sealing frame 84 installed on the upper surface of the lower electric control type packaging frame 83, and a magnetic control type cutting and separating device 85 installed on the outer side of the upper electric control type packaging frame 82.

[0034] The electric drive roller 81 is prior art, which is driven by an existing electric motor installed on one side of the outer wall of the upper packaging raw material storage bin 75, the upper packaging waste material storage bin 76, the lower packaging raw material storage bin 77, and the lower packaging waste material storage bin 78, and then a loading and unloading opening is formed on the other side of the upper packaging raw material storage bin 75, the upper packaging waste material storage bin 76, the lower packaging raw material storage bin 77, and the lower packaging waste material storage bin 78, so as to facilitate the disassembly of the raw material cylinder or the waste cylinder.

[0035] The upper and lower electrically controlled packaging frames 82 and 83 have the same size, are composed of a fixed frame, a sliding frame spliced on the fixed frame, and a prior art translation support rod installed between the fixed frame and the sliding frame, and can be adjusted according to the size of the goods, thereby improving the applicability. The electric heating plastic sealing frame 84 is a prior art, and is fixed at the bottom of the fixed frame and the sliding frame.

[0036] In order to match the synchronous linkage, the linkage transmission mechanism 74 includes a first annular tooth groove 741 opened on the lateral assembly shaft of the upper turnover shell 72, a second annular tooth groove 742 opened on the lateral assembly shaft of the lower turnover shell 73, a transverse connecting rod 744 interactively assembled on the inner side of the outer fixed frame 71 through an inner limiting frame, and a conical tooth head 745 axially fixed at both ends of the transverse connecting rod 744.

[0037] The conical tooth heads 745 at both ends of the transverse connecting rod 744 are respectively meshed with the first annular tooth groove 741 and the second annular tooth groove 742 for transmission, thereby achieving the function of synchronous turnover.

[0038] In order to control the reverse turnover of the upper and lower turnover shells 72 and 73, a lateral electrically controlled support rod 79 for controlling the turnover of the upper turnover shell 72 is movably assembled on the outer side of the outer fixed frame 71.

[0039] The lateral electrically controlled support rod 79 is a prior art.

[0040] In order to cooperate with the bottom side material guiding, the obliquely arranged material guiding plate 9 is arranged between the front electrically controlled conveying belt 4 and the lower turnover shell 73 on the lateral assembly frame 2.

[0041] In order to cooperate with the automatic control opening and closing and size adjustment, the embedded sensor controller 10 is installed on the upper surface of the outer fixed frame 71 near the end of the upper electrically controlled conveying belt 2.

[0042] The embedded sensor controller 10 is a prior art for controlling the rotation of the electric drive roller 81, the expansion of the lateral electric control support rod 79, the contraction of the upper electric control packaging frame 82 and the contraction of the lower electric control packaging frame 83. When the goods pass through the external fixed frame 71 from the upper electric control conveying belt 2, the embedded sensor controller 10 detects the goods, controls the expansion of the lateral electric control support rod 79, controls the opening of the upper and lower flip cover 72, 73, controls the rotation of the electric drive roller 81, and guides the goods into the inside of the clamshell packaging bin 7. When the embedded sensor controller 10 does not detect the goods, it controls the contraction of the lateral electric control support rod 79, controls the closing of the upper and lower flip cover 72, 73, controls the closing of the electric drive roller 81, and calculates the length of the goods according to the detection time and the running speed of the goods, so as to control the contraction of the upper and lower electric control packaging frame 82 and 83 to adapt to the goods. After the upper and lower electric control packaging frame 82 and 83 are closed, the electric heating plastic sealing frame 84 is started, and after the heating and plastic sealing, the magnetic control cutting and separating device 85 is started to separate. After separation, the next goods are driven in, the lateral electric control support rod 79 is controlled to expand, the upper and lower flip cover 72, 73 are controlled to open outward, the packaged goods are separated, and the goods fall on the front electric control conveying belt 4 through the inclined guide plate 9 for discharging operation.

[0043] In order to match the magnetic control cutting and separating, the magnetic control cutting and separating device 85 includes an external guide seat 851 installed outside the upper electric control packaging frame 82, a cutting blade 852 slidingly sleeved on the periphery of the upper electric control packaging frame 82, an upper guide rod 853 fixed on the upper end of the cutting blade 852, an embedded annular electromagnet 854 fixed on the upper surface of the external guide seat 851, and a ferrous control spring 855 installed outside the upper guide rod 853.

[0044] The embedded annular electromagnet 854 is a prior art, which generates magnetism by electrification to control the contraction of the ferrous control spring 855, and drives the upper guide rod 853 to slide along the external guide seat 851 by the contraction of the ferrous control spring 855, so as to control the downward sliding of the cutting blade 852 to cut and separate the packaging film on the periphery of the heat sealing edge.

[0045] In order to not affect the sliding of the packaged product on the inclined guide plate 9 and reduce the sliding resistance, a bottom receiving groove for receiving the lower electric control packaging frame 83 is formed on the inner bottom surface of the lower flip cover 73.

[0046] The lower electric control packaging frame 83 is completely retracted into the bottom receiving groove, and can form a plane with the inner bottom surface of the lower flip cover 73, so as to not affect the sliding of the packaging bag.

[0047] With the above ideal embodiments according to the present application as the inspiration, through the above description, relevant staff can make various changes and modifications without deviating from the technical idea of the present application. The technical scope of the present application is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims

1. A product conveying mechanism integrated with a clamshell packaging separation device, comprising a base mainframe (1), characterized in that: The upper surface of the bottom main frame (1) is provided with an upper electric control conveying belt (2), the front side wall of the bottom main frame (1) is provided with a front electric control conveying belt (4) through a lateral assembly frame one (3), the left side wall of the bottom main frame (1) is fixedly provided with a lateral installation frame (6) through a lateral assembly frame two (5), the inside of the lateral installation frame (6) is fixedly provided with a bivalve type packaging bin (7), and the inside of the bivalve type packaging bin (7) is provided with an electric control type extrusion packaging and separating device (8). The bivalve type packaging bin (7) comprises an external fixed frame (71) fixedly installed in the lateral installation frame (6), an upper turnover cover (72) movably installed at the opening position of the upper end of the external fixed frame (71), a lower turnover cover (73) movably installed at the opening position of the lower end of the external fixed frame (71), and a linkage type transmission mechanism (74) movably installed on the inner side of the external fixed frame (71). The upper surface of the upper turnover cover (72) is provided with an upper packaging raw material storage bin (75) and an upper packaging waste material storage bin (76) protruding upward on both sides, and the both sides of the external fixed frame (71) are provided with a lower packaging raw material storage bin (77) and a lower packaging waste material storage bin (78) protruding downward. The electric control type extrusion packaging and separating device (8) comprises an electric drive roller (81) installed in the inside of the upper packaging raw material storage bin (75), the upper packaging waste material storage bin (76), the lower packaging raw material storage bin (77) and the lower packaging waste material storage bin (78), an upper electric control type packaging frame (82) installed on the inner top surface of the upper turnover cover (72), a lower electric control type packaging frame (83) installed on the inner bottom surface of the lower turnover cover (73), an electric heating plastic sealing frame (84) installed on the upper surface of the lower electric control type packaging frame (83), and a magnetic control type cutting and separating device (85) installed on the outer side of the upper electric control type packaging frame (82). An embedded sensing controller (10) is installed on the upper surface of the external fixed frame (71) near the end of the upper electric control conveying belt (2). When the goods pass through the external fixed frame (71) from the upper electric control conveying belt (2), the embedded sensing controller (10) detects the goods, controls the lateral electric control support rod (79) to stretch, controls the upper turnover cover (72) and the lower turnover cover (73) to open outward, calculates the length of the goods according to the detection time and the running speed of the goods, and controls the contraction of the upper electric control type packaging frame (82) and the lower electric control type packaging frame (83) to adapt to the goods.

2. A product delivery mechanism for an integrated clamshell packaging and singulating apparatus according to claim 1, wherein: The linkage type transmission mechanism (74) comprises a first annular tooth groove (741) formed in the lateral assembly shaft of the upper turnover cover (72), a second annular tooth groove (742) formed in the lateral assembly shaft of the lower turnover cover (73), a horizontal connecting rod (744) movably assembled on the inner side of the external fixed frame (71) through an inner side limiting frame, and a conical tooth head (745) fixedly arranged at the two ends of the horizontal connecting rod (744).

3. The product delivery mechanism of an integrated clamshell packaging and singulating apparatus of claim 1, wherein: The outer side of the external fixed frame (71) is movably provided with a lateral electric control support rod (79) for controlling the turnover of the upper turnover cover (72).

4. The product delivery mechanism of an integrated clamshell packaging and singulating apparatus of claim 1, wherein: The oblique guide plate (9) is arranged between the front electric control conveying belt (4) and the lower overturning cover (73) on the lateral assembly frame two (5).

5. The product delivery mechanism of an integrated clamshell packaging and singulating apparatus of claim 1, wherein: The magnetic control type cutting and separating device (85) comprises an external guide seat (851) installed on the outer side of the upper electric control type packaging frame (82), a cutting blade (852) slidingly sleeved on the periphery of the upper electric control type packaging frame (82), an upper guide rod (853) fixed on the upper end of the cutting blade (852), an embedded annular electromagnet (854) fixed on the upper surface of the external guide seat (851), and a ferrous control spring (855) installed on the outer side of the upper guide rod (853).

6. The product delivery mechanism of an integrated clamshell packaging and singulating apparatus of claim 1, wherein: The bottom receiving groove (11) for receiving the lower electric control type packaging frame (83) is arranged on the inner bottom surface of the lower overturning cover (73).

Citation Information

Patent Citations

  • Full-automatic express package delivery assembly line

    CN112278457A