Automated packaging conveyor based on display base body

CN122276238APending Publication Date: 2026-06-26HUIZHOU CHENGSHUNXIN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202610506623.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-04-16
Publication Date
2026-06-26

AI Technical Summary

Technical Problem

In the existing technology, the packaging process of the display base body relies on manual operation, which results in low packaging efficiency and high labor intensity, and poor performance of automated packaging.

Method used

An automated packaging and conveying device based on a display base is designed, including a feeding and conveying device, a bag feeding device, a bag conveying device, a bag transferring device, a pushing device, and a bag sealing device. The automated packaging of the base is achieved through the coordinated work of these devices, reducing manual operation.

Benefits of technology

It achieves efficient and automated packaging of the base, reducing manual operation time and labor intensity, and improving packaging efficiency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

This disclosure provides an automated packaging and conveying device based on a display base. The aforementioned automated packaging and conveying device based on a display base includes a main body, a feeding conveyor, a bag feeding device, a bag conveying device, a bag transferring device, a pushing device, and a bag opening sealing device. The feeding conveyor is used to convey the base to a first predetermined position; the bag conveying device is used to convey a side-opening sealed bag to a second predetermined position; the suction bag opening mechanism is used to suction the bag opening of the side-opening sealed bag at the bag opening work position, and after the bag opening is opened, places the side-opening sealed bag at a third predetermined position; the pushing device is used to push the base from the first predetermined position into the side-opening sealed bag at the third predetermined position; and the bag opening sealing device is used to seal the bag opening of the side-opening sealed bag at the sealing work position. The aforementioned automated packaging and conveying device based on a display base achieves high packaging efficiency and reduces manual labor intensity.
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Description

Technical Field

[0001] This disclosure relates to the technical field of display-related packaging equipment, and in particular to an automated packaging and conveying device based on a display base. Background Technology

[0002] A monitor is an electronic output terminal device that converts digital or analog signals output from devices such as computers, audio-visual equipment, and smart terminals into visual information such as text, images, and dynamic video that can be recognized by the human eye. Monitors are widely used in consumer electronics, office work, industrial control, medical equipment, public commercial displays, and aerospace. A monitor consists of a panel structure, a housing structure, and a support column structure. The panel structure is mounted on the housing structure, and the support column structure is connected to the housing structure.

[0003] The column support structure of the related technology includes a base body and a column body, which are detachably connected. During the packaging process of the column support structure, the staff package the column body and the base body separately. That is, the staff put the base body into an independent packaging bag for independent packaging, and the staff put the column body into another independent packaging bag for independent packaging.

[0004] However, because the base is packaged in a separate bag and sealed manually, the automated sealing performance of the base is poor. This results in a longer sealing time for the staff, leading to lower sealing efficiency and higher manual labor intensity. Summary of the Invention

[0005] The purpose of this disclosure is to overcome the shortcomings of the prior art and provide an automated packaging and conveying device for display bases that achieves high packaging efficiency and low manual labor intensity.

[0006] The purpose of this disclosure is achieved through the following technical solution: An automated packaging and conveying device based on a display base includes: Equipment body; A feeding conveyor is connected to the main body of the equipment, and the feeding conveyor is used to convey the base body to a first predetermined position; A bag supply device is connected to the main body of the equipment, and the bag supply device is used to provide side-opening sealed bags; A bag feeding device is connected to the main body of the equipment. The discharge end of the bag feeding device is connected to the inlet end of the bag feeding device. The bag feeding device is used to transport the side-opening sealed bag to the second predetermined position. A bag transfer device is provided on the main body of the equipment. The bag transfer device is equipped with an adsorption bag opening mechanism. The bag transfer device is used to transport the side-opening sealed bag from the second predetermined position to the bag opening working position of the adsorption bag opening mechanism. The adsorption bag opening mechanism is used to adsorb and open the bag opening of the side-opening sealed bag at the bag opening working position, and place the side-opening sealed bag in the third predetermined position after the bag opening of the side-opening sealed bag is opened. A pushing device is used to push the base body from the first predetermined position to the side-opening sealed bag at the third predetermined position to form a base body packaging semi-finished product; the adsorption bag opening mechanism is also used to transport the base body packaging semi-finished product from the third predetermined position to the second predetermined position. A bag-mouth sealing device is connected to the main body of the equipment; the bag feeding device is also used to transport the semi-finished base body packaging from the second predetermined position to the sealing working position of the bag-mouth sealing device, and the bag-mouth sealing device is used to seal the bag mouth of the side-opening sealing bag at the sealing working position to form the base body packaging.

[0007] Compared with the prior art, this disclosure has at least the following advantages: Since the feeding and conveying device is used to transport the base body to the first predetermined position, the discharge end of the bag supply device is connected to the inlet end of the bag feeding device, so that the bag supply device is used to transport the side-opening sealed bag to the bag feeding device, the bag feeding device is used to transport the side-opening sealed bag to the second predetermined position, the bag transfer device is used to transport the side-opening sealed bag from the second predetermined position to the bag opening working position of the suction bag opening mechanism, the suction bag opening mechanism is used to suction and open the bag opening of the side-opening sealed bag at the bag opening working position, and after the bag opening of the side-opening sealed bag is opened, the side-opening sealed bag is placed in the third predetermined position, so that the side-opening sealed bag is fixed and the bag opening is open, so that the base body can enter the side-opening sealed bag; the pushing device is used to push the base body from the first predetermined position to the side-opening sealed bag in the third predetermined position to form a base body packaging semi-finished product; the suction bag opening mechanism is also used to transport the base body packaging semi-finished product from the third predetermined position to the second predetermined position, and the bag feeding device is also used to package the base body. The semi-finished product is conveyed from the second predetermined position to the sealing position of the bag sealing device. The bag sealing device is used to seal the bag opening of the side-opening sealing bag at the sealing position to form the base body package, thereby completing the automated packaging and conveying process of the base body. This makes the automated packaging and conveying equipment based on the display base body perform well in terms of automated packaging performance, so that the packaging process of the base body does not need to be completed by manual operation. This solves the problem that the packaging process of the base body in the prior art is completed by manual operation, that is, it solves the problem of poor automated packaging performance of the base body in the prior art. Under the action of the automated packaging and conveying equipment based on the display base body, the packaging process of the base body can effectively save labor costs and manual packaging time. This reduces the time for workers to process the base body, making the packaging process of the base body more efficient and reducing the intensity of manual labor. Attached Figure Description

[0008] To more clearly illustrate the technical solutions of the embodiments of this disclosure, the accompanying drawings used in the embodiments will be briefly described below. It should be understood that the following drawings only show some embodiments of this disclosure and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0009] Figure 1 This is a schematic diagram of an automated packaging and conveying device based on a display base, according to one embodiment. Figure 2 for Figure 1 The diagram shows another perspective of the automated packaging and conveying equipment based on the display base. Figure 3 for Figure 2 The diagram shown is an enlarged view of point A of the automated packaging and conveying equipment based on the display base. Figure 4 for Figure 1 The diagram shown is a structural schematic of an automated packaging and conveying device based on a display base, viewed from one angle. Figure 5 for Figure 4 The diagram shown is an enlarged view of section B of the automated packaging and conveying equipment based on the display base. Figure 6 for Figure 1 The diagram shown is a structural schematic of an automated packaging and conveying device based on a display base, viewed from one angle. Figure 7 for Figure 6 The diagram shown is an enlarged view of point C of the automated packaging and conveying equipment based on the display base. Figure 8 for Figure 1 The diagram shown is a structural schematic of an automated packaging and conveying device based on a display base, viewed from one angle. Figure 9 for Figure 8 The diagram shows an enlarged view of point D of the automated packaging and conveying equipment based on the display base. Figure 10 for Figure 1 The diagram shown is a structural schematic of an automated packaging and conveying device based on a display base, viewed from one angle. Figure 11 for Figure 10 The diagram shows an enlarged view of point E of the automated packaging and conveying equipment based on the display base. Figure 12 for Figure 1 The diagram shown is a structural schematic of an automated packaging and conveying device based on a display base, viewed from one angle. Detailed Implementation

[0010] To facilitate understanding of this disclosure, a more complete description will be given below with reference to the accompanying drawings, which illustrate preferred embodiments of the present disclosure. However, this disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure.

[0011] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0012] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this disclosure belongs. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0013] like Figures 1 to 12 As shown, an embodiment of an automated packaging and conveying device 10 based on a display base includes a main body 100, a feeding conveyor 200, a bag feeding device 300, a bag conveying device 400, a bag transferring device 500, a pushing device 600, and a bag sealing device 700. The feeding conveyor 200 is connected to the main body 100 and is used to convey the base to a first predetermined position. The bag feeding device 300 is connected to the main body 100 and is used to provide a side-opening sealed bag. The bag conveying device 400 is connected to the main body 100, and the outlet end of the bag feeding device 300 is connected to the inlet end of the bag conveying device 400. The bag conveying device 400 is used to convey the side-opening sealed bag to a second predetermined position. The bag transferring device 500 is disposed on the main body 100 and is provided with an adsorption bag opening mechanism 510. The bag transferring device 500 is used to transfer the bag to a second predetermined position. A side-opening sealed bag is conveyed from a second predetermined position to the opening position of the adsorption bag-opening mechanism 510. The adsorption bag-opening mechanism 510 is used to adsorb the bag opening of the side-opening sealed bag at the opening position and place the side-opening sealed bag at a third predetermined position after the bag opening is opened. A pushing device 600 is used to push the base body from a first predetermined position to the side-opening sealed bag at the third predetermined position to form a base body packaging semi-finished product. The adsorption bag-opening mechanism 510 is also used to convey the base body packaging semi-finished product from the third predetermined position to the second predetermined position. A bag opening sealing device 700 is connected to the equipment body 100. A bag feeding device 400 is also used to convey the base body packaging semi-finished product from the second predetermined position to the sealing position of the bag opening sealing device 700. The bag opening sealing device 700 is used to seal the bag opening of the side-opening sealed bag at the sealing position to form a base body packaging product.

[0014] In this embodiment, the adsorption bag opening mechanism 510 is used to adsorb the bag opening of the side-opening sealed bag at the bag opening working position, and after the bag opening of the side-opening sealed bag is opened, the side-opening sealed bag is placed in the third predetermined position, so that the side-opening sealed bag is fixed and the bag opening is open, so that the base body can enter the side-opening sealed bag.

[0015] The aforementioned automated packaging and conveying equipment 10 based on a display base, wherein the feeding conveyor 200 is used to convey the base to a first predetermined position, the discharge end of the bag supply device 300 is connected to the infeed end of the bag feeding device 400, so that the bag supply device 300 is used to convey the side-opening sealed bag to the bag feeding device 400, the bag feeding device 400 is used to convey the side-opening sealed bag to a second predetermined position, and the bag transfer device 500 is used to convey the side-opening sealed bag from the second predetermined position to the bag opening operation of the adsorption bag opening mechanism 510. The adsorption bag-opening mechanism 510 is used to adsorb the bag opening of the side-opening sealed bag at the bag-opening working position, and after the bag opening of the side-opening sealed bag is opened, it places the side-opening sealed bag in a third predetermined position, so that the side-opening sealed bag is fixed and the bag opening is open, so that the base body can enter the side-opening sealed bag; the pushing device 600 is used to push the base body from the first predetermined position to the side-opening sealed bag in the third predetermined position to form a base body packaging semi-finished product; the adsorption bag-opening mechanism 510 is also used to push the base body packaging semi-finished product from the third predetermined position The bag feeding device 400 is used to transport the semi-finished base body packaging component from the second predetermined position to the sealing working position of the bag mouth sealing device 700. The bag mouth sealing device 700 is used to seal the bag mouth of the side-opening sealing bag at the sealing working position to form the base body packaging component, thereby completing the automated packaging and conveying process of the base body. This makes the automated packaging and conveying equipment 10 based on the display base body perform well in terms of automated packaging of the base body, so that the packaging process of the base body does not need to be completed by manual operation. This solves the problem that the packaging process of the base body in the prior art is completed by manual operation, that is, it solves the problem of poor automated packaging performance of the base body in the prior art. Under the action of the automated packaging and conveying equipment 10 based on the display base body, the packaging process of the base body can effectively save labor costs and manual packaging time, thereby reducing the time for workers to process the base body, facilitating the packaging process of the base body, and thus making the packaging efficiency of the base body higher and the labor intensity lower.

[0016] like Figures 1 to 2 As shown, in one embodiment, the automated packaging and conveying equipment 10 based on the display base body further includes a barcode affixing device 800. The barcode affixing device 800 is connected to the equipment body 100 and is disposed adjacent to the bag feeding device 300. The barcode affixing device 800 is used to affix the barcode to the side-opening sealed bag before the bag feeding device 300 conveys the side-opening sealed bag to the bag feeding device 400, so that the barcode affixing is more convenient.

[0017] like Figure 1 and Figure 10As shown, in one embodiment, the automated packaging and conveying equipment 10 based on the display base body further includes a barcode detection device 900. The barcode detection device 900 is connected to the equipment body 100. The bag feeding device 400 is also used to convey the base body package from the sealing work position to the detection work position of the barcode detection device 900. The barcode detection device 900 is used to detect whether the barcode on the side-opening sealed bag of the detection work position is qualified, so that the barcode detection is more convenient.

[0018] like Figure 10 As shown, in one embodiment, the barcode detection device 900 includes a detection mounting frame 910, a detection drive mechanism 920, a pushing assembly 930, and a barcode scanner 940. The detection drive mechanism 920 is mounted on the detection mounting frame 910, and its power output end is connected to the pushing assembly 930. The detection drive mechanism 920 drives the pushing assembly 930 to move. The barcode scanner 940 is connected to the pushing assembly 930 and electrically connected to the control end of the detection drive mechanism 920. The detection mounting frame 910 is connected to the equipment body 100. The bag feeding device 400 is also used to transport the base package from the sealing working position to the detection working position of the barcode scanner 940. The barcode scanner 940 is used to scan and read the barcode on the side-opening sealed bag to determine whether the barcode on the side-opening sealed bag is qualified, making the barcode detection more convenient. In this embodiment, the barcode scanner 940 is a barcode scanner.

[0019] It should be noted that the working principle of the barcode scanner 940 for scanning and reading barcodes on side-opening sealed bags is existing technology.

[0020] like Figures 1 to 12 As shown, in one embodiment, the automated packaging and conveying equipment 10 based on the display base body further includes a qualified product unloading conveying device 901 and a defective product unloading conveying device 902. Both the qualified product unloading conveying device 901 and the defective product unloading conveying device 902 are connected to the equipment body 100. The qualified product unloading conveying device 901 is connected to the bag feeding device 400. The discharge end of the bag feeding device 400 is connected to the inlet end of the defective product unloading conveying device 902. When the barcode scanner 940 scans and reads the barcode on the side-opening sealed bag, it determines that the barcode on the side-opening sealed bag is qualified. The barcode scanner 940 is used to transmit the qualified signal to the control terminal of the detection drive mechanism 920. The detection drive mechanism 920 is used to drive the push assembly 930 to move. The push assembly 930 is used to push the base body package from the detection work position to the qualified product unloading conveyor 901. The qualified product unloading conveyor 901 is used to transport the qualified base body package. When the barcode scanner 940 fails to scan and read the barcode on the side-opening sealed bag, the barcode on the side-opening sealed bag is determined to be defective. The bag feeding device 400 is used to transport the base body packaging from the inspection workstation to the defective product unloading conveyor 902, which is used to transport defective base body packaging. In this embodiment, when the barcode on the side-opening sealed bag has defects such as ink breaks, missing prints, ink overflow, blurred or deformed lines, or the width ratio of bars and spaces does not meet the requirements of the corresponding code system, or the barcode surface has defects such as scratches, stains, foreign objects obstructing it, or creases, the barcode scanner 940 cannot scan and read the barcode on the side-opening sealed bag. That is, the barcode scanner 940 fails to scan and read the barcode on the side-opening sealed bag, thus determining that the barcode on the side-opening sealed bag is defective, thereby making the barcode detection accuracy higher.

[0021] like Figures 6 to 12 As shown, in one embodiment, the bag feeding device 300 includes a bag mounting mechanism 310 and a bag clamping and tearing mechanism 320. Both the bag mounting mechanism 310 and the bag clamping and tearing mechanism 320 are connected to the main body 100. The bag mounting mechanism 310 is used to rotatably connect a side-opening continuous roll self-sealing bag, and the bag clamping and tearing mechanism 320 is used to clamp the side-opening continuous roll self-sealing bag, so that the bag clamping and tearing mechanism 320 drives the side-opening continuous roll self-sealing bag to rotate relative to the bag mounting mechanism 310. When the bag clamping and tearing mechanism 320 drives the side-opening continuous roll self-sealing bag to rotate relative to the bag mounting mechanism 310 to a predetermined angle, it tears the side-opening sealed bag along the easy-tear line of the side-opening continuous roll self-sealing bag. The bag clamping and tearing mechanism 320 conveys the side-opening sealed bag to the bag feeding device 400, which makes the side-opening sealed bag more convenient to use.

[0022] like Figures 6 to 7 As shown, in one embodiment, the bag-tearing mechanism 320 includes a bag-tearing fixing frame 321, a bag-tearing drive assembly 322, and a clamping assembly 323. The bag-tearing drive assembly 322 is mounted on the bag-tearing fixing frame 321, and its power output end is connected to the clamping assembly 323. The bag-tearing drive assembly 322 is used to drive the clamping assembly 323 to move relative to the bag feeding device 400. The bag-tearing fixing frame 321 is connected to the equipment body 100, and the clamping assembly 323 is used to clamp the side-opening continuous roll. The self-sealing bag allows the tear-off drive assembly 322 to rotate the side-opening continuous roll self-sealing bag relative to the bag body mounting mechanism 310 via the clamping assembly 323. When the side-opening continuous roll self-sealing bag is rotated to a predetermined angle relative to the bag body mounting mechanism 310, the tear-off drive assembly 322 tears off the side-opening sealed bag along the easy-tear line of the side-opening continuous roll self-sealing bag via the clamping assembly 323. The tear-off drive assembly 322 then conveys the side-opening sealed bag to the bag feeding device 400 via the clamping assembly 323, making the side-opening sealed bag more convenient to use.

[0023] like Figures 1 to 5As shown, in one embodiment, the bag transfer device 500 further includes a bag transfer mounting base 520, a bag transfer driving mechanism 530, and a pressure transfer mechanism 540. The bag transfer driving mechanism 530 is mounted on the bag transfer mounting base 520, and the power output end of the bag transfer driving mechanism 530 is connected to the pressure transfer mechanism 540 to drive the pressure transfer mechanism 540 to move relative to the bag transfer mounting base 520. The adsorption bag opening component is connected to the pressure transfer mechanism 540. The bag transfer mounting base 520 is connected to the equipment body 100, the feeding conveying device 200, and the bag feeding device 400, respectively. The bag transfer driving mechanism 530 is used to transport the side-opening sealed bag from the second predetermined position to the bag opening working position through the pressure transfer mechanism 540, so that the side-opening sealed bag is more convenient to use.

[0024] like Figures 1 to 2 As shown, in one embodiment, the pushing device 600 is provided with a blocking component 610, which is used to block the base body and keep the base body at a first predetermined position, so that the pushing device 600 can transport the base body from the first predetermined position to the side-opening sealed bag at the third predetermined position to form a base body packaging semi-finished product, which makes the pushing device 600 more convenient to use.

[0025] like Figures 8 to 9 As shown, in one embodiment, the bag sealing device 700 includes a sealing mounting base 710, a sealing drive mechanism 720, and a bag opening pressing assembly 730. The sealing drive mechanism 720 is mounted on the sealing mounting base 710, and the bag opening pressing assembly 730 is rotatably connected to the sealing mounting base 710. The power output end of the sealing drive mechanism 720 is connected to the bag opening pressing assembly 730 to drive the bag opening pressing assembly 730 to rotate relative to the sealing mounting base 710. The sealing mounting base 710 is connected to the equipment body 100. The bag feeding device 400 is also used to transport the semi-finished base body packaging from the second predetermined position to the sealing working position of the bag opening pressing assembly 730. The sealing drive mechanism 720 uses the bag opening pressing assembly 730 to press and seal the bag opening of the side-opening sealing bag at the sealing working position, so that the sealing performance of the base body packaging is better.

[0026] Furthermore, such as Figures 2 to 3As shown, in one embodiment, the feeding conveying device 200 includes a feeding conveying frame 210, a feeding conveying belt 220, and a feeding conveying drive mechanism 230. The feeding conveying drive mechanism 230 is installed on the feeding conveying frame 210, and the feeding conveying belt 220 is installed on the power output end of the feeding conveying drive mechanism 230. The feeding conveying drive mechanism 230 is used to drive the feeding conveying belt 220 to rotate relative to the feeding conveying frame 210. The feeding conveying belt 220 is used to support the base body. The feeding conveying frame 210 is connected to the equipment body 100, the pushing device 600, and the bag transfer mounting base 520, respectively. In this embodiment, a first predetermined position is set on the feeding conveyor belt 220, and the blocking component 610 is used to stop the base body at the first predetermined position, so that the base body stays on the feeding conveyor belt 220, so that the pushing device 600 can transport the base body from the feeding conveyor belt 220 to the side-opening sealed bag to form a base body packaging semi-finished product, making the pushing device 600 more convenient to use.

[0027] Furthermore, such as Figures 2 to 3 As shown, in one embodiment, the feeding and conveying drive mechanism 230 includes a feeding mounting plate 231, a feeding drive assembly 232, a first feeding rotating roller 233, and a second feeding rotating roller 234. The feeding drive assembly 232 is mounted on the feeding mounting plate 231, which is connected to the feeding conveying frame 210. The first feeding rotating roller 233 and the second feeding rotating roller 234 are both rotatably connected to the feeding conveying frame 210. The feeding conveyor belt 220 is respectively sleeved on the first feeding rotating roller 233 and the second feeding rotating roller 234. The second feeding rotating roller 234; the power output end of the feeding drive assembly 232 is connected to the first feeding rotating roller 233. The feeding drive assembly 232 is used to drive the first feeding rotating roller 233 to rotate relative to the feeding conveyor frame 210, so that the first feeding rotating roller 233 drives the feeding conveyor belt 220 to rotate relative to the feeding conveyor frame 210, thereby driving the second feeding rotating roller 234 to rotate relative to the feeding conveyor frame 210, so that the transmission reliability of the feeding conveyor drive mechanism 230 is better.

[0028] Furthermore, such as Figure 3 As shown, in one embodiment, the feeding drive assembly 232 includes a feeding drive motor 2321, a feeding drive wheel 2322, a feeding transmission belt 2323, and a feeding driven wheel 2324. The feeding drive motor 2321 is mounted on the feeding mounting plate 231, the feeding drive wheel 2322 is mounted on the power shaft of the feeding drive motor 2321, the feeding driven wheel 2324 is sleeved on the first feeding rotating roller 233, and the feeding transmission belt 2323 is respectively sleeved on the feeding drive wheel 2322 and the feeding driven wheel 2324, so as to make the transmission reliability of the feeding drive assembly 232 higher.

[0029] Furthermore, such as Figures 2 to 3 As shown, in one embodiment, the pushing device 600 further includes a pushing seat 620, a pushing drive assembly 630, and a pushing assembly 640. The pushing drive assembly 630 is mounted on the pushing seat 620, and the pushing assembly 640 is slidably connected to the pushing seat 620. The blocking assembly 610 is connected to the pushing seat 620, and the pushing seat 620 is connected to the feeding conveyor 200. The power output end of the pushing drive assembly 630 is connected to the pushing assembly 640. The pushing drive assembly 630 is used to drive the pushing assembly 640 to slide relative to the pushing seat 620, so that the pushing assembly 640 is used to transport the base body from a first predetermined position to a side-opening sealed bag at a third predetermined position, thereby improving the ease of transporting the base body.

[0030] Furthermore, such as Figures 2 to 3 As shown, in one embodiment, the push drive assembly 630 includes a push drive motor 631, a push drive wheel 632, a push transmission belt 633, and a push driven wheel 634. The push drive motor 631 is mounted on the push base 620, the push drive wheel 632 is mounted on the power shaft of the push drive motor 631, the push driven wheel 634 is rotatably connected to the push base 620, and the push transmission belt 633 is respectively sleeved on the push drive wheel 632 and the push driven wheel 634. The push transmission belt 633 is also connected to the push assembly 640, so that the push drive motor 631 drives the push assembly 640 to slide relative to the push base 620 through the push drive wheel 632, the push transmission belt 633, and the push driven wheel 634. This allows the push assembly 640 to transport the base body from a first predetermined position to a side-opening sealed bag at a third predetermined position, making the transport of the base body more convenient.

[0031] Furthermore, such as Figures 6 to 7 As shown, in one embodiment, the bag feeding device 300 further includes a pressing guide mechanism 330. The pressing guide mechanism 330 is located between the bag body mounting mechanism 310 and the bag clamping and tearing mechanism 320. The pressing guide mechanism 330 is connected to the main body 100 of the device. The pressing guide mechanism 330 is used to press the side of the side-opening continuous roll self-sealing bag away from the bag body mounting mechanism 310, so that one side of the side-opening continuous roll self-sealing bag protrudes from the pressing guide mechanism 330, so that the bag clamping and tearing mechanism 320 can clamp the side of the side-opening continuous roll self-sealing bag, making the bag tearing mechanism 320 easier to tear.

[0032] Furthermore, the clamping assembly 323 is equipped with a first pressure sensor (not shown), which is electrically connected to the control terminals of the pressing guide mechanism 330 and the tear-bag drive assembly 322. In this embodiment, when the clamping assembly 323 is used to clamp one side of the side-opening continuous roll self-sealing bag, the first pressure sensor senses the clamping pressure and converts it into an electrical signal. The first pressure sensor transmits the electrical signal to the control terminals of the pressing guide mechanism 330 and the tear-bag drive assembly 322, respectively. Upon receiving the electrical signal, the pressing guide mechanism 330 separates from the side-opening continuous roll self-sealing bag. Upon receiving the electrical signal, the tear-bag drive assembly 322 drives the side-opening continuous roll self-sealing bag to rotate relative to the bag mounting mechanism 310 through the clamping assembly 323, thereby improving the automation performance of the automated packaging and conveying equipment 10 based on the display base.

[0033] Furthermore, such as Figure 1 As shown, in one embodiment, the pressing guide mechanism 330 is provided with a bag cutting assembly 331, which is used to cut the easy-tear line of the side-opening continuous roll self-sealing bag so that the bag tearing drive assembly 322 can tear off the side-opening sealed bag through the clamping assembly 323, thereby effectively improving the ease of tearing the side-opening sealed bag.

[0034] Furthermore, in one embodiment, the pressing guide mechanism 330 is equipped with a second pressure sensor (not shown), which is electrically connected to the control terminal of the barcode affixing device 800. In this embodiment, when the pressing guide mechanism 330 is used to press against one side of the side-opening continuous roll self-sealing bag, the second pressure sensor senses the pressure and converts it into an electrical signal. The second pressure sensor transmits the electrical signal to the control terminal of the barcode affixing device 800. Upon receiving the electrical signal, the barcode affixing device 800 affixes the barcode to the side-opening sealing bag. This allows the barcode affixing device 800 to affix the barcode to the side-opening sealing bag before the bag feeding device 300 conveys the side-opening sealing bag to the bag delivery device 400, resulting in better automation performance of the automated packaging and conveying equipment 10 based on the display base.

[0035] Furthermore, such as Figures 6 to 7As shown, in one embodiment, the bag-tearing drive assembly 322 includes a bag-tearing drive motor 3221, a bag-tearing drive wheel 3222, a bag-tearing transmission belt 3223, and a bag-tearing driven wheel 3224. The bag-tearing drive motor 3221 is mounted on the bag-tearing fixing frame 321, the bag-tearing drive wheel 3222 is mounted on the drive shaft of the bag-tearing drive motor 3221, the bag-tearing driven wheel 3224 is rotatably connected to the bag-tearing fixing frame 321, and the bag-tearing transmission belt 3223 is respectively sleeved on the bag-tearing drive wheel 3222. The bag tearing driven wheel 3224 and the bag tearing transmission belt 3223 are also connected to the clamping assembly 323, so that the bag tearing drive motor 3221 drives the clamping assembly 323 to move relative to the bag feeding device 400 through the bag tearing drive wheel 3222, the bag tearing transmission belt 3223 and the bag tearing driven wheel 3224. This allows the bag tearing drive assembly 322 to drive the side-opening continuous roll self-sealing bag to rotate relative to the bag body mounting mechanism 310 through the clamping assembly 323, making the movement reliability of the clamping assembly 323 high.

[0036] Furthermore, such as Figures 6 to 8 As shown, in one embodiment, the bag feeding device 400 includes a bag feeding mounting frame 410, a bag feeding belt 420, and a bag feeding conveying drive mechanism 430. The bag feeding conveying drive mechanism 430 is mounted on the bag feeding mounting frame 410, and the bag feeding belt 420 is mounted on the power output end of the bag feeding conveying drive mechanism 430. The bag feeding conveying drive mechanism 430 is used to drive the bag feeding belt 420 to rotate relative to the bag feeding mounting frame 410. The bag feeding belt 420 is used to hold the side-opening sealed bag. The bag feeding mounting frame 410 is connected to the equipment body 100 and the bag transfer mounting base 520 respectively. The bag tearing drive assembly 322 conveys the side-opening sealed bag to the bag feeding belt 420 through the clamping assembly 323. The bag feeding conveying drive mechanism 430 conveys the side-opening sealed bag to a second predetermined position through the bag feeding belt 420, so as to improve the convenience of conveying the side-opening sealed bag.

[0037] Furthermore, in one embodiment, the bag feeding and conveying drive mechanism 430 includes a bag feeding mounting plate 431, a bag feeding drive assembly 432, a first bag feeding rotating roller (not shown), and a second bag feeding rotating roller 434. The bag feeding drive assembly 432 is mounted on the bag feeding mounting plate 431, which is connected to the bag feeding mounting frame 410. Both the first and second bag feeding rotating rollers 434 are rotatably connected to the bag feeding mounting frame 410. The bag feeding belt 420 is respectively sleeved on the first bag feeding... The rotating roller and the second bag feeding rotating roller 434; the power output end of the bag feeding drive assembly 432 is connected to the first bag feeding rotating roller. The bag feeding drive assembly 432 is used to drive the first bag feeding rotating roller to rotate relative to the bag feeding mounting frame 410, so that the first bag feeding rotating roller drives the bag feeding belt 420 to rotate relative to the bag feeding mounting frame 410, thereby causing the bag feeding belt 420 to drive the second bag feeding rotating roller 434 to rotate relative to the bag feeding mounting frame 410, so that the transmission reliability of the bag feeding conveying drive mechanism 430 is better.

[0038] Furthermore, in one embodiment, the bag feeding drive assembly 432 includes a bag feeding drive motor 4321, a bag feeding drive wheel 4322, a bag feeding transmission belt 4323, and a bag feeding driven wheel 4324. The bag feeding drive motor 4321 is mounted on the bag feeding mounting plate 431, the bag feeding drive wheel 4322 is mounted on the power shaft of the bag feeding drive motor 4321, the bag feeding driven wheel 4324 is sleeved on the first bag feeding rotating roller, and the bag feeding transmission belt 4323 is respectively sleeved on the bag feeding drive wheel 4322 and the bag feeding driven wheel 4324, so as to improve the transmission reliability of the bag feeding drive assembly 432.

[0039] Furthermore, such as Figures 4 to 5 As shown, in one embodiment, the bag transfer drive mechanism 530 includes a bag transfer fixing plate 531 and a bag transfer drive assembly 532. The bag transfer drive assembly 532 is mounted on the bag transfer fixing plate 531, and the bag transfer fixing plate 531 is mounted on the bag transfer mounting base 520. The power output end of the bag transfer drive assembly 532 is connected to the pressure transfer mechanism 540. The bag transfer drive assembly 532 is used to drive the pressure transfer mechanism 540 to move relative to the bag transfer mounting base 520. The bag transfer drive assembly 532, through the pressure transfer mechanism 540, is used to transport the side-opening sealed bag from a second predetermined position to the bag transfer mounting base 520, so that the pressure transfer mechanism 540 can transport the side-opening sealed bag more conveniently.

[0040] Furthermore, in one embodiment, the bag transfer mounting base 520 is provided with a guide slide 521, and the pressure transfer mechanism 540 is provided with a guide slide groove 5411. The guide slide 521 passes through the guide slide groove 5411 and is slidably connected to the pressure transfer mechanism 540, so that the bag transfer drive assembly 532 can drive the pressure transfer mechanism 540 to slide relative to the bag transfer mounting base 520, thereby making the movement reliability of the pressure transfer mechanism 540 high.

[0041] Furthermore, in one embodiment, the pressure shifting mechanism 540 includes a pressure shifting seat 541, a pressure shifting adjustment component 542, and a pressure shifting component 543. The pressure shifting adjustment component 542 is mounted on the pressure shifting seat 541, and the pressure shifting component 543 is slidably connected to the pressure shifting seat 541. The power output end of the pressure shifting adjustment component 542 is connected to the pressure shifting component 543. The pressure shifting adjustment component 542 is used to drive the pressure shifting component 543 to slide relative to the pressure shifting seat 541. The pressure shifting seat 541 is connected to the power output end of the bag shifting drive component 532. A guide groove 5411 is formed in the pressure shifting seat 541. The pressure shifting seat 541 is slidably connected to the guide part 521. The pressure shifting component 543 is used to press against the side-opening sealed bag. The pressure shifting adjustment component 542 is used to adjust the pressing position between the pressure shifting component 543 and the side-opening sealed bag, so that the pressure shifting component 543 is easier to use.

[0042] Furthermore, in one embodiment, the pressure adjustment assembly 542 includes a pressure adjustment motor 5421 and an adjustment screw 5422. The pressure adjustment motor 5421 is mounted on the pressure adjustment base 541, and the adjustment screw 5422 is rotatably connected to the pressure adjustment base 541. The power output end of the pressure adjustment motor 5421 is connected to the adjustment screw 5422. The pressure adjustment motor 5421 is used to drive the adjustment screw 5422 to rotate relative to the pressure adjustment base 541. The pressure adjustment assembly 543 has an internal threaded hole, and the adjustment screw 5422 passes through the internal threaded hole and is screwed to the pressure adjustment assembly 543. The pressure adjustment motor 5421 drives the pressure adjustment assembly 543 to slide relative to the pressure adjustment base 541 through the adjustment screw 5422, so that the pressure adjustment motor 5421 can adjust the pressure position between the pressure adjustment assembly 543 and the side-opening sealing bag through the adjustment screw 5422, making the pressure adjustment assembly 543 easier to use.

[0043] Furthermore, in one embodiment, the pressure-shifting assembly 543 includes a first pressure-shifting portion 5431 and a second pressure-shifting portion 5432 disposed opposite to each other. A pressure-shifting opening 5431a is formed between the first pressure-shifting portion 5431 and the second pressure-shifting portion 5432. Both the first pressure-shifting portion 5431 and the second pressure-shifting portion 5432 are slidably connected to the pressure-shifting seat 541. The first pressure-shifting portion 5431 has a first internal threaded hole 5431b, and the second pressure-shifting portion 5432 has a second internal threaded hole (not shown). An adjusting screw... 5422 is respectively inserted into the first internal threaded hole 5431b and the second internal threaded hole. The adjusting screw 5422 is respectively screwed to the first pressure shifting part 5431 and the second pressure shifting part 5432. The pressure shifting adjusting motor 5421 is used to drive the first pressure shifting part 5431 to slide towards or away from the second pressure shifting part 5432 through the adjusting screw 5422. The pressure shifting adjusting motor 5421 is used to drive the second pressure shifting part 5432 to slide towards or away from the first pressure shifting part 5431 through the adjusting screw 5422. When the pressure shifting motor 5421 drives the first pressure shifting part 5431 to slide closer to the second pressure shifting part 5432 via the adjusting screw 5422, the pressure shifting motor 5421 drives the second pressure shifting part 5432 to slide closer to the first pressure shifting part 5431 via the adjusting screw 5422, thereby reducing the pressure shifting opening 5431a and thus making the sealing width of the side-opening sealed bag smaller; When the pressure shifting motor 5421 drives the first pressure shifting part 5431 to slide away from the second pressure shifting part 5432 via the adjusting screw 5422, the pressure shifting motor 5421 drives the second pressure shifting part 5432 to slide away from the first pressure shifting part 5431 via the adjusting screw 5422, thereby expanding the pressure shifting opening 5431a. This results in a larger sealing width for the side-opening sealed bag, making it easier for the side-opening sealed bag to fit different sizes of base bodies. This improves the usability of the automated packaging and conveying equipment 10 based on the display base body.

[0044] Furthermore, such as Figures 8 to 11 As shown, in one embodiment, the sealing drive mechanism 720 includes a sealing drive assembly (not shown) and a sliding tooth condition 722. The sealing drive assembly is mounted on the sealing mounting base 710, and the sliding tooth condition 722 is slidably connected to the sealing mounting base 710. The power output end of the sealing drive assembly is connected to the sliding tooth condition 722. The sealing drive assembly is used to drive the sliding tooth condition 722 to slide relative to the sealing mounting base 710. The bag opening clamping assembly 730 is provided with a connecting gear 731. The sliding tooth condition 722 is meshed with the connecting gear 731. The sealing drive assembly drives the connecting gear 731 to rotate relative to the sealing mounting base 710 through the sliding tooth condition 722. This causes the connecting gear 731 to drive the bag opening clamping assembly 730 to rotate relative to the sealing mounting base 710, thereby causing the bag opening clamping assembly 730 to press against or separate from the bag opening of the side-opening sealed bag, making the bag opening clamping assembly 730 easier to use.

[0045] Specifically, when the connecting gear 731 drives the bag opening pressing assembly 730 to rotate relative to the sealing mounting body 710, causing the bag opening pressing assembly 730 to press against the bag opening of the side-opening sealed bag, the connecting gear 731 drives the bag opening pressing assembly 730 to press and seal the bag opening of the side-opening sealed bag.

[0046] When the connecting gear 731 drives the bag opening clamping assembly 730 to rotate relative to the sealing mounting base 710, causing the bag opening clamping assembly 730 to separate from the bag opening of the side-opening sealed bag, the connecting gear 731 drives the bag opening clamping assembly 730 to rotate away from the side-opening sealed bag, causing the bag opening clamping assembly 730 to separate from the side-opening sealed bag.

[0047] Furthermore, in one embodiment, the bag opening pressing assembly 730 has a relief groove 732; the bag opening sealing device 700 also includes an adsorption and leveling mechanism 740, which is installed on the sealing mounting base 710. The adsorption and leveling mechanism 740 is provided with an adsorption and leveling part 741, which is used to adsorb one side of the bag opening of the side-opening sealed bag. The adsorption and leveling part 741 passes through the relief groove 732. In this embodiment, the adsorption and leveling part 741 is used to adsorb one side of the bag opening of the side-opening sealed bag and press one side of the bag opening of the side-opening sealed bag against the other side of the bag opening of the side-opening sealed bag, making both sides of the bag opening of the side-opening sealed bag relatively flat, so that the bag opening pressing assembly 730 can press and seal the bag opening of the side-opening sealed bag, making the bag opening pressing assembly 730 more convenient to use.

[0048] Furthermore, in one embodiment, the adsorption leveling mechanism 740 further includes a leveling drive assembly 742 and a leveling telescopic assembly 743. The leveling drive assembly 742 is mounted on the sealing mounting base 710, and the power output end of the leveling drive assembly 742 is connected to the leveling telescopic assembly 743. The leveling drive assembly 742 is used to drive the leveling telescopic assembly 743 to move relative to the sealing mounting base 710. The adsorption leveling part 741 is disposed on the leveling telescopic assembly 743, and the leveling telescopic assembly 743 is used to drive the adsorption leveling part 741 to move toward or away from the side-opening sealed bag. When the flattening telescopic component 743 drives the adsorption flattening part 741 to move toward the side-opening sealed bag, the adsorption flattening part 741 is used to adsorb one side of the bag opening of the side-opening sealed bag. The flattening telescopic component 743 drives the adsorption flattening part 741 to press one side of the bag opening of the side-opening sealed bag toward the other side of the bag opening of the side-opening sealed bag, so that the two sides of the bag opening of the side-opening sealed bag are flatter. When the flattening telescopic component 743 drives the adsorption flattening part 741 to move away from the side-opening sealed bag, the adsorption flattening part 741 separates from one side of the bag opening, causing the flattening telescopic component 743 to drive the adsorption flattening part 741 away from the side-opening sealed bag. In this embodiment, the flattening telescopic component 743 is a telescopic motor structure, and the adsorption flattening part 741 is a suction nozzle structure. The adsorption flattening part 741 is used to connect with the air extraction device so that the adsorption flattening part 741 has adsorption force, making the adsorption flattening part 741 easier to use.

[0049] Furthermore, such as Figures 8 to 11As shown, in one embodiment, the leveling drive assembly 742 includes a leveling drive motor 7421, a leveling drive wheel 7422, a leveling transmission belt 7423, and a leveling driven wheel 7424. The leveling drive motor 7421 is mounted on the sealed mounting base 710. The leveling drive wheel 7422 is mounted on the drive shaft of the leveling drive motor 7421. The leveling driven wheel 7424 is rotatably connected to the sealed mounting base 710. The leveling transmission belt 7423 is respectively sleeved on the leveling drive wheel 7422 and the leveling driven wheel 7424. The leveling transmission belt 7423 is also connected to the leveling telescopic assembly 743, so that the leveling drive motor 7421 drives the leveling telescopic assembly 743 to move relative to the sealed mounting base 710 through the leveling drive wheel 7422, the leveling transmission belt 7423, and the leveling driven wheel 7424, thereby making the movement reliability of the leveling telescopic assembly 743 high.

[0050] Furthermore, such as Figures 8 to 11 As shown, in one embodiment, the bag opening sealing device 700 further includes a bag opening re-pressing mechanism 750, which is connected to the sealing mounting base 710. The bag opening re-pressing mechanism 750 is used to re-press and seal the bag opening of the side-opening sealed bag after the bag opening pressing assembly 730 separates from the side-opening sealed bag. In this embodiment, sealing strips are respectively provided on both sides of the bag opening of the side-opening sealed bag. The bag opening re-pressing mechanism 750 is used to re-press and seal the sealing strips on both sides of the bag opening of the side-opening sealed bag, so that the sealing strips on both sides of the bag opening of the side-opening sealed bag fit tightly, thereby improving the sealing performance of the base packaging.

[0051] Furthermore, in one embodiment, the bag opening re-pressing mechanism 750 includes a re-pressing mounting base 751, a re-pressing telescopic component 752, and a re-pressing part 753. The re-pressing telescopic component 752 is mounted on the re-pressing mounting base 751, and the power output end of the re-pressing telescopic component 752 is connected to the re-pressing part 753. The re-pressing telescopic component 752 is used to drive the re-pressing part 753 to move toward or away from the bag opening of the side-opening sealed bag. The re-pressing mounting base 751 is connected to the sealing mounting base 710, and the re-pressing part 753 is used to re-press and seal the bag opening of the side-opening sealed bag after the bag opening pressing component 730 is separated from the side-opening sealed bag. When the repressing telescopic assembly 752 is used to drive the repressing part 753 to move toward the bag opening of the side-opening sealed bag, the repressing part 753 is used to repress and seal the bag opening of the side-opening sealed bag after the bag opening clamping assembly 730 separates from the side-opening sealed bag. When the repressurization telescopic assembly 752 drives the repressurization part 753 to move away from the bag opening of the side-opening sealed bag, the repressurization telescopic assembly 752 drives the repressurization part 753 to separate from the side-opening sealed bag, making the repressurization part 753 easier to use. In this embodiment, the repressurization telescopic assembly 752 is a telescopic motor structure.

[0052] Compared with the prior art, this disclosure has at least the following advantages: Since the feeding conveyor 200 is used to convey the base body to the first predetermined position, the discharge end of the bag feeding device 300 is connected to the infeed end of the bag feeding device 400, so that the bag feeding device 300 is used to convey the side-opening sealed bag to the bag feeding device 400, the bag feeding device 400 is used to convey the side-opening sealed bag to the second predetermined position, the bag transferring device 500 is used to convey the side-opening sealed bag from the second predetermined position to the bag opening working position of the suction bag opening mechanism 510, the suction bag opening mechanism 510 is used to suction the bag opening of the side-opening sealed bag at the bag opening working position, and after the bag opening of the side-opening sealed bag is opened, the side-opening sealed bag is placed in the third predetermined position, so that the side-opening sealed bag is fixed and the bag opening is open, so that the base body can enter the side-opening sealed bag; the pushing device 600 is used to push the base body from the first predetermined position to the side-opening sealed bag in the third predetermined position to form a base body packaging semi-finished product; the suction bag opening mechanism 510 is also used to convey the base body packaging semi-finished product from the third predetermined position to the second predetermined position, and the bag feeding .... The bag device 400 is also used to transport the semi-finished base body packaging component from the second predetermined position to the sealing working position of the bag mouth sealing device 700. The bag mouth sealing device 700 is used to seal the bag mouth of the side-opening sealing bag at the sealing working position to form the base body packaging component, thereby completing the automated packaging and conveying process of the base body. This makes the automated packaging and conveying equipment 10 based on the display base body perform well in terms of automated packaging of the base body, so that the packaging process of the base body does not need to be completed by manual operation. This solves the problem that the packaging process of the base body in the prior art is completed by manual operation, that is, it solves the problem of poor automated packaging performance of the base body in the prior art. Under the action of the automated packaging and conveying equipment 10 based on the display base body, the packaging process of the base body can effectively save labor costs and manual packaging time, thereby reducing the time for workers to process the base body, facilitating the packaging process of the base body, and thus making the packaging efficiency of the base body higher and the labor intensity lower.

[0053] The embodiments described above are merely illustrative of several implementations of this disclosure, and while the descriptions are specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this disclosure, and these all fall within the protection scope of this disclosure. Therefore, the protection scope of this patent should be determined by the appended claims.

Claims

1. An automated packaging and conveying device based on a display base, characterized in that, include: Equipment body; A feeding conveyor is connected to the main body of the equipment, and the feeding conveyor is used to convey the base body to a first predetermined position; A bag supply device is connected to the main body of the equipment, and the bag supply device is used to provide side-opening sealed bags; A bag feeding device is connected to the main body of the equipment. The discharge end of the bag feeding device is connected to the inlet end of the bag feeding device. The bag feeding device is used to transport the side-opening sealed bag to the second predetermined position. A bag transfer device is provided on the main body of the equipment. The bag transfer device is equipped with an adsorption bag opening mechanism. The bag transfer device is used to transport the side-opening sealed bag from the second predetermined position to the bag opening working position of the adsorption bag opening mechanism. The adsorption bag opening mechanism is used to adsorb and open the bag opening of the side-opening sealed bag at the bag opening working position, and place the side-opening sealed bag in the third predetermined position after the bag opening of the side-opening sealed bag is opened. A pushing device is used to push the base body from the first predetermined position to the side-opening sealed bag at the third predetermined position to form a base body packaging semi-finished product; the adsorption bag opening mechanism is also used to transport the base body packaging semi-finished product from the third predetermined position to the second predetermined position. A bag-mouth sealing device is connected to the main body of the equipment; the bag feeding device is also used to transport the semi-finished base body packaging from the second predetermined position to the sealing working position of the bag-mouth sealing device, and the bag-mouth sealing device is used to seal the bag mouth of the side-opening sealing bag at the sealing working position to form the base body packaging.

2. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The automated packaging and conveying equipment also includes a barcode affixing device, which is connected to the main body of the equipment. The barcode affixing device is used to affix a barcode to the side-opening sealed bag before the bag feeding device conveys the side-opening sealed bag to the bag delivery device.

3. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The automated packaging and conveying equipment also includes a barcode detection device, which is connected to the main body of the equipment. The bag feeding device is also used to convey the base body package from the sealing work position to the detection work position of the barcode detection device. The barcode detection device is used to detect whether the barcode on the side-opening sealed bag at the detection work position is qualified.

4. The automated packaging and conveying equipment based on a display base as described in claim 3, characterized in that, The barcode detection device includes a detection mounting frame, a detection drive mechanism, a pushing assembly, and a barcode scanner. The detection drive mechanism is mounted on the detection mounting frame, and its power output end is connected to the pushing assembly. The detection drive mechanism is used to drive the pushing assembly to move. The barcode scanner is connected to the pushing assembly and is electrically connected to the control end of the detection drive mechanism. The detection mounting frame is connected to the main body of the equipment. The bag feeding device is also used to transport the base body packaging from the sealing working position to the detection working position of the barcode scanner. The barcode scanner is used to scan and read the barcode on the side-opening sealed bag to determine whether the barcode on the side-opening sealed bag is qualified.

5. The automated packaging and conveying equipment based on a display base as described in claim 4, characterized in that, The automated packaging and conveying equipment also includes a qualified product unloading conveying device and a defective product unloading conveying device. Both the qualified product unloading conveying device and the defective product unloading conveying device are connected to the main body of the equipment. The qualified product unloading conveying device is connected to the bag feeding device. The discharge end of the bag feeding device is connected to the inlet end of the defective product unloading conveying device. When the barcode scanner scans and reads the barcode on the side-opening sealed bag, it determines that the barcode on the side-opening sealed bag is qualified. The barcode scanner is used to transmit the qualified signal to the control terminal of the detection drive mechanism. The detection drive mechanism is used to drive the pushing assembly to move. The pushing assembly is used to push the base body packaging from the detection work position to the qualified product unloading conveyor. The qualified product unloading conveyor is used to transport the qualified base body packaging. When the barcode scanner fails to scan and read the barcode on the side-opening sealed bag, the barcode on the side-opening sealed bag is determined to be defective. The bag feeding device is used to transport the base body package from the detection work station to the defective product unloading conveyor, which is used to transport defective base body packages.

6. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The bag feeding device includes a bag mounting mechanism and a bag clamping and tearing mechanism. Both the bag mounting mechanism and the bag clamping and tearing mechanism are connected to the main body of the equipment. The bag mounting mechanism is used to rotatably connect a side-opening continuous roll self-sealing bag. The bag clamping and tearing mechanism is used to clamp the side-opening continuous roll self-sealing bag, causing the side-opening continuous roll self-sealing bag to rotate relative to the bag mounting mechanism. When the side-opening continuous roll self-sealing bag rotates relative to the bag mounting mechanism to a predetermined angle, the bag clamping and tearing mechanism tears the side-opening sealed bag along the easy-tear line of the side-opening continuous roll self-sealing bag. The bag clamping and tearing mechanism then conveys the side-opening sealed bag to the bag feeding device.

7. The automated packaging and conveying equipment based on a display base as described in claim 6, characterized in that, The bag-tearing mechanism includes a bag-tearing fixing frame, a bag-tearing drive assembly, and a clamping assembly. The bag-tearing drive assembly is mounted on the bag-tearing fixing frame, and its power output end is connected to the clamping assembly. The bag-tearing drive assembly drives the clamping assembly to move relative to the bag-feeding device. The bag-tearing fixing frame is connected to the main body of the equipment. The clamping assembly clamps the side-opening continuous roll self-sealing bag. The bag-tearing drive assembly conveys the side-opening sealing bag to the bag-feeding device through the clamping assembly.

8. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The bag transfer device further includes a bag transfer mounting base, a bag transfer driving mechanism, and a pressure transfer mechanism. The bag transfer driving mechanism is mounted on the bag transfer mounting base, and its power output end is connected to the pressure transfer mechanism to drive the pressure transfer mechanism to move relative to the bag transfer mounting base. The adsorption bag opening assembly is connected to the pressure transfer mechanism. The bag transfer mounting base is connected to the main body of the equipment, the feeding conveying device, and the bag feeding device, respectively. The bag transfer driving mechanism, through the pressure transfer mechanism, is used to transport the side-opening sealed bag from the second predetermined position to the bag opening working position.

9. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The pushing device is provided with a blocking component, which is used to block the base body and keep the base body at the first predetermined position.

10. The automated packaging and conveying equipment based on a display base as described in claim 1, characterized in that, The bag sealing device includes a sealing mounting base, a sealing drive mechanism, and a bag opening clamping assembly. The sealing drive mechanism is mounted on the sealing mounting base, and the bag opening clamping assembly is rotatably connected to the sealing mounting base. The power output end of the sealing drive mechanism is connected to the bag opening clamping assembly to drive the bag opening clamping assembly to rotate relative to the sealing mounting base. The sealing mounting base is connected to the main body of the equipment. The bag feeding device is also used to transport the semi-finished packaging product of the base body from the second predetermined position to the sealing working position of the bag opening clamping assembly. The sealing drive mechanism uses the bag opening clamping assembly to clamp and seal the bag opening of the side-opening sealing bag at the sealing working position.