Automatic packaging machine for switch socket

By using double-sided adhesive blocks and limiting components in the automatic switch and socket packaging machine, the problem of screw bag sliding down is solved, and the number of screw bags in the packaging bag is accurate, avoiding sealing failure and sealing machine damage, and improving packaging efficiency and stability.

CN120246388AActive Publication Date: 2025-07-04WEDE INTELLIGENT ELECTRIC CO LTD
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Patent Information

Application Number
CN202510713694.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-07-04
Estimated Expiration
2045-05-30

AI Technical Summary

Technical Problem

During the packaging process of switch sockets, the screw bag is prone to slip, resulting in the lack or extra screw bags of the packaging bag, failure of the sealing or damage to the sealing machine.

Method used

The screw bag is tightly bonded to the switch socket part with double-sided adhesive block. The adhesive layer on the upper side of the double-sided adhesive block is more sticky than the lower side. Combined with auxiliary components and protective components, ensure that the screw bag is stable and avoids slipping; limit the release paper through the round rod and the cylinder to prevent the separation and interference of the release paper from being separated and interfered with.

Benefits of technology

It effectively avoids the screw bag slipping, ensures the accurate number of screw bags in the packaging bag, prevents sealing failure and sealing machine damage, and improves packaging efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of switch socket packaging, in particular to an automatic switch socket packaging machine which comprises a connecting plate, first release paper, a double-faced adhesive tape block and second release paper. A plurality of alternately arranged double-faced adhesive tape blocks are adhered to the smooth surface of the release paper I; the double-sided adhesive block is composed of a long strip block and a short strip block which are perpendicular, glue layers are arranged on the upper side face and the lower side face of the long strip block, and the viscosity of the glue layer on the upper side is larger than that of the glue layer on the lower side. The screw package is tightly adhered to the switch socket piece through the double-sided adhesive block and then is packaged, the problem that the screw package slips off is effectively avoided, meanwhile, the viscosity of the glue layer on the upper side of the double-sided adhesive block is set to be larger than that of the glue layer on the lower side of the double-sided adhesive block, so that the double-sided adhesive block can be driven to be separated from the switch socket piece together when the screw package is manually taken out, and the operation is convenient. And when the short strip block of the double-sided adhesive block is pinched to be torn off from the screw package, the double-sided adhesive block can tear the screw package, so that the unpacking operation of the screw package can be completed more quickly and conveniently.
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Description

Technical Field

[0001] The present invention relates to the technical field of switch socket packaging. More specifically, the present invention relates to an automatic packaging machine for switch sockets. Background Art

[0002] After the production of switch sockets is completed, the matching screw packages need to be packaged together with the switch sockets. During packaging, the switch sockets are manually placed on the conveyor belt. To ensure the stability of transportation, the flat panel side of the switch socket faces downwards, and the uneven wiring side faces upwards. Then, the worker places the screw package above the switch socket. The stacked switch sockets and screw packages are conveyed to the packaging mechanism together through the conveyor belt, where they are packaged into the same plastic packaging bag to complete the packaging operation.

[0003] However, during the conveying process, due to the uneven upper side of the switch socket, the vibration generated by the operation of mechanical equipment may act on the screw package, resulting in some screw packages slipping off. If the screw package slips into an adjacent packaging bag, some packaging bags will lack screw packages, while other packaging bags may have one more screw package. If the screw package slips to the sealing position of the packaging bag, it may cause the sealing to fail, and even damage the sealing machine or cause a pinching phenomenon.

[0004] In summary, the present application proposes an automatic packaging machine for switch sockets to improve the above-mentioned technical problems. Summary of the Invention

[0005] In order to overcome the defect that some screw packages will slip off during the packaging of switch sockets by existing equipment, causing many problems, the present invention provides an automatic packaging machine for switch sockets.

[0006] Technical Solution: An automatic packaging machine for switch sockets includes a workbench, a conveyor belt, and a packaging mechanism; the conveyor belt is installed on the workbench; the packaging mechanism is installed on the workbench; it also includes a connecting plate, a release paper one, double-sided adhesive blocks, and a release paper two; the connecting plate is fixedly connected to the workbench; a release paper one is arranged above the connecting plate; several alternately arranged double-sided adhesive blocks are pasted on the smooth surface of the release paper one; the double-sided adhesive blocks are composed of vertical long strip blocks and short strip blocks, and glue layers are arranged on both the upper and lower sides of the long strip blocks, and the viscosity of the upper glue layer is greater than that of the lower glue layer; a release paper two is pasted on the upper side of each double-sided adhesive block.

[0007] More preferably, in the above-mentioned automatic switch socket packaging machine, there is also an auxiliary component, which includes a base, a first round rod, a connecting bar, a first spring, a second round rod, and a third round rod; the base is fixedly connected to the connecting plate; a V-shaped groove is formed in the middle of the base; an inclined surface part is formed on both sides of the base; a plurality of first round rods are slidably connected to the base; a plurality of connecting bars are arranged above the connecting plate, and the connecting bars are fixedly connected to the corresponding first round rods; a first spring is sleeved on each first round rod, one end of the first spring is fixedly connected to the corresponding connecting bar, and the other end of the first spring is fixedly connected to the connecting plate; a second round rod is arranged above the connecting plate, and the second round rod is aligned with the V-shaped groove, and the connecting bar is fixedly connected to the second round rod; a plurality of third round rods are arranged above the connecting plate, and the third round rods are aligned with the corresponding inclined surface parts, and the connecting bars are fixedly connected to the third round rods.

[0008] More preferably, in the above-mentioned automatic switch socket packaging machine, there is also a fixing component, which includes a fourth round rod and a first support block; a plurality of fourth round rods are rotatably connected to the connecting plate in a damping manner; a first support block is fixedly connected to each fourth round rod, and the first support block contacts the lower side of the corresponding connecting bar.

[0009] More preferably, in the above-mentioned automatic switch socket packaging machine, a grip is arranged on the fourth round rod.

[0010] More preferably, in the above-mentioned automatic switch socket packaging machine, there is also a protection component, which includes a fifth round rod, a second spring, and a friction strip; a plurality of fifth round rods are slidably connected to the middle of the base; a second spring is fixedly connected to the lower end of each fifth round rod, and the second spring is fixedly connected to the base; a friction strip is fixedly connected to the upper ends of all the fifth round rods.

[0011] More preferably, in the above-mentioned automatic switch socket packaging machine, there is also a limiting component, which includes a sixth round rod, a third spring, a connecting block, and a cylinder; a plurality of sixth round rods are slidably connected to both ends of each connecting bar; a third spring is sleeved on each sixth round rod, the lower end of the third spring is fixedly connected to the corresponding sixth round rod, and the upper end of the third spring is fixedly connected to the corresponding connecting bar; a connecting block is fixedly connected to each sixth round rod, and the connecting block contacts the corresponding connecting bar; a cylinder is rotatably connected to each connecting block.

[0012] More preferably, in the above-mentioned automatic switch socket packaging machine, there is also a second support block; a second support block is fixedly connected to each fourth round rod.

[0013] More preferably, in the above-mentioned automatic switch socket packaging machine, an intelligent camera is arranged on the workbench.

[0014] More preferably, in the above-mentioned automatic switch socket packaging machine, a speed controller is arranged on the conveyor belt.

[0015] More preferably, in the above automatic switch socket packaging machine, the surface of the conveyor belt is made of a rough material.

[0016] Compared with the prior art, the present invention has the following advantages: First, the screw package is tightly adhered to the switch socket part by the double-sided adhesive block and then the packaging operation is carried out, effectively avoiding the problem of the screw package slipping, thus avoiding the problems of the packaging bag lacking or having extra screw packages, the packaging bag sealing failure and the sealing machine being damaged. At the same time, the viscosity of the glue layer on the upper side of the double-sided adhesive block is set to be greater than that of the lower side glue layer, so that when the screw package is taken out manually, it can drive the double-sided adhesive block to separate from the switch socket part together. And when the short strip of the double-sided adhesive block is torn off from the screw package by pinching it, the double-sided adhesive block can tear the screw package, facilitating the more rapid completion of the screw package unpacking operation; Second, by the second round rod and the third round rod pressing down the first release paper, a gap is formed between the short strip of each double-sided adhesive block and the first release paper, and the operator can lift and tear off the double-sided adhesive block from the gap, with strong convenience; Third, the friction between the friction strip and the first release paper prevents it from slipping and shifting, thus avoiding the problem of difficulty in lifting the double-sided adhesive block caused by too small a separation distance between the double-sided adhesive block and the first release paper, and at the same time avoiding the problem of the glue layer of the double-sided adhesive block being contaminated and affecting the use caused by too large a separation distance between the double-sided adhesive block and the first release paper; Fourth, the first release paper is limited by the cylinder, so that the first release paper can still closely fit the upper plane of the base during the extrusion movement, avoiding interference with the separation of the double-sided adhesive block and the first release paper; Fifth, when the operator places the first release paper on the base, a simple preliminary positioning is carried out. After the second round rod is limited 2-3 millimeters above the first release paper by the second support block, the operator can finely adjust the position of the first release paper with reference to the second round rod, greatly reducing the positioning error and reducing the interference with the separation of the double-sided adhesive block and the first release paper. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Shows a schematic structural view of the automatic switch socket packaging machine of the present invention; Figure 2 Shows a schematic structural view of the auxiliary component of the present invention; Figure 3 Shows a front view of the auxiliary component of the present invention; Figure 4 Shows an exploded view of the first release paper, the double-sided adhesive block and the second release paper of the present invention; Figure 5 Shows a schematic structural view of the fixing component of the present invention; Figure 6 Shows a schematic structural view of the protection component of the present invention; Figure 7shows the present invention Figure 6 an enlarged view of part A in the present invention

[0018] Among them, the above-mentioned drawings include the following reference numerals: 1 - workbench, 2 - conveyor belt, 3 - packaging mechanism, 4 - connecting plate, 5 - release paper 1, 6 - double-sided adhesive block, 7 - release paper 2, 8 - switch socket component, 201 - base, 202 - round rod 1, 203 - connecting bar, 204 - spring 1, 205 - round rod 2, 206 - round rod 3, 207 - round rod 4, 208 - support block 1, 209 - round rod 5, 2010 - spring 2, 2011 - friction strip, 2012 - round rod 6, 2013 - spring 3, 2014 - connecting block, 2015 - cylinder, 2016 - support block 2, 91 - V-shaped groove, 92 - inclined surface part. Detailed implementation manners

[0019] Although the present invention may be described with respect to a specific application or industry, those skilled in the art will recognize the broader applicability of the present invention. Those of ordinary skill in the art will recognize that terms such as: above, below, upward, downward, etc. are used to describe the drawings and do not represent a limitation on the scope of the present invention defined by the appended claims. Any numerical labels such as: first or second are merely illustrative and are not intended to limit the scope of the present invention in any way.

[0020] Embodiment 1 An automatic switch socket packaging machine, as Figures 1-5 shown, includes a workbench 1, a conveyor belt 2 and a packaging mechanism 3; a conveyor belt 2 is installed on the workbench 1; a packaging mechanism 3 is installed on the workbench 1; it further includes a connecting plate 4, a release paper 1, a double-sided adhesive block 6 and a release paper 2; the connecting plate 4 is bolted to the workbench 1, and the connecting plate 4 is made of cemented carbide material for providing stable support force; a release paper 1 is arranged above the connecting plate 4; several alternately arranged double-sided adhesive blocks 6 are pasted on the smooth surface of the release paper 1; the double-sided adhesive block 6 is composed of a vertical long strip and a short strip, and glue layers are arranged on both the upper side and the lower side of the long strip, and the viscosity of the upper glue layer is greater than that of the lower glue layer; a release paper 2 is pasted on the upper side of each double-sided adhesive block 6.

[0021] It further includes an auxiliary component, and the auxiliary component includes a base 201, a first round rod 202, a connecting bar 203, a first spring 204, a second round rod 205, and a third round rod 206; the base 201 is bolted to the connecting plate 4, and the surface of the base 201 is made of a low-friction material; a V-shaped groove 91 is formed in the middle of the base 201; inclined surfaces 92 are formed on both sides of the base 201; four first round rods 202 are slidably connected to the base 201; two connecting bars 203 are arranged above the connecting plate 4, and the connecting bars 203 are fixedly connected to the corresponding first round rods 202; a first spring 204 is sleeved on each first round rod 202, one end of the first spring 204 is fixedly connected to the corresponding connecting bar 203, and the other end of the first spring 204 is fixedly connected to the connecting plate 4; a second round rod 205 is arranged above the connecting plate 4 and is aligned with the V-shaped groove 91, and the connecting bar 203 is fixedly connected to the second round rod 205. The middle part of the first release paper 5 is pressed into the V-shaped groove 91 through the second round rod 205, so that the middle part of the first release paper 5 is sunken and deformed downward to form a gap convenient for tearing; two third round rods 206 are arranged above the connecting plate 4 and are aligned with the corresponding inclined surfaces 92, and the connecting bar 203 is fixedly connected to the third round rod 206.

[0022] It further includes a fixing component, and the fixing component includes a fourth round rod 207 and a first support block 208; two fourth round rods 207 are rotatably connected to the connecting plate 4 in a damping manner, and the fourth round rods 207 are made of alloy material; a first support block 208 is fixedly connected to each fourth round rod 207, and the first support block 208 contacts the lower side of the corresponding connecting bar 203 to support the connecting bar 203.

[0023] A handle is arranged on the fourth round rod 207, and a person drives the fourth round rod 207 to rotate through the handle, making the application of force more convenient.

[0024] First, manually tear the double-sided adhesive block 6 from the release paper 1-5, then paste the glue layer on the lower side of the double-sided adhesive block 6 on the switch socket part 8, and then tear the release paper 2-7 on the double-sided adhesive block 6 to expose the glue layer on the upper side of the double-sided adhesive block 6. Then, manually stick the screw packet on the glue layer on the upper side of the double-sided adhesive block 6, and then place the switch socket part 8 on the conveyor belt 2. The conveyor belt 2 drives the switch socket part 8 and the screw packet to move to the right into the packaging mechanism 3, and packs the screw packet and the switch socket part 8 into the same packaging bag to complete the packaging operation. During this process, the screw packet is tightly adhered to the switch socket part 8 by the double-sided adhesive block 6, effectively avoiding the problem of the screw packet slipping, thus avoiding the problems of the packaging bag lacking or having extra screw packets, the packaging bag sealing failure, and the sealing machine damage. When subsequently retrieving such a switch socket part 8, manually tear off the packaging bag, then hold the switch socket part 8 tightly in the left hand, and then use the right hand to pinch and tear off the screw packet. Since the viscosity of the glue layer on the upper side of the double-sided adhesive block 6 is greater than that of the glue layer on the lower side, the screw packet will tear the double-sided adhesive block 6 off the switch socket part 8. Then, after putting down the switch socket part 8, because the short strip of the double-sided adhesive block 6 has no viscosity, it will not adhere to the screw packet. Then, manually pinch the short strip of the double-sided adhesive block 6 with the left hand and tear the double-sided adhesive block 6 off the screw packet. Since the viscosity between the double-sided adhesive block 6 and the screw packet is large, the double-sided adhesive block 6 can tear the screw packet during the tearing process to complete the unpacking operation of the screw packet. Then, manually take out the screws and perform the installation and fixing operation on the switch socket part 8. When in use, by sticking the screw packet tightly to the switch socket part 8 with the double-sided adhesive block 6 and then performing the packaging operation, the problem of the screw packet slipping is effectively avoided, thus avoiding the problems of the packaging bag lacking or having extra screw packets, the packaging bag sealing failure, and the sealing machine damage. At the same time, setting the viscosity of the glue layer on the upper side of the double-sided adhesive block 6 to be greater than that of the glue layer on the lower side enables the screw packet to drive the double-sided adhesive block 6 to separate from the switch socket part 8 together when the screw packet is taken out manually, and when manually pinching the short strip of the double-sided adhesive block 6 and tearing it off the screw packet, the double-sided adhesive block 6 can tear the screw packet, facilitating the more rapid completion of the unpacking operation of the screw packet.

[0025] Before tearing the double-sided adhesive block 6 from the release paper 1-5, as Figure 2As shown, the release paper 5 is manually placed directly above the base 201, and then the fourth round bar 207 is manually rotated. The fourth round bar 207 drives the first support block 208 to rotate, causing the first support block 208 to move away from the lower side of the connecting bar 203. The first support block 208 stops supporting the connecting bar 203. At this time, the first spring 204 that was initially in a stretched state rebounds and drives the connecting bar 203 to move downward. The connecting bar 203 drives the first round bar 202 to slide downward on the connecting plate 4. The connecting bar 203 drives the second round bar 205 and the third round bar 206 to move downward, causing the second round bar 205 to press the middle part of the release paper 5 against the bottom of the V-shaped groove 91 of the base 201, and the third round bar 206 to press the left and right edges of the release paper 5 against the inclined surface 92. As a result, the middle part, left edge, and right edge of the release paper 5 all sink downward, so that a gap is formed between the short strip of each double-sided adhesive block 6 and the release paper 5. When the double-sided adhesive block 6 is torn off from the release paper 5, the operator can lift the double-sided adhesive block 6 from the gap and then tear off the double-sided adhesive block 6. The operation is convenient. When in use, the release paper 5 is squeezed downward by the second round bar 205 and the third round bar 206, so that a gap is formed between the short strip of each double-sided adhesive block 6 and the release paper 5. The operator can lift and tear off the double-sided adhesive block 6 from the gap, and the convenience is strong.

[0026] Embodiment 2 On the basis of Embodiment 1, as Figure 6 and Figure 7 shown, it further includes a protection component. The protection component includes a fifth round bar 209, a second spring 2010, and a friction strip 2011. A plurality of fifth round bars 209 are slidably connected to the middle of the base 201. A second spring 2010 is fixedly connected to the lower end of each fifth round bar 209, and the second spring 2010 is fixedly connected to the base 201. The upper ends of all the fifth round bars 209 are fixedly connected to a friction strip 2011 together. The second round bar 205 presses the middle part of the release paper 5 against the friction strip 2011, and the rough surface on the lower side of the release paper 5 contacts the upper side of the friction strip 2011 to generate friction force, and the release paper 5 is prevented from slipping through the friction force.

[0027] It further includes a limiting component. The limiting component includes a sixth round bar 2012, a third spring 2013, a connecting block 2014, and a cylinder 2015. Two sixth round bars 2012 are slidably connected to both ends of each connecting bar 203. A third spring 2013 is sleeved on each sixth round bar 2012. The lower end of the third spring 2013 is fixedly connected to the corresponding sixth round bar 2012, and the upper end of the third spring 2013 is fixedly connected to the corresponding connecting bar 203. A connecting block 2014 is fixedly connected to each sixth round bar 2012, and the connecting block 2014 contacts the corresponding connecting bar 203. A cylinder 2015 is rotatably connected to each connecting block 2014.

[0028] To Figure 3For example, after the second round rod 205 and the third round rod 206 press the release paper 15 onto the base 201, the release paper 15 is deformed and fits tightly to the surface of the base 201, and the double-sided adhesive block 6 has a certain plasticity to keep it straight, so that the left and right edges of the upper plane of the connecting plate 4 are the separation positions of the release paper 15 and the double-sided adhesive block 6. When the second round rod 205 presses the release paper 15 downward, the middle part of the release paper 15 sinks downward into the V-shaped groove 91, so that the left and right ends of the release paper 15 move toward the middle of the base 201, and the release paper 15 drives the double-sided adhesive block 6 to move, so that the intersection position of the long strip and the short strip of the double-sided adhesive block 6 is aligned with the left edge or right edge of the upper plane of the connecting plate 4, so that only the short strip of the double-sided adhesive block 6 is separated from the release paper 15. The release paper 15 is separated from the base 201. However, since the upper side of the release paper 15 is a smooth surface, when the round rod 205 squeezes the smooth surface of the release paper 15 and drives it to move, the release paper 15 will deviate, resulting in that after the release paper 15 drives the double-sided adhesive block 6 to move, the intersection position of some long strips and short strips of the double-sided adhesive block 6 will be located inside the upper plane of the base 201, that is, the separation distance between the double-sided adhesive block 6 and the release paper 15 is too small, resulting in a short distance that the short strip of the double-sided adhesive block 6 extends out of the upper plane of the base 201, which is not convenient for manually lifting the double-sided adhesive block 6, and the intersection position of some long strips and short strips of the double-sided adhesive block 6 will exceed the upper plane of the base 201, that is, the separation distance between the double-sided adhesive block 6 and the release paper 15 is too large, resulting in the long strips of the double-sided adhesive block 6. Part of the position will also extend out from the upper plane of the base 201 and separate from the release paper 5, so that the glue layer of the long strip of double-sided adhesive block 6 is exposed to the air. It takes a certain amount of time to use up all the double-sided adhesive blocks 6 on each piece of release paper 5. If the double-sided adhesive blocks 6 on each piece of release paper 5 are not used up and the processing is suspended, the glue layer of the double-sided adhesive block 6 will be exposed for a longer time. If workshop dust adheres to the glue layer of the double-sided adhesive block 6, its adhesion will decrease, thereby causing the adhesion stability to decrease. Therefore, a round rod 5 209, a spring 2 2010 and a friction strip 2011 are added to the base 201. When the round rod 205 moves downward and just contacts the release paper 5, the round rod 205 presses the middle part of the release paper 5 against the friction strip 2011. Since the lower side of the release paper 5 is a rough surface, a large friction force is generated between the release paper 5 and the friction strip 2011, and the round rod 205 continues to move downward, pushing the friction strip 2011 to move downward, and the friction strip 2011 drives the round rod 5 209 to move downward and compresses the spring 2 2010. In this process, the round rod 205 and the friction strip 2011 jointly drive the release paper 5 to move downward, and the friction force prevents the release paper 5 from slipping and deflecting, thereby avoiding the problem of difficulty in lifting the double-sided adhesive block 6 due to the small separation distance between the double-sided adhesive block 6 and the release paper 5, and at the same time avoiding the problem of contamination of the glue layer of the double-sided adhesive block 6 affecting the use due to the large separation distance between the double-sided adhesive block 6 and the release paper 5.

[0029] likeFigure 3 As shown, in the initial stage of the round rod 205 and the round rod 3 206 squeezing the release paper 1 5, the positions of the release paper 1 5 corresponding to the round rod 205 and the round rod 3 206 do not contact the base 201, that is, the release paper 1 5 still has a certain amount of space for movement. After the middle part of the release paper 1 5 is subjected to the downward squeezing force, the position of the release paper 1 5 corresponding to the upper plane of the base 201 will bulge, thereby causing the release paper 1 5 to be unable to fit tightly with the upper plane of the base 201, thereby interfering with the separation of the double-sided adhesive block 6 and the release paper 1 5. Therefore, the connecting strip 203 drives the parts thereon to move downward, so that the round rod 205 just touches the release paper 1 5 downward, and the cylinder 2015 also just touches the release paper 1 5 and presses the left and right sides of the release paper 1 5 against the base 201. The connecting strip 203 drives the parts thereon to continue to move downward, so that the round rod 205 The middle part of the release paper 5 is squeezed to move downward, and the two ends of the release paper 5 move toward the middle of the base 201, while the cylinder 2015 rests on the base 201 through the release paper 5 and cannot move further downward, so that the connecting strip 203 slides downward relative to the round rod 6 2012 and compresses the spring three 2013. When the two ends of the release paper 5 move, the cylinder 2015 is driven to roll adaptively through friction. In this process, the release paper 5 can be pressed and limited by the cylinder 2015, so that the release paper 5 can stably fit the upper plane of the base 201 during the movement, avoiding interference with the separation of the double-sided adhesive block 6 and the release paper 5. When in use, the release paper 5 is limited by the cylinder 2015, so that the release paper 5 can still fit closely to the upper plane of the base 201 during the squeezed movement, avoiding interference with the separation of the double-sided adhesive block 6 and the release paper 5.

[0030] Example 3 On the basis of Example 2, Figure 6 As shown, a second support block 2016 is also included; a second support block 2016 is welded on each round rod 4 207, and the connecting strip 203 is supported by the second support block 2016.

[0031] A smart camera is provided on the workbench 1 for monitoring the processing status.

[0032] The conveyor belt 2 is provided with a speed controller for adjusting the speed at which the conveyor belt 2 drives the switch socket member 8 to move.

[0033] The surface of the conveyor belt 2 is set to a rough material to increase the friction between the conveyor belt 2 and the switch socket component 8.

[0034] When manually placing the first release paper 5 on the base 201, it is necessary to position the first release paper 5 in the middle of the base 201. However, the manual positioning error is large. Therefore, when manually placing the first release paper 5 on the base 201, a simple preliminary positioning is performed on it. Then, the operator rotates the fourth round rod 207. The fourth round rod 207 drives the first support block 208 and the second support block 2016 to rotate, so that the first support block 208 moves away from the lower side of the connecting bar 203, while the second support block 2016 moves to the lower side of the connecting bar 203. As a result, the first spring 204 rebounds to drive the connecting bar 203 to move downward. The connecting bar 203 drives the second round rod 205 to move downward until the connecting bar 203 abuts against the second support block 2016, and the connecting bar 203 and the second round rod 205 stop moving. At this time, the second round rod 205 is close to the upper surface of the first release paper 5, and the distance is 2-3 millimeters. At this time, the operator finely adjusts the position of the first release paper 5 and uses the second round rod 205 as a position reference to align the center line of the first release paper 5 with the second round rod 205. Then, the operator rotates the fourth round rod 207. The fourth round rod 207 drives the second support block 2016 away from the lower side of the connecting bar 203, so that the first spring 204 rebounds to continue driving the connecting bar 203 to move downward, so that the second round rod 205 performs a pressing operation on the first release paper 5. When in use, when manually placing the first release paper 5 on the base 201, a simple preliminary positioning is performed on it. After the second support block 2016 limits the second round rod 205 to 2-3 millimeters above the first release paper 5, the operator can finely adjust and position the first release paper 5 with the second round rod 205 as a reference, greatly reducing the positioning error, thereby reducing the interference caused to the subsequent separation of the double-sided adhesive block 6 and the first release paper 5.

[0035] Those skilled in the art should understand that the above embodiments do not limit the present invention in any form. Any technical solutions obtained by using equivalent replacements or equivalent transformations fall within the protection scope of the present invention.

Claims

1. An automatic packaging machine for switch sockets, comprising a workbench (1), a conveyor belt (2) and a packaging mechanism (3); the conveyor belt (2) is installed on the workbench (1); the packaging mechanism (3) is installed on the workbench (1); characterized in that, It further includes a connecting plate (4), a first release paper (5), double-sided adhesive blocks (6) and a second release paper (7); the connecting plate (4) is fixedly connected to the workbench (1); the first release paper (5) is arranged above the connecting plate (4); a plurality of alternately arranged double-sided adhesive blocks (6) are pasted on the smooth surface of the first release paper (5); the double-sided adhesive blocks (6) are composed of vertical long blocks and short blocks, and glue layers are arranged on both the upper side and the lower side of the long blocks, and the viscosity of the upper glue layer is greater than that of the lower glue layer; a second release paper (7) is pasted on the upper side of each double-sided adhesive block (6).

2. The automatic packaging machine for switch sockets according to claim 1, characterized in that, It further includes an auxiliary component, and the auxiliary component includes a base (201), a first round rod (202), a connecting bar (203), a first spring (204), a second round rod (205) and a third round rod (206); the base (201) is fixedly connected to the connecting plate (4); a V-shaped groove (91) is formed in the middle of the base (201); inclined surfaces (92) are formed on both sides of the base (201); a plurality of first round rods (202) are slidably connected to the base (201); a plurality of connecting bars (203) are arranged above the connecting plate (4), and the connecting bars (203) are fixedly connected to the corresponding first round rods (202); a first spring (204) is sleeved on each first round rod (202), one end of the first spring (204) is fixedly connected to the corresponding connecting bar (203), and the other end of the first spring (204) is fixedly connected to the connecting plate (4); a second round rod (205) is arranged above the connecting plate (4), and the second round rod (205) is aligned with the V-shaped groove (91), and the connecting bar (203) is fixedly connected to the second round rod (205); a plurality of third round rods (206) are arranged above the connecting plate (4), and the third round rods (206) are aligned with the corresponding inclined surfaces (92), and the connecting bar (203) is fixedly connected to the third round rod (206).

3. The automatic packaging machine for switch sockets according to claim 2, characterized in that, It further includes a fixing component, and the fixing component includes a fourth round rod (207) and a first support block (208); a plurality of fourth round rods (207) are rotatably connected to the connecting plate (4) in a damping manner; a first support block (208) is fixedly connected to each fourth round rod (207), and the first support block (208) contacts the lower side of the corresponding connecting bar (203).

4. The automatic packaging machine for switch sockets according to claim 3, characterized in that, A grip is arranged on the fourth round rod (207).

5. The automatic packaging machine for switch sockets according to claim 3, characterized in that It further includes a protection component, and the protection component includes a fifth round rod (209), a second spring (2010) and a friction strip (2011); a plurality of fifth round rods (209) are slidably connected to the middle of the base (201), and the fifth round rods (209) can slide up and down along the base (201); a second spring (2010) is fixedly connected to the lower end of each fifth round rod (209), and the second spring (2010) is fixedly connected to the base (201); the upper ends of all the fifth round rods (209) are fixedly connected to the friction strip (2011).

6. The automatic packaging machine for switch sockets according to claim 5, characterized in that, It further includes a limiting component, and the limiting component includes a sixth round rod (2012), a third spring (2013), a connecting block (2014) and a cylinder (2015); several sixth round rods (2012) are slidably connected to both ends of each connecting bar (203); a third spring (2013) is sleeved on each sixth round rod (2012), the lower end of the third spring (2013) is fixedly connected to the corresponding sixth round rod (2012), and the upper end of the third spring (2013) is fixedly connected to the corresponding connecting bar (203); a connecting block (2014) is fixedly connected to each sixth round rod (2012), the connecting block (2014) contacts the corresponding connecting bar (203); a cylinder (2015) is rotatably connected to each connecting block (2014).

7. An automatic packaging machine for switch sockets according to claim 6, characterized in that, It further includes a second support block (2016); a second support block (2016) is fixedly connected to each fourth round rod (207).

8. A kind of automatic packaging machine for switch sockets according to any one of claims 1-7, characterized in that, An intelligent camera is provided on the workbench (1).

9. An automatic packaging machine for switch sockets according to claim 8, characterized in that, A speed controller is provided on the conveyor belt (2).

10. The automatic packaging machine for switch sockets according to claim 9, characterized in that, The surface of the conveyor belt (2) is made of a rough material.

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