A packaging equipment for adhesive tape production and processing
By combining a U-shaped frame, side plates, push plates, and base frame, along with the cooperation of electromagnets and springs, the problem of bumps and friction during the packing of tape rolls is solved, achieving stable packing and smooth use of tape rolls.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-02
- Publication Date
- 2026-03-31
AI Technical Summary
During the packing process of tape rolls, the tape loops are prone to collisions and friction due to misalignment and irregular shapes, which can affect the product's appearance and performance.
The system employs a combination structure of U-shaped frame, side plates, push plate and base frame. The robotic arm loosely places the tape roll and pushes it to a tight fit. Combined with the cooperation of electromagnet and spring, it ensures that the tape roll does not bump during the packing process, and the toothed plate provides friction to reduce slippage.
This effectively avoids bumps and friction of the tape roll during the packing process, ensuring the stability of the tape roll in the carton and guaranteeing smooth use and appearance quality.
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Figure CN121247197B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of adhesive tape production. More specifically, this invention relates to packaging equipment for adhesive tape production and processing. Background Technology
[0002] After the tape is produced, it needs to be packaged and boxed. The standard procedure is to stack multiple tape rolls one by one, then wrap them together with plastic film to form a tape tube; then, the tape tube is placed vertically into a cardboard box.
[0003] However, during actual packing, the tape rolls are tightly stacked, and the rolls are not perfectly aligned vertically, resulting in misalignment or irregularities in the tape roll's shape. When inserted into a carton, the edges of the tape rolls continuously bump and rub against adjacent rolls or the inner wall of the carton. This repeated impact not only easily causes the tape rolls to loosen or even delaminate, but also exposes parts of the originally protected adhesive surface, affecting the product's appearance, performance, and subsequent unwinding smoothness. Summary of the Invention
[0004] In order to overcome the shortcomings of existing technology where the edge of the tape roll continuously bumps and rubs against adjacent rolls or the inner wall of the carton when the tape roll is inserted into the carton, causing the tape rolls to loosen or even delaminate, thus affecting the use, this invention provides a packaging equipment for tape production and processing.
[0005] Technical solution: A packaging equipment for tape production and processing includes a worktable; it also includes a U-shaped frame, side plates, push plates, a base frame, and a drive assembly; the U-shaped frame is inserted into the worktable; several side plates are slidably connected to the worktable; push plates are slidably connected to the worktable; several sliding grooves are formed on the worktable, and the side plates slide on the corresponding sliding grooves; two sliding grooves are formed on the worktable, and the push plates slide on the two sliding grooves; the base frame is connected to the U-shaped frame; the base frame is inserted into the worktable; the drive assembly is connected to the worktable, and the drive assembly is used to drive the side plates and push plates to move horizontally.
[0006] To further explain, the contact surfaces between the worktable and the side panels are all designed to be smooth.
[0007] To further explain, the contact surfaces between the worktable and the push plate are both designed to be smooth.
[0008] To further explain, it also includes round rods; several round rods are fixedly connected to all the side plates.
[0009] Further explanation: It also includes auxiliary components, including a U-shaped strip, connecting block one, connecting block two, a spring, an electromagnet, and support blocks; a groove one is provided on the worktable; a U-shaped strip is fixed to the U-shaped frame, and the U-shaped strip is located inside the groove one; the base frame is in contact with the U-shaped frame; several connecting blocks one are fixed to the base frame; each connecting block one has a connecting block two fixed to it; each connecting block two has a spring fixed to it, and the spring is fixed to the U-shaped strip; an electromagnet is fixed to the worktable, and the electromagnet is located at the bottom of the groove one; each connecting block two is in contact with the electromagnet; the connecting blocks two are made of iron; several support blocks are fixed to the worktable, and the support blocks are in contact with the U-shaped strip.
[0010] To further explain, it also includes toothed plates; several toothed plates are fixed to the U-shaped frame.
[0011] To further explain, the U-shaped frame has several grooves, and the toothed plate is located inside the corresponding groove.
[0012] To elaborate further, the base frame is made of aluminum alloy.
[0013] To further clarify, the U-shaped frame is made of aluminum alloy.
[0014] To further explain, the worktable has a chamfer at the position corresponding to the first groove.
[0015] The beneficial effects of the present invention are as follows: First, by cooperating with the U-shaped frame, side plate, push plate and base frame, the tape roll to be packed into the carton can be loosely placed first, then pushed to a tight and close fit, and then packed into the carton together. During this process, there will be no collision between adjacent tape rolls, and there will be no collision between the tape rolls and the inner wall of the carton, thereby avoiding the problem of tape rolls delamination caused by collision, and ensuring that they can be used normally in the future.
[0016] Second, by setting the base frame as a hollow structure, compared with a solid flat plate, it is easier for the operator to move the base frame upward, so as to quickly remove the U-shaped frame and the base frame from the carton, making the operation convenient;
[0017] Third, through the cooperation of springs and base frame, even if the carton slides relative to the U-shaped frame during the process of lifting the carton, the base frame can still hold all the tape rolls against the top inside of the inverted carton, avoiding gaps between the tape rolls and the top inside of the inverted carton. This prevents adjacent tape rolls from sliding relative to each other after the carton is flipped over, and thus prevents adjacent tape rings from colliding, ensuring that the tape rings can be used normally.
[0018] Fourth, the toothed plate is placed inside the second groove so that when the carton is lifted, the carton undergoes a slight deformation and contacts the toothed plate. This allows the toothed plate to provide friction to reduce slippage. When the U-shaped frame is removed from the carton, the carton springs back and stops contacting the toothed plate. In other words, there is no frictional resistance between the U-shaped frame and the toothed plate that interferes with the removal operation. Attached Figure Description
[0019] Figure 1 A schematic diagram of the structure of the packaging equipment for tape production and processing according to the present invention is shown;
[0020] Figure 2 This diagram shows the state of the packaging equipment for tape production and processing according to the present invention after the push plate has moved.
[0021] Figure 3 A schematic diagram of the push plate of the present invention is shown;
[0022] Figure 4 A schematic diagram of the structure of the circular rod of the present invention is shown;
[0023] Figure 5 A schematic diagram of the structure of the base frame of the present invention is shown;
[0024] Figure 6 A schematic diagram of the structure of the electromagnet of the present invention is shown;
[0025] Figure 7 A schematic diagram of the structure of the auxiliary component of the present invention is shown;
[0026] Figure 8 The present invention is shown. Figure 6 Enlarged view of point A in the middle.
[0027] In the attached diagrams: 1-Workbench, 2-U-shaped frame, 3-Side plate, 4-Push plate, 5-Base frame, 6-Tape tube, 201-Round rod, 202-U-shaped strip, 203-Connecting block one, 204-Connecting block two, 205-Spring, 206-Electromagnet, 207-Support block, 208-Gear plate, 209-Electric slide rail, 2010-Electric slider, 2011-Electric push rod, 91-Slide groove one, 92-Slide groove two, 93-Groove one, 94-Groove two. Detailed Implementation
[0028] The invention will now be described more fully below with reference to the accompanying drawings, in which presently preferred embodiments of the invention are illustrated. However, the invention may be embodied in many different forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided for thoroughness and completeness and to fully convey the scope of the invention to those skilled in the art.
[0029] Example 1: A packaging equipment for tape production and processing, such as... Figures 1-8 As shown, the device includes a worktable 1 made of alloy material; it also includes a U-shaped frame 2, side plates 3, push plates 4, a base frame 5, and a drive assembly; the U-shaped frame 2 is inserted into the worktable 1; two side plates 3 are slidably connected to the worktable 1; the push plate 4 is slidably connected to the worktable 1; two sliding grooves 91 are formed on the worktable 1, and the bottom of the side plates 3 is located in the corresponding sliding groove 91; a second sliding groove 92 is formed on the worktable 1, and the bottom of the push plate 4 is located in the corresponding sliding groove 92; the base frame 5 is connected to the U-shaped frame 2; the base frame 5 is inserted into the worktable 1; and the drive assembly is connected to the worktable 1.
[0030] The contact surfaces of the workbench 1 and the side plate 3 are both designed to be smooth to reduce friction.
[0031] The contact surfaces of the worktable 1 and the push plate 4 are both designed to be smooth to reduce friction.
[0032] It also includes round rods 201; there are two round rods 201 that are bolted together between all the side plates 3.
[0033] The drive assembly includes an electric slide rail 209, an electric slider 2010, and an electric push rod 2011; the electric slide rail 209 is bolted to the worktable 1; the electric slider 2010 is slidably connected to the electric slide rail 209, and the electric slider 2010 is fixedly connected to the corresponding side plate 3; the electric push rod 2011 is bolted to the worktable 1, and the telescopic end of the electric push rod 2011 is fixedly connected to the push plate 4.
[0034] A tape roll 6, composed of multiple stacked tape rings, is placed into a cavity formed by the workbench 1, U-shaped frame 2, side plate 3, and push plate 4 by a robotic arm. Since this cavity is much larger than the volume of the carton, the tape rolls 6 can be placed relatively loosely within it, preventing collisions between the tape rings. Then, the electric push rod 2011 drives the push plate 4 to the left, pushing the tape rolls 6 together and concentrating them inside the U-shaped frame 2, ensuring close contact between adjacent tape rolls 6. Next, the electric slide rail 209 and electric slider 2010 are activated. The electric slider 2010 drives the front side plate 3 to the right, which in turn drives the rear side plate 3 to the right via the round rod 201, moving both side plates 3 away from the U-shaped frame 2 and push plate 4. At this point, the state of the U-shaped frame 2, push plate 4, and tape rolls 6 is as follows: Figure 2As shown, the overall structure formed by the U-shaped frame 2, push plate 4, and tape tube 6 is slightly smaller than the cavity inside the carton. A robotic arm then inverts the carton onto the outside of this structure, ensuring the top of the tape tube 6 contacts the top of the inverted carton's inner side. The robotic arm then presses the front and back of the carton firmly onto the U-shaped frame 2, and lifts the carton upwards. Friction causes the U-shaped frame 2 to move upwards away from the worktable 1, which in turn causes the base frame 5 to move upwards away from the worktable 1. The base frame 5 then moves the tape tube 6 upwards away from the worktable 1, while the push plate 4 remains on the worktable 1. The robotic arm then rotates the carton 180 degrees, causing the U-shaped frame 2, base frame 5, and tape tube 6 to rotate together. At this point, the carton opening faces upwards, and the tape tube 6 is inside the carton. Finally, the U-shaped frame 2 and base frame 5 are manually removed from the worktable. The tape roll 6 is removed from the carton and left inside, thus completing the packing operation. During this process, there is no collision between the tape rolls. Afterwards, the U-shaped frame 2 and base frame 5 are manually installed back onto the workbench 1. The side plate 3 and push plate 4 are moved back to their original positions via the electric slide rail 209, electric slider 2010, and electric push rod 2011, allowing the next batch of tape rolls 6 to be packed. In use, the U-shaped frame 2, side plate 3, push plate 4, and base frame 5 work together to loosely place the tape rolls 6 needed for a carton, then push them to a tight, fitted state before packing them into the carton. During this process, there is no collision between adjacent tape rolls or between the tape rolls and the inner wall of the carton, thus avoiding delamination caused by collisions and ensuring normal subsequent use.
[0035] When removing the U-shaped frame 2 and the base frame 5 from the carton, it is difficult to remove them because the U-shaped frame 2 is tightly attached to the inside of the carton. Therefore, the base frame 5 is designed with a cutout. When removing the U-shaped frame 2 and the base frame 5 from the carton, the operator can insert their fingers under the base frame 5 to grasp it and then move the base frame 5 upwards. The base frame 5 then moves the U-shaped frame 2 upwards away from the carton, making the operation convenient. In use, by designing the base frame 5 with a cutout, it is easier to move the cutout base frame 5 upwards compared to a flat one, thus quickly removing the U-shaped frame 2 and the base frame 5 from the carton, making the operation convenient.
[0036] It also includes auxiliary components, including a U-shaped bar 202, a connecting block 1 203, a connecting block 204, a spring 205, an electromagnet 206, and a support block 207; a groove 1 93 is provided on the worktable 1; a U-shaped bar 202 is welded to the lower part of the U-shaped frame 2, and the U-shaped bar 202 is located inside the groove 1 93, and the U-shaped bar 202 is made of alloy material; the base frame 5 is in contact with the U-shaped frame 2; several connecting blocks 1 203 are bolted to the base frame 5; each connecting block 1 203 is bolted A connecting block 204 is connected; a spring 205 is fixed between each connecting block 204 and the U-shaped bar 202; an electromagnet 206 is fixed on the worktable 1 and is located at the bottom of the groove 93; each connecting block 204 is in contact with the electromagnet 206; the connecting block 204 is made of iron; the electromagnet 206 can hold the connecting block 204 tightly with magnetic force; several support blocks 207 are fixed on the worktable 1 and are in contact with the U-shaped bar 202.
[0037] The robotic arm presses the front and back of the cardboard box firmly onto the U-shaped frame 2. When the box is lifted upwards, friction causes the U-shaped frame 2 to move upwards away from the worktable 1. At this point, slippage may occur between the cardboard box and the U-shaped frame 2, causing the top of the tape roll 6 to move away from the inner top of the inverted cardboard box. After the tape roll 6 and the cardboard box are flipped 180 degrees, the tape roll 6 will fall to the inner bottom of the cardboard box due to gravity. Due to uneven resistance, the falling process of each tape roll 6 is not completely synchronized, causing adjacent tape rolls 6 to slide relative to each other in the vertical direction, resulting in collisions between adjacent tape rolls. Therefore, auxiliary components are set on the worktable 1. Before placing the tape reel 6 into the cavity formed by the workbench 1, U-shaped frame 2, side plate 3, and push plate 4, activate electromagnet 206. Electromagnet 206 uses magnetic force to attract connecting block 204, causing connecting block 204 to move connecting block 1 203 downwards and stretching spring 205. Connecting block 1 203 moves base frame 5 downwards to contact workbench 1, making the upper side of base frame 5 flush with the upper side of workbench 1. Then, the tape reel 6 is placed in. When the robot arm presses the front and back of the carton against U-shaped frame 2 and then lifts the carton upwards, electromagnet 206 is deactivated. Electromagnet 206 stops attracting connecting block 204, and spring 205, which is in a stretched state, is released. 05 exhibits a rebound tendency, meaning that spring 205 applies an upward pulling force to connecting block 204, connecting block 204 applies an upward pushing force to connecting block 1 203, connecting block 1 203 applies an upward pushing force to the base frame 5, and the base frame 5 applies an upward pushing force to the tape tube 6, thereby pressing the tape tube 6 tightly against the inner top of the inverted carton. During the process of lifting the carton, if the carton slides relative to the U-shaped frame 2, the spring 205, which is in a stretched state, will drive connecting block 1 203, connecting block 204, and the base frame 5 to move upward, causing the base frame 5 to drive all the tape tubes 6 to move upward together, ensuring that the upper side of the tape tube 6 always contacts the inner top of the inverted carton. During this process, adjacent tape rolls 6 will not slide relative to each other. Then, the carton and tape rolls 6 are flipped 180 degrees. At this time, the tape rolls 6 will not fall inside the carton, thus avoiding collisions. In use, through the cooperation of spring 205 and base frame 5, even if the carton slides relative to the U-shaped frame 2 during the process of lifting the carton, the base frame 5 can still hold all tape rolls 6 against the top inside of the inverted carton, preventing gaps between the tape rolls 6 and the top inside of the inverted carton. This prevents adjacent tape rolls 6 from sliding relative to each other after the carton is flipped, thus preventing collisions between adjacent tape rolls and ensuring that the tape rolls can be used normally.
[0038] Example 2, based on Example 1, such as Figure 6 and Figure 8 As shown, it also includes a toothed plate 208; two toothed plates 208 are fixedly attached to the U-shaped frame 2.
[0039] After the carton is placed upside down on the outside of the whole formed by the U-shaped frame 2, the push plate 4 and the tape tube 6, the robot arm presses the front and back sides of the carton onto the two toothed plates 208, and then lifts the carton upward. The carton drives the toothed plates 208 to move upward through friction, and the toothed plates 208 drive the U-shaped frame 2 to move upward. The toothed plates 208 can greatly increase the friction and reduce slippage.
[0040] Two grooves 94 are provided on the U-shaped frame 2, and the toothed plate 208 is located inside the corresponding groove 94.
[0041] The base frame 5 is made of aluminum alloy for easy handling.
[0042] The U-shaped frame 2 is made of aluminum alloy for easy handling.
[0043] The workbench 1 has a chamfer at the position corresponding to the groove 93, which makes it easier for the U-shaped strip 202 to be inserted into the groove 93. By cooperating with the U-shaped strip 202 and the groove 93, the U-shaped frame 2 is positioned and installed at the designated position on the workbench 1.
[0044] To avoid increasing the difficulty of removing the U-shaped frame 2 due to excessive friction between the toothed plate 208 and the cardboard box, and to prevent the toothed plate 208 from scratching the cardboard box, this embodiment has a groove 94 on the U-shaped frame 2. The toothed plate 208 is placed inside the groove. After the cardboard box is placed upside down on the outside of the whole formed by the U-shaped frame 2, the push plate 4, and the tape tube 6, the toothed plate 208 is not in contact with the cardboard box. At this time, the robot arm presses the front and back sides of the cardboard box, causing the cardboard box to deform slightly and contact the toothed plate 208. Then, the cardboard box is lifted upwards. During this process, the toothed plate 208 can provide friction to reduce slippage, thus lifting the U-shaped frame. 2. When the U-shaped frame 2 is removed from the carton, the robotic arm stops pressing the carton, and the carton springs back and stops contacting the toothed plate 208, thereby avoiding frictional resistance between the toothed plate 208 and the carton that would interfere with the removal operation of the U-shaped frame 2. In use, the toothed plate 208 is set inside the groove 2 94, so that when the carton is lifted, it undergoes a small deformation and contacts the toothed plate 208, thereby allowing the toothed plate 208 to provide friction to reduce slippage. When the U-shaped frame 2 is removed from the carton, the carton springs back and stops contacting the toothed plate 208, that is, no frictional resistance will be generated between the U-shaped frame 2 and the toothed plate 208 that would interfere with the removal operation.
[0045] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present invention should be included within the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of the claims.
Claims
1. A packaging equipment for adhesive tape production and processing, comprising a workbench (1); characterized in that, The utility model also includes a U-shaped frame (2), a side plate (3), a push plate (4), a chassis (5) and a driving assembly; the U-shaped frame (2) is inserted on the workbench (1); a plurality of side plates (3) are slidably connected on the workbench (1); the push plate (4) is slidably connected on the workbench (1); a plurality of sliding grooves (91) are formed on the workbench (1), and the side plate (3) slides on the corresponding sliding groove (91); a sliding groove (92) is formed on the workbench (1), and the push plate (4) slides on the sliding groove (92); the chassis (5) is connected to the U-shaped frame (2); the chassis (5) is inserted with the workbench (1); the driving assembly is connected to the workbench (1) and is used for driving the side plate (3) and the push plate (4) to move horizontally; The utility model also includes an auxiliary assembly, and the auxiliary assembly includes a U-shaped strip (202), a connecting block one (203), a connecting block two (204), a spring (205), an electromagnet (206) and a supporting block (207); a recess (93) is formed on the workbench (1); the U-shaped strip (202) is fixedly connected to the U-shaped frame (2) and located inside the recess (93); the chassis (5) is in contact with the U-shaped frame (2); a plurality of connecting block ones (203) are fixedly connected to the chassis (5); one connecting block two (204) is fixedly connected to each connecting block one (203); one spring (205) is fixedly connected to each connecting block two (204), and the spring (205) is fixedly connected with the U-shaped strip (202); the electromagnet (206) is fixedly connected to the workbench (1) and located at the bottom of the recess (93); each connecting block two (204) is in contact with the electromagnet (206); the connecting block two (204) is made of iron; a plurality of supporting blocks (207) are fixedly connected to the workbench (1) and in contact with the U-shaped strip (202); The utility model also includes a toothed plate (208); a plurality of toothed plates (208) are fixedly connected to the U-shaped frame (2).
2. The packaging apparatus for adhesive tape production and processing according to claim 1, characterized in that, The contact surface between the workbench (1) and the side plate (3) is a smooth surface.
3. The packaging apparatus for adhesive tape production and processing according to claim 1, characterized in that, The contact surface between the workbench (1) and the push plate (4) is a smooth surface.
4. The packaging apparatus for adhesive tape production and processing according to claim 1, characterized in that, The utility model also includes a round rod (201); a plurality of round rods (201) are fixedly connected between all the side plates (3).
5. The packaging apparatus for adhesive tape production and processing according to claim 1, characterized in that, A plurality of recesses (94) are formed on the U-shaped frame (2), and the toothed plate (208) is located inside the corresponding recess (94).
6. The packaging apparatus for adhesive tape production and processing according to any one of claims 1-5, characterized in that, The chassis (5) is made of aluminum alloy.
7. The packaging apparatus for adhesive tape production and processing according to claim 6, characterized in that, The U-shaped frame (2) is made of aluminum alloy.
8. The packaging apparatus for adhesive tape production and processing according to claim 1, characterized in that, The workbench (1) is provided with a chamfer at the position corresponding to the recess (93).
Citation Information
Patent Citations
Semi-automatic boxing device
CN221438558U