A strong adhesive tape and a method for processing the same

By improving the structural design of the high-strength adhesive tape, the problems of stability and quick replacement during use were solved, achieving stable tape deployment and convenient use, and enhancing the bonding effect and tape length management.

CN122444014APending Publication Date: 2026-07-24卜邱伯
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
卜邱伯
Filing Date
2024-09-30
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The existing strong adhesive tape has an unstable ring setting during use, which leads to a decrease in the adhesive effect and makes it difficult to replace and use quickly.

Method used

A high-strength adhesive tape structure was designed, including components such as a back plate, plastic rings, rotating rollers, screws, inclined platforms, arc plates, and rotating tubes. The screws and threaded holes work together to achieve stable clamping of plastic rings of different specifications. The rotating tubes and pressure sleeves are used to improve the tape's unfolding stability and adhesion. The sponge marking strips and one-way valves are combined to achieve tape length marking and automatic air venting.

Benefits of technology

It enables quick tape replacement and stable deployment, improves the bonding effect, ensures the stability and convenience of tape during use, and facilitates tape length marking and usage monitoring.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of adhesive tape technology, and more specifically to a high-strength adhesive tape and its processing method. It includes a back plate, a plastic ring with adhesive tape wrapped around its surface, and a ramp with a screw formed at the rear end. The front end of the back plate has an arc plate with a notch at its left end. A rotating roller is rotatably connected to the back plate in the middle of the arc plate. The inner end of the rotating roller has a threaded hole, into which the screw can be screwed. The ramp pushes outwards multiple bending pieces. Multiple support plates are slidably connected to the side wall of the rotating roller. Each support plate has a bending piece fixed to its inner end, and a spring is fixed between the bending piece and the inner wall of the rotating roller. The inner walls at the upper and lower ends of the arc plate have slots. A diamond-shaped head is fixedly connected to the front end of the ramp. A baffle plate covering the front end of the arc plate is rotatably connected to the ramp. A locking block that can engage with the slots is formed on the rear end face of the baffle plate. This design allows for easier and faster replacement and use of the processed high-strength adhesive tape, and makes the tape more stable when unfolded.
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Description

Technical Field

[0001] This invention relates to the field of adhesive tape technology, and more specifically to a high-strength adhesive tape and its processing method. Background Technology

[0002] Strong adhesive tape is widely used in practice. Its basic structure consists of an inner circular ring around which the tape is wound. However, during use, to facilitate smooth application, the ring is usually mounted on a fixed object, allowing it to rotate and thus quickly unfold the tape. But this method makes it difficult to stably attach rings of different sizes, making the attachment process difficult and causing significant tape vibration, which reduces the adhesion effect. Therefore, this application provides a strong adhesive tape and its processing method, which makes the processed strong adhesive tape easier to replace and use quickly, and makes the tape more stable when unfolded. Summary of the Invention

[0003] To overcome the shortcomings of the prior art, the present invention provides a high-strength adhesive tape and its processing method, which makes the processed high-strength adhesive tape easier to replace and use quickly, and makes the tape more stable when unfolded.

[0004] The technical solution adopted by this invention to solve its technical problem is:

[0005] A high-strength adhesive tape includes a back plate, a plastic ring with adhesive tape wrapped around its surface, and a ramp with a screw formed at the rear end. The front end of the back plate has an arc plate with a notch at the left end. A rotating roller is rotatably connected to the back plate in the middle of the arc plate. The inner end of the rotating roller has a threaded hole. The screw can be screwed into the threaded hole and the ramp pushes outward multiple bending pieces. Multiple support plates are slidably connected to the side wall of the rotating roller. Each support plate has a bending piece fixed at its inner end, and a spring is fixed between the bending piece and the inner wall of the rotating roller.

[0006] The inner walls at both ends of the arc plate are provided with slots, the front end of the inclined platform is fixedly connected to a diamond-shaped head, and a baffle that covers the front end of the arc plate is rotatably connected to the inclined platform. A block that can be inserted into the slot is formed on the rear end face of the baffle.

[0007] The left end of the rear plate is rotatably connected to a rotating tube, which is located outside the notch on the left side of the arc plate. The tape can be pulled out from the notch and extends out from under the rotating tube, passing around it. The surface of the rotating tube is wrapped with a pressure sleeve.

[0008] The pressure sleeve is inlaid with a marker strip made of sponge material along the axis of the rotating tube. The rotating tube is hollow inside and can store pigment, and has through holes on its side walls. The through holes are aligned with the marker strips. A one-way valve is provided at the rear end of the rotating tube.

[0009] The rotating tube has a positioning hole in the middle of its front end, and a limiting shaft that can be inserted into the positioning hole is formed on the rear side of the left end of the baffle.

[0010] The upper side of the outer wall of the arc plate is provided with a slide rail, and a slider is slidably connected in the slide rail. A baffle plate is fixedly connected to the upper end of the slider. A top edge is formed on the lower side of the outer wall of the arc plate. The left end of the baffle plate can push the adhesive tape to stick to the top edge. Attached Figure Description

[0011] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.

[0012] Figure 1 This is a schematic diagram of the structure of the high-strength adhesive tape in this invention;

[0013] Figure 2 This is a schematic diagram of the internal structure of the high-strength adhesive tape in this invention;

[0014] Figure 3 This is a schematic diagram of the baffle structure in this invention;

[0015] Figure 4 This is a schematic diagram of the arc plate in this invention;

[0016] Figure 5 This is a schematic diagram of the structure of the plastic ring in this invention;

[0017] Figure 6 This is a schematic diagram of the structure of the rotary roller in this invention;

[0018] Figure 7 This is a schematic diagram of the structure of the bent sheet in this invention;

[0019] Figure 8 This is a schematic diagram of the structure of the shielding plate in this invention;

[0020] Figure 9 This is a schematic diagram of the skateboard structure in this invention;

[0021] Figure 10 This is a schematic diagram of the transfer tube in this invention;

[0022] Figure 11 This is a schematic diagram of the inclined platform in this invention;

[0023] In the diagram: Rear plate 01; Arc plate 02; Palm support 03; Slot 04; Top edge 05; Slide rail 06; Slider 07; Baffle plate 08; Slide plate 09; Blade 10; Plastic ring 11; Adhesive tape 12; Rotary roller 13; Threaded hole 14; Support plate 15; Bending plate 16; Rubber pad 17; Baffle 18; Locking block 19; Limiting shaft 20; Screw 21; Inclined platform 22; Diamond head 23; Rotary tube 24; Positioning hole 25; Pressure sleeve 26; Marking strip 27; One-way valve 28. Detailed Implementation

[0024] See attached document Figures 1 to 7 The structure shown illustrates an exemplary operation process for quickly changing different sizes of adhesive tape according to this application:

[0025] A high-strength adhesive tape includes a back plate 01, a plastic ring 11 with adhesive tape sheets 12 wrapped around its surface, and a ramp 22 with a screw 21 formed at its rear end. The front end of the back plate 01 has an arc plate 02 with a notch at its left end. A roller 13 is rotatably connected to the back plate 01 in the middle of the arc plate 02. A threaded hole 14 is provided at the inner end of the roller 13, allowing the screw 21 to be screwed into the threaded hole 14. Multiple bending pieces 16 are pushed outwards by the ramp 22. Multiple support plates 15 are slidably connected to the side wall of the roller 13, and each support plate 15 has a bending piece 16 fixed to its inner end and bent. A spring is fixed between the sheet 16 and the inner wall of the roller 13. During use, plastic rings 11 of different inner diameters can be placed around multiple support plates 15, and the tape sheet 12 is located inside the arc plate 02. Then, the inclined table 22 can be picked up and the screw 21 can be aligned with the threaded hole 14 and screwed in, so that the inclined table 22 enters into multiple bending sheets 16, thereby contacting the bending sheets 16 and pushing the support plate 15 outward, so that the support plate 15 contacts the inner wall of the plastic ring 11, thereby supporting and clamping the plastic ring 11 from the inside, realizing quick clamping, and can complete clamping of different specifications.

[0026] A rubber pad 17 is fixedly connected to the outer end face of the support plate 15. The deformation of the rubber pad 17 can increase the friction between the rubber pad 17 and the inner wall of the plastic ring 11, so that the plastic ring 11 can be more stably supported and clamped from the inside when it is fully attached to the inner wall of the plastic ring 11.

[0027] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operation of the mounting housing of this application:

[0028] The inner walls of the upper and lower ends of the arc plate 02 are provided with slots 04. The front end of the inclined platform 22 is fixedly connected to a diamond-shaped head 23. A baffle 18 covering the front end of the arc plate 02 is rotatably connected to the inclined platform 22. A locking block 19 that can be inserted into the slot 04 is formed on the rear end face of the baffle 18. During assembly, the diamond-shaped head 23 is picked up to make it easier to turn the inclined platform 22. When the screw 21 is aligned with the threaded hole 14 and screwed in, the inclined platform 22 drives the baffle 18 to snap onto the front end of the arc plate 02. At this time, the locking block 19 can be embedded into the slot 04, thereby preventing the baffle 18 from sliding relative to each other, thus forming the outer shell to protect the inner tape sheet 12 and plastic ring 11.

[0029] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operation of the compression tape sheet 12 of this application:

[0030] The left end of the rear plate 01 is rotatably connected to a rotating tube 24, which is located outside the notch on the left side of the arc plate 02. The tape sheet 12 can be pulled out from the notch and extend from under the rotating tube 24, passing around the rotating tube 24. The surface of the rotating tube 24 is covered with a pressure sleeve 26. During use, the tape sheet 12 can be pulled out from the notch and extended from under the rotating tube 24 to be pasted onto the object. Then, the rear plate 01 can be pulled to make the tape sheet 12 automatically unfold from the plastic ring 11. At the same time, the plastic ring 11 will drive the rotating roller 13 to rotate, thereby realizing the rotation of the plastic ring 11, which makes it easy for the tape sheet 12 to unfold for use.

[0031] Furthermore, during the movement, the rotating tube 24 can press down the adhesive tape 12 attached to the object, thereby making the adhesive tape 12 adhere more firmly and automatically expelling the air between the adhesive tape 12 and the object. In addition, the pressure sleeve 26 on the surface of the rotating tube 24 increases the friction between it and the adhesive tape 12. The pressure sleeve 26 can be made of elastic material, thereby preventing the rotating tube 24 from slipping and failing to rotate, which would prevent the rotating tube 24 from rolling the adhesive tape 12 smoothly. Moreover, the elastic deformation is used to fully conform to the surface of the object, thereby making the adhesive tape 12 adhere more fully.

[0032] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operation process for the marking length used in this application:

[0033] The pressure sleeve 26 is inlaid with a marker strip 27 made of sponge material along the axis of the rotating tube 24. The rotating tube 24 is hollow inside and can store pigment, and has through holes on its side walls. The through holes are aligned with the marker strip 27. A one-way valve 28 is provided at the rear end of the rotating tube 24. Pigment is introduced into the rotating tube 24 through the one-way valve 28, so that the pigment in the rotating tube 24 is immersed into the marker strip 27 through the through holes. When the pressure sleeve 26 rotates, the marker strip 27 contacts the tape sheet 12 to mark it. Thus, the length of the tape sheet 12 can be marked according to the number of rotations of the pressure sleeve 26, so that the length of the tape sheet 12 used at one time can be known and the remaining amount of tape sheet 12 can be known.

[0034] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operational process for improving the stability of the rotary tube 24 in this application:

[0035] The rotating tube 24 has a positioning hole 25 at the middle of its front end, and a limiting shaft 20 is formed on the rear left side of the baffle 18 that can be inserted into the positioning hole 25. By inserting the limiting shaft 20 into the positioning hole 25, the limiting shaft 20 limits the rotating tube 24, which makes the rotation of the rotating tube 24 more stable during use, and improves the stress strength of the rotating tube 24 to avoid damage.

[0036] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operation process of the end of the positioning tape 12 in this application:

[0037] A slide rail 06 is provided on the upper side of the outer wall of the arc plate 02. A slider 07 is slidably connected in the slide rail 06. A baffle plate 08 is fixedly connected to the upper end of the slider 07. A top edge 05 is formed on the lower side of the outer wall of the arc plate 02. The left end of the baffle plate 08 can push the adhesive tape 12 to stick to the top edge 05. After the adhesive tape 12 is pasted on the object, the baffle plate 08 can be pushed from the right end by using a finger, so that the baffle plate 08 slides to the left in the slide rail 06 using the slider 07. When the left end of the baffle plate 08 passes through the left side notch of the arc plate 02, it pushes the adhesive tape 12, so that the adhesive tape... Finally, tape 12 is pasted onto the top edge 05. At the same time, the left end of the baffle 08 presses the tape 12 onto the top edge 05, allowing the exposed tape 12 to be cut for use. The new end of the cut tape 12 is clamped between the baffle 08 and the top edge 05. So, when using it next time, moving the baffle 08 to the left allows the new end of the tape 12 to be peeled off from the top edge 05 for use. This avoids the problem of the new end of the tape 12 being directly pasted onto the lower layer of tape 12, which makes it difficult to find the end when using traditional tape.

[0038] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operation process for cutting the ends of the tape sheet 12 in this application:

[0039] The outer wall of the baffle plate 08 is provided with another slide rail 06, and another slider 07 is slidably connected in the slide rail 06. The slider 07 is fixedly connected to the slide plate 09, and the left end of the slide plate 09 is fixedly connected to the blade 10. When the baffle plate 08 moves to the left and presses down on the tape 12, it can drive the slide plate 09 to move closer to the tape 12. After the baffle plate 08 presses down on the tape 12, you can continue to use your fingers to push the slide plate 09 from the right end to the left, so that the slide plate 09 slides in the slide rail 06 on the outer wall of the baffle plate 08 using the slider 07, so that the blade 10 at the left end of the slide plate 09 moves to cut the tape 12, thereby cutting the tape 12 to produce a new end, and also breaking the tape 12 that is stuck to the object.

[0040] See attached document Figures 1 to 11 The structure shown illustrates an exemplary operational process for improving stability in this application:

[0041] A palm support 03 is fixedly connected to the outer wall of the right end of the arc plate 02, which can be supported in the palm. When in use, after the hand holds the back plate 01 and the baffle 18, the palm support 03 can be supported in the middle of the palm, so that the palm is more stable after the back plate 01 and the baffle 18 are held. This prevents the back plate 01 and the baffle 18 from moving towards the middle of the palm during use. The palm support 03 can also be used to transfer the force to the rotating tube 24, so that the rotating tube 24 can press the tape sheet 12 more forcefully.

[0042] The processing method for the aforementioned high-strength adhesive tape includes the following steps:

[0043] S1: Wrap the processed tape sheet 12 around the plastic ring 11, and put the plastic ring 11 on the outside of the multiple support plates 15;

[0044] S2: Screw the screw 21 into the threaded hole 14 to make the inclined platform 22 push the multiple support plates 15 to move outward and support them on the inner wall of the plastic ring 11. Pull out the end of the tape 12 and stick it to the top edge 05.

[0045] S3: Make the baffle plate 08 cover the arc plate 02 and make the limiting shaft 20 insert into the positioning hole 25;

[0046] S4: Push the baffle plate 08 so that the left end of the baffle plate 08 presses against the end of the tape 12 that is stuck on the top edge 05;

[0047] S5: The pigment is introduced into the rotating tube 24 through the one-way valve 28.

Claims

1. A high-strength adhesive tape, characterized in that, The back plate (01) includes a plastic ring (11) with tape (12) wrapped around its surface, and a ramp (22) with a screw (21) formed at the rear end. The front end of the back plate (01) is formed with an arc plate (02) with a notch at the left end. A roller (13) is rotatably connected to the back plate (01) in the middle of the arc plate (02). A threaded hole (14) is opened at the inner end of the roller (13). The screw (21) can be screwed into the threaded hole (14). Multiple bent pieces (16) are pushed outward by the ramp (22). Multiple support plates (15) are slidably connected to the side wall of the roller (13). A bent piece (16) is fixed at the inner end of each support plate (15), and a spring is fixed between the bent piece (16) and the inner wall of the roller (13).

2. The high-strength adhesive tape according to claim 1, characterized in that: The inner walls of the upper and lower ends of the arc plate (02) are provided with slots (04), the front end of the inclined platform (22) is fixedly connected with a diamond head (23), and a baffle (18) covering the front end of the arc plate (02) is rotatably connected to the inclined platform (22). A card block (19) that can be inserted into the slot (04) is formed on the rear end surface of the baffle (18).

3. The high-strength adhesive tape according to claim 2, characterized in that: The left end of the rear plate (01) is rotatably connected to a rotating tube (24), and the rotating tube (24) is located outside the notch on the left side of the arc plate (02). The tape sheet (12) can be pulled out from the notch and extend from under the rotating tube (24) around the rotating tube (24). The surface of the rotating tube (24) is wrapped with a pressure sleeve (26).

4. The high-strength adhesive tape according to claim 3, characterized in that: The pressure sleeve (26) is inlaid with a marker strip (27) made of sponge material along the axis of the rotating tube (24). The rotating tube (24) is hollow inside and can store pigment, and has through holes on its side walls. The through holes are aligned with the marker strip (27). A one-way valve (28) is provided at the rear end of the rotating tube (24).

5. The high-strength adhesive tape according to claim 4, characterized in that: The rotating tube (24) has a positioning hole (25) in the middle of its front end, and a limiting shaft (20) that can be inserted into the positioning hole (25) is formed on the rear side of the left end of the baffle (18).

6. The high-strength adhesive tape according to claim 5, characterized in that: The upper side of the outer wall of the arc plate (02) is provided with a slide rail (06), a slider (07) is slidably connected in the slide rail (06), a baffle plate (08) is fixedly connected to the upper end of the slider (07), a top edge (05) is formed on the lower side of the outer wall of the arc plate (02), and the left end of the baffle plate (08) can push the adhesive tape (12) to stick to the top edge (05).

7. The high-strength adhesive tape according to claim 6, characterized in that: Another slide (06) is provided on the outer wall of the shield (08), and another slider (07) is slidably connected in the slide (06). The slider (07) is fixedly connected to the slide plate (09), and the left end of the slide plate (09) is fixedly connected to the blade (10).

8. The high-strength adhesive tape according to claim 1, characterized in that: A palm support (03) that can be supported in the palm is fixedly connected to the outer wall of the right end of the arc plate (02).

9. The high-strength adhesive tape according to claim 1, characterized in that: A rubber pad (17) is fixedly connected to the outer end face of the support plate (15).

10. The processing method of the high-strength adhesive tape according to claim 9, characterized in that: The method includes the following steps: S1: Wrap the processed tape sheet (12) around the plastic ring (11) and put the plastic ring (11) on the outside of multiple support plates (15); S2: Screw the screw (21) into the threaded hole (14) so ​​that the inclined platform (22) pushes multiple support plates (15) to move outward and support them on the inner wall of the plastic ring (11). Pull out the end of the tape (12) and stick it to the top edge (05). S3: Make the baffle plate (08) cover the arc plate (02) and make the limiting shaft (20) insert into the positioning hole (25); S4: Push the baffle (08) so that the left end of the baffle (08) presses against the end of the tape (12) that is stuck on the top edge (05); S5: The pigment is introduced into the rotating tube (24) through the one-way valve (28).