Contact type cooling assembly for adhesive tape
By designing extension and correction components, the path of the rubber strip in the water tank is extended and its correct position is maintained, solving the problem of short cooling time of the rubber strip and achieving sufficient cooling of the rubber strip and improving production efficiency.
Patent Information
- Application Number
- CN202423118674.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2034-12-17
AI Technical Summary
In existing methods for cooling rubber strips, the contact time between the rubber strip and the cooling water inside the water tank is short, resulting in the rubber strip not being sufficiently cooled, which affects product quality and production efficiency.
An extension component and a correction component were designed. The extension component extends the path of the rubber strip in the water tank by evenly wrapping it, increasing the contact time with the cooling water. The correction component ensures that the rubber strip maintains the correct position in the water tank, avoiding positional deviations that could affect the cooling effect.
By extending the contact time between the rubber strip and the cooling water and maintaining the correct position, the rubber strip is fully cooled, improving the cooling effect and production efficiency.
Smart Images

Figure CN223545582U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of cooling component technology, and more particularly to a contact cooling component for adhesive strips. Background Technology
[0002] In existing technologies, the cooling of the rubber strip is mainly achieved by traction machine pulling the rubber strip linearly through the water tank, so that the rubber strip exchanges heat with the cooling water in the tank to achieve a cooling effect. However, this method has the problem of short contact time between the rubber strip and the cooling water in the tank, resulting in insufficient cooling inside the rubber strip, which affects product quality and production efficiency. Utility Model Content
[0003] The problem this application aims to solve is that the existing cooling of rubber strips mainly relies on a traction machine to pull the rubber strip linearly through the water tank, so that the rubber strip can exchange heat with the cooling water in the tank to achieve a cooling effect. However, this method has the problem that the contact time between the rubber strip and the cooling water in the tank is short, resulting in insufficient cooling inside the rubber strip.
[0004] To address the aforementioned technical problems, this application provides a contact cooling assembly for adhesive strips, including a frame that provides basic support. A water tank filled with cooling water is arranged at the lower part of the frame. An extension assembly is arranged at the upper part of the frame to evenly wrap the adhesive strip, thereby extending the path of the adhesive strip in the water tank and increasing the contact time between the adhesive strip and the cooling water. A correction assembly is also arranged on one side of the frame to ensure that the adhesive strip maintains the correct position when entering the water tank, avoiding affecting the cooling effect due to positional deviation.
[0005] Because the contact cooling assembly of this application is designed with an extension component and a correction component, it can both extend the path of the rubber strip in the water tank by uniformly spreading the rubber strip through the extension component, thereby increasing the contact time between the rubber strip and the cooling water, and ensure that the rubber strip maintains the correct position when entering the water tank by the correction component, avoiding the impact of positional deviation on the cooling effect. This solves the problem that the cooling of the rubber strip in the prior art is mainly achieved by the traction machine pulling the rubber strip linearly through the water tank, so that the rubber strip exchanges heat with the cooling water in the water tank to achieve the cooling effect. However, this method has the problem that the contact time between the rubber strip and the cooling water in the water tank is short, resulting in insufficient cooling inside the rubber strip. Attached Figure Description
[0006] Figure 1 This is a three-dimensional structural diagram of an embodiment.
[0007] Figure 2 This is a front view structural diagram of an embodiment.
[0008] Figure 3 This is a side view of the structure of an embodiment.
[0009] Figure 4 This is a schematic diagram of the structure of the extension component.
[0010] Figure 5 This is a schematic diagram of the correction component.
[0011] Figure 6 This is a schematic diagram of the correction component.
[0012] In the diagram: 1. Extension assembly; 2. Adhesive strip; 3. Frame; 4. Correction assembly; 5. Water tank; 6. Roller; 7. Support plate; 8. Roller; 9. Motor; 10. Column; 11. Probe; 12. Upright pole; 13. Rotating rod; 14. Crossbar; 15. Screw; 16. Base; 17. Screw block. Detailed Implementation
[0013] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application. Example
[0014] This application relates to a contact cooling assembly for adhesive strips, such as... Figure 1-6 As shown, the cooling assembly includes a frame 3 that provides basic support. A water tank 5 containing cooling water is arranged at the bottom of the frame 3. An extension component 1 is arranged on the upper part of the frame 3 to evenly wrap the rubber strip 2, facilitating immersion cooling within the water tank 5. The extension component 1 extends the path of the rubber strip 2 in the water tank 5, increasing the contact time between the rubber strip 2 and the cooling water, thus improving the cooling effect. A correction component 4 is also arranged on one side of the frame 3 to correct the rubber strip 2 as it enters the water tank 5. This component ensures that the rubber strip 2 maintains the correct position upon entering the water tank 5, preventing positional deviations from affecting the cooling effect. In practical applications, after the rubber strip 2 comes off the production line, it first passes through the extension component 1 for even wrapping, and then enters the water tank 5 for immersion cooling. The extension component 1 extends the path of the rubber strip 2 in the water tank 5, increasing the contact time with the cooling water. Simultaneously, the correction component 4 corrects the rubber strip 2 in real time as it enters the water tank 5, ensuring its correct position.
[0015] The extension assembly 1 includes rollers 6, support plates 7, rollers 8, and a motor 9. The extension assembly 1 has two rollers 6, which are vertically arranged side-by-side on the upper part of the frame 3. One-half to two-thirds of the volume of the lower roller 6 is submerged in the water tank 5, ensuring that the rubber strips 2 are in full contact with the cooling water during the winding process, achieving effective heat exchange. The rollers 6 are connected to the frame 3 via bearing seats, ensuring the stability and rotational flexibility of the rollers 6. Support plates 7 are horizontally placed on the upper part of the frame 3 on both sides of the rollers 6. The main function of the support plates 7 is to support the rollers 8 and ensure the relative position stability between the rollers 8, thereby achieving uniform separation and smooth passage of the rubber strips 2. The upper part of the support plate 7 is evenly and spaced with multiple rollers 8 that can roll around it. There are channels between these rollers 8 for the rubber strips 2 to pass through. This allows the rubber strips 2 to be evenly separated by the rollers 8 on the upper part of the support plate 7 while being wrapped around the surfaces of the two rollers 6. This design not only ensures the uniformity of the rubber strips 2 during the wrapping process, but also effectively avoids the adhesion and blockage between the rubber strips 2. The motor 9 is located on one side of the frame 3 and drives the two rollers 6 to rotate synchronously through the chain. The motor 9 is the power source for driving the rotation of the rollers 6. By controlling the speed and direction of the motor 9, the wrapping speed and direction of the rubber strips 2 can be precisely controlled, thereby meeting the cooling requirements under different production needs.
[0016] Working principle: In actual operation, when the rubber strip 2 comes off the production line, it first passes through the roller 6 of the stretching assembly 1 for winding. Driven by the motor 9, the roller 6 rotates and drives the rubber strip 2 to wind evenly. At the same time, the roller 8 on the upper part of the support plate 7 evenly divides the rubber strip 2 to ensure that it passes smoothly and enters the water tank 5 for immersion cooling. In this way, the stretching assembly 1 not only extends the contact time between the rubber strip 2 and the cooling water, but also ensures the uniformity and stability of the rubber strip 2 during the winding process.
[0017] The alignment component 4 includes a base 16, a crossbar 14, a vertical rod 12, a screw 15, a screw block 17, a rotating rod 13, a column 10, and a probe 11. The base 16 of the alignment component 4 is fixedly arranged on the ground on one side of the frame 3, providing stable support for the entire component. The design of the base 16 ensures the stability and durability of the component, and can withstand various forces and vibrations generated during production. A hollow crossbar 14 with open side walls is horizontally placed on the upper part of the base 16. The internal space of the crossbar 14 is used to accommodate the screw 15 and allow the screw 15 to rotate freely within it. The open side walls of the crossbar 14 facilitate the connection between the screw block 17 and the vertical rod 12, as well as subsequent adjustment operations. The screw 15 is fitted inside the crossbar 14 and can rotate freely. Screw blocks 17 are symmetrically arranged on the upper part of the screw 15 and are threadedly connected to it. When the screw 15 rotates, due to the interaction of the threads, the screw blocks 17 will move linearly along the screw 15. This design allows the position of the screw block 17 to be precisely adjusted by rotating the screw 15. Symmetrically arranged on the outside of the crossbar 14 are uprights 12 connected to the screw block 17. The side of the uprights 12 has a rotating rod 13 that contacts the rubber strip 2 and can rotate freely. When the screw block 17 moves under the adjustment of the screw 15, the positions of the uprights 12 and the rotating rod 13 also change accordingly, thereby adjusting the correction distance between the uprights 12. The design of the rotating rod 13 allows it to gently contact the rubber strip 2 and rotate freely as the rubber strip 2 passes, reducing friction and resistance. A column 10 is also vertically arranged on the upper part of the base 16. A probe 11 for object detection is arranged at the end of the column 10. The main function of the probe 11 is to detect whether the rubber strip 2 has passed, thereby monitoring the position and status of the rubber strip 2 in real time. When the probe 11 detects the rubber strip 2, it sends a signal to the control system for necessary adjustments or operations.
[0018] Working principle: In actual operation, when the rubber strip 2 enters the effective range of the correction component 4, the rotating rod 13 will contact it and guide it to maintain the correct path. If the rubber strip 2 deviates laterally, the rotating rod 13 will correct the deviation by rotating and adjusting its position. At the same time, the probe 11 will continuously detect the position and status of the rubber strip 2 to ensure the smooth progress of the production process.
[0019] In use, when the hot adhesive strip 2 on the production line enters the working area of the contact cooling component, the motor 9 is started by the extension component 1, driving the roller 6 to rotate, so that the adhesive strip 2 is evenly wrapped around the roller 6. At the same time, the roller 8 on the upper part of the support plate 7 starts to work, ensuring that the adhesive strip 2 is evenly spaced and passes through. During the process of the adhesive strip 2 wrapping around the roller 6, 1 / 2 to 2 / 3 of the volume of the lower roller 6 is immersed in the water tank 5, so as to achieve full contact between the adhesive strip 2 and the cooling water and rapid heat dissipation. Subsequently, the adhesive strip 2 enters the correction component 4. By adjusting the rotation of the screw 15, the screw block 17 drives the upright 12 and the rotating rod 13 to move, thereby adjusting the correction spacing and ensuring that the adhesive strip 2 maintains the correct path under the guidance of the rotating rod 13 and avoids lateral deviation. During this process, the probe 11 on the upright 10 continuously monitors the position and status of the adhesive strip 2 and feeds it back to the control system in real time for necessary adjustments.
[0020] Generally speaking, terms should be understood at least in part by their use in context. For example, at least in part by context, the term "one or more" as used in the text can be used to describe any feature, structure, or characteristic of the singular meaning, or a combination of features, structures, or characteristics of the plural meaning. Similarly, at least in part by context, terms such as "a" or "the" can also be understood to convey either singular or plural usage.
[0021] It should be readily understood that the terms “on,” “above,” and “on top of” in this disclosure should be interpreted in the broadest possible sense, such that “on” means not only “directly on something” but also “on something” with an intermediate feature or layer therebetween, and that “above” or “on top of” means not only “on top of something” but also “on top of something” without an intermediate feature or layer therebetween (i.e., directly on something).
[0022] Furthermore, for ease of explanation, spatially relative terms such as "below," "below," "under," "above," and "above" may be used to describe the relationship of one element or feature relative to other elements or features as shown in the figures. Spatially relative terms are intended to encompass different orientations of the device in use or operation other than those shown in the figures. The device may have other orientations (rotated 90 degrees or in other orientations), and the spatially relative descriptive terms used herein may be interpreted accordingly.
[0023] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A contact cooling assembly for adhesive strips, comprising a frame that provides basic support, characterized in that: The lower part of the frame is equipped with a water tank containing cooling water. The upper part of the frame is equipped with an extension component for evenly spreading the rubber strip to extend the path of the rubber strip in the water tank, thereby increasing the contact time between the rubber strip and the cooling water. On one side of the frame, there is also a correction component to ensure that the rubber strip is in the correct position when entering the water tank, so as to avoid affecting the cooling effect due to positional deviation.
2. The contact cooling assembly for adhesive strips according to claim 1, characterized in that: The extension assembly includes rollers and a motor. The extension assembly has two rollers, which are arranged vertically and side by side on the upper part of the frame. The rollers are connected to the frame through bearing seats. The motor is located on one side of the frame and drives the two rollers to rotate synchronously through a chain.
3. The contact cooling assembly for adhesive strips according to claim 2, characterized in that: The extension assembly includes a support plate and rollers. On the upper part of the frame on both sides of the roller, a support plate is placed horizontally to provide support. Multiple rollers that can roll around the support plate evenly and at intervals to achieve uniform separation and smooth passage of the rubber strip are arranged on the upper part of the support plate. A channel is left between the rollers for the rubber strip to pass through.
4. The contact cooling assembly for adhesive strips according to claim 2, characterized in that: One-half to two-thirds of the volume of the lower roller is submerged in the water tank.
5. The contact cooling assembly for adhesive strips according to claim 1, characterized in that: The alignment component includes a base, a crossbar, a screw, and screw blocks. The base is fixedly arranged on the ground on one side of the frame. A crossbar with a hollow interior and open sidewalls is placed horizontally on the upper part of the base. The screw is sleeved inside the crossbar and can rotate freely. Screw blocks with threaded connections are symmetrically arranged on the upper part of the screw.
6. The contact cooling assembly for adhesive strips according to claim 5, characterized in that: The correction assembly includes uprights and rotating rods. Uprights connected to screw blocks are symmetrically arranged on the outside of the crossbar, and rotating rods that can rotate freely are arranged on the side of the uprights to contact the rubber strip.
7. The contact cooling assembly for adhesive strips according to claim 5, characterized in that: The correction assembly includes a column and a probe. A column is also vertically arranged on the upper part of the base, and a probe for detecting the passage of the rubber strip is arranged at the end of the column.