Equipment for improving flatness of sticky note
Through the combination of ceramic ultrasonic atomization and circulation structure, the problem of insufficient flatness of post-it notes is solved, efficient water absorption and cost reduction are achieved, and equipment suitable for carton and carton manufacturers.
Patent Information
- Application Number
- CN202422141244.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-02
AI Technical Summary
Existing post-it notes equipment has shortcomings in improving flatness, especially the expansion and deformation of paper caused by water-based pressure-sensitive glue and the difficulty of flattening, which affects the user experience and aesthetics.
Ceramic ultrasonic atomization element is used to achieve delicate atomization of water, combined with fixed water absorption structure and circulation structure, and adjust the equipment position through an adjustable platform to achieve efficient absorption and recycling of moisture.
It improves the flatness of post-it notes, reduces paper collapse caused by drying, reduces operating costs, and improves the applicability and convenience of the equipment.
Smart Images

Figure CN223103368U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of sticky notes, in particular to a device for improving the flatness of sticky notes. Background Art
[0002] In modern office and learning environments, sticky notes are widely used as a convenient tool for recording and reminding. When using uneven sticky notes, it may affect the fluency and aesthetics of writing, reduce the accuracy and readability of information recording. In order to improve the use experience and quality of sticky notes and meet the user's requirements for flatness, it is of great practical significance and market demand to develop a device that can effectively improve the flatness of sticky notes.
[0003] In the existing devices for improving the flatness of sticky notes, since the sticky note product is a water-based pressure-sensitive glue and most of its components are water, when coating at the glue channel, the paper on one side absorbs water and expands and deforms. It is difficult to achieve standard flatness even after drying and leveling again, which affects the cutting and aesthetics of the later products. Therefore, technical personnel in this field provide a device for improving the flatness of sticky notes to solve the problems raised in the above background art. Summary of the Utility Model
[0004] The purpose of the utility model is to solve the deficiencies existing in the prior art, and a device for improving the flatness of sticky notes is proposed. By using a ceramic ultrasonic atomization element, the atomization of water is realized. Different from the effect of ordinary pneumatic atomization, the ceramic ultrasonic atomization element can make the water atomize more finely, the water molecule particles are smaller, and the impact on the paper is small. At the same time, it also has the effect of replenishing water to the paper, making the two sides of the paper have the same humidity, reaching a balance, reducing the phenomenon of paper breakage during production due to the low water retention of the raw material roll paper in the weather environment and being too dry. This device is also applicable to the equipment of carton factories and paper box manufacturers. By designing an adjustable platform composed of sliders, slideways, bolts and limit knobs, the up, down, front and back positions of the components can be flexibly adjusted to meet different usage requirements, improving the applicability and convenience of the equipment. Through the combination of a fixed water absorption structure and a circulation structure, the efficient absorption and recycling of water are realized. This design not only improves the water absorption efficiency, but also reduces the waste of water resources through the circulation system and reduces the operating cost.
[0005] To achieve the above object, the utility model provides the following technical solution: A device for improving the flatness of sticky notes, including a small water storage bin, a fixed water absorption structure is arranged inside the small water storage bin, a circuit structure is arranged at the center of the rear end face of the small water storage bin, fixed brackets are arranged at the center of the lower end face of the small water storage bin near both sides, third bolts are arranged at the center of the lower end face of the two fixed brackets near one side, adjustable platforms are arranged on one side wall of the two fixed brackets, and a circulation structure is arranged at the lower end of the small water storage bin;
[0006] Through the above technical solutions, by using a ceramic ultrasonic atomization element, the atomization of water is realized. Different from the effect of ordinary pneumatic atomization, the ceramic ultrasonic atomization element can make the water atomize more finely, with smaller water molecule particles, less impact on the paper, and at the same time has the effect of replenishing water to the paper, making both sides of the paper have the same humidity, achieving a balance, and reducing the phenomenon of paper breakage during production due to the low water retention of the raw material roll paper in the weather environment and being too dry. This equipment is also applicable to the equipment used in carton factories and paper box manufacturers. By designing an adjustable platform composed of a slider, a slideway, bolts, and a limit knob, the up, down, front, and back positions of the components can be flexibly adjusted to meet different usage requirements, improving the applicability and convenience of the equipment. Through the combination of a fixed water absorption structure and a circulation structure, the efficient absorption and recycling of water are realized. This design not only improves the water absorption efficiency but also reduces the waste of water resources through the circulation system and lowers the operating cost.
[0007] Further, the fixed water absorption structure includes a plurality of fixed fittings and a plurality of water absorption cotton swabs. The plurality of fixed fittings are respectively arranged horizontally at the upper and lower positions near the center of the front inner wall of the small water storage bin, and the plurality of water absorption cotton swabs are respectively arranged inside the small water storage bin on the inner side walls of the plurality of fixed fittings;
[0008] Through the above technical solutions, the fixed fittings are horizontally arranged and installed on the front inner wall of the small water storage bin, firmly clamping the water absorption cotton swabs on their inner sides. The water absorption cotton swabs can fully contact the water in the bin in the small water storage bin, absorb and store water through their own capillary action, increasing the water absorption area and efficiency, and being able to absorb and store water more effectively.
[0009] Further, the circulation structure includes a circulation water storage tank, a water pump, a water inlet pipe, and a water outlet pipe. The circulation water storage tank is arranged at the lower center and near one side of the small water storage bin. The water pump is arranged at the lower center of one inner side wall of the circulation water storage tank. The water inlet pipe is arranged on the output end of the water pump. The output end of the water inlet pipe penetrates through one side wall of the small water storage bin and leads to the inside of the small water storage bin. The water outlet pipe is arranged at the upper center of one side wall of the circulation water storage tank. One end of the water outlet pipe penetrates through one side wall of the small water storage bin and leads to the inside of the small water storage bin;
[0010] Through the above technical solutions, after the water pump is started, the water in the circulation water storage tank is pumped out through the water inlet pipe connected to its output end and conveyed into the small water storage bin. The water in the small water storage bin then flows back to the circulation water storage tank through the water outlet pipe, forming a circulating water flow path, realizing the recycling of water resources, reducing water waste, and lowering the operating cost of the equipment.
[0011] Further, the circuit structure includes a placement bin, a driving integrated circuit, a plurality of first lines, a plurality of ceramic ultrasonic atomization elements, a second line, and a power supply. The placement bin is disposed at the center of the rear end face of the small water storage bin. The driving integrated circuit is disposed at the center inside the placement bin. The plurality of first lines are respectively arranged horizontally on the output end of the driving integrated circuit. The plurality of ceramic ultrasonic atomization elements are respectively arranged horizontally at the upper and lower positions near the center of the front end face of the water storage bin. The power supply is disposed at one side near the lower end of the circulation structure. The second line is disposed on the output end of the power supply. The output end of the second line penetrates through the upper end face of the placement bin and leads to the inside of the placement bin, and the end is fixedly connected to the input end of the driving integrated circuit;
[0012] Through the above technical solution, the power supply transmits power to the driving integrated circuit in the placement bin through the second line. After receiving the power, the driving integrated circuit transmits control signals to the plurality of ceramic ultrasonic atomization elements arranged horizontally on the front end face of the small water storage bin through the plurality of first lines, causing them to start working and atomize the water in the small water storage bin.
[0013] Further, the adjustable platform includes a slider, a first bolt, a first connecting plate, two slideways, a second thread, two limit knobs, and a second connecting plate. The second connecting plate is disposed at the center of one side wall of the fixing bracket on one side. The first bolt is disposed at the center of one side wall of the fixing bracket on one side. One end of the first bolt sequentially penetrates through one side wall of the fixing bracket and one side wall of the second connecting plate and leads to the inside of the second connecting plate, and the end is threadedly connected to the inside of the second connecting plate. The slideways are disposed at the positions near the center of one side of the upper and lower end faces of the second connecting plate. The slider is slidably connected to the inside of the two slideways. The first connecting plate is disposed at the center of one side wall of the slider. The second thread is disposed at the position near the rear of one side wall of the first connecting plate. One end of the second thread sequentially penetrates through one side wall of the first connecting plate and one side wall of the slider and leads to the inside of the slider, and the end is threadedly connected to the inside of the slider. The two limit knobs are respectively disposed at the positions near the front and the rear of one side of the upper end face of the slider;
[0014] Through the above technical solution, the second connecting plate is firmly fixed to the fixing bracket by the first bolt. The slider can freely slide within the two slideways of the second connecting plate. When the position needs to be adjusted, loosen the second thread and the limit knobs, and push the slider to move along the slideway, thereby driving the first connecting plate connected to the slider and the components connected thereto to achieve the adjustment of the front and rear positions. The first connecting plate is connected to the slider through the second thread to ensure the stability of the connection. After adjusting to the appropriate position, tighten the second thread and the limit knobs to fix the position of the slider.
[0015] Further, a water inlet is provided at the position near the center of one side of the upper end face of the circulating water storage tank;
[0016] Through the above technical solution, liquid can be added to the circulating water storage tank conveniently and quickly, ensuring that the device has sufficient working medium to maintain normal operation.
[0017] Further, one end of the power supply is fixedly connected with a power plug.
[0018] Through the above technical solution, it is ensured that the device can obtain electric power stably, guaranteeing normal operation and working efficiency.
[0019] Further, a plurality of card slots are arranged side by side in the front and back at a position close to one side of the center of the upper end surface of the second connecting plate.
[0020] Through the above technical solution, positioning and fixing are realized.
[0021] The utility model has the following beneficial effects:
[0022] 1. In the utility model, in the device for improving the flatness of the sticky note, by using a ceramic ultrasonic atomization element, the atomization of water is realized. Different from the effect of ordinary pneumatic atomization, the ceramic ultrasonic atomization element can make the water atomize more finely, the water molecule particles are smaller, and the influence on the paper is small. At the same time, it also has the effect of replenishing water to the paper, making both sides of the paper have the same humidity, achieving a balance, and reducing the phenomenon of paper breakage during production due to the low water retention of the raw material roll paper in the weather environment and being too dry. This device is also applicable to the equipment of carton factories and paper box manufacturers.
[0023] 2. In the utility model, by designing an adjustable platform composed of a slider, a slideway, a bolt and a limit knob, etc., the up, down, front and back positions of the components can be adjusted flexibly, meeting different usage requirements and improving the applicability and convenience of the device.
[0024] 3. In the utility model, through the combination of a fixed water absorption structure and a circulating structure, the efficient absorption and recycling of water are realized. This design not only improves the water absorption efficiency, but also reduces the waste of water resources through the circulating system and lowers the operating cost. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a perspective view of a device for improving the flatness of a sticky note proposed by the utility model;
[0026] Figure 2 is a front cross-sectional view of a device for improving the flatness of a sticky note proposed by the utility model;
[0027] Figure 3 is a side cross-sectional view of a device for improving the flatness of a sticky note proposed by the utility model;
[0028] Figure 4 is Figure 1 an enlarged schematic view of part A in
[0029] Legend Explanation:
[0030] 1. Small water storage bin; 2. Fixed water absorption structure; 201. Fixed fitting; 202. Water absorption cotton swab; 3. Circulation structure; 301. Circulation water storage tank; 302. Water pump; 303. Water inlet pipe; 304. Water outlet pipe; 4. Circuit structure; 401. Placement bin; 402. Driving integrated circuit; 403. First circuit; 404. Ceramic ultrasonic atomization element; 405. Second circuit; 406. Power supply; 5. Fixed bracket; 6. Third bolt; 7. Adjustable platform; 701. Slide block; 702. First bolt; 703. First connecting plate; 704. Slideway; 705. Second thread; 706. Limit knob; 707. Second connecting plate. Detailed Implementation Manner
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0032] Refer to Figures 1-4 , an embodiment provided by the present invention: A device for improving the flatness of sticky notes, including a small water storage bin 1, a fixed water absorption structure 2 is arranged inside the small water storage bin 1, a circuit structure 4 is arranged at the center of the rear end face of the small water storage bin 1, fixed brackets 5 are arranged at both sides near the center of the lower end face of the small water storage bin 1, third bolts 6 are arranged at one side near the center of the lower end faces of the two fixed brackets 5, adjustable platforms 7 are arranged on one side wall of the two fixed brackets 5, a circulation structure 3 is arranged at the lower end of the small water storage bin 1. The small water storage bin 1 is used to store a certain amount of water. The fixed water absorption structure 2 is placed inside the small water storage bin 1 and can absorb and retain moisture. The circulation structure 3 can promote the circulation and flow of water to ensure the uniform distribution and utilization of moisture. The circuit structure 4 provides power support and control for the operation of the device. The fixed bracket 5 realizes a stable connection with other components through the third bolt 6 to support the entire device. The adjustable platform 7 can adjust the position and angle of the device as needed.
[0033] The fixed water absorption structure 2 includes a plurality of fixed fittings 201 and a plurality of absorbent cotton swabs 202. The plurality of fixed fittings 201 are respectively arranged horizontally at the upper and lower positions near the center of the front inner wall of the small water storage bin 1. The plurality of absorbent cotton swabs 202 are respectively arranged inside the small water storage bin 1 on the inner side walls of the plurality of fixed fittings 201. The fixed fittings 201 are horizontally arranged and installed on the front inner wall of the small water storage bin 1, firmly clamping the absorbent cotton swabs 202 on their inner sides. The absorbent cotton swabs 202 can fully contact the water in the bin inside the small water storage bin 1, absorb and store water through their own capillary action, increasing the water absorption area and efficiency, and being able to more effectively absorb and store water.
[0034] The circulation structure 3 includes a circulation water storage tank 301, a water pump 302, a water inlet pipe 303 and a water outlet pipe 304. The circulation water storage tank 301 is arranged at the position near one side of the center of the lower end of the small water storage bin 1. The water pump 302 is arranged at the position near the lower part of the center of one inner side wall of the circulation water storage tank 301. The water inlet pipe 303 is arranged on the output end of the water pump 302. The output end of the water inlet pipe 303 penetrates through one side wall of the small water storage bin 1 and leads to the inside of the small water storage bin 1. The water outlet pipe 304 is arranged at the position near the upper part of the center of one side wall of the circulation water storage tank 301. One end of the water outlet pipe 304 penetrates through one side wall of the small water storage bin 1 and leads to the inside of the small water storage bin 1. After the water pump 302 is started, the water in the circulation water storage tank 301 is pumped out through the water inlet pipe 303 connected to its output end and is transported into the small water storage bin 1. The water in the small water storage bin 1 then flows back to the circulation water storage tank 301 through the water outlet pipe 304, forming a circulating water flow path, realizing the recycling of water resources, reducing water waste, and lowering the operation cost of the equipment. An inlet is provided at the position near one side of the center of the upper end surface of the circulation water storage tank 301, facilitating the quick addition of liquid to the circulation water storage tank 301 to ensure that the equipment has sufficient working medium to maintain normal operation.
[0035] The circuit structure 4 includes a placement bin 401, a driving integrated circuit 402, a plurality of first circuits 403, a plurality of ceramic ultrasonic atomization elements 404, a second circuit 405, and a power supply 406. The placement bin 401 is arranged at the center of the rear end face of the small water storage bin 1. The driving integrated circuit 402 is arranged at the center inside the placement bin 401. The plurality of first circuits 403 are respectively arranged horizontally on the output end of the driving integrated circuit 402. The plurality of ceramic ultrasonic atomization elements 404 are respectively arranged horizontally at the upper and lower positions near the center of the front end face of the water storage bin 1. The power supply 406 is arranged at one side near the lower end of the circulation structure 3. The second circuit 405 is arranged on the output end of the power supply 406. The output end of the second circuit 405 penetrates through the upper end face of the placement bin 401 and leads to the inside of the placement bin 401, and the end is fixedly connected to the input end of the driving integrated circuit 402. The power supply 406 transmits power to the driving integrated circuit 402 inside the placement bin 401 through the second circuit 405. After receiving the power, the driving integrated circuit 402 transmits control signals to the plurality of ceramic ultrasonic atomization elements 404 arranged horizontally on the front end face of the small water storage bin 1 through the plurality of first circuits 403, so that they start to work and atomize the water in the small water storage bin 1. One end of the power supply 406 is fixedly connected with a power plug to ensure that the device can stably obtain power and guarantee normal operation and working efficiency.
[0036] The adjustable platform 7 includes a slider 701, a first bolt 702, a first connecting plate 703, two slideways 704, a second thread 705, two limit knobs 706, and a second connecting plate 707. The second connecting plate 707 is arranged at the center of one side wall of the fixed bracket 5 on one side. The first bolt 702 is arranged at the center of one side wall of the fixed bracket 5 on one side. One end of the first bolt 702 sequentially penetrates through one side wall of the fixed bracket 5 and one side wall of the second connecting plate 707 and leads to the inside of the second connecting plate 707, and the end is threadedly connected inside the second connecting plate 707. The slideways 704 are arranged at the upper and lower positions near the center of one side of the upper end face and the lower end face of the second connecting plate 707. The slider 701 is slidably connected inside the two slideways 704. The first connecting plate 703 is arranged at the center of one side wall of the slider 701. The second thread 705 is arranged at the position near the rear of the center of one side wall of the first connecting plate 703. One end of the second thread 705 sequentially penetrates through one side wall of the first connecting plate 703 and one side wall of the slider 701 and leads to the inside of the slider 701, and the end is threadedly connected inside the slider 701. The two limit knobs 706 are respectively arranged at the positions near the front and the rear of one side of the upper end face of the slider 701.
[0037] The second connecting plate 707 is firmly fixed to the fixed bracket 5 by the first bolt 702. The slider 701 can slide freely within the two slideways 704 of the second connecting plate 707. When position adjustment is required, the second screw 705 and the limit knob 706 are loosened, and the slider 701 is pushed to move along the slideway 704, thereby driving the first connecting plate 703 connected to the slider 701 and the components connected thereto to achieve front-back position adjustment. The first connecting plate 703 is connected to the slider 701 through the second screw 705 to ensure the stability of the connection. After adjusting to the appropriate position, the second screw 705 and the limit knob 706 are tightened to fix the position of the slider 701. Multiple card slots are arranged in the front-back direction at one side near the center of the upper end surface of the second connecting plate 707 to achieve positioning and fixation.
[0038] Working principle: The small water storage bin 1 is used to store a certain amount of water. The fixing fittings 201 are installed horizontally on the front inner wall of the small water storage bin 1 and firmly clamp the absorbent cotton swabs 202 inside. The absorbent cotton swabs 202 can fully contact the water in the bin within the small water storage bin 1, absorb and store water through their own capillary action, increasing the area and efficiency of water absorption and being able to absorb and store water more effectively. After the water pump 302 is started, the water in the circulating water storage tank 301 is pumped out through the water inlet pipe 303 connected to its output end and delivered into the small water storage bin 1. The water in the small water storage bin 1 then flows back to the circulating water storage tank 301 through the water outlet pipe 304, forming a circulating water flow path, realizing the recycling of water resources, reducing water waste, and lowering the operating cost of the equipment.
[0039] The power supply 406 transmits electricity to the driving integrated circuit 402 placed in the placement bin 401 through the second circuit 405. After receiving the electricity, the driving integrated circuit 402 transmits control signals to multiple ceramic ultrasonic atomization elements 404 arranged horizontally on the front end face of the small water storage bin 1 through multiple first circuits 403, causing them to start working and atomize the water in the small water storage bin 1. The fixed bracket 5 is firmly connected to other components through the third bolt 6 to support the entire device. The second connecting plate 707 is firmly fixed to the fixed bracket 5 by the first bolt 702. The slider 701 can slide freely within the two slideways 704 of the second connecting plate 707. When position adjustment is required, the second screw 705 and the limit knob 706 are loosened, and the slider 701 is pushed to move along the slideway 704, thereby driving the first connecting plate 703 connected to the slider 701 and the components connected thereto to achieve front-back position adjustment. The first connecting plate 703 is connected to the slider 701 through the second screw 705 to ensure the stability of the connection. After adjusting to the appropriate position, the second screw 705 and the limit knob 706 are tightened to fix the position of the slider 701.
[0040] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An apparatus for improving the flatness of a sticky note, comprising a small water storage tank (1), characterized in that: Inside the small water storage tank (1), there is a fixed water absorption structure (2). At the center of the rear end face of the small water storage tank (1), there is a circuit structure (4). On both sides near the center of the lower end face of the small water storage tank (1), there are fixed brackets (5). At one side near the center of the lower end face of each of the two fixed brackets (5), there is a third bolt (6). On one side wall of each of the two fixed brackets (5), there is an adjustable platform (7). At the lower end of the small water storage tank (1), there is a circulation structure (3).
2. The device for improving the flatness of a sticky note according to claim 1, wherein: The fixed water absorption structure (2) includes a plurality of fixed fittings (201) and a plurality of absorbent cotton swabs (202). The plurality of fixed fittings (201) are respectively arranged horizontally at the upper and lower positions near the center of the front inner wall of the small water storage tank (1). The plurality of absorbent cotton swabs (202) are respectively arranged inside the small water storage tank (1) on the inner side walls of the plurality of fixed fittings (201).
3. An apparatus for improving the flatness of a sticky note according to claim 1, characterized in that: The circulation structure (3) includes a circulation water storage tank (301), a water pump (302), a water inlet pipe (303), and a water outlet pipe (304). The circulation water storage tank (301) is arranged at one side near the center of the lower end of the small water storage tank (1). The water pump (302) is arranged at a position near the lower center of one inner side wall of the circulation water storage tank (301). The water inlet pipe (303) is arranged on the output end of the water pump (302). The output end of the water inlet pipe (303) penetrates through one side wall of the small water storage tank (1) and leads to the inside of the small water storage tank (1). The water outlet pipe (304) is arranged at a position near the upper center of one side wall of the circulation water storage tank (301). One end of the water outlet pipe (304) penetrates through one side wall of the small water storage tank (1) and leads to the inside of the small water storage tank (1).
4. An apparatus for improving the flatness of a sticky note according to claim 1, characterized in that: The circuit structure (4) includes a placement bin (401), a driving integrated circuit (402), a plurality of first circuits (403), a plurality of ceramic ultrasonic atomization elements (404), a second circuit (405), and a power supply (406). The placement bin (401) is arranged at the center of the rear end face of the small water storage tank (1). The driving integrated circuit (402) is arranged at the center inside the placement bin (401). The plurality of first circuits (403) are respectively arranged horizontally on the output end of the driving integrated circuit (402). The plurality of ceramic ultrasonic atomization elements (404) are respectively arranged horizontally at the upper and lower positions near the center of the front end face of the water storage tank (1). The power supply (406) is arranged at one side near the lower end of the circulation structure (3). The second circuit (405) is arranged on the output end of the power supply (406). The output end of the second circuit (405) penetrates through the upper end face of the placement bin (401) and leads to the inside of the placement bin (401), and its end is fixedly connected to the input end of the driving integrated circuit (402).
5. The device for improving the flatness of a sticky note according to claim 1, characterized in that: The adjustable platform (7) includes a slider (701), a first bolt (702), a first connecting plate (703), two slideways (704), a second thread (705), two limit knobs (706) and a second connecting plate (707). The second connecting plate (707) is arranged at the center of one side wall of the fixed bracket (5). The first bolt (702) is arranged at the center of one side wall of the fixed bracket (5). One end of the first bolt (702) sequentially passes through one side wall of the fixed bracket (5) and one side wall of the second connecting plate (707) and reaches the inside of the second connecting plate (707), and the end is threadedly connected inside the second connecting plate (707). The slideways (704) are arranged at the center of the upper end face and the lower end face of the second connecting plate (707) near one side. The slider (701) is slidably connected to the inside of the two slideways (704). The first connecting plate (703) is arranged at the center of one side wall of the slider (701). The second thread (705) is arranged at the rear of the center of one side wall of the first connecting plate (703). One end of the second thread (705) sequentially passes through one side wall of the first connecting plate (703) and one side wall of the slider (701) and reaches the inside of the slider (701), and the end is threadedly connected inside the slider (701). The two limit knobs (706) are respectively arranged at the front and the rear of one side of the upper end face of the slider (701).
6. An apparatus for improving the flatness of a sticky note according to claim 3, wherein: An inlet is provided at the center of the upper end face of the circulating water storage tank (301) near one side.
7. An apparatus for improving the flatness of a sticky note according to claim 4, characterized in that: One end of the power supply (406) is fixedly connected with a power plug.
8. An apparatus for improving the flatness of a sticky note according to claim 5, characterized in that: A plurality of card slots are arranged in the front and rear of the center of the upper end face of the second connecting plate (707) near one side.