Humidifying and static electricity removing device for wallpaper production and processing
By designing a humidification and static elimination device for wallpaper production and processing, and utilizing heating and stirring, cooling and guiding, and static elimination mechanisms, the problems of water accumulation and mold in wallpaper are solved, achieving uniform humidification and static elimination, and protecting the quality of wallpaper.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HUBEI HUANGMA WALL PAPER MFG CO LTD
- Filing Date
- 2025-04-18
- Publication Date
- 2026-04-17
AI Technical Summary
Existing humidifiers and anti-static devices may spray water mist that can cause localized water accumulation on wallpaper, accelerating wallpaper damage and creating conditions for mold growth.
A humidification and antistatic device for wallpaper production and processing has been designed, including a machine tool, a winding mechanism, a drive mechanism, a heating and stirring mechanism, a cooling and guiding mechanism, a buffer mechanism, a humidification mechanism, and an antistatic mechanism. By driving the winding and tightening parts to rotate, the heating and stirring mechanism heats the liquid to vaporize it, the cooling and guiding mechanism cools and liquefies it, the buffer mechanism stores it, the water mist is sprayed out, and the antistatic mechanism sprays it evenly to remove static electricity and excess moisture from the wallpaper surface.
It effectively prevents water accumulation and mold growth on the wallpaper surface, achieves uniform humidification and static electricity removal, and protects the quality of the wallpaper.
Smart Images

Figure CN224133463U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wallpaper production technology, and in particular to a humidifying and static-eliminating device for wallpaper production and processing. Background Technology
[0002] Wallpaper comes in many categories, such as laminated wallpaper, coated wallpaper, and embossed wallpaper. It is typically made from bleached chemical wood pulp, which is then processed through various steps, such as coating, printing, embossing, or surface lamination. Finally, it is cut and packaged before leaving the factory. It possesses a certain degree of strength, toughness, an attractive appearance, and good water resistance.
[0003] Humidifiers and anti-static devices mainly rely on increasing ambient humidity to reduce static electricity. However, if the water mist sprayed by the device comes into direct contact with the wallpaper, it may cause local water accumulation on the wallpaper, accelerating its damage and creating conditions for mold growth.
[0004] Therefore, it is necessary to provide a humidification and static elimination device for wallpaper production and processing to solve the above-mentioned technical problems. Utility Model Content
[0005] This invention provides a humidifying and static-eliminating device for wallpaper production and processing, which solves the problems of wallpaper easily accumulating water and developing mold.
[0006] To solve the above-mentioned technical problems, this utility model provides a humidifying and static-eliminating device for wallpaper production and processing, comprising: a machine tool and a winding mechanism, wherein the winding mechanism includes a winding and unwinding component and a tightening component, the winding and unwinding component and the tightening component cooperating to rotate and be used for winding and unwinding wallpaper;
[0007] A driving mechanism, the driving mechanism including a first driving member, the first driving member being used to drive the take-up member and the tightening member to rotate;
[0008] A heating and stirring mechanism, the heating and stirring mechanism including a stirring element, the stirring element being used to stir a liquid;
[0009] The second driving component is used to drive the stirring component to rotate;
[0010] A cooling flow guiding mechanism, comprising a flow guiding element for guiding the flow of distilled water;
[0011] A buffer mechanism, the buffer mechanism including a water pumping component, the water pumping component being used to increase the pressure of distilled water to complete the delivery;
[0012] The humidification mechanism includes a second conveying component, an atomizing component, and a dehumidifying component. The second conveying component is used to convey distilled water, the atomizing component is used to spray out the distilled water after atomization, and the dehumidifying component is used to remove excess moisture from the wallpaper surface.
[0013] An antistatic mechanism, comprising an ion release component, which is used to change the uniformity of water mist and neutralize static electricity on the wallpaper surface.
[0014] Preferably, the surfaces of the take-up and take-up components and the tightening components are connected to a first transmission component and a second transmission component. The first transmission component is used to drive the rotation of the take-up and take-up components and the tightening components, and the second transmission component is used to drive the rotation of the dehumidifying component.
[0015] Preferably, the machine tool is internally connected to a heating box and a heating element, the heating box being used to store liquid and the heating element being used to heat the liquid.
[0016] Preferably, the top of the machine tool is connected to a cooling shroud, which is used to cool and liquefy steam, and the interior of the cooling shroud is connected to a water receiving component, which is used to receive and discharge distilled water.
[0017] Preferably, a first conveying member is connected to the surface of the cooling shroud. The first conveying member is used for conveying distilled water, and a buffer member is connected to the other end of the first conveying member. The buffer member is used for storing distilled water.
[0018] Preferably, the surface of the ion-releasing component is connected to a third transmission component and a fourth transmission component. The third transmission component is used to drive the rotation of multiple ion-releasing components, and the fourth transmission component is used to drive the rotation of the ion-releasing component connected thereto.
[0019] Preferably, the surface of the machine tool is provided with a filtration mechanism, which includes a filtration component and an impurity storage component. The filtration component is used to filter out excess water after humidification, and the impurity storage component is used to store the filtered impurities.
[0020] Compared with related technologies, the humidifying and static-eliminating device for wallpaper production and processing provided by this utility model has the following beneficial effects:
[0021] This utility model provides a humidifying and antistatic device for wallpaper production and processing. The drive mechanism drives the take-up and tightening parts to rotate, which in turn moves the wallpaper. At the same time, the heating and stirring mechanism heats and vaporizes the liquid, which is then cooled and liquefied by the cooling and guiding mechanism and transported to the interior of the buffer mechanism. Finally, the liquid is atomized and sprayed out by the humidifying mechanism. Together with the antistatic mechanism, the device humidifies and removes static electricity from the surface of the wallpaper, effectively preventing water accumulation and mold growth on the wallpaper surface. Attached Figure Description
[0022] Figure 1 A schematic diagram of the first embodiment of a humidifying and static-eliminating device for wallpaper production and processing provided by this utility model;
[0023] Figure 2 for Figure 1 The diagram shows the rear side structure.
[0024] Figure 3 for Figure 1 The diagram shows the internal structure of the machine tool and cooling shroud.
[0025] Figure 4 This is a schematic diagram of the second embodiment of a humidifying and static-eliminating device for wallpaper production and processing provided by this utility model.
[0026] Labels in the diagram: 1. Machine tool
[0027] 2. Rewinding mechanism; 21. Unwinding / rewinding component; 22. Tightening component.
[0028] 3. Drive mechanism; 31. First transmission component; 32. Second transmission component; 33. First drive component;
[0029] 4. Heating and stirring mechanism; 41. Heating box; 42. Heating element; 43. Stirring element.
[0030] 5. Second drive component,
[0031] 6. Cooling guide mechanism; 61. Cooling cover; 62. Guide component; 63. Water receiving component.
[0032] 7. Buffer mechanism; 71. First conveying component; 72. Buffer component; 73. Pumping component;
[0033] 8. Humidification mechanism; 81. Second conveying component; 82. Atomizing component; 83. Dehumidification component.
[0034] 9. Static eliminator; 91. Ion release component; 92. Third transmission component; 93. Fourth transmission component.
[0035] 10. Filtering mechanism; 101. Filtering components; 102. Impurity storage components. Detailed Implementation
[0036] The present invention will be further described below with reference to the accompanying drawings and embodiments. Example
[0037] Please refer to the following: Figure 1 , Figure 2 and Figure 3 ,in, Figure 1 A schematic diagram of the first embodiment of a humidifying and static-eliminating device for wallpaper production and processing provided by this utility model; Figure 2 for Figure 1 The diagram shows the rear side structure. Figure 3 for Figure 1 The diagram shows the internal structure of the machine tool and cooling shroud. A humidifying and destatic device for wallpaper production and processing includes: a machine tool 1 and a winding mechanism 2, wherein the winding mechanism 2 includes a winding / unwinding component 21 and a tightening component 22, the winding / unwinding component 21 and the tightening component 22 cooperating to rotate and be used for winding and unwinding the wallpaper;
[0038] The drive mechanism 3 includes a first drive member 33, which is used to drive the take-up member 21 and the tightening member 22 to rotate.
[0039] A heating and stirring mechanism 4, which includes a stirring element 43 for stirring a liquid;
[0040] The second driving component 5 is used to drive the stirring component 43 to rotate;
[0041] Cooling guide mechanism 6, the cooling guide mechanism 6 includes guide member 62, the guide member 62 is used for guiding the flow of distilled water;
[0042] The buffer mechanism 7 includes a water pumping component 73, which is used to increase the pressure of distilled water to complete the delivery.
[0043] The humidification mechanism 8 includes a second conveying component 81, an atomizing component 82, and a dehumidifying component 83. The second conveying component 81 is used for conveying distilled water, the atomizing component 82 is used for spraying out the atomized distilled water, and the dehumidifying component 83 is used to remove excess moisture from the wallpaper surface.
[0044] The static elimination mechanism 9 includes an ion release component 91, which is used to change the uniformity of the water mist and neutralize the static electricity on the wallpaper surface.
[0045] The function of the winding mechanism 2 is to drive the wallpaper movement. The winding and unwinding component 21 and the tightening component 22 are the same in shape and size, and the installation height of the tightening component 22 is slightly higher than that of the winding and unwinding component 21. Unhumidified wallpaper is wound around the winding and unwinding component 21, and humidified wallpaper is wound around the tightening component 22. Through the synchronous rotation of the winding and unwinding component 21 and the tightening component 22, the winding and unwinding component 21 can loosen the wallpaper, and the tightening component 22 can tighten the wallpaper, thereby completing the wallpaper conveying. The function of the drive mechanism 3 is to drive the winding and unwinding component 21 and the tightening component 22 to rotate. The first drive component 33 is installed on the outer surface of the right end of the machine tool 1. The first drive component 33 can be an electric motor, a servo motor, or an internal combustion engine. The function of the heating and stirring mechanism 4 is to heat and vaporize the liquid. The function of the stirring component 43 is to rotate to keep the liquid in motion so that the heating is more uniform, and it can also drive the flow guide component 62 to rotate. The function of the second drive component 5 is to drive the stirring component 43 to rotate. The function of the cooling and flow guide mechanism 6 is to cool and liquefy the gas and guide it. The guide component 62 is connected to the top of the agitator 43, which drives it to rotate, thus guiding the distilled water. The buffer mechanism 7 stores the distilled water and simultaneously delivers it to the interior of the humidification mechanism 8. The pumping component 73 can be a vane pump or a positive displacement pump. The humidification mechanism 8 atomizes and sprays the distilled water. One end of the second conveyor 81 is connected to the pumping component 73, and multiple atomizing components 82 are mounted on the surface of the second conveyor 81. The atomizing components 82 can be centrifugal atomizing nozzles, impact atomizing nozzles, or pressure atomizing nozzles. The surface of the dehumidifier 83 has conductive bristles that connect to the wallpaper by rolling, removing excess moisture and static electricity from the wallpaper surface. The antistatic mechanism 9 ensures that the water mist falls evenly on the wallpaper and removes static electricity from the wallpaper surface. Multiple ion release components 91 are installed on the surface of the machine tool 1 above the dehumidifier 83. The ion release components 91 can be AC ion fans or DC ion fans.
[0046] The surfaces of the take-up / release member 21 and the tightening member 22 are connected to a first transmission member 31 and a second transmission member 32. The first transmission member 31 is used to drive the rotation of the take-up / release member 21 and the tightening member 22, and the second transmission member 32 is used to drive the rotation of the dehumidifying member 83.
[0047] The take-up and release component 21 and the tightening component 22 can be driven by gears, chains, or belts. The first transmission component 31 is connected to the rotating shaft in the first drive component 33, and the first transmission component 31 and the second transmission component 32 are connected to the transmission position, thereby realizing the rotation of the take-up and release component 21, the tightening component 22, and the dehumidifying component 83.
[0048] The machine tool 1 is internally connected to a heating box 41 and a heating element 42. The heating box 41 is used to store liquid, and the heating element 42 is used to heat the liquid.
[0049] The heating box 41 is square in shape, and the heating element 42 can be a resistance heater or an electromagnetic induction heater.
[0050] The top of the machine tool 1 is connected to a cooling cover 61, which is used to cool and liquefy steam. A water receiving component 63 is connected inside the cooling cover 61, which is used to receive and discharge distilled water.
[0051] The top of the cooling cover 61 is conical and a condenser is installed inside. When steam flows upward and comes into contact with the top of the cooling cover 61, the vapor liquefies and condenses on the surface of the cooling cover 61. The water receiving part 63 is ring-shaped and connected to the bottom of the conical surface of the cooling cover 61. Distilled water can be guided to the inside of the water receiving part 63 by rotating the guide part 62.
[0052] The surface of the cooling cover 61 is connected to a first conveying member 71, which is used for conveying distilled water. The other end of the first conveying member 71 is connected to a buffer member 72, which is used for storing distilled water.
[0053] Distilled water that falls into the water receiving part 63 can flow into the buffer part 72 for storage through the first conveyor 71.
[0054] The surface of the ion-releasing component 91 is connected to a third transmission component 92 and a fourth transmission component 93. The third transmission component 92 is used to drive the multiple ion-releasing components 91 to rotate, and the fourth transmission component 93 is used to drive the ion-releasing component 91 connected to it to rotate.
[0055] The third transmission component 92 and the fourth transmission component 93 can be gear transmission, chain transmission, and belt transmission. The transmission part of the ion release component 91 is connected to the top of the guide component 62, and the fourth transmission component 93 is connected to the transmission part of the third transmission component 92, thereby realizing the synchronous rotation of the fan blades inside the ion release component 91.
[0056] The working principle of the humidification and static elimination device for wallpaper production and processing provided by this utility model is as follows:
[0057] The first drive unit 33 and the second drive unit 5 are activated. The second drive unit 5 drives the agitator 43 to rotate, stirring the liquid heated by the heater 42. After the heated liquid reaches a certain temperature, it vaporizes and flows upward, contacting the surface of the cooling shroud 61. The condenser inside the cooling shroud 61 cools the vapor, causing it to liquefy and condense at the top of the cooling shroud 61. Meanwhile, the agitator 43 drives the guide unit 62 to rotate, and the water vapor falls along the surface of the guide unit 62 into the interior of the water receiving unit 63. Then, it flows into the interior of the buffer unit 72 through the first conveyor 71. The pumping unit 73 pumps water from the buffer unit 72. After the distilled water is extracted from the wall, it is transported to the interior of the second conveyor 81. Then, it is atomized by the dehumidifier 83 and sprayed into the air. At this time, the third and fourth transmission components 92 and 93 drive multiple ion release components 91 to rotate and release positive ions, and blow the air and water mist evenly onto the wallpaper surface. The first and second transmission components 31 and 32 drive the release component 21, the tightening component 22 and the dehumidifier 83 to move. The release component 21 and the tightening component 22 transport the wallpaper. After passing over the surface of the dehumidifier 83, the dehumidifier 83 wipes away excess moisture and static electricity from the wallpaper surface.
[0058] Compared with related technologies, the humidifying and static-eliminating device for wallpaper production and processing provided by this utility model has the following beneficial effects:
[0059] This utility model provides a humidifying and antistatic device for wallpaper production and processing. The drive mechanism 3 drives the take-up and release component 21 and the tightening component 22 to rotate, thereby moving the wallpaper. At the same time, the heating and stirring mechanism 4 heats and vaporizes the liquid, which is then cooled and liquefied by the cooling and guiding mechanism 6 and transported to the interior of the buffer mechanism 7. Finally, it is atomized and sprayed out by the humidifying mechanism 8, and works in conjunction with the antistatic mechanism 9 to humidify and remove static electricity from the wallpaper surface, effectively preventing water accumulation and mold growth on the wallpaper surface. Example
[0060] Please refer to the following: Figure 4 Based on the first embodiment of this application which provides a humidifying and static-eliminating device for wallpaper production and processing, the second embodiment of this application proposes another humidifying and static-eliminating device for wallpaper production and processing. The second embodiment is merely a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the separate implementation of the first embodiment.
[0061] Specifically, the difference in the second embodiment of this application regarding the humidification and static elimination device for wallpaper production and processing is that the surface of the machine tool 1 is provided with a filter mechanism 10, which includes a filter component 101 and an impurity storage component 102. The filter component 101 is used to filter excess water after humidification, and the impurity storage component 102 is used to store the filtered impurities.
[0062] The function of the filtration mechanism 10 is to filter out excess water, realize the recycling of water, and facilitate the treatment of impurities.
[0063] The working principle of the humidification and static elimination device for wallpaper production and processing provided by this utility model is as follows:
[0064] After the atomizing component 82 sprays out water mist, excess water on the wallpaper surface, carrying impurities, falls onto the surface of the filter component 101. The water then flows into the interior of the heating box 41 through the filter component 101, while the impurities fall along the surface of the filter component 101 into the interior of the impurity storage component 102 for storage.
[0065] Compared with related technologies, the humidifying and static-eliminating device for wallpaper production and processing provided by this utility model has the following beneficial effects:
[0066] This utility model provides a humidifying and static-removing device for wallpaper production and processing. While filtering excess water through the filter component 101, it can also guide impurities into the impurity storage component 102, thereby saving water resources and facilitating cleaning.
[0067] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A humidifying and static-eliminating device for wallpaper production and processing, characterized in that, include: The machine tool and the winding mechanism include a winding and unwinding component and a tightening component, which are used to wind and unwind wallpaper by rotating together. A driving mechanism, the driving mechanism including a first driving member, the first driving member being used to drive the take-up member and the tightening member to rotate; A heating and stirring mechanism, the heating and stirring mechanism including a stirring element, the stirring element being used to stir a liquid; The second driving component is used to drive the stirring component to rotate; A cooling flow guiding mechanism, comprising a flow guiding element for guiding the flow of distilled water; A buffer mechanism, the buffer mechanism including a water pumping component, the water pumping component being used to increase the pressure of distilled water to complete the delivery; The humidification mechanism includes a second conveying component, an atomizing component, and a dehumidifying component. The second conveying component is used to convey distilled water, the atomizing component is used to spray out the atomized distilled water, and the dehumidifying component is used to remove excess moisture from the wallpaper surface. An antistatic mechanism, comprising an ion release component, which is used to change the uniformity of water mist and neutralize static electricity on the wallpaper surface.
2. The humidifying and static electricity removing device for wallpaper production and processing according to claim 1, characterized in that, The surfaces of the take-up and take-up components and the tightening components are connected to a first transmission component and a second transmission component. The first transmission component is used to drive the rotation of the take-up and take-up components and the tightening components, and the second transmission component is used to drive the rotation of the dehumidifying component.
3. The humidifying and static electricity removing device for wallpaper production and processing according to claim 1, characterized in that, The machine tool is internally connected to a heating box and a heating element. The heating box is used to store liquid, and the heating element is used to heat the liquid.
4. The humidifying and static electricity removing device for wallpaper production and processing according to claim 1, characterized in that, The top of the machine tool is connected to a cooling shroud, which is used to cool and liquefy steam. Inside the cooling shroud is a water receiving device for receiving and discharging distilled water.
5. The humidifying and static electricity removing device for wallpaper production and processing according to claim 4, characterized in that, The surface of the cooling shroud is connected to a first conveying member for conveying distilled water, and the other end of the first conveying member is connected to a buffer member for storing distilled water.
6. The humidifying and static electricity removing device for wallpaper production and processing according to claim 1, characterized in that, The surface of the ion-releasing component is connected to a third transmission component and a fourth transmission component. The third transmission component is used to drive multiple ion-releasing components to rotate, and the fourth transmission component is used to drive the ion-releasing component connected to it to rotate.
7. The humidifying and static electricity removing device for wallpaper production and processing according to claim 1, characterized in that, The surface of the machine tool is provided with a filtration mechanism, which includes a filter component and an impurity storage component. The filter component is used to filter out excess water after humidification, and the impurity storage component is used to store the filtered impurities.