Nameplate bottom membrane separating and stripping device
By designing a separation and defiling device for hot compress and adsorption and rolling of the nameplate, the problem of easily damaging the surface of the nameplate when removing the nameplate protective film in the prior art is solved, and an efficient and convenient film removal process is achieved.
Patent Information
- Application Number
- CN202421638378.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-11
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-07-11
AI Technical Summary
The prior art can easily damage the surface of the nameplate when removing the nameplate protective film, and the process is not labor-saving and convenient enough.
A device for separating and defiling of the base film of the nameplate is designed, which softens the film on the nameplate by hot compress, and adsorbs the film from the nameplate by adsorption and winding.
This device can efficiently remove the protective film on the nameplate without damaging the surface of the nameplate, and operate more conveniently and labor-saving.
Smart Images

Figure CN222833200U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of nameplate processing, in particular to a nameplate bottom film separation and demolding device. Background Art
[0002] As an important part of the nameplate, the base film plays a dual role of protection and support. It is not only the key to improving the overall performance and stability of the nameplate, but also ensures that the nameplate can maintain excellent performance under various complex environmental conditions. The main function of the base film is its protection and isolation effect, which can prevent the nameplate from external contamination and physical damage during processing, transportation and use.
[0003] Before the nameplate is installed and used, the protective film on the nameplate must be carefully removed in order to ensure the flatness of the nameplate surface and avoid bubbles during use. However, when the protective film is difficult to tear off, appropriate methods need to be adopted. Although using scissors to cut the protective film or using hot air to soften the film seems to be a quick way to solve the problem, doing so often leaves scratches on the nameplate surface or damages the nameplate surface due to local overheating when hot air is blown. Utility Model Content
[0004] The utility model aims to solve one of the technical problems in the related art at least to a certain extent.
[0005] To this end, the purpose of the utility model is to propose a nameplate bottom film separation and demolding device, which uses hot compress to soften the film on the nameplate without damaging the surface of the nameplate, and at the same time adsorbs the film from the nameplate by adsorption and winding, which is more labor-saving, convenient and efficient.
[0006] To achieve the above-mentioned purpose, the utility model proposes a nameplate bottom film separation and demolding device, comprising a hot compress component, a transmission component and a demolding component, wherein the hot compress component comprises a water tank, a heating pool, a hot compress layer and an interlayer, wherein the heating pool is arranged on the top wall of the water tank; the interlayer is arranged in the heating pool; the hot compress layer is arranged on the top wall of the interlayer; the transmission component is arranged on the water tank, and the transmission component comprises a top plate, a first driving component, a positioning baffle, an outer frame, a positioning card plate and a feeding mechanism, wherein the top plate is arranged on the water tank; the first driving component is a plurality of groups, and the plurality of groups of the first driving components are respectively arranged on the bottom wall of the top plate; the positioning baffle is a plurality of groups, and each group of the positioning baffle is correspondingly arranged at the bottom of the first driving component; the outer frame is arranged on the positioning baffle; the positioning card plate is a plurality of groups, and the plurality of groups of the positioning card plates are respectively arranged in the outer frame; the feeding mechanism is arranged on the outer frame; and the demolding component is arranged on the heating pool.
[0007] The nameplate bottom film separation and demolding device of the utility model adopts a method of hot compressing the nameplate to soften the film on the nameplate without damaging the surface of the nameplate, and at the same time, the film is adsorbed from the nameplate by an adsorption and rolling method, which is more labor-saving, convenient and efficient.
[0008] In addition, the nameplate bottom film separation and demolding device proposed in the application may also have the following additional technical features:
[0009] Specifically, the film removal assembly includes a fixed plate, an adsorption and winding mechanism, air holes, an air pump, an external fixed frame and a second driving component, wherein the fixed plate is arranged on the heating pool; the second driving component is arranged on the top wall of the fixed plate; the external fixed frame is arranged at the output end of the second driving component; the adsorption and winding mechanism is rotatably arranged on the external fixed frame; the air holes are divided into multiple groups, and the multiple groups of air holes are linearly arranged and opened on the adsorption and winding mechanism; the air pump is arranged on the external fixed frame, and the output end of the air pump is connected to the adsorption and winding mechanism.
[0010] Specifically, the adsorption and winding mechanism includes an outer shell, an inner tube and a suction nozzle, wherein the outer shell is rotatably arranged on the outer fixed frame; the inner tube is arranged in the outer shell, and the outer shell is connected to the air pump; the suction nozzle is in multiple groups, and the multiple groups of suction nozzles are linearly arranged and opened on the inner tube.
[0011] Specifically, the feeding mechanism includes a hollow sleeve, a movable shaft, an inner limit ring, an outer stop ring and a supporting base plate, wherein the hollow sleeve is arranged on the outer frame; the movable shaft is movably arranged on the hollow sleeve; the inner limit ring is arranged in the hollow sleeve; the outer stop ring is arranged on the movable shaft; and the supporting base plate is arranged on the bottom wall of the movable shaft.
[0012] Specifically, the outer stop ring is arranged above the inner limit ring, and the inner diameter of the outer stop ring is greater than the inner diameter of the inner limit ring.
[0013] Specifically, the center of the air hole and the center of the suction nozzle are arranged on the same axial plane, and the distance between the center of the air hole and the center of the suction nozzle is the minimum distance.
[0014] Additional aspects and advantages of the present invention will be given in part in the following description and in part will become apparent from the following description or will be learned through the practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0016] Figure 1This is a schematic structural diagram of a nameplate bottom film separation and demolding device according to an embodiment of the utility model;
[0017] Figure 2 This is a schematic diagram of the interlayer structure of a nameplate bottom film separation and demolding device according to an embodiment of the utility model;
[0018] Figure 3 This is a schematic diagram of the structure of the adsorption and winding mechanism of the nameplate bottom film separation and stripping device according to one embodiment of the utility model;
[0019] Figure 4 The present invention is a schematic diagram of the structure of the feeding mechanism of the nameplate bottom film separation and demolding device according to one embodiment of the present invention.
[0020] As shown in the figure: 10, hot compress assembly; 101, water storage tank; 102, heating pool; 103, hot compress layer; 104, interlayer; 20, transmission assembly; 201, top plate; 202, first drive component; 203, positioning baffle; 204, outer frame; 205, positioning card plate; 206, feeding mechanism; 2061, hollow sleeve; 2062, movable shaft; 2063, inner limit ring; 2064, outer baffle ring; 2065, supporting bottom plate; 30, demolding assembly; 301, fixed plate; 302, adsorption and winding mechanism; 3021, outer shell; 3022, inner through pipe; 3023, suction nozzle; 303, air hole; 304, air pump; 305, outer frame; 306, second drive component; 40, nameplate. DETAILED DESCRIPTION
[0021] Embodiments of the present invention are described in detail below, examples of which are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present invention, and should not be construed as limitations on the present invention. On the contrary, the embodiments of the present invention include all changes, modifications, and equivalents that fall within the spirit and connotation of the appended claims.
[0022] The nameplate bottom film separation and demolding device according to an embodiment of the utility model will be described below in conjunction with the accompanying drawings.
[0023] like Figure 1-4 As shown, the nameplate bottom film separation and demolding device of the embodiment of the utility model includes a hot compress component 10, a transmission component 20 and a demolding component 30.
[0024] The hot compress assembly 10 includes a water storage tank 101 , a heating pool 102 , a hot compress layer 103 and an interlayer 104 .
[0025] The heating pool 102 is arranged on the top wall of the water tank 101 , the partition 104 is arranged in the heating pool 102 , the hot compress layer 103 is arranged on the top wall of the partition 104 , and the transmission assembly 20 is arranged on the water tank 101 .
[0026] It should be noted that the partition 104 is made of alloy mesh, and the partition 104 is installed inside the heating pool 102. Then the hot compress layer 103 is laid on the top wall of the partition 104. Water is added to the heating pool 102 and the water tank 101, and the water in the water tank 101 is heated. The water vapor rises and penetrates the hot compress layer 103. The hot compress layer 103 performs hot compress on the nameplate 40 to be demolded, and the film on the nameplate 40 softens to facilitate demolding without damaging the nameplate 40.
[0027] The transmission assembly 20 includes a top plate 201 , a first driving component 202 , a positioning baffle 203 , an outer frame 204 , a positioning clamping plate 205 and a feeding mechanism 206 .
[0028] Among them, the top plate 201 is set on the water storage tank 101, the first driving components 202 are multiple groups, and the multiple groups of first driving components 202 are respectively set on the bottom wall of the top plate 201. The positioning baffles 203 are multiple groups, and each group of positioning baffles 203 is correspondingly set at the bottom of the first driving component 202. The outer frame 204 is set on the positioning baffles 203, the positioning card plates 205 are multiple groups, and the multiple groups of positioning card plates 205 are respectively set in the outer frame 204, the feeding mechanism 206 is set on the outer frame 204, and the film stripping assembly 30 is set on the heating pool 102.
[0029] It should be noted that the top plate 201 is set on the outer wall of the water tank 101 through a support frame, the first driving component 202 is a cylinder, and the first driving component 202 is connected to the control switch and the power supply to drive the outer frame 204 to move up and down. The positioning card plate 205 is an L-shaped card plate, and the nameplate 40 is installed between the four groups of positioning card plates 205. The L-shaped card plate can move and adjust the position of the upper limit on the outer frame 204, and the nameplate 40 is fixed according to the size of the nameplate 40.
[0030] Furthermore, in order to facilitate adjusting the position of the positioning card plate 205 on the outer frame 204 according to the size of the nameplate 40, a slide groove is provided on the outer frame 204, and a slider is provided on the positioning card plate 205. The slider slides in the slide groove to a limited position, so as to debug and reinforce the nameplate 40 according to the size of the nameplate 40.
[0031] Specifically, the steps of stripping the film on the nameplate 40 are as follows: the nameplate 40 is fixed and placed on the inner wall of the outer frame 204 by the positioning card plate 205, and the first driving component 202 is operated to drive the outer frame 204 to move downward, thereby driving the nameplate 40 to fit on the surface of the thermal coating layer 103. The water storage tank 101 is heated, and the water evaporates and rises and soaks the thermal coating layer 103. The thermal coating layer 103 heats the film attached to the nameplate 40 to soften the film and the adhesive. Then the stripping assembly 30 moves to the bottom of the nameplate 40, adsorbs the film on the nameplate 40, and rolls up the film in the subsequent movement to complete the stripping.
[0032] In one embodiment of the present invention, Figure 1 As shown, the film stripping assembly 30 includes a fixed plate 301 , an adsorption and winding mechanism 302 , air holes 303 , an air pump 304 , an outer fixing frame 305 and a second driving component 306 .
[0033] The fixed plate 301 is arranged on the heating pool 102, the second driving component 306 is arranged on the top wall of the fixed plate 301, the outer fixed frame 305 is arranged at the output end of the second driving component 306, and the adsorption and winding mechanism 302 is rotatably arranged on the outer fixed frame 305. There are multiple groups of air holes 303, and the multiple groups of air holes 303 are linearly arranged and opened on the adsorption and winding mechanism 302. The air pump 304 is arranged on the outer fixed frame 305, and the output end of the air pump 304 is connected to the adsorption and winding mechanism 302.
[0034] It should be noted that the second driving component 306 is a cylinder, which is operated by controlling the switch and the power supply to push the outer frame 305 to move on the top wall of the fixed plate 301. When the adsorption and reeling mechanism 302 and the bottom of the nameplate 40 are in contact, the air pump 304 is operated to adsorb the film through the air hole 303, and the film is gently pulled off the nameplate 40. In the subsequent continuous operation of the second driving component 306, the film is reeled on the adsorption and reeling mechanism 302.
[0035] In one embodiment of the present invention, Figure 3 As shown, the adsorption and winding mechanism 302 includes an outer shell 3021 , an inner tube 3022 and a suction nozzle 3023 .
[0036] The outer shell 3021 is rotatably disposed on the outer frame 305 , the inner tube 3022 is disposed in the outer shell 3021 , and the outer shell 3021 is connected to the air pump 304 , and the suction nozzles 3023 are in multiple groups, and the multiple groups of suction nozzles 3023 are linearly arranged and opened on the inner tube 3022 .
[0037] It should be noted that a bearing seal ring is provided at the connection between the inner tube 3022 and the air pump 304 . When the inner tube 3022 rotates synchronously with the outer shell 3021 , the operation of the air pump 304 is not affected. The suction nozzle 3023 is located directly below the air hole 303 .
[0038] Furthermore, in order to ensure that the pore 303 has a better adsorption force when adsorbing the film, a suction cup is provided on the pore 303, and the suction cup is a plastic suction cup. When the pore 303 is attached to the surface of the film at the bottom of the nameplate 40, the suction cup is adsorbed on the surface of the film with good air tightness, and then the film is gently pulled off the nameplate 40 by suction through the air pump 304.
[0039] In one embodiment of the present invention, Figure 4 As shown, the feeding mechanism 206 includes a hollow sleeve 2061 , a movable shaft 2062 , an inner limit ring 2063 , an outer stop ring 2064 and a supporting base plate 2065 .
[0040] Among them, the hollow sleeve 2061 is set on the outer frame 204, the movable shaft 2062 is movably set on the hollow sleeve 2061, the inner limit ring 2063 is set in the hollow sleeve 2061, the outer stop ring 2064 is set on the movable shaft 2062, and the support base plate 2065 is set on the bottom wall of the movable shaft 2062.
[0041] It should be noted that the movable shaft 2062 is limitedly placed in the hollow sleeve 2061 and can move up and down. When the nameplate 40 is demolded, the supporting base plate 2065 is located on the outside of the nameplate 40. When the nameplate 40 is demolded, the movable shaft 2062 is rotated to drive the supporting base plate 2065 to rotate to the bottom of the nameplate 40, and the movable shaft 2062 is pulled upward to make the supporting base plate 2065 drive the nameplate 40 to be moved out of the outer frame 204 and replace the nameplate 40 to be demolded.
[0042] In one embodiment of the present invention, Figure 4 As shown, the outer stop ring 2064 is arranged above the inner limit ring 2063, and the inner diameter of the outer stop ring 2064 is larger than the inner diameter of the inner limit ring 2063.
[0043] It should be noted that the outer stop ring 2064 limits the movable shaft 2062 when it moves, thereby limiting the height of the movable shaft 2062 in the hollow sleeve 2061 .
[0044] In one embodiment of the present invention, Figure 1 and Figure 2 As shown, the center of the air hole 303 and the center of the suction nozzle 3023 are arranged on the same axial plane, and the distance between the center of the air hole 303 and the center of the suction nozzle 3023 is the minimum distance.
[0045] The distance between the air hole 303 and the suction nozzle 3023 is at the smallest position, so the adsorption force is stronger when the air pump 304 is running, and the efficiency is higher when stripping the film.
[0046] The steps of separating and removing the bottom film of the nameplate 40 of the present application are as follows: the nameplate 40 is fixedly placed in the inner wall of the outer frame 204 by the positioning card plate 205, and the first driving component 202 is operated to drive the outer frame 204 to move downward, thereby driving the nameplate 40 to adhere to the surface of the heat-coating layer 103. The water storage tank 101 is heated, and the water evaporates and rises to penetrate the heat-coating layer 103, and the heat-coating layer 103 heats the film adhered to the nameplate 40 to soften the film and the adhesive.
[0047] The first driving component 202 is operated again to drive the outer frame 204 to move upward, so that the heat-coating layer 103 and the nameplate 40 are separated, and then the film stripping component 30 moves to the bottom of the nameplate 40 to adsorb the film on the nameplate 40, and the second driving component 306 is operated to push the outer frame 305 to move on the top wall of the fixed plate 301. When the adsorption and winding mechanism 302 and the bottom of the nameplate 40 are in contact, the air pump 304 is operated to adsorb the film through the air hole 303, and the film is gently pulled off the nameplate 40, and the film is rolled up on the adsorption and winding mechanism 302 during the subsequent continuous operation of the second driving component 306. The film is rolled up in the subsequent movement to complete the film stripping.
[0048] In summary, the nameplate bottom film separation and demolding device of the embodiment of the utility model adopts the method of hot compressing the nameplate to soften the film on the nameplate without damaging the surface of the nameplate, and at the same time, the film is adsorbed from the nameplate by adsorption and rolling, which is more labor-saving, convenient and efficient.
[0049] Although the embodiments of the present invention have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations of the present invention. Ordinary technicians in this field can change, modify, replace and deform the above embodiments within the scope of the present invention.
Claims
1. A nameplate bottom film separation and demolding device, characterized in that: It comprises a hot compress component (10), a transmission component (20) and a demolding component (30), wherein: The hot compress assembly (10) comprises a water storage tank (101), a heating pool (102), a hot compress layer (103) and an isolation layer (104), wherein: The heating pool (102) is arranged on the top wall of the water storage tank (101); The partition layer (104) is arranged in the heating pool (102); The hot compress layer (103) is arranged on the top wall of the partition layer (104); The transmission assembly (20) is arranged on the water storage tank (101), and comprises a top plate (201), a first driving component (202), a positioning baffle (203), an outer frame (204), a positioning clamping plate (205) and a feeding mechanism (206), wherein: The top plate (201) is arranged on the water storage tank (101); The first driving components (202) are multiple groups, and the multiple groups of the first driving components (202) are respectively arranged on the bottom wall of the top plate (201) The positioning baffles (203) are multiple groups, and each group of the positioning baffles (203) is correspondingly arranged at the bottom of the first driving component (202); The outer frame (204) is arranged on the positioning baffle (203); The positioning clamping plates (205) are multiple groups, and the multiple groups of positioning clamping plates (205) are respectively arranged in the outer frame (204); The feeding mechanism (206) is arranged on the outer frame (204); The film stripping assembly (30) is arranged on the heating pool (102).
2. The nameplate bottom film separation and demolding device according to claim 1, characterized in that: The film stripping assembly (30) comprises a fixed plate (301), an adsorption and winding mechanism (302), air holes (303), an air pump (304), an external fixed frame (305) and a second driving component (306), wherein: The fixed plate (301) is arranged on the heating pool (102); The second driving component (306) is arranged on the top wall of the fixed plate (301); The external fixing frame (305) is arranged at the output end of the second driving component (306); The adsorption and rolling mechanism (302) is rotatably arranged on the outer fixed frame (305); The air holes (303) are in a plurality of groups, and the plurality of groups of air holes (303) are linearly arranged and opened on the adsorption and winding mechanism (302); The air pump (304) is arranged on the outer fixing frame (305), and the output end of the air pump (304) is connected to the adsorption and winding mechanism (302).
3. The nameplate bottom film separation and demolding device according to claim 2, characterized in that: The adsorption and rolling mechanism (302) comprises an outer shell (3021), an inner tube (3022) and a suction nozzle (3023), wherein: The outer shell (3021) is rotatably disposed on the outer fixing frame (305); The inner through tube (3022) is disposed in the outer shell (3021), and the outer shell (3021) is connected to the air pump (304); The suction nozzles (3023) are in multiple groups, and the multiple groups of suction nozzles (3023) are linearly arranged and opened on the inner tube (3022).
4. The nameplate bottom film separation and demolding device according to claim 1, characterized in that: The feeding mechanism (206) comprises a hollow sleeve (2061), a movable shaft (2062), an inner limit ring (2063), an outer stop ring (2064) and a supporting bottom plate (2065), wherein: The hollow sleeve (2061) is arranged on the outer frame (204); The movable shaft (2062) is movably arranged on the hollow sleeve (2061); The inner limiting ring (2063) is arranged inside the hollow sleeve (2061); The outer retaining ring (2064) is arranged on the movable shaft (2062); The supporting base plate (2065) is arranged on the bottom wall of the movable shaft (2062).
5. The nameplate bottom film separation and demolding device according to claim 4, characterized in that: The outer retaining ring (2064) is arranged above the inner limiting ring (2063), and the inner diameter of the outer retaining ring (2064) is greater than the inner diameter of the inner limiting ring (2063).
6. The nameplate bottom film separation and demolding device according to claim 3, characterized in that: The center of the air hole (303) and the center of the suction nozzle (3023) are arranged on the same axial plane, and the distance between the center of the air hole (303) and the center of the suction nozzle (3023) is the minimum distance.