Capacitive screen static electricity eliminating device
Through the design of the frame and clamping mechanism, the electrostatic discharge device for capacitive touch screens can adapt to capacitive touch screens of different specifications, solving the fixation problem, achieving efficient electrostatic discharge treatment, and improving detection efficiency.
Patent Information
- Application Number
- CN202520338598.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-28
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2035-02-28
AI Technical Summary
Existing electrostatic discharge devices for capacitive touchscreens are not convenient for fixing capacitive touchscreens of different specifications, resulting in low detection efficiency.
A static eliminator for capacitive touchscreens, comprising a frame and a clamping mechanism, was designed. By combining a lifting seat and a static eliminator roller, the height of the capacitive touchscreen and the position of the baffle can be adjusted to accommodate capacitive touchscreens of different thicknesses and lengths, achieving stable fixation and static elimination.
It enables rapid fixation and efficient static elimination of capacitive touchscreens of different specifications, improves testing efficiency, and avoids the hassle of changing fixtures.
Smart Images

Figure CN223639424U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of static electricity removing device, concretely is the capacitive screen static electricity removing device. BACKGROUND
[0002] Capacitive screen utilizes the capacitive characteristic of human body or object to perceive touch position. Specifically, when the finger or other conductive object contacts the screen, it will produce a slight capacitance change in the capacitive field of the screen. The influence of static electricity on capacitive screen cannot be ignored. Static discharge may cause capacitive screen touch failure, display abnormality and even screen damage, especially in high-frequency and high-intensity use scenarios such as smart phones, tablet computers and other mobile devices, the static electricity problem is particularly prominent, therefore, the application of capacitive screen static electricity removing device is particularly important.
[0003] The existing capacitive screen static electricity removing device is inconvenient to fix different specifications of capacitive screen during use, different clamps need to be replaced when fixing different specifications of capacitive screen, which is time-consuming and laborious, affects the detection efficiency of capacitive screen, and is not conducive to use. SUMMARY
[0004] In order to make up for the shortcomings of the prior art and solve the problem that the capacitive screen static electricity removing device is inconvenient to fix different specifications of capacitive screen in the prior art, the utility model provides a capacitive screen static electricity removing device.
[0005] The utility model solves the technical scheme that adopts technical scheme: provide a kind of capacitive screen static electricity removing device, including frame and clamping mechanism, the frame includes bottom plate, two first side plates respectively erected in the left and right sides of the bottom plate and two second side plates respectively erected in the front and back sides of the bottom plate, the clamping mechanism is located in the frame interior, the top of the frame is equipped with top plate by support frame, and the bottom of the top plate is equipped with static electricity removing roller;
[0006] The clamping mechanism includes a lifting seat erected on the second side plate, each second side plate is provided with an inclined adjusting groove, the inside of the lifting seat is fixedly connected with a first motor, the output end of the first motor is fixedly connected with a first screw rod, the surface of each first screw rod is threadedly provided with a first screw sleeve, the front side and the rear side of the bottom of the first screw sleeve are downwardly extended with an adjusting frame, the bottom end of each adjusting frame is fixedly connected with an adjusting rod, and the adjusting rod is one-to-one corresponding and slidably inserted into the adjusting groove to drive the lifting seat to move up and down.
[0007] In an embodiment, each of the second side plates is provided with two adjusting grooves, and the two adjusting grooves form an inverted "8" shape; the first motor is provided with an output end on each side, and each output end is fixedly connected with a first screw rod, so that the first motor simultaneously drives four adjusting frames to slide along four adjusting grooves in a one-to-one correspondence.
[0008] In an embodiment, the threads on the surfaces of the two first screw rods are opposite.
[0009] In an embodiment, the clamping structure further comprises two hand wheels and two baffles, the two hand wheels are rotatably connected with the top portions of the two first side plates in a one-to-one correspondence through a second screw rod, the surface of the second screw rod is provided with a second screw sleeve, the second screw sleeve is fixedly connected with the baffle, the top portion of each of the two first side plates is provided with a through groove, and one end of each of the two baffles is slidably inserted into the through groove of the corresponding first side plate.
[0010] In an embodiment, the clamping mechanism further comprises at least two sliding blocks and at least two sliding rails, the bottom portion of each baffle is fixedly connected with at least one sliding block, the position of each sliding block is provided with a sliding rail in correspondence, one end of each sliding rail is fixedly connected with the corresponding first side plate perpendicularly, and each sliding block is slidably connected to the sliding rail in a one-to-one correspondence.
[0011] In an embodiment, the surface of the hand wheel is provided with anti-skid lines.
[0012] In an embodiment, the bottom portion of the top plate is provided with two sliding rods in a spaced and parallel manner, the surface of each sliding rod is provided with two sliding sleeves in a spaced manner, the bottom portion of each sliding sleeve is fixedly connected with a moving frame, the number of the static electricity removing rollers is two, and each static electricity removing roller is installed between two opposite moving frames through a rotating shaft.
[0013] In an embodiment, the capacitive screen static electricity removing device further comprises a second motor, a rotating disc and a moving shell, the second motor is installed on the top surface of the top plate, the output end of the second motor penetrates through the top plate and is fixedly connected with the rotating disc, the bottom portion of the rotating disc is fixedly connected with a rotating column, the center of the moving shell is provided with a strip-shaped groove, the rotating column is slidably inserted into the strip-shaped groove of the moving shell, and the two ends of the moving shell are fixedly connected with two moving blocks, and the moving blocks are fixedly connected with the moving frames.
[0014] The capacitive screen static electricity removing device has the advantages that:
[0015] 1. This utility model, by setting a clamping mechanism, allows for adjustment of the height of the lifting platform. The capacitive touchscreen is placed on the lifting platform, which moves the touchscreen upward to a predetermined position. Then, an antistatic roller contacts the touchscreen placed on the lifting platform, thereby removing static electricity from the touchscreen. Touchscreens of different thicknesses can be moved to the predetermined position by the lifting platform and have their static electricity removed by the antistatic roller. Different thickness touchscreens do not require different clamps for fixation, thus improving the detection efficiency of the touchscreen.
[0016] 2. This utility model, by incorporating a handwheel, allows for horizontal adjustment of the baffle position. This enables the spacing between the two baffles to be adjusted according to the different lengths of the capacitive touchscreen, allowing the touchscreen placed on the lifting platform to gradually move closer to the baffles until it is firmly against them during the lifting process. The combination of the baffles and the lifting platform facilitates the fixing of capacitive touchscreens of different specifications.
[0017] 3. By setting a slide rail, this utility model can limit the movement range of the slider; by combining the slider and the slide rail, the stability of the baffle movement can be improved. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the overall structure of the electrostatic discharge device for the capacitor screen of this utility model.
[0020] Figure 2 The connection method between the top plate and the static elimination roller of the electrostatic elimination device for capacitive touch screens of this utility model is shown.
[0021] Figure 3 The connection method between the turntable and the movable shell of the electrostatic discharge device for capacitive screens of this utility model is shown.
[0022] Figure 4 This is a structural cross-sectional view of the lifting base of the electrostatic eliminator for the capacitor screen of this utility model;
[0023] Figure 5 The connection method between the frame, baffle and handwheel of the electrostatic discharge device for capacitive screen of this utility model is shown.
[0024] In the figure: 1, frame; 101, bottom plate; 102, first side plate; 103, second side plate; 2, clamping mechanism; 201, lifting seat; 202, hand wheel; 204, adjusting groove; 205, first motor; 206, first screw; 207, first screw sleeve; 208, adjusting frame; 209, adjusting rod; 210, second screw; 211, second screw sleeve; 212, baffle; 213, sliding block; 214, sliding rail; 3, support frame; 4, top plate; 5, static electricity removing roller; 6, sliding rod; 7, sliding sleeve; 8, moving frame; 9, mounting block; 10, second motor; 11, rotating disc; 12, rotating column; 13, moving shell; 14, moving block. DETAILED DESCRIPTION
[0025] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0026] The drawings will be described below Figures 1-5 The application will be further described in detail.
[0027] The embodiments of the application disclose a static electricity removing device for a capacitive screen. Referring to Figures 1-5 The static electricity removing device for a capacitive screen comprises a frame 1 and a clamping mechanism 2. The frame 1 comprises a bottom plate 101, two first side plates 102 vertically erected on the left and right sides of the bottom plate 101, and two second side plates 103 vertically erected on the front and back sides of the bottom plate 101. In this way, the two first side plates 102 and the two second side plates 103 enclose a space, and the clamping mechanism 2 is located inside the frame 1, that is, the clamping mechanism 2 is located in the space enclosed by the first side plates 102 and the second side plates 103.
[0028] The top of the frame (1) is provided with a top plate (4) through a support frame (3), and the bottom of the top plate (4) is provided with a static electricity removing roller (5). Specifically, the top of each of the two first side plates 102 of the frame 1 is fixedly connected with a support frame 3, so that the number of support frames 3 is at least two. In the embodiment shown in the figure, the number of support frames 3 is four, and one support frame 3 is vertically fixedly connected on the front and back sides of each first side plate 102, so that the four support frames 3 are located at the four corner positions of the frame 1. The top of the support frame 3 is fixedly connected with the top plate 4, in other words, the top plate 4 is erected on the plurality of support frames 3, and the support frames 3 serve to support the top plate 4. The bottom of the top plate 4 is provided with the static electricity removing roller 5. The number of static electricity removing rollers 5 can be one or more. For example, in the embodiment shown in the figure, the number of static electricity removing rollers 5 is two, and the two static electricity removing rollers 5 are symmetrically arranged on the top plate 4. Figure 1 Figure 1 In the shown embodiment, the number of electrostatic rollers 5 is two, and the two electrostatic rollers 5 are spaced apart and arranged in parallel.
[0029] The clamping mechanism 2 comprises a lifting seat 201 arranged on the second side plate 103, and the left and right inner walls of the lifting seat 201 can slide up and down along the two first side walls 12 of the frame 1, respectively. Each second side plate 103 is provided with an inclined adjusting groove 204, and the two adjusting grooves 204 of each second side plate 103 form an inverted "8" shape. Figure 1 In the shown embodiment, the adjusting groove 204 is a long slot penetrating through the thickness direction of the second side plate 103; in other embodiments, the adjusting groove 204 can also not penetrate through the second side plate 103.
[0030] The lifting seat 201 is generally in the shape of a box, and the lifting seat 201 has a top surface for placing the capacitive screen. The inside of the lifting seat 201 has a cavity and is fixedly connected with a first motor 205. The output end of the first motor 205 is fixedly connected with a first screw rod 206, the surface of the first screw rod 206 is threadedly sleeved with a first screw sleeve 207, and the front side and the rear side of the bottom of the first screw sleeve 207 extend downward to form an adjusting bracket 208. The bottom end of the adjusting bracket 208 penetrates to the bottom of the lifting seat 201 and extends downward to the position of the adjusting groove 204, and the bottom end of each adjusting bracket 208 is fixedly connected with an adjusting rod 209. The adjusting rod 209 extends horizontally from the bottom end position of the adjusting bracket 208, so that the adjusting rod 209 is perpendicular to the adjusting bracket 208. The adjusting rod 209 is one-to-one corresponding and slidably inserted into the adjusting groove 204 to drive the lifting seat 201 to move up and down.
[0031] In Figure 1 In the shown embodiment, the first motor 205 has two output ends respectively located on both sides, and the two output ends of the first motor 205 are fixedly connected with one first screw rod 206, and the surface of each first screw rod 206 is threadedly sleeved with one first screw sleeve 207. The front side and the rear side of the bottom of the first screw sleeve 207 extend downward to form an adjusting bracket 208, and the bottom end of each adjusting bracket 208 is fixedly connected with an adjusting rod 209. In this way, the number of adjusting brackets 208 and adjusting rods 209 is four, and the four adjusting brackets 208 are parallel and spaced apart. Each second side plate 103 is provided with an inclined adjusting groove 204, and the two adjusting grooves 204 of each second side plate 103 form an inverted "8" shape, so that there are four adjusting grooves 204 in total. The four adjusting rods 209 are one-to-one corresponding and slidably inserted into the four adjusting grooves 204.
[0032] When the first motor 205 is running, the first motor 205 drives the first screw rod 206 to rotate, the first screw rod 206 drives the corresponding adjusting frame 208 to move through the first screw sleeve 207, and the adjusting frame 208 drives the adjusting rod 209 to slide along the corresponding adjusting groove 204.
[0033] It can be understood that in other embodiments, an inclined adjusting groove 204 can also be formed in each second side plate 103, the first motor 205 can have an output end and be fixedly connected with a first screw rod 206, the surface of the first screw rod 206 is sleeved with a first screw sleeve 207, the front side and the rear side of the bottom of the first screw sleeve 207 extend downward to form two adjusting frames 208, and the bottom end of each adjusting frame 208 is fixedly connected with an adjusting rod 209. The two adjusting rods 209 are respectively and correspondingly inserted into the adjusting grooves 204 of the two second side plates 103 in a slidable manner, so that when the first motor 205 drives the adjusting rod 209 to slide along the adjusting groove 204 through the first screw rod 206, the first screw sleeve 207 and the adjusting frame 208, the adjusting rod 209 can drive the lifting seat 201 to move up and down.
[0034] In the process of removing static electricity, first, the capacitive screen is placed on the lifting seat 201, then the first motor 205 is started to drive the first screw rod 206 to rotate, the first screw rod 206 drives the adjusting rod 209 to slide along the adjusting groove through the first screw sleeve 207 and the adjusting frame 208, so that the adjusting rod 209 drives the lifting seat 201 to move upward until the capacitive screen moves to a predetermined position, the static electricity removing roller 5 located at the top of the top plate 4 can contact the capacitive screen and guide the static electricity on the capacitive screen to the ground, so that the static electricity is removed. The first motor 205 is driven in reverse again, so that the adjusting rod 209 drives the lifting seat 201 to descend until the lifting seat 201 stops when the lifting seat 201 contacts the second side plate 103, the capacitive screen and the static electricity removing roller 5 are separated, and the capacitive screen can be taken out at this time.
[0035] The capacitive screen is placed on the lifting seat 201, the lifting seat 201 drives the capacitive screen to move upward to a predetermined position, and then the static electricity removing roller 5 contacts the capacitive screen placed on the lifting seat 201, so that the capacitive screen is subjected to static electricity removal. In this way, capacitive screens of different thicknesses can be moved to a predetermined position by the lifting seat 201 and subjected to static electricity removal by the static electricity removing roller 5, and capacitive screens of different thicknesses do not need to be fixed by different clamps, so that the detection efficiency of the capacitive screen is improved.
[0036] In an embodiment, the first motor 205 has two outputs, and each output is fixedly connected with a first screw rod 206. The surface of each first screw rod 206 is threaded with a first screw sleeve 207. The front side and the back side of the bottom of each first screw sleeve 207 extend downwardly to form an adjusting frame 208. The bottom end of each adjusting frame 208 is fixedly connected with an adjusting rod 209. Thus, there are four adjusting frames 208 and four adjusting rods 209. The four adjusting frames 208 are parallel and spaced apart. Each second side plate 103 is provided with two adjusting grooves 204, and the two adjusting grooves 204 form an inverted "8" shape. Thus, there are four adjusting grooves 204 in total. The four adjusting rods 209 are one-to-one corresponding and slidably inserted into the four adjusting grooves 204. When the first motor 205 operates, the first motor 205 simultaneously drives the two first screw rods 206 to rotate. Each first screw rod 206 drives the two adjusting rods 209 to move along the adjusting grooves 204 through the corresponding first screw sleeve 207 and adjusting frame 208. That is, the first motor 205 actually simultaneously drives the four adjusting frames 208 to slide along the four adjusting grooves 204 one-to-one corresponding. Thus, the lifting seat 201 is actually simultaneously subjected to the forces of the four adjusting rods 209 distributed in different positions during the lifting movement of the lifting seat 201. The forces of the four adjusting rods 209 are synchronous and in the same direction, which can make the movement of the lifting seat 201 more stable.
[0037] In an embodiment, the threads on the surfaces of the two first screw rods 206 are opposite. Thus, when the first motor 205 operates, the two first screw rods 206 rotate in opposite directions. Thus, the two first screw sleeves 207 threaded with the two first screw rods 206 move in opposite directions, and further drive the respective adjusting rods 209 to move in opposite directions along the two adjusting grooves 204 in the inverted "8" shape, thereby synchronously driving the lifting seat 201 to rise or fall.
[0038] In an embodiment, the clamping mechanism 2 comprises two hand wheels 202 and two baffles 212, the two hand wheels 202 are respectively connected to the top of the two first side plates 102. Specifically, the two hand wheels 202 are respectively rotatably connected to the top of the two first side plates 102 through a second screw 210, one end of the second screw 210 is rotatably connected to the first side plate 102, and the hand wheel 202 is installed on the other end of the second screw 210. The surface of the second screw 210 is threadedly sleeved with a second sleeve 211, and the top of the second sleeve 211 is fixedly connected with the baffle 212. The top of the two first side plates 102 is provided with a through groove, one end of the two baffles 212 is respectively and slidably inserted into the through groove of the two first side plates 102, so that the end of the baffle 212 extends into the cavity inside the frame 1. When the first motor 205 operates and drives the lifting seat 201 to move upward, the capacitor screen placed on the lifting seat 201 gradually approaches and abuts against the baffle 212, and the two baffles 212 respectively limit the positions of the two sides of the capacitor screen. By adjusting the hand wheel 202, the second screw 210 can be driven to rotate, the second screw 210 drives the baffle 212 to move horizontally through the second sleeve 211, so that the length of the baffle 212 extending into the frame 1 can be adjusted according to the length of the capacitor screen, to ensure that the two baffles 212 can limit and press the capacitor screen of different lengths. Through the combination of the lifting seat 201 and the baffle 212, different specifications of capacitor screens can be fixed.
[0039] In an embodiment, referring to Figure 1 and Figure 5 , the clamping mechanism 2 further comprises at least two sliding blocks 213 and at least two sliding rails 214, at least one sliding block 213 is fixedly connected to the bottom of each baffle 212, and one sliding rail 214 is provided at a position corresponding to each sliding block 213, one end of the sliding rail 214 is fixedly connected with the corresponding first side plate 102, and the sliding block 213 is slidably connected with the sliding rail 214 one by one. In the illustrated embodiment, the front side and the rear side of the bottom of each baffle 212 are fixedly connected with the sliding block 213, that is, the bottom of each baffle 212 is fixedly connected with two sliding blocks 213. The bottom of each sliding block 213 is provided with a sliding rail 214. One end of the sliding rail 214 is fixedly connected with the corresponding first side plate 102. In this way, the four sliding blocks 213 are connected with the four sliding rails 214 one by one. By providing the sliding rail 214, the movement range of the sliding block 213 can be limited; by providing the sliding block 213 and the sliding rail 214, the stability of the movement of the baffle 212 can be improved.
[0040] In an embodiment, the surface of the hand wheel 202 is provided with anti-skid lines, so that the user can adjust the hand wheel 202, increase the friction, and prevent slipping.
[0041] In an embodiment, referring to Figure 1 , Figure 4 and Figure 5 , one end of the first screw rod 206 is rotatably connected with the inner wall of the lifting seat 201 through a first bearing, and one end of the second screw rod 210 is rotatably connected with the first side plate 102 of the frame 1 through a second bearing. By arranging the first bearing, the rotation of the first screw rod 206 can be facilitated; by arranging the second bearing, the rotation of the second screw rod 210 can be facilitated.
[0042] In an embodiment, two slide rods 6 are arranged at the bottom of the top plate 4 in parallel, two slide sleeves 7 are arranged on the surface of each slide rod 6 in parallel, a moving frame 8 is fixedly connected to the bottom of each slide sleeve 7, and the number of the electrostatic elimination rollers 5 is two. Each electrostatic elimination roller 5 is arranged between the opposite two moving frames 8 through a rotating shaft.
[0043] Referring to Figure 1 , Figure 2 and Figure 3 , the front side and the rear side of the bottom of the top plate 4 are provided with slide rods 6, and the two ends of each slide rod 6 are fixedly connected with mounting blocks 9, and the top of the mounting block 9 is fixedly connected with the top plate 4, so that the slide rod 6 is arranged at the bottom of the top plate 4. The surface of each slide rod 6 is sleeved with two slide sleeves 7, and the bottom of each slide sleeve 7 is fixedly connected with a moving frame 8, so that there are four moving frames 8 in total. The bottom of the opposite side of each of the two moving frames 8 is connected with the two ends of a rotating shaft, respectively, and the electrostatic elimination roller 5 is rotatably sleeved on the outer periphery of the rotating shaft. The two electrostatic elimination rollers 5 are arranged at the bottom of the top plate 4 in parallel and in parallel through the four moving frames 8. By arranging the mounting block 9, the slide rod 6 can be fixed. By arranging the slide rod 6, the slide sleeve 7 and the moving frame 8, the electrostatic elimination roller 5 can be moved along the slide rod 6, so that the electrostatic elimination roller 5 rolls along the capacitive screen to eliminate the static electricity on the capacitive screen in all directions.
[0044] In an embodiment, the capacitive screen electrostatic elimination device further comprises a second motor 10, a rotating disc 11 and a moving shell 13. The second motor 10 is arranged on the top surface of the top plate 4, the output end of the second motor 10 penetrates the top plate 4 and is fixedly connected with the rotating disc 11, the bottom of the rotating disc 11 is fixedly connected with a rotating column 12, the moving shell 13 has a slot at the center, the rotating column 12 is slidably inserted into the slot of the moving shell 13, and the two ends of the moving shell 13 are fixedly connected with two moving blocks 14, and the moving blocks 14 are fixedly connected with the moving frames 8.
[0045] As Figures 1 to 3As shown, the top surface of the top plate 4 is fixedly provided with a second motor 10, the output end of the second motor 10 penetrates to the bottom of the top plate 4 and is fixedly connected with a rotating disc 11, the bottom of the rotating disc 11 is fixedly connected with a rotating column 12, and the rotating column 12 is located at the bottom edge position of the rotating disc 11. The moving shell 13 is in a strip shape, and the center of the moving shell 13 has a strip-shaped slot penetrating through itself. The surface of the rotating column 12 is slidably connected to the inner wall of the strip-shaped slot of the moving shell 13, so that the moving shell 13 is sleeved on the outer periphery of the rotating column 12. Both ends of the moving shell 13 are fixedly connected with two moving blocks 14, and the number of the moving blocks 14 is four. The four moving blocks 14 are fixedly connected with the four moving frames 8 in a one-to-one correspondence. Turning on the second motor 10 can drive the rotating disc 11 and the rotating column 12 to rotate, and the rotating column 12 will slide in the strip-shaped slot of the moving shell 13 while rotating. Since the two ends of the moving shell 13 are fixedly connected to the moving frames 8 through the moving blocks 14, the moving range of the moving shell 13 is limited, so that the rotating column 12 can drive the moving shell 13 to reciprocate left and right, and the moving shell 13 further drives the static electricity roller 5 to reciprocate left and right through the moving blocks 14 and the moving frames 8, so that the static electricity roller 5 rolls on the capacitive screen to eliminate static electricity.
[0046] Working principle: place the capacitive screen to be treated on the lifting seat 201, then rotate the second screw rod 210 through the cooperation of the hand wheel 202, the rotation of the second screw rod 210 can drive the second screw sleeve 211 to move, the second screw sleeve 211 drives the baffle 212 to move horizontally for adjustment, so that the two baffles 212 are located on both sides of the top of the capacitive screen. Then control the first motor 205 to drive the first screw rod 206 to rotate, the rotation of the first screw rod 206 can drive the two first screw sleeves 207 to move away from each other, the first screw sleeves 207 drive the adjusting rod 209 to move through the cooperation of the adjusting frame 208, and the adjusting rod 209 will tilt and slide upward in the adjusting slot 204 when moving, so that the adjusting rod 209 drives the lifting seat 201 to move upward, and the lifting seat 201 drives the capacitive screen to move upward, until the two sides of the top of the capacitive screen gradually approach the baffle 212 and are tightly attached, and the top of the capacitive screen will be in contact with the static electricity roller 5. Then control the second motor 10 to start, the second motor 10 can drive the rotating disc 11 and the rotating column 12 to rotate, the rotating column 12 can drive the moving shell 13 to reciprocate left and right, and the moving shell 13 drives the static electricity roller 5 to reciprocate left and right on the capacitive screen through the cooperation of the moving blocks 14 and the moving frames 8 to perform static electricity treatment.
[0047] The basic principle, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application.
Claims
1. A device for removing static electricity from a capacitive screen, characterized in that, Including frame (1) and clamping mechanism (2), the frame (1) includes bottom plate (101), two first side plates (102) respectively erected on the left and right sides of the bottom plate (101) and two second side plates (103) respectively erected on the front and back sides of the bottom plate (101), the clamping mechanism (2) is located inside the frame (1), the top of the frame (1) is provided with a top plate (4) through a support frame (3), and the bottom of the top plate (4) is provided with an electrostatic roller (5); The clamping mechanism (2) includes a lifting seat (201) erected on the second side plate (103), each second side plate (103) is provided with an inclined adjusting groove (204), the inside of the lifting seat (201) is fixedly connected with a first motor (205), the output end of the first motor (205) is fixedly connected with a first screw rod (206), the surface of the first screw rod (206) is threadedly sleeved with a first screw sleeve (207), the front side and the rear side of the bottom of the first screw sleeve (207) downwardly extend adjusting frames (208), and the bottom end of each adjusting frame (208) is fixedly connected with an adjusting rod (209). The adjusting rod (209) is correspondingly and slidably inserted into the adjusting groove (204), so that the lifting seat (201) is driven to move up and down.
2. The device of claim 1, wherein the device is a capacitive screen static eliminator. Each second side plate (103) is provided with two adjusting grooves (204), and the two adjusting grooves (204) form an inverted "8" shape. The first motor (205) is provided with an output end on each side, and each output end is fixedly connected with a first screw rod (206), so that the first motor (205) simultaneously drives four adjusting frames (208) to slide along four adjusting grooves (204) one by one.
3. The device of claim 1, wherein the device is a capacitive screen static eliminator. The threads on the surfaces of the two first screw rods (206) are opposite.
4. The device according to any one of claims 1 to 3, wherein The clamping mechanism (2) further includes two hand wheels (202) and two baffles (212), the two hand wheels (202) are correspondingly and rotatably connected with the top of the two first side plates (102) through a second screw rod (210), the surface of the second screw rod (210) is threadedly sleeved with a second screw sleeve (211), the second screw sleeve (211) is fixedly connected with the baffle (212), the top of the two first side plates (102) is provided with a through groove, and one end of the two baffles (212) is correspondingly and slidably inserted into the through groove of the two first side plates (102).
5. The device of claim 4, wherein the conductive screen is formed of a conductive material selected from the group consisting of: aluminum, copper, silver, gold, and combinations thereof. The clamping mechanism (2) further includes at least two sliding blocks (213) and at least two sliding rails (214), at least one sliding block (213) is fixedly connected to the bottom of each baffle (212), and one sliding rail (214) is correspondingly arranged at the position of each sliding block (213). One end of the sliding rail (214) is fixedly connected with the corresponding first side plate (102) perpendicularly, and the sliding block (213) is correspondingly and slidably connected to the sliding rail (214).
6. The device of claim 4, wherein the conductive screen is formed of a conductive material. The surface of the hand wheel (202) is provided with anti-skid lines.
7. The device according to any one of claims 1 to 3, wherein The top plate (4) is provided with two slide rods (6) at the bottom, which are spaced and parallel, the surface of each slide rod (6) is provided with two slide sleeves (7), the bottom of each slide sleeve (7) is fixedly connected with a moving frame (8), the number of the static electricity removing roller (5) is two, and each static electricity removing roller (5) is installed between the two opposite moving frames (8) through a rotating shaft.
8. The device of claim 7, wherein the conductive screen is formed of a conductive material. The static electricity removing device for the capacitive screen further comprises a second motor (10), a rotating disc (11) and a moving shell (13), the second motor (10) is installed on the top surface of the top plate (4), the output end of the second motor (10) penetrates through the top plate (4) and is fixedly connected with the rotating disc (11), the bottom of the rotating disc (11) is fixedly connected with a rotating column (12), the moving shell (13) is provided with a strip-shaped slot in the center, the rotating column (12) is slidably inserted into the strip-shaped slot of the moving shell (13), and the two ends of the moving shell (13) are fixedly connected with two moving blocks (14), and the moving blocks (14) are fixedly connected with the moving frames (8).