Intelligent terminal touch control optical glass production control device

By automating the production control device for smart terminal touch optical glass, the problems of deviation and bubbles caused by manual operation were solved, enabling efficient and low-cost production of touch optical glass.

CN223509812UActive Publication Date: 2025-11-04南京瑞杜新材料科技有限公司
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Patent Information

Application Number
CN202422954346.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2025-11-04
Estimated Expiration
2034-12-02

AI Technical Summary

Technical Problem

Existing screen printing equipment requires manual feeding and mold alignment, which can easily lead to misalignment and air bubbles, resulting in poor quality of finished touch optical glass products.

Method used

A smart terminal touch-screen optical glass production control device was designed. It adopts a hydraulic push rod and an auxiliary clamping device to realize automatic feeding and rotational bonding of the paint plate. Combined with automatic pigment replenishment and scraper application, it ensures close contact and uniformity in the coating process.

Benefits of technology

It has enabled automated production of touch-sensitive optical glass, reduced manual operation, lowered labor costs, avoided bubbles and unevenness, and improved production efficiency and product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent terminal touch control optical glass production control device, which belongs to the technical field of touch control glass production, and comprises a machine base, a working plate is slidably connected to the top end of the machine base, and a brushing plate is arranged at the top of the working plate. C-shaped plates are fixedly connected to the two sides of the face brushing plate, second hydraulic push rods are rotationally connected to the two sides of the machine base correspondingly, the telescopic ends of the two second hydraulic push rods are rotationally connected with the middles of the surfaces of the C-shaped plates, and an auxiliary clamping device is installed between the working plate and the face brushing plate. When the face brushing plate rotates, the convex plate drives the pull frame and the pull plate to perform corresponding actions, the pull plate is connected with one end of the push block, and the cylindrical boss on the surface of the push block slides along the first sliding groove in the middle of the ejector block, so that the working plate is jacked up, and the working plate and the face brushing plate are tightly attached to each other; and it is ensured that no bubble or non-uniformity phenomenon is generated in the coating process of the touch optical glass.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to touch -control glass production technical field, concretely relates to a kind of intelligent terminal touch optical glass production control device. BACKGROUND

[0002] Touch optical glass is a kind of glass material specially used for manufacturing touch screen, it has high transparency, excellent optical performance, stable physical and chemical characteristics, with intelligent and touch as the trend of era development, the role of touch optical glass in display screen as human-computer interaction interface is more and more prominent, the main application fields of touch optical glass include smart phone, tablet computer, digital camera, GPS, various query terminals, self-service terminal, ATM, on-demand machine, large screen touch type electronic whiteboard etc., these products usually need cover glass to protect touch screen, and different colors, patterns or markers can be printed on cover glass by silk printing process, play the role of decoration and beautification product.

[0003] And in silk printing process, existing silk printing equipment often needs manpower to feed and align with mould, manual operation is prone to deviation, to cause printing misregistration, so the rate of defective products is higher, meanwhile, if silk printing equipment is not tight enough, bubble is also prone to, affect the quality of touch optical glass finished product. UTILITY MODEL CONTENT

[0004] The utility model solves the technical problem in overcoming the above-mentioned prior art's shortcomings, and provides an intelligent terminal touch optical glass production control device.

[0005] The technical scheme adopted to solve the above technical problems is: an intelligent terminal touch optical glass production control device, including base, the top end of the base is slidably connected with a work plate, the top of the work plate is provided with a color brushing plate, the color brushing plate is fixedly connected with a C-shaped plate on both sides, the two sides of the base are respectively rotatably connected with a second hydraulic push rod, the second hydraulic push rod is rotatably connected with the middle part of the surface of the C-shaped plate at the telescopic end, and an auxiliary clamping device is installed between the work plate and the color brushing plate.

[0006] Further, the auxiliary clamping device includes an L-shaped bottom plate, the L-shaped bottom plate is fixedly connected with the inner wall of the base, a plurality of rotating seats are rotatably connected with the top end of the L-shaped bottom plate, a plurality of rotating seats are fixedly connected with the one side of the color brushing plate, a plurality of rotating seats are fixedly connected with a round rod between them, and a plurality of round rods are fixedly connected with a convex plate in the middle part.

[0007] Through the above technical scheme, the color brushing plate is driven by the second hydraulic push rod on both sides, rotates around the top end of the L-shaped bottom plate, and merges with the work plate, to reduce the cavity during color brushing.

[0008] Further, the middle of the L-shaped bottom plate is provided with a plurality of second sliding grooves, the inner side of the second sliding groove is slidably connected with a push block, the both sides of the push block are respectively fixedly connected with a cylindrical boss, one end of the push block is rotatably connected with a pull plate, the pull plate is rotatably connected with a pull frame away from one end of the push block, and the pull frame is rotatably connected with the convex plate away from one end of the pull plate.

[0009] Further, the bottom end of the work plate is fixedly connected with a plurality of positioning columns, the bottom end of the positioning column is slidably connected with the L-shaped bottom plate, the bottom end of the work plate is fixedly connected with a plurality of top blocks, the top block is located between the plurality of positioning columns, the middle of the top block is provided with a first sliding groove, the first sliding groove is a Z-shaped structure, and the inner side surface of the first sliding groove is slidably connected with the cylindrical boss.

[0010] Through the above technical scheme, when the color brushing plate rotates, one end of the convex plate rotates and moves, drives the pull frame and the pull plate to move correspondingly, since the pull plate is connected with one end of the push block, the push block slides along the second sliding groove in the middle of the L-shaped bottom plate, and the cylindrical boss on the surface of the push block slides along the first sliding groove in the middle of the top block, thereby lifting the work plate, so that the work plate and the color brushing plate are tightly attached, and it is ensured that the touch optical glass will not produce bubbles or uneven phenomenon in the coating process.

[0011] Further, the top corner of one side of the base is fixedly connected with a support plate, the middle of the top end of the support plate is fixedly connected with a first hydraulic push rod, the center position of the work plate is aligned with the telescopic end of the first hydraulic push rod, and the telescopic end of the first hydraulic push rod is fixedly connected with a push frame.

[0012] Through the above technical scheme, the glass is placed between the push frames by the staff, and is sent to the center position of the work plate by the first hydraulic push rod, so that the alignment operation is not required by manpower, and the automatic feeding operation is realized, thereby reducing the labor cost.

[0013] Further, the end of the base away from the rotating seat is fixedly connected with a pigment box, the bottom end of the pigment box is provided with a leakage hole, the leakage hole is fixedly connected with the inner wall of the color brushing plate, and the middle of the color brushing plate is provided with a mold plate.

[0014] Through the above technical scheme, since the leakage hole is arranged on the inner wall of the color brushing plate, when the color brushing plate is lifted by rotating, the pigment in the pigment box is automatically leaked out under the action of gravity, thereby realizing the automatic replenishment of the pigment.

[0015] Further, the top end of the C-shaped plate is fixedly connected with a guide rod, the middle of the guide rod is slidably connected with a moving frame, the bottom end of the moving frame is slidably connected with a fixed clamping plate on both sides, and the bottom end of the fixed clamping plate is fixedly connected with a scraper.

[0016] Through the technical scheme, the mobile frame moves back and forth along the guide rod, and the scraper at the bottom end of the mobile frame applies the pigment on the glass through the mold plate, so that the production of the touch optical glass is realized, and the degree of automation is high.

[0017] The utility model discloses the beneficial effect is as follows:

[0018] 1. The utility model discloses a brush color plate rotates, and the convex plate one end will rotate along with the removal, and drive the corresponding action of pull frame and pull board, because pull board is connected with the one end of push block, and push block will slide along the second sliding slot of L type bottom plate middle part, and the cylindrical boss on the surface of push block slides along the first sliding slot of top block middle part, thereby lifting the work board, make work board and brush color plate two closely fit, ensure that touch optical glass does not produce bubble or uneven phenomenon in the coating process.

[0019] 2. The utility model discloses the first hydraulic push rod telescopic end and work board center position alignment, make the staff put glass to the push frame between, by the first hydraulic push rod and send to work board center position, need not manual operation of alignment, and realize automatic feeding operation, reduce the labor cost. DRAWINGS

[0020] Fig. 1 It is the whole first structure schematic diagram of the utility model, and

[0021] Fig. 2 It is the whole second structure schematic diagram of the utility model, and

[0022] Fig. 3 It is the auxiliary clamping device structure schematic diagram of the utility model, and

[0023] Fig. 4 It is the auxiliary clamping device half -cut schematic diagram of the utility model.

[0024] Drawing reference: 1, machine base, 2, support plate, 3, first hydraulic push rod, 4, push frame, 5, second hydraulic push rod, 6, work board, 7, C type board, 8, brush color plate, 9, guide rod, 10, fixed clamping plate, 11, mold plate, 12, mobile frame, 13, scraper, 14, leakage, 15, pigment tank, 16, rotary seat, 17, L type bottom plate, 18, round rod, 19, pull frame, 20, convex plate, 21, positioning column, 22, pull board, 23, push block, 24, cylindrical boss, 25, first sliding slot, 26, second sliding slot, 27, top block. SPECIFIC IMPLEMENTATION

[0025] In order to make the purpose, technical scheme and advantage of the utility model more clearly, the following is combined with the drawing and example, and the utility model is further detailedly explained.It should be understood that the specific example described here is only used to explain the utility model, and is not used to limit the utility model.

[0026] As Figs. 1 to 4 shown, the intelligent terminal touch optical glass production control device of the embodiment includes a base 1, the top end of the base 1 is slidingly connected with a workboard 6, the top of the workboard 6 is provided with a color brushing plate 8, the color brushing plate 8 is fixedly connected with a C-shaped plate 7 on both sides, the base 1 is rotatably connected with a second hydraulic push rod 5 on both sides, the two second hydraulic push rods 5 are rotatably connected with the surface of the C-shaped plate 7 at the middle part, an auxiliary clamping device is installed between the workboard 6 and the color brushing plate 8, the auxiliary clamping device ensures the close contact between the color brushing plate 8 and the workboard 6 during the combination of the color brushing plate 8 and the workboard 6, thereby ensuring the uniformity of the coating.

[0027] The auxiliary clamping device includes an L-shaped bottom plate 17, the L-shaped bottom plate 17 is fixedly connected with the inner wall of the base 1, a plurality of rotating seats 16 are rotatably connected with the top end of the L-shaped bottom plate 17, the plurality of rotating seats 16 are fixedly connected with a round rod 18 between them, the round rod 18 is fixedly connected with a convex plate 20 at the middle part, the color brushing plate 8 is rotated around the top end of the L-shaped bottom plate 17 under the driving of the second hydraulic push rod 5 on both sides, and is combined with the workboard 6, so as to reduce the cavity generated during the color brushing process.

[0028] The L-shaped bottom plate 17 is provided with a plurality of second sliding grooves 26 at the middle part, a push block 23 is slidingly connected with the inner side of the second sliding groove 26, a cylindrical boss 24 is fixedly connected with the surface on both sides of the push block 23, a pull plate 22 is rotatably connected with one end of the push block 23, a pull frame 19 is rotatably connected with the end of the pull plate 22 away from the push block 23, the pull frame 19 is rotatably connected with one end of the convex plate 20 away from the pull plate 22, a plurality of positioning columns 21 are fixedly connected with the bottom end of the workboard 6, the bottom end of the positioning column 21 is slidingly connected with the L-shaped bottom plate 17, a plurality of top blocks 27 are fixedly connected with the bottom end of the workboard 6, the top blocks 27 are located between the plurality of positioning columns 21, the top block 27 is provided with a first sliding groove 25 at the middle part, the first sliding groove 25 is a Z-shaped structure, and the inner side surface of the first sliding groove 25 is slidingly connected with the cylindrical boss 24.

[0029] A support plate 2 is fixedly connected with one corner position at the top end of the base 1, a first hydraulic push rod 3 is fixedly connected with the top end middle part of the support plate 2, the extension end of the first hydraulic push rod 3 is aligned with the center position of the workboard 6, the extension end of the first hydraulic push rod 3 is fixedly connected with a push frame 4, the workboard 6 is sent to the center position by the first hydraulic push rod 3, and the alignment operation is not required by manpower.

[0030] A pigment tank 15 is fixedly connected with the end of the base 1 away from the rotating seat 16, a leakage hole 14 is installed at the bottom end of the pigment tank 15, the leakage hole 14 is fixedly connected with the inner wall of the color brushing plate 8, a mold plate 11 is installed at the middle part of the color brushing plate 8, when the color brushing plate 8 is rotated and lifted up, the pigment in the pigment tank 15 is automatically leaked out under the action of gravity, and the automatic replenishment of the pigment is realized.

[0031] The top end of the C-shaped plate 7 is fixedly connected with a guide rod 9, the middle part of the guide rod 9 is slidably connected with a moving frame 12, the bottom end of the moving frame 12 is slidably connected with fixed clamping plates 10, the bottom end of the fixed clamping plates 10 is fixedly connected with scrapers 13, the moving frame 12 moves back and forth along the guide rod 9, and the scraper 13 at the bottom end of the moving frame 12 spreads the paint on the glass through the mold plate 11, and the production of the touch optical glass is realized.

[0032] The working principle of the embodiment is as follows:

[0033] In use, the second hydraulic push rod 5 on the two sides of the base 1 is extended, and then the paint brushing plate 8 is lifted, the paint tank 15 installed at the lifting end of the paint brushing plate 8 is automatically leaked under the action of gravity, the paint in the paint tank 15 is automatically leaked through the leakage hole 14, the automatic replenishment of the paint is realized, the staff places the glass to be printed between the push frames 4 and abuts against the inner wall of the push frame 4, then the first hydraulic push rod 3 is started, the push frame 4 is sent to the center position of the work plate 6 and then returns through the extension and retraction operation of the first hydraulic push rod 3, the second hydraulic push rod 5 is retracted to rotate the paint brushing plate 8, so that the paint brushing plate 8 slowly abuts against the work plate 6, in the process, when the paint brushing plate 8 rotates, one end of the convex plate 20 rotates and moves, the pull frame 19 and the pull plate 22 are driven to move correspondingly, since the pull plate 22 is connected with one end of the push block 23, the push block 23 slides along the second sliding groove 26 in the middle part of the L-shaped bottom plate 17, the cylindrical boss 24 on the surface of the push block 23 slides along the first sliding groove 25 in the middle part of the top block 27, so that the work plate 6 is lifted, the work plate 6 and the paint brushing plate 8 are tightly abutted, and it is ensured that the touch optical glass does not produce bubbles or unevenness in the coating process, then the moving frame 12 moves back and forth along the guide rod 9, the scraper 13 at the bottom end of the moving frame 12 spreads the paint on the glass through the mold plate 11, and the production of the touch optical glass is realized, so that the device has high automation degree, does not need complicated operation, and greatly improves the production efficiency and product quality.

[0034] The above merely describes a preferred embodiment of the utility model, and is not used to limit the protection scope of the utility model.

Claims

1. A production control device for intelligent terminal touch optical glass, comprising a base (1), characterized in that, A working plate (6) is slidably connected to the top of the base (1). A brush plate (8) is provided on the top of the working plate (6). C-shaped plates (7) are fixedly connected to both sides of the brush plate (8). Second hydraulic push rods (5) are rotatably connected to both sides of the base (1). The telescopic ends of the two second hydraulic push rods (5) are rotatably connected to the middle of the surface of the C-shaped plate (7). An auxiliary clamping device is installed between the working plate (6) and the brush plate (8).

2. The intelligent terminal touch-screen optical glass production control device according to claim 1, characterized in that, The auxiliary clamping device includes an L-shaped base plate (17), which is fixedly connected to the inner wall of the machine base (1). Several rotating seats (16) are rotatably connected to the top of the L-shaped base plate (17). Several rotating seats (16) are fixedly connected to one side of the paint brush plate (8). Round rods (18) are fixedly connected between several rotating seats (16). A protruding plate (20) is fixedly connected to the middle of several round rods (18).

3. The intelligent terminal touch-screen optical glass production control device according to claim 2, characterized in that, The L-shaped base plate (17) has several second sliding grooves (26) in the middle. Push blocks (23) are slidably connected to the inner side of the second sliding grooves (26). Cylindrical bosses (24) are fixedly connected to both sides of the push blocks (23). A pull plate (22) is rotatably connected to one end of the push blocks (23). A pull bracket (19) is rotatably connected to the end of the pull plate (22) away from the push blocks (23). The end of the pull bracket (19) away from the pull plate (22) is rotatably connected to one end of the boss (20).

4. The intelligent terminal touch-screen optical glass production control device according to claim 1, characterized in that, The bottom end of the working plate (6) is fixedly connected to several positioning posts (21). The bottom end of the positioning posts (21) is slidably connected to the L-shaped base plate (17). The bottom end of the working plate (6) is fixedly connected to several top blocks (27). The top blocks (27) are located between several positioning posts (21). The top blocks (27) are provided with a first sliding groove (25) in the middle. The first sliding groove (25) is a Z-shaped structure. The inner surface of the first sliding groove (25) is slidably connected to the cylindrical boss (24).

5. The intelligent terminal touch-screen optical glass production control device according to claim 1, characterized in that, A support plate (2) is fixedly connected to one corner of the top of the base (1). A first hydraulic push rod (3) is fixedly connected to the middle of the top of the support plate (2). The telescopic end of the first hydraulic push rod (3) is aligned with the center of the working plate (6). A push frame (4) is fixedly connected to the telescopic end of the first hydraulic push rod (3).

6. The intelligent terminal touch-screen optical glass production control device according to claim 1, characterized in that, The base (1) is fixedly connected to a pigment box (15) at the end away from the rotating seat (16). A drain (14) is installed at the bottom of the pigment box (15). The drain (14) is fixedly connected to the inner wall of the brush plate (8). A mold plate (11) is installed in the middle of the brush plate (8).

7. The intelligent terminal touch-screen optical glass production control device according to claim 1, characterized in that, A guide rod (9) is fixedly connected to the top of the C-shaped plates (7). A movable frame (12) is slidably connected to the middle of the guide rod (9). Fixed clamps (10) are slidably connected to both sides of the bottom of the movable frame (12). A scraper (13) is fixedly connected to the bottom of the fixed clamps (10).