Intelligent visual line drawing machine

The intelligent visual line marking machine's visual inspection, lifting and lowering pressure plate and bellows drying design solves the problems of low line marking efficiency and unstable quality in existing technologies, achieving high-quality line marking and efficient production.

CN223419541UActive Publication Date: 2025-10-10苏州天华超净科技有限公司
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Patent Information

Application Number
CN202422928643.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-10-10
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

The existing technology for marking lines on shoes, balls, toys and leather goods has problems such as low labor efficiency, high labor intensity, unstable marking quality and high production cost. In addition, existing marking machines are difficult to achieve rapid air drying and precise positioning, resulting in low production accuracy and efficiency.

Method used

An intelligent visual line drawing machine is designed, which includes a frame, a conveying component, a visual inspection component, a line drawing component, a lifting and pressing plate component and a bellows component. Through visual inspection positioning, lifting and pressing plate pre-pressing, line drawing inkjet and bellows drying, high-quality line drawing and rapid air drying of the material can be achieved.

Benefits of technology

It improves the line drawing quality, reduces labor intensity, improves production efficiency and precision, achieves uniform force on the material body and convenient material collection, and improves production efficiency.

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    Figure CN223419541U_ABST
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Abstract

According to the intelligent visual line drawing machine, the air bellow assembly is arranged at the position, close to the output end of the conveying assembly, above the rack, the air bellow assembly conducts drying and air blowing on a material body with lines completed, the line drawing quality is improved, the air bellow assembly comprises an air bellow and a material collecting frame, and the air bellow is arranged at the position, close to the output end of the conveying assembly, above the rack; a material collecting frame is detachably arranged at the output end of the air bellow, the included angle between the material collecting frame and the conveying assembly ranges from 30 degrees to 45 degrees, material collecting is flexible and convenient, the production efficiency is improved, a lifting pressing plate assembly is arranged for pre-pressing a material body, a hole formed by pressing wires is arranged to be rectangular or rhombic, the material body is evenly stressed during line drawing, and the production efficiency is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of line drawing equipment, and more specifically, to an intelligent visual line drawing machine. Background Art

[0002] In the existing art, the production process of shoes, balls, toys, and leather goods requires marking lines on the raw material, and then processing or positioning according to the outline of the lines. Taking shoemaking as an example, when making shoes, the raw material needs to be cut into shape, and the connecting edges of the upper need to be marked before the single upper is punched out using a punch press. This marking process is often performed manually or using a marking machine (authorization announcement number: CN220800242U), which has the following drawbacks:

[0003] (1) Manual line drawing is extremely inefficient, labor-intensive, and has high production costs.

[0004] (2) A line drawing machine is used for line drawing. The lines drawn by this machine are not easy to dry quickly. There is a risk of overflowing of the drawn lines. The line drawing quality is low. It is impossible to accurately position the lines during the next step of punching, which reduces production accuracy and efficiency.

[0005] The marking machine in the prior art that is closest to the present application is the authorization announcement number: CN220800242U, which discloses an automatic visual marking machine, which includes a frame, a conveyor belt assembly for material transmission, a loading station and a marking station arranged in sequence on the conveyor belt assembly, a visual detector for detecting the edge of the material is arranged above the frame of the marking station, and a marking mechanism is arranged on the marking station, the marking mechanism includes longitudinal supports arranged on both sides of the conveyor belt assembly along the conveying direction, a transverse support movably arranged between the two longitudinal directions, and a nozzle movably mounted on the transverse support, the nozzle being liftable and mounted on the transverse support by a lifting frame; a pressing plate for pressing the material is installed on the marking station below the marking mechanism, the pressing plate includes a frame and silk threads for pressing the material that are crisscrossed and passed through the frame.

[0006] In view of this, the utility model provides an intelligent visual line drawing machine with high line drawing quality and simple structure. Utility Model Content

[0007] The purpose of the utility model is to provide an intelligent visual line drawing machine with high line drawing quality and simple structure.

[0008] An intelligent visual line drawing machine includes a frame 1, a conveying component 2, a visual detection component, a line drawing component 3, a lifting and pressing plate component 4, and a bellows component 5, characterized in that: a conveying component 2 is provided above the frame 1, the conveying component 2 is used to convey the material body, a lifting and pressing plate component 4 is provided above the conveying component 2, the lifting and pressing plate component 4 is used to press the material body downward, line drawing components 3 are provided on both sides of the lifting and pressing plate component 4, the line drawing components 3 are used to draw lines on the material body, adjacent line drawing components 3 are symmetrically arranged, a visual detection component is provided above the line drawing component 3, the visual detection component is used to determine the line drawing position of the material body, a bellows component 5 is provided above the frame 1 near the output end of the conveying component 2, the bellows component 5 is used to dry and blow the material body after the line is drawn, the bellows component 5 includes a bellows 51 and a material receiving frame 52, a bellows 51 is provided above the frame 1 near the output end of the conveying component 2, the output end of the bellows 51 is detachably provided with a material receiving frame 52, and the angle between the material receiving frame 52 and the conveying component 2 is 30°-45°.

[0009] Furthermore, a plurality of heat dissipation holes 53 are provided at intervals in the middle of the material receiving frame 52 , and each adjacent heat dissipation hole group is staggered to facilitate heat dissipation.

[0010] In some embodiments, the visual detection component includes a shell 6, a CCD detection camera, a first lighting component 7, and a second lighting component 8. The shell 6 is provided above the drawing component 3, the CCD detection camera is provided in the middle of the shell 6, the first lighting component 7 is provided on the outside of the CCD detection camera, and the second lighting components 8 are provided on the left and right sides below the shell 6. The adjacent second lighting components 8 are horizontally symmetrically arranged. The first lighting component 7 and the second lighting component 8 are used to illuminate the upper material body of the conveying component 2, so that the CCD detection camera can perform full coverage detection of the drawing area.

[0011] Furthermore, the first lighting component 7 is arranged in parallel with the conveying component 2 .

[0012] Furthermore, the included angle between the second lighting assembly 8 and the housing 6 is 120°-135°.

[0013] In some embodiments, the lifting and pressing plate assembly 4 includes a first lifting cylinder, a first pressing frame 41, and a pressing wire 42. The side above the conveying assembly 2 is provided with a first lifting cylinder, and the driving end of the first lifting cylinder is provided with a first pressing frame 41. The first lifting cylinder is used to drive the first pressing frame 41 to move vertically up and down, and a pressing wire 42 is provided on the inside of the first pressing frame 41.

[0014] Furthermore, the hole formed by the pressing wire 42 is rectangular or diamond-shaped, so as to facilitate uniform force.

[0015] In some embodiments, the line drawing assembly 3 comprises an X-direction driving module 31, a Y-direction driving module 32, and a line drawing inkjet head 33, and each side of the lifting pressure plate assembly 4 is provided with an X-direction driving module 31, the upper side of the X-direction driving module 31 is provided with a Y-direction driving module 32, and the side of the Y-direction driving module 32 is provided with a line drawing inkjet head 33, and the X-direction driving module 31 and the Y-direction driving module 32 are used to drive the line drawing inkjet head 33 to move in the X and Y directions.

[0016] In some embodiments, the conveying assembly 2 is a synchronous wheel conveying assembly.

[0017] The working principle of the utility model is as follows: firstly, the line drawing material body is conveyed to the lower side of the lifting pressure plate assembly 4 by the conveying assembly 2, then the lifting pressure plate assembly 4 moves downward until the silk pressing part 42 is attached to the upper surface of the material body, the visual detection assembly detects and positions the material body, the line drawing assembly 3 draws lines on the material body, the lifting pressure plate assembly 4 moves upward to reset after the line drawing is completed, and the conveying assembly 2 conveys the line-drawn material body to the air bellow assembly 5 for drying and blowing, and finally the material body enters the material collecting frame 52.

[0018] The utility model discloses an intelligent visual line drawing machine, which is characterized in that an air bellow assembly 5 is arranged above the rack 1 and close to the output end of the conveying assembly 2, the air bellow assembly 5 dries and blows the line-drawn material body, thereby improving the line drawing quality, the air bellow assembly 5 comprises an air bellow 51 and a material collecting frame 52, the air bellow 51 is arranged above the rack 1 and close to the output end of the conveying assembly 2, the output end of the air bellow 51 is detachably provided with the material collecting frame 52, and the included angle between the material collecting frame 52 and the conveying assembly 2 is 30°-45°, so that the material can be conveniently and flexibly collected, and the production efficiency is improved, the lifting pressure plate assembly 4 is arranged to pre-press the material body, and the hole formed by the silk pressing part 42 is in one of a rectangular shape and a rhombic shape, so that the material body is uniformly stressed during line drawing, and the production efficiency is further improved. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a structure schematic view of an intelligent visual line drawing machine.

[0020] Figure 2 It is a structure schematic view of an intelligent visual line drawing machine.

[0021] Figure 3 It is a structure schematic view of an intelligent visual line drawing machine.

[0022] MAIN ELEMENT SYMBOL EXPLANATION

[0023] Frame 1, conveying assembly 2, drawing assembly 3, X-axis drive module 31, Y-axis drive module 32, drawing inkjet head 33, lifting and lowering pressure plate assembly 4, first pressure frame 41, pressing wire 42, bellows assembly 5, bellows 51, material receiving frame 52, heat dissipation holes 53, housing 6, first lighting assembly 7, second lighting assembly 8.

[0024] The following specific embodiments will further illustrate the present invention in conjunction with the above-mentioned drawings. DETAILED DESCRIPTION

[0025] The following examples are described to assist in understanding the present application, and the examples are not and should not be interpreted in any way as limiting the scope of protection of the present application.

[0026] In the following description, those skilled in the art will recognize that throughout this discussion, components may be described as separate functional units (which may include sub-units), but those skilled in the art will recognize that various components or portions thereof may be divided into separate components or may be integrated together (including within a single system or component).

[0027] At the same time, the connections between components or systems are not intended to be limited to direct connections. Instead, data between these components may be modified, reformatted, or otherwise changed by intermediate components. In addition, additional or fewer connections may be used. It should also be noted that the terms "coupled," "connected," or "input" should be understood to include direct connections, indirect connections through one or more intermediate devices, and wireless connections. Example

[0028] like Figure 1 As shown in FIG, it is a structural diagram of an intelligent visual line drawing machine of the present application; Figure 2 As shown, it is a partial enlarged structural diagram of the line drawing component and the lifting and pressing plate component of an intelligent visual line drawing machine of the present application; Figure 3 The figure shows a partially enlarged structural diagram of a bellows assembly of an intelligent visual line drawing machine of the present application.

[0029] An intelligent visual line drawing machine includes a frame 1, a conveying component 2, a visual detection component, a line drawing component 3, a lifting and pressing plate component 4, and a bellows component 5, characterized in that: a conveying component 2 is provided above the frame 1, the conveying component 2 is used to convey the material body, a lifting and pressing plate component 4 is provided above the conveying component 2, the lifting and pressing plate component 4 is used to press the material body downward, line drawing components 3 are provided on both sides of the lifting and pressing plate component 4, the line drawing components 3 are used to draw lines on the material body, adjacent line drawing components 3 are symmetrically arranged, a visual detection component is provided above the line drawing component 3, the visual detection component is used to determine the line drawing position of the material body, a bellows component 5 is provided above the frame 1 near the output end of the conveying component 2, the bellows component 5 is used to dry and blow the material body after the line is drawn, the bellows component 5 includes a bellows 51 and a material receiving frame 52, a bellows 51 is provided above the frame 1 near the output end of the conveying component 2, the output end of the bellows 51 is detachably provided with a material receiving frame 52, and the angle between the material receiving frame 52 and the conveying component 2 is 30°-45°.

[0030] A plurality of heat dissipation holes 53 are provided at intervals in the middle of the material receiving frame 52 , and adjacent heat dissipation holes of each group are staggered to facilitate heat dissipation.

[0031] The visual detection component includes a shell 6, a CCD detection camera, a first lighting component 7, and a second lighting component 8. The shell 6 is provided above the drawing component 3, and a CCD detection camera is provided in the middle of the shell 6. The first lighting component 7 is provided on the outside of the CCD detection camera. The second lighting components 8 are provided on the left and right sides below the shell 6. The adjacent second lighting components 8 are arranged horizontally symmetrically. The first lighting component 7 and the second lighting component 8 are used to illuminate the upper material body of the conveying component 2, so that the CCD detection camera can perform full coverage detection of the drawing area.

[0032] The first lighting assembly 7 is arranged parallel to the conveying assembly 2 .

[0033] The included angle between the second lighting assembly 8 and the housing 6 is 120°-135°.

[0034] The lifting and pressing plate assembly 4 includes a first lifting cylinder, a first pressing frame 41, and a pressing wire 42. The side above the conveying assembly 2 is provided with a first lifting cylinder, and the driving end of the first lifting cylinder is provided with a first pressing frame 41. The first lifting cylinder is used to drive the first pressing frame 41 to move vertically up and down, and a pressing wire 42 is provided on the inside of the first pressing frame 41.

[0035] The hole formed by the pressing wire 42 is rectangular or diamond-shaped, which facilitates uniform force.

[0036] The line drawing assembly 3 includes an X-axis drive module 31, a Y-axis drive module 32, and a line drawing inkjet head 33. An X-axis drive module 31 is provided on both sides of the lifting and pressing plate assembly 4. A Y-axis drive module 32 is provided above the X-axis drive module 31. A line drawing inkjet head 33 is provided on the side of the Y-axis drive module 32. The X-axis drive module 31 and the Y-axis drive module 32 are used to drive the line drawing inkjet head 33 to move in the X and Y directions.

[0037] The conveying assembly 2 is a synchronous wheel conveying assembly.

[0038] Beneficial effects of the present invention: The present invention proposes an intelligent visual line drawing machine, which provides a bellows assembly 5 above the frame 1 near the output end of the conveying assembly 2. The bellows assembly 5 dries and blows the material body after the line drawing, thereby improving the line drawing quality. The bellows assembly 5 includes a bellows 51 and a material receiving frame 52. A bellows 51 is provided above the frame 1 near the output end of the conveying assembly 2. The output end of the bellows 51 is detachably provided with a material receiving frame 52. The angle between the material receiving frame 52 and the conveying assembly 2 is 30°-45°, which is flexible and convenient for material collection and improves production efficiency. A lifting and lowering plate assembly 4 is provided to pre-press the material body, and the hole formed by the pressing wire 42 is set to be one of a rectangle or a diamond, so that the material body is evenly stressed during line drawing, thereby further improving production efficiency.

[0039] Although this application has disclosed various aspects and embodiments, other aspects and embodiments will be readily apparent to those skilled in the art. Variations and modifications may be made without departing from the spirit of this application, and all such variations and modifications are within the scope of this application. The various aspects and embodiments disclosed in this application are provided for illustrative purposes only and are not intended to limit this application. The actual scope of this application is determined by the claims.

Claims

1. An intelligent visual line drawing machine, comprising a frame (1), a conveying assembly (2), a visual detection assembly, a line drawing assembly (3), a lifting and pressing plate assembly (4), and a bellows assembly (5), characterized in that: A conveying assembly (2) is provided above the frame (1), and the conveying assembly (2) is used to convey the material body. A lifting and pressing plate assembly (4) is provided above the conveying assembly (2), and the lifting and pressing plate assembly (4) is used to press the material body downward. Line drawing assemblies (3) are provided on both sides of the lifting and pressing plate assembly (4), and the line drawing assemblies (3) are used to draw lines on the material body. Adjacent line drawing assemblies (3) are symmetrically arranged. A visual detection assembly is provided above the line drawing assembly (3), and the visual detection assembly is used to determine the line drawing position of the material body. A bellows assembly (5) is provided above the frame (1) near the output end of the conveying assembly (2), and the bellows assembly (5) is used to dry and blow the material body after the line drawing is completed. The bellows assembly (5) includes a bellows (51) and a material receiving frame (52). A bellows (51) is provided above the frame (1) near the output end of the conveying assembly (2), and a material receiving frame (52) is detachably provided at the output end of the bellows (51). The angle between the material receiving frame (52) and the conveying assembly (2) is 30°-45°.

2. The intelligent visual line drawing machine according to claim 1, wherein: A plurality of groups of heat dissipation holes (53) are arranged at intervals in the middle of the material receiving frame (52), and each adjacent group of heat dissipation holes is staggered to facilitate heat dissipation.

3. The intelligent visual line drawing machine according to claim 1, wherein: The visual detection component comprises a housing (6), a CCD detection camera, a first lighting component (7), and a second lighting component (8); the housing (6) is provided above the line drawing component (3); the CCD detection camera is provided in the middle of the housing (6); the first lighting component (7) is provided outside the CCD detection camera; second lighting components (8) are provided on the left and right sides below the housing (6); adjacent second lighting components (8) are arranged horizontally symmetrically; the first lighting component (7) and the second lighting component (8) are used to illuminate the upper material body of the conveying component (2), so that the CCD detection camera performs full coverage detection on the line drawing area.

4. The intelligent visual line drawing machine according to claim 3, wherein: The first lighting assembly (7) is arranged parallel to the conveying assembly (2).

5. The intelligent visual line drawing machine according to claim 3, wherein: The included angle formed between the second lighting assembly (8) and the housing (6) is 120°-135°.

6. The intelligent visual line drawing machine according to claim 1, wherein: The lifting and pressing plate assembly (4) includes a first lifting cylinder, a first pressing frame (41), and a pressing wire (42). The first lifting cylinder is provided on the side above the conveying assembly (2), and the first pressing frame (41) is provided at the driving end of the first lifting cylinder. The first lifting cylinder is used to drive the first pressing frame (41) to move vertically up and down, and a pressing wire (42) is provided on the inner side of the first pressing frame (41).

7. The intelligent visual line drawing machine according to claim 6, wherein: The hole formed by the pressing wire (42) is rectangular or diamond-shaped, which facilitates uniform force.

8. The intelligent visual line drawing machine according to claim 1, wherein: The line drawing component (3) includes an X-direction drive module (31), a Y-direction drive module (32), and a line drawing inkjet head (33). The lifting and lowering plate component (4) is provided with an X-direction drive module (31) on both sides. A Y-direction drive module (32) is provided above the X-direction drive module (31). A line drawing inkjet head (33) is provided on the side of the Y-direction drive module (32). The X-direction drive module (31) and the Y-direction drive module (32) are used to drive the line drawing inkjet head (33) to move in the X and Y directions.

9. The intelligent visual line drawing machine according to claim 1, wherein: The conveying assembly (2) is a synchronous wheel conveying assembly.

Citation Information

Patent Citations

  • Automatic visual ruling machine

    CN220800242U