Full-automatic glass cutting machine assembly line with correction function

By introducing a correction frame and positioning rod on the fully automatic glass cutting machine assembly line, combined with motor drive and infrared sensor, the positioning error and cutting displacement problems of the glass cutting machine assembly line are solved, achieving precise cutting and efficient cleaning.

CN223304335UActive Publication Date: 2025-09-05HUIZHOU XINZHENXIN GLASS TECH CO LTD
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Patent Information

Application Number
CN202422755108.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-09-05
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The existing fully automatic glass cutting machine assembly line cannot accurately position the glass when conveying it, resulting in cutting errors and easy displacement of glass of different sizes during cutting.

Method used

A fully automatic glass cutting machine production line with a correction function is designed. The glass is limited and corrected through the correction frame and positioning rod. The motor drives the bidirectional threaded rod to adjust the spacing of the correction frame. Infrared sensors and cleaning brushes are combined to achieve precise cutting and cleaning.

Benefits of technology

It achieves precise positioning and correction of glass of different sizes, ensures cutting accuracy, and efficiently cleans glass debris through the cleaning brush to protect equipment and working environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass processing, in particular to a full-automatic glass cutting machine assembly line with a correction function, which comprises a base, n-shaped rods are symmetrically arranged on two sides of the upper portion of the base, an automatic cutting machine is slidably mounted between the two n-shaped rods, and the automatic cutting machine is positioned above the base. The base is provided with a conveying mechanism used for conveying glass to the position below the automatic cutting machine so that cutting operation of the automatic cutting machine can be facilitated, sliding grooves are formed in the two symmetrical sides, with the conveying mechanism as the center, of the base correspondingly, and moving frames are arranged in the sliding grooves in a sliding mode. A correcting frame used for correcting the glass conveyed by the conveying mechanism so that the glass can be located under the automatic cutting machine is installed on the moving frame. The movable frames get close to each other or get away from each other along the sliding grooves in the table top of the top of the base, so that glass of different sizes is limited and corrected, and convenience is provided for accurate cutting operation of the automatic cutting machine.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing, in particular to a full-automatic glass cutting machine production line with a correction function. Background Art

[0002] The fully automatic glass cutting machine assembly line is a highly automated production equipment specially used for efficient and precise cutting of flat glass. However, when the glass is transported to the bottom of the cutting part of the cutting machine via a conveyor belt, the conveyor belt cannot ensure that glass of different specifications can be accurately transported to the bottom of the cutting part of the cutting machine during the conveying process. As a result, there are certain errors when the cutting machine cuts the glass. At the same time, due to the different sizes of glass, it is easy for the glass to be displaced during cutting due to the lack of limit on the glass when it is transported to the bottom of the cutting machine.

[0003] Based on this, it is necessary to design a fully automatic glass cutting machine production line with a correction function and the ability to limit glass of different sizes. Utility Model Content

[0004] The technical solution of the utility model is: a fully automatic glass cutting machine assembly line with a correction function, comprising a base, N-shaped rods symmetrically arranged on both sides of the upper part of the base, an automatic cutting machine slidably installed between the two N-shaped rods, the automatic cutting machine is located above the base, and a conveying mechanism for conveying glass to the bottom of the automatic cutting machine to facilitate cutting operations by the automatic cutting machine is provided on the base, sleds are provided on both sides symmetrically with the conveying mechanism as the center of the base, a movable frame is slidably arranged in the sled, and a correction frame for correcting the glass conveyed by the conveying mechanism so that it is located directly below the automatic cutting machine is installed on the movable frame.

[0005] In one embodiment, the sides of the two correction frames that are close to each other are arranged as inclined surfaces.

[0006] In one embodiment, a positioning rod is provided on the top of the correction frame for limiting the position of the glass and facilitating the automatic cutting machine to align the glass cutting position.

[0007] In one embodiment, a bidirectional threaded rod is provided between the two movable frames, and the bidirectional threaded rod is threadedly connected to the movable frames.

[0008] In one embodiment, a motor is installed at the lower part of the base, and the output shaft of the motor is connected to one end of the bidirectional threaded rod. The motor is used to drive the bidirectional threaded rod to rotate to adjust the distance between the two moving frames.

[0009] In one embodiment, a horizontal plate is provided on each side of the two movable frames close to each other, and multiple horizontal rods are provided in parallel on both sides of the horizontal plate. The horizontal rods are rotatably connected to the pushing frame through the connecting frame, and the pushing frame can extend from the top table of the base to lift the glass.

[0010] In one embodiment, cleaning brushes are provided on both sides of the automatic cutting machine through a fixing frame, and the cleaning brushes are in contact with the top surface of the base.

[0011] In one embodiment, infrared sensors are provided on both sides of the automatic cutting machine centered on the cutting portion thereof, and the infrared sensors are used to sense whether there is glass under the cutting portion of the automatic cutting machine.

[0012] In one embodiment, a waste collection frame is provided at the lower portion of the base.

[0013] The beneficial effects are: 1. By moving the frames closer to or farther away from each other along the slide grooves on the top table of the base, the glass of different sizes can be limited and corrected, thereby facilitating the precise cutting operation of the automatic cutting machine;

[0014] 2. When the mobile frame moves, the driving frame moves upward and protrudes from the top surface of the base, thereby lifting the glass upward, which facilitates moving the glass above the correction frame and limiting the glass through the positioning rod;

[0015] 3. The glass debris on the top surface of the base is cleaned by the relative movement of the cleaning brush along the top surface of the base. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.

[0017] Figure 2 It is a three-dimensional structural diagram of the base, automatic cutting machine, infrared sensor and waste collection frame of the utility model.

[0018] Figure 3 It is a schematic diagram of the three-dimensional structure of the base, motor, bidirectional threaded rod and correction frame of the utility model.

[0019] Figure 4 It is a schematic diagram of the three-dimensional structure of the motor, bidirectional threaded rod, movable frame, correction frame and positioning rod of the utility model.

[0020] Figure 5 It is a three-dimensional structural diagram of the movable frame, cross bar, pushing frame and connecting frame of the utility model.

[0021] Figure 6 It is a three-dimensional structural diagram of the automatic cutting machine, fixing frame and cleaning brush of the utility model.

[0022] The markings in the figure are: 1-base, 101-n-shaped rod, 2-automatic cutting machine, 3-infrared sensor, 4-motor, 5-bidirectional threaded rod, 6-movable frame, 7-correction frame, 8-positioning rod, 9-cross bar, 10-pushing frame, 11-connecting frame, 12-fixed frame, 13-cleaning brush, 14-waste collection frame. DETAILED DESCRIPTION

[0023] The embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0024] Example: A fully automatic glass cutting machine production line with a correction function, such as Figure 1-Figure 3 As shown, it includes a base 1, the longitudinal section of the base 1 is an "I"-shaped structure, the top platform of the base 1 is a glass cutting platform, and n-shaped rods 101 are symmetrically provided on the front and rear sides of the base 1. An automatic cutting machine 2 is slidably installed between the two n-shaped rods 101. The automatic cutting machine 2 includes a vertical frame slidably installed on the n-shaped rod 101, an electric slide rail installed between the two vertical frames, and a cutting part slidably installed on the electric slide rail; the automatic cutting machine 2 is horizontally moved along the n-shaped rod 101 to achieve cutting of the glass in the X direction, and the cutting part of the automatic cutting machine 2 is horizontally moved along the electric slide rail to achieve cutting of the glass in the Y direction. The automatic cutting machine 2 is located above the base 1, and the base 1 is provided with a cutting mechanism for cutting the glass. The glass is transported to the conveying mechanism under the automatic cutting machine 2 to facilitate the cutting operation of the automatic cutting machine 2. Here, the commonly used conveying mechanism is generally a conveyor belt, which has the advantages of simple structure, low cost and easy maintenance. The base 1 is provided with slide grooves on both sides symmetrically with the conveying mechanism as the center, and a movable frame 6 is slidingly arranged in the slide groove. The movable frame 6 is equipped with a correction frame 7 for correcting the glass transported by the conveying mechanism so that it is located directly below the automatic cutting machine 2. The side where the two correction frames 7 are close to each other is an inclined surface setting. The inclined surface setting makes it easy for the glass on the top table of the base 1 to be tilted upward through the inclined surface. At the same time, through the cooperation of the two inclined surfaces, the glass can also be limited to a certain extent.

[0025] like Figure 3 and Figure 4As shown, a positioning rod 8 is provided on the top of the correction frame 7 for limiting the glass and facilitating the automatic cutting machine 2 to align with the glass cutting position. The positioning rod 8 is positioned with the slide rail to align the cutting part on the automatic cutting machine 2 with the preset cutting position of the glass. A bidirectional threaded rod 5 is provided between the two movable frames 6. The bidirectional threaded rod 5 is threadedly connected to the movable frame 6. A motor 4 is installed at the lower part of the base 1. The output shaft of the motor 4 is connected to one end of the bidirectional threaded rod 5. The motor 4 is used to drive the bidirectional threaded rod 5 to rotate to adjust the distance between the two movable frames 6, thereby effectively adjusting the distance between the two correction frames 7 according to different sizes of glass, and then adapting to different sizes of glass, so as to limit the glass of different sizes to facilitate the automatic cutting machine to cut the glass.

[0026] like Figure 3 and Figure 5 As shown, a horizontal plate is provided on each side of the two movable frames 6 that are close to each other, and a plurality of horizontal bars 9 are symmetrically provided in parallel on both sides of the horizontal plate. A pushing frame 10 is rotatably connected to the horizontal bar 9 through a connecting frame 11. A roller is provided on the top of the pushing frame 10. The setting of the roller facilitates the horizontal movement of the glass to achieve the movement and adjustment of the glass. The pushing frame 10 can extend from the top table of the base 1 to lift the glass. The pushing frame 10 is limited to the top table of the base 1. The pushing frame 10 can be lifted and lowered. The glass on the top table of the base 1 is lifted upward by the pushing frame 10, and the glass is moved along the inclined surface of the correction frame 7 to the top of the correction frame 7, and the glass is limited by the positioning rod 8.

[0027] like Figure 2 As shown, infrared sensors 3 are provided on both sides of the automatic cutting machine 2 with its cutting part as the center. The infrared sensors 3 are used to sense whether there is glass under the cutting part of the automatic cutting machine 2, thereby preventing the cutting knife of the automatic cutting machine 2 from cutting the top table of the base 1, thereby protecting the top table of the base 1 and the cutting knife of the automatic cutting machine 2.

[0028] When in use, the glass is conveyed to the bottom of the cutting part of the automatic cutting machine 2 through the conveying mechanism. According to the size of the glass, the two-way threaded rod 5 is driven to rotate by the motor 4, thereby driving the movable frame 6 to move horizontally along the slide groove provided on the top table of the base 1. The movable frames 6 on both sides drive the correction frames 7 to move closer or farther away from each other, thereby adjusting the distance between the two movable frames 6 according to the size of the glass, thereby adjusting the distance between the two correction frames 7, thereby realizing correction of glasses of different sizes; when the movable frames 6 on both sides approach each other, the movable frames 6 on both sides drive the horizontal plates connected thereto to approach each other, because the top table of the base 1 pushes The movable frame 10 is limited, so that the pushing frame 10 protrudes upward from the top table of the base 1, thereby pushing the glass upward; since the correction frames 7 are close to each other and are arranged with an inclined surface on one side, when the pushing frame 10 pushes the glass upward, the glass moves along the inclined surface of the correction frame 7 to the top of the correction frame 7, and the positioning rods 8 are used to limit the two sides of the glass; then, the automatic cutting machine 2 moves to the top of the positioning rod 8, and the cutting part of the automatic cutting machine 2 gradually approaches the glass downward and cuts the glass, thereby correcting the glass conveyed to the top table of the base 1 and accurately cutting the corrected glass by the automatic cutting machine 2.

[0029] like Figure 1 and Figure 6 As shown, cleaning brushes 13 are provided on both sides of the automatic cutting machine 2 through a fixed frame 12. The cleaning brushes 13 are in contact with the top surface of the base 1. The bristles of the cleaning brush 13 are soft, and the height of the fixed frame 12 is adjustable. A waste collection frame 14 is provided at the lower part of the base 1.

[0030] After the automatic cutting machine 2 completes the cutting operation of the glass, the automatic cutting machine 2 moves horizontally along the N-shaped rod 101, and the cleaning brush 13 moves relative to the top surface of the base 1, thereby cleaning the glass debris left on the top surface of the base 1 after the glass is cut into the waste collection frame 14, thereby achieving efficient cleaning of the top surface of the base 1.

[0031] The above description is merely an example of the implementation of the present invention and is not intended to limit the present invention. Any equivalent substitutions made within the principles of the present invention shall be included within the scope of protection of the present invention. Any matters not fully described in the present invention are prior art known to those skilled in the art.

Claims

1. A fully automatic glass cutting machine assembly line with a correction function, comprising a base (1), wherein n-shaped rods (101) are symmetrically arranged on both sides of the upper portion of the base (1), an automatic cutting machine (2) is slidably mounted between the two n-shaped rods (101), the automatic cutting machine (2) is located above the base (1), and a conveying mechanism for conveying glass to the bottom of the automatic cutting machine (2) to facilitate the cutting operation of the automatic cutting machine (2) is arranged on the base (1), characterized in that: The base (1) is provided with slide grooves on both sides symmetrically with the conveying mechanism as the center, and a movable frame (6) is slidably arranged in the slide groove. The movable frame (6) is installed with a correction frame (7) for correcting the glass conveyed by the conveying mechanism so that it is located directly below the automatic cutting machine (2).

2. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 1, characterized in that: The sides of the two correction frames (7) that are close to each other are arranged as inclined surfaces.

3. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 2, characterized in that: A positioning rod (8) is provided on the top of the correction frame (7) for limiting the position of the glass and facilitating the automatic cutting machine (2) to align with the glass cutting position.

4. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 3, characterized in that: A bidirectional threaded rod (5) is provided between the two movable frames (6), and the bidirectional threaded rod (5) is threadedly connected to the movable frames (6).

5. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 4, characterized in that: A motor (4) is installed at the lower part of the base (1), and an output shaft of the motor (4) is connected to one end of a bidirectional threaded rod (5). The motor (4) is used to drive the bidirectional threaded rod (5) to rotate to adjust the distance between the two movable frames (6).

6. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 5, characterized in that: A horizontal plate is provided on each side of the two movable frames (6) close to each other, and a plurality of horizontal bars (9) are provided symmetrically and in parallel on both sides of the horizontal plate. A push frame (10) is rotatably connected to the horizontal bar (9) through a connecting frame (11). The push frame (10) can extend from the top table of the base (1) to lift the glass.

7. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 6, characterized in that: Cleaning brushes (13) are provided on both sides of the automatic cutting machine (2) via a fixing frame (12), and the cleaning brushes (13) are in contact with the top surface of the base (1).

8. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 7, characterized in that: Infrared sensors (3) are provided on both sides of the automatic cutting machine (2) with its cutting portion as the center. The infrared sensors (3) are used to sense whether there is glass below the cutting portion of the automatic cutting machine (2).

9. The fully automatic glass cutting machine assembly line with a correction function as claimed in claim 8, characterized in that: A waste collection frame (14) is provided at the lower part of the base (1).