Full-automatic customized glass cutting equipment

By using slides and gear belt transmission systems in customized glass cutting equipment, the problems of high equipment costs and inconvenient maintenance in customized glass production are solved, and the cutting effect is achieved with low cost and high flexibility.

CN223292447UActive Publication Date: 2025-09-02ZHONGSHAN PHELP LIGHTING C LTD
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Patent Information

Application Number
CN202422290797.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-19
Publication Date
2025-09-02
Estimated Expiration
2034-09-19

AI Technical Summary

Technical Problem

The existing customized glass production equipment is costly and inconvenient to maintain, making it difficult to meet the cutting needs of small batch customized glass.

Method used

The sliding track and gear belt transmission system are adopted to realize the movement of the XY axis through the gear belt and transmission gear, simplifying the transmission system, reducing equipment costs and improving operating flexibility.

Benefits of technology

It reduces equipment manufacturing and maintenance costs, improves operating flexibility, and facilitates customization of glass cutting processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to full-automatic customized glass cutting equipment which comprises a supporting table, a working table top arranged at the top of the supporting table, first sliding ways arranged on the two sides of the working table top, first sliding blocks moving along the first sliding ways, and first drivers arranged on at least one side of the working table top and used for driving the first sliding blocks. The transverse support stretches across the first sliding blocks on the two sides, the second sliding way is arranged on the transverse support, the second sliding block moves along the second sliding way, the second driver drives the second sliding block, and the cutting device is arranged on the second sliding block and moves synchronously with the second sliding block. The driving mechanism moves in the X-axis direction and the Y-axis direction through gear transmission, so that the equipment manufacturing cost and the maintenance cost are greatly reduced, meanwhile, manual intervention is facilitated, the operation flexibility is improved, and the cutting process of customized glass is more convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of intelligent equipment, and specifically to the technical field of fully automatic customized glass cutting equipment. Background Art

[0002] There are many types of glass cutting equipment on the market, which can cut glass of different shapes through precise movement of X and Y axes. These devices usually use linear motors or screw drives to achieve high-precision positioning and cutting.

[0003] For example, Chinese patent CN110395896A, a photoelectric glass cutting machine, discloses a solution in which a belt transmission mechanism is installed on a slide via a lead screw and a lead screw nut, and then a linear motor drives the slide to complete XY axis movement cutting.

[0004] However, the cost of this type of equipment is relatively high. Although it has significant advantages in mass production, it is not economical when producing customized glass.

[0005] Since the production volume of customized glass is small and the size changes frequently, a lower-cost and easier-to-maintain equipment is needed to meet this market demand. Utility Model Content

[0006] In order to solve the above problems, the utility model proposes a fully automatic customized glass cutting equipment, which aims to better meet the needs of customized glass production by simplifying the transmission system, reducing costs, and improving the flexibility and maintenance convenience of the equipment.

[0007] In order to achieve the above purpose, the utility model adopts the following technical solutions:

[0008] A fully automatic custom glass cutting device comprises a support table, a work surface arranged on the top of the support table, first slideways arranged on both sides of the work surface, a first slider moving along the first slideway, and a first drive arranged on at least one side of the work surface for driving the first slider;

[0009] The invention also includes a transverse support spanning the first sliders on both sides, a second slideway provided on the transverse support, a second slider moving along the second slideway, a second drive driving the second slider, and a cutting device provided on the second slider and moving synchronously with the second slider;

[0010] The support platform and the lateral support are respectively provided with gear belts along the first slideway and the second slideway, and the first slider and the second slider are respectively provided with a first transmission gear and a second transmission gear engaged with the gear belts.

[0011] Compared with the existing technology, this case sets a slide and a gear belt in the XY axis direction respectively, and sets a transmission gear on the slider sliding along it. The driving mechanism only needs to drive the transmission gear to move on the gear belt to achieve movement in the XY axis direction, which greatly reduces the manufacturing cost and maintenance cost of the equipment. At the same time, it facilitates manual intervention, improves operational flexibility, and is more convenient for customized glass cutting process.

[0012] In some embodiments, the invention further includes a transmission belt connecting the first transmission gear and the first drive, and connecting the second transmission gear and the second drive respectively.

[0013] In some embodiments, the first sliding block includes a first sliding portion and a first support connected to the lateral support and the first sliding portion, and the first drive is provided on the first support.

[0014] In some embodiments, the second sliding block includes a second sliding portion and a cutting support covering the lateral support and connected to the second sliding portion.

[0015] In a preferred embodiment, the cutting support includes a side bracket connected to the second sliding part and a top bracket covering the top of the lateral support, the cutting device is arranged on the side bracket, and the second drive and the second transmission gear are arranged on the top bracket.

[0016] In a preferred embodiment, the present invention further comprises a water tank disposed on the top support and supplying cooling water to the cutting device.

[0017] In a preferred embodiment, the device further includes a proximity sensor disposed on the side bracket and a controller disposed on the top bracket.

[0018] In some embodiments, it further includes a first line belt arranged on the side of the support platform and a second line belt arranged on the top of the lateral support.

[0019] In a preferred embodiment, the second slideway is two rows of parallel slideways. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 This is an overall schematic diagram of a fully automatic customized glass cutting equipment in this case;

[0021] Figure 2 This is a top view of a fully automatic custom glass cutting device in this case;

[0022] Figure 3 yes Figure 1 The enlarged view of the part at point A is also a schematic diagram of the Y-axis sliding structure;

[0023] Figure 4 yes Figure 3 Side view of

[0024] Figure 5 yes Figure 1 The partial enlarged view at point B is also a schematic diagram of the X-axis sliding structure;

[0025] Figure 6 yes Figure 5 side view. DETAILED DESCRIPTION

[0026] The following examples further illustrate the features of the present invention and other related features to facilitate understanding by those skilled in the art:

[0027] It should be noted that the terms "upper" and "lower" used in the following description refer to spatial positions. "Inner" and "outer" are also used to refer to directions toward or away from the geometric center of a specific component, respectively. Figure 1 The X-axis and Y-axis directions in the middle arrow directions are the moving directions of the sliding structure in this case.

[0028] In the description of this utility model, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they may refer to fixed connections, detachable connections, or integral connections; they may refer to direct connections, indirect connections through an intermediate medium, or internal communication between two components. Those skilled in the art will understand the specific meanings of these terms in this utility model based on the specific circumstances.

[0029] Please refer to Figure 1 and Figure 2 This invention relates to a fully automatic custom glass cutting machine, comprising a support platform 1 and a work surface 2 mounted on top of the support platform 1. The width of the work surface 2 is smaller than that of the support platform 1, meaning there is space on both sides of the work surface 2 along the X-axis. Furthermore, the surface of the work surface 2 can be provided with a non-slip mat to prevent scratches and misalignment of the glass during cutting.

[0030] Please refer to Figures 1 to 4 First slideways 11 are provided on both sides of the work surface 2, along which the first slider 3 moves. A first drive 31 is provided on at least one side of the work surface 2 to drive the movement of the first slider 3. Specifically, the slideways and sliders have a concave-convex structure, with the slideway having protrusions and the slider having grooves. The following description will simply refer to the sliding structure, for example, the Y-axis sliding structure represents the first slideway 11 and the first slider 3.

[0031] Furthermore, on one side of the first drive 31 of the support platform 1, a gear belt 4 is provided along the first slideway 11, and a first transmission gear 32 meshing therewith is provided on the first slider 3. At the same time, a transverse support 5 is provided across the first sliders 3 on both sides.

[0032] Furthermore, the first slider 3 further includes a first sliding portion 33 and a first support 34 connected to the lateral support 5 and the first sliding portion 33. The first driver 31 is disposed on the first support 34. Specifically, the first support 34 can be designed as an L-shaped structure, and the first driver 31 can be locked in the inner groove position of the first support 34, so that it can move more stably with the entire sliding structure.

[0033] The first transmission gear 32 and the first driver 31 are connected by a transmission belt 6. This allows the first driver 31 to utilize a rotary motor to drive the first transmission gear 32, thereby driving the entire first slider 3 and the transverse support 5 in the Y-axis direction. In this case, a first linear belt 71 is provided on the side of the support platform 1, eliminating the need for additional support devices and allowing it to be directly tied to the support platform 1 for securement.

[0034] The following is an explanation of its X-axis movement, please refer to Figure 1 、 Figure 2 and Figure 5 、 Figure 6 . A second slide 51 is provided on the transverse support 5, specifically on the lateral side thereof. Furthermore, the second slider 8 moves along the second slide 51. The X-axial sliding structure represents the second slide 51 and the second slider 8. Compared with the vertical Y-axial sliding structure, the second slide 51 of the X-axial sliding structure is on the side of the transverse support 5, that is, it is arranged horizontally. Therefore, for the sake of its stability, the second slide 51 is preferably provided in two rows, and the two rows of slides arranged in parallel can prevent it from falling off.

[0035] The second slider 8 is further provided with a second drive 81 for driving the second slider 8. The second slider 8 is also provided with a cutting device 9 that moves synchronously therewith. Specifically, the cutting device 9 can be a liftable glass cutter, which will not be described in detail.

[0036] Specifically, the second slideway 51 is provided with a gear belt 4. Similar to the Y-axis movement, this gear belt 4 can be understood as a transmission structure operating on the same principle. The second slider 8 is provided with a second transmission gear 82 that meshes with the gear belt 4. Furthermore, the second slider 8 includes a second sliding portion 83 and a cutting support 84 that covers the transverse support 5 and is connected to the second sliding portion 83.

[0037] More specifically, the cutting support 84 is an L-shaped structure arranged around the sides and top of the transverse support 5. It includes side supports 841 connected to the second sliding portion 83 and a top support 842 covering the top of the transverse support 5. The cutting device 9 is mounted on the side supports 841, while the second drive 81 and second transmission gear 82 are mounted on the top support 842. In other words, the top support 842 covers the transverse support 5, providing counterforce support to the second sliding portion 83 and second slideway 51 relative to the cutting device 9.

[0038] The second drive gear 82 and the second driver 81 are connected by a transmission belt 6. This transmission belt 6 employs the same transmission structure as the Y-axis connection. This allows the second driver 81 to drive the second drive gear 82 via the transmission belt 6. This means that X-axis movement can also be achieved by using a rotary motor to drive the second slider 8 in the X-axis. In this case, the second linear belt 72 is positioned on top of the transverse support 5, stabilizing the second linear belt 72 without requiring additional support devices.

[0039] In this way, the fully automatic customized glass cutting equipment in this case only needs to rotate the motor to achieve movement in the XY axis direction through traditional belt drive and gear drive, which greatly reduces the manufacturing cost and maintenance cost of the equipment. At the same time, it facilitates manual intervention, improves operational flexibility, and is more convenient for customized glass cutting process.

[0040] Practical application when cutting, need to cool down and lubricate glass cutter, generally use water as cooling fluid. To this, this case utilizes cutting support 84 to be provided with the water tank 85 of conveying cooling water at its top.

[0041] In some embodiments, a cutting support 84 is also utilized, a proximity sensor 86 is provided on the side support 841 , and a controller 87 is provided on the top support 842 .

[0042] As stated above, this case protects a fully automatic customized glass cutting equipment, and all technical solutions that are identical or similar to this case should be deemed to fall within the scope of protection of this case.

Claims

1. A fully automatic custom glass cutting device, characterized in that: It comprises a support platform (1), a work surface (2) arranged on the top of the support platform (1), first slideways (11) arranged on both sides of the work surface (2), a first slider (3) moving along the first slideway (11), and a first drive (31) arranged on at least one side of the work surface (2) for driving the first slider (3); The invention also includes a transverse support (5) spanning the first slide (3), a second slideway (51) provided on the transverse support (5), a second slide (8) moving along the second slideway (51), a second drive (81) driving the second slide (8), and a cutting device (9) provided on the second slide (8) and moving synchronously with the second slide (8); The support platform (1) and the transverse support (5) are respectively provided with a gear belt (4) along a first slideway (11) and a second slideway (51); the first slider (3) and the second slider (8) are respectively provided with a first transmission gear (32) and a second transmission gear (82) meshed with the gear belt (4).

2. The fully automatic customized glass cutting equipment according to claim 1, characterized in that: It also includes a transmission belt (6) connecting the first transmission gear (32) and the first drive (31), and connecting the second transmission gear (82) and the second drive (81).

3. The fully automatic customized glass cutting equipment according to claim 1, characterized in that: The first sliding block (3) comprises a first sliding portion (33) and a first support (34) connected to the transverse support (5) and the first sliding portion (33), and the first drive (31) is arranged on the first support (34).

4. The fully automatic customized glass cutting equipment according to claim 1, characterized in that: The second sliding block (8) comprises a second sliding portion (83) and a cutting support (84) covering the transverse support (5) and connected to the second sliding portion (83).

5. The fully automatic customized glass cutting equipment according to claim 4, characterized in that: The cutting support (84) includes a side bracket (841) connected to the second sliding part (83) and a top bracket (842) covering the top of the transverse support (5), the cutting device (9) is arranged on the side bracket (841), and the second drive (81) and the second transmission gear (82) are arranged on the top bracket (842).

6. The fully automatic customized glass cutting equipment according to claim 5, characterized in that: It also includes a water tank (85) disposed on the top support (842) and configured to deliver cooling water to the cutting device (9).

7. The fully automatic customized glass cutting equipment according to claim 5, characterized in that: It also includes a proximity sensor (86) arranged on the side bracket (841) and a controller (87) arranged on the top bracket (842).

8. The fully automatic customized glass cutting equipment according to claim 1, characterized in that: It also includes a first line belt (71) arranged on the side of the support platform (1) and a second line belt (72) arranged on the top of the transverse support (5).

9. The fully automatic customized glass cutting equipment according to claim 1, characterized in that: The second slideway (51) is two parallel slideways.

Citation Information

Patent Citations

  • Photoelectric glass cutting machine

    CN110395896A