Feeding device for glass cutting processing

By designing a glass cutting device with electric loading and guide support, the problems of time-consuming and labor-intensive manual loading and glass offset are solved, and the cutting efficiency and accuracy are improved.

CN223189115UActive Publication Date: 2025-08-05SHANDONG BOXIANG GLASS CO LTD
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Patent Information

Application Number
CN202422308910.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-08-05
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In the existing glass cutting process, manual loading is time-consuming and labor-intensive, and the glass is prone to deflection, resulting in large cutting errors.

Method used

A glass cutting device including a feeding mechanism and a placement mechanism is designed. The feeding mechanism drives the sliding block and the clamps through a threaded rod to achieve electric loading. The placement mechanism provides support and guidance through a guide roller to avoid glass deviation.

Benefits of technology

Electric loading is achieved, efficiency is improved, labor intensity is reduced, and glass is effectively prevented from being offset during placement, ensuring cutting accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass cutting and processing, and discloses a feeding device for glass cutting and processing, which comprises a mounting plate, vertical plates are fixedly connected to four corners of the top of the mounting plate, a support frame is fixedly connected among the four vertical plates, a feeding mechanism is arranged on the surface of the support frame, and a feeding mechanism is arranged on the top of the mounting plate. A containing mechanism is arranged in the middle of the top of the supporting frame. According to the feeding device for glass cutting machining, through the arranged feeding mechanism, in the rotating process of a threaded rod, a sliding block can be driven to move upwards, at the moment, a clamping piece moves upwards, so that glass feeding can be achieved, manual feeding is replaced with electric feeding, time and labor are saved, the glass feeding efficiency is improved, and the production efficiency is improved. And meanwhile, follow-up cutting machining of the glass is facilitated, the glass can be supported and guided through the arranged placing mechanism and first guide rollers on the two sides, the phenomenon that the glass seriously deviates in the placing process is avoided, and the purpose of conveniently placing the glass is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass cutting and processing, in particular to a feeding device for glass cutting and processing. Background Art

[0002] Glass is an amorphous, inorganic, non-metallic material made primarily from a variety of inorganic minerals (such as quartz sand, borax, boric acid, barite, barium carbonate, limestone, feldspar, and soda ash), with small amounts of auxiliary materials added. Its primary components are silicon dioxide and other oxides, with chemical compositions often including Na₂SiO₃, CaSiO₃, SiO₂, or Na₂O·CaO·6SiO₂. It is an amorphous solid with an irregular structure.

[0003] During the glass cutting process, it needs to be loaded. Currently, it is mainly loaded manually. Manual loading is time-consuming, labor-intensive, and reduces the loading efficiency. At the same time, the procedure also requires manual support and fixation of the glass, which can easily cause the glass to shift during the cutting process, resulting in large cutting errors and defects in the glass. Utility Model Content

[0004] The purpose of the present utility model is to provide a feeding device for glass cutting to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solution: a loading device for glass cutting processing, comprising a mounting plate, wherein the four corners of the top of the mounting plate are fixedly connected to vertical plates, a support frame is fixedly connected between the four vertical plates, a loading mechanism is provided on the surface of the support frame, and a placement mechanism is provided in the middle of the top of the support frame.

[0006] The feeding mechanism includes a threaded rod, which is rotatably connected to the four corners of the support frame. The surfaces of the four threaded rods are threadedly connected to sliding blocks, and the surface of the sliding block is fixedly connected to a fixed plate. The side of the fixed plate away from the sliding block is fixedly connected to a cylinder, and the side of the cylinder away from the fixed plate is fixedly connected to a clamping member.

[0007] Preferably, the bottom of the threaded rod is fixedly connected to a worm wheel, the surface of the worm wheel is engaged with a worm, and the number of worms is two. A dual-axis motor is fixedly connected in the middle of the two worm surfaces, and the two dual-axis motors are fixedly connected to both sides of the bottom of the support frame. With the mutual cooperation of the worm and the worm wheel, the threaded rod can be driven to rotate synchronously.

[0008] Preferably, a connecting plate is fixedly connected to the surface of the sliding block, a telescopic rod is fixedly connected to the bottom of the connecting plate, and the telescopic rod is fixedly connected to the top of the support frame. The sliding block can be supported by the provided telescopic rod.

[0009] Preferably, the surface of the threaded rod is rotatably connected to a first fixing member, and the first fixing member is fixedly connected to the top of the support frame. The first fixing member can support the threaded rod to avoid deviation of the threaded rod during rotation.

[0010] Preferably, both sides of the worm surface are rotatably connected with second fixing members, and the second fixing members are fixedly connected to the surface of the support frame. The second fixing members can form a supporting force for the worm.

[0011] Preferably, the placement mechanism includes a support member, which is fixedly connected to the middle of the top of the mounting plate. A second guide roller is rotatably connected inside the support member. Several second guide rollers are provided, and the several second guide rollers are distributed at equal intervals. The second guide roller at the bottom can easily transport the glass.

[0012] Preferably, a positioning piece is fixedly connected to the surface of the support frame, and a first guide roller is fixedly connected to the surface of the positioning piece. The first guide rollers are symmetrically arranged, and the first guide rollers on both sides can provide support and guidance for the glass to avoid serious deviation of the glass during placement.

[0013] Compared with the prior art, the present invention provides a feeding device for glass cutting, which has the following beneficial effects:

[0014] The feeding device for glass cutting processing, through the provided feeding mechanism, can drive the sliding block to move upward during the rotation of the threaded rod. At this time, the clamping part moves upward, thereby enabling the loading of the glass. Electric loading replaces manual loading, saving time, effort and labor, improving the efficiency of glass loading, and also facilitating subsequent cutting processing of the glass.

[0015] The loading device for glass cutting processing has a placement mechanism, and the first guide rollers on both sides can provide support and guidance for the glass, thereby avoiding serious deviation of the glass during placement, and facilitating the placement of the glass. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without inventive work.

[0017] Figure 1 This is a schematic diagram of the overall structure of the utility model;

[0018] Figure 2 This is a schematic cross-sectional view of the overall structure of the utility model;

[0019] Figure 3 This is a schematic diagram of the feeding mechanism of the utility model;

[0020] Figure 4 This is a schematic diagram of the placement mechanism of the utility model.

[0021] In the figure: 1. Mounting plate; 2. Feeding mechanism; 21. First fixing member; 22. Sliding block; 23. Worm gear; 24. Worm; 25. Second fixing member; 26. Clamping member; 27. Cylinder; 28. Threaded rod; 29. Telescopic rod; 201. Dual-axis motor; 202. Connecting plate; 203. Fixing plate; 3. Placement mechanism; 31. Positioning member; 32. Support member; 33. First guide roller; 34. Second guide roller; 4. Support frame; 5. Vertical plate. DETAILED DESCRIPTION

[0022] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0023] The utility model provides a technical solution:

[0024] Example 1: Combination Figure 1-2 to Figure 3 A feeding device for glass cutting processing includes a mounting plate 1, the four corners of the top of the mounting plate 1 are fixedly connected to vertical plates 5, a support frame 4 is fixedly connected between the four vertical plates 5, a feeding mechanism 2 is provided on the surface of the support frame 4, and a placement mechanism 3 is provided in the middle of the top of the support frame 4.

[0025] The loading mechanism 2 includes a threaded rod 28, which is rotatably connected to the four corners of the support frame 4. The surfaces of the four threaded rods 28 are threadedly connected to the sliding blocks 22, and the surface of the sliding blocks 22 is fixedly connected to the fixed plate 203. The side of the fixed plate 203 away from the sliding block 22 is fixedly connected to the cylinder 27, and the side of the cylinder 27 away from the fixed plate 203 is fixedly connected to the clamping member 26.

[0026] Furthermore, the bottom of the threaded rod 28 is fixedly connected to a worm wheel 23, and a worm 24 is engaged with the surface of the worm wheel 23. There are two worms 24, and a dual-axis motor 201 is fixedly connected in the middle of the surface of the two worms 24. The two dual-axis motors 201 are fixedly connected to both sides of the bottom of the support frame 4. With the mutual cooperation of the worm 24 and the worm wheel 23, the threaded rod 28 can be driven to rotate synchronously.

[0027] Furthermore, a connecting plate 202 is fixedly connected to the surface of the sliding block 22, a telescopic rod 29 is fixedly connected to the bottom of the connecting plate 202, and the telescopic rod 29 is fixedly connected to the top of the support frame 4. The sliding block 22 can be supported by the telescopic rod 29.

[0028] Furthermore, the surface of the threaded rod 28 is rotatably connected to a first fixing member 21, and the first fixing member 21 is fixedly connected to the top of the support frame 4. The first fixing member 21 is set to support the threaded rod 28 to prevent the threaded rod 28 from being offset during rotation.

[0029] Furthermore, second fixing members 25 are rotatably connected to both sides of the surface of the worm 24 . The second fixing members 25 are fixedly connected to the surface of the support frame 4 . The second fixing members 25 can form a supporting force for the worm 24 .

[0030] Example 2: See Figure 4 On the basis of Example 1, the placement mechanism 3 is further obtained to include a support member 32, the support member 32 is fixedly connected to the middle of the top of the mounting plate 1, and a second guide roller 34 is rotatably connected in the support member 32. The number of second guide rollers 34 is set, and the plurality of second guide rollers 34 are distributed at equal intervals. The second guide rollers 34 at the bottom can easily transport the glass.

[0031] Furthermore, a positioning member 31 is fixedly connected to the surface of the support frame 4, and a first guide roller 33 is fixedly connected to the surface of the positioning member 31. The first guide rollers 33 are symmetrically arranged. The first guide rollers 33 on both sides can provide support and guidance for the glass to avoid serious deviation of the glass during placement.

[0032] In actual operation, when this device is used, first, by placing the glass from the right or right side into the interior of the support 32, the second guide roller 34 at the bottom can easily transport the glass, and the first guide rollers 33 on both sides can provide support and guidance for the glass, avoiding serious deviation of the glass during placement, thereby facilitating the placement of the glass. When the glass needs to be loaded, the cylinders 27 on both sides are driven simultaneously, and the cylinders 27 can drive the clamping members 26 on both sides to move in a direction close to each other. At this time, the clamping members 26 can clamp the glass. Then, by simultaneously starting the dual-axis motors 201 on both sides, the dual-axis motors 201 can drive the worm 24 and worm gear 23 on both sides to rotate synchronously. At this time, the four threaded rods 28 rotate synchronously. During the rotation of the threaded rods 28, the sliding block 22 can be driven to move upward. At this time, the clamping members 26 move upward, thereby realizing the loading of the glass. Electric loading replaces manual loading, saving time, effort and labor, improving the efficiency of glass loading, and also facilitating the subsequent cutting of the glass.

[0033] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or device comprising a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or device. In the absence of further limitations, an element defined by the phrase "comprising a..." does not exclude the presence of additional identical elements in the process, method, article, or device comprising the element.

Claims

1. A feeding device for glass cutting, comprising a mounting plate (1), characterized in that: The four corners of the top of the mounting plate (1) are fixedly connected to vertical plates (5), a support frame (4) is fixedly connected between the four vertical plates (5), a loading mechanism (2) is provided on the surface of the support frame (4), and a placement mechanism (3) is provided in the middle of the top of the support frame (4); The feeding mechanism (2) includes a threaded rod (28), and the threaded rod (28) is rotatably connected to the four corners of the support frame (4). The surfaces of the four threaded rods (28) are threadedly connected to the sliding blocks (22), and the surface of the sliding blocks (22) is fixedly connected to the fixed plate (203). The side of the fixed plate (203) away from the sliding blocks (22) is fixedly connected to the cylinder (27), and the side of the cylinder (27) away from the fixed plate (203) is fixedly connected to the clamping member (26).

2. A feeding device for glass cutting according to claim 1, characterized in that: The bottoms of the four threaded rods (28) are fixedly connected to a worm wheel (23), the surface of the worm wheel (23) is meshed with a worm (24), two worms (24) are provided, and the middle of the surfaces of the two worms (24) are fixedly connected to a dual-axis motor (201), and the two dual-axis motors (201) are fixedly connected to both sides of the bottom of the support frame (4).

3. The glass cutting feeding device according to claim 1, characterized in that: The surface of the sliding block (22) is fixedly connected to a connecting plate (202), the bottom of the connecting plate (202) is fixedly connected to a telescopic rod (29), and the telescopic rod (29) is fixedly connected to the top of the support frame (4).

4. The glass cutting feeding device according to claim 1, characterized in that: The surface of the threaded rod (28) is rotatably connected to a first fixing member (21), and the first fixing member (21) is fixedly connected to the top of the support frame (4).

5. The feeding device for glass cutting according to claim 2, characterized in that: Second fixing members (25) are rotatably connected to both sides of the surface of the worm (24), and the second fixing members (25) are fixedly connected to the surface of the support frame (4).

6. The glass cutting feeding device according to claim 1, characterized in that: The placement mechanism (3) includes a support member (32), the support member (32) is fixedly connected to the middle of the top of the mounting plate (1), and a second guide roller (34) is rotatably connected inside the support member (32). The number of the second guide rollers (34) is equidistantly distributed.

7. The feeding device for glass cutting according to claim 1, characterized in that: A positioning member (31) is fixedly connected to the surface of the support frame (4), and a first guide roller (33) is fixedly connected to the surface of the positioning member (31), and the first guide roller (33) is symmetrically arranged.