Cutting table based on ultra-white float glass

By setting cleaning holes and collection hoppers on the ultra-white float glass cutting table, combined with the design of clamping blocks and fixing screws, the problem of inconvenient cleaning of existing devices is solved, achieving efficient collection of glass residue and multi-dimensional adjustment of the cutting blade, thus improving the practicality of the cutting table and the cutting flexibility.

CN223657328UActive Publication Date: 2025-12-12QINHUANGDAO AOHUA GLASS CO LTD
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Patent Information

Application Number
CN202520245745.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-12
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

The existing clamping components of ultra-white float glass cutting tables are not convenient for cleaning glass residue, and the clamping components require a separate sliding structure, which is not very practical and cannot be used in conjunction with the cleaning holes to achieve sliding.

Method used

A cleaning hole and a collection hopper are set on the processing table, and a clamping assembly consisting of a clamping block and a fixing screw is designed. The clamping block slides in the cleaning hole, and combined with the cutting assembly, the glass is firmly clamped and easily cleaned through multi-dimensional adjustment by an electric cylinder and a cutting blade.

Benefits of technology

It improves the efficiency of cleaning glass residue, offers flexible clamping and fixing methods, and allows for multi-dimensional adjustment of the cutting blade to adapt to the cutting needs of glass of different sizes and shapes, ensuring the continuity and stability of the cutting work.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a cutting table based on ultra-white float glass, and relates to the technical field of cutting tables. The machining table is placed on the ground, cleaning holes are formed in the machining table in a linear array shape, and a collecting hopper is welded to the machining table and located below the cleaning holes. The cleaning hole and the collecting hopper are arranged on the machining table, so that glass scraps generated in the machining process can be conveniently collected into the cleaning hole, and then fall into the collecting hopper, the cleaning process is simplified, and the working efficiency is improved; according to the flexible clamping and fixing mode, the glass can be firmly clamped and fixed through clamping blocks and fixing screw rods in the clamping assemblies; and due to the design that the clamping blocks slide in the cleaning holes, the clamping structure is simplified, the clamping blocks can slide conveniently during residue cleaning so as to collect scraps, and the cleaning convenience is further improved.
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Description

Technical Field

[0001] This utility model belongs to the field of cutting table technology, and more specifically, it relates to a cutting table based on ultra-white float glass. Background Technology

[0002] Ultra-clear float glass refers to ultra-clear glass that possesses all the processability properties of high-quality float glass, has superior physical, mechanical, and optical properties, and can undergo various deep processing like other high-quality float glass; a cutting table is required when cutting the glass.

[0003] Although the existing device is equipped with a clamping component for holding the glass, the clamping component is not convenient for collecting and cleaning the glass residue on the worktable; the clamping component of the existing device requires a separate sliding structure, which is not very practical, and cannot be used in conjunction with the cleaning hole to achieve sliding. Utility Model Content

[0004] To address the aforementioned technical problems, this utility model provides a cutting table based on ultra-clear float glass. This solves the problem that although existing devices are equipped with clamping components for holding glass, these components are inconvenient for collecting and cleaning glass residue on the worktable. Furthermore, the existing devices require a separate sliding structure for their clamping components, which is not very practical and cannot be used in conjunction with the cleaning holes to achieve sliding.

[0005] The purpose and function of this utility model for the cutting table of ultra-clear float glass are achieved by the following specific technical means:

[0006] A cutting table based on ultra-white float glass includes a processing table; the processing table is placed on the ground, and cleaning holes are opened in a linear array on the processing table. A collection hopper is welded on the processing table, and the collection hopper is located below the cleaning holes.

[0007] Furthermore, a clamping assembly is installed on the processing table. The clamping assembly consists of clamping blocks and fixing screws. Two clamping blocks slide inside the cleaning hole. Both clamping blocks are in contact with the top surface of the processing table. Each clamping block is threaded with a fixing screw. When the fixing screw is tightened, the clamping block cannot move on the processing table.

[0008] Furthermore, a cutting assembly is installed on the processing table. The cutting assembly consists of a first electric cylinder, a first mounting block, a second electric cylinder, a sliding seat, a sliding block, a motor, a threaded rod, a third electric cylinder, a second mounting block, and a cutting blade. Two first electric cylinders are fixed on the top surface of the processing table, and the extended ends of the two first electric cylinders are fixed on the bottom surface of the first mounting block.

[0009] Furthermore, two second electric cylinders are fixed to the rear end face of the first mounting block. The protruding ends of the two second electric cylinders pass through the first mounting block and are fixed to the sliding seat.

[0010] Furthermore, a sliding block slides on the sliding seat, and a threaded rod rotates on the sliding seat. The threaded rod is threadedly connected to the sliding block, and a motor is fixed to the right end face of the sliding seat. The output shaft of the motor is fixed to the threaded rod.

[0011] Furthermore, two third electric cylinders are fixed to the bottom end face of the sliding block, and the extended ends of the two third electric cylinders are fixed to the second mounting block. A cutting blade is fixed to the bottom end face of the second mounting block.

[0012] Furthermore, a switch box is fixed on the front end face of the processing table. The switch box is electrically connected to an external power supply. Four switches are installed on the switch box, and the four switches are electrically connected to the first electric cylinder, the second electric cylinder, the electric motor, and the third electric cylinder, respectively.

[0013] Compared with the prior art, the present invention has the following beneficial effects:

[0014] Easy to clean glass residue: By setting cleaning holes and collection hoppers on the processing table, glass fragments generated during processing can be easily collected into the cleaning holes, and the fragments then fall into the collection hopper, simplifying the cleaning process and improving work efficiency.

[0015] Flexible clamping and fixing method: The clamping block and fixing screw in the clamping assembly can be used to firmly clamp and fix the glass; the design of the clamping block sliding in the cleaning hole simplifies the clamping structure and makes it easy to slide the clamping block to collect the debris when cleaning residue, further improving the convenience of cleaning.

[0016] Multi-dimensional cutting adjustment: The design of the cutting components allows the cutting blade to be adjusted in multiple dimensions, including height, front-to-back position, and left-to-right position; this design not only improves the flexibility of cutting, but also adapts to the cutting needs of glass of different sizes and shapes.

[0017] Redundant design of electric cylinders: By using the first and third electric cylinders in combination, a redundant design for adjusting the height of the cutting blade is achieved; even if one of the electric cylinders fails, the height can still be adjusted by the other electric cylinder, ensuring the continuity and stability of the cutting work. Attached Figure Description

[0018] Figure 1 This is an axial view structural schematic diagram of the cutting table for ultra-white float glass of this utility model.

[0019] Figure 2This is a schematic diagram of the main structure of the cutting table for ultra-white float glass of this utility model.

[0020] Figure 3 This is a schematic diagram of the left-hand structure of the cutting table for the ultra-white float glass of this utility model.

[0021] Figure 4 This is an axial view structural diagram of the processing table, clamping block, and fixing screw of this utility model.

[0022] Figure 5 This is a utility model Figure 4 A schematic diagram of the rotated axial view structure.

[0023] Figure 6 This is a utility model Figure 4 A schematic diagram of the split-axis view structure.

[0024] In the diagram, the correspondence between component names and drawing numbers is as follows:

[0025] 1. Processing table; 101. Cleaning hole; 102. Collection hopper;

[0026] 2. Clamping assembly; 201. Clamping block; 202. Fixing screw;

[0027] 3. Cutting assembly; 301. First electric cylinder; 302. First mounting block; 303. Second electric cylinder; 304. Sliding seat; 305. Sliding block; 306. Electric motor; 307. Threaded rod; 308. Third electric cylinder; 309. Second mounting block; 310. Cutting blade;

[0028] 4. Switch box. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model without creative effort are within the scope of protection of this utility model.

[0030] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning understood by one of ordinary skill in the art to which this utility model pertains. The use of terms such as "a," "an," or "the" in this utility model patent application specification and claims does not indicate a quantity limitation, but rather indicates the presence of at least one. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the element or object listed following the word and its equivalents. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect. Terms such as "upper," "lower," "left," and "right" are used only to indicate relative positional relationships; these relative positional relationships may change accordingly when the absolute position of the described object changes.

[0031] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples.

[0032] Example 1:

[0033] As attached Figure 1 To be continued Figure 6 As shown:

[0034] This utility model provides a cutting table based on ultra-clear float glass, including a processing table 1. The processing table 1 is placed on the ground, and cleaning holes 101 are opened in a linear array on the processing table 1. A collection hopper 102 is welded on the processing table 1. The collection hopper 102 is located below the cleaning holes 101. When cleaning glass fragments on the processing table 1, the fragments are collected into the cleaning holes 101, and the glass residue will fall into the collection hopper 102, making cleaning convenient.

[0035] The processing table 1 is equipped with a clamping assembly 2, which consists of clamping blocks 201 and fixing screws 202. Two clamping blocks 201 slide inside the cleaning hole 101, and both clamping blocks 201 are in contact with the top surface of the processing table 1. Each clamping block 201 is threaded with a fixing screw 202. When the fixing screw 202 is tightened, the clamping block 201 cannot move on the processing table 1. During use, the glass is placed on the top surface of the processing table 1, and the two clamping blocks 201 are pushed inward until the inner side of the two clamping blocks 201 contacts the glass. Then, the fixing screw 202 is tightened to complete the clamping and fixing of the glass. When cleaning residue, the two clamping blocks 201 are slid inward, which can collect the residue and facilitate the cleaning of the residue. Moreover, the two clamping blocks 201 slide in the cleaning hole 101 without the need for a separate sliding structure for the clamping blocks 201.

[0036] The processing table 1 is equipped with a cutting assembly 3, which consists of a first electric cylinder 301, a first mounting block 302, a second electric cylinder 303, a sliding seat 304, a sliding block 305, a motor 306, a threaded rod 307, a third electric cylinder 308, a second mounting block 309, and a cutting blade 310. Two first electric cylinders 301 are fixed on the top surface of the processing table 1, and the extended ends of the two first electric cylinders 301 are fixed on the bottom surface of the first mounting block 302.

[0037] Two second electric cylinders 303 are fixed to the rear end face of the first mounting block 302. The protruding ends of the two second electric cylinders 303 pass through the first mounting block 302 and are fixed to the sliding seat 304.

[0038] Among them, a sliding block 305 slides on the sliding seat 304, and a threaded rod 307 rotates on the sliding seat 304. The threaded rod 307 is threadedly connected to the sliding block 305. A motor 306 is fixed on the right end face of the sliding seat 304, and the output shaft of the motor 306 is fixed on the threaded rod 307.

[0039] Two third electric cylinders 308 are fixed to the bottom surface of the sliding block 305. The extended ends of the two third electric cylinders 308 are fixed to the second mounting block 309. A cutting blade 310 is fixed to the bottom surface of the second mounting block 309. When cutting glass, the height of the cutting blade 310 can be adjusted by driving the two first electric cylinders 301 to extend and retract. When the first electric cylinders 301 are damaged, the height of the cutting blade 310 can also be adjusted by driving the two third electric cylinders 308. The cutting blade 310 can be adjusted forward and backward by driving the two second electric cylinders 303 to extend and retract. The motor 306 drives the threaded rod 307 to rotate, and the cutting blade 310 can be adjusted left and right by the threaded drive of the threaded rod 307.

[0040] The front end of the processing table 1 is fixed with a switch box 4, which is electrically connected to an external power supply. The switch box 4 is equipped with four switches, which are electrically connected to the first electric cylinder 301, the second electric cylinder 303, the motor 306, and the third electric cylinder 308, respectively. During use, pressing the switches on the switch box 4 can control the first electric cylinder 301, the second electric cylinder 303, the motor 306, and the third electric cylinder 308 to work and stop.

[0041] The above description of the specific embodiments of this utility model is only used to further illustrate this utility model and should not be construed as limiting the scope of protection of this utility model. Any non-essential improvements and adjustments made to this utility model by technical engineers based on the above description of the utility model shall fall within the scope of protection of this utility model.

Claims

1. A cutting table based on ultra-clear float glass, characterized in that: Includes a processing table (1); the processing table (1) is placed on the ground, and cleaning holes (101) are opened in a linear array on the processing table (1); a collection hopper (102) is welded on the processing table (1), and the collection hopper (102) is located below the cleaning holes (101); a clamping assembly (2) is installed on the processing table (1); The clamping assembly (2) consists of a clamping block (201) and a fixing screw (202). Two clamping blocks (201) slide in the cleaning hole (101). Both clamping blocks (201) are in contact with the top surface of the processing table (1). Each clamping block (201) is threaded with a fixing screw (202). When the fixing screw (202) is tightened, the clamping block (201) cannot move on the processing table (1).

2. The cutting table based on ultra-clear float glass as described in claim 1, characterized in that: The processing table (1) is equipped with a cutting assembly (3), which consists of a first electric cylinder (301), a first mounting block (302), a second electric cylinder (303), a sliding seat (304), a sliding block (305), a motor (306), a threaded rod (307), a third electric cylinder (308), a second mounting block (309), and a cutting blade (310). Two first electric cylinders (301) are fixed on the top surface of the processing table (1), and the extended ends of the two first electric cylinders (301) are fixed on the bottom surface of the first mounting block (302).

3. The cutting table based on ultra-clear float glass as described in claim 2, characterized in that: Two second electric cylinders (303) are fixed on the rear end face of the first mounting block (302). The protruding ends of the two second electric cylinders (303) pass through the first mounting block (302) and are fixed on the sliding seat (304).

4. The cutting table based on ultra-clear float glass as described in claim 3, characterized in that: A sliding block (305) slides on the sliding seat (304), and a threaded rod (307) rotates on the sliding seat (304). The threaded rod (307) is threadedly connected to the sliding block (305). A motor (306) is fixed on the right end face of the sliding seat (304), and the output shaft of the motor (306) is fixed on the threaded rod (307).

5. The cutting table based on ultra-clear float glass as described in claim 4, characterized in that: Two third electric cylinders (308) are fixed to the bottom surface of the sliding block (305). The extended ends of the two third electric cylinders (308) are fixed to the second mounting block (309). A cutting blade (310) is fixed to the bottom surface of the second mounting block (309).

6. The cutting table based on ultra-clear float glass as described in claim 5, characterized in that: A switch box (4) is fixed on the front end face of the processing table (1). The switch box (4) is electrically connected to an external power supply. Four switches are provided on the switch box (4). The four switches are electrically connected to the first electric cylinder (301), the second electric cylinder (303), the motor (306), and the third electric cylinder (308), respectively.