Hollow tempered glass production cutting device

By designing automated translation, cutting, and cleaning components, the problems of debris cleaning and manual operation in hollow tempered glass cutting devices have been solved, realizing automated loading and unloading and debris collection, and improving work efficiency.

CN223879638UActive Publication Date: 2026-02-06JIANGXI HONGTAO CONSTR FIRE FIGHTING EQUIP CO LTD
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Patent Information

Application Number
CN202520407379.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-10
Publication Date
2026-02-06
Estimated Expiration
2035-03-10

AI Technical Summary

Technical Problem

Existing hollow tempered glass cutting equipment leaves behind glass fragments during the cutting process that are difficult to clean, affecting operation and requiring manual loading and unloading, which is time-consuming and labor-intensive.

Method used

A hollow tempered glass production and cutting device was designed, which includes a translation component, a cutting component, and a cleaning component. The device utilizes a hydraulic lift, a feeding rack, and rubber rollers to achieve automatic loading and unloading, and uses a screw, a moving motor, a slider, and a scraper to automatically clean up debris.

Benefits of technology

It achieves automated loading and unloading, reduces manpower and material consumption, centralizes the collection of debris, avoids operational interference, and improves work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hollow tempered glass production cutting device which comprises a machine tool and a connecting mechanism arranged in the machine tool, and the connecting mechanism comprises a translation assembly, a cutting assembly and a cleaning assembly. The translation assembly comprises a translation rail, a translation motor and a translation roller, the cutting assembly is mounted on the sliding plate, and the cleaning assembly comprises a screw rod, a sliding block and a scraping plate; when the glass feeding device works, the hydraulic elevator drives the rubber roller to move downwards to the surface of glass, feeding depends on the rubber roller, manpower and material resources are saved, operation is more convenient, the rubber roller rotates reversely during discharging, manual operation is not needed during discharging, and more time and labor are saved; and therefore, the sliding block drives the scraping plate to clean glass fragments on the surface of the machine tool, the fragments and the like cannot be retained on the cutting table, operation of a user is not affected, the glass fragments, disintegrating slag and the like fall into the waste box to be collected in a centralized mode, and follow-up treatment is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to toughened glass processing technical field, specifically to a hollow toughened glass production cutting device. BACKGROUND

[0002] The glass cutting machine is a kind of processing machinery specially used for glass processing and blanking, before the glass is used, people need to cut the glass using the glass cutting machine, when people cut the glass into appropriate size, it can be used, therefore, it is particularly needed to cut the toughened hollow glass.

[0003] For example, the application number for CN211226911U discloses a kind of toughened hollow glass cutting device, including fixed frame and the connecting rod sleeve installed on the fixed frame, the fixed frame upper surface one end is fixed with connecting block, connecting groove is set in the inside of the connecting block, the fixed frame upper surface is fixed with slide bar on the central axis, the slide bar is away from the one end of the connecting block and is provided with limit block;The inside of the connecting block is installed with the connecting column, the one end of the connecting column is fixed with limit ring, limit slot is set on the limit ring, the limit ring is slidably installed on the slide bar, the outside of the connecting column is slidably installed with connecting piece, the connecting piece and the connecting groove are screw-threaded connection;When rectangular glass needs to be cut, limit slot set on the limit ring is installed on the slide bar, limit ring is made to move linearly between slide bar by limit slot, so that cutting knife carries out linear cutting to glass, thereby cutting out rectangular glass.

[0004] However, the toughened hollow glass cutting device is used, and the cutting process usually remains large or small glass fragments, and glass chippings generated in the cutting process, the fragments are not easy to clean, and can be retained on the cutting table, affecting the operation of the user, and the work load is increased, and manual operation is required for feeding and discharging, which is time-consuming and laborious, and does not meet the use requirement of people, so a hollow toughened glass production cutting device is needed. UTILITY MODEL CONTENT

[0005] To solve the defects that glass chippings are not easy to clean, affect the operation of the worker, and manual operation is required for feeding and discharging, the utility model provides a kind of hollow toughened glass production cutting device.

[0006] To solve the above technical problems, the utility model provides the following technical scheme:

[0007] The utility model provides a kind of hollow toughened glass production cutting device, including lathe and the connecting mechanism of setting in the inside of lathe, it is characterized in that: the connecting mechanism includes translation subassembly, cutting assembly and cleaning assembly;

[0008] The translation assembly comprises support frames, support frames are welded on the left and right side walls of the machine tool, translation rails are fixedly installed at the ends of the support frames away from the machine tool, translation frames are arranged on the translation rails, translation motors are fixedly installed on the left and right side walls of the translation frames, translation rollers fixed to the output ends of the translation motors are arranged in the translation rails, and sliding plates are welded on the top of the translation frames.

[0009] The cutting assembly is installed on the sliding plate.

[0010] As a preferred technical scheme of the utility model, the cutting assembly comprises a sliding groove, a sliding frame, a rack, a sliding motor, a translation gear, a lifting frame, a hydraulic machine, a cutting frame and a cutting knife, the top of the sliding plate is provided with the sliding groove, the sliding frame is arranged on the sliding plate, the rack is fixedly installed on the inner side wall of the sliding groove, the sliding motor is arranged on the top of the sliding frame, the output end of the sliding motor penetrates through the sliding frame and is fixed with the translation gear, the translation gear is located directly below the sliding frame, the translation gear and the rack are rotationally connected through gear meshing, two groups of lifting frames are symmetrically welded at the lower surface wall of the sliding frame, the hydraulic machine is fixed on the lifting frame, the output end of the hydraulic machine is welded with the cutting frame, and the cutting knife is installed at the bottom of the cutting frame.

[0011] As a preferred technical scheme of the utility model, the bottom of the cutting frame is provided with two groups of pulleys, the two groups of pulleys are symmetrically distributed on the left and right sides of the cutting knife, and the lowest point of the pulley and the tip of the cutting knife are located on the same horizontal line.

[0012] As a preferred technical scheme of the utility model, the left and right side walls of the sliding frame are welded with sliding strips, and the lifting frame is limited to slide on the sliding strips.

[0013] As a preferred technical scheme of the utility model, the bottom of the sliding frame is fixedly installed with three groups of hydraulic elevators, the output end of the hydraulic elevator is welded with a feeding frame, a feeding motor is fixedly installed on the side wall of the feeding frame, and a rubber roller is connected to the output end of the feeding motor.

[0014] As a preferred technical scheme of the utility model, the front and rear side walls of the machine tool are fixedly installed with waste boxes, and the width of the waste box is completely same with the width of the machine tool.

[0015] As a preferred technical scheme of the utility model, the cleaning assembly comprises a groove, a screw rod, a moving motor, a sliding block and a scraper, the groove is arranged on the end face of the support frame close to the machine tool, the screw rod is arranged in the groove, the moving motor is fixedly installed on the side wall of the support frame, the output end of the moving motor is fixedly connected with the screw rod, the sliding block is arranged on the screw rod, and the scraper is fixedly installed on the sliding block.

[0016] As a preferred technical scheme of the utility model, the translation strip arranged above the groove is welded on the support frame, the sliding block is limited to slide on the translation strip, and the sliding block is provided with two groups.

[0017] The utility model has the following beneficial effects:

[0018] By setting up the hydraulic elevator, the feeding frame, the feeding motor and the rubber roller, when working, the hydraulic elevator drives the feeding frame to move downwards to the glass surface, the feeding motor starts to work, drives the rubber roller, the rubber roller rotates, and then moves the glass to be processed to be flat on the whole machine tool, and the feeding relies on the rubber roller, saves manpower and material resources, and is more convenient to operate.

[0019] By setting up the screw rod, the moving motor, the sliding block, the scraper, the translation strip and the waste box, when working, the moving motor drives the screw rod to rotate, the screw rod drives the sliding block to move back and forth on the screw rod through gear meshing in the rotating process, the sliding block is limited to translate on the translation strip, and the sliding block drives the scraper to move back and forth on the surface of the machine tool, the scraper cleans the residual or small glass fragments and the glass chippings generated in the cutting process, the chippings and the like do not stay on the cutting table, do not affect the operation of the user, the glass fragments and the slag fall into the waste box and are collected centrally, and subsequent processing is facilitated. ACCURACY OF DRAWINGS

[0020] Figure 1 It is a structural schematic view of the hollow toughened glass production cutting device of the utility model;

[0021] Figure 2 It is a half cut structure schematic view of the translation assembly of the hollow toughened glass production cutting device of the utility model;

[0022] Figure 3 It is a half cut structure schematic view of the cutting assembly of the hollow toughened glass production cutting device of the utility model;

[0023] Figure 4It is a structure schematic view of the cleaning assembly of the hollow toughened glass production cutting device.

[0024] Figure 5 It is a bottom structure schematic view of the cutting assembly of the hollow toughened glass production cutting device.

[0025] In the figure: 1, machine tool; 2, support frame; 3, translation track; 4, translation frame; 5, translation motor; 6, translation roller; 7, sliding plate; 8, sliding groove; 9, sliding frame; 10, rack; 11, sliding motor; 12, translation gear; 13, lifting frame; 14, hydraulic machine; 15, cutting frame; 16, cutting knife; 17, groove; 18, screw; 19, moving motor; 20, sliding block; 21, scraper; 22, pulley; 23, sliding bar; 24, hydraulic elevator; 25, feeding frame; 26, feeding motor; 27, rubber roller; 28, translation bar; 29, waste box. DETAILED DESCRIPTION

[0026] The preferred embodiments of the utility model are described below in combination with the drawings, and it should be understood that the preferred embodiments described herein are only used to illustrate and explain the utility model, and are not used to limit the utility model.

[0027] Example 1

[0028] As Figures 1-5 shown, the utility model provides a hollow toughened glass production cutting device, including machine tool 1 and the connecting mechanism of setting in machine tool 1 inside, connecting mechanism includes translation subassembly, cutting assembly and cleaning assembly;

[0029] Translation subassembly includes support frame 2, translation track 3, translation frame 4, translation motor 5, translation roller 6 and sliding plate 7, and the left and right two side walls of machine tool 1 are all welded with support frame 2, and the end away from machine tool 1 of support frame 2 is fixedly installed with translation track 3, and translation track 3 is provided with translation frame 4, and the left and right two side walls of translation frame 4 are all fixedly installed with translation motor 5, and the translation roller 6 fixedly connected at the output end of translation motor 5 is arranged in the inside of translation track 3, and the top of translation frame 4 is welded with sliding plate 7, when working, translation motor 5 drives translation roller 6 to move back and forth in the inside of translation track 3, and sliding plate 7 fixedly connected at the top of translation frame 4 moves along, when sliding plate 7 moves to the cutting position, translation motor 5 stops working, and the control operation of sliding plate 7 moving back and forth is realized;

[0030] The cutting assembly is installed on the sliding plate 7.

[0031] Further, the cutting assembly comprises the sliding groove 8, the sliding frame 9, the rack 10, the sliding motor 11, the translation gear 12, the lifting frame 13, the hydraulic machine 14, the cutting frame 15 and the cutting knife 16, the top of the sliding plate 7 is provided with the sliding groove 8, and the sliding plate 7 is provided with the sliding frame 9, the inner side wall of the sliding groove 8 is fixedly provided with the rack 10, the top of the sliding frame 9 is provided with the sliding motor 11, the output end of the sliding motor 11 penetrates through the sliding frame 9 and is fixedly provided with the translation gear 12, the translation gear 12 is located directly below the sliding frame 9, and the translation gear 12 is rotatably connected with the rack 10 through gear meshing, two groups of lifting frames 13 are symmetrically welded at the lower wall of the sliding frame 9, the lifting frame 13 is fixedly provided with the hydraulic machine 14, the output end of the hydraulic machine 14 is welded with the cutting frame 15, and the bottom of the cutting frame 15 is provided with the cutting knife 16, in working, the sliding motor 11 drives the translation gear 12 to start rotating, the translation gear 12 moves left and right on the rack 10 fixedly provided on the side wall of the sliding groove 8, so that the sliding frame 9 moves left and right on the sliding plate 7, before the left and right movement, the hydraulic machine 14 arranged in the lifting frame 13 starts working, the hydraulic machine 14 drives the cutting frame 15 to move downward until the cutting knife 16 completely contacts the surface of the glass to be processed, then the cutting knife 16 moves left and right along with the sliding frame 9 to cut the glass to be processed, and the control operation of moving the sliding frame 9 left and right to drive the cutting knife 16 to cut is realized.

[0032] Further, the bottom of the cutting frame 15 is provided with two groups of pulleys 22, the two groups of pulleys 22 are symmetrically distributed on the left and right sides of the cutting knife 16, the lowest point of the pulley 22 and the cutting edge of the cutting knife 16 are located on the same horizontal line, in the cutting process of the cutting knife 16, the pulleys 22 symmetrically arranged left and right can guide the cutting direction of the cutting knife 16, avoid the cutting knife 16 from shaking to cause the cutting line to be distorted, and the pulleys 22 can buffer the downward output force of the hydraulic machine 14, avoid the cutting knife 16 from contacting the surface of the glass to be processed at too high a speed to cause the glass or the cutting knife 16 to be damaged, prolong the service life of the cutting knife 16, and reduce the use cost.

[0033] Further, the left and right side walls of the sliding frame 9 are both welded with the sliding strip 23, and the lifting frame 13 is limited to slide on the sliding strip 23, in working, through the sliding strip 23, the lifting frame 13 is prevented from deviating from the set line in the sliding process, and the control operation of avoiding the equipment from being damaged is realized.

[0034] Further, the bottom of the sliding frame 9 is fixedly provided with three groups of hydraulic lifters 24, the output end of the hydraulic lifter 24 is welded with a feeding frame 25, the side wall of the feeding frame 25 is fixedly provided with a feeding motor 26, the output end of the feeding motor 26 is connected with a rubber roller 27, and when working, the hydraulic lifter 24 drives the feeding frame 25 to move downward to the glass surface, the feeding motor 26 starts to work to drive the rubber roller 27, the rubber roller 27 rotates to move the glass to be processed to be flat on the whole machine tool 1, the feeding relies on the rubber roller 27, manpower and material resources are saved, and the operation is more convenient; when discharging, the hydraulic lifter 24 drives the feeding frame 25 to move downward to the glass surface, the feeding motor 26 reverses to drive the rubber roller 27 to push the processed glass away from the whole machine tool 1, the feeding and discharging do not need manual pushing, manpower and material resources are saved.

[0035] Further, the front and rear side walls of the machine tool 1 are both fixedly provided with a waste box 29, the width of the waste box 29 is completely same as the width of the machine tool 1, and when working, the residual or large or small glass fragments and the glass chips generated in the cutting process fall into the waste box 29 for centralized collection, and subsequent processing is facilitated.

[0036] Embodiment 2

[0037] As Figures 1-5 shown, the hollow tempered glass production cutting device provided by the utility model, compared with embodiment 1, as another embodiment of the utility model, the cleaning assembly includes a groove 17, a screw rod 18, a moving motor 19, a sliding block 20 and a scraper 21, the end face of the support frame 2 close to the machine tool 1 is provided with the groove 17, the inside of the groove 17 is provided with the screw rod 18, the side wall of the support frame 2 is fixedly provided with the moving motor 19, the output end of the moving motor 19 is fixedly connected with the screw rod 18, the screw rod 18 is provided with the sliding block 20, the sliding block 20 is fixedly provided with the scraper 21, when working, the moving motor 19 starts to work, the moving motor 19 drives the screw rod 18 to rotate, the screw rod 18 drives the sliding block 20 to move back and forth on the screw rod 18 in the rotating process through gear meshing, the sliding block 20 is limited to move on the translation strip 28, and simultaneously the sliding block 20 drives the scraper 21 to move back and forth on the surface of the machine tool 1, the scraper 21 cleans the residual or large or small glass fragments and the glass chips generated in the cutting process, and the chips and the like do not stay on the cutting table, and the operation of the user is not affected.

[0038] Further, the translation bar 28 arranged above the groove 17 is welded on the support frame 2, the sliding block 20 is limitedly slid on the translation bar 28, and the sliding block 20 is provided in two groups, and the scraper 21 is arranged between the two groups of sliding blocks 20; during operation, the translation bar 28 is arranged, which is beneficial to the limited sliding of the sliding block 20 on the translation bar 28, and the stable control operation of the sliding block 20 is realized.

[0039] During operation, first, the glass is placed on the machine tool 1, the hydraulic elevator 24 starts to work, the hydraulic elevator 24 drives the feeding frame 25 to move downward to the glass surface, the feeding motor 26 starts to work, drives the rubber roller 27 to rotate, and then moves the glass to be processed to be flat on the whole machine tool 1, and the feeding relies on the rubber roller 27, which saves manpower and material resources and is more convenient to operate.

[0040] Then, the translation motor 5 on the translation frame 4 starts to work, the translation motor 5 drives the translation roller 6 to move forward and backward in the inside of the translation rail 3, and the sliding plate 7 fixed on the top of the translation frame 4 moves along with the sliding plate 7, when the sliding plate 7 moves to the position to be cut, the translation motor 5 stops working. Subsequently, the sliding motor 11 arranged on the sliding frame 9 starts to work, the sliding motor 11 drives the translation gear 12 to start to rotate, the translation gear 12 moves left and right on the rack 10 fixed on the side wall of the sliding groove 8, and then the sliding frame 9 moves left and right on the sliding plate 7, before the left and right movement process, the hydraulic machine 14 arranged in the lifting frame 13 starts to work, the hydraulic machine 14 drives the cutting frame 15 to move downward until the cutting knife 16 completely contacts the surface of the glass to be processed, and then the cutting knife 16 moves left and right along with the sliding frame 9 to cut the glass to be processed. During the cutting process of the cutting knife 16, the pulley 22 arranged left and right symmetrically can guide the cutting direction of the cutting knife 16, avoids the cutting route from being distorted due to the shaking of the cutting knife 16, and the pulley 22 can buffer the downward output force of the hydraulic machine 14, avoids the glass or the cutting knife 16 from being damaged due to the too fast contact speed of the cutting knife 16 and the surface of the glass to be processed, prolongs the service life of the cutting knife 16, and reduces the use cost.

[0041] Finally, the hydraulic elevator 24 drives the feeding frame 25 to move downward to the glass surface, after the feeding motor 26 drives the rubber roller 27 to push the processed glass away from the whole machine tool 1, the moving motor 19 starts to work, the moving motor 19 drives the screw 18 to rotate, the screw 18 drives the sliding block 20 to move forward and backward on the screw 18 in the rotating process through the gear meshing, the sliding block 20 is limitedly translated on the translation bar 28, and the sliding block 20 drives the scraper 21 to move forward and backward on the surface of the machine tool 1, the scraper 21 cleans the glass fragments with large or small residues and the glass chippings generated in the cutting process, the chippings and the like will not be retained on the cutting table, which does not affect the operation of the user, the glass fragments and the slag fall into the waste box 29 for centralized collection, which is convenient for subsequent processing.

[0042] It should be pointed out finally that: the above only for the preferred embodiments of the utility model have, and do not limit the utility model, although the utility model is described in detail with reference to the foregoing embodiments, for the person skilled in the art, it still can modify the technical scheme recorded in the foregoing each embodiment, or equivalent replacement to part of technical features. Any modification, equivalent replacement, improvement etc. that is made within the spirit and principle of the utility model, should be included in the protection scope of the utility model.

Claims

1. A hollow tempered glass production and cutting device, comprising a machine tool (1) and a connecting mechanism disposed inside the machine tool (1), characterized in that: The connecting mechanism includes a translation component, a cutting component, and a cleaning component; The translation component includes a support frame (2), and the support frame (2) is welded on both the left and right side walls of the machine tool (1). A translation track (3) is fixedly installed on the end of the support frame (2) away from the machine tool (1). A translation frame (4) is provided on the translation track (3). A translation motor (5) is fixedly installed on both the left and right side walls of the translation frame (4). A translation roller (6) fixed at the output end of the translation motor (5) is located inside the translation track (3). A sliding plate (7) is welded to the top of the translation frame (4). A cutting assembly is mounted on the sliding plate (7).

2. The hollow tempered glass production and cutting device according to claim 1, characterized in that: The cutting assembly includes a sliding groove (8), a sliding frame (9), a rack (10), a sliding motor (11), a translation gear (12), a lifting frame (13), a hydraulic press (14), a cutting frame (15), and a cutting blade (16). The top of the sliding plate (7) is provided with a sliding groove (8), and a sliding frame (9) is provided on the sliding plate (7). A rack (10) is fixedly installed on the inner side wall of the sliding groove (8). A sliding motor (11) is provided on the top of the sliding frame (9). 1) The output end of the sliding frame (9) is connected to the sliding frame (9) and a translation gear (12) is fixed thereon. The translation gear (12) is located directly below the sliding frame (9) and the translation gear (12) is connected to the rack (10) by gear meshing. Two sets of lifting frames (13) are symmetrically welded to the lower surface wall of the sliding frame (9). A hydraulic press (14) is fixed on the lifting frame (13). A cutting frame (15) is welded to the output end of the hydraulic press (14). A cutting blade (16) is installed at the bottom of the cutting frame (15).

3. The hollow tempered glass production and cutting device according to claim 2, characterized in that: The bottom of the cutting frame (15) is equipped with two sets of pulleys (22), which are symmetrically distributed on the left and right sides of the cutting blade (16). The lowest point of the pulleys (22) is on the same horizontal line as the tip of the cutting blade (16).

4. The hollow tempered glass production and cutting device according to claim 2, characterized in that: Sliding strips (23) are welded to both the left and right side walls of the sliding frame (9), and the lifting frame (13) slides at the upper limit of the sliding strips (23).

5. The hollow tempered glass production and cutting device according to claim 2, characterized in that: Three sets of hydraulic lifts (24) are fixedly installed at the bottom of the sliding frame (9). A feeding frame (25) is welded to the output end of the hydraulic lift (24). A feeding motor (26) is fixedly installed on the side wall of the feeding frame (25). A rubber roller (27) is connected to the output end of the feeding motor (26).

6. The hollow tempered glass production and cutting device according to claim 1, characterized in that: Waste bins (29) are fixedly installed on both the front and rear side walls of the machine tool (1), and the width of the waste bins (29) is exactly the same as the width of the machine tool (1).

7. The hollow tempered glass production and cutting device according to claim 1, characterized in that: It also includes a cleaning component, which includes a groove (17), a screw (18), a moving motor (19), a slider (20), and a scraper (21). The support frame (2) has a groove (17) on its end face near the machine tool (1). The screw (18) is provided inside the groove (17). The moving motor (19) is fixedly installed on the side wall of the support frame (2). The output end of the moving motor (19) is fixedly connected to the screw (18). The slider (20) is provided on the screw (18). The scraper (21) is fixedly installed on the slider (20).

8. The hollow tempered glass production and cutting device according to claim 7, characterized in that: The translation bar (28) above the groove (17) is welded to the support frame (2). The slider (20) slides at the upper limit of the translation bar (28), and there are two sets of sliders (20). The scraper (21) is located between the two sets of sliders (20).

Citation Information

Patent Citations

  • Tempered hollow glass cutting device

    CN211226911U