Glass edge grinding device

By incorporating a dust collection box and dust collection components into the glass edging device, the problem of debris and dust splashing during the edging process is solved, achieving clean collection and environmental protection.

CN223670863UActive Publication Date: 2025-12-16HUBEI DINGJI GLASS TECH CO LTD
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Patent Information

Application Number
CN202520043856.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2025-12-16
Estimated Expiration
2035-01-08

AI Technical Summary

Technical Problem

In the current glass edging process, debris and dust are easily splashed and leaked, affecting the processing environment.

Method used

Design a glass edging device, comprising a dust collection box, a polishing component, and a dust collection component. The dust collection box has an opening, the polishing component is located inside the dust collection box, and the dust collection component generates negative pressure airflow to collect dust and debris.

Benefits of technology

It effectively prevents debris from splashing and collects dust, maintaining a good processing environment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223670863U_ABST
Patent Text Reader

Abstract

The utility model provides a glass edging device which comprises a base, a box body fixed on the base and provided with an inlet and an outlet on opposite sides, a transmission mechanism penetrating through the inlet and the outlet, and two groups of sliding components arranged on the base and respectively positioned on two sides of the transmission mechanism, each sliding assembly is provided with an edge grinding mechanism, each edge grinding mechanism comprises a dust collection box, a grinding assembly, a dust collection assembly and a driving assembly, an opening is formed in the side, close to the conveying mechanism, of the dust collection box, the grinding assembly is arranged in the dust collection box and close to the opening, the dust collection assembly communicates with the dust collection box, and the driving assembly drives the grinding assembly to rotate. And the driving assembly is in transmission connection with the polishing assembly and the dust collection assembly. Through the blocking effect and the negative pressure airflow effect of the dust collection box, chippings and dust in the polishing process can be effectively collected.
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Description

TECHNICAL FIELD

[0001] The utility model relates to hollow glass edge grinding equipment technical field especially relates to a glass edge grinding device. BACKGROUND

[0002] Glass edge grinding is an important technical process in the production process of glass products, and glass edge grinding refers to cutting and grinding two sides or a single side of glass plate edges, removing burrs and defects, and making glass product edges and corners smooth and burr-free to meet the design and quality requirements of glass products. The principle is mainly to use the edge grinding wheel in the glass edge grinding machine for grinding operation, and the grinding wheel driven by the edge grinding wheel contacts the glass surface.

[0003] During the edge grinding process, debris and dust are easily splashed and discharged, and effective collection of the generated debris and dust is required to avoid affecting the processing environment. UTILITY MODEL CONTENT

[0004] In view of the deficiencies in the prior art, the utility model provides a glass edge grinding device which effectively collects debris and dust generated during the grinding process.

[0005] According to the embodiment of the utility model, a glass edge grinding device comprises a base, a box body fixed on the base and provided with an inlet and an outlet at opposite sides, and a transmission mechanism passing through the inlet and the outlet, the base is provided with two groups of sliding assemblies located at two sides of the transmission mechanism respectively, each group of the sliding assemblies is provided with an edge grinding mechanism, the edge grinding mechanism comprises a dust collection box, a polishing assembly, a dust collection assembly and a driving assembly, one side of the dust collection box close to the transmission mechanism is provided with an opening, the polishing assembly is arranged in the dust collection box and close to the opening, the dust collection assembly is communicated with the dust collection box, and the driving assembly is in transmission connection with the polishing assembly and the dust collection assembly.

[0006] Preferably, the dust collection box comprises a box body, a plurality of hopper bodies fixed on the box body and communicated with the box body, and a cylinder communicated with the top of the hopper body, one side of the cylinder close to the transmission mechanism is provided with the opening, the polishing assembly is arranged in the cylinder, and the dust collection assembly is arranged on the side of the cylinder away from the transmission mechanism.

[0007] Further preferably, the polishing assembly comprises a first rotating shaft coaxially arranged in the cylinder, a polishing roller coaxially connected with the first rotating shaft and located in the cylinder, and the first rotating shaft is in transmission connection with the driving assembly by penetrating the box body downward.

[0008] Further preferably, one side of each polishing assembly is provided with a group of dust suction assemblies, each group of dust suction assemblies comprising an exhaust pipe in communication with the box body, a second rotating shaft coaxially arranged in the exhaust pipe, and a fan blade coaxially connected with the second rotating shaft and located in the exhaust pipe, the second rotating shaft penetrating the box body and being in transmission connection with the driving assembly.

[0009] Further preferably, the box body is fixedly provided with a breathable mesh film between the first rotating shaft and the second rotating shaft.

[0010] Further preferably, the box body is provided with an openable cover body near one side of the transmission mechanism.

[0011] Further preferably, the first rotating shaft and the second rotating shaft are both vertically arranged, the driving assembly comprising a power motor, a first gear coaxially connected with the first rotating shaft, a second gear coaxially connected with the second rotating shaft, a transmission gear meshing with the first gear and the second gear, and a synchronization gear meshing with two adjacent first gears, the output shaft of the power motor being in transmission connection with one of the first rotating shafts.

[0012] Still further preferably, the top of the box body is provided with a lifting mechanism, the telescopic rod of the lifting mechanism penetrating the top of the box body and being connected with a positioning plate, and the bottom of the positioning plate being provided with a plurality of evenly distributed suction cups.

[0013] Compared with the prior art, the glass edge polishing device has the following beneficial effects:

[0014] The polishing assembly is arranged in the dust suction box, the dust suction box is provided with a glass accessible opening, in the polishing process, the dust suction box can block the splashing of debris, and the dust suction assembly is further communicated on the dust suction box, the dust suction assembly generates a negative pressure effect, and the negative pressure airflow at the opening collects dust into the dust suction box, thereby ensuring a good processing environment. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a front view schematic diagram of the glass edge polishing device.

[0016] Figure 2 It is the glass edge polishing device Figure 1 The enlarged structure schematic diagram of the local part A.

[0017] Figure 3 It is the glass edge polishing device Figure 2 The bottom view structure schematic diagram of the transmission gear

[0018] In the above figures: 1. Base; 110. Sliding assembly; 2. Box; 3. Transmission mechanism; 4. Grinding mechanism; 410. Dust collection box; 411. Opening; 412. Box body; 413. Bucket body; 414. Cylinder body; 415. Breathable mesh; 416. Cover; 420. Grinding assembly; 421. First rotating shaft; 422. Grinding roller; 430. Dust collection assembly; 431. Exhaust pipe; 432. Second rotating shaft; 433. Fan blade; 440. Drive assembly; 441. Power motor; 442. First gear; 443. Second gear; 444. Transmission gear; 445. Synchronizing gear; 5. Lifting mechanism; 501. Positioning plate; 502. Suction cup. Detailed Implementation

[0019] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.

[0020] This utility model provides an embodiment, such as Figure 1 , Figure 2 As shown, a glass edging device includes a base 1, a housing 2 fixed on the base 1 and having an inlet and an outlet on opposite sides, and a transmission mechanism 3 passing through the inlet and outlet. In this embodiment, the transmission mechanism 3 is a belt roller transmission device. The base 1 is provided with two sets of sliding components 110 located on both sides of the transmission mechanism 3. The sliding component 110 includes a linear guide rail arranged perpendicular to the conveying direction of the transmission mechanism 3 and a linear slider arranged on the linear guide rail. Each set of sliding components 110 is provided with an edging mechanism 4, which is arranged on the linear slider. The distance between the block and the transmission mechanism 3 can be adjusted to accommodate the edge grinding work of glass of different widths. The edge grinding mechanism 4 includes a dust collection box 410, a grinding component 420, a dust collection component 430, and a drive component 440. The dust collection box 410 has an opening 411 on the side near the transmission mechanism 3. The grinding component 420 is disposed in the dust collection box 410 and near the opening 411. The dust collection component 430 is connected to the dust collection box 410. The drive component 440 is drively connected to the grinding component 420 and the dust collection component 430.

[0021] When performing edge grinding, the transmission mechanism 3 drives the grinding component 420 to work, and also drives the dust collection component 430 to work. The dust collection component 430 keeps the dust collection box 410 under negative pressure. The grinding component 420 is located in the opening 411 of the dust collection box 410. The debris generated during the grinding process is not easy to fly, and the dust generated can be effectively sucked into the dust collection box 410.

[0022] To facilitate the entry of dust and debris into the dust collection box 410, such as Figure 2As shown, the dust collection box 410 includes a box body 412, a plurality of hopper bodies 413 fixed on the box body 412 and in communication therewith, a cylinder body 414 in communication with the top of the hopper body 413, the top of the cylinder body 414 can be provided with a water inlet pipe, the bottom of the box body 412 can be provided with a drain pipe, and the cooling and debris removal are performed by water flow, the hopper body 413 and the cylinder body 414 are coaxially arranged, the cylinder body 414 is provided with the opening 411 on the side close to the transmission mechanism 3, the polishing assembly 420 is arranged in the cylinder body 414, and the dust collection assembly 430 is arranged on the side of the cylinder body 414 away from the transmission mechanism 3;

[0023] The polishing assembly 420 includes a first rotating shaft 421 coaxially arranged in the cylinder body 414, and a polishing roller 422 coaxially connected with the first rotating shaft 421 and located in the cylinder body 414, the first rotating shaft 421 penetrates downwardly through the box body 412 and is in transmission connection with the driving assembly 440;

[0024] Each of the polishing assemblies 420 is provided with a group of dust collection assemblies 430 on one side, each group of dust collection assemblies 430 includes an exhaust pipe 431 in communication with the box body 412, a second rotating shaft 432 coaxially arranged in the exhaust pipe 431, and a fan blade 433 coaxially connected with the second rotating shaft 432 and located in the exhaust pipe 431, the second rotating shaft 432 penetrates through the box body 412 and is in transmission connection with the driving assembly 440;

[0025] When the first rotating shaft 421 and the second rotating shaft 432 are rotated by the driving assembly 440, the second rotating shaft 432 drives the fan blade 433 to rotate to generate a negative pressure state at the opening 411 of the hopper body 413, and when the polishing roller 422 is driven by the first rotating shaft 421 to polish, the generated debris enters the box body 412 through the hopper body 413, and the dust enters the box body 412 with the airflow formed by the negative pressure;

[0026] The box body 412 is fixedly provided with a breathable mesh film 415 between the first rotating shaft 421 and the second rotating shaft 432.

[0027] In order to facilitate the cleaning of debris and dust, in a further embodiment, the box body 412 is provided with an openable cover 416 on the side close to the transmission mechanism 3;

[0028] In order to facilitate synchronous polishing of a plurality of polishing assemblies 420 and to enable a plurality of dust collection assemblies 430 to generate a synchronous negative pressure effect, in a further embodiment, as Figure 2 、 Figure 3As shown, the first rotating shaft 421 and the second rotating shaft 432 are vertically arranged, the first rotating shaft 421 and the second rotating shaft 432 are rotationally connected with the box body 412, the driving assembly 440 comprises a power motor 441, a first gear 442 coaxially connected with the first rotating shaft 421, a second gear 443 coaxially connected with the second rotating shaft 432, a transmission gear 444 engaged with the first gear 442 and the second gear 443, and a synchronous gear 445 engaged with two adjacent first gears 442, and an output shaft of the power motor 441 is in transmission connection with one of the first rotating shafts 421.

[0029] In order to facilitate the fixation and positioning of the glass, in a further embodiment, the top of the box 2 is provided with a lifting mechanism 5, the telescopic rod of the lifting mechanism 5 penetrates through the top of the box 2 and is connected with a positioning plate 501, the bottom of the positioning plate 501 is provided with a plurality of evenly distributed suction cups 502.

[0030] Finally, it should be pointed out that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the purpose and scope of the present application, and all should be covered in the scope of the claims of the present application.

Claims

1. A glass edging device, comprising a base (1), a housing (2) fixed on the base (1) and having an inlet and an outlet on opposite sides, and a transmission mechanism (3) passing through the inlet and outlet, characterized in that, The base (1) is provided with two sets of sliding components (110) located on both sides of the transmission mechanism (3). Each set of sliding components (110) is provided with a grinding mechanism (4). The grinding mechanism (4) includes a dust collection box (410), a grinding component (420), a dust collection component (430), and a drive component (440). The dust collection box (410) has an opening (411) on the side near the transmission mechanism (3). The grinding component (420) is disposed in the dust collection box (410) and near the opening (411). The dust collection component (430) is connected to the dust collection box (410). The drive component (440) is connected to the grinding component (420) and the dust collection component (430) in a transmission connection.

2. The glass edging device according to claim 1, characterized in that, The dust collection box (410) includes a box body (412), a plurality of buckets (413) fixed to and communicating with the box body (412), and a cylinder (414) communicating with the top of the buckets (413). The cylinder (414) has an opening (411) on the side near the transmission mechanism (3). The polishing component (420) is disposed inside the cylinder (414), and the dust collection component (430) is disposed on the side of the cylinder (414) away from the transmission mechanism (3).

3. The glass edging device according to claim 2, characterized in that, The polishing assembly (420) includes a first rotating shaft (421) coaxially rotatably disposed inside the cylinder (414) and a polishing roller (422) coaxially connected to the first rotating shaft (421) and located inside the cylinder (414). The first rotating shaft (421) passes downward through the box (412) and is connected to the drive assembly (440) for transmission.

4. The glass edging apparatus according to claim 3, characterized in that, Each of the polishing components (420) has a set of dust collection components (430) on one side. Each set of dust collection components (430) includes an exhaust pipe (431) communicating with the box body (412), a second rotating shaft (432) coaxially rotatably disposed in the exhaust pipe (431), and a fan blade (433) coaxially connected to the second rotating shaft (432) and located in the exhaust pipe (431). The second rotating shaft (432) passes through the box body (412) and is connected to the drive component (440) for transmission.

5. A glass edging apparatus according to claim 4, characterized in that, The box body (412) is fixedly provided with a breathable mesh (415) located between the first rotating shaft (421) and the second rotating shaft (432).

6. A glass edging apparatus according to claim 4, characterized in that, The box (412) has an openable cover (416) on the side near the transmission mechanism (3).

7. A glass edging apparatus according to any one of claims 4-6, characterized in that, The first rotating shaft (421) and the second rotating shaft (432) are both vertically arranged. The drive assembly (440) includes a power motor (441), a first gear (442) coaxially connected to the first rotating shaft (421), a second gear (443) coaxially connected to the second rotating shaft (432), a transmission gear (444) meshing with the first gear (442) and the second gear (443), and a synchronization gear (445) meshing with two adjacent first gears (442). The output shaft of the power motor (441) is connected to one of the first rotating shafts (421) for transmission.

8. A glass edging apparatus according to claim 7, characterized in that, The top of the box (2) is provided with a lifting mechanism (5), the telescopic rod of the lifting mechanism (5) passes through the top of the box (2) and is connected to a positioning plate (501), and the bottom of the positioning plate (501) is provided with multiple evenly distributed suction cups (502).

Citation Information

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