Glass conveying and buffering device

By designing a glass conveying and buffering device, the glass is automatically buffered and reset using a conveyor belt and a pushing component. This solves the problems of high labor intensity and safety risks associated with manual handling, improves efficiency and safety, and adapts to differences in process speeds.

CN223920526UActive Publication Date: 2026-02-17ZHEJIANG JUXIN GLASS CO LTD
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Patent Information

Application Number
CN202520202993.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-10
Publication Date
2026-02-17
Estimated Expiration
2035-02-10

AI Technical Summary

Technical Problem

In the current glass transportation process, manual handling of glass presents problems such as high labor intensity, high safety risks, and low efficiency.

Method used

A glass conveying and buffering device was designed. It utilizes a conveyor belt and a pushing component, and drives an N-type pusher to move via a threaded rod driven by a forward and reverse motor, thereby realizing the automatic temporary storage and pushing of glass. Combined with a cylinder adjustment support component, it realizes the automatic buffering and resetting of glass.

Benefits of technology

It reduces the labor intensity of workers, improves safety and efficiency, avoids the risk of glass slipping and breaking, adapts to the speed differences between preceding and following processes, and ensures the continuity of glass processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass production, in particular to a glass conveying and buffering device. According to the technical scheme, the glass conveying device mainly aims at solving the problems that in the prior art, glass on a conveying belt is manually conveyed, the working intensity of workers is improved, meanwhile, the risk that the glass is disengaged from the hand and damaged exists, and due to the fact that the physical strength of the workers is limited, physical strength is overdraft after frequent conveying is conducted, and efficiency is affected. The device comprises two supporting plates, a conveying belt device is arranged between the two supporting plates, a protective support is installed at the tops of the two supporting plates, a pushing assembly is arranged on the protective support and comprises a forward and reverse motor, and the output end of the forward and reverse motor is connected with a threaded rod. According to the utility model, automatic caching and returning of glass are realized, the glass can be adjusted according to the production speed, the labor intensity of workers is reduced, and the risk that the glass falls off from the hand and is broken due to manual operation is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass production technical field especially relates to a glass conveying buffer device. BACKGROUND

[0002] Glass needs to utilize conveying belt device to carry out conveying when working, and it is convenient to carry out processing to the next process of glass conveyor belt. Because the matching speed of the front and rear processes is prone to difference, so it is necessary to temporarily store the excess glass to keep the normal progress of the rear glass processing process. Nowadays, a buffer rack is usually arranged beside the conveyor belt, and the buffer rack is used for temporarily storing the excess glass product. The excess glass is placed on the buffer rack for storage by manual carrying mode, so as to avoid hindering the glass processing when the matching speed of the front and rear processes is different.

[0003] However, the existing glass on the conveying belt is carried by manual operation, which not only increases the working strength of the workers, but also has the risk of glass damage when the workers drop the glass. Moreover, due to the limited physical strength of the workers, the physical strength is overdrawn after frequent carrying, which affects the efficiency. In view of this, the utility model provides a glass conveying buffer device. UTILITY MODEL CONTENT

[0004] The utility model aims at the problems in the background art and provides a glass conveying buffer device.

[0005] The utility model discloses a glass conveying buffer device, including support board, two between the support board is equipped with conveying belt device, the top of two support board installs the protection support, be arranged on the protection support push assembly, push assembly includes positive and negative motor, the output of positive and negative motor is connected with screw rod, the outer surface wall of screw rod is equipped with N type push frame, the bottom wall of protection support is equipped with buffer assembly, buffer assembly includes the temporary storage box, be arranged in the temporary storage box and support assembly, support assembly includes the base plate, the top wall of base plate is connected with pressure sensor and spring, the base plate is covered with rubber cover, the back wall of temporary storage box installs electric push rod, the bottom wall of temporary storage box is connected with support leg, the bottom wall of protection support is installed with the reinforcing rib against symmetry, the front view wall of support board installs the controller.

[0006] Preferably, the first notch is symmetrically arranged on the top of the support plate, and the protection support is arranged in the first notch.

[0007] Preferably, the bottom of the positive and negative motor is provided with a motor base, and the motor base is installed on the front view wall of the protection support.

[0008] Preferably, the protective bracket has symmetrical rotating holes on its front and back walls, and bearings are arranged in both rotating holes. The two bearings are symmetrically sleeved on the outer surface wall of the cylinder.

[0009] Preferably, an anti-slip strip is installed on the top wall of the N-type pusher, and a limiting groove is formed on the top inner wall of the protective bracket, with the anti-slip strip disposed in the limiting groove.

[0010] Preferably, a cylinder is installed at the bottom of the temporary storage box, and the output end of the cylinder is connected to the bottom wall of the substrate.

[0011] Preferably, sliders are symmetrically connected to the two side walls of the rubber cover, and guide grooves are symmetrically opened on the two side walls of the temporary storage box, with the two sliders symmetrically arranged in the guide grooves corresponding to their positions.

[0012] Compared with the prior art, the present invention has the following beneficial technical effects:

[0013] This invention utilizes a conveyor belt system to transport glass into a protective support. Upon arrival, a forward and reverse motor drives a threaded rod to move an N-shaped pusher. This movement pushes the glass to the top opening of a temporary storage box, where it is supported by a support assembly. A cylinder lowers the support assembly, achieving automatic temporary storage of the glass and reducing worker workload. The symmetrical arrangement of two sets of buffer assemblies facilitates glass pushing during the N-shaped pusher's resetting process, eliminating the need for manual resetting and saving time. Furthermore, the upward push of the cylinder, combined with the N-shaped pusher, allows the buffered glass to be returned to the conveyor belt for transport, improving the coordination of subsequent processes and eliminating the need for manual operation. This prevents the risk of glass slipping and breaking during manual handling, thus enhancing operational safety. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of a glass conveying and buffering device;

[0015] Figure 2 yes Figure 1 Schematic diagram of the internal structure of the protective support;

[0016] Figure 3 yes Figure 1 A 3D structural diagram of the cache component;

[0017] Figure 4 yes Figure 3 A frontal cross-sectional view of the central support component.

[0018] Reference numerals: 1. Support plate; 2. Conveyor belt device; 3. Protective bracket; 4. Pushing assembly; 41. Forward and reverse motor; 42. Threaded rod; 43. N-type push frame; 44. Anti-slip strip; 45. Motor base; 5. Buffer assembly; 51. Temporary storage box; 52. Cylinder; 53. Support assembly; 531. Base plate; 532. Pressure sensor; 533. Support assembly; 534. Rubber cover; 54. Slider; 55. Electric push rod; 6. Support leg; 7. Reinforcing rib; 8. Controller. Detailed Implementation

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

[0020] like Figures 1 to 4 As shown, the glass conveying and buffering device proposed in this utility model includes a support plate 1 and a controller 8. The two support plates 1 are symmetrically arranged. The conveying structure of the conveyor belt device 2 is located between the two support plates 1. The driving structure of the conveyor belt device 2 is installed on the front-facing wall of one of the support plates 1. The two support plates 1 support the conveyor belt device 2, facilitating the conveying of glass using the conveyor belt device 2. The protective bracket 3 is fixedly installed in the first notch symmetrically opened on the top wall of the support plate 1. The second notch symmetrically opened on the side walls of the protective bracket 3 is used to facilitate the conveying of glass by the conveyor belt device 2. Two support legs 6 are symmetrically installed on the bottom wall of the protective bracket 3, providing support for the protective bracket 3. Multiple reinforcing ribs 7 are symmetrically welded to the back-facing walls of the two support plates 1. At the same time, the top walls of the two reinforcing ribs 7 are also fixedly connected to the bottom walls of the protective bracket 3, providing positional reinforcement for the protective bracket 3. The controller 8 is fixedly installed on the front-facing wall of one of the support plates 1.

[0021] Furthermore, the protective bracket 3 is equipped with a pushing assembly 4, which includes a forward and reverse motor 41, a threaded rod 42, an N-shaped pusher 43, an anti-slip strip 44, and a motor base 45. The forward and reverse motor 41 is located on the outer wall of the protective bracket 3, while the motor base 45 is fixedly installed on the front-facing wall of the protective bracket 3. The forward and reverse motor 41 is mounted on the motor base 45, which supports the forward and reverse motor 41. The threaded rod 42 is located inside the protective bracket 3, and its two ends are inserted into symmetrical openings on the front and back walls of the protective bracket 3, respectively. In the rotating holes, the bearings arranged in the two rotating holes are all sleeved on the outer surface wall of the threaded rod 42. One end of the threaded rod 42 is also connected to the output end of the forward and reverse motor 41 to facilitate subsequent rotation. Threaded holes are symmetrically opened on both sides of the N-type push frame 43. The threaded rod 42 is also set in the two threaded holes. The anti-slip strip 44 is fixedly installed on the top wall of the N-type push frame 43. The anti-slip strip 44 is also set in the limiting groove opened on the inner surface wall of the top of the protective bracket 3. The limiting groove and the anti-slip strip 44 play a guiding role for the N-type push frame 43 in the moving state.

[0022] Furthermore, a buffer assembly 5 is symmetrically installed on the bottom wall of the protective bracket 3. The buffer assembly 5 includes a temporary storage box 51, a cylinder 52, a support assembly 53, a slider 54, and an electric push rod 55. The top opening of the temporary storage box 51 is connected to the bottom wall of the protective bracket 3. An access port is provided on the front wall of the temporary storage box 51 to facilitate inserting the isolation pad into the temporary storage box 51. The electric push rod 55 is fixedly installed on the back wall of the temporary storage box 51. A sliding hole is provided on the back wall of the temporary storage box 51, and the output end of the electric push rod 55 is set in the sliding hole, which is conducive to... The used isolation pad is pushed out through the storage port; the cylinder 52 is fixedly installed on the bottom wall of the temporary storage box 51, and the bottom wall of the temporary storage box 51 has an opening for movement. The support component 53 is set inside the temporary storage box 51, and the output end of the cylinder 52 passes through the opening and connects to the bottom wall of the support component 53, so as to facilitate the adjustment of the height of the support component 53; two sliders 54 are symmetrically arranged on the two side walls of the support component 53, and are also located in the guide grooves opened on the inner walls of the two sides of the temporary storage box 51, which play a guiding role for the support component 53 during the lifting process;

[0023] The support assembly 53 includes a base plate 531, a pressure sensor 532, springs 533, and a rubber cover 534. The bottom wall of the base plate 531 is connected to the output end of the cylinder 52. The rubber cover 534 is placed on the base plate 531 to protect the bottom of the glass. Meanwhile, two sliders 54 are symmetrically fixed on the two side walls of the rubber cover 534. The pressure sensor 532 is fixedly installed on the top wall of the base plate 531 and located inside the rubber cover 534. The top ends of the multiple springs 533 are connected to the top wall of the inner surface of the rubber cover 534, and the bottom ends are connected to the top wall of the base plate 531 to assist the rubber cover 534 in resetting.

[0024] In this embodiment, the glass is conveyed by the conveyor belt device 2. When the glass is conveyed into the protective bracket 3, the forward and reverse motor 41 drives the threaded rod 42 to move the N-type pusher 43, which in turn moves the glass. At this time, the support component 53 is located at the top opening of the temporary storage box 51, allowing the glass to move onto the support component 53. Under the action of the support component 53, the weight of the glass causes the rubber cover 534 to descend, applying pressure to the pressure sensor 532. Therefore, in conjunction with the controller 8, the cylinder 52 is activated to drive the support component 53 to descend, thus buffering the glass and preventing mismatch between the speed of the preceding and following processes from affecting the glass processing. When the speed of the following process is restored, the cylinder 52 can be activated to push the support component 53 upward, pushing the glass back into the protective bracket 3, and starting... The forward and reverse motor 41 drives the threaded rod 42 to push the N-type pusher 43 to reset the glass. This eliminates the need for manual handling of the buffered glass, improving efficiency, reducing labor intensity, and lowering the risk of glass breakage. During the glass stacking and buffering process, existing isolation pads can be placed through the access port to protect the glass in the stacked state. When the glass is pushed back onto the conveyor belt 2, the electric pusher 55 can be activated to push out the isolation pads underneath for easy recycling. Furthermore, the forward and reverse motor 41 allows the N-type pusher 43 to remain stationary after pushing the glass for buffering. When the next piece of glass needs to be buffered, simply drive the N-type pusher 43 to reset, eliminating the need for resetting after each push, thus facilitating the glass buffering process.

[0025] The above specific embodiments are merely several preferred embodiments of this utility model. Based on the technical solution of this utility model and the relevant teachings of the above embodiments, those skilled in the art can make various alternative improvements and combinations to the above specific embodiments.

Claims

1. A glass conveying and buffering device comprising a support plate (1), characterized in that: Two supporting plates (1) are provided with a conveying belt device (2), and the top of the two supporting plates (1) is provided with a protective support (3), and the protective support (3) is provided with a pushing assembly (4), the pushing assembly (4) comprises a reversible motor (41), the output end of the reversible motor (41) is connected with a threaded rod (42), the outer surface wall of the threaded rod (42) is provided with an N-shaped pushing frame (43), the bottom wall of the protective support (3) is symmetrically provided with a buffer assembly (5), the buffer assembly (5) comprises a temporary storage box (51), the temporary storage box (51) is provided with a supporting assembly (53), the supporting assembly (53) comprises a base plate (531), the top wall of the base plate (531) is connected with a pressure sensor (532) and a spring (533), the base plate (531) is covered with a rubber cover (534), the back wall of the temporary storage box (51) is provided with an electric push rod (55), the bottom wall of the temporary storage box (51) is connected with a supporting leg (6), the bottom wall of the protective support (3) is symmetrically provided with a reinforcing rib (7), and the front wall of the supporting plate (1) is provided with a controller (8).

2. A glass delivery buffer as defined in claim 1, wherein, The top of the supporting plate (1) is symmetrically provided with a first notch, and the protective support (3) is arranged in the first notch.

3. The glass delivery buffer apparatus of claim 1, wherein, The bottom of the reversible motor (41) is provided with a motor base (45), and the motor base (45) is installed on the front wall of the protective support (3).

4. The glass delivery buffer apparatus of claim 1, wherein, The front wall and the back wall of the protective support (3) are symmetrically provided with a rotating hole, and the two rotating holes are provided with bearings.

5. The glass delivery buffer apparatus of claim 1, wherein, The top wall of the N-shaped pushing frame (43) is provided with an anti-slip strip (44), and the top inner wall of the protective support (3) is provided with a limiting sliding groove.

6. The glass delivery buffer apparatus of claim 1, wherein, The bottom of the temporary storage box (51) is provided with a gas cylinder (52), and the output end of the gas cylinder (52) is connected with the bottom wall of the base plate (531).

7. The glass delivery buffer apparatus of claim 1, wherein, The two side walls of the rubber cover (534) are symmetrically connected with sliding blocks (54), and the two side walls of the temporary storage box (51) are symmetrically provided with guiding sliding grooves, and the two sliding blocks (54) are symmetrically arranged in the position corresponding guiding sliding grooves.