A glass anti-mildew powder cleaning device

By installing a telescopic sleeve on the conveying equipment and using the driving mechanism to generate impact airflow to clean the powder in the glass groove, the problem of unclean cleaning in the prior art is solved, and thorough cleaning of the glass surface and recycling of anti-mold powder are achieved.

CN116651849BActive Publication Date: 2025-08-05HUIZHOU BOST IND CO LTD
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Patent Information

Application Number
CN202310439748.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-21
Publication Date
2025-08-05
Estimated Expiration
2043-04-21

AI Technical Summary

Technical Problem

The prior art is difficult to effectively clean the anti-mold powder in the grooves on the glass surface, resulting in the problem of unclean cleaning.

Method used

A glass anti-mold powder cleaning device is adopted. By installing a telescopic sleeve on the conveying equipment and using a driving mechanism to continuously squeeze the glass surface, an impact airflow is generated to clean the powder in the groove, and thorough cleaning is achieved in combination with the action of gravity.

Benefits of technology

Effectively clean the powder in the glass grooves to ensure that the glass surface is completely clean, avoid glass breakage, and achieve the recycling of anti-mold powder.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a glass anti-mildew powder cleaning device, which relates to the field of anti-mildew powder. The glass anti-mildew powder cleaning device of the present invention comprises a conveying device for conveying glass, wherein a telescopic sleeve is installed on the conveying device, and a driving mechanism is further provided on the conveying device for driving the telescopic sleeve to continuously squeeze relative to the glass surface. When the telescopic sleeve is squeezed, an impact airflow is generated, which pushes the powder stuck in the glass groove out of the groove. The present invention can drive the telescopic sleeve to move toward the glass through the driving mechanism, so that the telescopic sleeve is squeezed. When the telescopic sleeve is squeezed, an impact airflow is generated, which can push the powder stuck in the groove out of the groove, thereby cleaning the groove. Thereafter, water washing is performed in the next process, which will make the glass cleaner. In addition, the glass anti-mildew powder cleaning device of the present invention can also recycle the anti-mildew powder, and the cleaned anti-mildew powder can be collected through the funnel below the conveying device.
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Description

Technical Field

[0001] The invention discloses a glass anti-mildew powder cleaning device, which relates to the field of anti-mildew powder. Background Art

[0002] Glass anti-mildew powder is a glass anti-mildew isolation material, which is used to prevent the glass surface from being scratched, damaged and moldy during the stripping, storage and transportation process.

[0003] Glass anti-mold powder cleaning refers to the process of cleaning and drying the glass surface before further processing. Currently, the most common cleaning equipment is a high-pressure water jet. However, for glass with grooves on the surface, such as embossed glass with intricate patterns, cleaning is often incomplete.

[0004] The reason for this problem is that the size of some particles in the anti-mildew powder is similar to or smaller than the depth of the pits on the glass. The powder will be completely sunken or stuck in the patterned grooves on the surface, and it is difficult to clean it with water alone. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to overcome the deficiencies of the prior art and provide a glass mildew-proof powder cleaning device for cleaning the difficult-to-clean portion of glass mildew-proof powder in a glass groove.

[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0007] A glass mildew-proof powder cleaning device includes a conveying device for conveying glass, a telescopic sleeve installed on the conveying device, and a driving mechanism for driving the telescopic sleeve to continuously squeeze the glass surface. When the telescopic sleeve is squeezed, an impact airflow is generated to push the powder stuck in the glass groove out of the groove.

[0008] Furthermore, the conveying equipment includes a frame, a reducer and a chain drive system. A number of rollers are installed on the frame. The reducer provides power between the rollers, and the chain drive system transmits power so that all the rollers rotate synchronously in the same direction. The rollers are arranged at intervals, and a number of telescopic sleeves are arranged between the rollers. The telescopic sleeves are driven from bottom to top by the driving mechanism.

[0009] Furthermore, the surface of the roller is covered with a buffer sleeve.

[0010] Furthermore, there are multiple driving mechanisms, and multiple driving mechanisms are arranged in the gap between the rollers. The driving mechanism includes two driving wheels, and the two driving wheels are rotatably installed on both sides of the frame. A transmission gear is provided on the axle of one of the driving wheels, and the transmission gear is connected to the chain transmission system; a transmission rod is pivotally connected to the eccentric point of the two driving wheels, and a mounting rod is provided between the two transmission rods. The two ends of the mounting rod are pivotally connected to the transmission rod, and the telescopic sleeves corresponding to the driving mechanism are fixed on the mounting rod. The driving mechanism also includes a guide structure, and the guide structure is provided with two guide rods erected on both sides of the mounting rod.

[0011] Furthermore, a ventilation hole is provided at the bottom of the telescopic sleeve.

[0012] Furthermore, the guide structure also includes two mounting shafts, and each of the two guide rods is mounted on both sides of the frame by a mounting shaft, one of the mounting shafts is provided with a flange at the end for fixing the mounting shaft to the frame, and the other mounting shaft is pivotally connected to the frame.

[0013] Furthermore, a second reducer and a second chain transmission system are provided. The second chain transmission system connects the ends of all rotatable installation shafts. The second reducer provides power. The second chain transmission system can be used to drive all installation shafts to rotate synchronously and lock the angles of the installation shafts.

[0014] Beneficial Effects: The present invention utilizes a drive mechanism to drive the telescopic sleeve toward the glass, squeezing the sleeve. This squeezing generates an impact airflow that pushes powder trapped in the groove out of the groove, thereby cleaning the groove. Subsequently, water washing in the next step further cleans the glass. Furthermore, the glass anti-mold powder cleaning device of the present invention can also recycle the anti-mold powder, which can be collected by a funnel below the conveying device. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0016] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention;

[0017] Figure 2 This is a schematic diagram of the structure inside the frame of the present invention, which shows the structure of the chain transmission system;

[0018] Figure 3 This is a schematic diagram of the coordination of the drive structure, telescopic sleeve, and roller of the present invention;

[0019] Figure 4It is a top view schematic diagram of the driving structure, telescopic sleeve and roller of the present invention;

[0020] Figure 5 For the Figure 4 Sectional view along line AA;

[0021] Figure 6 Schematic diagram of the driving structure, telescopic sleeve, and guide structure of the present invention;

[0022] Figure 7 This is a schematic diagram of the telescopic sleeve in a collapsed state;

[0023] Explanation of the accompanying drawings: conveying equipment 1, frame 11, roller 12, reducer 13, chain drive system 14, telescopic sleeve 2, drive mechanism 3, drive wheel 31, transmission gear 32, transmission rod 33, mounting rod 34, buffer sleeve 4, guide rod 51, mounting shaft 52, flange 53. DETAILED DESCRIPTION

[0024] To make the purpose, technical solutions, and advantages of this application more clear, the technical solutions of this application will be clearly and completely described below in conjunction with the specific embodiments of this application and the corresponding drawings. Obviously, the embodiments described are only part of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of this application.

[0025] The following is combined with Figures 1 to 7 , describes in detail the technical solutions provided by each embodiment of this application.

[0026] Reference Figure 1 The device for cleaning glass mold-proofing powder shown in the figure includes a conveying device 1 for conveying glass along a predetermined route to the next process. A plurality of rubber telescopic sleeves 2 are mounted on the conveying device 1. The sleeves 2 are hollow and have a port. The walls of the sleeves 2 have a corrugated structure that allows for easy expansion and contraction. The conveying device 1 is also equipped with a driving mechanism 3 that continuously presses the sleeves 2 against the glass surface. The compression of the sleeves 2 generates an impact airflow that pushes powder stuck in the grooves out of the grooves, thereby cleaning the grooves. Subsequently, water washing in the next process will make the glass even cleaner.

[0027] In this embodiment, refer to Figure 2As shown, the conveying device 1 utilizes a roller conveyor. The roller conveyor includes a frame 11, on which are mounted a plurality of rollers 12. A speed reducer 13 provides power between the rollers 12, and a chain drive system 14 provides transmission, ensuring that all rollers 12 rotate synchronously and in the same direction, maintaining a certain distance between the rollers 12. A plurality of telescopic sleeves 2 are disposed between the rollers 12, and the telescopic sleeves 2 are driven by a drive mechanism 3 to move upward from bottom to top. With this embodiment, the groove of the glass can face downward, allowing powder on the glass surface to fall due to gravity. The powder within the groove can also be more easily removed due to the combined effects of the impact airflow and gravity. Furthermore, and more importantly, the glass can be prevented from shattering. If the conveyor moves from top to bottom, even if the telescopic sleeve 2 forms a buffer due to compression, the glass is effectively sandwiched between the telescopic sleeve 2 and the rollers 12, potentially causing breakage. However, if the conveyor moves from bottom to top, the glass is merely lifted up without the risk of breakage. Moreover, this method has another advantage. The glass will move forward only when it contacts the roller 12, and it is equivalent to being stationary when it is lifted up. In this way, the glass can be moved in a step-by-step manner, so that the glass is impacted comprehensively, and the same position is impacted multiple times, so that the powder in the groove can be cleaned more thoroughly.

[0028] It should also be noted that the telescopic sleeve 2 is extended and retracted because it moves rapidly from bottom to top and hits the bottom of the glass. If the glass is heavy, it will not be lifted up, but if it is light, it may be lifted up.

[0029] In this embodiment, refer to Figure 3 As shown, the surface of the roller 12 is covered with a buffer sleeve 4, which can be made of silicone material. Its purpose is to cooperate with the above-mentioned embodiment, because the telescopic sleeve 2 in the above-mentioned embodiment lifts the glass from bottom to top, but the glass still needs to be placed on the roller 12 in the end. The buffer sleeve 4 can prevent the glass from being broken by being put down too quickly.

[0030] In this embodiment, refer to Figure 3-Figure 7As shown, there are multiple drive mechanisms 3, and multiple drive mechanisms 3 are arranged in the gap between the rollers 12 and the rollers 12. The drive mechanism 3 includes two drive wheels 31, and the two drive wheels 31 are rotatably installed on both sides of the frame 11 of the roller conveyor. A transmission gear 32 is provided on the axle of one of the drive wheels 31, and the transmission gear 32 is connected to the above-mentioned chain drive system 14; a transmission rod 33 is pivotally connected to the eccentric point of the two drive wheels 31, and a mounting rod 34 is provided between the two transmission rods 33. The two ends of the mounting rod 34 are pivotally connected to the transmission rod 33, and the telescopic sleeves 2 corresponding to the drive mechanism 3 are fixed on the mounting rod 34. The drive mechanism 3 also includes a guide structure, which is provided with two guide rods 51 erected on both sides of the mounting rod 34 to guide the mounting rod 34 to reciprocate in the vertical direction. This embodiment makes full use of the power of the roller conveyor. Because a driving wheel 31 of the driving mechanism 3 is connected to the chain drive system 14 of the roller conveyor through a transmission gear 32, when the roller conveyor is running, the driving wheel 31 can also rotate together. The mounting rod 34 converts the circular motion of the driving wheel 31 into reciprocating motion through the action of the transmission rod 33, and the guide mechanism guides the mounting rod 34 to reciprocate in the vertical direction.

[0031] In this embodiment, considering that the telescopic sleeve 2 moves from bottom to top to impact the bottom surface of the glass, the fracture is facing upward, so it is inevitable that dust will gradually accumulate on the telescopic sleeve 2. Although the accumulation of dust will not affect the effect of impact cleaning, after the thickness increases to a certain extent, with the impact of the telescopic sleeve 2, the accumulated dust will also hit the glass like a solid object, causing damage to the glass surface. Therefore, as an optional embodiment, an air vent is opened at the bottom of the telescopic sleeve 2. With the design of this air vent, when the telescopic sleeve 2 impacts the glass and is compressed, some air can flow out of the air vent, thereby driving the powder in the telescopic sleeve 2 to be discharged. Of course, this method will inevitably lead to a reduction in the amount and speed of air originally discharged from the glass groove due to the addition of an air vent, affecting the cleaning effect. Therefore, in this embodiment, another embodiment is also provided.

[0032] As a preferred embodiment, the present embodiment designs a guide structure for the drive mechanism 3. The guide structure has two guide rods 51 standing upright on both sides of the guide rod 51. The two guide rods 51 are each mounted on both sides of the frame 11 by a mounting shaft 52. A flange 53 is provided at the end of one mounting shaft 52 to fix the mounting shaft 52 to the frame 11 so that it cannot rotate. The other mounting shaft 52 is pivotally connected to the frame 11. The advantage of this design is that the corresponding guide rod 51 can be rotated 180 degrees by rotating the mounting shaft 52. At this time, one side of the mounting rod 34 of the drive mechanism 3 loses its limit. Then, because the mounting rod 34 is pivotally connected to the transmission rod 33, the mounting rod 34 will fall to that side after losing its limit on one side, causing the end of the telescopic sleeve 2 to face downward (refer to Figure 7 ) to pour out the dust inside.

[0033] Compared with the previous embodiment, this embodiment can also solve the problem of dust accumulation in the telescopic sleeve 2, but it will not affect the cleaning effect of the telescopic sleeve 2.

[0034] On this basis, this embodiment further includes a second speed reducer and a second chain drive system. The second chain drive system connects the ends of all the rotatable mounting shafts 52. The second speed reducer provides power, and the second chain drive system can be used to drive all the mounting shafts 52 to rotate synchronously. In addition, the second chain drive system here is also used to lock the angle of the mounting shafts 52. It should be noted that the structures of the second speed reducer and the second chain drive system are not shown in the accompanying drawings. The structures of the second speed reducer and the second chain drive system can refer to the speed reducer and chain drive system.

[0035] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.

[0036] The above are merely embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application should all be included within the scope of the claims of the present application.

Claims

1. A glass anti-mildew powder cleaning device, characterized by: The invention comprises a conveying device (1) for conveying glass, wherein a telescopic sleeve (2) is installed on the conveying device (1), and a driving mechanism (3) is further provided on the conveying device (1) for driving the telescopic sleeve (2) to continuously press against the glass surface, wherein when the telescopic sleeve (2) is pressed, an impact airflow is generated to push powder stuck in the glass groove out of the groove; The conveying device (1) includes a frame (11), a speed reducer (13) and a chain transmission system (14). A plurality of rollers (12) are mounted on the frame (11). The speed reducer (13) provides power to the plurality of rollers (12). The chain transmission system (14) transmits power to the plurality of rollers (12) so that all the rollers (12) rotate synchronously in the same direction. The rollers (12) are spaced apart. A plurality of telescopic sleeves (2) are arranged between the rollers (12). The telescopic sleeves (2) are driven by the driving mechanism (3) to move from bottom to top. The bottom of the telescopic sleeve (2) is provided with an air vent; there are a plurality of driving mechanisms (3), and the plurality of driving mechanisms (3) are arranged in the gap between the rollers (12) and the rollers (12); the driving mechanism (3) includes two driving wheels (31), the two driving wheels (31) are rotatably mounted on both sides of the frame (11), a transmission gear (32) is arranged on the wheel shaft of one of the driving wheels (31), and the transmission gear (32) is connected to the chain transmission system (14); a transmission rod (33) is pivotally connected to the eccentric position of the two driving wheels (31), a mounting rod (34) is arranged between the two transmission rods (33), and both ends of the mounting rod (34) are pivotally connected to the transmission rod (33), and the telescopic sleeves (2) corresponding to the driving mechanism (3) are fixed on the mounting rod (34); the driving mechanism (3) also includes a guide structure, and the guide structure is provided with two guide rods (51) erected on both sides of the mounting rod (34); The guide structure further comprises two mounting shafts (52), and the two guide rods (51) are each mounted on both sides of the frame (11) by a mounting shaft (52), wherein the end of one of the mounting shafts (52) is provided with a flange (53) for fixing the mounting shaft (52) to the frame (11), and the other mounting shaft (52) is pivotally connected to the frame (11).

2. The glass anti-mildew powder cleaning device according to claim 1, characterized in that: The surface of the roller (12) is covered with a buffer sleeve (4).

3. The glass anti-mildew powder cleaning device according to claim 1, characterized in that: A second speed reducer and a second chain transmission system are also provided. The second chain transmission system connects the ends of all the rotatable installation shafts (52). The second speed reducer provides power. The second chain transmission system can be used to drive all the installation shafts (52) to rotate synchronously and lock the angle of the installation shafts (52).

Citation Information

Patent Citations

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