Glass storage high-pressure dustproof device

By installing dust covers, fans, and automated feeding mechanisms on glass storage equipment, a micro-high pressure airflow environment is created, solving the dust accumulation problem of traditional glass processing and storage equipment, and achieving efficient dust prevention and simplified maintenance.

CN224132227UActive Publication Date: 2026-04-17FOSHAN SHUNDE CHUANGSHICHENG GLASS MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN SHUNDE CHUANGSHICHENG GLASS MASCH CO LTD
Filing Date
2025-05-06
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Traditional glass processing and storage equipment is prone to dust accumulation, and existing improvement solutions have failed to effectively address airflow and humidity issues, leading to dust deposition and mold growth.

Method used

The glass storage high-pressure dustproof device includes a dust cover, a fan, a pressure sensor and an automated feeding mechanism, forming a closed micro-high pressure environment with airflow. The airflow generated by the fan prevents dust from entering, and the slot and pin design simplifies installation and disassembly.

Benefits of technology

It effectively prevents external dust from entering, keeps the interior clean, simplifies equipment maintenance, improves work efficiency, ensures clean glass surfaces, and reduces the risk of mold growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass processing storage equipment, and provides a glass storage high-pressure dustproof device which comprises a glass sheet storage mechanism, a dustproof cover is arranged outside the glass sheet storage mechanism in a sleeved mode, the dustproof cover is provided with a discharging port and a feeding port, the dustproof cover is provided with at least one draught fan, and the draught fan is connected with the glass sheet storage mechanism. The glass sheet storage mechanism is provided with at least one butt joint part, the dust cover is provided with at least one connecting part, and the connecting part is connected with the butt joint part in a clamped mode. According to the utility model, at least one fan is arranged on the dustproof cover sleeved outside the glass sheet storage mechanism, so that a relatively closed micro-high-pressure environment with air fluidity is formed, external dust is effectively prevented from entering the dustproof cover through the feed port and the discharge port, and the interior is kept clean.
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Description

Technical Field

[0001] This utility model relates to the technical field of glass processing and storage equipment, and in particular to a high-pressure dustproof device for glass storage. Background Technology

[0002] In the glass processing and storage industry, maintaining the cleanliness of glass products is crucial, as even tiny dust particles or impurities can cause scratches or other damage to the glass surface during subsequent processing. Traditional glass processing and storage equipment typically employs an open or semi-enclosed structural design. While this design facilitates operation, the lack of effective dust prevention measures allows dust and particulate matter from the external environment to easily accumulate on the glass surface.

[0003] However, existing technologies have many shortcomings in solving the dust accumulation problem. On the one hand, some improvement solutions reduce dust contact by adding simple enclosed structures, but these designs often fail to fully consider the importance of airflow, leading to increased internal humidity, which in turn promotes dust deposition and mold growth.

[0004] The purpose of this invention is to solve the problem of dust accumulation in traditional glass processing and storage equipment. Utility Model Content

[0005] The purpose of this invention is to solve the problem of dust accumulation in traditional glass processing and storage equipment. The invention employs the following technical solution:

[0006] A high-pressure dustproof device for glass storage includes a glass sheet storage mechanism. The glass sheet storage mechanism is covered with a dustproof cover. The dustproof cover has a discharge port and a feed port. The dustproof cover is equipped with at least one fan. The glass sheet storage mechanism is provided with at least one docking part. The dustproof cover is provided with at least one connecting part. The connecting part is engaged with the docking part.

[0007] In the glass storage high-pressure dustproof device described above, the docking part is a slot, and the connecting part is a pin that matches the slot.

[0008] In the glass storage high-pressure dustproof device described above, one end of the pin is provided with a hemispherical portion.

[0009] As described above, in a high-pressure dustproof device for glass storage, the fan is located on top of the dustproof cover and blows air from top to bottom.

[0010] As described above, in a high-pressure dustproof glass storage device, the dustproof cover is provided with a door, and the feed inlet is located on the door.

[0011] As described above, a high-pressure dustproof device for glass storage includes at least one pressure sensor installed inside the dustproof cover.

[0012] The glass storage high-pressure dustproof device described above includes a glass sheet storage mechanism that is used to input or output glass products.

[0013] As described above, in a high-pressure dustproof device for glass storage, fans are installed on both sides of the top of the dustproof cover.

[0014] As described above, in a high-pressure dustproof glass storage device, both the outlet and the inlet are equipped with matching baffles.

[0015] In the glass storage high-pressure dustproof device described above, the air inlet of the fan is equipped with a dustproof net.

[0016] Implementing the embodiments of this utility model has the following beneficial effects:

[0017] 1. This utility model creates a relatively enclosed, slightly pressurized environment with airflow by installing at least one fan on the dust cover surrounding the glass slide storage mechanism. This effectively prevents external dust from entering the dust cover through the inlet and outlet, maintaining internal cleanliness. The snap-fit ​​design of the connecting and docking parts not only ensures a tight connection between the dust cover and the glass slide storage mechanism but also greatly simplifies the installation and disassembly process, improving the convenience and efficiency of equipment maintenance.

[0018] In summary, this invention solves the problem of dust accumulation in traditional glass processing and storage equipment. Attached Figure Description

[0019] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the overall structure of a high-pressure dustproof device for glass storage according to this utility model.

[0021] Figure 2 This is a schematic diagram of the structure of a high-pressure dustproof glass storage device after the dust cover has been removed.

[0022] Figure 3 yes Figure 2 The enlarged structural diagram at point A.

[0023] Figure 4This is a schematic diagram of the structure of the dust cover of a high-pressure dustproof device for glass storage according to this utility model.

[0024] Figure 5 yes Figure 4 The enlarged structural diagram at point B.

[0025] As shown in the figure:

[0026] 1. Glass slide storage mechanism; 11. Docking part; 2. Dust cover; 21. Fan; 22. Discharge port; 23. Door; 24. Inlet; 25. Pressure sensor; 26. Connecting part; 261. Pin; 262. Hemispherical part. Detailed Implementation

[0027] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0028] like Figures 1 to 5 As shown, this utility model proposes a high-pressure dustproof device for glass storage, including a glass sheet storage mechanism 1. A dustproof cover 2 is fitted over the glass sheet storage mechanism 1. The dustproof cover 2 has a discharge port 22 and a feed port 24. At least one fan 21 is installed on the dustproof cover 2. The glass sheet storage mechanism 1 has at least one docking part 11, and the dustproof cover 2 has at least one connecting part 26, which engages with the docking part 11. By fitting a dustproof cover 2 over the glass sheet storage mechanism 1 and installing at least one fan 21 on the dustproof cover, a relatively enclosed micro-high-pressure environment with airflow can be formed. When storing or removing glass sheets, operation is performed through the feed port 24 and the discharge port 22. The airflow generated by the fan 21 effectively prevents external dust from entering the dustproof cover through these two openings, keeping the interior clean. Furthermore, the engaging connection 26 on the dustproof cover 2 with the docking part 11 on the glass sheet storage mechanism 1 ensures a tight connection between the two while facilitating loading and unloading.

[0029] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, the mating portion 11 is a slot, and the connecting portion 26 is a pin 261 that matches the slot. The mating portion 11 on the glass slide storage mechanism 1 is designed as a slot, while the connecting portion 26 on the dust cover 2 uses a pin 261 that matches the slot. This design not only achieves quick and secure engagement between the two, but also simplifies the installation and disassembly process and improves the convenience of equipment maintenance.

[0030] Optionally, in some embodiments, the mating part 11 is a pin 261, and the connecting part 26 is a slot that matches the slot.

[0031] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, one end of the pin 261 is provided with a hemispherical portion 262. This design significantly improves the ease of inserting the pin into the slot. The smooth surface of the hemispherical portion 262 can effectively reduce the resistance when the pin 261 is inserted into the slot, making the operation smoother and avoiding installation difficulties caused by alignment problems or excessive friction. Even in situations where space is limited or the line of sight is obstructed, the engagement of the mating part 11 and the connecting part 26 can be easily completed by the guiding effect of the hemispherical portion 262, greatly improving work efficiency.

[0032] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, the fan 21 is disposed on top of the dust cover 2, and the fan 21 blows air from top to bottom. Since dust and other particulate matter are generally heavy, they easily accumulate on the bottom of the equipment or the glass surface in the absence of airflow. By mounting the fan 21 on top and blowing downwards, any dust that may accumulate can be effectively blown away from the glass storage area, keeping the glass surface clean. Secondly, the downward airflow from top to bottom can form an "air curtain" within the entire dust cover, helping to prevent external dust from entering the internal environment through the inlet 24 and outlet 22.

[0033] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, the dust cover 2 is provided with a door 23, and the feed inlet 24 is disposed on the door 23. The door 23 provides a convenient maintenance passage for personnel. By opening the door 23, personnel can directly access the glass slide storage mechanism 1 to perform necessary inspections and maintenance without removing the entire dust cover 2. This greatly simplifies the maintenance process and saves time and labor costs.

[0034] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, at least one pressure sensor 25 is installed inside the dust cover 2. The pressure sensor 25 provides the glass storage high-pressure dustproof device with the ability to monitor the internal air pressure in real time, enabling the system to manage its dustproof environment more intelligently and precisely. By monitoring changes in air pressure within the dust cover 2, it can be ensured that the airflow generated by the fan 21 is maintained at an optimal pressure level to effectively prevent external dust from entering. If the detected air pressure is lower than the set value, it may mean that the dustproof effect is decreasing, thus alerting personnel to perform maintenance.

[0035] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, the glass sheet storage mechanism 1 includes a feeding mechanism for inputting or outputting glass products. No manual handling is required, further preventing dust accumulation. The automated feeding mechanism design means that the entire glass sheet storage and retrieval process can be completed in a nearly enclosed environment, greatly reducing the possibility of dust entering due to manual operation. Workers do not need to manually open the cover 23 to place or remove glass sheets; all actions can be completed by the feeding mechanism controlled by the control system, thereby maintaining a high degree of cleanliness inside the dust cover 2.

[0036] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, fans 21 are installed on both sides of the top of the dust cover 2. The positions of the fans correspond to the discharge port 22 and the inlet port 24, thereby forming a directional airflow barrier. When material enters through the inlet port 24 or leaves through the discharge port 22, the fans on both sides can generate a strong downward or horizontal airflow, directly covering these openings and effectively preventing external dust from entering the dust cover along with the material.

[0037] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, both the discharge port 22 and the inlet port 24 are equipped with matching baffles. The baffles effectively prevent external dust from entering the dust cover 2 through the discharge port 22 and the inlet port 24, ensuring a clean internal environment. When the equipment is not in operation or the fan 21 malfunctions and cannot operate normally, the operator can lower the baffles to form a physical barrier, preventing dust intrusion. This not only protects the glassware stored inside from contamination but also reduces the workload of subsequent cleaning and maintenance.

[0038] Furthermore, as a preferred embodiment of the invention and not a limitation thereof, the air inlet of the fan 21 is equipped with a dust filter. The dust filter installed at the air inlet of the fan 21 can effectively intercept larger particles and dust from the outside, preventing them from entering the dust cover with the airflow. This not only helps maintain a clean environment inside the dust cover but also avoids damage to the fan itself from these impurities, extending its service life and maintenance cycle.

[0039] Example 1:

[0040] This invention discloses a high-pressure dustproof device for glass storage, comprising a glass sheet storage mechanism 1, an outer dustproof cover 2, a discharge port 22, and a feed port 24. The dustproof cover 2 is equipped with at least one fan 21. The glass sheet storage mechanism 1 has at least one docking part 11, and the dustproof cover 2 has at least one connecting part 26, which engages with the docking part 11. By enclosing the glass sheet storage mechanism 1 with the dustproof cover 2 and installing at least one fan 21 on the dustproof cover, a relatively enclosed micro-high-pressure environment with airflow is formed. When storing or removing glass sheets, operation is performed through the feed port 24 and the discharge port 22. The airflow generated by the fan 21 effectively prevents external dust from entering the dustproof cover through these two openings, keeping the interior clean. Furthermore, the engaging part 26 on the dustproof cover 2 and the docking part 11 on the glass sheet storage mechanism 1 ensure a tight connection between the two while facilitating loading and unloading. The docking part 11 is a slot, and the connecting part 26 is a pin 261 that matches the slot. The docking part 11 on the glass slide storage mechanism 1 is designed as a slot, while the connecting part 26 on the dust cover 2 uses a pin 261 that matches the slot. This design not only achieves quick and secure engagement between the two, but also simplifies the installation and disassembly process and improves the convenience of equipment maintenance. One end of the pin 261 is provided with a hemispherical part 262. This design significantly improves the ease of inserting the pin into the slot. The smooth surface of the hemispherical part 262 can effectively reduce the resistance when the pin 261 is inserted into the slot, making the operation smoother and avoiding installation difficulties caused by alignment problems or excessive friction. Even in situations where space is limited or the line of sight is obstructed, the engagement of the docking part 11 and the connecting part 26 can be easily completed with the guidance of the hemispherical part 262, greatly improving work efficiency. The glass slide storage mechanism 1 includes a feeding mechanism for inputting or outputting glass products. No manual handling is required, further preventing dust. The automated feeding mechanism is designed so that the entire glass slide storage and retrieval process can be completed in a nearly enclosed environment, greatly reducing the possibility of dust entering due to manual operation. Workers do not need to manually open the cover 23 to place or remove the glass slides; all actions can be completed by the feeding mechanism controlled by the control system, thus maintaining a high level of cleanliness inside the dust cover 2.

[0041] A blower 21 is positioned at the top of the dust cover 2, blowing air downwards. Since dust and other particulate matter are typically heavy, they easily accumulate at the bottom of the equipment or on the glass surface in the absence of airflow. By mounting the blower 21 at the top and blowing downwards, potentially deposited dust can be effectively blown away from the glass storage area, keeping the glass surface clean. Secondly, the downward airflow creates an "air curtain" throughout the dust cover, helping to prevent external dust from entering the internal environment through the inlet 24 and outlet 22.

[0042] The dust cover 2 is equipped with a door 23, and the feed inlet 24 is located on the door 23. The door 23 provides a convenient maintenance passage for personnel. By opening the door 23, personnel can directly access the glass slide storage mechanism 1 to perform necessary inspections and maintenance without removing the entire dust cover 2. This greatly simplifies the maintenance process and saves time and labor costs.

[0043] At least one pressure sensor 25 is installed inside the dust cover 2. The pressure sensor 25 provides the glass storage high-pressure dustproof device with the ability to monitor the internal pressure in real time, enabling the system to manage its dustproof environment more intelligently and precisely. By monitoring pressure changes within the dust cover 2, it ensures that the airflow generated by the fan 21 is maintained at an optimal pressure level to effectively prevent external dust from entering. If the detected pressure is lower than the set value, it may indicate a decrease in dustproof effectiveness, thus alerting personnel to perform maintenance.

[0044] Both the discharge port 22 and the inlet 24 are equipped with matching baffles. The baffles effectively prevent external dust from entering the dust cover 2 through the discharge port 22 and the inlet 24, ensuring a clean internal environment. When the equipment is not in operation or the fan 21 malfunctions and cannot operate normally, the operator can lower the baffles to form a physical barrier, preventing dust intrusion. This not only protects the glassware stored inside from contamination but also reduces the workload of subsequent cleaning and maintenance.

[0045] The air inlet of fan 21 is equipped with a dust filter. This dust filter effectively intercepts larger particles and dust from the outside environment, preventing them from entering the dust cover with the airflow. This not only helps maintain a clean environment inside the dust cover but also prevents these impurities from damaging the fan itself, extending its service life and maintenance cycle.

[0046] The implementation method of Example 2 is as follows:

[0047] The difference between Embodiment 2 and Embodiment 1 is that fans 21 are installed on both sides of the top of the dust cover 2. The positions of the fans correspond to the discharge port 22 and the inlet port 24, thus forming a directional airflow barrier. When material enters through the inlet port 24 or leaves through the discharge port 22, the fans on both sides can generate a strong downward or horizontal airflow, directly covering these openings and effectively preventing external dust from entering the dust cover along with the material.

[0048] Specifically, the working principle of this utility model is as follows:

[0049] This utility model's high-pressure dustproof glass storage device creates a relatively enclosed, yet air-flowing, micro-high-pressure environment by installing at least one fan 21 on the dustproof cover 2 that is fitted over the glass storage mechanism 1. When storing or retrieving glass sheets, operators can access them through the inlet 24 and outlet 24 on the cover door 23. The airflow generated by the fan 21 effectively prevents external dust from entering the dustproof cover through these openings, maintaining internal cleanliness. The top-mounted fan 21 blows air downwards, ensuring that dust and other particles do not accumulate at the bottom of the equipment or on the glass surface, forming an "air curtain" within the entire dustproof cover to effectively prevent the intrusion of external dust.

[0050] Furthermore, the device is equipped with an automated feeding mechanism for inputting or outputting glass products, thereby avoiding the possibility of dust entering due to direct human intervention. All glass sheet storage and retrieval processes can be completed in a nearly enclosed environment, significantly reducing the risk of dust contamination. In addition, a pressure sensor 25 is installed inside the dust cover 2 to monitor internal pressure changes in real time, ensuring that the airflow generated by the fan 21 is maintained at an optimal pressure level for best dustproof performance. If the pressure is detected to be lower than the set value, the system will prompt personnel to conduct inspection and maintenance, ensuring the equipment continues to operate efficiently.

[0051] Finally, to enhance dust protection, matching baffles are installed at both the discharge port 22 and the inlet 24, and a dust screen is installed at the air inlet of the fan 21. The baffles can be lowered when the equipment is not in use or the fan malfunctions, forming an additional physical barrier to prevent external dust from entering; while the dust screen effectively intercepts larger particles and dust, protecting the fan from damage while maintaining a clean environment inside the dust cover. These designs work together to ensure that the high-pressure dustproof device for glass storage provides stable and efficient dust protection, suitable for glass product storage needs requiring extremely high cleanliness.

[0052] In summary, this invention solves the problem of dust accumulation in traditional glass processing and storage equipment.

[0053] It should be understood that the terms "first," "second," etc., are used in this utility model to describe various information, but this information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this utility model, "first" information can also be referred to as "second" information, and similarly, "second" information can also be referred to as "first" information. In addition, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0054] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications are also considered to be within the protection scope of this utility model.

Claims

1. A glass storage high-pressure dustproof device, comprising a glass sheet storage mechanism (1), the glass sheet storage mechanism (1) is provided with a dust cover (2), the dust cover (2) is provided with a discharge port (22) and a feeding port (24), characterized in that, The dust cover (2) is equipped with at least one fan (21), the glass plate storage mechanism (1) is provided with at least one docking part (11), and the dust cover (2) is provided with at least one connecting part (26), the connecting part (26) is engaged with the docking part (11).

2. The glass storage high-pressure dustproof device according to claim 1, characterized in that, The docking part (11) is a slot, and the connecting part (26) is a pin (261) that matches the slot.

3. The glass storage high-pressure dustproof device according to claim 2, characterized in that, One end of the pin (261) is provided with a hemispherical part (262).

4. The glass storage high-pressure dustproof device according to claim 1, characterized in that, The fan (21) is located on top of the dust cover (2), and the fan (21) blows air from top to bottom.

5. The glass storage high-pressure dustproof device according to claim 1, characterized in that, The dust cover (2) is provided with a cover door (23), and the feed inlet (24) is provided on the cover door (23).

6. The glass storage high-pressure dustproof device according to claim 1, characterized in that, At least one pressure sensor (25) is installed inside the dust cover (2).

7. The high-pressure dustproof device for glass storage according to claim 1, characterized in that, The glass sheet storage mechanism (1) includes a feeding mechanism for inputting or outputting glass products.

8. The glass storage high-pressure dustproof device according to claim 1, characterized in that, Fans (21) are installed on both sides of the top of the dust cover (2).

9. The glass storage high-pressure dustproof device according to claim 1, characterized in that, Both the discharge port (22) and the inlet port (24) are equipped with matching baffles.

10. The glass storage high-pressure dustproof device according to claim 1, characterized in that, The air inlet of the fan (21) is equipped with a dustproof net.