Glass substrate packaging frame
By designing a vertical glass substrate packaging rack and using components such as leather roller shutters, edge clamps, and surface clamps, the problems of large space occupation, imperfect anti-displacement design, and poor protective performance of existing packaging racks have been solved, thus achieving stable transportation and storage of glass substrates.
Patent Information
- Application Number
- CN202511459661.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-13
- Publication Date
- 2026-01-02
AI Technical Summary
Existing glass substrate packaging racks occupy a large space, have imperfect anti-displacement design, and poor protective performance, making glass substrates prone to displacement, collision, and surface scratches during transportation and storage.
Design a glass substrate packaging rack, including a back plate, a bottom support plate and a back box of the packaging rack, adopting a vertical structure, equipped with a leather roller shutter shrink groove, edge clamping parts and surface clamping parts, combined with a desiccant placement box and roller shutter drive assembly, to form a stable frame structure that provides protection and sealing.
It effectively prevents the glass substrate from shaking or colliding during transportation and storage, improves space utilization efficiency, ensures the stability and integrity of the glass substrate, provides good protection, and meets the requirements of lightweight and easy operation.
Smart Images

Figure CN121247239A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of glass substrate production and manufacturing, and particularly relates to a glass substrate packaging rack. BACKGROUND
[0002] With the continuous progress of intelligent technology, glass has become one of the key structural components in the intelligent overall machine structure design. In order to achieve long-term development in the glass substrate industry, in the context of the rapid and healthy development of the global glass substrate industry, it is not only necessary to meet the requirements of high definition, light weight and ultra-thin of products, but also necessary to improve the quality and quantity of products. In the production of high-generation TFT substrate glass float process, the quality requirements for glass substrates are increasingly strict, and the transportation and placement of glass are particularly critical in the quality inspection and packaging links.
[0003] Especially in the processing of glass substrates, the semi-finished glass substrates after processing need to be put into the next link for further processing. Before being put in, the glass substrates need to be placed on an A-type rack, and when being put in, the glass substrates are placed in the packaging rack for storage by the plate taking robot. At present, horizontal packaging rack body structure is widely used in the storage and transportation process of glass substrates.
[0004] However, with the development of glass substrate size towards high generation, such rack body gradually shows many technical limitations. First, the horizontal rack structure needs to be placed horizontally, which leads to a large space occupation and low space utilization efficiency, increasing the comprehensive operation cost. Second, in the transportation link, due to vibration and inertia, the glass substrates are prone to displacement and even collision, which is difficult to maintain a stable state, resulting in surface scratches or edge cracks and other problems, which seriously affect the integrity of the substrate. In addition, in order to protect the surface quality of the glass substrate, strict sealing protection measures need to be taken during the entire processing and circulation process to avoid the attachment of particulate pollutants in the environment to the surface. The existing rack body generally has deficiencies in sealing design and anti-deviation structure, and the design that takes into account sealing, stability and operation convenience is relatively lacking. On the other hand, combined with the actual application requirements of the downstream client, the glass substrate packaging rack body also needs to meet the requirements of light weight, easy operation and space saving, and the traditional horizontal rack performs poorly in these aspects.
[0005] In summary, the glass substrate packaging rack in the current technology has the problems of large space occupation, imperfect anti-deviation design and poor protection performance. SUMMARY
[0006] The present application provides a glass substrate packaging rack, which can solve the problems of large space occupation, imperfect anti-deviation design and poor protection performance of the glass substrate packaging rack in the prior art.
[0007] A glass substrate packaging frame comprises a glass packaging frame body, the glass packaging frame body comprises a back plate, a bottom bearing plate and a packaging frame back box, the back plate is perpendicular to the bottom bearing plate, and the packaging frame back box is arranged on one side of the back plate away from the bottom bearing plate; The packaging frame back box is provided with a cortex roller shutter contraction groove on one side close to the back plate, and the cortex roller shutter contraction groove is provided with a cortex roller shutter. The left side and the right side of the back plate are provided with side plates, a plurality of edge part pressing pieces A are arranged on the inner sides of the side plates, and a plurality of surface pressing pieces B are arranged between adjacent two edge part pressing pieces A.
[0008] Further, the bottom of the bottom bearing plate is provided with a bottom connecting seat; The bottom connecting seat is uniformly provided with a bottom seat forklift hole; The bottom seat forklift hole penetrates the front and back surfaces of the bottom connecting seat.
[0009] Further, the included angle between the back plate and the bottom connecting seat is 60°-80°.
[0010] Further, the bottom of the bottom bearing plate is provided with a bottom seat transition buffer plate.
[0011] Further, the inner side of the side plate is provided with a desiccant placing box, and the desiccant placing box is used for storing desiccant.
[0012] Further, the desiccant placing box is uniformly provided with a breathable hole.
[0013] Further, the side plate is further provided with a roller shutter driving assembly on the inner side, and the roller shutter driving assembly is used for driving the cortex roller shutter to move.
[0014] Further, the cortex roller shutter contraction groove extends along the length direction of the packaging frame back box.
[0015] Further, the edge part pressing piece A comprises a rubber plate, a foamed plate and a screwing piece, the rubber plate is arranged on the inner side of the side plate, a screwing hole matched with the screwing piece is formed in the rubber plate, and one end of the screwing piece penetrating through the screwing hole is in close contact with the foamed plate.
[0016] Further, the surface pressing piece B comprises a pressing piece and a locking piece, the pressing piece is arranged on the back plate, and the locking piece is arranged on one end of the pressing piece away from the back plate.
[0017] Compared with the prior art, the beneficial effects of the present application are: 1. The glass substrate packaging rack provided by the present application comprises a glass packaging rack body, the glass packaging rack body comprises a back plate, a bottom bearing plate and a packaging rack back box, the back plate is perpendicular to the bottom bearing plate, and the packaging rack back box is arranged on the side of the back plate away from the bottom bearing plate; the glass substrate packaging rack further comprises side plates arranged on both sides of the back plate, the side plates are perpendicular to the back plate and are connected with the bottom bearing plate, forming a stable frame structure; the side plates, the back plate and the bottom bearing plate jointly form a containing space for placing glass substrates, which can effectively prevent the glass substrates from shaking or colliding during transportation and storage; the packaging rack back box is hollow inside, and can be used for storing related accessories or tools, thereby increasing the practicability and convenience of the packaging rack.
[0018] 2. In the present application, a leather roller shutter contraction groove is arranged on the side of the packaging rack back box close to the back plate, and a leather roller shutter is arranged in the leather roller shutter contraction groove; the leather roller shutter can be freely contracted in the leather roller shutter contraction groove, and can be stored in the contraction groove when not in use, thereby avoiding occupying additional space; when it is necessary to protect the accessories or tools stored in the packaging rack back box from being eroded by dust, water vapor and the like, the leather roller shutter can be pulled out and covered on the outside of the glass substrate, thereby playing a good protection role; meanwhile, the surface of the leather roller shutter is smooth and easy to clean, and can effectively maintain the overall cleanliness and beauty of the packaging rack.
[0019] 3. In the present application, the left side and the right side of the back plate are each provided with a side plate, the inner side of each side plate is uniformly provided with an edge portion pressing piece A, and a plurality of surface pressing pieces B are arranged between adjacent two edge portion pressing pieces A; the edge portion pressing pieces A can effectively press the side edges of the glass substrate, prevent the glass substrate from being laterally displaced in the containing space, and ensure the stability of the glass substrate during transportation and storage; the surface pressing pieces B press the surface of the glass substrate, further fix the glass substrate, and avoid surface damage of the glass substrate due to shaking. These edge portion pressing pieces A and surface pressing pieces B can not only play a good pressing role on the glass substrate, but also will not damage the glass substrate due to excessive pressure. Meanwhile, the distribution positions of the edge portion pressing pieces A and the surface pressing pieces B can uniformly apply pressure to the glass substrate, thereby ensuring that the glass substrate is balanced in force at each position. BRIEF DESCRIPTION OF DRAWINGS
[0020] The drawings described herein are used to provide further understanding of the present application, constitute a part of the present application, and the illustrative embodiments of the present application and the description thereof are used to explain the present application, and do not constitute an improper limitation on the present application. In the drawings: Figure 1 A structure schematic view of the glass substrate packaging rack provided by the present application; Figure 2 A structure front view of the glass substrate packaging rack provided by the present application; Figure 3 A structure left view of the glass substrate packaging rack provided by the present application; Figure 4 A structure front view of an edge pressing piece A of a glass substrate packaging frame provided by the present application; Figure 5 A structure schematic view of a surface pressing piece B of a glass substrate packaging frame provided by the present application; Figure 6 A structure front view of a surface pressing piece B and a pressing rod mounting structure of a glass substrate packaging frame provided by the present application.
[0021] Mark explanation: 1, packaging frame back box; 2, side plate; 3, back plate; 5, leather roller shutter contraction groove; 6, bottom bearing plate; 8, base forklift hole; 12, desiccant placing box; 15, elastic device; 16, base transition buffer plate; 17, bottom connecting seat; 100, glass packaging frame body; 171, pressing piece storage groove; 172, pressing rod; 200, edge pressing piece A; 201, rubber plate; 202, foamed plate; 203, screwing piece; 300, surface pressing piece B; 301, pressing piece; 302, locking piece; 400, roller shutter driving assembly; 401, chain; 402, sprocket; 403, rotating sprocket A; 404, rotating sprocket B; 405, rotating sprocket C; 408, tensioning wheel; 409, rotating sprocket E. DETAILED DESCRIPTION
[0022] The specific embodiments of the present application are described in detail below, but it should be understood that the protection scope of the present application is not limited by the specific embodiments.
[0023] As shown in Figure 1 , the present application provides a glass substrate packaging frame, which comprises a glass packaging frame body 100 composed of a back plate 3, a bottom bearing plate 6 and a packaging frame back box 1; Specifically, the back plate 3 is perpendicular to the bottom bearing plate 6, and more specifically, the bottom bearing plate 6 is arranged below the front side of the back plate 3, and the bottom bearing plate 6 and the back plate 3 are connected into an L shape; Specifically, the packaging frame back box 1 is arranged on the back plate 3 away from the bottom bearing plate 6, and the packaging frame back box 1 is arranged on the back side of the back plate 3; Specifically, the left side and the right side of the back plate 3 are each provided with a side plate 2 for limiting the edge of the glass substrate; In the glass substrate packaging frame, the side plate 2 is perpendicular to the back plate 3 and connected to the bottom bearing plate 6, forming a stable frame structure; the side plate 2, the back plate 3 and the bottom bearing plate 6 together constitute a containing space for placing the glass substrate, which can effectively prevent the glass substrate from shaking or colliding during transportation and storage; the packaging frame back box 1 is hollow inside, which can be used to store related accessories or tools, increasing the practicality and convenience of the packaging frame; Specifically, a leather roller shutter retraction groove 5 is arranged on one side of the back box 1 of the packaging rack close to the back plate 3, and a leather roller shutter (not shown in the figure) is arranged in the leather roller shutter retraction groove 5. On the front side of the back box 1 of the packaging rack, a leather roller shutter retraction groove 5 is arranged close to the back plate 3, and a leather roller shutter is arranged in the leather roller shutter retraction groove 5. Such a design not only facilitates the storage and expansion of the leather roller shutter, but also ensures the compactness and beauty of the overall structure, making the packaging rack more convenient and efficient during use. Specifically, the leather roller shutter can be freely retracted in the leather roller shutter retraction groove 5, and can be stored in the retraction groove when not in use, avoiding occupying additional space. When it is necessary to seal and protect the accessories or tools stored in the back box 1 of the packaging rack and the glass substrate from dust, water vapor, etc., the leather roller shutter can be pulled out and covered on the outside of the glass substrate, playing a good protective role. At the same time, the surface of the leather roller shutter is smooth and easy to clean, which can effectively maintain the cleanliness and beauty of the overall packaging rack.
[0024] In addition, the left side and the right side of the back plate 3 are each provided with a side plate 2, and a plurality of edge pressing members A 200 are uniformly distributed on the inner side of the side plate 2, and a plurality of surface pressing members B 300 are arranged between adjacent two edge pressing members A 200. Specifically, the inner side of the side plate 2 refers to one side of the two side plates 2 close to each other. More specifically, since the side plate 2, the back plate 3 and the bottom bearing plate 6 jointly constitute a containing space for placing the glass substrate, the inner side of the side plate 2 refers to one side of the side plate 2 close to the containing space.
[0025] The design of the edge pressing member A 200 can uniformly press the glass substrate from both sides of the glass substrate, ensuring that the glass substrate is stably placed in the containing space and will not be displaced due to vibration during transportation or movement. The surface pressing member B 300 further acts on the surface of the glass substrate, and through the multi-point pressing manner, the fixing effect of the glass substrate in the packaging rack is enhanced, effectively preventing the glass substrate from shaking or tilting in the containing space. The arrangement of these pressing members not only improves the stability of the glass substrate in the packaging rack, but also avoids damage caused by the collision of the glass substrates or the friction with the inner wall of the packaging rack, thereby ensuring the safety and integrity of the glass substrate during transportation and storage.
[0026] As shown in FIG. 1, Figures 1 to 5 In some embodiments of the present application, the back plate 3, the bottom bearing plate 6 and the back box 1 of the packaging rack are required to be smooth and flat in material, and the material is preferably SUS304 stainless steel. The flatness of the bottom plate is ≤1mm, the flatness of the back plate is ≤2mm, and the flatness of the bottom surface of the rack body base is ≤2mm.
[0027] SUS304 stainless steel is selected as the main material because it has excellent corrosion resistance and mechanical properties, can maintain the stability and durability of the structure in various harsh environments, thereby effectively protecting the glass substrate from the influence of the external environment. Strict control of the flatness of the bottom plate, the back flatness and the flatness of the bottom surface of the frame body base ensures the flatness and stability of the overall packaging frame, further improving the placement accuracy and safety of the glass substrate in the packaging frame. These fine materials and process requirements jointly constitute the high-quality foundation of the glass substrate packaging frame.
[0028] As shown in the drawings, Figures 1 to 5 In some embodiments of the present application, the bottom bearing plate 6 is provided with a bottom connecting seat 17 at the bottom; The bottom seat forklift hole 8 is uniformly distributed on the bottom connecting seat 17, and the bottom seat forklift hole 8 penetrates the front and back surfaces of the bottom connecting seat 17; Specifically, the packaging frame back box 1 is fixedly arranged at the top rear end of the bottom connecting seat 17; The setting of the bottom connecting seat 17 provides a stable support foundation for the entire packaging frame, enhancing the stability of the packaging frame when placed. The design of the bottom seat forklift hole 8 greatly facilitates the handling and movement of the packaging frame, which can easily lift and transport the packaging frame by forklift, improving work efficiency. The packaging frame back box 1 is fixedly arranged at the top rear end of the bottom connecting seat 17, which makes the structure of the packaging frame more compact and reasonable, ensuring the stability of the packaging frame and fully utilizing the space.
[0029] As shown in the drawings, Figures 1 to 5 In some embodiments of the present application, the included angle between the back plate 3 and the bottom connecting seat 17 is 60°-80°; the included angle is preferably 72±0.2°; Specifically, the included angle α between the back plate 3 and the bottom connecting seat 17 refers to the included angle between the plane where the front side of the back plate 3 is located and the plane where the top surface of the bottom connecting seat 17 is located. The setting of the included angle is used to ensure the stable packaging of the glass substrate; Specifically, when the included angle α is in the range of 60° to 80°, and is particularly preferably 72±0.2°, the glass substrate can obtain the most stable support state when placed on the packaging frame. This specific included angle can make the center of gravity of the glass substrate in a relatively reasonable and stable position, effectively reducing the displacement or damage risk of the glass substrate due to shaking and vibration during transportation and storage, thereby ensuring the safety and stability of the glass substrate in the packaging frame.
[0030] As shown in the drawings, Figures 1 to 5As shown in the drawings, in some embodiments of the present application, an elastic device 15 is specially designed and installed at the upper position of the back plate 3 for supporting the spacing paper. Specifically, this elastic device 15 can be ingeniously arranged at the area above the inner side wall of the leather roller shutter retraction groove 5. The elastic device 15 adopts the structural design of a telescopic block, which has good telescopic performance. This design can effectively ensure that the spacing paper reserved and extended during the packaging of the glass substrate can always remain in an upright state, avoiding the phenomenon of lodging. In this way, not only does it greatly facilitate the gripping operation of the sheet taking robot on the spacing paper, but also ensures the smooth progress of the entire sheet taking process, thereby improving work efficiency and operational safety.
[0031] In addition, the length of the elastic device 15 is consistent with the length of the packaging rack back plate, the width is 30-50mm, the maximum height of the elastic device 15 is flush with the back plate 3, and it cannot exceed the back plate 3 or the first glass substrate on the surface of the back plate 3; the first glass substrate on the surface of the back plate 3 refers to the glass substrate in close contact with the front side of the back plate 3; specifically, the side of the elastic device 15 away from the inner side wall of the leather roller shutter retraction groove 5 cannot exceed the front side of the back plate 3 or the front side of the first glass substrate on the surface of the back plate 3 when it is popped out; It needs to be specially pointed out that the installation process of the elastic device 15 will not interfere with the normal use of the leather roller shutter. Specifically, the leather roller shutter can be flexibly arranged above the elastic device 15, and the benefit of this design is that when the leather roller shutter moves, it will not affect the stable support provided by the elastic device 15 to the spacing paper. This design ensures the independence and non-interference of the functions of the two, making the entire system more smooth and efficient during use.
[0032] As shown in the drawings, Figures 1 to 5 As shown in the drawings, in some embodiments of the present application, the bottom bearing plate 6 is uniformly provided with a base transition buffer plate 16 on the side close to the back plate 3; the base transition buffer plate 16 is preferably made of smooth and flat rubber plate and PP foam plate, which is used for buffering the glass substrate; The thickness of the base transition buffer plate 16 is usually set between 5-10mm, which can provide sufficient buffering effect without occupying too much space due to excessive thickness. Its surface is specially treated to have good anti-skid performance, which can effectively prevent the glass substrate from sliding during placement or movement. Moreover, the base transition buffer plate 16 is firmly fixed on the bottom bearing plate 6 by high-strength glue or special buckles, ensuring that it will not loosen or fall off during long-term use, thereby providing stable and reliable support and buffering for the glass substrate.
[0033] As shown in the drawings, Figures 1 to 5As shown, in some embodiments of the present application, the inner side of the side plate 2 is provided with a plurality of special desiccant placing boxes 12, the main function of which is to store desiccants. By placing desiccants in the box, the moisture absorption effect can be effectively exerted to ensure that the internal environment remains dry and prevent moisture from causing damage to the goods. The design of the desiccant placing box 12 not only facilitates the storage and replacement of desiccants, but also optimizes the moisture absorption effect and improves the overall moisture-proof performance.
[0034] Specifically, the number of desiccant placing boxes 12 on each side plate 2 is not less than 2.
[0035] As shown, Figures 1 to 5 in some embodiments of the present application, the surface of the desiccant placing box 12 is uniformly distributed with a plurality of air permeable holes, the inner diameter of which is strictly controlled to be less than the outer diameter of the desiccant particles. This design cleverly solves the problem of desiccant particles falling off. Through such meticulous control of the hole diameter, not only is the desiccant particles effectively prevented from falling out of the box, but also the moisture in the air can smoothly enter the box through the air permeable holes and come into contact with the desiccant particles, thereby fully exerting the moisture absorption effect of the desiccant and achieving the ideal moisture-proof effect.
[0036] As shown, Figures 1 to 5 in some embodiments of the present application, the inner side of the side plate 2 is also provided with a roller shutter driving assembly 400 for driving the leather roller shutter to move; Specifically, the roller shutter driving assembly 400 is composed of a chain 401, a plurality of sprockets 402 and a driving member. Since the roller shutter driving assembly 400 is provided on both side plates 2, a connecting shaft is arranged between the two roller shutter driving assemblies 400; the leather roller shutter is arranged on the chain 401; More specifically, the chain 401 is wound around the plurality of sprockets 402; The plurality of sprockets 402 are respectively a rotating sprocket A 403, a rotating sprocket B 404, a rotating sprocket C 405, a transmission sprocket A and a rotating sprocket D 407; the rotating sprocket A is rotatably arranged in the leather roller shutter contraction groove 5 on the back of the packaging shelf box 1; The rotating sprocket B 404 and the rotating sprocket C 405 are both provided with two, the two rotating sprocket B 404 are arranged above the inner side of the side plate 2, and the two rotating sprocket C 405 are arranged below the two rotating sprocket B 404; The transmission sprocket A is arranged at the central position of the inner side of the side plate 2, and the transmission sprocket A is provided with three, which are respectively a tension pulley 408 and two rotating sprocket E 409, the tension pulley 408 is arranged at the rear side of the two rotating sprocket E 409; The rotating sprocket D 407 is arranged below the inner side of the side plate 2; The chain 401 forms a closed structure, specifically including end chain A, upper chain (i.e., the outer chain near the outside of the glass substrate packaging frame), end chain B, and lower chain (i.e., the inner chain near the inside of the glass substrate packaging frame). End chain A, upper chain, end chain B, and lower chain are connected end to end to form a closed structure, namely chain 401. End chain A and end chain B are respectively wound around rotating sprocket A 403 and rotating sprocket D 407. The upper chain is wound above the two rotating sprockets B 404 and in front of the two rotating sprockets E 409. The lower chain is wound above the two rotating sprockets C 405 and behind the tension wheel 408, which is used to tension the chain 401. The two ends of the connecting shaft are respectively connected to two rotating sprockets A 403; Through the meshing of the chain and sprocket, the leather roller blind can be lowered from the top of the glass packaging frame body 100 to the base of the glass packaging frame body 100 to complete the covering and protection of the glass substrate. Specifically, the drive component can be a control switch, which controls the engagement and disengagement of the chains to achieve the protective and sealing functions of the leather roller shutter. When the chain engages with the gear, the leather roller shutter can descend from the top of the glass packaging frame 100 to the bottom support plate 6, completing the coverage and protection of the glass substrate. When the chain and gear are disengaged, the leather roller shutter can rise from the bottom support plate 6 to the top of the glass packaging frame 100, and then descend from the top of the glass packaging frame 100 into the back box 1 of the packaging frame. The roller shutter drive assembly 400 also requires a maintenance access port. This design ensures both the normal operation of the equipment and considers future maintenance and repair needs.
[0037] Specifically, the drive unit can be connected to the rotating sprocket E 409 in the transmission sprocket A. When the drive unit is activated, it drives the rotating sprocket E 409 to rotate, which in turn drives the entire roller shutter drive assembly 400 through the chain 401. This combination of the chain and multiple sprockets achieves stable driving of the packaging rack roller shutter, allowing the roller shutter to unfold and retract smoothly. Furthermore, the tension wheel 408 allows adjustment of the chain 401 tension according to actual usage, ensuring that the chain 401 is always under appropriate tension. This prevents the chain 401 from becoming loose or too tight, which could affect the normal operation of the roller shutter drive assembly 400, thus improving the reliability and stability of the entire glass substrate packaging rack roller shutter drive.
[0038] like Figures 1 to 5 As shown, in some embodiments of the present invention, the leather roller blind shrink groove 5 extends along the length direction of the back box 1 of the packaging frame so that its interior has sufficient space to accommodate the leather roller blind and some components of the roller blind drive assembly 400. The opening of the skin roller shutter contraction groove 5 is reasonably designed, which facilitates the smooth entry and exit of the skin roller shutter during the expansion and contraction process, and will not scratch or wear the roller shutter. At the same time, the inner wall material of the contraction groove 5 can be made of high-strength and wear-resistant material, which can withstand the frequent expansion and contraction of the roller shutter, and ensure long-term use without damage. Inside the contraction groove 5, a guide rail structure for guiding the movement of the roller shutter can also be provided, so that the roller shutter moves more stably during movement and does not appear to be offset or jammed, further improving the overall performance of the glass substrate packaging frame roller shutter drive.
[0039] As shown in Figures 1 to 5 In some embodiments of the present application, the packaging frame back box 1 is also provided with a cover plate 4 composed of a rubber plate and a PP foamed plate, which is used to place on the surface of the stacked glass substrate after completion, and protects the glass substrate. It can be set as a group of two, the length is consistent with the height of the back plate 3, and the width is half of the width of the back plate 3. Before packaging the glass substrate, it can be placed in the packaging frame back box 1; When packaging the glass substrate, the two cover plates 4 are combined and placed on the surface of the stacked glass substrate to provide effective protection for the glass substrate and prevent damage such as scratching and collision during transportation and storage. The design of this cover plate 4 not only has a reasonable structure, but also is convenient to use. When it is not needed, it can be neatly stored in the packaging frame back box 1, without occupying additional space, improving the overall practicality and convenience of the packaging frame. At the same time, the combination of rubber plate and PP foamed plate has certain elasticity and strength, which can better protect the glass substrate.
[0040] As shown in Figures 1 to 6 In some embodiments of the present application, the edge compression member A 200 includes a rubber plate 201, a foamed plate 202 and a screw member 203, the rubber plate 201 is arranged inside the side plate 2, and a screw hole matched with the screw member 203 is formed in the rubber plate 201, one end of the screw member 203 passing through the screw hole is in close contact with the foamed plate 202; By rotating the screw member, the screw member 203 can push the foamed plate 202 to move, so as to achieve the purpose of compressing the edge of the glass substrate; specifically, after the glass substrate is placed on the glass substrate packaging frame, the plurality of edge compression members A 200 realize the compression of the left end and the right end of the glass substrate; The design utilizes the rotating motion of the screwing part to convert it into linear pressing force on the edge of the glass substrate. In actual operation, the position of the foamed plate can be easily adjusted by appropriately rotating the screwing part according to the thickness of the glass substrate and the required pressing degree, so as to achieve accurate pressing on the edge of the glass substrate. This pressing method is not only stable and reliable, but also can effectively prevent the glass substrate from sliding or shifting during transportation and storage, further improving the protection effect of the packaging frame.
[0041] As shown in Figures 1 to 6 In some embodiments of the present application, the surface pressing part B 300 includes a pressing part 301 and a locking part 302, the pressing part 301 is arranged on the back plate 3, and the locking part 302 is arranged on the end of the pressing part 301 away from the back plate 3; In addition, a pressing part storage groove 171 is arranged between the bottom bearing plate 6 and the bottom connecting seat 17, which is used to store the pressing rod 172 or other objects; Two pressing holes adapted to the pressing part 301 are formed on the pressing rod, specifically, Figure 6 For the assembly structure front view of the surface pressing part B and the pressing rod 172, please refer to Figure 6 The pressing rod can be arranged along the length direction of the back plate 3, so that its two ends can be in contact with the two pressing parts 301 on the left and right ends of the front side of the back plate 3; for example, the pressing parts 301 at the same height on the left and right ends of the front side of the back plate 3 are defined as pressing part A and pressing part B respectively, and the pressing part A and the pressing part B can be adaptively fitted into the two pressing holes on the pressing rod. When the pressing rod is installed outside the pressing part A and the pressing part B, it can be locked and fixed by the locking part (such as locking nut), so as to complete the locking of the surface of the glass substrate.
[0042] In actual operation, the design of the surface pressing part B 300 greatly improves the stability and safety of the glass substrate packaging. The pressing part 301 is stably supported by the back plate 3, and the locking part ensures that the pressing part 301 will not loosen when subjected to external force, thereby effectively preventing the glass substrate from shaking and being damaged during transportation or storage. At the same time, the arrangement of the pressing part storage groove 171 provides a special storage position for the pressing rod and other objects, avoiding messy placement and improving the use convenience and neatness of the entire packaging frame. When the pressing rod is needed to lock the glass substrate, only the two pressing holes on the pressing rod are aligned with the pressing part A and the pressing part B respectively, and then fixed by the locking part. This design not only has simple operation, but also can ensure that the glass substrate is uniformly and stably pressed in the packaging frame, thereby effectively protecting the integrity and quality of the glass substrate.
[0043] Furthermore, the assembly process of this glass substrate packaging rack when actually packaging glass substrates is as follows: S1. The leather roller blind is retracted into the back box 1 of the packaging rack by the roller blind drive assembly 400, exposing the back panel 3. S2. Place the glass substrate to be packaged in sequence on the side plate 2, back plate 3 and bottom support plate 6 to form a receiving space for placing the glass substrate. S3. Adjust the edge clamping part A 200 on one side to make it contact the side of the glass substrate stack in the package. S4. Adjust the edge clamping member A 200 on the other side until it contacts the other side of the glass substrate stack. After fixing the edge clamping members A 200 on both sides, the side of the glass substrate stack is fixed, thereby preventing the glass substrate stack from shifting. S5. Place cover plates 4 on the glass stack surface to protect the integrity of the glass substrate on the glass substrate stack surface. S6. Take out the clamping rod from the clamping member storage slot 171 and make the clamping rod cooperate with the surface clamping member B 300 so that the clamping rod fixes all the glass substrates in the receiving space formed by the side plate 2, the back plate 3 and the bottom support plate 6 for placing the glass substrates. S7. Repeat step S6 to fix the remaining clamping rods; S8. Place the desiccant into the desiccant placement box 12; S9. The leather roller shutter is slowly released from the back box 1 of the packaging frame by the roller shutter drive assembly 400 until it reaches the fixed position of the bottom support plate 6, thus completing the packaging of the glass substrate.
[0044] This invention provides a glass substrate packaging rack, including a glass packaging rack body 100. The glass packaging rack body 100 includes a back plate 3, a bottom support plate 6, and a back box 1 of the packaging rack. The back plate 3 is perpendicular to the bottom support plate 6, and the back box 1 of the packaging rack is located on the side of the back plate 3 away from the bottom support plate 6. The glass substrate packaging rack 100 also includes side plates 2 located on both sides of the back plate 3. The side plates 2 are perpendicular to the back plate 3 and connected to the bottom support plate 6 to form a stable frame structure. The side plates 2, the back plate 3, and the bottom support plate 6 together constitute a receiving space for placing glass substrates, which can effectively prevent the glass substrates from shaking or colliding during transportation and storage. The back box 1 of the packaging rack is hollow inside and can be used to store related accessories or tools, which increases the practicality and convenience of the glass substrate packaging rack.
[0045] The above-disclosed embodiments are merely a few specific examples of the present invention. However, the embodiments of the present invention are not limited thereto, and any variations that can be conceived by those skilled in the art should fall within the protection scope of the present invention.
[0046] In the description of the application, it should be noted that the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, or the orientation or positional relationship commonly used when the product of the application is used, and are only for the convenience of describing the application and simplifying the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the application. In addition, the terms "first", "second", "third" and the like are only used to distinguish the description and cannot be understood as indicating or implying relative importance. In the description of the application, unless otherwise specified and limited, "a plurality of" means two or more.
[0047] In the description of the application, unless otherwise specified and limited, "on" or "under" of the first feature to the second feature can include that the first and second features are in direct contact, or the first and second features are not in direct contact but are in contact through another feature between them. Moreover, the first feature "on", "above" and "over" the second feature includes that the first feature is directly above and obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "under", "below" and "under" the second feature includes that the first feature is directly below and obliquely below the second feature, or only indicates that the first feature is lower than the second feature in horizontal height.
[0048] In the description of the application, it should be noted that, unless otherwise specified and limited, the terms "provided", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.
Claims
1. A glass substrate packaging rack, characterized in that, The glass packaging frame body (100) includes a back plate (3), a bottom support plate (6) and a back box (1). The back plate (3) is perpendicular to the bottom support plate (6), and the back box (1) is located on the side of the back plate (3) away from the bottom support plate (6). The back box (1) of the packaging rack has a leather roller shutter shrink groove (5) on one side near the back plate (3), and a leather roller shutter is provided in the leather roller shutter shrink groove (5); The back plate (3) has side plates (2) on its left and right sides. Each side plate (2) has multiple edge clamping parts A (200) evenly distributed on its inner side. There are several surface clamping parts B (300) between two adjacent edge clamping parts A (200).
2. The glass substrate packaging frame according to claim 1, characterized in that, The bottom support plate (6) is provided with a bottom connecting seat (17); The bottom connecting seat (17) is evenly distributed with base forklift holes (8); The base forklift hole (8) penetrates the front and rear surfaces of the bottom connector (17).
3. The glass substrate packaging frame according to claim 2, characterized in that, The included angle between the back plate (3) and the bottom connecting seat (17) is 60°~80°.
4. The glass substrate packaging frame according to claim 1, characterized in that, The bottom support plate (6) has base transition buffer plates (16) evenly distributed on one side near the back plate (3).
5. The glass substrate packaging frame according to claim 1, characterized in that, The inner side of the side plate (2) is provided with a desiccant placement box (12), which is used to store desiccant.
6. The glass substrate packaging frame according to claim 5, characterized in that, The desiccant placement box (12) has ventilation holes evenly distributed on it.
7. The glass substrate packaging frame according to claim 1, characterized in that, The inner side of the side panel (2) is also provided with a roller blind drive assembly (400), which is used to drive the leather roller blind to move.
8. The glass substrate packaging frame according to claim 1, characterized in that, The leather roller shutter shrink groove (5) extends along the length of the back box (1) of the packaging frame.
9. The glass substrate packaging frame according to claim 1, characterized in that, The edge clamping component A (200) includes a rubber plate (201), a foam plate (202) and a tightening component. The rubber plate (201) is located inside the side plate (2). The rubber plate (201) has a tightening hole that cooperates with the tightening component. One end of the tightening component that passes through the tightening hole is in close contact with the foam plate (202).
10. The glass substrate packaging frame according to claim 1, characterized in that, The surface clamping member B (300) includes a clamping member (301) and a locking member. The clamping member (301) is disposed on the back plate (3), and the locking member is disposed on the end of the clamping member (301) away from the back plate (3).