A glass packaging transfer device

By using clamping and support assemblies made of metal materials, combined with straps and adhesive strips for protection, the problem of shaking and moisture in glass packaging devices during transportation is solved, achieving stable protection and moisture-proof effect for the glass.

CN118183033BActive Publication Date: 2026-04-07XINYI ELECTRONICS GLASS WUHU
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-04-16
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing glass packaging devices are prone to breakage due to squeezing and shaking during transportation and transfer, and wooden packaging boxes are susceptible to moisture, mold, and deformation. Current technologies have not effectively solved this problem.

Method used

The clamping components, bracket components, support plates, and chassis components, made of metal materials, bind the glass in a ring structure formed by straps. Combined with clamps and adhesive strips for protection, this avoids complete sealing and enhances stability and moisture resistance.

Benefits of technology

It effectively reduces the shaking and breakage of glass during transportation, avoids mold and deformation caused by moisture, and improves the service life and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention pertains to a glass packaging and transfer device in the field of glass production technology. The clamp assembly (10) includes a clamp block (11), a first clamping plate (121), and a second clamping plate (122); the support assembly (30) includes a front support (31), a rear support (32), and a strap (33); the chassis assembly (40) includes a chassis frame (41) and a chassis groove (42); the support plate (20) includes a support plate upper part (21), a support plate outer liner (22), and a support main part (23); and the strap (33) passes through the clamp block (11), the first clamping plate (121), the second clamping plate (122), the front support (31), and the rear support (32). The glass packaging and transfer device of this invention provides protection for the packaged glass from different angles, preventing damage caused by squeezing and shaking during transportation and transfer. It is assembled using metal materials, and the strap enables structural assembly and binding of the packaged glass. The packaged glass will not mold or deform due to moisture during storage and transportation.
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Description

Technical Field

[0001] This invention belongs to the field of glass production technology, and more specifically, relates to a glass packaging and transfer device. Background Technology

[0002] During glass production, raw glass sheets are stacked vertically in multiple pieces, requiring packaging equipment with sufficient sturdiness and stability. Furthermore, during transportation and transfer, glass sheets need to be secured and protected using packing racks and other devices, especially during sea freight where severe turbulence causes significant shaking. Commonly used wood packaging is susceptible to rain and moisture during sea transport and storage, leading to mold and deformation. Additionally, wood presents numerous challenges during export and recycling.

[0003] Existing technology includes a "Glass Packaging Box" with publication number "CN 108528932 B". This technology relates to a glass packaging box, comprising a base, a second folding frame, a sleeve, and two first folding frames. The two first folding frames are spaced apart and opposite to each other, and are rotatably mounted on the base. Each first folding frame includes a first connecting rod with a first mating end. The second folding frame is rotatably mounted on the base and includes a second connecting rod with its opposite ends forming second mating ends. The sleeve is movable relative to the first and / or second connecting rods. After rotating relative to the base, the second folding frame can be positioned between the two first folding frames. The sleeve is used to fit over the first mating end of the first connecting rod and the second mating end of the second connecting rod to connect the first and second connecting rods. The base, the second folding frame, and the two first folding frames together form an accommodating space. This glass packaging box features high ease of operation.

[0004] However, this technology does not address the technical issues and solutions of this application. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to provide a glass packaging transfer device with a reasonable and reliable structure that can protect the packaging glass from different positions and prevent the packaging glass from being squeezed and shaken during transportation and transfer, thereby preventing the glass from breaking. In addition, it is assembled with metal materials and uses straps to achieve structural assembly and binding of the packaging glass. The packaging glass will not be moldy or deformed due to moisture during storage and transportation.

[0006] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is as follows:

[0007] This invention relates to a glass packaging and transfer device. The clamping assembly includes a clamping block, a first clamping plate, and a second clamping plate. All three clamping plates are hollow structures. One end of the first clamping plate is fitted onto one side of the clamping block, and one end of the second clamping plate is fitted onto the other side of the clamping block. The support assembly includes a front support, a rear support, and a strap. Both the front and rear supports are hollow structures. The chassis assembly includes a chassis frame and a chassis groove with the groove opening downwards. The support plate includes a support plate upper part, a support plate outer liner, and a support main part. The width of the support plate upper part is greater than the thickness of the support plate outer liner. The strap passes through the clamping block, the first clamping plate, the second clamping plate, the front support, and the rear support.

[0008] The clamp assembly, bracket assembly, support plate, and chassis assembly are all structures made of metal materials.

[0009] The clamping block of the clamping assembly has a clamping block rubber attached to its lower surface. The glass contact surface of the first clamping plate is attached with a clamping plate adhesive strip, and the glass contact surface of the second clamping plate is attached with a clamping plate adhesive strip. Both the first clamping plate and the second clamping plate have an L-shaped structure. The first clamping plate includes a first clamping plate horizontal part and a first clamping plate vertical part, and the second clamping plate includes a second clamping plate horizontal part and a second clamping plate vertical part.

[0010] The support plate has a support plate adhesive strip pasted on the inner side of the main support plate, an H-shaped support plate outer liner welded to the outer side of the main support plate, a support plate upper piece welded to the upper side of the main support plate, the support plate upper piece being connected to the upper end of the support plate outer liner, the support plate outer liner being configured in an H-shape, and a support plate outer liner groove being provided on the outside of the support plate outer liner.

[0011] The front and rear supports 32 of the bracket assembly are both L-shaped structures. The front support includes a horizontal part and a vertical part, and the rear support includes a horizontal part and a vertical part.

[0012] When the glass packaging and transfer device packages glass, the horizontal part of the front support is configured to be able to be locked into the chassis groove of the chassis assembly, and the vertical part of the front support is configured to fit against the front surface of the glass.

[0013] When the glass packaging and transfer device packages glass, the horizontal part 321 of the rear support is configured to be able to be locked in the chassis groove of the chassis assembly, and the vertical part 322 of the rear support is configured to fit against the rear surface of the glass.

[0014] The chassis assembly is provided with multiple chassis frames, each end of the chassis frame is provided with a chassis groove, and multiple chassis support blocks are provided on the chassis frames. Chassis rubber is attached to the upper surface of the chassis support blocks and the upper surface of the chassis groove.

[0015] When the glass packaging and transfer device packages glass, a front bracket and a rear bracket are respectively installed in each chassis groove. Each set of front brackets is installed in the support plate outer liner groove of the support plate corresponding to a support plate. Each set of rear brackets is installed in the support plate outer liner groove of the support plate corresponding to a support plate. A clamping assembly is set above each set of brackets.

[0016] Adjusting bolts are screwed onto the clamping block of the clamping assembly. Multiple positioning threaded holes are set on the first or second clamping plate at intervals. After the glass packaging and transfer device packages the glass, one end of each strap is fixedly connected to the first clamping plate of the corresponding clamping assembly, and the other end of each strap is connected to the second clamping plate of the corresponding clamping assembly.

[0017] The first clamping plate has a clamping adhesive strip pasted on the inner side of the vertical part of the first clamping plate, and the second clamping plate has a clamping adhesive strip pasted on the inner side of the vertical part of the second clamping plate.

[0018] The working principle and beneficial effects of the technical solution adopted in this invention are as follows:

[0019] The glass packaging and transfer device of the present invention, during glass packaging and transfer, places the glass on a chassis assembly, and fastens a clamp assembly to the upper end of the glass. The clamp assembly includes a clamp block, a first clamping plate, and a second clamping plate. The clamp block is located on the upper surface of the glass, while the lower part of the front bracket is engaged in a chassis groove of the chassis assembly, with the upper part of the front bracket conforming to the front surface of the glass. The lower part of the rear bracket is engaged in a chassis groove of the chassis assembly, with the upper part of the rear bracket conforming to the rear surface of the glass. Each chassis groove of the chassis assembly holds the front and rear brackets respectively. Each set of front brackets is engaged in a support plate outer liner groove corresponding to a support plate, and each set of rear brackets is engaged in a support plate outer liner groove corresponding to a support plate. A clamp assembly is correspondingly positioned above each set of bracket assemblies. Meanwhile, the straps need to pass through the first clamping plate, the clamping block, the second clamping plate, the support plate on the front side of the glass, the front bracket, and the support plate on the rear side of the glass, forming a ring structure. This allows for the combination of different components of the device and also forms a comprehensive binding around the glass, constraining the glass and protecting different parts. Tightening the straps effectively reduces the upper part of the glass from swaying during transportation. Furthermore, all components of the device are made of metal, providing partial shielding during glass packaging while leaving most of the glass exposed. This avoids the need for a completely sealed wooden box during storage and transportation, preventing mold and deformation due to moisture. The metal components also effectively increase the device's lifespan and are more robust than devices made of wood or a combination of wood and iron. The clamping assembly uses an assembly structure, tightening the upper three sides of the glass to reduce upper-level swaying during transportation and prevent breakage. The support plates on both sides of the glass enhance the overall stability of the device, prevent lateral shift of the component, and allow for tightening of the middle part of the glass. The chassis design prevents the bracket from shifting, unifies the bracket assembly position, and ensures that the relative positions of each component are positioned after assembly, avoiding shifting or movement. Attached Figure Description

[0020] The following is a brief explanation of the contents depicted in the accompanying drawings and the markings therein:

[0021] Figure 1 This is a front view schematic diagram of the glass packaging and transfer device of the present invention during the packaging of glass;

[0022] Figure 2 This is a side view of the glass packaging and transfer device of the present invention during the packaging of glass.

[0023] Figure 3 This is a schematic diagram of the clamp assembly of the glass packaging and transfer device according to the present invention;

[0024] Figure 4This is a side view of the support plate of the glass packaging transfer device of the present invention.

[0025] Figure 5 This is a schematic diagram of the main structure of the support plate of the glass packaging transfer device of the present invention;

[0026] Figure 6 This is a top view of the chassis assembly of the glass packaging and transfer device described in this invention.

[0027] Figure 7 This is a front view structural diagram of the chassis assembly of the glass packaging transfer device described in this invention;

[0028] Figure 8 This is a side view of the chassis assembly of the glass packaging and transfer device according to the present invention.

[0029] The labels in the attached diagram are as follows:

[0030] 10—Clamping assembly; 11—Clamping block; 121—First clamping plate; 122—Second clamping plate; 123—Horizontal part of the first clamping plate; 124—Vertical part of the first clamping plate; 125—Horizontal part of the second clamping plate; 126—Vertical part of the second clamping plate; 13—Clamping plate rubber strip; 14—Clamping block rubber; 20—Support plate; 21—Upper part of the support plate; 22—Outer liner of the support plate; 23—Main support plate; 24—Support plate rubber strip; 25—Outer liner groove of the support plate; 30—Bracket; 31—Front bracket; 311—Horizontal part of the front bracket; 312—Vertical part of the front bracket; 32—Rear bracket; 321—Horizontal part of the rear bracket; 322—Vertical part of the rear bracket; 33—Strap; 40—Chassis; 41—Chassis frame; 42—Chassis groove; 43—Chassis support block; 44—Chassis rubber; 45—Reinforcing angle; 50—Glass. Detailed Implementation

[0031] The following description, with reference to the accompanying drawings, provides a more detailed explanation of the specific embodiments of the present invention, including the shape and structure of each component, the relative positions and connections between the parts, the functions and working principles of each part:

[0032] As attached Figure 1 -Appendix Figure 8As shown, the present invention is a glass packaging and transfer device. The clamp assembly 10 includes a clamp block 11, a first clamping plate 121, and a second clamping plate 122. The clamp block 11, the first clamping plate 121, and the second clamping plate 122 are all hollow structures. One end of the first clamping plate 121 is fitted onto one side of the clamp block 11, and one end of the second clamping plate 122 is fitted onto the other side of the clamp block 11. The support assembly 30 includes a front support 31, a rear support 32, and a strap 33. The front support 31 and the rear support 32 are both hollow structures. The chassis assembly 40 includes a chassis frame 41 and a chassis groove 42. The chassis groove 42 has an opening facing downwards. The support plate 20 includes a support plate upper 21, a support plate outer liner 22, and a support main plate 23. The width of the support plate upper 21 is greater than the thickness of the support plate outer liner 22. The strap 33 passes through the clamp block 11, the first clamping plate 121, the second clamping plate 122, the front support 31, and the rear support 32. The clamp assembly 10, bracket assembly 30, support plate 20, and chassis assembly 40 are all made of metal. To address the shortcomings of existing technologies, an improved technical solution is proposed. When packaging and transporting glass 50, glass 50 is placed on chassis assembly 40, and then clamp assembly 10 is fastened to the upper end of glass 50. Clamp assembly 10 includes clamp block 11, first clamping plate 121, and second clamping plate 122. Clamp block 11 is located on the upper surface of glass 50, while the lower part of front bracket 31 is fitted into chassis groove 42 of chassis assembly 40, with the upper part of front bracket 31 adhering to the front surface of glass 50. The lower part of rear bracket 32 ​​is fitted into chassis groove 42 of chassis assembly 40, with the upper part of rear bracket 32 ​​adhering to the rear surface of glass 50. Each chassis groove 42 of the chassis assembly 40 houses a front bracket 31 and a rear bracket 32. Each set of front brackets 31 is fitted into a groove in the outer support plate liner 22 of a corresponding support plate 20, and each set of rear brackets 32 is fitted into a groove in the outer support plate liner 22 of a corresponding support plate 20. A clamping assembly 10 is positioned above each bracket assembly 30. Simultaneously, the strap 33 passes through the first clamping plate 121, the clamping block 11, the second clamping plate 122, the support plate 20 on the front side of the glass, the front bracket 31, and the support plate 20 on the rear side of the glass, forming a ring structure. This allows for the combination of different components of the device and also forms a comprehensive binding around the glass plate 50, constraining the glass 50 and protecting different parts. Tightening the strap 33 effectively reduces the swaying of the upper part of the glass 50 during transportation. Meanwhile, all components of the device are made of metal. When packaging the glass 50, it is partially covered, while most of the glass 50 is exposed. During the storage and transportation of the glass, it avoids the complete sealing of the glass like a wooden box, thus preventing mold and deformation caused by moisture. The metal components can also effectively increase the service life of the device, and are more robust than devices made of wood or ironwood.The clamping assembly of the device adopts an assembly structure, tightening the three sides of the upper end of the glass to reduce swaying at the upper end during glass transportation, thereby reducing glass breakage. The structure of the support plates 20 on both sides of the glass enhances the stability of the overall device, prevents lateral displacement of the component, and also allows the middle part of the glass 50 to be tightened. The design of the chassis assembly 40 can limit the support 30, prevent the support 30 from shifting, constrain the position of the support 30, and ensure that the relative positions of each component are positioned after assembly, avoiding displacement or movement. The glass packaging and transfer device described in this invention has a reasonable and reliable structure, which can protect the packaged glass from different directions, preventing the packaged glass from being squeezed and shaken during transportation and transfer, thus preventing glass breakage. In addition, it is assembled with metal materials, and the straps realize the structural assembly and binding of the packaged glass, preventing the packaged glass from becoming moldy and deformed due to moisture during storage and transportation.

[0033] The clamping block 11 of the clamping assembly 10 has a clamping block rubber 14 attached to its lower surface. A clamping plate adhesive strip 13 is attached to the glass contact surface of the first clamping plate 121, and a clamping plate adhesive strip 13 is attached to the glass contact surface of the second clamping plate 122. Both the first clamping plate 121 and the second clamping plate 122 have an L-shaped structure. The first clamping plate 121 includes a horizontal portion 123 and a vertical portion 124, and the second clamping plate 122 includes a horizontal portion 125 and a vertical portion 126. In this structure, the clamping block rubber 14 is attached to the lower surface of the clamping block 11, and the side of the clamping block 11 with the attached rubber 14 contacts the glass 50. The rubber 14 is a flexible material, which prevents direct contact between the glass 50 and the clamping block 11, avoiding damage to the glass from rigid contact. Tightening the strap 33 can tighten the clamping block 11. Figure 4 As shown, the clamp block 11 has a first clamping plate 121 and a second clamping plate 122 inserted at its front and rear ends, respectively. The contact surfaces of the clamping plates and the glass 50 are respectively covered with clamping plate adhesive strips 13. When the strap 33 is tightened, the two clamping plates will tighten inward relative to the clamp block, thereby clamping the glass from both sides. This can effectively reduce the shaking of the upper part of the glass 50 during transportation. The clamping plate adhesive strips 13 prevent the glass from breaking when the clamping plates 12 are tightened.

[0034] The support plate 20 has a support plate adhesive strip 24 pasted on the inner side of the support main plate 23, and an H-shaped support plate outer liner 22 welded to the outer side of the support main plate 23. A support plate upper piece 21 is welded to the upper end of the outer side of the support main plate 23, and the upper support plate upper piece 21 is simultaneously connected to the upper end of the support plate outer liner 22. The support plate outer liner 22 is configured in an H-shape, and a support plate outer liner groove 25 is provided on the outside of the support plate outer liner 22. In this structure, the support plate 20 is placed on the front and rear surfaces of the glass, with one support plate used in conjunction with the front bracket and the other in conjunction with the rear bracket. The support plate 20 includes the support plate upper piece 21, the support plate outer liner 22, the support main plate 23, and the support plate adhesive strip 24. Figure 4 and Figure 5 As shown, a support plate adhesive strip 24 is pasted on the inner side of the support main board 23, and a support plate upper piece 21 is welded to the upper outer side of the support main board 23. The width of the support plate upper piece 21 is greater than the thickness of the support plate outer liner 22. In this way, when the strap 33 is tightened, the support plate upper pieces 21 at the upper ends of the support plates 20 on both sides will tighten inward. The H-shaped support plate outer liner 22 welded to the outer side of the support main board 23 can make the entire packaging device more stable and prevent the support plate 20 from deforming and bending. When the bracket 30 is assembled, it is placed in the support plate outer liner slot 25 of the support plate outer liner 22 to prevent the support plate 20 from shifting position during transportation.

[0035] The front support 31 and rear support 32 of the bracket assembly 30 are both L-shaped structures. The front support 31 includes a horizontal portion 311 and a vertical portion 312, and the rear support 32 includes a horizontal portion 321 and a vertical portion 322. When the glass packaging and transfer device packages the glass 50, the horizontal portion 311 of the front support 31 is configured to be fitted into the chassis groove 42 of the chassis assembly 40, and the vertical portion 312 is configured to conform to the front surface of the glass 50. When the glass packaging and transfer device packages the glass 50, the horizontal portion 321 of the rear support 32 is configured to be fitted into the chassis groove 42 of the chassis assembly 40, and the vertical portion 322 is configured to conform to the rear surface of the glass 50.

[0036] The chassis assembly 40 is provided with multiple chassis frames 41, each end of which is provided with a chassis groove 42. Multiple chassis support blocks 43 are provided on the chassis frames 41, and chassis rubber 44 is attached to the upper surface of the chassis support blocks 43 and the upper surface of the chassis grooves 42. When the glass packaging and transfer device packages glass, a front support 31 and a rear support 32 are respectively fitted into each chassis groove 42. Each set of front supports 31 is fitted into the support plate outer liner slot 25 of the support plate outer liner 22 corresponding to a support plate 20, and each set of rear supports 32 is fitted into the support plate outer liner slot 25 corresponding to the support plate outer liner 22 of a support plate 20. A clamp assembly 10 is correspondingly provided above each set of support assemblies 30. This structure reliably achieves the positioning of the front supports 31 and rear supports 32 with the chassis assembly, and facilitates the passage of the strap 33 through the front supports 31 and rear supports 32.

[0037] A clamping strip 13 is attached to the inner side of the vertical portion 124 of the first clamping plate 121, and a clamping strip 13 is attached to the inner side of the vertical portion 126 of the second clamping plate 122. With this structure, the flexible clamping strip 13 prevents the glass 50 from breaking when the clamping plates 12 are tightened.

[0038] Adjusting bolts are screwed onto the clamping block 11 of the clamping assembly 10. Multiple positioning threaded holes are provided on the first clamping plate 121 or the second clamping plate 122 at intervals. After the glass packaging and transfer device packages the glass 50, one end of each strap 33 is fixedly connected to the first clamping plate 121 of the corresponding clamping assembly 10, and the other end of each strap 33 is connected to the second clamping plate 122 of the corresponding clamping assembly 10. As an extension of the structure of this invention, the straps can be discontinuous, and different lengths of straps are provided for different glass sizes. One end of the strap 33 is fixedly connected to the first clamping plate 121 of the corresponding clamping assembly 10, and the other end of the strap 33 is connected to the second clamping plate 122 of the corresponding clamping assembly 10. In this way, after the components of the device are assembled and the glass is constrained, the first clamping plate or the second clamping plate is moved into the clamping block to tighten the strap. After tightening, the adjusting bolt is turned so that the adjusting bolt is inserted and screwed into the corresponding positioning threaded hole, thereby fixing the position of the clamping plate and the furniture block and tightening the strap. The tightening of the strap tightens the first clamping plate 121, the clamping block 11, the second clamping plate 122, the support plate 20 on the front side of the glass, the front bracket 31, and the support plate 20 on the rear side of the glass. The strap 33 forms a ring structure, which not only realizes the combination of different components of the device, but also forms a whole to wrap around and bind the glass plate 50, thereby constraining the glass 50 and protecting different parts.

[0039] When glass packaging and transfer device of the present invention needs to transfer glass 50, a chassis assembly 40 can be equipped with supports 30 and clamping assemblies 10 on both sides to constrain the glass 50 from both sides. Similarly, supports 30 and clamping assemblies 10 can also be provided between the two sides. Specifically, the spacing and number of supports 30 and clamping assemblies 10 are selected according to the actual requirements of different glass 50 length dimensions, with the aim of reliably constraining and protecting the glass. Therefore, the setting position and number of supports 30 and clamping assemblies 10 are not limited to the specific content shown in the accompanying drawings of the present invention. The glass 50 is placed on the chassis assembly 40, and then the clamp assembly 10 is fastened to the upper end of the glass 50. The clamp assembly 10 includes a clamp block 11, a first clamping plate 121, and a second clamping plate 122. The clamp block 11 is located on the upper surface of the glass 50, and the lower part of the front bracket 31 is clamped in the chassis groove 42 of the chassis assembly 40. The upper part of the front bracket 31 is in contact with the front surface of the glass 50, and the lower part of the rear bracket 32 ​​is clamped in the chassis groove 42 of the chassis assembly 40. The upper part of the rear bracket 32 ​​is in contact with the rear surface of the glass 50. Each chassis groove 42 of the chassis assembly 40 houses a front bracket 31 and a rear bracket 32. Each set of front brackets 31 is fitted into a groove in the outer support plate liner 22 of a corresponding support plate 20, and each set of rear brackets 32 is fitted into a groove in the outer support plate liner 22 of a corresponding support plate 20. A clamping assembly 10 is positioned above each bracket assembly 30. Simultaneously, the strap 33 passes through the first clamping plate 121, the clamping block 11, the second clamping plate 122, the support plate 20 on the front side of the glass, the front bracket 31, and the support plate 20 on the rear side of the glass, forming a ring structure. This allows for the combination of different components of the device and also forms a comprehensive binding around the glass plate 50, constraining the glass 50 and protecting different parts. Tightening the strap 33 effectively reduces the swaying of the upper part of the glass 50 during transportation. Meanwhile, all components of the device are made of metal. While the glass 50 is partially shielded during packaging, the majority of it remains exposed. This avoids the need for complete sealing like wooden crates during storage and transportation, preventing mold and deformation due to moisture. The metal components also extend the device's lifespan and are more robust than devices combining wood or ironwood. The clamping assembly uses an assembly structure, tightening the three upper surfaces of the glass to reduce swaying during transport and prevent breakage. The support plates 20 on both sides of the glass enhance the overall stability of the device, prevent lateral shifting, and allow for tightening of the middle section of the glass 50. The chassis assembly 40 is designed to limit the position of the support 30, preventing it from shifting and ensuring the relative positions of all components are correctly positioned after assembly, preventing displacement or movement.

[0040] The present invention has been described above by way of example with reference to the accompanying drawings. Obviously, the specific implementation of the present invention is not limited to the above-described manner. Any improvements made by adopting the inventive concept and technical solution of the present invention, or the direct application of the inventive concept and technical solution of the present invention to other occasions without modification, are all within the protection scope of the present invention.

Claims

1. A glass packaging transfer device, characterized in that: The clamp assembly (10) includes a clamp block (11), a first clamping plate (121), and a second clamping plate (122). The clamp block (11), the first clamping plate (121), and the second clamping plate (122) are all hollow structures. One end of the first clamping plate (121) is fitted onto one side of the clamp block (11), and one end of the second clamping plate (122) is fitted onto the other side of the clamp block (11). The bracket assembly (30) includes a front bracket (31), a rear bracket (32), and a strap (33). The frames (32) are all hollow structures. The chassis assembly (40) includes a chassis frame (41) and a chassis groove (42). The chassis groove (42) has an opening facing downwards. The support plate (20) includes a support plate upper part (21), a support plate outer liner (22), and a support main plate (23). The width of the support plate upper part (21) is greater than the thickness of the support plate outer liner (22). The strap (33) passes through the clamp block (11), the first clamp plate (121), the second clamp plate (122), the front bracket (31), and the rear bracket (32). The clamp block (11) of the clamp assembly (10) is attached with clamp block rubber (14) on its lower surface. The glass contact surface of the first clamp plate (121) is attached with clamp plate adhesive strip (13), and the glass contact surface of the second clamp plate (122) is attached with clamp plate adhesive strip (13). The first clamp plate (121) and the second clamp plate (122) are both L-shaped structures. The first clamp plate (121) includes a first clamp plate horizontal part (123) and a first clamp plate vertical part (124). The second clamp plate (122) includes a second clamp plate horizontal part (125) and a second clamp plate vertical part (126). The support plate (20) has a support plate adhesive strip (24) pasted on the inner side of the support main plate (23), and an H-shaped support plate outer liner (22) welded to the outer side of the support main plate (23). The upper part of the support plate (21) is welded to the upper part of the outer side of the support main plate (23). The upper part of the support plate (21) is also connected to the upper part of the support plate outer liner (22). The support plate outer liner (22) is set to have an H-shaped structure. The support plate outer liner (22) is provided with a support plate outer liner slot (25) on the outside. When the glass packaging and transfer device packages glass, a front bracket (31) and a rear bracket (32) are respectively installed in each chassis groove (42). Each set of front brackets (31) is installed in the support plate outer liner slot (25) of the support plate outer liner (22) of a corresponding support plate (20). Each set of rear brackets (32) is installed in the support plate outer liner slot (25) of the support plate outer liner (22) of a corresponding support plate (20). A clamping assembly (10) is correspondingly set above each set of bracket assembly (30). Adjusting bolts are screwed onto the clamp block (11) of the clamp assembly (10). Multiple positioning threaded holes are set on the first clamp plate (121) or the second clamp plate (122) with gaps. After the glass packaging and transfer device packages the glass (50), one end of each strap (33) is fixedly connected to the first clamp plate (121) of the corresponding clamp assembly (10), and the other end of each strap (33) is connected to the second clamp plate (122) of the corresponding clamp assembly (10).

2. The glass packaging transfer device according to claim 1, characterized in that: The clamp assembly (10), bracket assembly (30), support plate (20), and chassis assembly (40) are all structures made of metal materials.

3. The glass packaging transfer device according to claim 1 or 2, characterized in that: The front bracket (31) and rear bracket (32) of the bracket assembly (30) are both L-shaped structures. The front bracket (31) includes a front bracket horizontal part (311) and a front bracket vertical part (312), and the rear bracket (32) includes a rear bracket horizontal part (321) and a rear bracket vertical part (322).

4. The glass packaging transfer device according to claim 3, characterized in that: When the glass packaging and transfer device packages glass (50), the front support horizontal part (311) of the front support (31) is configured to be able to be locked in the chassis groove (42) of the chassis assembly (40), and the front support vertical part (312) is configured to fit against the front surface of the glass (50); the rear support horizontal part (321) of the rear support (32) is configured to be able to be locked in the chassis groove (42) of the chassis assembly (40), and the rear support vertical part (322) is configured to fit against the rear surface of the glass (50).

5. The glass packaging transfer device according to claim 1 or 2, characterized in that: The chassis assembly (40) is provided with multiple chassis frames (41), each end of the chassis frame (41) is provided with a chassis groove (42), and multiple chassis support blocks (43) are provided on the chassis frame (41). Chassis rubber (44) is attached to the upper surface of the chassis support block (43) and the upper surface of the chassis groove (42).

6. The glass packaging transfer device according to claim 1 or 2, characterized in that: The first clamping plate (121) has a clamping plate adhesive strip (13) pasted on the inner side of the first clamping plate vertical part (124), and the second clamping plate (122) has a clamping plate adhesive strip (13) pasted on the inner side of the second clamping plate vertical part (126).

Citation Information

Patent Citations

  • glass packaging box

    CN108528932B

  • Glass transfer protection device

    CN218369181U

  • Transporting apparatus for securing stacked articles, and method for securing stacked articles

    EP3365239A1