Packaging device for photovoltaic glass production

By using a snap-fit ​​mechanism and a three-horizontal-two-vertical winding structure in the packaging equipment for photovoltaic glass production, the problem of low packaging efficiency for thicker glass has been solved, achieving more stable and efficient packaging and transportation.

CN223632040UActive Publication Date: 2025-12-05SHAANXI TOPRAY SOLAR
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Patent Information

Application Number
CN202423126225.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-05
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing packaging equipment for photovoltaic glass production can typically only pack two or three pieces of thicker glass, leading to increased logistics costs and reduced handling efficiency.

Method used

The snap-fit ​​mechanism using the sidewall of the tray includes a first snap-fit ​​block, a first baffle, a first tenon, a first insert block, a second baffle, and a second snap-fit ​​block. By combining these components, the height of the baffle and the packaging method are increased, forming a three-horizontal and two-vertical winding structure, which enhances the stability and shock resistance of the glass.

Benefits of technology

This improves the stability and shock resistance of photovoltaic glass, reduces swaying and displacement during transportation and handling, optimizes space utilization, and improves packaging efficiency and logistics cost control.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of packaging, in particular to a packaging device for photovoltaic glass production, which is characterized in that a first tenon is fixedly mounted at the top of a first baffle plate, a first insertion block is inserted into the first baffle plate, a second clamping block is clamped on the side wall of a tray, and a second baffle plate and the second clamping block are fixedly mounted; when glass is placed thicker or more, a second clamping block is clamped into the side wall of a tray, the left end and the right end of the second clamping block are limited by wood piers, a first baffle is arranged on the side wall of a first insertion block in a sleeving mode, the first clamping block is also clamped into the side wall of the tray, and a second baffle is fixed; the second tenon is connected to the upper portion of the first baffle, then the second inserting block is inserted into the first baffle and the first inserting block, at the moment, the second tenon slides into the mortise, the third baffle and the fourth baffle are connected together, and therefore the height of the second baffle and the height of the third baffle can be rapidly increased.
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Description

TECHNICAL FIELD

[0001] The utility model relates to packing technical field, especially in kind of packing device for photovoltaic glass production. BACKGROUND

[0002] The photovoltaic glass is composed of glass, solar cell piece, film, back glass and special metal wire, wherein the glass and back glass are usually transported to the construction site for unified assembly after production. Therefore, the finished product glass is usually packed when it is delivered. In practical application, the packing device for photovoltaic glass production usually needs the following technologies:

[0003] 1. Tray: as mentioned above, used to support and carry photovoltaic glass;

[0004] 2. Frame structure: usually made of metal material, surrounding the periphery of photovoltaic glass, playing a role of fixing and protection;

[0005] 3. Cushioning material: such as foam and rubber pad, placed at the contact part between the frame and the glass, to reduce the impact of vibration and collision on the glass.

[0006] As disclosed in Chinese patent: glass tray, patent number: CN220616573U, through the base and four sets of limiting components, four sets of limiting components are installed on the top surface of the base, and are respectively arranged corresponding to the four corners of the glass, limiting the photovoltaic glass along the length direction and width direction of the base. The limiting component is adjustable along the length direction and width direction of the base, so that the glass tray can adapt to and transport photovoltaic glass of different sizes, avoiding the need for corresponding type of glass tray to transport photovoltaic glass of each size, thereby avoiding the idle and waste of glass tray, reducing the specification of glass tray, and facilitating the management of glass tray. The locking structure is arranged between the limiting component and the base, which can lock the limiting component and the base along the horizontal direction and vertical direction, improve the overall strength of the glass tray, avoid damage to the glass tray during transportation, and also improve the safety during transportation.

[0007] However, in the implementation process of the above technical solution, at least the following technical problems are found: as mentioned above, if the thickness of the packed glass is thick, it may cause a device to pack two or three pieces of glass, which may increase the social logistics cost and reduce the efficiency of transportation. UTILITY MODEL CONTENT

[0008] In view of the deficiencies of the prior art, the utility model provides a packing device for photovoltaic glass production, which solves the technical problem that if the thickness of the packed glass is thick, it may cause a device to pack two or three pieces of glass, which may increase the social logistics cost and reduce the efficiency of transportation.

[0009] To achieve the above object, the utility model discloses the following technical scheme to realize:

[0010] A packing device for photovoltaic glass production, including tray, the side wall of tray is inserted with the clamping mechanism, the clamping mechanism includes first clamping block, first baffle, first tenon, first plug, second baffle and second clamping block, first clamping block is clamped in the side wall of tray, first baffle is fixedly installed on the side wall of first clamping block, first tenon is fixedly installed on the top of first baffle, first plug is inserted in the inside of first baffle, second clamping block is clamped in the side wall of tray, second baffle is fixedly installed with second clamping block.

[0011] Preferably: the inside of first clamping block is provided with third party groove, and the bottom of tray is fixedly installed with wooden pier.

[0012] Preferably: the inside of wooden pier is provided with first square groove, and the inside of wooden pier is provided with second square groove.

[0013] Preferably: the bottom of wooden pier is fixedly installed with base.

[0014] Preferably: the inside of first plug and first baffle is inserted with second plug.

[0015] Preferably: the top of second plug is fixedly installed with third baffle, and the inside of third baffle is provided with fourth square groove.

[0016] Preferably: the side wall of third baffle is provided with mortise groove, and the inside of mortise groove is slidably installed with second tenon.

[0017] Preferably: the side wall of second tenon is fixedly installed with fourth baffle, and the top of fourth baffle is fixedly installed with third tenon.

[0018] Compared with the prior art, the utility model has the following beneficial effects:

[0019] I, when glass is placed on the top of tray, when glass is placed thicker or more, first, second clamping block is clamped into the side wall of tray, when second clamping block left and right two ends are limited by wooden pier, first baffle is sleeved on the side wall of first plug, first clamping block is also clamped into the side wall of tray, and second baffle is fixed, when glass is too much, fourth baffle is connected above first baffle along the side wall of first tenon, and second plug is inserted into the inside of first baffle and first plug, when second tenon slides into the inside of mortise groove, third baffle is connected with fourth baffle, so that the height of second baffle and third baffle can be quickly increased.

[0020] When packing, the thread will wrap the glass through the second square groove and the first square groove inside the wooden block, forming a three-horizontal and two-vertical packing mode, enhancing stability, and this layout makes the packing belt uniformly exert fastening force in multiple directions, more stably fixes the photovoltaic glass, reduces shaking displacement in transportation and carrying; disperses pressure, the uniformly distributed packing belt disperses the pressure on the glass to different parts, reduces the risk of excessive local pressure; improves the anti-seismic ability, the multi-directional fixing mode better resists vibration impact in different directions, enhances the anti-seismic performance to protect the glass; optimizes space utilization, reasonably packs the layout to ensure stability while fully utilizing the packaging space, facilitating storage and transportation of more products; convenient operation, the three-horizontal and two-vertical mode is regular, which is easier to realize standardized and rapid operation during packing operation, improving packaging efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0021] The above description is only a summary of the technical scheme of the present application, in order to more clearly understand the technical means of the present application, and the content of the specification can be implemented, the following will be described in detail with the preferred embodiment of the present application and the accompanying drawings.

[0022] Figure 1 It is a perspective view of the present application;

[0023] Figure 2 It is a second tenon structure diagram of the present application;

[0024] Figure 3 It is a first plug-in block structure diagram of the present application;

[0025] Figure 4 It is a wooden block structure diagram of the present application;

[0026] Figure 5 It is a Figure 2 It is an enlarged structure diagram of A in the middle.

[0027] Legend: 11, base; 12, wooden block; 13, first square groove; 14, second square groove; 15, tray; 16, first clamping block; 17, first baffle; 18, first tenon; 19, first plug-in block; 21, second baffle; 22, second clamping block; 23, third square groove; 24, second plug-in block; 25, third baffle; 26, fourth square groove; 27, mortise; 28, second tenon; 29, fourth baffle; 31, third tenon. DETAILED DESCRIPTION

[0028] The embodiment of the application provides a packaging device for photovoltaic glass production, effectively solves the problem that when the thickness of the packed glass is relatively thick, one device can only pack two or three pieces of glass, thereby increasing the logistics cost of the whole society and reducing the carrying efficiency, the glass is placed above the tray, when the glass is placed relatively thick or relatively much, the second clamping block is clamped into the side wall of the tray, at this time, the left and right ends of the second clamping block are limited by the wooden block, at this time, the first baffle is sleeved on the side wall of the first inserting block, the first clamping block is also clamped into the side wall of the tray, the second baffle is fixed, when the glass is too much, the fourth baffle is connected above the first baffle along the side wall of the first tenon, the second inserting block is inserted into the first baffle and the first inserting block, at this time, the second tenon slides into the mortise, the third baffle is connected with the fourth baffle, thereby the function of quickly increasing the height of the second baffle and the third baffle is realized, when packing, the thread is wound around the glass through the second square groove and the first square groove in the wooden block, a three-horizontal and two-vertical packing mode is formed, the stability is enhanced, the packing belt is uniformly applied to the photovoltaic glass in multiple directions, the photovoltaic glass is more stably fixed, the shaking displacement in transportation and carrying is reduced, the pressure is dispersed, the uniformly distributed packing belt disperses the pressure on the glass to different positions, the risk of excessive local pressure is reduced, the anti-seismic capacity is improved, the multi-directional fixing mode better resists vibration impact in different directions, the anti-seismic performance is enhanced to protect the glass, the space utilization is optimized, the packing space is fully utilized while the packing layout is reasonably ensured, more products are stored and transported, the operation is facilitated, the three-horizontal and two-vertical mode is regular, the standardization and rapid operation are more easily realized during the packing operation, and the packaging efficiency is improved.

[0029] Embodiment

[0030] As Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5As shown, the technical scheme in the embodiment of the application effectively solves the technical problem that when the thickness of the packed glass is relatively thick, one device can only pack two or three pieces of glass, which can increase the logistics cost of the whole society and reduce the efficiency of the transportation. The general idea is as follows: a packaging device for photovoltaic glass production, comprising a tray 15, a clamping mechanism is inserted into the side wall of the tray 15, the clamping mechanism comprises a first clamping block 16, a first baffle 17, a first tenon 18, a first plug 19, a second baffle 21 and a second clamping block 22, the first clamping block 16 is clamped on the side wall of the tray 15, the first baffle 17 is fixedly installed on the side wall of the first clamping block 16, the first tenon 18 is fixedly installed on the top of the first baffle 17, the first plug 19 is inserted into the inside of the first baffle 17, the second clamping block 22 is clamped on the side wall of the tray 15, and the second baffle 21 is fixedly installed with the second clamping block 22. The glass is placed above the tray 15, when the glass is relatively thick or relatively large, the second clamping block 22 is first clamped into the side wall of the tray 15, at this time the left and right ends of the second clamping block 22 are limited by the wooden pile 12, at this time the first baffle 17 is sleeved on the side wall of the first plug 19, the first clamping block 16 is also clamped into the side wall of the tray 15, and the second baffle 21 is fixed, when the glass is too large, the fourth baffle 29 is connected above the first baffle 17 along the side wall of the first tenon 18, the second plug 24 is inserted into the inside of the first baffle 17 and the first plug 19, at this time the second tenon 28 slides into the mortise 27, and the third baffle 25 is connected with the fourth baffle 29, thereby the function of quickly increasing the height of the second baffle 21 and the third baffle 25 can be realized.

[0031] The first clamping block 16 is internally provided with a third square groove 23, the tray 15 is fixedly installed with a wooden block 12 at the bottom, the wooden block 12 is internally provided with a first square groove 13, the wooden block 12 is internally provided with a second square groove 14, the wooden block 12 is fixedly installed with a base 11 at the bottom, the first inserting block 19 and the first baffle 17 are internally inserted with a second inserting block 24, the second inserting block 24 is fixedly installed with a third baffle 25 at the top, the third baffle 25 is internally provided with a fourth square groove 26, the third baffle 25 is provided with a mortise 27 at the side wall, the mortise 27 is internally slidably installed with a second tenon 28, the second tenon 28 is fixedly installed with a fourth baffle 29 at the side wall, during packing, the thread will be wound around the glass through the second square groove 14 and the first square groove 13 in the wooden block 12, forming a three-horizontal and two-longitudinal packing mode, enhancing the stability, this layout makes the packing belt uniformly exert the fastening force in multiple directions, more stably fixes the photovoltaic glass, reduces the shaking displacement in transportation and carrying; disperses the pressure, the uniformly distributed packing belt disperses the pressure borne by the glass to different positions, reduces the risk of excessive local pressure; improves the anti-seismic capacity, the multi-directional fixing mode better resists the vibration impact in different directions, enhances the anti-seismic performance to protect the glass; optimizes the space utilization, reasonably packs the layout to ensure the stability while fully utilizing the packaging space, facilitating to store and transport more products; facilitates operation, the three-horizontal and two-longitudinal mode is regular, more easily realizes the standardization and rapid operation during the packing operation, improves the packaging efficiency.

[0032] The fourth baffle 29 is fixedly installed with a third tenon 31 at the top, facilitating to subsequently clamp the fourth baffle 29 and the third baffle 25.

[0033] In view of the problems in the prior art, the utility model provides a packing device for photovoltaic glass production, glass is placed above the tray 15, when the glass is placed thickly or more, first, the second clamping block 22 is clamped into the side wall of the tray 15, at this time, the left and right ends of the second clamping block 22 are limited by the wooden mound 12, at this time, the first baffle 17 is sleeved on the side wall of the first inserting block 19, and the first clamping block 16 is also clamped into the side wall of the tray 15, fixing the second baffle 21, when the glass is too much, the fourth baffle 29 is connected above the first baffle 17 along the side wall of the first tenon 18, and the second inserting block 24 is inserted into the first baffle 17 and the first inserting block 19, at this time, the second tenon 28 slides into the mortise 27, and the third baffle 25 is connected with the fourth baffle 29, thereby the height of the second baffle 21 and the third baffle 25 can be quickly increased, when packing, the thread is wound around the glass through the second square groove 14 and the first square groove 13 in the wooden mound 12, forming a three-horizontal and two-longitudinal packing mode, enhancing stability, the packing belt is uniformly applied to the glass in multiple directions, the glass is more stably fixed, and shaking displacement in transportation and carrying is reduced; the pressure is dispersed, the uniformly distributed packing belt disperses the pressure on the glass to different positions, reduces the risk of excessive local pressure; the anti-seismic capacity is improved, the multi-directional fixing mode better resists vibration impact in different directions, enhances the anti-seismic performance and protects the glass; the space utilization is optimized, the reasonable packing layout ensures stability and fully utilizes the packing space, and more products are conveniently stored and transported; the operation is convenient, the three-horizontal and two-longitudinal mode is regular, standardization and quick operation are more easily realized during the packing operation, and the packing efficiency is improved.

[0034] Working principle:

[0035] Firstly, the glass is placed above the tray 15, when the glass is placed thickly or more, first, the second clamping block 22 is clamped into the side wall of the tray 15, at this time, the left and right ends of the second clamping block 22 are limited by the wooden mound 12, at this time, the first baffle 17 is sleeved on the side wall of the first inserting block 19, and the first clamping block 16 is also clamped into the side wall of the tray 15, fixing the second baffle 21, when the glass is too much, the fourth baffle 29 is connected above the first baffle 17 along the side wall of the first tenon 18, and the second inserting block 24 is inserted into the first baffle 17 and the first inserting block 19, at this time, the second tenon 28 slides into the mortise 27, and the third baffle 25 is connected with the fourth baffle 29, thereby the height of the second baffle 21 and the third baffle 25 can be quickly increased.

[0036] In the second step, the glass is wrapped by the second square groove 14 and the first square groove 13 inside the wood block 12 to form a three-horizontal-two-vertical packing mode, which enhances the stability, the layout makes the packing belt apply the fastening force uniformly in multiple directions, more stably fixes the photovoltaic glass, reduces the shaking displacement in transportation and carrying, disperses the pressure, the uniformly distributed packing belt disperses the pressure on the glass to different positions, reduces the risk of excessive local pressure, improves the anti-seismic capacity, the multi-directional fixing mode better resists the vibration impact in different directions, enhances the anti-seismic performance to protect the glass, optimizes the space utilization, reasonably packs the layout to ensure the stability and fully utilize the packaging space, is convenient for storage and transportation of more products, is convenient for operation, the three-horizontal-two-vertical mode is regular, is easier to realize the standardization and fast operation in the packing operation, and improves the packaging efficiency.

[0037] Finally, it should be noted that: obviously, the above embodiments are only examples for clearly illustrating the utility model, and are not limited to the implementation mode. For ordinary skilled persons in the art, other different forms of changes or variations can be made on the basis of the above description. Here, it is not necessary and impossible to enumerate all the implementation modes. The obvious changes or variations derived therefrom are still within the protection scope of the utility model.

Claims

1. A packaging device for photovoltaic glass production, comprising a tray (15), characterized in that, The tray (15) side wall is inserted with a clamping mechanism, the clamping mechanism comprises a first clamping block (16), a first baffle (17), a first tenon (18), a first plug (19), a second baffle (21) and a second clamping block (22), the first clamping block (16) is clamped in the tray (15) side wall, the first baffle (17) is fixedly installed on the first clamping block (16) side wall, the first tenon (18) is fixedly installed on the first baffle (17) top, the first plug (19) is inserted in the first baffle (17) inside, the second clamping block (22) is clamped in the tray (15) side wall; Wherein, the second baffle (21) and the second clamping block (22) are fixedly installed.

2. A packaging device for photovoltaic glass production as claimed in claim 1, characterized in that, The first clamping block (16) is internally provided with a third square groove (23); Wherein, the tray (15) bottom is fixedly installed with a wooden pier (12).

3. A packaging device for photovoltaic glass production as claimed in claim 2, characterized in that, The wooden pier (12) is internally provided with a first square groove (13); Wherein, the wooden pier (12) is internally provided with a second square groove (14).

4. A packaging device for photovoltaic glass production as claimed in claim 3, characterized in that, The wooden pier (12) bottom is fixedly installed with a base (11).

5. A packaging device for photovoltaic glass production as claimed in claim 4, characterized in that, The first plug (19) and the first baffle (17) are internally inserted with a second plug (24).

6. A packaging device for photovoltaic glass production as claimed in claim 5, characterized in that, The second plug (24) top is fixedly installed with a third baffle (25); Wherein, the third baffle (25) is internally provided with a fourth square groove (26).

7. A packaging device for photovoltaic glass production as claimed in claim 6, characterized in that, The third baffle (25) side wall is provided with a mortise (27); Wherein, the mortise (27) is internally slidably installed with a second tenon (28).

8. A packaging device for photovoltaic glass production as claimed in claim 7, characterized in that, The second tenon (28) side wall is fixedly installed with a fourth baffle (29); Wherein, the fourth baffle (29) top is fixedly installed with a third tenon (31).

Citation Information

Patent Citations

  • Glass tray

    CN220616573U