Anti-vibration and anti-impact structure egg support

By designing an anti-shock and impact-resistant structure egg tray, the combination of elastic protective layer, shock-absorbing sponge layer and fasteners, the existing egg tray has been solved, and the stable protection of poultry eggs during transportation is achieved.

CN223149122UActive Publication Date: 2025-07-25GUANGZHOU YUHE TRADE CO LTD
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Patent Information

Application Number
CN202422411291.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-08
Publication Date
2025-07-25
Estimated Expiration
2034-10-08

AI Technical Summary

Technical Problem

The existing egg holders have poor fixing and poor shock absorption during long-distance transportation, which affects the safety of poultry and eggs and the stability during transportation.

Method used

An anti-shock and impact-resistant structure egg tray is designed, including the bottom support body and the top support body. The two are fixed by a connecting mechanism, and an elastic protective layer and a shock-absorbing sponge layer are provided on both sides. The shock-absorbing and impact-resistant component composed of an elastic seat and an elastic block is quickly fixed through fasteners and threaded connections.

Benefits of technology

During vibration or impact, the elastic protective layer and shock-absorbing sponge layer wrap the egg body, buffering the impact force between the elastic seat and the block, and the corrugated paper pull layer reduces deformation and shaking, achieving effective protection and stable fixation of the egg body.

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Abstract

The utility model provides a shock-proof shock-resistant structure egg support which comprises a bottom support body and a top support body, the bottom support body and the top support body are connected and fixed through a connecting mechanism, a plurality of arc-shaped grooves are formed in the opposite sides of the bottom support body and the top support body, and elastic protective layers are connected in the arc-shaped grooves. Compared with the prior art, the egg tray has the advantages that through the design of the connecting mechanism, when the egg tray is used, an egg body is placed in the arc-shaped groove in the bottom supporting body, then the hexagonal block is rotated and drives the sleeve to rotate, then the sleeve and the hexagonal block are driven to descend under the action of threads, and the hexagonal block descends and drives the rectangular connecting sleeve to descend at the same time; when a clamping groove in the side edge of the rectangular connecting sleeve and a clamping block at the bottom of the side wall of the connecting groove are clamped together, the hexagonal block and the top of the top supporting body are extruded together to form a clamping relation, and then the hexagonal block, the top supporting body and the bottom supporting body are connected together.
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Description

Technical Field

[0001] The utility model relates to an anti-seismic and anti-impact structure egg tray, belonging to the field of product packaging. Background Art

[0002] Poultry eggs, such as chicken eggs, duck eggs, goose eggs, etc., are common ingredients for people's daily cooking and consumption. Especially chicken eggs, they are essential main ingredients in food processing and daily catering. An egg tray is a container used to hold, fix, and to a certain extent, carry and transport poultry eggs. Since the eggshells of poultry eggs are thin and brittle and extremely easy to break, during long-distance transportation, the egg tray is required to have a fixing effect, as well as good anti-impact and shock-absorbing properties; at the same time, it should also be very convenient during the process of storing and taking out poultry eggs. The existing egg trays are poorly made, have a rough appearance, and have poor shock-absorbing effects and are not suitable for long-distance transportation. There are also defects such as poor fixing effect, poor shock-absorbing effect, and difficulty in taking out, which affect the safety of poultry egg packaging and transportation. Content of the Utility Model

[0003] Aiming at the deficiencies of the existing technology, the purpose of the utility model is to provide an anti-seismic and anti-impact structure egg tray.

[0004] In order to achieve the above purpose, the utility model is realized through the following technical solutions:

[0005] An anti-seismic and anti-impact structure egg tray includes a bottom tray body and a top tray body. The bottom tray body and the top tray body are connected and fixed through a connecting mechanism. A plurality of arc-shaped grooves are opened on both opposite sides of the bottom tray body and the top tray body. An elastic protective layer is connected in the arc-shaped grooves. A shock-absorbing sponge layer is arranged on the outer surface of the elastic protective layer. A shock-absorbing and anti-impact component is arranged between the elastic protective layer and the arc-shaped grooves. The shock-absorbing and anti-impact component includes a plurality of elastic seats and elastic blocks fixed on the outer surfaces of the opposite sides of the arc-shaped grooves and the elastic protective layer. The elastic seats and the elastic blocks correspond to each other one by one.

[0006] Further, an arc-shaped groove matched with the elastic block is opened on the outer surface of the elastic seat, and the end of the elastic block is clamped in the arc-shaped groove.

[0007] Further, a corrugated paper pulling layer is arranged between two adjacent elastic seats. Both ends of the corrugated paper pulling layer are respectively connected and fixed with the arc-shaped grooves and the elastic protective layer.

[0008] Further, the connecting mechanism includes a connecting groove opened on the bottom tray body and a fastener. A threaded column is arranged in the middle of the connecting groove. A through hole is opened on the top tray body. The fastener is placed in the through hole. The bottom end of the fastener penetrates into the connecting groove and is connected and fixed with the threaded column.

[0009] Furthermore, the fastener includes a hexagonal block, a sleeve is fixed in the middle of the hexagonal block, an internal threaded hole matching with the threaded post is provided in the middle of the sleeve, a rectangular connecting sleeve is rotatably connected to the middle of the outer surface of the hexagonal block and on the outer side of the sleeve, the rectangular connecting sleeve wraps the sleeve inside, the rectangular connecting sleeve is placed in the through hole, the rectangular connecting sleeve drives the sleeve to penetrate through the through hole into the connecting groove, and the internal threaded hole is in threaded engagement with the threaded post.

[0010] Furthermore, an annular slider is fixed on the outer surface of the rectangular connecting sleeve, an annular sliding groove matching with the annular slider is provided on the outer surface of the hexagonal block, and a circular hole matching with the sleeve is provided in the middle of the rectangular connecting sleeve.

[0011] Furthermore, clamping grooves are provided on both sides of the outer surface of the rectangular connecting sleeve, and clamping blocks matching with the clamping grooves are provided at the bottoms of both inner walls of the connecting groove.

[0012] Furthermore, a docking groove is provided on the bottom support body, a docking block is provided on the top support body, and the docking block is inserted into the docking groove.

[0013] Advantages of the utility model:

[0014] Through the design of the connecting mechanism, during use, the egg body is placed in the arc-shaped groove on the bottom support body. Then, the top support body is quickly docked with the bottom support body from top to bottom through the docking groove and the docking block. Then, the fastener is inserted into the through hole provided on the top support body. The rectangular connecting sleeve and the sleeve at the bottom end of the fastener descend to the top opening of the connecting groove, and the internal threaded hole at the bottom of the sleeve is docked with the top end of the threaded post. Then, the hexagonal block is rotated. The hexagonal block drives the sleeve to rotate, and then drives the sleeve and the hexagonal block to descend through the thread action. While the hexagonal block descends, it drives the rectangular connecting sleeve to descend, thereby realizing the synchronous descent of the sleeve, the hexagonal block, and the rectangular connecting sleeve. When the clamping groove on the side of the rectangular connecting sleeve is clamped with the clamping block at the bottom of the side wall of the connecting groove, at this time, the hexagonal block is pressed against the top of the top support body to form a clamping relationship, thereby connecting the hexagonal block, the top support body, and the bottom support body together.

[0015] Through the design of the shock-absorbing and impact-resistant component, the egg body is wrapped by the arc-shaped grooves on both the top support body and the bottom support body. The elastic protective layer and the shock-absorbing sponge layer in the upper and lower arc-shaped grooves wrap and protect the egg body. In this way, when the egg tray is vibrated or impacted, the elastic protective layer and the shock-absorbing sponge layer will protect the egg body. At the same time, the elastic extrusion between the elastic seat and the elastic block realizes the buffering of the impact force transmitted by the elastic protective layer. Description of the drawings

[0016] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0017] Figure 1 Schematic diagram of the overall structure of an anti-seismic and anti-impact structure egg tray of the present invention Figure 1 ;

[0018] Figure 2 Schematic diagram of the overall structure of an anti-seismic and anti-impact structure egg tray of the present invention Figure 2 ;

[0019] Figure 3 Schematic diagram of the fastener structure of an anti-seismic and anti-impact structure egg tray of the present invention;

[0020] Figure 4 Schematic diagram of the connection structure of the hexagonal block, sleeve, and internal thread hole of an anti-seismic and anti-impact structure egg tray of the present invention;

[0021] Figure 5 Schematic diagram of the rectangular connecting sleeve structure of an anti-seismic and anti-impact structure egg tray of the present invention Figure 1 ;

[0022] Figure 6 Schematic diagram of the rectangular connecting sleeve structure of an anti-seismic and anti-impact structure egg tray of the present invention Figure 2 ;

[0023] Figure 7 Schematic diagram of the internal structure of the arc-shaped groove of an anti-seismic and anti-impact structure egg tray of the present invention.

[0024] In the figure, 1, bottom support body; 2, top support body; 3, docking groove; 4, connection groove; 5, threaded column; 6, fastener; 7, hexagonal block; 8, sleeve; 9, internal thread hole; 10, annular sliding groove; 11, annular sliding block; 12, rectangular connecting sleeve; 13, round hole; 14, clamping groove; 15, arc-shaped groove; 16, elastic protective layer; 17, shock-absorbing sponge layer; 18, elastic seat; 19, elastic block; 20, corrugated paper pulling layer. Detailed implementation manners

[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0026] Please refer to Figures 1 - 7 , the present invention provides a technical solution for an anti-seismic and anti-impact structure egg tray, including a bottom tray body 1 and a top tray body 2. The bottom tray body 1 and the top tray body 2 are fixedly connected through a connecting mechanism. A plurality of arc-shaped grooves 15 are formed on both opposite sides of the bottom tray body 1 and the top tray body 2. An elastic protective layer 16 is connected in the arc-shaped groove 15. A shock-absorbing sponge layer 17 is provided on the outer surface of the elastic protective layer 16. A shock-absorbing and anti-impact component is provided between the elastic protective layer 16 and the arc-shaped groove 15. The shock-absorbing and anti-impact component includes a plurality of elastic seats 18 and elastic blocks 19 fixed on the outer surfaces of both opposite sides of the arc-shaped groove 15 and the elastic protective layer 16. The elastic seats 18 and the elastic blocks 19 correspond to each other one by one. An arc-shaped groove matching with the elastic block 19 is formed on the outer surface of the elastic seat 18. The end of the elastic block 19 is clamped in the arc-shaped groove. Through the design of the shock-absorbing and anti-impact component, the egg body is wrapped by the arc-shaped grooves 15 on both the top tray body 2 and the bottom tray body 1. The elastic protective layer 16 and the shock-absorbing sponge layer 17 in the upper and lower two arc-shaped grooves 15 realize wrapping protection for the egg body. In this way, when the egg tray is vibrated or impacted, the elastic protective layer 16 and the shock-absorbing sponge layer 17 will protect the egg body. At the same time, the elastic extrusion between the elastic seat 18 and the elastic block 19 realizes buffering of the impact force transmitted by the elastic protective layer 16.

[0027] Refer to Figure 7 , a corrugated paper pulling layer 20 is provided between two adjacent elastic seats 18. Both ends of the corrugated paper pulling layer 20 are fixedly connected to the arc-shaped groove 15 and the elastic protective layer 16 respectively. The corrugated paper pulling layer 20 made of corrugated paper pulls and protects the elastic protective layer 16 in the left and right directions, reducing the deformation and shaking of the elastic protective layer 16.

[0028] Refer to Figures 2 - 6, the connecting mechanism includes a connecting groove 4 and a fastener 6 opened on the bottom support 1. A threaded post 5 is provided in the middle of the connecting groove 4. A through hole is opened on the top support 2, and the fastener 6 is placed in the through hole. The bottom end of the fastener 6 penetrates into the connecting groove 4 and is connected and fixed to the threaded post 5. The fastener 6 includes a hexagonal block 7. A sleeve 8 is fixed in the middle of the hexagonal block 7. An internal threaded hole 9 matching with the threaded post 5 is opened in the middle of the sleeve 8. A rectangular connecting sleeve 12 is rotatably connected to the middle of the outer surface of the hexagonal block 7 and on the outside of the sleeve 8. The rectangular connecting sleeve 12 wraps the sleeve 8 inside. The rectangular connecting sleeve 12 is placed in the through hole. The rectangular connecting sleeve 12 drives the sleeve 8 to penetrate into the connecting groove 4 through the through hole. The internal threaded hole 9 is in threaded engagement with the threaded post 5. Clamping grooves 14 are provided on both sides of the outer surface of the rectangular connecting sleeve 12. Clamping blocks matching with the clamping grooves 14 are provided at the bottoms of both inner walls of the connecting groove 4; through the design of the connecting mechanism, during use, the egg body is placed in the arc-shaped groove 15 on the bottom support 1. Then, the top support 2 is quickly butted against the bottom support 1 from top to bottom through the docking groove 3 and the docking block. Then, the fastener 6 is inserted into the through hole opened on the top support 2. The rectangular connecting sleeve 12 and the sleeve 8 at the bottom end of the fastener 6 descend to the top opening of the connecting groove 4. The internal threaded hole 9 at the bottom of the sleeve 8 is butted against the top end of the threaded post 5. Then, the hexagonal block 7 is rotated. The hexagonal block 7 drives the sleeve 8 to rotate. Then, the sleeve 8 and the hexagonal block 7 are driven to descend through the threaded action. While the hexagonal block 7 descends, it drives the rectangular connecting sleeve 12 to descend. Thus, the sleeve 8, the hexagonal block 7 and the rectangular connecting sleeve 12 descend synchronously. When the clamping groove 14 on the side of the rectangular connecting sleeve 12 is clamped with the clamping block at the bottom of the side wall of the connecting groove 4, at this time, the hexagonal block 7 is squeezed against the top of the top support 2 to form a clamping relationship. Thus, the hexagonal block 7, the top support 2 and the bottom support 1 are connected together.

[0029] The threaded post 5, the hexagonal block 7, the sleeve 8 and the rectangular connecting sleeve 12 are all made of plastic materials. The elastic protective layer 16, the elastic seat 18, the elastic block 19 and the clamping block are all made of rubber materials.

[0030] Refer to Figures 4 - 5 , a circular slider 11 is fixed on the outer surface of the rectangular connecting sleeve 12. An annular sliding groove 10 matching with the circular slider 11 is opened on the outer surface of the hexagonal block 7. A circular hole 13 matching with the sleeve 8 is opened in the middle of the rectangular connecting sleeve 12; through the design of the circular slider 11 and the annular sliding groove 10, the rectangular connecting sleeve 12 is rotatably connected to the hexagonal block 7.

[0031] Refer to Figure 2, a docking groove 3 is formed on the bottom support body 1, and a docking block is formed on the top support body 2. The docking block is inserted into the docking groove 3. Through the design of the docking groove 3 and the docking block, when the top support body 2 and the bottom support body 1 are docked up and down, rapid positioning can be carried out to achieve rapid docking.

[0032] During use, the egg body is placed in the arc-shaped groove 15 on the bottom support body 1. Then, the top support body 2 is quickly docked with the bottom support body 1 from top to bottom through the docking groove 3 and the docking block. Then, the fastener 6 is inserted into the through hole formed on the top support body 2. The rectangular connecting sleeve 12 and the sleeve 8 at the bottom end of the fastener 6 descend to the top opening of the connecting groove 4. The internal threaded hole 9 at the bottom of the sleeve 8 is docked with the top end of the threaded post 5. Then, the hexagonal block 7 is rotated. The hexagonal block 7 drives the sleeve 8 to rotate, and then drives the sleeve 8 and the hexagonal block 7 to descend through the thread action. While the hexagonal block 7 descends, it drives the rectangular connecting sleeve 12 to descend, thereby realizing the synchronous descent of the sleeve 8, the hexagonal block 7, and the rectangular connecting sleeve 12. When the clamping groove 14 on the side of the rectangular connecting sleeve 12 is clamped with the clamping block at the bottom of the side wall of the connecting groove 4, at this time, the hexagonal block 7 is squeezed against the top of the top support body 2 to form a clamping relationship, thereby connecting the hexagonal block 7, the top support body 2, and the bottom support body 1 together;

[0033] However, the egg body is wrapped by the arc-shaped grooves 15 on both the top support body 2 and the bottom support body 1. The elastic protection layer 16 and the shock-absorbing sponge layer 17 in the upper and lower arc-shaped grooves 15 wrap and protect the egg body. In this way, when the egg tray is vibrated or impacted, the elastic protection layer 16 and the shock-absorbing sponge layer 17 will protect the egg body. At the same time, the elastic extrusion between the elastic seat 18 and the elastic block 19 buffers the impact force transmitted by the elastic protection layer 16. At the same time, the corrugated paper pulling layer 20 made of corrugated paper pulls and protects the elastic protection layer 16 in the left and right directions, reducing the deformation and shaking of the elastic protection layer 16.

[0034] Although this specification is described according to the embodiments, not each embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. An earthquake-proof and shock-resistant structural egg tray, characterized in that, It includes a bottom support body (1) and a top support body (2), and the bottom support body (1) and the top support body (2) are connected and fixed through a connecting mechanism. A plurality of arc-shaped grooves (15) are formed on opposite sides of both the bottom support body (1) and the top support body (2). An elastic protective layer (16) is connected in the arc-shaped grooves (15). A shock-absorbing sponge layer (17) is provided on the outer surface of the elastic protective layer (16). A shock-absorbing and impact-resistant component is provided between the elastic protective layer (16) and the arc-shaped grooves (15). The shock-absorbing and impact-resistant component includes a plurality of elastic seats (18) and elastic blocks (19) fixed on the outer surfaces of opposite sides of the arc-shaped grooves (15) and the elastic protective layer (16), and the elastic seats (18) and the elastic blocks (19) correspond to each other one by one.

2. The shock-proof and impact-resistant structural egg tray according to claim 1, wherein, An arc-shaped groove matching with the elastic block (19) is formed on the outer surface of the elastic seat (18), and the end of the elastic block (19) is clamped in the arc-shaped groove.

3. The shock-proof and impact-resistant structural egg tray according to claim 2, characterized in that A corrugated paper pulling layer (20) is provided between two adjacent elastic seats (18), and both ends of the corrugated paper pulling layer (20) are respectively connected and fixed to the arc-shaped grooves (15) and the elastic protective layer (16).

4. The shock-proof and impact-resistant structural egg tray according to claim 3, characterized in that, The connecting mechanism includes a connecting groove (4) formed on the bottom support body (1) and a fastener (6). A threaded post (5) is provided in the middle of the connecting groove (4). A through hole is formed on the top support body (2), and the fastener (6) is placed in the through hole. The bottom end of the fastener (6) penetrates into the connecting groove (4) and is connected and fixed to the threaded post (5).

5. The shock-proof and impact-resistant structural egg tray according to claim 4, characterized in that, The fastener (6) includes a hexagonal block (7). A sleeve (8) is fixed in the middle of the hexagonal block (7). An internal threaded hole (9) matching with the threaded post (5) is formed in the middle of the sleeve (8). A rectangular connecting sleeve (12) is rotatably connected to the middle of the outer surface of the hexagonal block (7) and on the outer side of the sleeve (8). The rectangular connecting sleeve (12) wraps the sleeve (8) inside. The rectangular connecting sleeve (12) is placed in the through hole. The rectangular connecting sleeve (12) drives the sleeve (8) to penetrate through the through hole into the connecting groove (4), and the internal threaded hole (9) is threadedly engaged with the threaded post (5).

6. The shock-proof and impact-resistant structural egg tray according to claim 5, wherein, An annular sliding block (11) is fixed on the outer surface of the rectangular connecting sleeve (12). An annular sliding groove (10) matching with the annular sliding block (11) is formed on the outer surface of the hexagonal block (7). A circular hole (13) matching with the sleeve (8) is formed in the middle of the rectangular connecting sleeve (12).

7. The shock-proof and impact-resistant structural egg tray according to claim 6, wherein Clamping grooves (14) are provided on both sides of the outer surface of the rectangular connecting sleeve (12), and clamping blocks matching with the clamping grooves (14) are provided at the bottoms of both inner walls of the connecting groove (4).

8. The shock-proof and impact-resistant structure egg tray according to claim 1, characterized in that, A docking groove (3) is formed on the bottom support body (1), and a docking block is formed on the top support body (2). The docking block is inserted into the docking groove (3).