Egg collecting and damage preventing device for chicken raising house

By introducing buffer layers, bumps, door curtains and connecting rods into the egg collection device, the buffering problems caused by egg rupture and uneven size in traditional devices are solved, and the safe and efficient collection of eggs is achieved.

CN223053677UActive Publication Date: 2025-07-04WUHAN JIANGXING POULTRY IND CO LTD
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Patent Information

Application Number
CN202422245880.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-04
Estimated Expiration
2034-09-13

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Abstract

The utility model provides an egg collecting and damage preventing device for a chicken raising house, and belongs to the technical field of egg collecting devices. Comprising a collecting tank used for collecting eggs; the buffer layer is stably mounted in the collecting tank, and an inclined surface is arranged in the buffer layer and used for promoting the eggs to roll; the multiple protruding blocks are evenly connected to the inclined face, and the protruding blocks are used for slowing down the egg rolling speed; and one ends of the door curtains are stably connected to the buffer layer, the other ends of the door curtains fall into the buffer layer, and the door curtains are used for assisting the protruding blocks to slow down the egg rolling speed. Through cooperation of the protruding blocks, the door curtains and other structures, the purpose of enhancing the egg rolling buffering effect is achieved, the effect of reducing the risk that the surfaces of the eggs break is achieved, and meanwhile through cooperation of the connecting rods, the partition plates and other structures, the purpose of conducting classified buffering on the eggs of different sizes is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of egg collection devices, and particularly relates to an anti-damage device for collecting eggs in a chicken coop. Background Technique

[0002] With the continuous development of the poultry breeding industry, the scale and quantity of chicken breeding are constantly expanding; eggs, as an important product of the chicken breeding industry, their collection and preservation are crucial; in modern chicken coops, efficiently and safely collecting eggs is one of the key links to improve breeding efficiency; a good egg collection device can not only improve the collection efficiency, but also minimize the damage of eggs during the collection process and ensure the quality of eggs.

[0003] However, traditional egg collection devices generally lack an effective buffering mechanism during the egg collection process; for example, in some simple collection troughs, eggs directly hit a hard surface after falling from a height, and since the impact force cannot be effectively relieved, the situation of eggshell cracking is relatively common; in addition, when the existing collection devices are running, eggs may be damaged due to too fast speed or collision with other objects during the rolling process; for example, in an inclined slide-type collection device, eggs roll down rapidly under the action of gravity and are extremely likely to collide, thus increasing the risk of breakage. Content of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide an anti-damage device for collecting eggs in a chicken coop, so as to solve the technical problems that traditional egg collection devices lack effective buffering, resulting in the surface cracking of eggs, and because of different egg sizes, the eggs cannot be effectively buffered.

[0005] Technical Solution: To achieve the above objectives, the present utility model is realized through the following technical solutions: An anti-damage device for collecting eggs in a chicken coop includes: a collection trough for collecting eggs; a buffer layer stably installed in the collection trough, and an inclined surface is provided in the buffer layer, and the inclined surface is used to urge the eggs to roll; a plurality of convex blocks are provided, and the convex blocks are evenly connected to the inclined surface, and the convex blocks are used to slow down the rolling speed of the eggs; a plurality of curtain doors are provided, and one end of the curtain doors is stably connected to the buffer layer, and the other end hangs down into the buffer layer, and the curtain doors are used to assist the convex blocks to slow down the rolling speed of the eggs. Among them, the buffer layer can adopt a soft and elastic sponge material, which can effectively absorb the impact force. The surface of the inclined surface should be as smooth as possible to reduce the friction force when the eggs roll; the thickness of the buffer layer should be determined according to actual needs to ensure that sufficient buffering effect can be provided; the height of the convex blocks should not be too high so as not to affect the rolling of the eggs; the shape of the convex blocks can be designed as a hemispherical shape to reduce the scratching of the eggs; the curtain doors can adopt a soft plastic material, which has certain flexibility and strength and can withstand the impact of the eggs; the length of the curtain doors should be adjusted according to the depth of the buffer layer to ensure that they can hang down to a suitable position.

[0006] In a further embodiment, a plurality of partition plates are provided and evenly arranged in the buffer layer. The partition plates are stably connected to the buffer layer and are used to divide the internal space of the buffer layer, thereby dividing the buffer layer into multiple regions. The material of the partition plates should be the same as that of the buffer layer, and the height of the partition plates should be appropriate, which can not only play a role in separation but also not hinder the rolling of eggs. The installation of the partition plates should be firm and reliable to avoid loosening or displacement during use.

[0007] In a further embodiment, a plurality of cross bars are provided, and the cross bars are stably connected to one end of the curtain and stably connected to the buffer layer. The size and quantity of the cross bars are determined; the surface of the cross bars should be smoothed.

[0008] In a further embodiment, a plurality of connecting rods are provided, and the plurality of connecting rods are stably connected to the feeding port of the buffer layer. The connecting rods are linearly distributed in a slope shape along the direction parallel to the cross bar. A flexible material such as sponge should be wrapped around the connecting rods. The length and spacing of the connecting rods should be reasonably designed according to the size and rolling speed of the eggs; the connection method of the connecting rods should be firm to avoid falling off during the rolling of the eggs; the surface of the connecting rods should be as smooth as possible to avoid damaging the eggs.

[0009] In a further embodiment, the spacing between two adjacent connecting rods gradually increases along the rolling direction of the eggs in the feeding port to achieve classification of the egg sizes. The increase amplitude of the spacing between two adjacent connecting rods should be reasonable, neither too large nor too small; being too large may cause the eggs to jump or get stuck during the classification process, and being too small may not effectively distinguish eggs of different sizes; at the same time, the starting spacing at the feeding port should be determined according to the minimum size of common eggs to ensure that the smallest eggs can also smoothly enter the classification system.

[0010] In a further embodiment, the curtain is on the side away from the connecting rods of the convex block, and the distance between the curtain and the convex block should be appropriate, which can not only play a role in slowing down the rolling speed of the eggs but also not hinder the normal rolling of the eggs.

[0011] In a further embodiment, the spacing between the curtain and the inclined surface is smaller than the eggs, and the spacing between the curtain and the inclined surface should be reasonably adjusted according to the size of the eggs to ensure that the curtain can effectively slow down the rolling speed of the eggs.

[0012] In a further embodiment, the curtain is mesh or solid; when the curtain is solid, the curtains are linearly distributed along the crossbar, and the distance between adjacent solid curtains is less than that of an egg; when the curtain is mesh, the mesh size is less than that of an egg. The mesh size of the mesh curtain should be reasonably designed according to the size of eggs in the area to ensure that eggs will not fall through the mesh; the material of the solid curtain should be soft to avoid damaging the eggs; the distance between adjacent solid curtains should be appropriate, which can slow down the rolling speed of the eggs and will not hinder the normal rolling of the eggs.

[0013] Advantages: 1. Through the cooperation of structures such as bumps and curtains, the purpose of enhancing the rolling buffer effect of eggs is achieved, and the effect of reducing the risk of egg surface rupture is achieved. The bumps are evenly connected to the inclined surface, which can slow down the rolling speed of the eggs. When the eggs roll on the inclined surface, the blocking effect of the bumps makes the kinetic energy of the eggs gradually decrease. One end of the curtain is stably connected to the buffer layer, and the other end hangs down into the buffer layer, assisting the bumps to further slow down the rolling speed of the eggs, especially intercepting the eggs that jump due to the action of the bumps, and avoiding large impact forces generated by the eggs due to jumping; effectively reducing the impact force during egg collection and reducing the risk of egg surface rupture.

[0014] 2. Through the cooperation of structures such as connecting rods and partitions, the purpose of classifying and buffering eggs of different sizes is achieved, and the effect of effectively buffering and collecting eggs of different sizes is achieved; the partitions are evenly arranged in the buffer layer, dividing the buffer layer into multiple areas; when eggs of different sizes enter the buffer layer, they can enter the corresponding buffer areas according to their own sizes through the connecting rod areas with different spacings, so as to realize the classified buffer collection of eggs of different sizes. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0016] Figure 1 It is a schematic structural diagram of the present utility model.

[0017] Figure 2 It is Figure 1 the main sectional structural diagram of

[0018] Figure 3 It is Figure 1 the side sectional structural diagram of

[0019] Figure 4 It isFigure 2 Schematic diagram of the structure at position A

[0020] The reference numerals in the figure are: 1, collection trough; 101, partition; 2, buffer layer; 201, bump; 3, cross bar; 4, curtain; 5, connecting rod. Specific implementation mode

[0021] To make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.

[0022] By providing an anti-damage device for collecting eggs in a chicken coop in the embodiments of the present application, the technical problems that the traditional egg collection device lacks effective buffering, resulting in the surface of the eggs being broken, and that due to the different sizes of the eggs, effective buffering cannot be carried out on the eggs are solved. In actual use, effective buffering of the eggs is achieved, the risk of the surface of the eggs being broken is reduced, and buffering can be adapted to eggs of different sizes.

[0023] To better understand the above technical solutions, the above technical solutions will be described in detail below in conjunction with the accompanying drawings of the specification and specific implementation modes.

[0024] Referring to Figures 1-4 , an anti-damage device for collecting eggs in a chicken coop includes: a collection trough 1 for collecting eggs; a buffer layer 2 stably installed in the collection trough 1, and an inclined surface is provided in the buffer layer 2 for promoting the rolling of the eggs; a plurality of bumps 201 are provided, and the bumps 201 are evenly connected to the inclined surface for slowing down the rolling speed of the eggs; a plurality of curtains 4 are provided, and one end of the curtain 4 is stably connected to the buffer layer 2 and the other end hangs down into the buffer layer 2 for assisting the bumps 201 to slow down the rolling speed of the eggs.

[0025] Through the cooperation between the above structures, the purpose of enhancing the buffering effect of the egg rolling is achieved, and the effect of reducing the risk of the surface of the eggs being broken is achieved.

[0026] A plurality of partitions 101 are provided, and the plurality of partitions 101 are evenly arranged in the buffer layer 2. The partitions 101 are stably connected to the buffer layer 2 for separating the internal space of the buffer layer 2 to divide the buffer layer 2 into multiple regions.

[0027] Through the cooperation of the partition plate 101 and the buffer layer 2, the effect of dividing the internal space of the buffer layer 2 into multiple regions is achieved, so that eggs in different states or sizes can be managed in different areas, improving the orderliness and pertinence of collection.

[0028] There are multiple cross bars 3, and the cross bars 3 are stably connected to one end of the curtain 4, and the cross bars 3 are stably connected to the buffer layer 2.

[0029] Through the cooperation of the cross bar 3, the curtain 4 and the buffer layer 2, the effect of stably connecting the curtain 4 is achieved, ensuring that the curtain 4 can play an auxiliary role in slowing down the rolling speed of eggs in the buffer layer 2.

[0030] There are multiple connecting rods 5, and the multiple connecting rods 5 are stably connected to the feed inlet of the buffer layer 2, and the connecting rods 5 are linearly distributed in a slope shape along the parallel direction of the cross bar 3.

[0031] Through the cooperation of the connecting rod 5 and the feed inlet of the buffer layer 2, the effect of guiding eggs into the buffer layer 2 is achieved, and the connecting rods 5 distributed linearly in a slope shape can make eggs enter the collection device more smoothly.

[0032] The distance between two adjacent connecting rods 5 gradually increases along the rolling direction of eggs in the feed inlet to achieve the classification of egg sizes.

[0033] Through the cooperation of the change in the distance between multiple connecting rods 5 and the rolling direction of eggs, the effect of classifying and collecting eggs by size is achieved, improving the functionality and applicability of the collection device.

[0034] The curtain 4 is on the side of the bump 201 away from the connecting rod 5.

[0035] When the curtain 4 is on the side of the bump 201 away from the connecting rod 5, it can effectively intercept the jumping eggs in time when the eggs jump over the bump 201.

[0036] The distance between the curtain 4 and the inclined surface is smaller than the egg.

[0037] Through the setting and cooperation of the distance between the curtain 4 and the inclined surface, the effect of ensuring that the eggs can contact the curtain 4 and be effectively buffered is achieved, further reducing the risk of egg surface cracking.

[0038] The curtain 4 is mesh-shaped or solid-shaped; when the curtain 4 is solid-shaped, the curtain 4 is linearly distributed along the cross bar 3, and the distance between adjacent solid-shaped curtains 4 is smaller than the egg; when the curtain 4 is mesh-shaped, the mesh size is smaller than the egg.

[0039] Through the cooperation of different states of the curtain 4 with the crossbar 3 and the size of the eggs, different types of curtain 4 can be selected according to actual needs to better assist in buffering the rolling of eggs, improving the flexibility and adaptability of the device.

[0040] During use, eggs enter the device from a specific position in the chicken coop. First, they are stably connected to the feed inlet of the buffer layer 2 through multiple connecting rods 5. The connecting rods 5 are linearly distributed in a slope shape along the parallel direction of the crossbar 3 to guide the eggs into the buffer layer 2. The spacing between adjacent two connecting rods 5 gradually increases along the rolling direction of the eggs in the feed inlet, enabling eggs of different sizes to be preliminarily classified according to their own sizes. Smaller eggs enter the area with a smaller spacing, and larger eggs enter the area with a larger spacing. After the eggs enter the buffer layer 2, they start to roll under the action of the inclined surface. The bumps 201 evenly connected to the inclined surface slow down the rolling speed of the eggs. When the eggs pass over the bumps 201, they may jump up. At this time, the curtain 4 on the side of the bumps 201 away from the connecting rod 5 plays a role in effectively intercepting the jumping eggs. One end of the curtain 4 is stably connected to the buffer layer 2, and the other end hangs down into the buffer layer 2 to assist the bumps 201 in further slowing down the rolling speed of the eggs. The spacing between the curtain 4 and the inclined surface is smaller than the eggs to ensure that the eggs can contact the curtain 4 and be effectively buffered. Multiple partitions 101 are evenly arranged in the buffer layer 2, dividing the buffer layer 2 into multiple areas. After eggs of different sizes enter the buffer layer 2, they can enter the corresponding buffer areas according to their own sizes, realizing the classified buffer collection of eggs of different sizes.

[0041] The structures such as the guiding device, cleaning device, and fixing device required above all belong to the prior art and are non-essential technical features in this application. Therefore, they are not described and drawn in the documents and drawings of this application. Moreover, the figures shown in the drawings are example figures, and their purpose is only to more intuitively display the key structures and connection relationships of the battery power management device of the present utility model. In actual applications, the appearance and size of the device can be adjusted and optimized according to specific needs.

[0042] In summary, compared with the prior art, the following beneficial effects are achieved: First, through the cooperation of structures such as bumps and curtains, the buffering effect of egg rolling is enhanced, and the risk of egg surface rupture is reduced. The bumps are evenly connected to the inclined surface to slow down the rolling speed of the eggs, and the curtain assists the bumps in further intercepting the eggs that jump up due to the action of the bumps, effectively reducing the impact force of the eggs during collection. Second, through the cooperation of structures such as connecting rods and partitions, the classified buffer collection of eggs of different sizes is realized. The partitions divide the buffer layer into multiple areas, and eggs of different sizes enter the corresponding buffer areas through the connecting rod areas with different spacings according to their own sizes, improving the functionality and applicability of the collection device.

[0043] The present utility model covers any alternatives, modifications, equivalent methods, and solutions made within the essence and scope of the present utility model. In order to enable the public to have a thorough understanding of the present utility model, specific details have been described in detail in the above preferred embodiments of the present utility model. However, those skilled in the art can fully understand the present utility model even without the description of these details. Additionally, well-known methods, processes, procedures, components, and circuits, etc. have not been described in detail to avoid unnecessary confusion to the essence of the present utility model.

[0044] The above are only the preferred embodiments of the present utility model. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present utility model, several improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present utility model.

Claims

1. An egg collection and anti - damage device for a chicken coop, characterized in that, Comprising: A collection trough (1) for collecting eggs; A buffer layer (2) stably installed in the collection trough (1), and an inclined surface is provided in the buffer layer (2), and the inclined surface is used to cause the eggs to roll; There are a plurality of bumps (201), and the bumps (201) are evenly connected to the inclined surface, and the bumps (201) are used to slow down the rolling speed of the eggs; There are a plurality of curtain doors (4), and one end of the curtain doors (4) is stably connected to the buffer layer (2), and the other end hangs down into the buffer layer (2), and the curtain doors (4) are used to assist the bumps (201) in slowing down the rolling speed of the eggs.

2. The anti-damage device for collecting eggs in a chicken coop according to claim 1, wherein, Further comprising: There are a plurality of partition plates (101), and the plurality of partition plates (101) are evenly arranged in the buffer layer (2), and the partition plates (101) are stably connected to the buffer layer (2), and the partition plates (101) are used to partition the internal space of the buffer layer (2) to divide the buffer layer (2) into multiple regions.

3. The egg collection and anti - damage device for a chicken coop according to claim 1, characterized in that, Further comprising: There are a plurality of cross bars (3), and the cross bars (3) are stably connected to one end of the curtain doors (4), and the cross bars (3) are stably connected to the buffer layer (2).

4. The anti-damage device for collecting eggs in a chicken coop according to claim 3, characterized in that, Further comprising: There are a plurality of connecting rods (5), and the plurality of connecting rods (5) are stably connected to the feed inlet of the buffer layer (2), and the connecting rods (5) are linearly distributed in a slope shape along the parallel direction of the cross bar (3).

5. The anti-damage device for collecting eggs in a chicken coop according to claim 4, wherein: The spacing between two adjacent connecting rods (5) gradually increases along the rolling direction of the eggs in the feed inlet to achieve classification of the egg sizes.

6. The anti-damage device for collecting eggs in a chicken coop according to claim 1, wherein: The curtain door (4) is on the side of the bump (201) away from the connecting rod (5).

7. The egg collection and anti-damage device for a chicken coop according to claim 1, characterized in that: The spacing between the curtain door (4) and the inclined surface is smaller than the egg.

8. The egg collection and anti - damage device for a chicken coop according to claim 1, wherein: The curtain door (4) is net-shaped or solid; When the curtain door (4) is solid, the curtain door (4) is linearly distributed along the cross bar (3), and the spacing between adjacent solid curtain doors (4) is smaller than the egg; When the curtain door (4) is net-shaped, the mesh size is smaller than the egg.