Bird house

The detachable bird inlet component solves the problem of high replacement costs caused by fixed bird inlets in birdhouses, and enables customized adjustments to the bird inlet to meet the needs of different bird species.

CN223626705UActive Publication Date: 2025-12-05NETVUE TECHNOLOGIES CO LTD
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Patent Information

Application Number
CN202423307374.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2024-09-19
Filing Date
2024-12-30
Publication Date
2025-12-05
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

The existing birdhouses have a fixed bird inlet diameter, which cannot accommodate birds of different sizes, resulting in the need to replace the entire birdhouse and high operating costs.

Method used

The design features a detachable bird inlet assembly that allows for adjustment of the inlet size via screwing, snap-fitting, or magnetic attachment to accommodate birds of different sizes.

Benefits of technology

Customizable adjustments to the bird inlet have been made, making it easier to select birds based on their species and reducing the cost of replacing birdhouses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model relates to the technical field of bird breeding houses, in particular to a bird house which comprises a main body and a bird inlet assembly, and the main body is provided with a containing cavity and a bird inlet allowing birds to go in and out of the containing cavity. The bird inlet assembly is detachably arranged on the main body and is provided with a bird inlet window, and the bird inlet window is communicated with the bird inlet. By means of the mode, the detachable bird inlet assembly can be used for rapidly changing the diameter of the bird inlet allowing birds to go in and out, so that the birds passing through the bird inlet assembly can be limited in shape, and the types of the birds are preliminarily screened.
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Description

[0001] Cross Reference to Related Applications

[0002] The present application claims priority to the Chinese patent application No. 2024222784265, filed on September 19, 2024, and entitled "Bird House", the content of which is incorporated herein by reference in its entirety. TECHNICAL FIELD

[0003] The embodiments of the present utility model relate to the technical field of bird breeding house, in particular to a bird house. BACKGROUND

[0004] The bird house, as a place for birds to breed and live in the outdoor, comprises a main body, which is provided with a receiving cavity for birds to move and live in. In order to protect the birds from the outside wind and rain or the invasion of the enemy, the receiving cavity of the main body is in a closed state, only leaving a passage for the birds to enter and exit.

[0005] The existing bird house only has an entrance for birds, which is directly arranged on the bird house and has a fixed size. The fixed size of the entrance for birds is only suitable for birds of the current size or smaller to pass through. When customers have the demand to observe different birds, the entire bird house needs to be replaced, which causes waste of resources. SUMMARY

[0006] The embodiments of the present utility model provide a bird house, which mainly solves the technical problem that the diameter of the existing bird house entrance for birds is fixed, and when there is a demand to select different sizes of the entrance for birds, the entire bird house needs to be replaced, which is too high in use cost.

[0007] To solve the above technical problems, one technical scheme adopted by the present utility model is to provide a bird house, which comprises a main body, a receiving cavity, and an entrance for birds for birds to enter and exit the receiving cavity; and an entrance for birds component, which is detachably arranged on the main body and is provided with an entrance window and the entrance window is in communication with the entrance for birds.

[0008] Optionally, the entrance for birds component is detachably arranged on the main body by at least one of screwing, clamping, and magnetic attraction.

[0009] Optionally, the entrance for birds component is provided with external threads, the inner wall of the entrance for birds is provided with internal threads, and the external threads are screwed with the internal threads, so as to screw the entrance for birds component on the main body.

[0010] Optionally, the entrance for birds component comprises a fixed ring and an elastic layer, the elastic layer is provided with an elastic window that can be stretched and contracted, the elastic window is in communication with the entrance for birds, and the fixed ring holds the elastic layer on the circumference of the entrance for birds.

[0011] Optionally, a camera assembly is arranged around the bird entry window.

[0012] Optionally, the bird entry assembly further comprises a window body, a first magnetic member and a second magnetic member, the first magnetic member is fixed to the periphery of the bird entry, the second magnetic member is fixed to the window body, and the first magnetic member and the second magnetic member are attracted and fixed.

[0013] Optionally, the bird entry window is smaller than the bird entry.

[0014] Optionally, the bird entry assembly is square or circular.

[0015] Optionally, the bird entry and the bird entry window are both circular.

[0016] Optionally, a metal protective layer is arranged on the outer layer of the bird entry assembly.

[0017] The beneficial effects of the embodiments of the present application are as follows: Different from the prior art, the embodiments of the present application provide a birdhouse comprising a main body and a bird entry assembly, the main body is provided with a receiving cavity for birds to live and breed, and a bird entry for the birds to enter and exit the receiving cavity; the bird entry assembly is detachably arranged on the main body, and is provided with a bird entry window, and the bird entry window of the bird entry assembly is communicated with the bird entry. Through the above structure, the embodiments of the present application can realize customized adjustment of the bird entry by using the detachable bird entry assembly, and facilitate users to preliminarily screen the types of birds entering the birdhouse according to the bird entry assemblies of different sizes. BRIEF DESCRIPTION OF DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings required to be used in the embodiments of the present application will be briefly introduced as follows. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor on the basis of the drawings.

[0019] Figure 1 is an explosion schematic view of a birdhouse provided by the embodiments of the present application;

[0020] Figure 2 is an assembly schematic view of a birdhouse provided by the embodiments of the present application;

[0021] Figure 3 is a sectional view schematic view of a birdhouse provided by the embodiments of the present application;

[0022] Figure 4 is Figure 1 a local enlarged view of A part in Fig.

[0023] Figure 5 Figure 1 is an enlarged structural schematic view of a fixing part of a birdhouse according to an embodiment of the present application;

[0024] Figure 6 Figure 2 is a schematic view of a birdhouse in an open state from one perspective according to an embodiment of the present application;

[0025] Figure 7 Figure 3 is a schematic view of the birdhouse in the open state from another perspective according to an embodiment of the present application;

[0026] Figure 8 Figure 4 is an enlarged schematic view of a bird inlet assembly of the birdhouse according to an embodiment of the present application;

[0027] Figure 9 Figure 5 is an enlarged schematic view of a fixing assembly of the birdhouse according to an embodiment of the present application.

[0028] Reference signs:

[0029] 1000, birdhouse;

[0030] 1, main body; 11, accommodation cavity; 11', limiting part 11'; limiting block, 11"; 11A, living area; 11B, equipment area; 111, sliding groove; 12, light-transmitting window; 13, accommodation groove; 14, bird inlet; 15, air inlet hole; 16, air outlet hole; 17, installation window; 18, threaded through hole; 19, communication hole;

[0031] 1a, top plate; 1b, side plate; 1b1, rotating part; 1b2, rotating hole; 1b3, insertion hole; 1b4, locking groove; 1b5, avoiding opening; 1b6, first plate body; 1b7, second plate body; 1b8, third plate body; 1b81, first sub-plate; 1b82, second sub-plate; 1b9, fourth plate body; 1c, bottom plate; 1c1, first surface; 1c2, second surface;

[0032] 2, window baffle; 21, waterproof adhesive layer; 22, sealing layer;

[0033] 3, camera assembly;

[0034] 4, power supply assembly;

[0035] 5, locking part; 51, rotating part; 52, locking part;

[0036] 6, partition plate; 61, shooting through hole; 62, ventilation hole;

[0037] 7, fixing part; 71, first fixing part; 711, first threaded hole; 72, second fixing part; 721, second threaded hole;

[0038] 8. screwing member;

[0039] 9. spacer plate;

[0040] 1A, entrance assembly; 1A1, entrance window; 1A2, fixing ring; 1A21, screwing hole; 1A3, elastic layer; 1A31, elastic window; 1A32, via hole; 1A4, metal protection layer;

[0041] 1B, climbing assembly; 1B1, strip-shaped slot;

[0042] 1C, cleaning assembly; 1C1, leakage hole;

[0043] 1D, fixing assembly; 1D1, first fastener; 1D11, cladding part; 1D12, mounting part; 1D121, mounting hole;

[0044] 1E, mounting assembly. DETAILED DESCRIPTION

[0045] In order to facilitate the understanding of the present application, the present application will be described in more detail below in conjunction with the drawings and specific embodiments. It should be noted that when an element is described as "fixed to" another element, it can be directly on the other element or one or more intervening elements can be present therebetween. When an element is described as "connected to" another element, it can be directly connected to the other element or one or more intervening elements can be present therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in the present specification are only for the purpose of illustration.

[0046] Unless otherwise defined, all technical and scientific terms used in the present specification are the same as those commonly understood by a person skilled in the art to which the present application belongs. The terms used in the present specification are only for the purpose of describing the specific embodiments and are not intended to limit the present application. The term "and / or" used in the present specification includes any and all combinations of one or more related listed items.

[0047] Please refer to Figure 1 and Figure 2The structure of the birdhouse 1000 comprises a main body 1 and a window baffle 2 arranged on the main body 1. The main body 1 is provided with a receiving cavity 11 serving as a space for breeding, inhabiting and living of birds, which provides a high-quality activity space for the birds and effectively solves the problem of lack of breeding and inhabiting space of birds caused by environmental destruction. The main body 1 is provided with at least one light-transmitting window 12 communicating with the receiving cavity 11, through which external light can enter the receiving cavity 11, i.e., the light-transmitting window 12 provides a channel for external light to enter the receiving cavity 11. The window baffle 2 shields the light-transmitting window 12 to achieve shielding or closing of the light-transmitting window 12, thereby not affecting the wind-shielding and rain-shielding function of the birdhouse 1000. Further, the window baffle 2 is a light-transmitting baffle, through which external light can enter the receiving cavity 11 to ensure that the function of increasing the amount of light entering the birdhouse 1000 is not affected. Through the above structure, the birdhouse 1000 can greatly increase the amount of external light entering the receiving cavity 11 by cooperating the window baffle 2 with the light-transmitting window 12 arranged on the main body 1, thereby providing sufficient light for the young birds breeding and inhabiting in the birdhouse 1000 and ensuring the health of the young birds.

[0048] It can be understood that the position of the light-transmitting window 12 on the main body 1 will affect the amount of light actually entering the receiving cavity 11. Therefore, the setting position of the light-transmitting window 12 is an important consideration factor. By carefully adjusting the position of the light-transmitting window 12, the light distribution in the receiving cavity 11 can be optimized to meet specific lighting requirements or achieve specific visual effects. In this embodiment, the light-transmitting window 12 is arranged at the top of the main body 1.

[0049] Further, the shape of the window baffle 2 includes but is not limited to a rectangle, a circle, a polygon, or any other irregular shape. The shape of the window baffle 2 is adapted to the main body 1, i.e., when the outer surface of the main body 1 is a plane, the window baffle 2 is a plate structure; when the outer surface of the main body 1 is a curved surface, the window baffle 2 is a curved plate structure adapted to the curved surface.

[0050] The window baffle 2 is used to shield the light-transmitting window 12, which can be directly covering the light-transmitting window 12 or maintaining a certain distance from the light-transmitting window 12 to shield the light-transmitting window 12 from water and rain, for example, being arranged above or at a certain distance from the side of the light-transmitting window 12, the shielding range of the window baffle 2 being greater than the size of the light-transmitting window 12, and this way also provides a way for the receiving cavity 11 to communicate with the external environment.

[0051] It should be noted that when the window baffle 2 is a light-transmitting baffle, the material of the window baffle 2 can be selected from, but not limited to, glass, plastic, light-transmitting stone, light-transmitting wood, and light-transmitting film. In this embodiment, the material of the window baffle 2 is glass or plastic.

[0052] In consideration of the fact that the light-transmitting window 12 is arranged on the top of the main body 1, and in summer, the light irradiation time is long and the light irradiation intensity is high, the young birds in the birdhouse 1000 can hardly bear the high-intensity external light irradiation. Therefore, in order to soften the light, various ways can be adopted, for example, the window baffle 2 is provided with a coating layer for softening the light, which includes, but is not limited to, an ultraviolet-resistant coating layer, a heat-reflecting glass coating layer, a low-radiation glass coating layer, and a conductive film glass coating layer. The specific coating layer is selected according to actual needs, which will not be described here. Alternatively, the window baffle 2 is made of a translucent material, which can soften the external light passing through the window baffle 2, reduce glare, and make the light entering the accommodation cavity 11 more soft and natural. Of course, in some embodiments, the window baffle 2 is selected as a soft light plate, so that the external light entering the accommodation cavity 11 through the soft light plate is softer, similar to the situation of being blocked by a tree branch in a natural nest, which can filter ultraviolet rays and provide a good environment for the life and breeding of birds, and is also convenient for shooting and recording the life and breeding of birds.

[0053] It can be understood that the light-transmitting window 12 includes a first through hole communicating with the accommodation cavity 11, or the light-transmitting window 12 includes a plurality of second through holes communicating with the accommodation cavity 11. For example, when the light-transmitting window 12 is preferably a first through hole, the first through hole is located on the top of the main body 1; when the light-transmitting window 12 is preferably a plurality of second windows, a second through hole is located on the top of the main body 1, and the remaining second through holes are located on the side of the main body 1.

[0054] In some embodiments, the window baffle 2 can also be made of a material with adjustable light transmittance, such as dimming glass. The light transmittance of the window baffle 2 is inversely proportional to the light intensity, and the window baffle 2 can be self-adaptively adjusted according to the external ambient light intensity. Specifically, the higher the intensity of the external light, the weaker the light transmittance of the window baffle 2; the weaker the intensity of the external light, the stronger the light transmittance of the window baffle 2, so as to ensure that the light intensity in the accommodation cavity 11 is within a controllable range, and to provide a comfortable activity space for the birds in the accommodation cavity 11.

[0055] In some embodiments, please refer to Figure 3The birdhouse 1000 comprises a camera assembly 3, the view range of the camera assembly 3 covers the accommodation cavity 11, the camera assembly 3 is used to shoot pictures and videos of the birds moving in the accommodation cavity 11, further, the camera assembly 3 can also communicate with external devices, and the collected bird images are sent to other devices (representing mobile phones, computers, and any devices that can be connected to display images) for users to view on other devices. Because the light brightness in the closed accommodation cavity 11 is not enough, which affects the shooting effect of the camera assembly 3, therefore, in this embodiment, the light-transmitting window 12 is provided so that the light passing through the light-transmitting window 12 can irradiate the light compensation area of the camera assembly 3, the external light is introduced into the accommodation cavity 11 through the light-transmitting window 12 to compensate the light for the camera assembly 3, thereby improving the shooting effect of the camera assembly 3, and the light-transmitting window 12 provided at the top reduces the shadow area of the birds moving to the greatest extent, and improves the picture presentation effect of shooting birds.

[0056] It can be understood that the shielding mode of the window baffle 2 on the light-transmitting window 12 includes but is not limited to direct covering, slot laying, etc.

[0057] In some embodiments, referring to Figure 1 The body 1 is provided with an accommodation groove 13, the height difference between the outer side wall and the inner side wall of the accommodation groove 13 is the thickness of the above-mentioned window baffle 2, the light-transmitting window 12 is located at the groove bottom of the accommodation groove 13, the window baffle 2 is accommodated in the accommodation groove 13 to shield the light-transmitting window 12, the outer surface of the window baffle 2 away from the accommodation groove 13 is flush with the outer surface of the body 1, by making the outer surface of the window baffle 2 flush with the outer surface of the body 1, the overall appearance of the birdhouse 1000 is more regular, and the appearance of the birdhouse 1000 is improved, and the flush arrangement can also prevent rainwater, sundries, etc. from accumulating at the junction position of the window baffle 2 and the body 1, thereby reducing the risk of water leakage, in addition, the dust and sundries falling on the top of the birdhouse 1000 can also be carried away by the rainwater on the flush surface, thereby saving the cleaning steps and reducing the cleaning frequency.

[0058] The shape of the window baffle 2 is matched with the shape of the accommodation groove 13, so that when the window baffle 2 is accommodated in the accommodation groove 13, the accommodation groove 13 can accurately limit the window baffle 2, and the matched window baffle 2 and the accommodation groove 13 make the body 1 appear integral in appearance, thereby improving the appearance of the birdhouse 1000, and the matched window baffle 2 and the accommodation groove 13 also ensure the gap therebetween, thereby facilitating the later waterproof operation.

[0059] Further, in order to avoid rainwater entering the accommodation cavity 11 through the gap between the window baffle 2 and the groove bottom of the accommodation groove 13, in some embodiments, the window baffle 2 is also provided with a waterproof bonding layer 21, which is arranged between the window baffle 2 and the groove bottom of the accommodation groove 13, and is used to bond the window baffle 2 to the groove bottom of the accommodation groove 13. By the bonding property and waterproof property of the waterproof bonding layer 21, the waterproof property of the birdhouse 1000 is improved.

[0060] In other embodiments, the main body 1 is provided with a sealing groove (not labeled), which is arranged along the circumference of the light-transmitting window 12 and surrounds the light-transmitting window 12 for one turn, i.e., the side length of the sealing groove is greater than that of the light-transmitting window 12. The sealing groove is located on the groove bottom of the accommodation groove 13 and surrounds the groove bottom of the accommodation groove 13. When the window baffle 2 is assembled, the sealing groove is filled with glue, which is accommodated in the sealing groove to avoid the glue flowing through the light-transmitting window 12 into the accommodation cavity 11 when the glue is filled, thereby increasing the step of cleaning the glue. Moreover, due to the arrangement of the sealing groove, the flow of the glue can be restricted, so that the glue is evenly filled and distributed, and the sealing performance is improved.

[0061] It should be noted that the waterproof bonding layer 21 can be directly irradiated by external light, so the waterproof bonding layer 21 needs to have weather resistance and ultraviolet resistance.

[0062] When the window baffle 2 is accommodated in the accommodation groove 13, a gap is left between the window baffle 2 and the side wall of the accommodation groove 13. External rainwater can seep into the gap. The waterproof bonding layer 21 can be rapidly aged under the long-term soaking of the rainwater in the gap, which affects the waterproof property of the waterproof bonding layer 21. In some embodiments, referring to Figure 1 , the window baffle 2 is also provided with a sealing layer 22, which is arranged between the window baffle 2 and the side wall of the accommodation groove 13. The window baffle 2 and the side wall of the accommodation groove 13 jointly clamp the sealing layer 22, thereby avoiding the seepage of external rainwater into the gap between the window baffle 2 and the side wall of the accommodation groove 13, prolonging the service life of the waterproof bonding layer 21, and improving the waterproof property of the birdhouse 1000.

[0063] The camera assembly 3 needs a large amount of power support for shooting and data transmission. In order to improve the endurance time of the camera assembly 3 and reduce the frequency of replacing the battery or charging of the camera assembly 3 by the user, in the present embodiment, the birdhouse 1000 further includes a power supply assembly 4, which includes but is not limited to a solar panel, an external energy storage battery, a direct connection power supply, a replaceable rechargeable battery, etc. For example, in the present embodiment, the power supply assembly 4 is a solar panel, which is arranged in a spaced manner with the light-transmitting window 12 and is electrically connected with the camera assembly 3. The solar panel is used to supplement the power of the camera assembly 3, and the sunlight is converted into electric energy by the solar panel, which belongs to clean energy, thereby improving the affinity between the birdhouse 1000 and the environment.

[0064] The camera assembly 3 is a commonly used device in the prior art, and thus the structure and function of the camera assembly 3 will not be described here.

[0065] The existing birdhouse 1000 structure is usually closed to protect the young birds, and only the bird entrance 14 is reserved for the birds to enter and exit. The bird entrance 14 realizes the communication and ventilation between the accommodation cavity 11 and the external environment, and releases heat, which is too inefficient, resulting in poor air quality, low oxygen concentration, and poor quality in the birdhouse 1000, which is not conducive to the health of the birds living in this environment for a long time.

[0066] In order to significantly enhance the ventilation efficiency and air flow of the birdhouse 1000, an optimized air flow channel structure is specially designed in this embodiment, please refer to Figure 3 , the main body 1 is provided with an air inlet hole 15 and an air outlet hole 16, both of which are in communication with the accommodation cavity 11. The air inlet hole 15 is located at the bottom of the main body 1, and the air outlet hole 16 is located at the upper part of the main body 1. Since the weight of hot air is lower than that of cold air, the air outlet hole 16 located at the upper part of the main body 1 allows hot air to be discharged from the air outlet hole 16, and the air inlet hole 15 located at the bottom of the main body 1 facilitates the flow of cold air from the air inlet hole 15. Thus, a downward air flow channel is formed. The cold air is sucked from the air inlet hole 15 at the bottom, and as the temperature gradually rises and the air naturally convection, the cold air flows in the accommodation cavity 11 and helps to cool down, and then the hot air naturally rises under the action of buoyancy, and finally smoothly discharged through the air outlet hole 16 at the upper part. Using the principle of thermodynamics, the birdhouse 1000 provided with the air inlet hole 15 and the air outlet hole 16 forms an efficient and natural ventilation system, greatly improving the air quality and living comfort in the accommodation cavity 11.

[0067] It should be noted that the number of air outlet holes 16 is greater than or equal to one. When the number of air outlet holes 16 is one, the air inlet hole 15 and the air outlet hole 16 are diagonally distributed in the main body 1, so that the air flow path in the accommodation cavity 11 is the longest, ensuring that the ventilation effect of the birdhouse 1000 is optimal; when the number of air outlet holes 16 is two, the two air outlet holes 16 are adjacent or opposite, which improves the ventilation efficiency of the birdhouse 1000. When the two air outlet holes 16 are opposite, the air in the main body 1 forms a convection, further increasing the ventilation efficiency.

[0068] For the above-mentioned main body 1, please refer to Figure 1 and Figure 2 , the main body 1 includes a top plate 1a, a plurality of side plates 1b and a bottom plate 1c, which together form the accommodation cavity 11.

[0069] Further, the angle between the top plate 1a and the bottom plate 1c is an acute angle, so that the top plate 1a is arranged obliquely relative to the bottom plate 1c, and thus the space in the accommodation cavity 11, especially the volume of the top space, presents a linearly contracted structure. The obliquely arranged top plate 1a enables the light-transmitting window 12 to receive sunlight for a longer time, and the obliquely arranged top plate 1a facilitates the flow of rainwater, avoiding accumulation of rainwater on the top of the main body 1, or even on the transparent baffle, which affects the passage of external light.

[0070] It can be understood that the enclosing connection mode of the top plate 1a, the plurality of side plates 1b and the bottom plate 1c includes but is not limited to mortise and tenon, screw connection, clamping, fixing by the fixing member 7, etc. For example, in the embodiment, the enclosing connection is achieved by screw connection, which reduces the processing cost of the birdhouse 1000 and improves the market competitiveness.

[0071] Further, in the embodiment, the bottom plate 1c is spaced apart from the lower part of any one of the side plates 1b to form an air inlet hole 15, so that the air inlet hole 15 is selectively located at the bottom of the birdhouse 1000, meeting the customized needs of different users. Since the spacing arrangement is adopted, the air inlet hole 15 is naturally formed during the assembly of the birdhouse 1000, without the need for a separate processing step, which improves the processing efficiency of the birdhouse 1000 and reduces the production and manufacturing cost of the birdhouse 1000. And / or, the top plate 1a is spaced apart from the upper part of any one of the side plates 1b to form an air outlet hole 16, so that the air outlet hole 16 is selectively located at the side of the birdhouse 1000, meeting the customized needs of different users. Since the spacing arrangement is adopted, the air outlet hole 16 is naturally formed during the assembly of the birdhouse 1000, without the need for a separate processing step, which improves the processing efficiency of the birdhouse 1000 and reduces the production and manufacturing cost of the birdhouse 1000, thereby forming the birdhouse 1000 with one air outlet hole 16.

[0072] In order to facilitate regular cleaning of waste in the birdhouse 1000, such as nests built by birds using branches and other objects, bird droppings, etc., the main body 1 needs to be provided with an opening that can be opened, including but not limited to top opening, side opening or bottom opening, etc. For example, in the embodiment, any one of the plurality of side plates 1b is rotatable relative to the other side plates 1b. Specifically, the two sides of a side plate 1b are provided with rotating parts 1b1, and the two side plates 1b directly connected to the side plate 1b are each provided with a rotating hole 1b2, and the rotating part 1b1 is accommodated in the rotating hole 1b2, so that the rotating part 1b1 is rotated relative to the rotating hole 1b2, thereby driving the side plate 1b provided with the rotating part 1b1 to rotate. Through the above arrangement, the side plate 1b can be opened by rotation, which facilitates the user to clean the waste inside the birdhouse 1000.

[0073] It can be understood that the connection mode of the rotating part 1b1 and the side plate 1b includes but is not limited to: the rotating part 1b1 is integrally formed with the side plate 1b, the rotating part 1b1 is detachably arranged on the side plate 1b, etc. For example, in the present embodiment, please refer to Figure 4 , the rotating part 1b1 is detachably arranged on the rotatable side plate 1b, one end of the rotating part 1b1 is inserted into the insertion hole 1b3 of the rotatable side plate 1b, the other end of the rotating part 1b1 is inserted into the rotating hole 1b2, and one end of the rotating part 1b1 is in interference fit with the rotatable side plate 1b, and the other end of the rotating part 1b1 can rotate relative to the rotating hole 1b2. The arrangement mode of the rotating part 1b1 makes the rotatable side plate 1b open faster and is more convenient to operate, and improves the use experience of the birdhouse 1000 during cleaning.

[0074] It should be noted that in the present embodiment, the above-mentioned air inlet hole 15 is arranged between the rotatable side plate 1b and the bottom plate 1c. The air inlet hole 15 not only allows airflow to pass through, but also provides a movement space for the rotating operation of the rotatable side plate 1b, avoiding the collision between the side plate 1b and the bottom plate 1c during the rotating process.

[0075] Furthermore, in order to facilitate the rotating operation of the rotatable side plate 1b, the rotatable side plate 1b and the top plate 1a are arranged with a spacing therebetween to form an air outlet hole 16 structure similar to the above-mentioned air outlet hole 16 structure, which will not be described here. The air outlet hole 16 here provides a rotating space for the rotatable side plate 1b, avoids the collision between the side plate 1b and the top plate 1a, and at the same time provides a new flow channel for the airflow in the accommodation cavity 11 of the birdhouse 1000, further improving the ventilation efficiency of the birdhouse 1000, thereby forming a birdhouse 1000 with two air outlet holes 16.

[0076] Further, in order to avoid the rotatable side plate 1b rotating too much and compressing the space of the accommodation cavity 11, please refer to FIG. 1, the inner wall of the accommodation cavity 11 is provided with a limiting part 11', which is used to limit the rotating angle of the rotatable side plate 1b, and when the rotatable side plate 1b closes the accommodation cavity 11, the rotatable side plate 1b abuts against the limiting part 11'.

[0077] Furthermore, in order to avoid the birds colliding with the rotatable side plate 1b when they are moving in the accommodation cavity 11, causing the rotatable side plate 1b to be misrotated, please refer to Figure 2 In some embodiments, the birdhouse 1000 further comprises a locking member 5, which is rotatably arranged on the side plate 1b provided with the rotating part 1b1, so as to lock or unlock the side plate 1b provided with the rotating part 1b1 and other side plates 1b or the top plate 1a.

[0078] It can be understood that the locking piece 5 not only locks the rotatable side plate 1b, but also limits the rotation angle of the rotatable side plate 1b, so that the birdhouse 1000 can not be provided with a limiting part 11', and the rotation angle of the rotatable side plate 1b can be limited only by the connection between the locking piece 5 and other side plates 1b or the top plate 1a.

[0079] For the above-mentioned locking piece 5, please refer to Figure 2 , the locking piece 5 includes a rotating part 51 and a locking part 52, the shape of the locking piece 5 is L-shaped, the rotating part 51 is rotationally arranged on the side plate 1b provided with the rotating part 1b1, thereby driving the locking part 52 to rotate; any side plate 1b adjacent to the side plate 1b provided with the rotating part 1b1 is provided with a locking groove 1b4; the locking part 52 can be accommodated in the locking groove 1b4, and according to whether the locking part 52 is accommodated in the locking groove 1b4, the state of the side plate 1b currently provided with the rotating part 1b1 can be determined, which is as follows:

[0080] When the locking piece 5 is rotated to a preset first position, the locking part 52 is accommodated in the locking groove 1b4, and the locking part 52 limits the rotation of the side plate 1b provided with the rotating part 1b1, so as to avoid the collision between the birds moving in the accommodation cavity 11 and the side plate 1b provided with the rotating part 1b1, which causes the accommodation cavity 11 to be opened by mistake; when the locking piece 5 is rotated to a preset second position, the locking part 52 is separated from the locking groove 1b4, and the locking part 52 cancels the limitation on the side plate 1b provided with the rotating part 1b1, so that the user can conveniently open the accommodation cavity 11 and clean the waste in the accommodation cavity 11.

[0081] Further, in order to facilitate the user to rotate the side plate 1b provided with the rotating part 1b1, please refer to Figure 2 In some embodiments, the side plate 1b provided with the rotating part 1b1 is provided with a avoiding port 1b5 for the buckle movement, so as to facilitate the user to put his fingers into the avoiding port 1b5 or put a tool into the avoiding port 1b5, thereby facilitating the rotation of the side plate 1b provided with the rotating part 1b1. The avoiding port 1b5 also communicates with the accommodation cavity 11, so that the accommodation cavity 11 communicates with the external environment through the avoiding port 1b5, thereby assisting the ventilation of the accommodation cavity 11.

[0082] It can be understood that in some embodiments, the user's operation can also be facilitated by setting a handle, a pull ring, a pull rope and the like, and the specific setting mode and related structure will not be illustrated one by one.

[0083] The birdhouse 1000 provided with the camera assembly 3, the working area of the camera assembly 3 overlaps the living area of the birds, the existence of the camera assembly 3 not only affects the activities of the birds in the accommodation cavity 11, but also causes great disturbance to the birds when the camera assembly 3 needs to be disassembled, and the birds have a high probability of accidentally touching the camera assembly 3 during the activities, causing damage to the camera assembly 3 or affecting the shooting effect of the camera assembly 3.

[0084] In some embodiments, referring to Figure 1 and Figure 3 , the birdhouse 1000 includes a partition plate 6, which is arranged in the accommodation cavity 11, and divides the accommodation cavity 11 into a living area 11A for birds to live and a device area 11B for accommodating the camera assembly 3. The living area 11A and the device area 11B are divided by the partition plate 6, thereby realizing reasonable division of the accommodation cavity 11 in physical space, improving the cleanliness of the accommodation cavity 11, and avoiding the birds in the living area 11A from accidentally touching the camera assembly 3 and affecting the shooting of the camera assembly 3. Moreover, the camera assembly 3 is hidden in the device area 11B, reducing the disturbance of the camera assembly 3 to the birds and providing a more comfortable and stable activity space for the birds. The partition plate 6 is provided with a shooting through hole 61 for the camera assembly 3 to shoot the birds in the living area 11A, and the camera assembly 3 shoots the birds in the living area 11A through the shooting through hole 61, greatly reducing the disturbance of the indicator light and other possible bright parts of the camera assembly 3 to the birds.

[0085] It can be understood that, in order to reduce the disturbance of the camera assembly 3 to the birds, the material of the partition plate 6 should be selected as a light-proof material to avoid the light of the indicator light of the camera assembly 3 from being transmitted to the living area 11A, that is, the partition plate 6 is preferably a light-proof partition plate 6.

[0086] Further, in order to facilitate ventilation and heat dissipation in the accommodation cavity 11 and the camera assembly 3, the partition plate 6 is provided with a ventilation hole 62, which communicates the living area 11A with the equipment area 11B, so as to facilitate air circulation between the living area 11A and the equipment area 11B, and the air inlet hole 15 provided at the bottom of the main body 1, the ventilation hole 62 and the air outlet hole 16 provided at the upper part of the main body 1 jointly form an air flow channel from bottom to top. The external cold air enters from the air inlet hole 15 to cool the birds in the living area 11A. The cold air turns into hot air after being warmed up, and the hot air naturally rises under the action of buoyancy and enters the equipment area 11B after passing through the ventilation hole 62. The hot air in the equipment area 11B continues to rise naturally under the action of buoyancy, and finally is discharged from the air outlet hole 16 to form a complete ventilation and heat dissipation system. Moreover, due to the presence of the partition plate 6, the partition plate 6 hinders the transfer of heat from the equipment area 11B to the living area 11A, so that the temperature of the living area 11A is always lower than that of the equipment area 11B. The camera assembly 3 in the equipment area 11B continuously dissipates heat to the surrounding environment in the long-term working state, so that the temperature of the equipment area 11B is higher than that of the living area 11A. Therefore, the camera assembly 3 in the equipment area 11B can be regarded as a "heat pump", which continuously heats the air in the equipment area 11B and discharges it from the air outlet, thereby driving the air in the living area 11A to supplement the equipment area 11B, forming an efficient ventilation and heat dissipation system. While improving the air quality in the accommodation cavity 11 and the comfort of the birds, it also cools the camera assembly 3 in real time, ensuring the stable operation of the camera assembly 3.

[0087] It can be understood that the number of ventilation holes 62 is at least two, and the two ventilation holes 62 are located at both ends of the partition plate 6, which facilitates the reduction of air resistance when the air flows along the inner wall of the main body 1. Of course, the ventilation hole 62 can not be provided, but the air can be discharged through the air outlet hole 15 formed by the side plate 1b provided with the rotating part 1b1 and the top plate 1a. Not setting the ventilation hole 62 can also successfully discharge the hot air in the accommodation cavity 11.

[0088] It should be noted that the manner in which the partition plate 6 is arranged in the accommodation cavity 11 includes but is not limited to fixed manner, or detachable manner, or integrated manner. For example, in the present embodiment, the partition plate 6 is arranged in the accommodation cavity 11 in a fixed manner.

[0089] Specifically, please refer to Figure 1 and Figure 5The birdhouse 1000 comprises a plurality of fixing members 7 and a plurality of screw members 8. The fixing member 7 is in an L shape and comprises a first fixing portion 71 and a second fixing portion 72. The first fixing portion 71 is provided with a first screw hole 711, and one screw member 8 is screwed to the inner wall of the accommodation cavity 11 after passing through the first screw hole 711. The second fixing portion 72 is provided with a second screw hole 721, and another screw member 8 is screwed to the partition plate 6 after passing through the second screw hole 721. One screw member 8 is screwed to one side plate 1b after passing through one first screw hole 711, and another screw member 8 is screwed to the partition plate 6 after passing through one second screw hole 721, so that one end of the partition plate 6 is fixedly connected with the side plate 1b.

[0090] It can be understood that, in order to ensure that the partition plate 6 can be stably fixed to the inner wall of the accommodation cavity 11, the number of fixing members 7 is at least two. One fixing member 7 fixes one end of the partition plate 6 to one side plate 1b, and the other fixing member 7 fixes the other end of the partition plate 6 to the other side plate 1b. In this embodiment, one fixing member 7 fixes one end of the partition plate 6 to the second plate body 1b7, and the other fixing member 7 fixes the other end of the partition plate 6 to the fourth plate body 1b9.

[0091] It should be noted that the number of fixing members 7 is greater than or equal to two, and the specific number is selected in combination with factors such as the position of the partition plate 6, the length of the partition plate 6, and the size of the fixing member 7. For example, when the length of the partition plate 6 is relatively long, four fixing members 7 can be selected. The four fixing members 7 are respectively located at four opposite corners of the same surface of the partition plate 6, so that the stress distribution of the partition plate 6 is more uniform, and the partition plate 6 can also be regarded as a “reinforcing plate” in the birdhouse 1000, thereby improving the overall structural strength of the birdhouse 1000.

[0092] Further, in order to protect the health of the birds in the living area 11A, the fixing member 7 is located on the surface of the partition plate 6 away from the living area 11A, so as to avoid scratching the birds by the fixing member 7 and the screw member 8.

[0093] In other embodiments, the partition plate 6 is arranged in the accommodation cavity 11 in a plug-in manner. Specifically, both ends of the partition plate 6 comprise plug-in portions (not shown in the figure); the side wall of the accommodation cavity 11 is provided with plug-in grooves (not shown in the figure), and the plug-in portions are accommodated in the plug-in grooves. That is, the two opposite side plates 1b are provided with plug-in grooves, and in the process of assembling the birdhouse 1000, the plug-in portion at one end of the partition plate is inserted into one plug-in groove, and the plug-in portion at the other end of the partition plate is inserted into the other plug-in groove, so that the two side plates 1b jointly clamp and fix the partition plate 6. The fixing structure of the partition plate 6 is realized without the fixing member 7, and the aesthetic appearance in the living area 11A and the equipment area 11B is improved.

[0094] Further, in order to ensure that the living area 11A has a large enough space, in some embodiments, the partition plate 6 is arranged obliquely relative to the top of the main body 1 to separate the accommodation cavity 11, and the boundary of the living area 11A does not exceed the field of view angle range of the camera assembly. The arrangement of such a partition plate 6 maximizes the space utilization in the accommodation cavity 11, and the structure arranged obliquely relative to the top of the main body 1 enables the shooting view angle of the camera assembly 3 to be directly opposite the living area 11A, thereby maximizing the overlap between the camera assembly 3 and the living area 11A, so that the camera assembly 3 has the largest shooting range, avoiding the waste of space caused by the useless area in the birdhouse 1000. Such a compact and highly space-efficient arrangement reduces the overall size of the birdhouse 1000, making it easier to place the birdhouse 1000 in a limited space, and also reduces the weight of the birdhouse 1000, reducing the risk of the birdhouse 1000 falling from the fixed position.

[0095] It should be noted that the inclination angle of the partition plate 6 arranged obliquely relative to the top of the main body 1 needs to be considered in combination with the actual shape of the birdhouse 1000, the field of view angle range of the camera assembly 3, and the depth of the living area 11A. For example, when the included angle between the top plate 1a and the bottom plate 1c is an acute angle, the inclination angle range between the partition plate 6 and the top plate 1a is 50° to 75°.

[0096] For the above-mentioned plurality of side plates 1b, please refer to Figure 1 , the plurality of side plates 1b includes a first plate body 1b6, a second plate body 1b7, a third plate body 1b8, and a fourth plate body 1b9, the partition plate 6 is connected to the second plate body 1b7 and the fourth plate body 1b9, and the first plate body 1b6 and the third plate body 1b8 are arranged opposite to each other, and the second plate body 1b7 and the fourth plate body 1b9 are arranged opposite to each other.

[0097] It can be understood that the number of the plurality of side plates 1b is not limited to four, but can also be three or any positive integer greater than three. The specific structure is not described here again, as long as it can be collectively enclosed with the top plate 1a and the bottom plate 1c to form the accommodation cavity 11.

[0098] Based on the structure of the above-mentioned plurality of side plates 1b, in the present embodiment, the above-mentioned one fixing member 7 is fixed to the second plate body 1b7, and the above-mentioned another fixing member 7 is fixed to the fourth plate body 1b9; or the above-mentioned one insertion slot is provided on the second plate body 1b7, and the above-mentioned another insertion slot is provided on the fourth plate body 1b9. The side plate 1b provided with the rotating part 1b1 represents the first plate body 1b6, and the second plate body 1b7 and the fourth plate body 1b9 are also respectively provided with rotating holes 1b2.

[0099] Further, in order to facilitate the taking and placing of the camera assembly 3, please refer to Figure 6, the main body 1 is provided with an installation window 17 for taking and placing the camera assembly 3, and the installation window 17 is communicated with the equipment area 11B, that is, the installation window 17 is communicated with the receiving cavity 11. The third plate body 1b8 includes a first sub-plate 1b81 and a second sub-plate 1b82, the first sub-plate 1b81 is rotationally arranged between the second plate body 1b7 and the third plate body 1b8, and the first sub-plate 1b81 is arranged in a spaced manner with the top plate 1a to form the air outlet hole 16, and the first sub-plate 1b81 shields the installation window 17. According to the rotation position of the first sub-plate 1b81, the installation window 17 has two states, that is, when the first sub-plate 1b81 is rotated to a preset third position, the first sub-plate 1b81 shields the installation window 17; when the first sub-plate 1b81 is rotated to a preset fourth position, the installation window 17 is opened, and the user can take out the camera assembly 3 from the equipment area 11B through the installation window 17 to transmit data, replace the battery, and perform maintenance and other operations.

[0100] It can be understood that, please refer to Figure 6 , in order to avoid that the first sub-plate 1b81 is mistakenly opened due to external factors such as vibration, the locking member for locking the side plate 1b can also be applied to the first sub-plate 1b81, and the structure and function of the locking member are described in the above embodiment, which will not be repeated here. Correspondingly, the side plate 1b adjacent to the first sub-plate 1b81 is also provided with a locking groove 1b4 matched with the locking member, so that the locking member and the locking groove 1b4 are matched to control the rotation of the first sub-plate 1b81.

[0101] Further, in order to prevent the first sub-plate 1b81 from rotating too large and compressing the space of the equipment area 11B, please refer to Figure 1 , the inner wall of the receiving cavity 11 can also be provided with a limiting block 11", when the first sub-plate 1b81 is rotated to a preset third position, the first sub-plate 1b81 abuts against the limiting block 11" and shields the installation window 17.

[0102] Further, in order to facilitate the user to rotate the first sub-plate 1b81, the first sub-plate 1b81 is provided with a buckle groove, the buckle groove is communicated with the receiving cavity 11, the user's fingers or tools can be inserted into the buckle groove, so as to drive the first sub-plate 1b81 to rotate. And the buckle groove is arranged at the connecting position between the first sub-plate 1b81 and the top plate 1a, in some embodiments, the buckle groove is combined with the air outlet hole 16 formed by the first sub-plate 1b81 and the top plate 1a to form a slot hole structure, which has the functions of air exhaust and user buckling.

[0103] It should be noted that in the embodiment, the birdhouse 1000 is shaped as a special shape, specifically, the top plate 1a is arranged at an obtuse angle with the first plate body 1b6, the first plate body 1b6 is arranged at an acute angle with the bottom plate 1c, the third plate body 1b8 is arranged at a right angle with the bottom plate 1c, and the top plate 1a is arranged at an acute angle with the third plate body 1b8. For example, the angle between the top plate 1a and the first plate body 1b6 is 120°, the angle between the first plate body 1b6 and the bottom plate 1c is 75°, the angle between the third plate body 1b8 and the bottom plate 1c is 90°, and the angle between the top plate 1a and the third plate body 1b8 is 90°. By arranging the birdhouse 1000 as a special shape, the angle of the top plate 1a is perpendicular to the angle of the sun, so that more sunlight can enter the main body 1, providing sunlight for birds to live, breed and inhabit. In addition, by arranging the birdhouse 1000 as a special shape, the overall appearance of the birdhouse 1000 is improved. It should be understood that the shape of the birdhouse 1000 can also not be arranged as a special shape, for example, as a square, rectangular or other shape, and the present application does not limit the shape of the birdhouse 1000.

[0104] Further, when the birdhouse 1000 adopts the above-mentioned angle arrangement, please refer to Figure 1 , the main body 1 further comprises a spacing plate 9, the spacing plate 9 is arranged at an angle with the partition plate 6, for example, the angle between the spacing plate 9 and the partition plate 6 is 90°. The spacing plate 9 can support the partition plate 6. By arranging the partition plate 6 and the spacing plate 9 at an angle, the camera assembly 3 can be fixed at the best angle for shooting the living area 11A, allowing bird lovers and animal protectionists to watch birds living, breeding and inhabiting at the best observation angle. Moreover, by arranging the partition plate 6 and the spacing plate 9 at an angle, the space for installing the camera assembly 3 can be reduced, and the living and breeding area can be enlarged, providing a comfortable living, breeding and inhabiting environment for birds.

[0105] It should be noted that the spacing plate 9 can not be arranged, but the partition plate 6 can be fixed by the second plate body 1b7 and the fourth plate body 1b9.

[0106] There are currently two ways for birds to enter and exit the birdhouse 1000, one is to open an entrance 14 in the main body 1, and the other is to open one of the side plates 1b of the birdhouse 1000 to form an open window for birds to enter and exit. However, the open window has poor concealment and low protection for birds in the birdhouse 1000, and the birdhouse 1000 with the entrance 14 has a fixed size of the entrance 14, which can only allow birds of a predetermined size to enter and exit. When users have the need to screen the size of birds, the fixed entrance 14 cannot be realized.

[0107] To solve the above problems, please refer to Figure 7 and Figure 8The bird house 1000 of the embodiment further comprises a bird entry assembly 1A. The main body 1 is provided with a bird entry 14 for birds to enter and exit the accommodation cavity 11. The bird entry assembly 1A is detachably arranged on the main body 1. The bird entry assembly 1A is provided with a bird entry window 1A1, and the bird entry window 1A1 is in communication with the bird entry 14. In a detachable manner, when the user has the demand of screening the size of the birds, the bird entry assembly 1A with different sizes of bird entry window 1A1 can be replaced. The detachable manner is convenient and fast to operate. The detachable bird entry assembly 1A enables the user to only replace the bird entry assembly 1A when having the demand of observing different birds, without the need to purchase the whole bird house 1000, thereby reducing the use cost.

[0108] It should be noted that the different bird entry assemblies 1A are provided with different sizes of bird entry windows 1A1, which are selected and replaced according to the actual demand. The size of the bird entry window 1A1 of the bird entry assembly 1A is smaller than the size of the bird entry 14, so as to ensure that the birds can enter the accommodation cavity 11 through the bird entry window 1A1 after the different bird entry assemblies 1A are replaced.

[0109] It can be understood that the detachable arrangement manner of the bird entry assembly 1A includes but is not limited to at least one of the following: screwing, clamping, magnetic attraction, so as to be detachably arranged on the main body 1.

[0110] For example, in the embodiment, the bird entry assembly 1A is provided with external threads (not shown in the figure). The inner wall of the bird entry 14 is provided with internal threads (not shown in the figure). The external threads are screwed with the internal threads, so as to screw the bird entry assembly 1A on the main body 1. It can be understood that the screwing connection manner has strong connection stability. The bird entry assembly 1A can be disassembled only by screwing the external threads with the internal threads, without the need of auxiliary tools, and the operation is convenient.

[0111] Alternatively, in some embodiments, referring to Figure 8 The bird entry assembly 1A comprises a fixed ring 1A2 and an elastic layer 1A3. The elastic layer 1A3 is provided with an elastic window 1A31 which can be elastically deformed under external force, so that the size of the window can be adjusted. The elastic window 1A31 is in communication with the bird entry 14. The fixed ring 1A2 holds the elastic layer 1A3 on the periphery of the bird entry 14. The arrangement of the elastic window 1A31 enables the bird house 1000 to be adjusted according to the size of different birds, thereby improving the versatility and practicality of the bird house 1000, and providing a safe and comfortable living environment for the birds.

[0112] It can be understood that the fixing ring 1A2 is fixed to the main body 1 in a manner including but not limited to screwing, clamping, etc. For example, in the embodiment, the fixing ring 1A2 is screwed to the main body 1. The fixing ring 1A2 is provided with a screw hole 1A21, the main body 1 is provided with a screwing through hole 18 around the periphery of the bird entrance 14, and the elastic layer 1A3 is provided with a through hole 1A32. The screwing member 8 passes through the screwing through hole 18, the through hole 1A32 and the screw hole 1A21 to fix the fixing ring 1A2 and the elastic layer 1A3 to the main body 1.

[0113] In some embodiments, in order to shoot the action of birds entering and exiting the birdhouse 1000, it is convenient for animal lovers and scholars to observe and study. The periphery of the bird entrance window 1A1 is provided with a camera assembly 3. The camera assembly 3 can shoot in real time, or it can be started when the camera assembly 3 is determined to have an animal nearby in cooperation with a corresponding sensing device (such as an infrared sensing device, a living body detection device, etc.). In addition, the camera assembly 3 can also transmit video or picture data to the user's device in a timed or real-time manner.

[0114] In some embodiments, the bird entrance assembly 1A is fixed by magnetic attraction. Specifically, the bird entrance assembly 1A further includes a window body (not shown), a first magnetic attraction member (not shown), and a second magnetic attraction member (not shown). The first magnetic attraction member is fixed to the periphery of the bird entrance 14, and the second magnetic attraction member is fixed to the window body. The first magnetic attraction member and the second magnetic attraction member are attracted and fixed. Through the attraction of the first magnetic member and the second magnetic attraction member, the window body can be quickly and conveniently disassembled or installed, thereby improving the operational convenience of the user in replacing the bird entrance assembly 1A.

[0115] For the above-mentioned bird entrance assembly 1A, the optional shape includes but is not limited to a circular shape, or a square shape, or a flower shape, or any pattern that can increase the aesthetic appearance and recognition. For example, in the embodiment, the shape of the bird entrance assembly 1A is square. The square bird entrance assembly 1A is convenient for the user to grasp during assembly or for the clamps to hold during batch production.

[0116] Further, the shapes of the bird entrance 14 and the bird entrance window 1A1 need to be adapted to each other to maximize the space utilization of the bird entrance 14 and the bird entrance window 1A1. The shapes of the bird entrance 14 and the bird entrance window 1A1 include but are not limited to a circular port, a square port, an oval port, etc. For example, in the embodiment, the bird entrance 14 and the bird entrance window 1A1 are both circular ports to avoid damage such as scratches to the birds passing through the bird entrance window 1A1. The circular bird entrance window 1A1 and the bird entrance 14 are adapted to the size of the birds, making it easy for the birds to enter. This design reduces the obstruction of the birds when they enter, improving their convenience in entering the birdhouse 1000.

[0117] In some embodiments, please refer to Figure 8The outer layer of the bird entry assembly 1A is provided with a metal protective layer 1A4 for protecting the bird entry assembly 1A from being bitten by woodpeckers or other animals, thereby prolonging the service life of the bird entry assembly 1A.

[0118] To facilitate the birds in the birdhouse 1000 to enter and exit from the bird entry 14, please refer to Figure 7 In the embodiment, the birdhouse 1000 is also provided with a climbing assembly 1B which is accommodated in the accommodation cavity 11. Specifically, the climbing assembly 1B is arranged on the inner wall of the main body 1 in the accommodation cavity 11, that is, in the embodiment, the climbing assembly 1B is arranged on the side plate 1b, and the climbing assembly 1B is used for birds to climb.

[0119] It should be noted that the climbing assembly 1B is arranged adjacent to the bird entry 14 to facilitate the birds to climb from the accommodation cavity 11 to the bird entry 14.

[0120] For the above-mentioned climbing assembly 1B, it can be understood that the climbing assembly 1B includes but is not limited to any one or a combination of more than one of a climbing net, a climbing rod, and a climbing groove.

[0121] In some embodiments, please refer to Figure 7 The climbing assembly 1B includes a plurality of strip-shaped grooves 1B1, and the inner wall of the accommodation cavity 11 is provided with a plurality of grooves to form the strip-shaped grooves 1B1, that is, the side plate 1b facing the inner wall of the accommodation cavity 11 is provided with a plurality of grooves which can be directly machined when the side plate 1b is cut.

[0122] It should be noted that the width of the groove is at least greater than the diameter of the bird entry 14 to ensure that the birds have enough foothold, and the depth of the groove needs to ensure that the tips of the toes of the birds extend into the groove and have a supporting point.

[0123] In other embodiments, the climbing assembly 1B includes a plurality of climbing rods (not shown in the figure), and the plurality of climbing rods are arranged on the inner wall of the accommodation cavity 11 and are spaced apart, which can ensure that the toes of the birds pass through to provide enough space for the toes of the birds to grip.

[0124] For the above-mentioned climbing rod, it can be understood that the diameter of the climbing rod needs to be adapted to the toes of the birds to facilitate the toes of the birds to grip smoothly.

[0125] Specifically, the climbing rod includes a climbing portion and a fixing portion arranged at both ends of the climbing portion, one end of the fixing portion is fixed to the inner wall of the accommodation cavity 11, and the other end of the fixing portion is connected to the climbing portion.

[0126] It can be understood that the fixing manner of the fixing portion to the inner wall of the accommodation cavity 11 includes but is not limited to screwing, clamping, interference fit, etc. For example, in the embodiment, the fixing portion is fixed to the inner wall of the accommodation cavity 11 by interference fit.

[0127] In other embodiments, the climbing assembly 1B includes a climbing net (not shown in the figure), which is arranged on the inner wall of the accommodation cavity 11 to facilitate the toe of the bird to hook the climbing net and thus smoothly climb to the bird inlet 14.

[0128] It can be understood that the arrangement manner of the climbing net on the inner wall of the accommodation cavity 11 includes but is not limited to hooking, screwing, clamping, etc.

[0129] For example, in the embodiment, the inner wall of the accommodation cavity 11 is provided with a plurality of hooks (not shown in the figure), and the climbing net includes a net body and a plurality of winding ropes arranged at the corners of the net body so that the net body can be fully stretched. One end of the winding rope is connected to the net body, and the other end of the winding rope is wound around the hook, so that the net body is fixed to the inner wall of the accommodation cavity 11 by the connection of the winding rope and the hook. It can be understood that the cooperation structure of the winding rope and the hook is more convenient to install and disassemble, and facilitates the user to replace the worn climbing net.

[0130] With the life and breeding of the young birds in the birdhouse 1000, rainwater may enter the birdhouse 1000, or condensation water may appear in the birdhouse 1000 due to changes in environmental temperature. The conventional closed birdhouse 1000 is not provided with a drainage structure, so that the rainwater or condensation water cannot be discharged in time, which may cause mold in the birdhouse 1000 and affect the health of the birds.

[0131] In order to facilitate the discharge of condensation water or rainwater, please refer to Figure 1 In the embodiment, the bottom of the main body 1 is provided with a plurality of communication holes 19 communicating with the accommodation cavity 11, which are used to discharge the condensation water or rainwater in the birdhouse 1000 from the accommodation cavity 11. Further, the communication holes 19 can also be used for ventilation together with the air inlet hole 15 to increase the communication path of the air outside and the air in the accommodation cavity 11, and improve the ventilation efficiency of the birdhouse 1000 as a whole. Correspondingly, the air inlet hole 15 can also assist the discharge of rainwater or condensation water, and improve the drainage efficiency of the birdhouse 1000. It can be understood that the shape of the communication hole 19 is one of a long strip, a round hole, or any other irregular shape.

[0132] Further, the condensate water or rainwater will be accumulated at the bottom of the accommodation cavity 11 due to its own gravity. In order to improve the drainage efficiency of the birdhouse 1000, the bottom plate 1c is arranged in an inclined manner in some embodiments. For example, the bottom plate 1c is arranged in an acute angle, that is, the bottom plate 1c is arranged in an acute angle relative to the horizontal plane of the outside. So that the rainwater accumulated at the bottom of the accommodation cavity 11 flows along the inclined angle of the bottom plate 1c, thereby draining the condensate water or rainwater in the birdhouse 1000 in a short time, ensuring that the environment in the birdhouse 1000 is dry, and providing a comfortable living space for birds.

[0133] Further, in order to avoid rainwater or condensate water from being unable to be drained in time at the communication hole 19 due to the surface tension of the water or the insufficient large inclined angle, the communication hole 19 and the bottom plate 1c are arranged at an angle in some embodiments, so as to reduce the resistance of the rainwater or condensate water flowing out at the edge of the communication hole 19, and a chamfer groove can also be arranged at the connection between the communication hole 19 and the bottom of the main body 1 towards the surface of the accommodation cavity 11, so as to accelerate the drainage of the water.

[0134] It should be noted that, in order to reduce the assembly difficulty when installing the birdhouse 1000, the bottom plate 1c can also not be arranged in an inclined manner, but the bottom plate 1c is processed. Specifically, the bottom plate 1c includes oppositely arranged first surface 1c1 and second surface 1c2, the first surface 1c1 faces the accommodation cavity 11, and the second surface 1c2 faces away from the accommodation cavity 11. The included angle between the first surface 1c1 and the second surface 1c2 is an acute angle, thereby forming the bottom plate 1c which linearly changes from thin to thick, thereby facilitating the flow of rainwater or condensate water. The direction of the bottom plate 1c which linearly changes from thin to thick is selected according to actual needs, and this embodiment will not be limited or explained.

[0135] In some embodiments, the periphery of the top plate 1a extends to form a water baffle (not shown in the figure) to shield the outside rainwater. Thus, the probability of the outside rainwater penetrating into the birdhouse 1000 from the connection gap between the top plate 1a and the side plate 1b is reduced, and the waterproof performance of the birdhouse 1000 is improved.

[0136] With the activities of the birds in the accommodation cavity 11, a large amount of bird droppings or garbage such as bird nests left by the birds will be generated in the accommodation cavity 11. In order to facilitate the breeding and habitat of the birds in the birdhouse 1000 next time, the user needs to clean the garbage. The existing birdhouse 1000 has a complicated garbage cleaning process, and some tools are needed or the whole birdhouse 1000 needs to be taken down, and the user experience is poor.

[0137] Please refer to Figure 1 In some embodiments, the birdhouse 1000 further includes a cleaning assembly 1C which is movably arranged in the accommodation cavity 11, so that the user can use the cleaning assembly 1C to quickly clean the garbage in the birdhouse 1000.

[0138] It can be understood that the cleaning assembly 1C comprises a cleaning net or a cleaning plate, wherein when the cleaning assembly 1C is a cleaning plate, the cleaning plate is provided with a plurality of holes 1C1 to facilitate the passage of garbage such as bird droppings, further, the presence of the holes 1C1 also facilitates the insertion of branches when birds build nests, thereby improving the stability of the connection between the birdhouse 1000 and the nest, and the presence of the holes 1C1 does not affect the flow of air in the accommodation cavity 11, that is, it does not affect the cold air entering the accommodation cavity 11 from the air inlet and the communication hole 19.

[0139] Need to be explained, the cleaning assembly 1C is provided with a hole 1C1, thereby reducing the overall weight of the birdhouse 1000.

[0140] And the cleaning assembly 1C is spaced apart from the bottom wall of the accommodation cavity 11 to avoid the bird nest built by the birds from blocking the air inlet hole 15 and the communication hole 19, thereby affecting the ventilation and drainage of the birdhouse 1000.

[0141] The movable arrangement of the cleaning assembly 1C includes but is not limited to pulling, flipping and the like.

[0142] Exemplarily, in the present embodiment, the cleaning assembly 1C adopts the pulling mode, specifically, the inner wall of the accommodation cavity 11 is provided with a sliding groove 111, and the cleaning assembly 1C is slidingly connected to the sliding groove 111. In the present embodiment, the sliding groove 111 is arranged on the inner wall of the side plate 1b facing the accommodation cavity 11, specifically, the sliding groove 111 is arranged on the second plate body 1b7 and the third plate body 1b9. The user can separate the cleaning assembly 1C from the accommodation cavity 11 by pulling the cleaning assembly 1C, thereby taking the garbage in the birdhouse 1000 away from the accommodation cavity 11, which facilitates the user to clean the birdhouse 1000.

[0143] In other embodiments, the cleaning assembly 1C adopts the flipping mode, that is, the birdhouse 1000 comprises a rotating member (not shown in the figure), one part of the rotating member is connected to the cleaning assembly 1C, and the other part of the rotating member is connected to the inner wall of the accommodation cavity 11. The cleaning assembly 1C is flipped by the rotating member to directly flip up the cleaning assembly 1C, thereby achieving rapid cleaning of the garbage in the birdhouse 1000.

[0144] Specifically, the rotating member comprises a rotating connection part and a rotating shaft, both ends of the rotating shaft are fixed to the inner wall of the accommodation cavity 11, one end of the rotating connection part is fixed to the cleaning assembly 1C, and the other end of the rotating connection part is rotatably arranged on a part of the rotating shaft. Through the cooperation of the rotating shaft and the rotating connection part, relative rotation can be generated, thereby driving the rotation of the cleaning assembly 1C, and the rotation of the cleaning assembly 1C is utilized to achieve rapid cleaning of the birdhouse 1000. In the present embodiment, exemplarily, one end of the rotating shaft is fixed to the second plate body 1b7, and the other end of the rotating shaft is fixed to the fourth plate body 1b9. The second plate body 1b7 and the fourth plate body 1b9 provide fixed support points for the rotating shaft.

[0145] It should be noted that, in order to avoid the cleaning assembly 1C directly abutting the cavity bottom of the receiving cavity 11 when rotating in the receiving cavity 11, causing the cleaning assembly 1C to be unable to be placed horizontally, the side wall of the receiving cavity 11 is also provided with a limiting protrusion, and the cleaning assembly 1C abuts the limiting protrusion, so that the cleaning assembly 1C is in a horizontal state in the receiving cavity 11, and the presence of the limiting protrusion also ensures the spacing between the cleaning assembly 1C and the cavity bottom of the receiving cavity 11. Alternatively, in the present embodiment, instead of providing a limiting protrusion, the cleaning assembly 1C is abutted against the above-mentioned spacing plate 9 away from one end of the rotating shaft, thereby making full use of the spacing plate 9, achieving the combination of multiple functions, simplifying the structure of the birdhouse 1000, reducing the processing difficulty, and thereby reducing the manufacturing cost.

[0146] The existing camera assembly 3 in the birdhouse 1000 is placed in the living area 11A of the birds, which affects the actual shooting effect and greatly wastes the limited space in the receiving cavity 11.

[0147] In order to optimize the placement position of the camera assembly 3, in the present embodiment, the camera assembly 3 is located at the top or side of the receiving cavity 11, and the view range of the camera assembly 3 covers the receiving cavity 11.

[0148] It can be understood that when the camera assembly 3 is located at the top, i.e. the camera assembly 3 is arranged on the top plate 1a, the shooting range of the camera assembly 3 can completely cover the living area 11A, which is convenient for users to observe all activities of the birds in the living area 11A. Or when the camera assembly 3 is located at the side, i.e. the camera assembly 3 is arranged on the side plate 1b, the shooting range of the camera assembly 3 can look down from the bird entrance 14, or the shooting range of the camera assembly 3 can look down from the bird entrance 14 and face the living area 11A.

[0149] In the present embodiment, please refer to Figure 3 , the camera assembly 3 is fixed at the intersection position of the top of the receiving cavity 11 and the side of the receiving cavity 11. Due to the particularity of the position, the view range of the camera assembly 3 can cover most of the receiving cavity 11, which is convenient for users to observe the birds entering and leaving the bird entrance 14 and the activities of the birds in the receiving cavity 11. And due to the position area, the probability of the birds colliding with the camera assembly 3 is extremely low, thereby ensuring the shooting effect of the camera assembly 3 and improving the utilization rate of the limited space in the receiving cavity 11, especially in the above-mentioned special-shaped birdhouse 1000 structure.

[0150] Further, in order to ensure that the view range of the camera assembly 3 can cover the receiving cavity 11, the top of the receiving cavity 11 and the side of the receiving cavity 11 are arranged along the view range of the camera assembly 3. The camera assembly 3 is enclosed to ensure that the view range of the camera assembly 3 is in the required space.

[0151] In some embodiments, the birdhouse 1000 comprises a fixing assembly 1D which assembles the camera assembly 3 to the inner wall of the accommodation cavity 11 by at least one of magnetic attraction, clamping, and hanging.

[0152] Further, in order to smoothly fix the camera assembly 3 at the intersection between the top of the accommodation cavity 11 and the side of the accommodation cavity 11, one end of the partition plate 6 is connected to the inner side wall of the accommodation cavity 11, and the other end of the partition plate 6 is connected to the inner top wall of the accommodation cavity 11; and the partition plate 6 is arranged at an acute angle with the inner top wall of the accommodation cavity 11. Alternatively, the partition plate 6 can be fixed to the inner side wall of the accommodation cavity 11 by the fixing member 7 described above. For specific structure and function, please refer to the above embodiments, which will not be repeated here.

[0153] It should be noted that in the above special-shaped birdhouse 1000, the partition plate 6, the top plate 1a, and the third plate body 1b8 enclose a triangular area to place the camera assembly 3. The included angle between the partition plate 6 and the top plate 1a is 50° to 75°, and the included angle between the partition plate 6 and the top plate 1a is 60°, for example. The included angle between the partition plate 6 and the third plate body 1b8 is 50° to 75°, and the included angle between the partition plate 6 and the third plate body 1b8 is 60°, for example. The included angle between the top plate 1a and the third plate body 1b8 is 50° to 75°, and the included angle between the top plate 1a and the third plate body 1b8 is 60°, for example.

[0154] The partition plate 6 is provided with a shooting through hole 61, and at least part of the camera assembly 3 is accommodated in the shooting through hole 61 for placing the camera assembly 3, so that the camera assembly 3 can shoot the living area 11A from the device area 11B to the living area 11A.

[0155] For the above-mentioned fixing assembly 1D, please refer to Figure 1 and Figure 9 The fixing assembly 1D comprises a first fastener 1D1 which spans the shooting through hole 61 to fix the camera assembly 3 to the partition plate 6, that is, the camera assembly 3 is fixed and placed at the position of the shooting through hole 61 by the first fastener 1D1, so that the camera assembly 3 can shoot the activities of birds through the shooting through hole 61.

[0156] For the above-mentioned first fastener 1D1, please refer to Figure 9 The first fastener 1D1 comprises a cladding portion 1D11 and mounting portions 1D12 arranged at both ends of the cladding portion 1D11. The mounting portions 1D12 are connected to the cladding portion 1D11, the cladding portion 1D11 wraps at least part of the camera assembly 3, and the mounting portions 1D12 are provided with mounting holes 1D121. After the threaded member 8 passes through the mounting holes 1D121, the mounting portions 1D12 are fixed to the partition plate 6, so that the camera assembly 3 is fixed to the partition plate 6 by the first fastener 1D1.

[0157] In some embodiments, the mounting portion 1D12 is provided with an elastic arm (not shown) and a clamping arm (not shown) at the connecting position of the mounting portion 1D12 and the covering portion 1D11. The elastic arm is bent and extended from the mounting portion 1D12, and the end of the elastic arm away from the mounting portion 1D12 is connected with the clamping arm. The two ends of the covering portion 1D11 are provided with clamping grooves. When the elastic arm is in a natural state (i.e., when the elastic arm is not abutting any object), the clamping arm extends into the clamping groove and can move in the clamping groove. When the elastic arm is in an elastically deformed state (i.e., when the elastic arm abuts the camera assembly), the clamping arm abuts the inner wall of the camera assembly away from the clamping groove, thereby achieving the cooperation limiting structure of the covering portion 1D11 and the clamping arm.

[0158] It can be understood that the covering portion 1D11 needs to be adapted to the camera assembly 3 to ensure the fixing effect on the camera assembly 3.

[0159] In some embodiments, the camera assembly 3 is fixed to the side wall of the accommodation cavity 11. Specifically, the main body 1 is provided with a bird entrance 14 for birds to enter and exit the accommodation cavity 11. The camera assembly 3 is fixed to the inner side wall of the accommodation cavity 11, and the shooting direction of the camera assembly 3 is angularly offset from the entering direction of the bird entrance 14. This can avoid the light at the bird entrance 14 directly irradiating the camera assembly 3, thereby avoiding problems such as glare, over-darkness of the backlight picture, and the like in the picture shot by the camera assembly 3.

[0160] Further, in order to fix the camera assembly 3 to the inner side wall, the fixing assembly 1D further includes a second fastener (not shown in the figure), which fixes the camera assembly 3 to the inner wall of the accommodation cavity 11.

[0161] It can be understood that the second fastener includes but is not limited to a hook, a fixed plate and a screw, a magnetic member, and the like. In this embodiment, they will not be exemplified one by one.

[0162] In some embodiments, the birdhouse 1000 further includes a mounting assembly 1E, please refer to Figure 2 The mounting assembly 1E is arranged on the outer side wall of the main body 1, and is used for mounting the main body 1 on a position where it needs to be hung, such as a tree, a vertical rod, a wall surface, and the like. Exemplarily, the mounting assembly 1E is a hook, which is fixed to the fourth plate body 1b9.

[0163] Alternatively, the mounting assembly 1E can not be provided, and the main body 1 can be placed on a bearing plane, such as the ground, grassland, and the like. They will not be exemplified one by one.

[0164] In the embodiment, the birdhouse 1000 comprises a main body 1 and a bird access assembly 1A, the main body 1 is provided with a bird access hole 14 for birds to access the accommodation cavity 11, and the bird access assembly 1A is detachably arranged on the main body 1, the bird access assembly 1A is provided with a bird access window 1A1, and the bird access window 1A1 is communicated with the bird access hole 14, so as to facilitate the birds to access the accommodation cavity 11 through the bird access window 1A1. By using the detachable mode, when the user has the demand of screening the size of the birds, the bird access assembly 1A with the bird access window 1A1 of different sizes can be replaced, the detachable mode is convenient and fast to operate, and the use cost of the user is also reduced, and the whole birdhouse 1000 does not need to be replaced.

[0165] It should be noted that the preferred embodiments of the present application are given in the specification and drawings of the present application, but the present application can be realized in many different forms, and is not limited to the embodiments described in the specification, and the embodiments do not serve as additional limitations on the content of the present application, and the purpose of providing these embodiments is to make the disclosure of the present application more thorough and comprehensive. Furthermore, the above technical features continue to be combined with each other to form various embodiments not listed above, which are all considered to be within the scope of the present application; further, for those skilled in the art, the above description can be improved or changed, and all these improvements and changes should be within the protection scope of the appended claims of the present application.

Claims

1. A birdhouse, characterized in that The utility model relates to a birdhouse, comprising: a main body provided with a receiving cavity and a bird entrance for birds to enter and exit the receiving cavity; a bird entrance assembly detachably arranged on the main body and provided with a bird entrance window in communication with the bird entrance.

2. The birdhouse according to claim 1, wherein the bird entrance assembly is detachably arranged on the main body by at least one of screwing, clamping and magnetic attraction.

3. The birdhouse according to claim 2, wherein the bird entrance assembly is provided with external threads; the inner wall of the bird entrance is provided with internal threads, and the external threads are screwed with the internal threads so as to screw the bird entrance assembly on the main body.

4. The birdhouse according to claim 1, wherein the bird entrance assembly comprises a fixing ring and an elastic layer, the elastic layer is provided with an elastic window capable of being stretched and retracted, the elastic window is in communication with the bird entrance, and the fixing ring holds the elastic layer against the periphery of the bird entrance.

5. The birdhouse according to claim 1, wherein a camera assembly is arranged around the bird entrance window.

6. The birdhouse according to claim 1, wherein the bird entrance assembly further comprises a window body, a first magnetic attraction member and a second magnetic attraction member, the first magnetic attraction member is fixed to the periphery of the bird entrance, the second magnetic attraction member is fixed to the window body, and the first magnetic attraction member and the second magnetic attraction member are fixed by magnetic attraction.

7. The birdhouse according to claim 1, wherein the size of the bird entrance window of the bird entrance assembly is smaller than the size of the bird entrance.

8. The birdhouse according to claim 1, wherein the bird entrance assembly is square or circular.

9. The birdhouse according to claim 1, wherein the bird entrance and the bird entrance window are both circular.

10. The birdhouse according to claim 1, wherein the bird entrance assembly is provided with a metal protective layer on the outer layer.