Pig farm mosquito killing device

By setting up cleaning and collection structures in the mosquito killing device, the problem of mosquito carcasses being stuck in the power grid or falling is solved, ensuring that the power grid works normally and the pig house environment is clean, and avoiding bacterial infection.

CN223110908UActive Publication Date: 2025-07-18HUBEI BAOFENG ECOLOGICAL AGRICULTURE DEVELOPMENT CO LTD
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Patent Information

Application Number
CN202422208291.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-07-18
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

During the use of existing mosquito killing devices, mosquito corpses are prone to get stuck on the power grid or fall directly, affecting the normal operation of the power grid and may lead to bacterial infection. The mosquito corpses fall on the ground to pollute the pig house environment.

Method used

A pig farm mosquito killing device is designed, which includes a cleaning structure and a collection structure. The cleaning structure cleans the mosquito carcasses on the power grid through fixed rings, movable rings, sliding components, rotating components and cleaning brushes. The collection structure collects the falling mosquito carcasses through L-shaped support plates, collection boxes and collection drawers.

Benefits of technology

Effectively clean up mosquito corpses on the power grid, avoid mosquito corpses affecting the work of the power grid, prevent mosquito corpses from falling directly into polluting the pig house environment, ensure the normal operation of the power grid and keep the pig house clean.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of live pig breeding, and discloses a pig farm mosquito killing device which comprises a bottom plate, an L-shaped mounting plate is arranged at the top of the bottom plate, a mounting rod is arranged on the inner top wall of the L-shaped mounting plate, a mounting round block is arranged at the bottom of the mounting rod, and a power grid is arranged at the bottom of the mounting round block. The bottom of the mounting round block is provided with a mosquito-lured lamp located in the electric net, and the mosquito-lured electric net is characterized in that the outer side of the mounting round block is provided with a cleaning structure, and a collecting structure is arranged below the electric net. The cleaning structure is arranged to clean mosquito corpses attached to the power grid, so that the mosquito corpses are separated from the power grid, the mosquito corpses are prevented from influencing normal work of the power grid, and the collecting structure can collect the mosquito corpses falling by electric shock and the mosquito corpses cleaned by the cleaning structure. And mosquito corpses are prevented from directly falling on the ground to influence the internal environment of the hog house.
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Description

Technical Field

[0001] The utility model relates to the technical field of pig breeding, in particular to a mosquito killing device for a pig farm. Background Technique

[0002] In a pig farm, due to the relatively delicate skin and strong smell of the pigs, it is very easy to attract mosquito bites. Mosquito bites not only affect pig breeding, making pigs manic and restless, but also pose a great risk of disease transmission, greatly affecting the growth of pigs. Therefore, a mosquito killing device is needed to kill mosquitoes.

[0003] When the existing mosquito killing device is in use, it generally attracts and kills mosquitoes through a mosquito attracting lamp and an electric grid. During the use process, the mosquito corpses electrocuted by the electric grid will either directly fall to the ground or get stuck on the electric grid, and need to be cleaned by the staff. Otherwise, the mosquito corpses are very likely to cause bacterial infection and cause certain damage to the pig group. Therefore, a mosquito killing device for a pig farm is proposed to solve the above problems. Summary of the Utility Model

[0004] (I) Purpose of the Utility Model

[0005] To solve the technical problems in the background technique, the utility model provides a mosquito killing device for a pig farm. By setting a cleaning structure, the mosquito corpses attached to the electric grid can be cleaned, so that the mosquito corpses are separated from the electric grid, avoiding the influence of mosquito corpses on the normal operation of the electric grid. And through a collection structure, the mosquito corpses electrocuted and fallen and the mosquito corpses cleaned by the cleaning structure can be collected, avoiding the mosquito corpses directly falling on the ground and affecting the environment inside the pigsty, having the advantages of ensuring the working effect of the electric grid and avoiding the influence of mosquito corpses on the environment.

[0006] (II) Technical Solution

[0007] The utility model provides a mosquito killing device for a pig farm, including a bottom plate. An L-shaped mounting plate is arranged on the top of the bottom plate. An installation rod is arranged on the inner top wall of the L-shaped mounting plate. An installation round block is arranged at the bottom of the installation rod. A power grid is arranged at the bottom of the installation round block. A mosquito attracting lamp located inside the power grid is arranged at the bottom of the installation round block. A cleaning structure is arranged on the outer side of the installation round block. A collection structure is arranged below the power grid.

[0008] The cleaning structure includes a fixed ring, a movable ring, a sliding component, a rotating component, two cleaning rods and two cleaning brushes. The fixed ring is arranged on the outer side of the mounting round block. The movable ring is movably connected to the outer side of the fixed ring. The sliding component is arranged on the outer side of the fixed ring. The fixed ring is connected to the movable ring through the sliding component. The rotating component is arranged on the top of the fixed ring. The output end of the rotating component is connected to the movable ring. Both of the two cleaning rods are arranged at the bottom of the movable ring and are symmetrically distributed. The two cleaning brushes are respectively arranged on the outer sides of the two cleaning rods. The opposite sides of the two cleaning brushes are both connected to the outer side of the power grid.

[0009] Preferably, the sliding component includes an annular chute and an annular slider. The annular chute is formed on the outer side of the fixed ring. The annular slider is arranged on the inner side of the movable ring. The annular slider is slidably connected to the inside of the annular chute.

[0010] Preferably, the rotating component includes a fixed box, a rotating rod, a driving module, a driving gear and a toothed ring. The fixed box is arranged on the top of the mounting round block. The rotating rod is rotatably connected to the inner top wall of the fixed box and extends to the bottom of the fixed box. The driving module is arranged inside the fixed box. The output end of the driving module is connected to the rotating rod. The driving gear is arranged at the bottom of the rotating rod. The toothed ring is arranged on the outer side of the movable ring. The driving gear meshes with the toothed ring.

[0011] Preferably, the driving module includes a driving motor, a rotating shaft, a driving bevel gear and a driven bevel gear. The driving motor is arranged on the inner bottom wall of the fixed box. The rotating shaft is arranged on the output shaft of the driving motor. The driving bevel gear is arranged at the end of the rotating shaft away from the driving motor. The driven bevel gear is arranged on the outer side of the rotating rod. The driving bevel gear meshes with the driven bevel gear.

[0012] Preferably, the collecting structure includes two L-shaped support plates, a collecting box and a collecting drawer. Both of the two L-shaped support plates are arranged on the top of the mounting round block. The collecting box is arranged at the bottom of the two L-shaped support plates. The top of the collecting box is communicated with the outside. The collecting drawer is movably connected to the inside of the collecting box.

[0013] Compared with the prior art, the above technical solution of the present utility model has the following beneficial technical effects:

[0014] The mosquito killing device for the pig farm can clean the mosquito corpses attached to the electric grid through the cleaning structure, so that the mosquito corpses are separated from the electric grid, avoiding the influence of mosquito corpses on the normal operation of the electric grid. And through the collection structure, the mosquito corpses that fall due to electrocution and the mosquito corpses cleaned by the cleaning structure can be collected, preventing the mosquito corpses from directly falling on the ground and affecting the environment inside the pigsty. Brief Description of the Drawings

[0015] Figure 1 FIG. is a schematic structural view of a mosquito killing device for a pig farm proposed by the present utility model.

[0016] Figure 2 FIG. is a three-dimensional structural view of a fixing ring and its connecting mechanism in a mosquito killing device for a pig farm proposed by the present utility model.

[0017] Figure 3 FIG. is a cross-sectional view of a fixing ring, a movable ring, a sliding component and a toothed ring in a mosquito killing device for a pig farm proposed by the present utility model.

[0018] Figure 4 A mosquito killing device for a pig farm proposed by the present utility model Figure 3 is an enlarged view of A in the figure.

[0019] Figure 5 FIG. is a cross-sectional view of a driving module in a mosquito killing device for a pig farm proposed by the present utility model.

[0020] Reference numerals: 1, bottom plate; 2, L-shaped mounting plate; 3, mounting rod; 4, mounting round block; 5, electric grid; 6, cleaning structure; 61, fixing ring; 62, movable ring; 63, sliding component; 631, annular sliding groove; 632, annular sliding block; 64, rotating component; 641, fixing box; 642, rotating rod; 643, driving module; 6431, driving motor; 6432, rotating shaft; 6433, driving bevel gear; 6434, driven bevel gear; 644, driving gear; 645, toothed ring; 65, cleaning rod; 66, cleaning brush; 7, collection structure; 71, L-shaped support plate; 72, collection box; 73, collection drawer. Detailed Description of the Preferred Embodiments

[0021] To make the objectives, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below in conjunction with the specific embodiments and with reference to the accompanying drawings. It should be understood that these descriptions are merely exemplary and are not intended to limit the scope of the present utility model. In addition, in the following descriptions, the descriptions of well-known structures and technologies are omitted to avoid unnecessarily obscuring the concepts of the present utility model.

[0022] In the description of the utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "inner", "outer", "front end", "rear end", "both ends", "one end", "the other end", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the utility model. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0023] In the description of the utility model, it should be noted that unless otherwise clearly specified and defined, the terms "installed", "equipped with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, such as welding, riveting, bonding, etc., or a detachable connection, such as screw connection, key connection, pin connection, etc., or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the utility model can be understood according to specific circumstances.

[0024] As Figures 1-5 shown, a mosquito killing device for a pig farm proposed by the utility model includes a bottom plate 1. An L-shaped mounting plate 2 is provided on the top of the bottom plate 1. A mounting rod 3 is provided on the inner top wall of the L-shaped mounting plate 2. A mounting round block 4 is provided at the bottom of the mounting rod 3. A power grid 5 is provided at the bottom of the mounting round block 4. A mosquito attracting lamp is provided inside the power grid 5 at the bottom of the mounting round block 4. A cleaning structure 6 is provided on the outside of the mounting round block 4. A collecting structure 7 is provided below the power grid 5.

[0025] In the utility model, the power grid 5 and the mosquito attracting lamp can be installed through the bottom plate 1, the L-shaped mounting plate 2, the mounting rod 3 and the mounting round block 4. The mosquito attracting lamp can attract mosquitoes, and the power grid 5 can be electrified to electrocute the attracted mosquitoes, so as to achieve the killing of mosquitoes. The cleaning structure 6 can clean the mosquito corpses attached to the power grid 5, and the collecting structure 7 can collect the mosquito corpses that fall due to electrocution and cleaning.

[0026] In an alternative embodiment, the cleaning structure 6 includes a fixed ring 61, a movable ring 62, a sliding assembly 63, a rotating assembly 64, two cleaning rods 65, and two cleaning brushes 66. The fixed ring 61 is disposed outside the mounting circular block 4. The movable ring 62 is movably connected to the outside of the fixed ring 61. The sliding assembly 63 is arranged on the outside of the fixed ring 61. The fixed ring 61 is connected to the movable ring 62 through the sliding assembly 63. The rotating assembly 64 is arranged on the top of the fixed ring 61. The output end of the rotating assembly 64 is connected to the movable ring 62. The two cleaning rods 65 are both disposed at the bottom of the movable ring 62 and are symmetrically distributed. The two cleaning brushes 66 are respectively arranged on the outside of the two cleaning rods 65. The opposite sides of the two cleaning brushes 66 are both connected to the outside of the power grid 5.

[0027] It should be noted that the rotating assembly 64 can cause the movable ring 62 to rotate. Under the action of the sliding assembly 63, the movable ring 62 can rotate stably on the outside of the fixed ring 61. When the movable ring 62 rotates, the movable ring 62 will drive the two cleaning rods 65 to rotate. The two cleaning rods 65 will respectively drive the two cleaning brushes 66 to rotate. The outside of the power grid 5 can be cleaned by the two cleaning brushes 66 to prevent mosquito corpses from adhering to the outside of the power grid 5 and affecting the normal operation of the power grid 5.

[0028] Among them, the cleaning brush 66 is made of rubber, and rubber is non-conductive, ensuring that the cleaning brush 66 will not affect the normal operation of the power grid 5 during operation.

[0029] In an alternative embodiment, the sliding assembly 63 includes an annular chute 631 and an annular slider 632. The annular chute 631 is opened on the outside of the fixed ring 61. The annular slider 632 is arranged on the inside of the movable ring 62. The annular slider 632 is slidably connected to the inside of the annular chute 631.

[0030] It should be noted that the movable ring 62 can be stably supported by the annular chute 631 and the annular slider 632. At the same time, it also ensures that the movable ring 62 moves stably on the outside of the fixed ring 61, ensuring the stability of the installation of the fixed ring 61.

[0031] In an alternative embodiment, the rotating assembly 64 includes a fixed box 641, a rotating rod 642, a driving module 643, a driving gear 644, and a toothed ring 645. The fixed box 641 is arranged on the top of the mounting circular block 4. The rotating rod 642 is rotatably connected to the inner top wall of the fixed box 641 and extends to the bottom of the fixed box 641. The driving module 643 is arranged inside the fixed box 641. The output end of the driving module 643 is connected to the rotating rod 642. The driving gear 644 is arranged at the bottom of the rotating rod 642. The toothed ring 645 is arranged on the outside of the movable ring 62. The driving gear 644 meshes with the toothed ring 645.

[0032] It should be noted that the driving module 643 can drive the rotating rod 642 to rotate. The rotating rod 642 will drive the driving gear 644 to rotate. The driving gear 644 will drive the toothed ring 645 engaged with it to rotate. The toothed ring 645 will drive the movable ring 62 to rotate.

[0033] In an optional embodiment, the driving module 643 includes a driving motor 6431, a rotating shaft 6432, a driving bevel gear 6433, and a driven bevel gear 6434. The driving motor 6431 is arranged on the inner bottom wall of the fixed box 641. The rotating shaft 6432 is arranged on the output shaft of the driving motor 6431. The driving bevel gear 6433 is arranged at one end of the rotating shaft 6432 away from the driving motor 6431. The driven bevel gear 6434 is arranged on the outer side of the rotating rod 642. The driving bevel gear 6433 is engaged with the driven bevel gear 6434.

[0034] It should be noted that when the driving motor 6431 is started, the output shaft of the driving motor 6431 will drive the rotating shaft 6432 to rotate. The rotating shaft 6432 will drive the driving bevel gear 6433 to rotate. The driving bevel gear 6433 will drive the driven bevel gear 6434 engaged with it to rotate. The driven bevel gear 6434 will drive the rotating rod 642 to rotate.

[0035] In an optional embodiment, the collecting structure 7 includes two L-shaped support plates 71, a collecting box 72, and a collecting drawer 73. The two L-shaped support plates 71 are both arranged on the top of the mounting round block 4. The collecting box 72 is arranged at the bottom of the two L-shaped support plates 71. The top of the collecting box 72 is communicated with the outside. The collecting drawer 73 is movably connected to the inside of the collecting box 72.

[0036] It should be noted that the collecting drawer 73 can collect the mosquito corpses dropped by the electric shock and the mosquito corpses dropped by the cleaning structure 6, avoiding the mosquito corpses from directly falling on the ground. By taking out the collecting drawer 73 from the inside of the collecting box 72, the mosquito corpses can be centrally processed.

[0037] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A mosquito killing device for a pig farm, comprising a bottom plate (1), a top of the bottom plate (1) is provided with an L-shaped mounting plate (2), an inner top wall of the L-shaped mounting plate (2) is provided with a mounting rod (3), a bottom of the mounting rod (3) is provided with a mounting round block (4), a bottom of the mounting round block (4) is provided with an electric grid (5), and a mosquito attracting lamp located inside the electric grid (5) is provided at a bottom of the mounting round block (4), characterized in that, A cleaning structure (6) is provided on the outer side of the installation round block (4), and a collection structure (7) is provided below the power grid (5); The cleaning structure (6) includes a fixed ring (61), a movable ring (62), a sliding component (63), a rotating component (64), two cleaning rods (65) and two cleaning brushes (66). The fixed ring (61) is provided on the outer side of the installation round block (4), the movable ring (62) is movably connected to the outer side of the fixed ring (61), the sliding component (63) is arranged on the outer side of the fixed ring (61), the fixed ring (61) is connected to the movable ring (62) through the sliding component (63), the rotating component (64) is arranged on the top of the fixed ring (61), the output end of the rotating component (64) is connected to the movable ring (62), both of the two cleaning rods (65) are arranged at the bottom of the movable ring (62) and are symmetrically distributed, the two cleaning brushes (66) are respectively arranged on the outer sides of the two cleaning rods (65), and the opposite sides of the two cleaning brushes (66) are both connected to the outer side of the power grid (5).

2. The mosquito killing device for a pig farm according to claim 1, characterized in that, The sliding component (63) includes an annular sliding groove (631) and an annular sliding block (632). The annular sliding groove (631) is opened on the outer side of the fixed ring (61), the annular sliding block (632) is arranged on the inner side of the movable ring (62), and the annular sliding block (632) is slidably connected to the inside of the annular sliding groove (631).

3. The mosquito killing device for a pig farm according to claim 1, wherein, The rotating component (64) includes a fixed box (641), a rotating rod (642), a driving module (643), a driving gear (644) and a toothed ring (645). The fixed box (641) is arranged on the top of the installation round block (4), the rotating rod (642) is rotatably connected to the inner top wall of the fixed box (641) and extends to the bottom of the fixed box (641), the driving module (643) is arranged inside the fixed box (641), the output end of the driving module (643) is connected to the rotating rod (642), the driving gear (644) is arranged at the bottom of the rotating rod (642), the toothed ring (645) is arranged on the outer side of the movable ring (62), and the driving gear (644) is meshed with the toothed ring (645).

4. The mosquito killing device for a pig farm according to claim 3, characterized in that, The driving module (643) includes a driving motor (6431), a rotating shaft (6432), a driving bevel gear (6433) and a driven bevel gear (6434). The driving motor (6431) is arranged on the inner bottom wall of the fixed box (641), the rotating shaft (6432) is arranged on the output shaft of the driving motor (6431), the driving bevel gear (6433) is arranged at the end of the rotating shaft (6432) away from the driving motor (6431), the driven bevel gear (6434) is arranged on the outer side of the rotating rod (642), and the driving bevel gear (6433) is meshed with the driven bevel gear (6434).

5. A mosquito killing device for a pig farm according to claim 1, characterized in that The collection structure (7) includes two L-shaped support plates (71), a collection box (72), and a collection drawer (73). The two L-shaped support plates (71) are both arranged on the top of the installation round block (4). The collection box (72) is arranged at the bottom of the two L-shaped support plates (71). The top of the collection box (72) is communicated with the outside. The collection drawer (73) is movably connected to the inside of the collection box (72).