Pigeon trough
By designing a pigeon feed trough with baffles and sliding discharging parts, the problems of feed replenishment and cleaning in the prior art are solved, and the smooth replenishment and cleaning of feed is achieved to prevent pollution and deterioration.
Patent Information
- Application Number
- CN202422213318.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-10
- Publication Date
- 2025-06-13
- Estimated Expiration
- 2034-09-10
AI Technical Summary
The existing pigeon feed trough is unreasonable, which makes it difficult to control the feed replenishment and addition amount, and the residual feed is easily contaminated and deteriorated, and it is difficult to clean it.
A pigeon feed trough including a feed trough body, a baffle and a feeding trough is designed. The discharge area of the discharge port is adjusted through the baffle to ensure that the feed falls smoothly into the feeding trough, and the residual feed is cleaned by sliding the feeding trough.
It realizes smooth replenishment and cleaning of feed, prevents pollution and deterioration, and simplifies the cleaning process of the feed trough.
Smart Images

Figure CN222967702U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of breeding equipment, and more specifically to a pigeon feeding trough. Background Art
[0002] When breeding pigeons, it is necessary to feed them with feed. At present, there are mainly two forms of existing feeding troughs for holding feed. One is a long strip shape, that is, pigeons eat side by side in front of the feeding trough. The other is a disc shape, that is, pigeons move circumferentially around the outer periphery of the feeding trough and eat. Although the latter is convenient to use, it has requirements for its placement and space, and it is also relatively difficult to clean the feeding trough. As for the former, the existing one is mainly in the form of a single trough, that is, the core structure has only one feeding trough, and the feeding trough is filled with feed. Although this form is simple, during the feeding process, it is not easy to control the replenishment and addition amount of feed. If there is too much feed, pigeons cannot finish eating it at one time, and the remaining feed is easily contaminated and prone to deterioration later.
[0003] In addition, the existing feeding trough has an unreasonable structure design. After feeding, there is still some remaining feed in the feeding trough, which is not easy to clean. Moreover, when adding feed repeatedly later, due to the failure to clean the previous remaining feed in time, the remaining feed will accumulate repeatedly, and the feed is prone to deterioration.
[0004] Therefore, how to provide a pigeon feeding trough to overcome the above problems is an urgent problem for those skilled in the art. Content of the Utility Model
[0005] In view of this, the utility model provides a pigeon feeding trough.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0007] A pigeon feeding trough, comprising:
[0008] A feeding trough body, the feeding trough body is horizontally arranged, and a feeding port and a discharging port are respectively arranged at its top and bottom; a baffle is vertically and slidably installed on the feeding trough body, and the baffle can block the discharging port;
[0009] A feeding trough, the feeding trough is horizontally arranged, and one long side of it is fixed to the feeding trough body, the discharging port is located above one side of the feeding trough, and the discharging port can communicate with the feeding trough;
[0010] A sliding feeding member, the sliding feeding member includes a slider and a feeding plate, the slider is slidably connected to the feeding trough, the sliding direction of the slider is the same as the groove length direction of the feeding trough, the plate surface of the feeding plate is vertically arranged, the feeding plate is located in the feeding trough, the feeding plate is fixed to the slider, and the outer side wall of the feeding plate is in close sliding contact with the inner groove wall of the feeding trough.
[0011] As can be seen from the above technical solutions, compared with the prior art, the present utility model discloses a pigeon feeding trough. The present utility model designs a trough body, a baffle, and a feeding trough. The trough body can hold feed. The baffle can adjust the actual discharge area of the discharge port, so as to ensure that the feed in the trough body can smoothly fall into the feeding trough. At the same time, the feed in the trough body is separated from the feed in the feeding trough to prevent the feed in the trough body from being contaminated due to pigeons' eating or other reasons. By designing a sliding feeding member, pushing the slider can realize the movement of the feeding plate in the feeding trough. The feeding plate can reliably scrape the residual feed adhering to the inner wall of the feeding trough. At the same time, the feeding plate can push the residual feed in the feeding trough to one side inside the feeding trough, which is convenient for cleaning and can also prevent the residual feed in the feeding trough from being excessively mixed with the new feed discharged again from the discharge port, avoiding the situation that the residual feed in the feeding trough cannot be fed or processed in time, resulting in the repeated accumulation and deterioration of the residual feed in the feeding trough.
[0012] Preferably, the trough body has a vertically arranged limiting side wall. The discharge port is opened on the limiting side wall. A vertically arranged sliding groove is integrally formed on the outer side of the limiting side wall. The baffle is slidably fitted into the sliding groove. One side plate surface of the baffle is slidably and closely attached to the limiting side wall. A horizontally arranged abutting surface is integrally formed on the trough body. The abutting surface is located below the discharge port. The lower end wall of the baffle can be in close contact with the abutting surface. The discharge port can be located inside the outer contour of the baffle. The baffle can be reliably slidably connected to the trough body, and at the same time, the baffle can reliably block the discharge port.
[0013] Preferably, it further includes an adjusting plate, a fixing block, a screw rod, and an adjusting nut. The adjusting plate is vertically arranged and its plate surface is parallel to the limiting side wall. A long hole is opened on the plate surface of the adjusting plate, and the hole length direction of the long hole is vertically arranged. The two ends of the fixing block are respectively fixed to the limiting side wall and the plate surface of the adjusting plate. The fixing block is located above the baffle. One side plate surface of the baffle away from the limiting side wall is slidably and closely in contact with the adjusting plate. The screw rod is vertically fixed on the plate surface of the baffle. After the screw rod passes through the long hole, it is screwed with the adjusting nut, and the adjusting nut can abut against the adjusting plate. After the vertical position of the baffle is adjusted, it can be reliably positioned and the baffle will not move up and down randomly.
[0014] Preferably, a handle is fixed on one side plate surface of the baffle away from the limiting side wall. The operator can hold the handle to move the baffle up and down.
[0015] Preferably, the cross-section of the inner wall of the feeding trough is arc-shaped; the sliding feeding member further includes a slide rail, the slide rail is horizontally fixed at the notch of the feeding trough, the slider is slidably mounted on the slide rail, and the feeding plate is located between the slide rail and the baffle. The feeding trough is easy to clean, and the slider can slide reliably along the length direction of the feeding trough.
[0016] Preferably, it further includes a support rod and a connecting rod. The support rod is arranged on one side of the feeding trough, the length direction of the support rod is the same as the length direction of the feeding trough, and the support rod is located below the slider; both ends of the connecting rod are respectively fixed to the feeding trough and the support rod, and a plurality of connecting rods are provided, and the plurality of connecting rods are arranged at equal intervals in sequence along the length direction of the feeding trough. Pigeons can stand on the support rod when eating.
[0017] Preferably, it further includes a support frame. The support frame includes a bottom plate and a vertical rod. The bottom plate is horizontally arranged and two vertical rods are vertically fixed on its upper plate surface; one sleeve is vertically fixed on each of the two end walls of the trough body, the side wall of the sleeve is provided with an opening and a tightening bolt is screwed thereon, and the sleeves on both sides of the trough body are respectively sleeved on the two vertical rods, and the tightening bolt can abut against the vertical rod; a plurality of trough bodies are arranged vertically in sequence. The trough body and the feeding trough can be reliably installed and arranged, and at the same time, the number of trough bodies can be flexibly adjusted according to the actual situation. Description of the Drawings
[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are only the embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained according to the provided drawings.
[0019] Figure 1 is an overall axonometric view of a pigeon feeding trough;
[0020] Figure 2 is Figure 1 a partial enlarged view of part A in
[0021] Figure 3 is a front view of a pigeon feeding trough;
[0022] Figure 4 is a partial axonometric view of a pigeon feeding trough.
[0023] In the figure:
[0024] 01 is the trough body, 010 is the feeding port, 011 is the discharging port, 012 is the limiting side wall, 013 is the sliding groove, 014 is the abutting surface, 02 is the baffle plate, 03 is the feeding trough, 04 is the slider, 05 is the feeding plate, 06 is the slide rail, 07 is the adjusting plate, 070 is the long hole, 08 is the fixing block, 09 is the screw rod, 10 is the adjusting nut, 11 is the handle, 12 is the support rod, 13 is the connecting rod, 14 is the bottom plate, 15 is the vertical rod, 16 is the sleeve, 17 is the tightening bolt. Detailed implementation mode
[0025] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0026] The present invention discloses a pigeon feeding trough. By designing the trough body 01, the baffle plate 02 and the feeding trough 03, the trough body 01 can hold feed, and the baffle plate 02 can adjust the actual discharging area of the discharging port 011, so as to ensure that the feed in the trough body 01 can smoothly fall into the feeding trough 03. At the same time, the feed in the trough body 01 is separated from the feed in the feeding trough 03 to prevent the feed in the trough body 01 from being contaminated due to pigeons eating or other reasons;
[0027] By designing the sliding feeding part, pushing the slider 04 can realize the movement of the feeding plate 05 in the feeding trough 03. The feeding plate 05 can reliably scrape the residual feed adhering to the inner wall of the feeding trough 03. At the same time, the feeding plate 05 can push the residual feed in the feeding trough 03 to one side inside the feeding trough 03. It is convenient for cleaning and can also prevent the excessive mixing of the residual feed in the feeding trough 03 with the new feed discharged again from the discharging port 011, avoiding the situation that the residual feed in the feeding trough 03 cannot be fed or processed in time, resulting in the repeated accumulation and deterioration of the residual feed in the feeding trough 03;
[0028] By designing the adjusting plate 07 and the adjusting nut 10, etc., after the height of the baffle plate 02 is adjusted, it can be reliably fixed, and the baffle plate 02 will not move up and down randomly, and the baffle plate 02 can reliably block the discharging port 011;
[0029] By designing the support rod 12, pigeons can stand on the support rod 12 when eating; by designing the support frame, the trough body 01 and the feeding trough 03 can be flexibly installed and arranged according to the actual feeding amount of pigeons.
[0030] Embodiment
[0031] See the appendixFigures 1-4 The utility model is a schematic diagram of the overall and partial structures of an embodiment of the utility model. The utility model specifically discloses a pigeon feeding trough, including:
[0032] The trough body 01 is formed by bending, assembling and welding stainless steel plates. The trough body 01 is arranged horizontally and has a feeding port 010 and a discharging port 011 at the top and bottom respectively. The feeding port 010 is rectangular in shape as a whole and arranged horizontally, and the discharging port 011 is rectangular. The trough body 01 is filled with feed for pigeons. A rectangular baffle 02 is vertically slidably installed on the trough body 01. The baffle 02 can slide vertically relative to the trough body 01. When the baffle 02 moves vertically downward to a certain position, the baffle 02 can block the discharging port 011, thereby ensuring that the feed in the trough body 01 will not leak out from the discharging port 011. At the same time, the baffle 02 can be adjusted vertically to adjust the effective discharging area of the discharging port 011, that is, the baffle 02 can adjust the discharging amount of the discharging port 011.
[0033] The feeding trough 03 is arranged horizontally and one of its long sides is fixed to the trough body 01. The feeding trough 03 is located at the lower side of the trough body 01. The discharge port 011 is located at the upper side of the feeding trough 03. The discharge port 011 can be connected to the feeding trough 03, that is, the feed dropped from the discharge port 011 can enter the feeding trough 03;
[0034] The sliding material-digging member includes a slider 04 and a dipping plate 05. The slider 04 is slidably connected to the feeding trough 03. The sliding direction of the slider 04 is the same as the trough length direction of the feeding trough 03. The plate surface of the dipping plate 05 is arranged vertically. The dipping plate 05 is located in the feeding trough 03. The dipping plate 05 is fixed to the slider 04. The outer wall of the dipping plate 05 is adapted to the shape and size of the inner wall of the feeding trough 03. The outer wall of the dipping plate 05 is in close sliding contact with the inner wall of the feeding trough 03.
[0035] After the pigeons finish eating using the pigeon feeding trough, there may be residual feed in the feeding trough 03. At this time, the operator can move the slider 04 to make the material-diverting plate 05 slide in the feeding trough 03. The material-diverting plate 05 will scrape the residual feed in the feeding trough 03 and push it to one side of the feeding trough 03.
[0036] The operator determines whether to remove the residual feed from the feeding trough 03 based on the amount of residual feed in the feeding trough 03, whether the feed is deteriorated, and other factors;
[0037] The purpose of designing the sliding material removing part is: on the one hand, it is convenient to scrape and clean the residual feed in the feeding trough 03; on the other hand, the residual feed can be scraped to one side of the feeding trough 03 to prevent the residual feed in the feeding trough 03 from being excessively mixed with the new feed discharged again from the discharge port 011, so as to avoid the residual feed in the feeding trough 03 in the early stage from being unable to be fed or processed in time, causing the residual feed in the feeding trough 03 to accumulate repeatedly and deteriorate.
[0038] The trough body 01 has a vertically arranged limiting side wall 012, on which a discharge port 011 is opened, and a vertically arranged slide groove 013 is integrally formed on the outer side of the limiting side wall 012, and the baffle 02 is slidably embedded in the slide groove 013, and one side plate surface of the baffle 02 is arranged in close sliding contact with the limiting side wall 012; a horizontally arranged abutting surface 014 is integrally formed on the trough body 01, and the abutting surface 014 is located below the discharge port 011, and the lower end wall of the baffle 02 can be in close contact with the abutting surface 014, and the discharge port 011 can be located on the inner side of the outer contour of the baffle 02, that is, the baffle 02 can completely block the discharge port 011.
[0039] More specifically, it also includes an adjustment plate 07, a fixing block 08, a screw 09 and an adjustment nut 10. The rectangular adjustment plate 07 is arranged vertically and the plate surface is parallel to the limiting side wall 012. The plate surface of the adjustment plate 07 is provided with a long hole 070, and the hole length direction of the long hole 070 is arranged vertically; the two ends of the fixing block 08 are respectively fixed to the limiting side wall 012 and the plate surface of the adjustment plate 07, and the fixing block 08 is located above the baffle 02; the plate surface of the baffle 02 on the side away from the limiting side wall 012 slides tightly with the adjustment plate 07 Contact, the screw 09 is vertically fixed on the plate surface of the baffle 02, and the screw 09 passes through the long hole 070 and is screwed together with the adjusting nut 10. The adjusting nut 10 can press against the adjusting plate 07. When the adjusting nut 10 is loosened, the baffle 02 can slide along the hole length direction of the long hole 070. When the vertical position of the baffle 02 is adjusted into place, tighten the adjusting nut 10, and the vertical position of the baffle 02 is fixed. The adjusting plate 07, the screw 09 and the adjusting nut 10 can fix the baffle 02 to prevent the baffle 02 from sliding up and down at will.
[0040] A handle 11 is fixed on a side surface of the baffle 02 away from the limiting side wall 012 , and an operator can use the handle 11 to vertically move the baffle 02 .
[0041] The inner wall cross-section of the feeding trough 03 is arc-shaped. This design ensures that the feed is easy for the pigeons to eat and is convenient for cleaning the feeding trough 03. The sliding material-pickup part also includes a slide rail 06, which is horizontally fixed at the notch of the feeding trough 03. A slider 04 is slidably installed on the slide rail 06. The material-pickup plate 05 is located between the slide rail 06 and the baffle 02. The movement of the baffle 02 can be achieved by moving the slider 04, and the moving direction of the slider 04 is perpendicular to the plate surface of the baffle 02.
[0042] More specifically, it further includes a support rod 12 and a connecting rod 13. A support rod 12 and multiple connecting rods 13 are installed on each feeding trough 03. The support rod 12 with a circular cross-section is arranged on one side of the feeding trough 03, and the length direction of the support rod 12 is the same as the trough length direction of the feeding trough 03. The support rod 12 is located below the slider 04. The two ends of the connecting rod 13 are respectively fixed to the feeding trough 03 and the support rod 12. There are multiple connecting rods 13, and the multiple connecting rods 13 are arranged at equal intervals in sequence along the trough length direction of the feeding trough 03. By designing the support rod 12, when the pigeons are eating, the pigeons' claws can grasp the support rod 12.
[0043] More specifically, it further includes a support frame. The support frame includes a bottom plate 14 and a vertical rod 15. The bottom plate 14 is horizontally arranged, and two vertical rods 15 are vertically fixed on its upper plate surface. A sleeve 16 is vertically fixed on each of the two end walls of the trough body 01. The side wall of the sleeve 16 is provided with an opening and a tightening bolt 17 is screwed thereon. The sleeves 16 located on both sides of the trough body 01 are respectively sleeved on the two vertical rods 15, and the tightening bolt 17 can be tightened against the vertical rod 15. The trough body 01 is vertically provided with multiple ones in sequence. On the one hand, the trough body 01 and the feeding trough 03 can be reliably installed and arranged. On the other hand, the trough body 01 can be vertically arranged with multiple ones flexibly according to the breeding quantity of the pigeons.
[0044] When this pigeon feeding trough is in use, first add feed into the trough body 01, and then adjust the height of the baffle 02, that is, the area of the baffle 02 blocking the discharge port 011, to ensure that the feed in the trough body 01 can smoothly fall into the feeding trough 03, and start feeding the pigeons.
[0045] After the feeding is completed, the slider 04 can be slid to move the residual feed in the feeding trough 03 to one side inside the feeding trough 03, and then judge whether the above-mentioned residual feed needs to be cleaned according to the actual situation.
[0046] In this specification, each embodiment is described in a progressive manner. The key point of each embodiment is to illustrate the differences from other embodiments. The same or similar parts among the embodiments can be referred to each other.
[0047] The above description of the disclosed embodiments enables those skilled in the art to implement or use the present utility model. Various modifications to these embodiments will be obvious to those skilled in the art. The general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present utility model. Therefore, the present utility model will not be limited to these embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A pigeon trough, characterized in that: include: A trough body (01), the trough body (01) is arranged horizontally and has a feeding port (010) and a discharging port (011) at the top and bottom respectively; a baffle (02) is vertically slidably mounted on the trough body (01), and the baffle (02) is capable of blocking the discharging port (011); A feeding trough (03), wherein the feeding trough (03) is arranged horizontally and one of its long sides is fixed to the trough body (01), the discharge port (011) is located on one side above the feeding trough (03), and the discharge port (011) can be communicated with the feeding trough (03); A sliding material-dispensing member, the sliding material-dispensing member comprises a slider (04) and a material-dispensing plate (05), the slider (04) is slidably connected to the feeding trough (03), the sliding direction of the slider (04) is the same as the trough length direction of the feeding trough (03), the plate surface of the material-dispensing plate (05) is arranged vertically, the material-dispensing plate (05) is located in the feeding trough (03), the material-dispensing plate (05) is fixed to the slider (04), and the outer wall of the material-dispensing plate (05) is in sliding close contact with the inner trough wall of the feeding trough (03).
2. A pigeon trough according to claim 1, characterized in that: The trough body (01) has a vertically arranged limiting side wall (012), the limiting side wall (012) is provided with the discharge port (011), and a vertically arranged sliding groove (013) is integrally formed on the outer side of the limiting side wall (012), the baffle plate (02) is slidably embedded in the sliding groove (013), and a side plate surface of the baffle plate (02) is slidably and tightly arranged with the limiting side wall (012); a horizontally arranged abutting surface (014) is integrally formed on the trough body (01), and the abutting surface (014) is located below the discharge port (011), the lower end wall of the baffle plate (02) can be in close contact with the abutting surface (014), and the discharge port (011) can be located on the inner side of the outer contour of the baffle plate (02).
3. A pigeon trough according to claim 2, characterized in that: It also includes an adjusting plate (07), a fixing block (08), a screw (09) and an adjusting nut (10); the adjusting plate (07) is arranged vertically and the plate surface is parallel to the limiting side wall (012); a long hole (070) is opened on the plate surface of the adjusting plate (07); the hole length direction of the long hole (070) is arranged vertically; the two ends of the fixing block (08) are respectively fixed to the limiting side wall (012) and the plate surface of the adjusting plate (07); the fixing block (08) is located above the baffle (02); the plate surface of the baffle (02) away from the limiting side wall (012) is in sliding close contact with the adjusting plate (07); the screw (09) is vertically fixed on the plate surface of the baffle (02); the screw (09) passes through the long hole (070) and is screwed to the adjusting nut (10); the adjusting nut (10) can press against the adjusting plate (07).
4. A pigeon trough according to claim 2, characterized in that: A handle (11) is fixed on a side surface of the baffle (02) away from the limiting side wall (012).
5. A pigeon trough according to claim 1, characterized in that: The inner wall cross-section of the feeding trough (03) is in the shape of an arc; the sliding material-moving member also includes a slide rail (06), the slide rail (06) is horizontally fixed at the notch of the feeding trough (03), the slider (04) is slidably mounted on the slide rail (06), and the material-moving plate (05) is located between the slide rail (06) and the baffle (02).
6. A pigeon trough according to claim 1, characterized in that: It also includes a support rod (12) and a connecting rod (13), wherein the support rod (12) is arranged on one side of the feeding trough (03), the length direction of the support rod (12) is the same as the trough length direction of the feeding trough (03), and the support rod (12) is located below the slider (04); the two ends of the connecting rod (13) are respectively fixed to the feeding trough (03) and the support rod (12), and a plurality of connecting rods (13) are provided, and the plurality of connecting rods (13) are arranged in sequence and equidistantly along the trough length direction of the feeding trough (03).
7. A pigeon trough according to claim 1, characterized in that: It also includes a support frame, which includes a bottom plate (14) and vertical poles (15). The bottom plate (14) is arranged horizontally and has two vertical poles (15) fixed vertically on its upper plate surface. A sleeve (16) is vertically fixed to each of the two end walls of the trough body (01). The side wall of the sleeve (16) has a hole and is screwed with a tightening bolt (17). The sleeves (16) located on both sides of the trough body (01) are respectively sleeved on the two vertical poles (15). The tightening bolts (17) can tighten the vertical poles (15). The trough body (01) is vertically provided with a plurality of sleeves (16) in sequence.