Drinking water basin for animal husbandry
By designing a drinking water basin for animal husbandry with sedimentation components, the problem of impurities accumulation in the drinking water basin for animal husbandry is solved, and the automatic precipitation and discharge of impurities is achieved, which improves the user experience of drinking water basin and animal health.
Patent Information
- Application Number
- CN202411359944.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2044-09-27
AI Technical Summary
Impurities in existing drinking water basins for livestock are prone to accumulate, resulting in liquid rancidity and bacterial growth, affecting animal health, and breeders need to frequently clean up impurities.
A drinking water basin for animal husbandry including a pot body, a lid body and a sedimentation assembly was designed. The precipitation assembly consists of a partition member and a sealing member. The precipitation assembly is driven through the cover body. The partition member connects or blocks the water purification space and the precipitation space. The sealing member controls the opening and closing of the second open opening to achieve the precipitation and discharge of impurities.
It reduces the accumulation of impurities in the drinking water basin for animal husbandry, reduces the labor intensity of farmers, prevents liquid rancidity and bacterial growth, and improves the user experience and animal health of the drinking water basin.
Smart Images

Figure CN119924217A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of animal husbandry, and in particular to a drinking basin for animal husbandry. Background Art
[0002] In the related art, breeders regularly add clean water to the livestock drinking basin, and the livestock animals drink water from the livestock drinking basin. However, some livestock animals have dense hair on their mouths, and debris is easily attached to their mouths. When the livestock animals drink water, the debris and hair in the mouths of the livestock animals are easy to enter the livestock drinking basin. The impurities in the livestock drinking basin need to be manually cleaned before they can be discharged from the livestock drinking basin, which increases the labor intensity of the breeders. When impurities accumulate in the livestock drinking basin for a long time, the liquid in the livestock drinking basin is prone to sourness and deterioration, and it is easy to breed bacteria and viruses. When the livestock animals drink the liquid in the livestock drinking basin again, it will have a certain impact on the health of the livestock animals. Summary of the invention
[0003] In order to reduce the amount of impurities accumulated in the livestock drinking basin and to enable the impurities in the livestock drinking basin to be discharged to the external environment in a timely manner, the present application provides a livestock drinking basin.
[0004] The present application provides a livestock drinking basin adopting the following technical solution: A drinking water basin for livestock, comprising: a basin body and a cover body, wherein the basin body defines a water storage space, the top of the basin body forms a first opening, the bottom of the basin body forms a second opening, and the cover body is pivotally connected to the side wall edge of the basin body to cover or open the first opening; A sedimentation assembly, the sedimentation assembly includes a partition and a sealing member, the partition is movably arranged in the basin body in the height direction of the basin body, a connecting gap is formed between the partition and the inner circumferential wall of the basin body, the partition divides the water storage space into a clean water space and a sedimentation space, the clean water space is located above the sedimentation space, the sedimentation space is used to accommodate impurities, the sealing member is movably arranged at the second opening and connected to the partition, the cover body is transmission-connected to the sealing member to drive the sedimentation assembly to move relative to the basin body.
[0005] When the cover body rotates relative to the basin body to open the first opening, the blocking member closes the second opening, and at the same time the communication gap increases to connect the water purification space and the sedimentation space.
[0006] When the cover body rotates relative to the basin body to close the first opening, the blocking member opens the second opening, and at the same time the communication gap is reduced to block the water purification space and the sedimentation space.
[0007] By adopting the above technical solution, the sedimentation assembly is driven by the cover to move relative to the basin body. When the cover body closes the first opening, the partition connects the clean water space and the sedimentation space, and the blocking member blocks the second opening, and the impurities in the basin body are precipitated into the sedimentation space. When the cover body opens the first opening, the partition blocks the clean water space and the sedimentation space, and the blocking member opens the second opening, and the impurities and liquid in the sedimentation space are discharged to the external environment through the second opening. Compared with the prior art, the breeder does not need to frequently clean the impurities in the livestock drinking water basin, and can discharge the impurities in the livestock drinking water basin to the external environment in a timely manner, thereby reducing the amount of impurities accumulated in the livestock drinking water basin, and further improving the user experience of the livestock drinking water basin.
[0008] Preferably, a transmission rod is connected between the cover body and the sealing member, and the transmission rod is movably arranged on the outside of the basin body. The transmission rod includes a first transmission part, a second transmission part and a connecting part. The cover body has an arc-shaped first driving groove, one end of the first transmission part is connected to the first driving part, the first driving part is slidably embedded in the first driving groove, one end of the second transmission part is connected to the sealing member, the first transmission part and the second transmission part are both extended downward along the height direction of the basin body, and the connecting part is connected between the other end of the first transmission part and the other end of the second transmission part.
[0009] When the cover is opened, the cover drives the first driving part to move along the first driving groove, the transmission rod drives the blocking member to move along the height direction relative to the basin, and the blocking member drives the partition to move along the height direction relative to the basin.
[0010] By adopting the above technical solution, when the cover body opens the first opening, the cover body drives the first driving part to move downward along the first driving groove, the transmission rod drives the blocking member to move away from the second opening to open the second opening, and the blocking member synchronously drives the partition member to move close to the second opening, and the blocking member abuts against the inner peripheral wall of the basin body to block the clean water space and the sedimentation space, so that the liquid and impurities in the sedimentation space can be discharged to the external environment through the second opening. And, when the cover body closes the first opening, the cover body drives the first driving part to move upward along the first driving groove, the transmission rod drives the blocking member to move close to the second opening and abuts against the inner peripheral wall of the basin body to close the second opening, and the blocking member synchronously drives the partition member to move away from the second opening, and the blocking member separates from the inner peripheral wall of the basin body to connect the clean water space and the sedimentation space, so that the impurities in the basin body are precipitated in the sedimentation space.
[0011] Preferably, the outer peripheral wall of the basin body is provided with a first guide structure, and the transmission rod is provided with a second guide structure, and the first guide structure and the second guide structure are matched with each other in a guiding manner.
[0012] By adopting the above technical solution, the guiding cooperation of the first guide structure and the second guide structure can prevent the transmission rod from deviating from the preset motion trajectory, thereby preventing the sealing member from failing to abut against the inner wall of the basin body to close the second opening, thereby improving the working reliability of the livestock drinking basin.
[0013] Preferably, a second driving groove is provided at the end of the partition close to the sealing member, and the second driving groove is extended along the height direction. A second driving part is provided at the end of the sealing member close to the partition, and the second driving part is slidably provided in the second driving groove and limitedly cooperates with the second driving groove. The second driving part is suitable for abutting against the top wall or the bottom wall of the second driving groove so that the sealing member drives the partition to move relative to the basin body along the height direction.
[0014] By adopting the above technical solution, when the blocking member is driven to move close to the second open opening, the second driving part moves along the second driving groove away from the second open opening and stops against the top wall of the second driving groove, and the second driving part drives the partition member to move away from the second open opening to connect the clean water space and the sedimentation space. When the blocking member is driven to move away from the second open opening, the second driving part moves along the second driving groove close to the second open opening and stops against the bottom wall of the second driving groove, and the second driving part drives the partition member to move close to the second open opening to block the clean water space and the sedimentation space, thereby achieving the technical effect that the blocking member drives the partition member to move relative to the basin body to connect or block the clean water space and the sedimentation space.
[0015] Preferably, an elastic member capable of elastic deformation is connected between the blocking member and the partition member, and the elastic member is used to drive the partition member to move in a direction of reducing the size of the connecting gap.
[0016] By adopting the above technical solution, when the blocking member is driven to move away from the second open opening, the blocking member drives the partition member to move closer to the second open opening and stop against the inner circumferential wall of the basin body, and the elastic member is stretched by the blocking member, and the elastic member applies a pulling force toward the second open opening to the partition member. Under the action of the pulling force, the lower end wall of the partition member fits tightly with the basin body along the height direction of the livestock drinking basin, thereby avoiding as much as possible the liquid in the clean water space from flowing into the sedimentation space, thereby improving the sealing effect of the partition member in sealing the clean water space.
[0017] Preferably, the basin body is configured as a cone, and a cross-sectional area of the basin body gradually decreases in a direction from the first opening to the second opening.
[0018] By adopting the above technical solution, by constructing the basin body into a cone, the impurities in the basin body flow along the inner wall of the basin body to the sedimentation space, thereby avoiding the impurities in the basin body from being retained on the inner wall of the basin body as much as possible, and the impurities in the basin body can be discharged to the external environment as much as possible, thereby improving the working reliability of the livestock drinking basin.
[0019] Preferably, the outer wall of the sealing member is provided with a receiving groove, and the receiving groove is provided with a first sealing member, which is suitable for abutting against the inner wall of the basin body; the bottom wall of the partition is provided with a second sealing member, which is suitable for abutting against the inner wall of the basin body.
[0020] By adopting the above technical solution, the first sealing member abuts against the inner peripheral wall of the basin body, and the first sealing member is used to seal the gap between the blocking member and the inner peripheral wall of the basin body, thereby preventing the liquid in the basin body from flowing out to the external environment through the second opening. In addition, the lower end wall of the second sealing member abuts against the inner peripheral wall of the basin body, and the second sealing member is used to seal the gap between the partition and the inner peripheral wall of the basin body, thereby preventing the liquid in the clean water space from flowing into the sedimentation space.
[0021] Preferably, a limit member is provided on the bottom wall of the basin body, and the limit member includes a limit portion and a connecting portion, the limit portion is arranged opposite to and spaced apart from the second opening, the connecting portion is connected between the limit portion and the side wall of the second opening, the blocking member is movably arranged between the limit portion and the second opening, the blocking member is suitable for abutting against the limit portion, the limit portion is used to limit the moving stroke of the blocking member, and the outer peripheral wall of the connecting portion is provided with a drainage hole.
[0022] By adopting the above technical solution, when the blocking member is driven to move away from the second opening, the blocking member and the limiting portion abut against each other to limit the moving stroke of the blocking member, thereby preventing the blocking member from being separated from the basin body, and preventing the blocking member from being unable to be opposite to the second opening, resulting in the blocking member being unable to close the second opening, thereby improving the working reliability of the livestock drinking basin.
[0023] Preferably, the end wall of the partition away from the blocking member is constructed as a guide spherical surface, and the cross-sectional area of the guide spherical surface gradually increases from the first opening to the second opening, and the guide spherical surface is used to guide impurities in the basin.
[0024] By adopting the above technical solution, the impurities in the basin are guided by the guide ball surface, which can prevent the impurities in the basin from accumulating on the partition as much as possible, so that the impurities in the basin are settled in the sedimentation space as much as possible, thereby improving the working reliability of the livestock drinking basin.
[0025] Preferably, the livestock drinking water bowl further comprises: a water supply device, wherein the water supply device is connected to the bowl body and is used to supply water into the bowl body.
[0026] By adopting the above technical solution, the water supply device supplies water into the basin according to the liquid level in the basin to maintain the liquid level in the basin at a preset liquid level, thereby preventing the liquid level in the basin from being too low, resulting in livestock being unable to drink water through the livestock drinking basin.
[0027] In summary, the present application includes at least one of the following beneficial technical effects: 1. The cover body drives the sedimentation assembly to move relative to the basin body. When the cover body closes the first opening, the partition connects the clean water space and the sedimentation space, and the plugging member blocks the second opening. Impurities in the basin body are deposited in the sedimentation space. When the cover body opens the first opening, the partition blocks the clean water space and the sedimentation space, and the plugging member opens the second opening. Impurities and liquid in the sedimentation space are discharged to the external environment through the second opening. Compared with the prior art, farmers do not need to frequently clean impurities in the livestock drinking water basin, and can discharge impurities in the livestock drinking water basin to the external environment in a timely manner, thereby reducing the amount of impurities accumulated in the livestock drinking water basin, thereby improving the user experience of the livestock drinking water basin; 2. The guiding cooperation between the first guiding structure and the second guiding structure can prevent the transmission rod from deviating from the preset motion trajectory, thereby preventing the blocking member from being unable to abut against the inner circumferential wall of the basin body to close the second opening, thereby improving the working reliability of the livestock drinking basin; 3. When the blocking member is driven to move away from the second opening, the blocking member abuts against the limiting portion to limit the movement of the blocking member, thereby preventing the blocking member from being separated from the basin body, and preventing the blocking member from being unable to face the second opening, resulting in the blocking member being unable to close the second opening, thereby improving the working reliability of the livestock drinking basin. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 is a schematic diagram of a drinking basin for livestock according to an embodiment of the present application; Figure 2 is a cross-sectional view of a livestock drinking basin according to an embodiment of the present application; Figure 3 yes Figure 2 The enlarged schematic diagram of point A in the middle; Figure 4 yes Figure 2 The enlarged schematic diagram of point B in the middle; Figure 5 is a cross-sectional view of a livestock drinking basin according to an embodiment of the present application from another angle; Figure 6 yes Figure 5The enlarged schematic diagram of point A in the middle; Figure 7 is a cross-sectional view of a livestock drinking basin according to an embodiment of the present application from another angle; Figure 8 yes Figure 7 A magnified schematic diagram of center A.
[0029] Description of reference numerals: 100. Drinking basin for livestock; 1. basin body; 11. water storage space; 111. water purification space; 112. sedimentation space; 12. first open opening; 13. second open opening; 14. communication gap; 15. first guide structure; 16. stopper; 161. stopper; 162. connection part; 163. drainage hole; 17. pivoting member; 2. Cover body; 21. First driving groove; 3. sedimentation assembly; 31. partition; 311. second driving groove; 312. second sealing member; 32. blocking member; 321. second driving part; 322. containing groove; 323. first sealing member; 4. Transmission rod; 41. First driving part; 42. Second guide structure; 43. First transmission part; 44. Second transmission part; 45. Connecting part; 5. Elastic parts; 6. Water supply device. DETAILED DESCRIPTION
[0030] The following is combined with Figure 1-Figure 8 This application is described in further detail.
[0031] The embodiment of the present application discloses a drinking water bowl 100 for livestock.
[0032] Reference Figure 1-Figure 3 According to the embodiment of the present application, the livestock drinking water basin 100 comprises: a basin body 1, a cover body 2 and a sedimentation assembly 3. The basin body 1 defines a water storage space 11, the top of the basin body 1 forms a first opening 12, and the bottom of the basin body 1 forms a second opening 13. Specifically, along the height direction of the livestock drinking water basin 100, the top of the basin body 1 can refer to the upper end of the basin body 1, the bottom of the basin body 1 can refer to the lower end of the basin body 1, and the height direction of the livestock drinking water basin 100 can refer to Figure 2 The up and down directions in .
[0033] In addition, the cover body 2 is pivotally connected to the side wall edge of the basin body 1 for sealing or opening the first opening 12. Specifically, the livestock and animal are suitable for driving the cover body 2 to rotate close to or away from the first opening 12 so that the cover body 2 closes or opens the first opening 12. In some specific embodiments, the livestock and animal can be a pig, and the pig can arch the cover body 2 with its mouth so that the cover body 2 rotates away from the first opening 12 around the pivot axis between the cover body 2 and the basin body 1 to open the first opening 12. After the pig finishes drinking water, under the action of gravity, the cover body 2 rotates close to the first opening 12 around the pivot axis between the cover body 2 and the basin body 1 to close the first opening 12. When the cover body 2 closes the basin body 1, the cover body 2 can block pollutants from the external environment from entering the basin body 1, thereby preventing the liquid in the basin body 1 from being contaminated by pollutants from the external environment, thereby reducing the probability of livestock and animal illness.
[0034] In some specific embodiments, a pivot member 17 is provided on the side edge of the basin body 1, and the pivot member 17 passes through the cover body 2 and is pivotally connected to the cover body 2. When the cover body 2 is driven, the cover body 2 moves closer to or away from the basin body 1 around the central axis of the pivot member 17, so that the cover body 2 closes or opens the first opening 12.
[0035] Furthermore, the cover body 2 is provided with a stop portion suitable for being driven by livestock and animals. The livestock and animals can drive the stop portion through their heads to drive the cover body 2 to rotate around the pivot axis between the cover body 2 and the basin body 1 away from the first opening 12 to open the first opening 12, and the shape of the stop portion can be matched according to the head shapes of different types of livestock and animals, thereby reducing the difficulty of the livestock and animals driving the cover body 2 to open the first opening 12.
[0036] In some specific embodiments, the shape of the basin body 1 can be configured as a cylindrical shape, but the present application is not limited thereto. The shape of the basin body 1 can also be configured as a funnel shape, and the cross-sectional area of the basin body 1 gradually decreases from the first opening 12 to the second opening 13.
[0037] It should be noted that the height direction of the basin body 1 is the same as the height direction of the livestock drinking basin 100 .
[0038] The sedimentation assembly 3 includes a partition 31 and a blocking member 32. The partition 31 is movably arranged in the basin body 1. Specifically, the partition 31 is movably arranged between the first open port 12 and the second open port 13 in the height direction of the basin body 1. A connecting gap 14 is formed between the outer peripheral wall of the partition 31 and the inner peripheral wall of the basin body 1, and the partition 31 divides the water storage space 11 into a clean water space 111 and a sedimentation space 112. Along the height direction of the livestock drinking basin 100, the clean water space 111 is located above the sedimentation space 112. The sedimentation space 112 is used to accommodate impurities. Specifically, under the action of gravity, the impurities in the basin body 1 sink to the sedimentation space 112 to reduce the amount of impurities in the clean water space 111. Livestock drink the liquid in the clean water space 111, thereby minimizing the ingestion of impurities in the basin body 1 by livestock when drinking liquid, thereby minimizing the ingestion of a large amount of impurities by livestock and causing illness.
[0039] It should be noted that the liquid capacity in the clean water space 111 is slightly larger than the amount of water that livestock drinks at one time, thereby reducing liquid waste and further improving the environmental friendliness of the livestock drinking bowl 100. After the livestock finish drinking water, the volume of the sedimentation space 112 can fully accommodate the impurities in the clean water space 111, thereby preventing the impurities in the clean water space 111 from being unable to be completely precipitated in the sedimentation space 112, thereby further improving the working reliability of the livestock drinking bowl 100.
[0040] In some specific embodiments, the impurities may be feed residues, but the present application is not limited thereto, and the impurities may also be soil or the like.
[0041] Furthermore, the breeder can replace the basin body 1 with different volumes according to different types of livestock, and the breeder can also replace the basin body 1 with different volumes according to different growth stages of livestock, so that the liquid capacity in the clean water space 111 is slightly larger than the one-time drinking water amount of different types of livestock and the one-time drinking water amount of livestock at different growth stages, and the volume of the sedimentation space 112 can fully accommodate the impurities in the clean water space 111. The livestock drinking basin 100 can match different types of livestock and livestock at different growth stages, thereby improving the user experience of the livestock drinking basin 100.
[0042] It should be noted that, in the above-mentioned embodiment, applying the livestock drinking water bowl 100 to pig breeding is only one usage scenario of the livestock drinking water bowl 100. In other specific embodiments, the livestock drinking water bowl 100 can also be used in the breeding of cattle, sheep, etc.
[0043] In addition, the blocking piece 32 is movably arranged at the second open port 13 and connected to the partition 31. The cover body 2 is transmission-connected with the blocking piece 32 to drive the sedimentation assembly 3 to move relative to the basin body 1. When the cover body 2 rotates relative to the basin body 1 to open the first open port 12, the blocking piece 32 closes the second open port 13, and at the same time the connecting gap 14 increases to connect the clean water space 111 and the sedimentation space 112. When the cover body 2 closes the first open port 12, the blocking piece 32 opens the second open port 13, and the connecting gap 14 decreases to block the clean water space 111 and the sedimentation space 112.
[0044] Specifically, when the cover body 2 closes the first opening 12, the cover body 2 drives the blocking piece 32 to move closer to the second opening 13, and the blocking piece 32 stops against the inner wall of the basin body 1 to close the second opening 13, and the blocking piece 32 simultaneously drives the partition 31 to move in the direction of increasing the connecting gap 14. That is to say, the blocking piece 32 drives the partition 31 to move closer to the first opening 12, so that the partition 31 connects the clean water space 111 and the sedimentation space 112, thereby achieving the technical effect of impurities in the basin body 1 being precipitated in the sedimentation space 112.
[0045] When the cover body 2 rotates relative to the basin body 1 to close the first open opening 12, the cover body 2 drives the blocking piece 32 to move away from the second open opening 13, and the blocking piece 32 is separated from the inner circumferential wall of the basin body 1 to open the second open opening 13. At the same time, the blocking piece 32 synchronously drives the partition 31 to move in the direction of reducing the connecting gap 14. That is, the blocking piece 32 drives the movement away from the first open opening 12 so that the partition 31 blocks the clean water space 111 and the sedimentation space 112, and the impurities and liquid in the sedimentation space 112 are discharged to the external environment through the second open opening 13. In addition, the clean water space 111 and the sedimentation space 112 are blocked by the partition 31, so that the liquid in the clean water space 111 can be prevented from flowing out to the external environment through the second open opening 13, thereby reducing the number of times the breeder injects clean water into the basin body 1, reducing the breeder's labor intensity, and thus improving the user experience of the livestock drinking basin 100.
[0046] In some specific embodiments, the partition 31 can also be configured as a rotary valve, the partition 31 is pivotally mounted in the basin 1, and the partition 31 is adapted to rotate around the pivot axis between the partition 31 and the basin 1 to approach or move away from the first open port 12 to connect or block the clean water space 111 and the sedimentation space 112. When the cover 2 closes the first open port 12, the blocking member 32 drives the partition 31 to rotate close to the first open port 12 to connect the clean water space 111 and the sedimentation space 112. When the cover 2 opens the first open port 12, the blocking member 32 drives the partition 31 to rotate away from the first open port 12 to block the clean water space 111 and the sedimentation space 112.
[0047] Furthermore, there are multiple water purification spaces 111, multiple sedimentation spaces 112, multiple cover bodies 2, multiple partitions 31 and multiple blocking members 32. The multiple water purification spaces 111, multiple sedimentation spaces 112, multiple cover bodies 2, multiple partitions 31 and multiple blocking members 32 are all spaced apart in the radial direction of the livestock drinking bowl 100. Multiple livestock animals can drink water in multiple water purification spaces 111 at the same time, thereby improving the user experience of the livestock drinking bowl 100.
[0048] Thus, the sedimentation assembly 3 is driven by the cover body 2 to move relative to the basin body 1. When the cover body 2 closes the first opening 12, the partition 31 connects the clean water space 111 and the sedimentation space 112, and the blocking member 32 blocks the second opening 13, and the impurities in the basin body 1 are precipitated into the sedimentation space 112. When the cover body 2 opens the first opening 12, the partition 31 blocks the clean water space 111 and the sedimentation space 112, and the blocking member 32 opens the second opening 13, and the impurities and liquid in the sedimentation space 112 are discharged to the external environment through the second opening 13. Compared with the prior art, the breeder does not need to frequently clean the impurities in the livestock drinking water basin 100, and can discharge the impurities in the livestock drinking water basin 100 to the external environment in a timely manner, thereby reducing the amount of impurities accumulated in the livestock drinking water basin 100, and further improving the user experience of the livestock drinking water basin 100.
[0049] Reference Figure 2 and Figure 3 In some embodiments of the present application, a transmission rod 4 is connected between the cover body 2 and the sealing member 32, and the transmission rod 4 is movably arranged on the outer side of the basin body 1. The cover body 2 has a first driving groove 21 with an arc shape. The transmission rod 4 includes a first transmission part 43, a second transmission part 44 and a connecting part 45. One end of the first transmission part 43 is connected to the first driving part 41, and the first driving part 41 is slidably embedded in the first driving groove 21. One end of the second transmission part 44 is connected and cooperated with the sealing member 32. The first transmission part 43 and the second transmission part 44 are both extended downward along the height direction of the basin body 1, and the connecting part 45 is connected between the other end of the first transmission part 43 and the other end of the second transmission part 44.
[0050] Specifically, along the height direction of the livestock drinking basin 100, the upper end of the first transmission part 43 is provided with a first driving part 41, the upper end of the second transmission part 44 is connected and cooperated with the blocking part 32, the lower end of the first transmission part 43 and the lower end of the second transmission part 44 are both extended downward along the height direction of the basin body 1, and the connecting part 45 is connected between the lower end of the first transmission part 43 and the lower end of the second transmission part 44. That is to say, the shape of the transmission rod 4 is constructed in a "U" shape. It should be noted that the diameter of the blocking part 32 is larger than the diameter of the second open mouth 13.
[0051] When the cover body 2 is driven, the cover body 2 drives the first driving part 41 to move along the first driving groove 21, the transmission rod 4 drives the blocking member 32 to move relative to the basin body 1 along the height direction of the livestock drinking basin 100, and the blocking member 32 drives the partition 31 to move relative to the basin body 1 along the height direction.
[0052] Specifically, when the cover body 2 opens the first opening 12, the cover body 2 rotates away from the first opening 12 around the pivot axis between the cover body 2 and the basin body 1, the cover body 2 drives the first driving part 41 to move downward along the first driving groove 21, the transmission rod 4 drives the blocking piece 32 to move away from the second opening 13 to open the second opening, and the blocking piece 32 simultaneously drives the partition 31 to move closer to the second opening 13, the blocking piece 32 and the inner circumferential wall of the basin body 1 stop to block the clean water space 111 and the sedimentation space 112, so that the technical effect of discharging the liquid and impurities in the sedimentation space 112 to the external environment through the second opening 13 can be achieved.
[0053] When the cover body 2 closes the first opening 12, the cover body 2 rotates around the pivot axis between the cover body 2 and the basin body 1 close to the first opening 12, the cover body 2 drives the first driving part 41 to move upward along the first driving groove 21, the transmission rod 4 drives the blocking member 32 to move close to the second opening 13 and stop with the inner circumferential wall of the basin body 1 to close the second opening, and the blocking member 32 simultaneously drives the partition member 31 to move away from the second opening 13, the blocking member 32 is separated from the inner circumferential wall of the basin body 1 to connect the clean water space 111 and the sedimentation space 112, so that the technical effect of impurities in the basin body 1 being precipitated in the sedimentation space 112 can be achieved.
[0054] Reference Figure 2 , Figure 5 and Figure 6 In some embodiments of the present application, the outer peripheral wall of the basin body 1 is provided with a first guide structure 15, and the transmission rod 4 is provided with a second guide structure 42. The first guide structure 15 and the second guide structure 42 are guided to cooperate with each other. Specifically, one of the first guide structure 15 and the second guide structure 42 can be constructed as a guide protrusion, and the other can be constructed as a guide recess, and the guide protrusion extends into the guide recess to make the first guide structure 15 and the second guide structure 42 guided to cooperate with each other.
[0055] exist Figure 6 In the illustrated embodiment, the first guide structure 15 is configured as a guide protrusion, the second guide structure 42 is configured as a guide recess, and the guide recess passes through the transmission rod 4, and the guide protrusion passes through the guide recess. Through the guiding cooperation of the first guide structure 15 and the second guide structure 42, the transmission rod 4 can be prevented from deviating from the preset motion trajectory, thereby preventing the blocking member 32 from being unable to stop against the inner circumferential wall of the basin body 1 to close the second open port 13, thereby improving the working reliability of the livestock drinking basin 100.
[0056] Reference Figure 3 , Figure 7 and Figure 8 In some embodiments of the present application, a second driving groove 311 is provided at the end of the partition 31 close to the blocking member 32, and the second driving groove 311 is extended along the height direction of the livestock drinking basin 100. A second driving portion 321 is provided at the end of the blocking member 32 close to the partition 31, and the second driving portion 321 extends into the second driving groove 311, and the second driving portion 321 is slidably arranged in the second driving groove 311 and limitedly cooperates with the second driving groove 311. The second driving portion 321 is suitable for abutting against the top wall or bottom wall of the second driving groove 311, so that the blocking member 32 drives the partition 31 to move relative to the basin body 1 along the height direction of the livestock drinking basin 100. The top wall of the second driving groove 311 refers to the upper end wall of the second driving groove 311, and the bottom wall of the second driving groove 311 refers to the lower end wall of the second driving groove 311.
[0057] Specifically, when the blocking member 32 is driven to move close to the second open opening 13, the second driving portion 321 moves along the second driving groove 311 away from the second open opening 13 and stops against the top wall of the second driving groove 311, and the second driving portion 321 drives the partition 31 to move away from the second open opening 13 to connect the water purification space 111 and the sedimentation space 112. When the blocking member 32 is driven to move away from the second open opening 13, the second driving portion 321 moves along the second driving groove 311 close to the second open opening 13 and stops against the bottom wall of the second driving groove 311, and the second driving portion 321 drives the partition 31 to move close to the second open opening 13 to block the water purification space 111 and the sedimentation space 112, thereby achieving the technical effect that the blocking member 32 drives the partition 31 to move relative to the basin body 1 to connect or block the water purification space 111 and the sedimentation space 112.
[0058] Furthermore, the second driving portion 321 and the second driving slot 311 are limitedly matched, so that the second driving portion 321 can be prevented from being separated from the second driving slot 311 .
[0059] Furthermore, there can be two second drive grooves 311, and the two second drive grooves 311 are arranged opposite to and spaced apart along the first direction of the livestock drinking basin 100. The second drive portion 321 is located between the two second drive grooves 311, and the second drive portions 321 extend into the two second drive grooves 311. The blocking member 32 is simultaneously abutted against the top wall or the bottom wall of the two second drive grooves 311 through the second drive portion 321 to drive the partition 31 to move relative to the basin body 1 along the height direction of the livestock drinking basin 100. The blocking member 32 is arranged in this way, which can drive the partition 31 to move more smoothly, and can avoid the partition 31 from tilting as much as possible, thereby improving the working reliability of the livestock drinking basin 100. The first direction of the livestock drinking basin 100 can refer to Figure 7 The front-to-back direction.
[0060] Reference Figure 2 In some embodiments of the present application, an elastically deformable elastic member 5 is connected between the blocking member 32 and the partition member 31. The elastic member 5 is used to drive the partition member 31 to move in a direction of reducing the size of the connecting gap 14. In some specific embodiments, the elastic member 5 can be a spring, but the present application is not limited thereto. The elastic member 5 can also be a tension spring, etc.
[0061] Specifically, when the blocking member 32 is driven to move away from the second open opening 13, the blocking member 32 drives the partition member 31 to move closer to the second open opening 13 and stop against the inner circumferential wall of the basin body 1, and the elastic member 5 is stretched by the blocking member 32, and the elastic member 5 applies a pulling force toward the second open opening 13 to the partition member 31. Under the action of the pulling force, along the height direction of the livestock drinking basin 100, the lower end wall of the partition member 31 fits tightly with the basin body 1, thereby minimizing the flow of liquid in the clean water space 111 into the sedimentation space 112, thereby improving the sealing effect of the partition member 31 in sealing the clean water space 111.
[0062] Furthermore, there are multiple elastic members 5, and the multiple elastic members 5 are spaced apart along the circumferential direction of the livestock drinking bowl 100. The multiple elastic members 5 all apply a pulling force toward the second opening 13 to the partition 31, so that the lower end wall of the partition 31 fits more closely with the basin body 1, thereby further improving the sealing effect of the partition 31 in sealing the clean water space 111.
[0063] Reference Figure 1 and Figure 2 In some embodiments of the present application, the basin body 1 is constructed as a cone, and the cross-sectional area of the basin body 1 gradually decreases from the first open mouth 12 to the second open mouth 13. By constructing the basin body 1 as a cone, when impurities in the basin body 1 are deposited into the sedimentation space 112, the impurities in the basin body 1 flow along the inner circumferential wall of the basin body 1 to the sedimentation space 112, thereby avoiding the impurities in the basin body 1 from being retained on the inner circumferential wall of the basin body 1 as much as possible, and the impurities in the basin body 1 can be discharged to the external environment as much as possible, thereby improving the working reliability of the livestock drinking basin 100.
[0064] Reference Figure 2 and Figure 4In some embodiments of the present application, the outer peripheral wall of the blocking member 32 is provided with a receiving groove 322, and the receiving groove 322 is provided with a first sealing member 323, and the shapes of the receiving groove 322 and the first sealing member 323 are both configured to be annular, and the first sealing member 323 is suitable for abutting against the inner peripheral wall of the basin body 1. Specifically, when the blocking member 32 is driven to move close to the second open opening 13 and the blocking member 32 blocks the second open opening 13, the first sealing member 323 abuts against the inner peripheral wall of the basin body 1, and the first sealing member 323 is used to seal the gap between the blocking member 32 and the inner peripheral wall of the basin body 1, thereby preventing the liquid in the basin body 1 from flowing out to the external environment through the second open opening 13. When the blocking member 32 is driven to move away from the second open opening 13, the first sealing member 323 is separated from the inner peripheral wall of the basin body 1.
[0065] Furthermore, the bottom wall of the partition 31 is provided with a second sealing member 312, which is suitable for abutting against the inner peripheral wall of the basin body 1. Specifically, when the partition 31 is driven to move close to the second opening 13 and blocks the clean water space 111 and the sedimentation space 112, the lower end wall of the second sealing member 312 abuts against the inner peripheral wall of the basin body 1 along the height direction of the livestock drinking water basin 100. The second sealing member 312 is used to seal the gap between the partition 31 and the inner peripheral wall of the basin body 1, thereby preventing the liquid in the clean water space 111 from flowing into the sedimentation space 112. When the partition 31 is driven to move away from the second opening 13 to connect the clean water space 111 and the sedimentation space 112, the lower end wall of the second sealing member 312 is separated from the inner peripheral wall of the basin body 1.
[0066] Reference Figure 2 and Figure 5 In some embodiments of the present application, along the height direction of the livestock drinking water basin 100, a limiting member 16 is provided on the bottom wall of the basin body 1. The limiting member 16 includes a limiting portion 161 and a connecting portion 162. The limiting portion 161 is opposite to and spaced from the second open opening 13. The connecting portion 162 is connected between the limiting portion 161 and the side wall of the second open opening 13. The blocking member 32 is movably provided between the limiting portion 161 and the second open opening 13. The blocking member 32 is suitable for being movably provided with the limiting portion 161. The stop-stop and limit portion 161 are used to limit the moving stroke of the blocking member 32. Specifically, when the blocking member 32 is driven to move away from the second opening 13, the blocking member 32 and the limit portion 161 stop to limit the moving stroke of the blocking member 32, thereby preventing the blocking member 32 from being separated from the basin body 1, and preventing the blocking member 32 from being unable to be opposite to the second opening 13, resulting in the blocking member 32 being unable to close the second opening 13, thereby improving the working reliability of the livestock drinking basin 100.
[0067] In addition, a drainage hole 163 is provided on the outer peripheral wall of the connection portion 162 . The drainage hole 163 is configured as a through hole, and the liquid and impurities in the sedimentation space 112 flow out to the external environment through the drainage hole 163 .
[0068] Reference Figure 2 In some embodiments of the present application, the end wall of the partition 31 away from the blocking member 32 is configured as a guide spherical surface. Specifically, the shape of the guide spherical surface is configured as a hemispherical surface. In the direction from the first open opening 12 to the second open opening 13, the cross-sectional area of the guide spherical surface gradually increases. The guide spherical surface is used to guide impurities in the basin body 1.
[0069] Specifically, when the impurities in the basin body 1 settle to the sedimentation space 112, the impurities in the basin body 1 are guided by the guide ball surface, which can prevent the impurities in the basin body 1 from accumulating on the partition 31 as much as possible, so that the impurities in the basin body 1 can be settled in the sedimentation space 112 as much as possible, thereby improving the working reliability of the livestock drinking bowl 100.
[0070] Reference Figure 1 In some embodiments of the present application, the livestock drinking water bowl 100 may further include: a water supply device 6, which is connected to the bowl body 1 and is used to supply water to the bowl body 1.
[0071] Specifically, the water supply device 6 supplies water into the basin body 1 according to the liquid level in the basin body 1 to maintain the liquid level in the basin body 1 at a preset liquid level, thereby preventing the liquid level in the basin body 1 from being too low, causing livestock to be unable to drink water through the livestock drinking bowl 100.
[0072] In some specific embodiments, the water supply device 6 may include a negative pressure water level controller, a water supply pipe and a water delivery pipe. The negative pressure water level controller is connected between the water supply pipe and the water delivery pipe. The water supply pipe is connected to an external water source. The water delivery pipe is connected to the clean water space 111. When the liquid level in the basin body 1 is not lower than a preset liquid level, the end of the water delivery pipe close to the basin body 1 is blocked by the liquid level in the basin body 1, and air cannot enter the negative pressure water level controller through the water delivery pipe. Negative pressure is formed inside the negative pressure water level controller to block the water supply pipe and the water delivery pipe.
[0073] When the liquid level in the basin body 1 is lower than the preset liquid level, air enters the negative pressure water level controller through the water pipe, the air pressure in the negative pressure water level controller changes from negative pressure to positive pressure and connects the water supply pipe and the water pipe, and the external water source supplies water to the basin body 1 through the water supply pipe and the water pipe.
[0074] In other specific embodiments, the water supply device 6 may include a liquid level detection component, a controller, a control valve and a water pipe. The liquid level detection component is arranged in the basin body 1, one end of the water pipe is connected to an external water source, and the other end of the water pipe is connected to the clean water space 111. The control valve is arranged in the water pipe, and the control valve is used to open or close the water pipe. The controller is communicatively connected with the liquid level detection component and the control valve, and the controller is used to control the control valve to open or close according to the detection signal of the liquid level detection component.
[0075] Specifically, when the liquid level in the basin body 1 is lower than the preset liquid level, the liquid level detection element is triggered and generates a first detection signal, and the controller controls the control valve to open according to the first detection signal of the liquid level detection element, and the external water source supplies water to the basin body 1 through the water pipe. When the liquid level in the basin body 1 is not lower than the preset liquid level, the liquid level detection element is triggered and generates a second detection signal, and the controller controls the control valve to close according to the second detection signal of the liquid level detection element.
[0076] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. A drinking water bowl for livestock, characterized in that: include: A basin body (1) and a cover body (2), wherein the basin body (1) defines a water storage space (11), a first opening (12) is formed at the top of the basin body (1), a second opening (13) is formed at the bottom of the basin body (1), and the cover body (2) is pivotally connected to the side wall edge of the basin body (1) to cover or open the first opening (12); A sedimentation assembly (3), the sedimentation assembly (3) comprising a partition (31) and a blocking member (32), the partition (31) being movably arranged in the basin (1) in the height direction of the basin (1), a connecting gap (14) being formed between the partition (31) and the inner peripheral wall of the basin (1), the partition (31) dividing the water storage space (11) into a clean water space (111) and a sedimentation space (112), the clean water space (111) being located above the sedimentation space (112), the sedimentation space (112) being used to accommodate impurities, the blocking member (32) being movably arranged at the second open opening (13) and connected to and matched with the partition (31), the cover body (2) being transmission-connected to the blocking member (32) so as to drive the sedimentation assembly (3) to move relative to the basin (1); When the cover body (2) rotates relative to the basin body (1) to open the first opening (12), the blocking member (32) closes the second opening (13), and at the same time the communication gap (14) increases to connect the water purification space (111) and the sedimentation space (112); When the cover body (2) rotates relative to the basin body (1) to close the first opening (12), the blocking member (32) opens the second opening (13), and at the same time the connecting gap (14) is reduced to block the water purification space (111) and the sedimentation space (112).
2. The livestock drinking water bowl according to claim 1, characterized in that: A transmission rod (4) is connected between the cover body (2) and the blocking member (32), and the transmission rod (4) is movably arranged on the outer side of the basin body (1). The cover body (2) has an arc-shaped first driving groove (21), and the transmission rod comprises a first transmission part (43), a second transmission part (44) and a connecting part (45). One end of the first transmission part (43) is connected to the first driving part (41), and the first driving part (41) is slidably embedded in the first driving groove (21). One end of the second transmission part (44) is connected and matched with the blocking member (32). The first transmission part (43) and the second transmission part (44) are both extended downwardly along the height direction of the basin body (1), and the connecting part (45) is connected between the other end of the first transmission part (43) and the other end of the second transmission part (44); When the cover body (2) is opened, the cover body (2) drives the first driving part (41) to move along the first driving groove (21), the transmission rod (4) drives the blocking member (32) to move along the height direction relative to the basin body (1), and the blocking member (32) drives the partition (31) to move along the height direction relative to the basin body (1).
3. The livestock drinking water bowl according to claim 2, characterized in that: The outer peripheral wall of the basin body (1) is provided with a first guide structure (15), and the transmission rod (4) is provided with a second guide structure (42), and the first guide structure (15) and the second guide structure (42) are matched in guiding manner.
4. The livestock drinking water bowl according to claim 2, characterized in that: The end of the partition (31) close to the blocking member (32) is provided with a second driving groove (311), and the second driving groove (311) is extended along the height direction. The end of the blocking member (32) close to the partition (31) is provided with a second driving portion (321), and the second driving portion (321) is slidably arranged in the second driving groove (311) and is limitedly matched with the second driving groove (311). The second driving portion (321) is suitable for abutting against the top wall or the bottom wall of the second driving groove (311), so that the blocking member (32) drives the partition (31) to move relative to the basin body (1) along the height direction.
5. The livestock drinking water bowl according to claim 4, characterized in that: An elastic member (5) capable of elastic deformation is connected between the blocking member (32) and the partition member (31), and the elastic member (5) is used to drive the partition member (31) to move in a direction of reducing the size of the communication gap (14).
6. The livestock drinking water bowl according to claim 1, characterized in that: The basin body (1) is configured as a cone, and the cross-sectional area of the basin body (1) gradually decreases in the direction from the first opening (12) to the second opening (13).
7. The livestock drinking water bowl according to claim 1, characterized in that: The outer peripheral wall of the blocking member (32) is provided with a receiving groove (322), and the receiving groove (322) is provided with a first sealing member (323), and the first sealing member (323) is suitable for abutting against the inner peripheral wall of the basin body (1); The bottom wall of the partition (31) is provided with a second sealing member (312), and the second sealing member (312) is suitable for abutting against the inner peripheral wall of the basin body (1).
8. The livestock drinking water bowl according to claim 1, characterized in that: The bottom wall of the basin body (1) is provided with a limiting member (16), the limiting member (16) comprising a limiting portion (161) and a connecting portion (162), the limiting portion (161) being arranged opposite to and spaced apart from the second opening (13), the connecting portion (162) being connected between the limiting portion (161) and the side wall of the second opening (13), the blocking member (32) being movably arranged between the limiting portion (161) and the second opening (13), the blocking member (32) being suitable for abutting against the limiting portion (161), the limiting portion (161) being used for limiting the moving stroke of the blocking member (32), and the outer peripheral wall of the connecting portion (162) being provided with a drainage hole (163).
9. The livestock drinking water bowl according to claim 1, characterized in that: The end wall of the partition (31) away from the blocking member (32) is configured as a guide spherical surface, and the cross-sectional area of the guide spherical surface gradually increases in the direction from the first open opening (12) to the second open opening (13), and the guide spherical surface is used to guide impurities in the basin body (1).
10. The livestock drinking water bowl according to claim 1, characterized in that: Also includes: A water supply device (6), the water supply device (6) is connected to the basin body (1), and the water supply device (6) is used to supply water into the basin body (1).
Citation Information
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