Intelligent pet feeding monitoring device
Through the pet intelligent feeding monitoring device, interactive feedback with the pet, precise quantitative feeding and real-time drying and storage are achieved, which solves the problems of insufficient interactivity, quantitative accuracy and grain storage monitoring of existing pet feeding devices, and improves the intelligence and healthiness of pet feeding.
Patent Information
- Application Number
- CN202510928702.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-07
- Publication Date
- 2025-09-12
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Existing pet feeding devices lack interactivity with pets, have insufficient quantitative accuracy, and grain storage equipment cannot be monitored and actively regulated in real time, resulting in decreased pet eating enthusiasm, health problems, and food spoilage.
A pet intelligent feeding monitoring device is designed, which includes an intelligent feeding monitoring main cabin, a quantitative feeding metering component, an intelligent power drive system and a pet trigger sensing component to enable pets to eat independently, accurately feed and store food in real time.
It enhances the fun and activity of pets eating, ensures the accuracy of quantitative feeding, prevents food spoilage, provides scientific feeding plans, and protects the health of pets.
Smart Images

Figure CN120615751A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of pet breeding, and in particular to an intelligent pet feeding monitoring device. Background Art
[0002] With the increasing popularity of pet ownership, pet feeding equipment is gradually evolving from traditional manual methods to automated and intelligent ones. Currently, the pet feeding devices on the market primarily consist of timed and fixed-quantity feeding devices and manually controlled devices. Timed and fixed-quantity feeding devices automatically feed animals based on preset times and feeding amounts, while manually controlled devices rely on manual operation by the owner. Both types of devices have exposed numerous problems in actual use.
[0003] On the one hand, existing devices lack interactivity with pets and cannot meet their independent feeding needs. Traditional timed and fixed-quantity feeding models ignore pets' eating desires and activity patterns, forcing them to passively feed. Long-term use can easily lead to a decrease in pets' eating motivation and even anorexia. Manual control devices rely entirely on the owner's operation. If the owner forgets or is unable to feed the pet in time due to work or outings, this can seriously affect the pet's health.
[0004] On the other hand, insufficient metering accuracy is a common drawback of existing pet feeding equipment. Most devices use simple gravity feeding or extensive mechanical control, which cannot accurately control feeding volume. Overfeeding can easily lead to health problems such as obesity and diabetes in pets, while underfeeding leads to unbalanced nutritional intake, affecting growth, development, and health.
[0005] Furthermore, existing equipment for pet food storage has significant shortcomings. Traditional grain storage equipment relies on sealed silos for passive moisture protection and lacks real-time monitoring and active control mechanisms. In humid environments or when stored for extended periods, pet food is susceptible to moisture and mold, which not only results in food waste but can also lead to gastrointestinal problems if pets accidentally ingest spoiled food, threatening their lives and health.
[0006] It can be seen that the development of an intelligent pet feeding monitoring device has become an inevitable trend to solve the current pet feeding problems and promote technological innovation of pet feeding equipment. Summary of the Invention
[0007] The purpose of the present invention is to provide an intelligent pet feeding monitoring device to solve the problem that existing pet feeding devices have obvious deficiencies in key technical aspects such as interactivity, quantitative accuracy and food quality assurance, and are difficult to meet the needs of pets for refined and scientific feeding.
[0008] To achieve the above-mentioned object, the present invention provides the following technical solutions: a pet intelligent feeding monitoring device, comprising an intelligent feeding monitoring main cabin, a quantitative feeding metering component, an intelligent power drive system, and a pet trigger sensing component;
[0009] An opening is provided at the upper end of the intelligent feeding monitoring main cabin, a pet storage box is provided inside the opening, an intelligent control central warehouse is fixedly connected to the lower end of the pet storage box, and a quantitative feeding metering component is installed inside the intelligent control central warehouse; a discharge trough is provided at the lower end of the interior of the intelligent feeding monitoring main cabin, slide grooves are provided on both sides of the inner wall of the discharge trough, and an intelligent discharge control box is placed inside the discharge trough; an intelligent power drive system is fixedly installed at the lower end of the rear end surface of the intelligent feeding monitoring main cabin; a pet trigger sensing component is installed on one side surface of the outer end of the intelligent feeding monitoring main cabin.
[0010] Preferably, a guide rail and a pet food guide rail are further provided inside the main cabin of the intelligent feeding monitoring system; two guide rails are provided, which are respectively installed on the lower end surface of the opening opened in the main cabin of the intelligent feeding monitoring system; two pet food guide rails are provided, which are respectively provided on both sides of the bottom surface of the discharge trough.
[0011] Preferably, the pet storage box is also provided with a dustproof and moisture-proof sealed bin cover, a bin guide strip, a command drive motor and a pet food drying component; a feed trough is provided in the center of the upper end surface of the pet storage box, and a dustproof and moisture-proof sealed bin cover is movably connected to the surface of one side of the feed trough, and pet food drying components are respectively provided on both sides of the interior of the pet storage box, wherein bin guide strips are respectively installed on both sides of the rear end surface of the pet storage box, and the outer ends of the bin guide strips are respectively slidably sleeved on the inside of the two guide rails, and a diversion hole is provided in the center of the bottom surface of the pet storage box, and the diversion hole extends to the center of the interior of the intelligent control central bin; a command drive motor is installed on one side of the inner wall of the intelligent control central bin.
[0012] Preferably, the two pet food drying components respectively include an inclined guide base, an insulated constant temperature drying bin, an intelligent sensing receiving unit, a constant temperature heating drying wire and a high-precision leak-proof isolation net; the inclined guide bases are respectively fixedly installed on both sides of the inner wall of the pet storage box, and drying grooves are respectively opened on the inclined surfaces of the inclined guide bases, and high-precision leak-proof isolation nets are provided inside the drying grooves. Insulated constant temperature drying bins are also respectively installed in the center of the inclined guide bases, and the lower ends of the insulated constant temperature drying bins are connected to the intelligent sensing receiving units, and constant temperature heating drying wires are coiled inside the insulated constant temperature drying bins.
[0013] Preferably, the quantitative feeding metering component includes a diversion conveying pipe and a quantitative metering cylinder; the diversion conveying pipe is fixedly installed in the center of the bottom surface of the intelligent feeding monitoring main cabin, the lower end of the diversion conveying pipe is correspondingly arranged directly above the intelligent discharge control box, and the quantitative metering cylinder is sleeved inside the upper end of the diversion conveying pipe.
[0014] Preferably, the quantitative feeding metering component also includes a wear-resistant bearing, a linkage transmission gear plate, a power transmission worm, a fan-shaped baffle plate and a fan-shaped baffle plate 1; the upper end surface of the diversion and conveying pipe is fixedly installed with a wear-resistant bearing, and the inner wall surface of the wear-resistant bearing is tightly fitted on the outer end surface of the quantitative metering cylinder, wherein the upper end of the quantitative metering cylinder is correspondingly sleeved on the outer end of the diversion hole, and a linkage transmission gear plate is also fixedly sleeved on the upper end surface of the quantitative metering cylinder, and a power transmission worm is meshed on one side of the outer end of the linkage transmission gear plate, and the other end of the power transmission worm is correspondingly connected to the output end of the command drive motor; the inner wall of the lower end of the diversion and conveying pipe is provided with a fan-shaped baffle plate, and the inner wall of the lower end of the quantitative metering cylinder is provided with a fan-shaped baffle plate 1, and the fan-shaped baffle plate and the fan-shaped baffle plate 1 are arranged alternately up and down.
[0015] Preferably, the intelligent power drive system includes an installation box, a wireless signal receiving module, a synchronous servo motor and a support base; the installation box is fixedly connected to the lower end surface of the rear end of the intelligent feeding monitoring main cabin, a wireless signal receiving module is installed in the center of the installation box, synchronous servo motors are respectively installed on the two side surfaces of the lower end of the wireless signal receiving module, and support bases are also respectively installed on both sides of the outer end of the wireless signal receiving module.
[0016] Preferably, the intelligent power drive system also includes a power transmission shaft, a transmission bevel gear plate, an adjusting screw and a driven bevel gear plate; the output ends of the two synchronous servo motors are respectively fixedly connected to the power transmission shafts, and the front ends of the power transmission shafts pass through the inside of the support base and are correspondingly connected to the two sides of the inner wall of the installation box, and transmission bevel gear plates are respectively installed on the front end surfaces of the two power transmission shafts, and the upper ends of the transmission bevel gear plates are meshed with driven bevel gear plates, and the axial center surfaces of the two driven bevel gear plates are respectively connected with adjusting screws, and the front ends of the adjusting screws pass through the inside of the installation box and extend to the inside of the slide groove opened in the discharge chute.
[0017] Preferably, sliding guide positioning strips are respectively provided on both side surfaces of the outer end of the intelligent discharging control box, and the outer ends of the sliding guide positioning strips are slidably sleeved on the inside of the slide groove, and threaded holes are respectively opened on the rear end surfaces of the two sliding guide positioning strips, and the outer ends of the adjusting screws are correspondingly sleeved on the inside of the threaded holes; auxiliary guide wheels are also respectively installed on both sides of the lower end surface of the intelligent discharging control box, and the outer ends of the auxiliary guide wheels are correspondingly slidably sleeved on the inside of the two pet food guide rails.
[0018] Preferably, the pet trigger sensing component includes an induction control connection box, a micro-sensing trigger switch, a rigid linkage connecting rod, a pet food attracting ball, a main control circuit board and a wireless signal transmission module; the induction control connection box is fixedly installed on one side of the outer end surface of the intelligent feeding monitoring main cabin, an opening is provided on the front end surface of the induction control connection box, a micro-sensing trigger switch is installed inside the opening, a rigid linkage connecting rod is connected to the upper end of the micro-sensing trigger switch, the front end of the rigid linkage connecting rod passes through the inside of the opening and extends to the outer end of the induction control connection box, and a pet food attracting ball is installed; the output end of the micro-sensing trigger switch inside the induction control connection box is connected to the main control circuit board, and a wireless signal transmission module is fixedly installed on the upper end of the main control circuit board.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] Traditional pet feeding devices are mostly timed and quantitative or manually controlled modes, lack interactive feedback with the pet, and cannot meet the pet's independent eating needs. This pet intelligent feeding monitoring device is innovatively equipped with a pet trigger sensing component. When the pet actively touches the pet food ball, the force is transmitted to the micro-motion sensor trigger switch through the rigid linkage connecting rod, triggering the device to start the feeding process. This intelligent interactive design breaks the passive feeding mode, allowing pets to decide the time to eat independently, enhancing the fun and activity of pets eating, and can flexibly adjust feeding according to the actual needs of the pet to avoid food waste and spoilage, truly realizing the intelligence and personalization of pet feeding.
[0021] Existing pet feeding equipment often has problems such as large feeding amount errors and difficulty in control due to its simple quantitative structure. This pet intelligent feeding monitoring device relies on the precise coordination of quantitative feeding metering components and intelligent power drive system to achieve high-precision quantitative feeding. The quantitative metering cylinder and the fan-shaped baffle plate in the diversion conveying pipe quantitatively intercept pet food by controlling the rotation angle; the threaded transmission of the adjusting screw and the intelligent discharge control box in the intelligent power drive system adjusts the opening and closing degree of the discharge port, which greatly reduces the feeding error. Compared with traditional gravity feeding or extensive mechanical control devices, this device can scientifically formulate feeding amounts according to factors such as pet size and age, effectively avoiding obesity caused by overfeeding and nutritional imbalance caused by insufficient feeding, and providing reliable guarantee for the healthy diet of pets.
[0022] Most traditional pet food storage equipment only relies on sealed bins for passive moisture-proofing and cannot monitor food quality in real time, making it easy for food to become moldy and spoiled. This pet intelligent feeding monitoring device integrates a pet food drying component in the pet storage box, and monitors the humidity of pet food in real time through an intelligent sensing receiving unit. Once the humidity exceeds the standard, the constant temperature heating drying wire in the insulated constant temperature drying bin is immediately started for drying. At the same time, the high-precision leak-proof isolation net effectively prevents food from falling during the drying process. This transition from passive protection to active monitoring and control can dynamically ensure that pet food is always dry and fresh. Compared with traditional food storage methods, it significantly extends the shelf life of food, reduces the risk of gastrointestinal diseases caused by eating spoiled food, and protects the health of pets' diet in all aspects. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 This is a schematic diagram of the internal structure of the pet storage box of the present invention;
[0025] Figure 3 This is a schematic diagram of the internal structure of the main cabin of the intelligent feeding monitoring system of the present invention;
[0026] Figure 4 This is a schematic diagram of the pet food drying assembly structure of the present invention;
[0027] Figure 5 This is a schematic diagram of the structure of the quantitative feeding metering component of the present invention;
[0028] Figure 6 This is a schematic structural diagram of the intelligent power drive system of the present invention;
[0029] Figure 7 This is a structural diagram of the intelligent discharging control box of the present invention;
[0030] Figure 8 This is a structural diagram of the pet trigger sensing component of the present invention.
[0031] In the figure: 1. Intelligent feeding monitoring main cabin; 11. Guide rail; 12. Pet food guide rail; 2. Pet food storage box; 21. Intelligent control center compartment; 22. Dust-proof and moisture-proof sealed compartment cover; 23. Food box guide strip; 24. Command drive motor; 3. Quantitative feeding metering component; 31. Diversion conveying pipe; 32. Quantitative metering cylinder; 33. Wear-resistant bearing; 34. Linkage transmission gear plate; 35. Power transmission worm; 36. Fan-shaped baffle; 37. Fan-shaped baffle one; 4. Intelligent discharge control box; 41. Sliding guide positioning strip; 42. Auxiliary guide wheel; 5. Intelligent power drive system; 51. Installation box; 5 2. Wireless signal receiving module; 53. Synchronous servo motor; 54. Support base; 55. Power transmission shaft; 56. Transmission bevel gear plate; 57. Adjustment screw; 58. Driven bevel gear plate; 6. Pet trigger sensing component; 61. Induction control connection box; 62. Micro-sensing trigger switch; 63. Rigid linkage connecting rod; 64. Pet food attracting ball; 65. Main control circuit board; 66. Wireless signal transmitting module; 7. Pet food drying component; 71. Inclined diversion base; 72. Insulated constant temperature drying chamber; 73. Intelligent sensing receiving unit; 74. Constant temperature heating drying wire; 75. High-precision leak-proof isolation net. DETAILED DESCRIPTION
[0032] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the implementation regulations described are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0033] See also Figures 1-8 As shown, the present invention provides a technical solution: a pet intelligent feeding monitoring device, which is mainly composed of an intelligent feeding monitoring main cabin 1, a quantitative feeding metering component 3, an intelligent power drive system 5 and a pet trigger sensing component 6. The upper end opening of the intelligent feeding monitoring main cabin 1 is provided with a pet storage box 2, and the pet storage box 2 is integrated with an intelligent control central warehouse 21 and a quantitative feeding metering component 3. The discharge trough at the lower end of the intelligent feeding monitoring main cabin 1 cooperates with the intelligent discharge control box 4 to realize discharge; the intelligent power drive system 5 at the rear end of the intelligent feeding monitoring main cabin 1 drives the intelligent discharge control box 4 through a transmission structure, and the pet trigger sensing component 6 at the outer end can trigger feeding through pet interaction, and the pet food drying component 7 uses a constant temperature heating drying wire 74 and an intelligent sensing receiving unit 73 to ensure that the pet food is dry; the quantitative feeding metering component 3 realizes quantitative delivery through components such as a fan-shaped baffle 36 and a fan-shaped baffle 37.
[0034] according to Figure 1 、 Figure 2 and Figure 3As shown, the intelligent feeding monitoring main cabin 1 and the pet storage box 2 are the basic structures of the pet intelligent feeding monitoring device. The upper end of the intelligent feeding monitoring main cabin 1 is opened for mounting the pet storage box 2. The lower end of the cabin is provided with a discharge trough, and slide grooves are provided on both sides of the inner wall of the trough, which cooperate with the intelligent discharge control box to realize discharge. The cabin body is also provided with a guide rail 11 and a pet food guide rail 12, which are respectively used to guide the installation of the pet storage box 2 and the discharge of pet food. The lower end of the pet storage box 2 is fixedly connected to the intelligent control central warehouse 21, and a quantitative feeding meter is installed inside. The pet food storage is ensured to be dry by the inclined guide base 71, the heat-insulating constant temperature drying bin 72, the constant temperature heating drying wire 74 and other structures; the material box guide strips 23 on both sides of the rear end can be slidably connected to the guide rails 11 of the main cabin for easy installation and positioning. The two cooperate with each other, which not only realizes the storage and drying of pet food, but also lays the foundation for intelligent functions such as quantitative feeding and discharging, ensuring efficient and convenient pet feeding.
[0035] according to Figure 1 and Figure 4 As shown, the pet food drying component 7 is a structure for ensuring the dry storage of pet food. It is symmetrically arranged on both sides of the pet storage box 2. The component consists of an inclined guide base 71, an insulated constant temperature drying chamber 72, an intelligent sensing receiving unit 73, a constant temperature heating drying wire 74 and a high-precision leak-proof isolation net 75. The inclined guide base 71 is fixed to the inner wall of the storage box, and the high-precision leak-proof isolation net 75 in its inclined drying groove can effectively isolate the pet food to prevent it from falling; the insulated constant temperature drying chamber 72 has a built-in coiled constant temperature heating drying wire 74, which can dry the pet food on demand, and cooperate with the intelligent sensing receiving unit 73 connected to the lower end to realize humidity monitoring and intelligent regulation. The various components work together, which can not only keep the pet food dry in real time, avoid mold and deterioration, but also extend the shelf life of the food, providing protection for the healthy diet of pets.
[0036] according to Figure 1 and Figure 5 As shown, the quantitative feeding metering component 3 is installed inside the intelligent control central compartment 21, and is a key component for the pet intelligent feeding monitoring device to realize feeding. The component is mainly composed of a diversion conveying pipe 31 and a quantitative metering cylinder 32. The diversion conveying pipe 31 is fixed to the center of the bottom surface of the intelligent feeding monitoring main cabin 1, with its lower end aligned with the intelligent discharging control box 4, and the upper end is covered with a set amount metering cylinder 32, and the smoothness of the relative rotation between the two is ensured by a wear-resistant bearing 33. The linkage transmission gear plate 34 and the power transmission worm 35 are connected to the instruction drive motor 24 to drive the quantitative metering cylinder 32 to rotate; the fan-shaped baffle plate 37 in the cylinder and the fan-shaped baffle plate 36 in the diversion conveying pipe 31 are alternately arranged up and down, and the quantitative interception and transportation of pet food are realized by rotating angle control, effectively avoiding the problem of overfeeding or underfeeding.
[0037] according to Figure 1 and Figure 6 As shown, the intelligent power drive system 5 serves as the core power unit of the pet intelligent feeding monitoring device. The system uses the installation box 51 as a carrier and has a built-in wireless signal receiving module 52. It can quickly respond to external control instructions and realize remote intelligent control. The synchronous servo motors 53 on both sides are firmly fixed by the support base 54. The output end uses the power transmission shaft 55 to sequentially link the transmission bevel gear plate 56 and the driven bevel gear plate 58 to drive the adjusting screw 57 to rotate. The adjusting screw 57 is threadedly matched with the sliding guide positioning bar 41 of the intelligent discharging control box 4, which can control the intelligent discharging control box 4 to slide along the pet food guide rail 12, thereby adjusting the opening and closing degree of the discharge port to realize the quantitative delivery of pet food.
[0038] according to Figure 1 and Figure 7 As shown, the intelligent discharging control box 4 is the key executive component of the pet intelligent feeding monitoring device to realize discharging. It is arranged in the discharging trough at the lower end of the intelligent feeding monitoring main cabin 1. The control box is equipped with sliding guide positioning strips 41 on both sides, which can be inserted into the slide groove on the inner wall of the discharging trough. The threaded hole at the outer end is tightly matched with the adjusting screw 57 of the intelligent power drive system 5. Under the drive of the synchronous servo motor 53, it can realize stable sliding along the pet food guide rail 12; the auxiliary guide wheels 42 installed on both sides of the lower end are adapted to the pet food guide rail 12 to further enhance the stability and smoothness of the sliding process. Through the coordinated operation with the intelligent power drive system 5, the intelligent discharging control box 4 can adjust the opening and closing degree of the discharge port according to the instructions to realize the quantitative delivery of pet food.
[0039] according to Figure 1 and Figure 8 As shown, the pet trigger sensing component 6 serves as the interactive core of the pet intelligent feeding monitoring device and is installed on one side of the outer end of the intelligent feeding monitoring main cabin 1. The component is mainly composed of a sensing control connection box 61, and a micro-sensing trigger switch 62 is embedded in the front opening. It is firmly connected to the external pet food-luring ball 64 through a rigid linkage connecting rod 63. When the pet touches the pet food-luring ball 64 for the purpose of foraging or playing, the rigid linkage connecting rod 63 transmits the force to the micro-sensing trigger switch 62 to activate it, and the switch immediately generates an electrical signal.
[0040] This electrical signal is transmitted to the main control circuit board 65 inside the induction control connection box 61. After signal processing, it is sent to the intelligent power drive system 5 by the wireless signal transmission module 66 via wireless communication. After receiving the instruction, the intelligent power drive system 5 drives the quantitative feeding metering component 3 and the intelligent discharge control box 4 to operate and realize the delivery of pet food.
[0041] The effects achieved by the entire organization are:
[0042] Trigger startup phase
[0043] When a pet approaches the device and is attracted and touched by the pet food ball 64 mounted on the outer side of the intelligent feeding monitoring main compartment 1, the pet trigger sensor assembly 6 activates. The force exerted by the pet is transmitted via a rigid linkage connecting rod 63 to the micro-motion sensor trigger switch 62, causing the internal circuit state of the micro-motion sensor trigger switch 62 to change, thereby generating an electrical signal. This electrical signal is transmitted to the main control circuit board 65 within the sensor control connection box 61. The main control circuit board 65 amplifies and filters the signal, encoding it into a specific command format. The wireless signal transmission module 66 then transmits it wirelessly.
[0044] Signal transmission and dynamic response stage
[0045] After receiving the command signal from the pet trigger sensor assembly 6, the wireless signal receiving module 52 in the intelligent power drive system 5 transmits the signal to the synchronous servo motors 53 on both sides of the mounting box 51. Upon receiving the start command, the synchronous servo motors 53 quickly begin to operate and output power. This power is transmitted via the power transmission shaft 55, driving the driving bevel gear plate 56 to begin rotating. Through the meshing transmission between the gears, the driven bevel gear plate 58 is driven to rotate synchronously, which in turn causes the adjustment screw 57, which is connected to the axis of the driven bevel gear plate 58, to begin rotating.
[0046] At the same time, the command drive motor 24 in the intelligent control center 21 also receives the corresponding signal and starts. The power of the command drive motor 24 is transmitted to the linkage transmission gear plate 34 through the power transmission worm 35. The linkage transmission gear plate 34 drives the quantitative metering cylinder 32 in the diversion conveying pipe 31 to begin rotating, preparing for quantitative feeding.
[0047] Quantitative feeding stage
[0048] In the quantitative feeding metering assembly 3, a diversion conveying tube 31 is fixed to the center of the bottom surface of the intelligent feeding monitoring main cabin 1. A quantitative metering cylinder 32, mounted on its upper end, rotates driven by a linkage transmission gear plate 34. The interlaced fan-shaped baffles 1 37 and 36, arranged at the lower end of the diversion conveying tube 31 and the quantitative metering cylinder 31, play a key role. As the quantitative metering cylinder 32 rotates, when the gap between the fan-shaped baffles 1 37 and 36 rotates to align with the diversion holes of the pet food storage box 2, the pet food, under the action of gravity, falls from the pet food storage box 2 through the diversion holes, the quantitative metering cylinder 32, and the diversion conveying tube 31 into the interior of the intelligent discharging control box 4. By controlling the rotation angle of the quantitative metering cylinder 32, a certain amount of pet food can be accurately intercepted, achieving the quantitative feeding function and effectively avoiding overfeeding or underfeeding.
[0049] Discharging stage
[0050] Driven by the intelligent power drive system 5, the rotational motion of the adjustment screw 57 is converted into linear motion of the intelligent discharging control box 4. The sliding guide positioning bars 41 on either side of the outer end of the intelligent discharging control box 4 have threaded holes that engage with the adjustment screw 57. The sliding guide positioning bars 41 slide within the grooves on the inner wall of the discharging chute of the intelligent feeding monitoring main cabin 1. Auxiliary guide wheels 42 on either side of the lower end tightly engage with the pet food guide rails 12, ensuring that the intelligent discharging control box 4 slides smoothly along the pet food guide rails 12. By rotating the adjustment screw 57, the position of the intelligent discharging control box 4 is controlled, allowing stable and accurate feeding of food to the pet through the discharging port.
[0051] Full guarantee stage
[0052] During the entire feeding process, the pet food drying component 7 works in real time to provide protection for the storage of pet food. The pet food drying component 7 is symmetrically installed on both sides of the pet storage box 2, and its intelligent sensing receiving unit 73 continuously monitors the humidity of the pet food. Once it is detected that the humidity of the pet food exceeds the set threshold, the intelligent sensing receiving unit 73 immediately sends a start signal to the constant temperature heating drying wire 74 in the insulated constant temperature drying bin 72. The constant temperature heating drying wire 74 starts to heat up and dries the pet food. At the same time, the high-precision leak-proof isolation net 75 in the drying groove on the inclined diversion base 71 effectively prevents the pet food from falling during the drying process. When the humidity of the pet food drops to the normal range, the intelligent sensing receiving unit 73 controls the constant temperature heating drying wire 74 to stop working, ensuring that the pet food always remains dry and fresh, and ensuring the healthy diet of the pet.
[0053] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A pet intelligent feeding monitoring device, characterized in that: It includes an intelligent feeding monitoring main cabin (1), a quantitative feeding metering component (3), an intelligent power drive system (5), and a pet triggering sensing component (6); The intelligent feeding monitoring main cabin (1) is provided with an opening at the upper end, a pet storage box (2) is sleeved inside the opening, an intelligent control central warehouse (21) is fixedly connected to the lower end of the pet storage box (2), and a quantitative feeding metering component (3) is installed inside the intelligent control central warehouse (21); a discharge trough is provided at the lower end of the interior of the intelligent feeding monitoring main cabin (1), slide grooves are provided on both sides of the inner wall of the discharge trough, and an intelligent discharge control box (4) is placed inside the discharge trough; an intelligent power drive system (5) is fixedly installed at the lower end of the rear end surface of the intelligent feeding monitoring main cabin (1); and a pet trigger sensing component (6) is installed on one side surface of the outer end of the intelligent feeding monitoring main cabin (1).
2. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The intelligent feeding monitoring main cabin (1) is further provided with a guide rail (11) and a pet food guide rail (12); the guide rails (11) are provided in two pieces and are respectively installed on the lower end surface of the opening opened in the intelligent feeding monitoring main cabin (1); the pet food guide rails (12) are provided in two pieces and are respectively arranged on both sides of the bottom surface of the discharge chute.
3. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The pet storage box (2) is further provided with a dustproof and moisture-proof sealed compartment cover (22), a box guide bar (23), a command drive motor (24) and a pet food drying assembly (7); a feed trough is provided at the center of the upper end surface of the pet storage box (2), a dustproof and moisture-proof sealed compartment cover (22) is movably connected to the surface of one side of the feed trough, and pet food drying assemblies (7) are respectively provided on both sides of the interior of the pet storage box (2), wherein box guide bars (23) are respectively installed on both sides of the rear end surface of the pet storage box (2), and the outer ends of the box guide bars (23) are respectively slidably sleeved on the inside of two guide rails (11), and a guide hole is provided at the center of the bottom surface of the pet storage box (2), and the guide hole extends to the center of the interior of the intelligent control central compartment (21); and a command drive motor (24) is installed on one side of the inner wall of the intelligent control central compartment (21).
4. The intelligent pet feeding monitoring device according to claim 3, characterized in that: The two pet food drying components (7) respectively include an inclined flow guide base (71), an insulated constant temperature drying chamber (72), an intelligent sensing receiving unit (73), a constant temperature heating drying wire (74) and a high-precision leak-proof isolation net (75); the inclined flow guide base (71) is fixedly installed on both sides of the inner wall of the pet storage box (2), and a drying groove is respectively opened on the inclined surface of the inclined flow guide base (71). A high-precision leak-proof isolation net (75) is provided inside the drying groove. An insulated constant temperature drying chamber (72) is also installed in the center of the inclined flow guide base (71). The lower end of the insulated constant temperature drying chamber (72) is connected to the intelligent sensing receiving unit (73), and the constant temperature heating drying wire (74) is coiled inside the insulated constant temperature drying chamber (72).
5. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The quantitative feeding metering component (3) comprises a guide conveying pipe (31) and a quantitative metering cylinder (32); the guide conveying pipe (31) is fixedly installed at the center of the bottom surface inside the intelligent feeding monitoring main cabin (1), the lower end of the guide conveying pipe (31) is correspondingly arranged directly above the intelligent discharge control box (4), and the quantitative metering cylinder (32) is sleeved inside the upper end of the guide conveying pipe (31).
6. The intelligent pet feeding monitoring device according to claim 5, characterized in that: The quantitative feeding metering component (3) further comprises a wear-resistant bearing (33), a linkage transmission gear plate (34), a power transmission worm (35), a fan-shaped baffle plate (36) and a fan-shaped baffle plate 1 (37); the upper end surface of the diversion conveying pipe (31) is fixedly mounted with a wear-resistant bearing (33), the inner wall surface of the wear-resistant bearing (33) is closely fitted to the outer end surface of the quantitative metering cylinder (32), wherein the upper end of the quantitative metering cylinder (32) is correspondingly sleeved on the outer end of the diversion hole, and the upper end surface of the quantitative metering cylinder (32) is fixedly mounted with a fan-shaped baffle plate (36) and a fan-shaped baffle plate 1 (37); A linkage transmission gear plate (34) is fixedly provided, and a power transmission worm (35) is meshed with one side of the outer end of the linkage transmission gear plate (34), and the other end of the power transmission worm (35) is correspondingly connected to the output end of the instruction drive motor (24); a fan-shaped baffle plate (36) is provided on the inner wall of the lower end of the guide conveying pipe (31), and a fan-shaped baffle plate (37) is provided on the inner wall of the lower end of the quantitative metering cylinder (32), and the fan-shaped baffle plate (36) and the fan-shaped baffle plate (37) are alternately arranged up and down.
7. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The intelligent power drive system (5) comprises an installation box (51), a wireless signal receiving module (52), a synchronous servo motor (53) and a support base (54); the installation box (51) is fixedly connected to the rear lower end surface of the intelligent feeding monitoring main cabin (1); the wireless signal receiving module (52) is installed in the center of the installation box (51); the synchronous servo motors (53) are respectively installed on the two side surfaces of the lower end of the wireless signal receiving module (52); and the support bases (54) are also respectively installed on the two sides of the outer end of the wireless signal receiving module (52).
8. The intelligent pet feeding monitoring device according to claim 7, characterized in that: The intelligent power drive system (5) further comprises a power transmission shaft (55), a transmission bevel gear plate (56), an adjusting screw (57) and a driven bevel gear plate (58); the output ends of the two synchronous servo motors (53) are respectively fixedly connected with the power transmission shafts (55); the front ends of the power transmission shafts (55) respectively pass through the interior of the support base (54) and are correspondingly connected to the two sides of the inner wall of the installation box (51); the transmission bevel gear plates (56) are respectively installed on the front end surfaces of the two power transmission shafts (55); the upper ends of the transmission bevel gear plates (56) are meshed with the driven bevel gear plates (58); the axis center surfaces of the two driven bevel gear plates (58) are respectively connected with adjusting screws (57); the front ends of the adjusting screws (57) pass through the interior of the installation box (51) and extend to the inside of the chute opened in the discharge chute.
9. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The surfaces of both sides of the outer end of the intelligent discharging control box (4) are respectively provided with sliding guide positioning strips (41), the outer ends of the sliding guide positioning strips (41) are slidably sleeved inside the slide groove, and threaded holes are respectively opened on the rear end surfaces of the two sliding guide positioning strips (41), and the outer ends of the adjusting screws (57) are correspondingly sleeved inside the threaded holes; auxiliary guide wheels (42) are also respectively installed on both sides of the lower end surface of the intelligent discharging control box (4), and the outer ends of the auxiliary guide wheels (42) are respectively slidably sleeved inside the two pet food guide rails (12).
10. The intelligent pet feeding monitoring device according to claim 1, characterized in that: The pet trigger sensing component (6) comprises an induction control connection box (61), a micro-motion induction trigger switch (62), a rigid linkage connecting rod (63), a pet food attracting ball (64), a main control circuit board (65) and a wireless signal transmitting module (66); the induction control connection box (61) is fixedly mounted on one side of the outer end surface of the intelligent feeding monitoring main cabin (1); an opening is provided on the front end surface of the induction control connection box (61); the micro-motion induction trigger switch (62) is mounted inside the opening; the upper end of the micro-motion induction trigger switch (62) is connected to a rigid linkage connecting rod (63); the front end of the rigid linkage connecting rod (63) passes through the inside of the opening and extends to the outer end of the induction control connection box (61), and the pet food attracting ball (64) is mounted thereon; The output end of the micro-motion induction trigger switch (62) inside the induction control connection box (61) is connected to a main control circuit board (65), and a wireless signal transmission module (66) is fixedly installed on the upper end of the main control circuit board (65).