CN113632738B - Cat dinner plate capable of automatically feeding food - Google Patents

Cat dinner plate capable of automatically feeding food Download PDF

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Publication number
CN113632738B
CN113632738B CN202110907842.5A CN202110907842A CN113632738B CN 113632738 B CN113632738 B CN 113632738B CN 202110907842 A CN202110907842 A CN 202110907842A CN 113632738 B CN113632738 B CN 113632738B
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China
Prior art keywords
plate
feeding
water storage
block
cat
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CN113632738A (en
Inventor
朱慧峰
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Zhejiang Jingning Minghui Arts & Crafts Co ltd
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Zhejiang Jingning Minghui Arts & Crafts Co ltd
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Publication of CN113632738A publication Critical patent/CN113632738A/en
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    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K5/00Feeding devices for stock or game ; Feeding wagons; Feeding stacks
    • A01K5/01Feed troughs; Feed pails
    • A01K5/0114Pet food dispensers; Pet food trays
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K5/00Feeding devices for stock or game ; Feeding wagons; Feeding stacks
    • A01K5/02Automatic devices
    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K7/00Watering equipment for stock or game
    • A01K7/02Automatic devices ; Medication dispensers

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  • Life Sciences & Earth Sciences (AREA)
  • Environmental Sciences (AREA)
  • Animal Husbandry (AREA)
  • Biodiversity & Conservation Biology (AREA)
  • Birds (AREA)
  • Feeding And Watering For Cattle Raising And Animal Husbandry (AREA)

Abstract

The invention discloses a cat dinner plate capable of automatically feeding food, which comprises a base, a water storage cavity, a water storage device, a fixing block, a water inlet plate, a food feeding plate and a food feeding device, wherein the water storage cavity is arranged on the base; the feeding device comprises a feeding barrel, a material storage cavity, a feeding hole, a sealing mechanism, a driving mechanism and a discharging hole; according to the automatic feeding device, the feeding tray can be licked by a cat to enable cat food to automatically enter the feeding tray, so that automatic feeding is realized; meanwhile, the amount of the cat fed food is the same every time, so that the eating habit of the cat is better; meanwhile, the water storage device can enable the cat to automatically feed water after eating every time, so that the eating habit of the cat is improved.

Description

Cat dinner plate capable of automatically feeding food
Technical Field
The invention belongs to the technical field of pet feeding, and particularly relates to a cat dinner plate capable of automatically feeding.
Background
Pets generally refer to dogs and cats kept at home as companion animals. As pets can relieve the stress of human beings and improve the health of human beings, the pets increasingly get the wide preference of human beings. With the improvement of the living standard of human beings, the living quality of pets is continuously improved while the number of pets is continuously increased; but as office workers, the pets at home cannot be cared for during the working hours, and the pets need to eat a few meals and a plurality of meals; therefore, much effort is required for manual feeding.
Disclosure of Invention
The invention provides a cat dinner plate capable of automatically feeding food in order to overcome the defects of the prior art.
In order to achieve the purpose, the invention adopts the following technical scheme: a cat dinner plate capable of automatically feeding food comprises a base, a water storage cavity arranged on the base, a water storage device arranged on the water storage cavity, a fixed block arranged on the water storage cavity, a water inlet plate and a food feeding plate arranged on the fixed block, and a food feeding device arranged on the fixed block; the method is characterized in that: the feeding device comprises a feeding barrel arranged on the fixed block, a material storage cavity arranged at the upper end of the feeding barrel, a feeding hole arranged on the feeding barrel, a sealing mechanism arranged in the feeding hole, a driving mechanism arranged on the feeding disc and a discharging hole arranged at the bottom of the feeding barrel; the feeding barrel is cylindrical and is arranged on the fixed block; the upper end of throwing the edible bucket is located to hold the material chamber, should hold material chamber longitudinal section and be semi-circular.
The cat food is poured into the feeding storage cavity, then the cat food enters the feeding barrel, and when the feeding barrel is full, the sealing mechanism starts to seal the feeding hole; at the moment, the cat starts licking food in the feeding disc, and simultaneously the water storage device starts to start to fill water into the water inlet disc; after the cat finishes eating the food, the driving mechanism starts to start after the cat leaves the device, and the sealing mechanism is restarted to continuously throw the cat food into the feeding barrel to wait for eating again; the water storage device is arranged, so that a proper amount of water can be added according to the food intake of the cat, and the water demand of the cat can be improved; the feeding disc is arranged to realize feeding according to the licking habit of the cat, so that the food intake of the cat can be controlled; the food consumption of the cat can be controlled by the feeding barrel, so that the health of the cat is prevented from being influenced by excessive food consumption; the cat food can be stored through the material storage cavity, so that the cat food is prevented from going bad.
The driving mechanism comprises a feeding spring arranged at the bottom of the feeding plate, a driving cavity arranged in a fixed block, a lever strip arranged in the driving cavity, a lever torsion spring arranged on the lever strip, a piston block arranged in the driving cavity, a first one-way valve arranged on the piston block, a driving plate arranged in the driving cavity, a driving spring arranged at the bottom of the driving plate, an air hole arranged on the driving plate, two turning plates arranged on the inner wall of the air hole, a turning plate torsion spring arranged on the turning plates, a moving block arranged in the driving cavity, an air hole arranged on the moving block, a second turning plate arranged at the bottom of the air hole, a turning rod arranged at the top of the driving cavity, a ratchet block arranged on the turning rod and a material pushing component arranged on the discharge hole; the lower end of the piston block is hinged with the left end of the lever bar, and the upper end of the piston block is movably embedded in the driving cavity; the cross section of the air hole is rectangular, and the longitudinal section of the air hole is trapezoidal; and the upper end opening of the air hole is larger than the lower end opening.
When a cat licks the feeding disc, the feeding disc is driven to turn over up and down; then the lever strip is turned over, so that the piston block can be driven to move up and down; when the piston block moves upwards, the driving plate moves upwards quickly; simultaneously, the moving block is driven to start to overturn with the overturning rod, and the ratchet block is further driven to start driving the sealing mechanism to start; the arrangement of the lever bar can reduce resistance when the cat licks, so that the licking force of the cat can drive the equipment to start; thereby realizing automatic feeding; the piston block is arranged to generate air pressure in the driving cavity, so that the driving plate is driven to move; the stability of feeding is improved; the driving plate can be automatically reset through the arrangement of the air holes, so that the sealing mechanism can be driven to start; the arrangement of the turning plate realizes that the turning plate is reduced when the driving plate is reset, so that the resetting speed of the driving plate can be reduced; therefore, the cat food can be put into the feeding barrel after the cat leaves; the intermittent rotation of the turnover rod can be driven through the arrangement of the movable block, so that the sealing mechanism can be driven to store force, and the convenience of subsequent feeding is facilitated; the sealing mechanism can accumulate force when a cat licks, and the mechanism is ready for subsequent feeding; the stability of feeding is improved.
The pushing component comprises a pushing plate arranged at the bottom of the discharge port, a pushing torsion spring arranged at the right end of the pushing plate, a moving groove arranged on the pushing plate, a baffle arranged on the moving groove, a first rack arranged at the bottom of the discharge port, a moving gear arranged at the left end of the moving groove, a connecting rope connecting the moving gear and the baffle, and a pushing spring arranged at the left end of the pushing plate; the material pushing plate is inclined towards the port of the material outlet; the right end of the material pushing plate is rotatably embedded on the material outlet.
When the lever strip is turned over, the material pushing plate starts to turn over; the further moving gear starts to rotate, and the baffle is pulled to start to move; making cat food enter the material pushing plate; when the lever bar is turned over again, the baffle is reset, and cat food is pushed into the food taking tray while the baffle is reset; on one hand, cat food can be blocked in the feeding barrel through the arrangement of the material pushing plate, and the cat food is prevented from falling into the food feeding tray, so that the cat can be prevented from eating by mistake; on the other hand, the cat can turn over the material pushing plate when licking, so that more cat food can be pushed subsequently; further ensuring the single-meal amount of the cat; the baffle plate can prevent cat food from entering the feeding tray; by the aid of the device, a part of cat food can be fed when the cat licks once, and single food intake of the cat can be controlled; further enabling the cats to develop eating habits.
The sealing mechanism comprises a rotating disk arranged on the feeding hole, a sealing plate arranged on the rotating disk, an arc rod arranged on the sealing plate, a material pushing groove arranged at the bottom of the material storage cavity, an arc block arranged on the material pushing groove, a rotating gear arranged on the arc block, a rotating plate arranged on the rotating gear, a second rack arranged on the inner wall of the material pushing groove, a first ratchet ring arranged at the bottom of the rotating disk, a first torsion spring arranged on the rotating disk, a second rotating disk arranged in the fixing block, a second ratchet ring arranged at the upper end of the second rotating disk, a third ratchet ring arranged at the bottom of the second rotating disk, a second torsion spring arranged on the second rotating disk and a limiting component arranged in the fixing block; the cross section of the sealing plate is fan-shaped and can be rotatably embedded on the feeding hole; the first ratchet is annularly arranged at the bottom of the rotating disc; the first torsion spring is connected with the rotating disc and the inner wall of the feeding hole; the second rotating disk is rotatably embedded in the fixed block and positioned below the first ratchet ring; the second ratchet is annularly arranged at the upper end of the second rotating disk; the third ratchet is annularly arranged at the lower end of the second rotating disk; the third torsion spring is connected with the second rotating disc and the inner wall of the fixed block; the limiting component is arranged in the fixing block.
When cat food is fully filled in the feeding barrel, the limiting part is started to enable the rotating disc to rotate rapidly; then the arc rod is driven to turn over, so that the sealing plate is driven to rotate, and the feed port is sealed; meanwhile, the rotating disc drives the arc block to move when rotating, so that the rotating gear rotates, the rotating plate is further driven to rotate, and cat food in the storage cavity is scraped to the feed inlet; when the cat licks the feeding plate, the second rotating plate is linked to intermittently rotate, and the second torsion spring starts to accumulate force; then when the cat finishes eating and leaves, the limiting part is started again to drive the second rotating disc to rotate, and the rotating disc is further driven to reset; at this point, the sealing plate is opened, so that the cat food can enter the feeding barrel again; the feed inlet can be closed when the food is taken by arranging the sealing plate, and the proper amount of the beverage is controlled; the cat food in the material storage cavity can be automatically thrown into the feeding barrel according to the feeding time of the cat through the mechanism, so that the automatic feeding can be realized.
The limiting component comprises a weighing block arranged at the bottom of the food throwing barrel, a weighing spring arranged at the bottom of the weighing block, a limiting cavity arranged in the inner wall of the fixing block, a limiting rod arranged in the limiting cavity, a limiting tooth arranged at the upper end of the limiting rod, a stirring assembly arranged on the inner wall of the food throwing barrel, a limiting block arranged at the bottom of the limiting cavity, a limiting spring arranged on the limiting block, an unlocking block arranged at the bottom of the limiting cavity, a cross plate arranged in the limiting cavity, a cross torsion spring arranged in the cross plate, a positioning block arranged at the bottom of the rotating disk, a positioning groove arranged in the fixing block and a sliding block arranged at the lower end of the positioning groove; the limiting rod can be embedded in the limiting cavity in a manner of moving up and down, and limiting teeth are arranged at the upper end of the limiting rod and abut against the third ratchet ring; the longitudinal section of the limiting tooth is crescent; the unlocking block is arranged at the bottom of the limiting cavity, and the longitudinal section of the unlocking block is trapezoidal and is abutted to the weighing block.
Cat food falls on the weighing block, and the weighing block is driven to move downwards due to gravity; then, the unlocking block is driven to move transversely, and the cross plate is further driven to turn over and pull the inner rod to move downwards; at the moment, the second rotating disk is unlocked and rapidly rotates to realize sealing; in addition, after the cat eats, the driving plate can abut against the sliding block to drive the positioning block to unlock; thereby driving the rotating disc to rotate; the sealing of the sealing plate can be automatically driven according to the amount of cat food in the feeding barrel by the arrangement of the weighing blocks, so that the feeding amount of the cat at each time can be automatically controlled; can guarantee through this part that every time the cat eats all be fixed volume, can prevent on the one hand that the cat from eating excessively, on the other hand can make the cat form the eating habit, makes the cat healthier.
The stirring assembly comprises a stirring ring arranged on the inner wall of the feeding barrel, a stirring groove arranged on the inner wall of the stirring ring, a stirring toothed ring arranged on the stirring ring, a rotating table arranged in the limiting cavity, a driving tooth arranged on the rotating table, an elliptical groove arranged on the limiting rod and a connecting rod arranged on the driving tooth; the stirring ring is rotatably embedded on the inner wall of the feeding barrel; the longitudinal section of the stirring groove is wavy and is arranged on the inner wall of the stirring ring; the longitudinal section of the elliptical groove is elliptical and is arranged on the surface of the limiting rod.
When the second rotating disk rotates, the third ratchet ring is abutted against the limiting teeth, so that the limiting rod can move up and down; then the connecting rod moves along the elliptical groove to drive the rotating platform to rotate left and right, so as to drive the stirring toothed ring to rotate; at the moment, the stirring ring can be driven to rotate, and further, the cat food starts to be stirred; the cat food in the feeding barrel can be stirred by the stirring ring and the stirring groove, so that the cat food cannot be clamped in the feeding barrel, and the stability of automatic feeding is improved.
The water storage device comprises a water storage gear arranged at the top of the water storage cavity, a second rack arranged at the top of the water storage cavity, a third rack arranged on the driving mechanism, a threaded rod arranged on the water storage gear, a threaded torsion spring arranged at the bottom of the threaded rod, a water pressure plate arranged in the water storage cavity, a ratchet rack arranged on the inner wall of the water storage cavity, a moving tooth arranged on the water pressure plate, a first inclined block arranged on the moving tooth, a second inclined tooth arranged at the lower end of the moving tooth, a spring buckle arranged on the moving tooth, a clamping groove arranged in the water pressure plate, inclined blocks respectively arranged at the upper wall and the lower wall of the water storage cavity and a water storage pipe arranged at the bottom of the water inlet disc; the threaded torsion spring is connected with the bottom of the threaded rod and the bottom of the water storage cavity; the water pressure plate can be embedded in the water storage cavity in a vertically moving mode; the ratchet bar is arranged on the inner wall of the water storage cavity; the movable teeth can be transversely movably embedded on the water pressure plate, and are connected with the water pressure plate through springs.
When a cat licks, the third rack is driven to move downwards, and then the second rack is driven to move transversely; then the water storage gear is driven to rotate; further, the threaded rod is driven to rotate; then the water pressure plate is driven to start to move downwards, so that water is filled into the water inlet plate; when the water pressure plate moves to the bottom of the water storage cavity, the inclined block presses the second inclined teeth to move; the movable teeth are further separated from the ratchet bar, and at the moment, the thread torsion spring starts to reset and drives the water pressure plate to reset; the water storage gear can be driven to rotate intermittently according to the lever strip through the arrangement of the second rack and the third rack, so that the water pressing plate can be driven to move intermittently; further, the water inflow can be automatically controlled when the cat eats; the device realizes that the cat can control the water inflow along with eating the cat food.
In conclusion, the invention has the following advantages: according to the automatic feeding device, the feeding tray can be licked by a cat to enable cat food to automatically enter the feeding tray, so that automatic feeding is realized; meanwhile, the amount of the cat fed food is the same every time, so that the eating habit of the cat is better; meanwhile, the water storage device can enable the cat to automatically feed water after eating every time, so that the eating habit of the cat is improved.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a front view of the present invention.
Fig. 3 is a cross-sectional perspective view along a-a of fig. 2 of the present invention.
Fig. 4 is a cross-sectional view taken along D-D of fig. 2 of the present invention.
Fig. 5 is a cross-sectional view taken along B-B of fig. 2 of the present invention.
Fig. 6 is a cross-sectional view taken along C-C of fig. 2 of the present invention.
Fig. 7 is an exploded view of the sealing mechanism of the present invention.
Fig. 8 is a partial view of fig. 3 taken at a in accordance with the present invention.
Fig. 9 is a partial view of the invention at B in fig. 8.
Fig. 10 is a partial view of the invention at C in fig. 3.
Fig. 11 is a partial view of the invention at D in fig. 6.
Fig. 12 is a partial view of the invention at E of fig. 3.
Fig. 13 is a partial view of the invention at F in fig. 3.
Fig. 14 is a partial view of the invention at G in fig. 13.
FIG. 15 is a partial view taken at H of FIG. 5 of the present invention.
Fig. 16 is a partial view taken at I of fig. 3 according to the present invention.
Detailed Description
As shown in fig. 1-16, a cat dinner plate capable of automatically feeding food comprises a base 1, a water storage cavity 11, a water storage device 2, a fixed block 12, a water inlet disc 13, a food feeding disc 14 and a food feeding device 3; the feeding device 3 comprises a feeding barrel 31, a material storage cavity 32, a feeding hole 33, a sealing mechanism 4, a driving mechanism 5 and a discharging hole 34; the cross section of the base 1 is circular; the water storage cavity 11 is arranged on the base 1; the water storage device 2 is arranged in the water storage cavity 11; the fixed block 12 is arranged at the upper end of the water storage cavity 11; the cross section of the water inlet disc 13 is semicircular and is arranged on the fixed block 12; the cross section of the feeding tray 14 is semi-elliptical and is arranged on the fixed block 12; is arranged opposite to the water inlet disc 13; the feeding device 3 is arranged on the fixed block 12; the feeding barrel 31 is cylindrical and is arranged on the fixed block 12; the material storage cavity 32 is arranged at the upper end of the feeding barrel 31, and the longitudinal section of the material storage cavity 32 is semicircular; the feed inlet 33 is arranged on the feeding barrel 31; the sealing mechanism 4 is arranged in the feed inlet 33; the driving mechanism 5 is arranged on the feeding tray 14; the discharge port 34 is arranged at the bottom of the feeding barrel 31 and points to the feeding plate 13.
The driving mechanism 5 comprises a driving cavity 51, a lever strip 52, a lever torsion spring 53, a piston block 54, a first one-way valve 55, a driving plate 56, a driving spring 57, an air hole 58, a turning plate 59, a turning plate torsion spring 590, a moving block 591, an air hole 592, a second turning plate 593, a turning rod 594, a ratchet block 595 and a material pushing component 6; the feeding spring 50 is connected with the bottom of the feeding tray 14 and the base 1; the driving cavity 51 is arranged in the inner wall of the fixed block 12; the lever bar 52 is embedded in the driving cavity 51 in a reversible way, and the right end of the lever bar 52 is connected with the food taking tray 14; the lever torsion spring 53 is connected with the lever bar 52 and the inner wall of the driving cavity 51; the lower end of the piston block 54 is hinged with the left end of the lever strip 52, and the upper end is movably embedded in the driving cavity 51; the first check valve 55 is arranged in the piston block 54; the driving plate 56 is embedded in the driving cavity 51 and can move up and down, and is positioned above the piston block 54; the driving spring 57 is connected with the driving plate 56 and the bottom of the driving cavity 51; the cross section of the air hole 58 is rectangular, and the longitudinal section of the air hole is trapezoidal; and the upper end opening of the air hole 58 is larger than the lower end opening; the turning plate 59 is embedded in the air holes 58 in a turnover way; the turning plate torsion spring 590 is connected with the turning plate 59 and the air holes 58; the moving block 591 can be vertically moved and embedded in the driving cavity 51 and is positioned above the driving plate 56; the longitudinal section of the driving chamber 51 is trapezoidal; the vent holes 592 are formed in the moving block 590; the second turning plate 594 can be embedded at the bottom of the vent hole 592 in a turnover mode and is connected with the vent hole 592 through a torsion spring; the turning rod 594 can be turnably embedded at the upper end of the driving cavity 51; the lower end of the turning rod 594 abuts against the inclined surface of the moving block 591; the ratchet block 595 is arranged at the upper end of the turnover rod 594; the pushing component 6 is arranged in the discharge hole 34.
As shown in fig. 11, the pushing member 6 includes a pushing plate 61, a pushing torsion spring 62, a moving slot 63, a blocking plate 64, a first rack 65, a moving gear 66, a connecting rope 67, and a pushing spring 68; the material pushing plate 61 inclines towards the port of the material outlet 34; the right end of the material pushing plate 61 is rotatably embedded on the material outlet 34; the left end of the material pushing plate 61 is connected with the lever bar 52 by a rope, and the overturning of the lever bar 52 can drive the material pushing plate 61 to overturn; the pushing torsion spring 62 is connected with the pushing plate 61 and the discharge hole 34; the moving groove 63 is formed in the material pushing plate 61; the baffle plate 64 is a telescopic plate directly purchased from the market and movably embedded on the moving groove 63; the first rack 65 is fixedly arranged at the bottom of the discharge hole 34; the moving gear 65 is arranged at the left end of the moving groove 63 and is meshed with the first rack 65; the connecting rope 67 is connected with the moving gear 66 and the baffle plate 64; the pushing spring 68 is connected with the left end of the pushing plate 61 and the bottom of the discharge hole 34.
As shown in fig. 4 and 7, the sealing mechanism 4 includes a rotating disk 41, a sealing plate 42, an arc rod 43, a pushing groove 44, an arc block 45, a rotating gear 46, a rotating plate 47, a second rack 48, a first ratchet ring 480, a first torsion spring 49, a second rotating disk 490, a second ratchet ring 491, a third ratchet ring 492, a second torsion spring 493, and a limiting member 7; the rotating disc 41 is rotatably embedded on the inner wall of the feed inlet 33; the cross section of the sealing plate 42 is fan-shaped and can be rotatably embedded on the feed port 33; the cross section of the arc rod 43 is arc-shaped, and one end of the arc rod is hinged with the sealing plate 42; the other end is hinged with the rotating disc 41; the cross section of the material pushing groove 44 is arc-shaped and is arranged at the bottom of the material storage cavity 32; the arc block 45 is movably embedded in the material pushing groove 44, and the arc block 45 is hinged with the rotating disc 41; the rotating gear 46 is arranged at the head end of the arc block 45; the rotating plate 47 is arranged at the upper end of the rotating gear 46; the second rack 48 is arranged on the inner wall of the material pushing groove 44; the first ratchet ring 480 is arranged at the bottom of the rotating disc 41; the first torsion spring 49 is connected with the rotating disc 41 and the inner wall of the feed opening 33; the second rotating disk 490 is rotatably embedded in the fixed block 12 and positioned below the first ratchet ring 480; the second ratchet ring 491 is arranged at the upper end of the second rotating disc 490; the third ratchet ring 492 is provided at the lower end of the second rotating disk 490; the third torsion spring 493 is connected with the second rotating disc 490 and the inner wall of the fixed block 12; the limiting component 7 is arranged in the fixing block 12.
As shown in fig. 13, the limiting component 7 comprises a weighing block 71, a weighing spring 72, a limiting cavity 73, a limiting rod 74, a limiting tooth 75, a stirring assembly 8, a limiting block 77, a limiting spring 78, an unlocking block 79, a cross plate 790, a cross torsion spring 791, a positioning block 792, a positioning groove 793 and a sliding block 794; the weighing block 71 can be embedded at the bottom of the feeding barrel 31 in a way of moving up and down; the weighing spring 72 is connected with the weighing block 71 and the bottom of the feeding barrel 31; the limiting cavity 73 is formed in the inner wall of the fixed block 12; the limit rod 74 can be embedded in the limit cavity 73 to form limit teeth 75 which can move up and down and is arranged at the upper end of the limit rod 74 to be abutted against the third ratchet ring 492; the longitudinal section of the limit tooth 75 is crescent; the stirring component 8 is arranged on the inner wall of the feeding barrel 31; the unlocking block 79 is arranged at the bottom of the limiting cavity 73, and the longitudinal section of the unlocking block 79 is trapezoidal and abuts against the weighing block 71; the cross section of the cross plate 790 is X-shaped and is formed by hinging two plates with each other; the cross plate connects the unlocking block 79 and the bottom of the limit rod 74; the cross torsion spring 791 is connected with the cross plate 790 and the limit cavity 73; the positioning block 792 is telescopically embedded at the bottom of the rotating disc 41; the positioning groove 793 is formed in the positioning block 12, and one end of the positioning groove is connected with the driving cavity 51; the sliding block 794 is arranged in the positioning groove 793 and is positioned in the driving cavity 51.
As shown in fig. 14, the agitating assembly 8 includes an agitating ring 81, an agitating groove 82, an agitating toothed ring 83, a rotary table 84, a driving tooth 85, an elliptical groove 86, a connecting rod 88; the stirring ring 81 is rotatably embedded on the inner wall of the feeding barrel 31; the longitudinal section of the stirring groove 82 is wavy and is arranged on the inner wall of the stirring ring 81; the stirring toothed ring 83 is arranged on the outer wall of the stirring ring 81; the rotating platform 84 is rotatably embedded in the limiting cavity 72; the driving teeth 85 are arranged on the rotating platform 84 and meshed with the stirring toothed ring 83; the longitudinal section of the elliptical groove 86 is elliptical and is formed in the surface of the limiting rod 74; the connecting rod 88 is disposed on the rotating platform 84 and is embedded in the elliptical groove 86.
As shown in fig. 16, the water storage device 2 includes a water storage gear 21, a second rack 22, a third rack 23, a threaded rod 24, a threaded torsion spring 25, a hydraulic plate 26, a ratchet 27, a moving tooth 28, a first sloping block 29, a second sloping tooth 290, a spring buckle 291, a slot 292, a sloping block 293, and a water storage pipe 294; the water storage gear 21 is rotatably embedded at the top of the water storage cavity 11; the second rack 22 can be transversely movably embedded at the top of the water storage cavity 11, and the insection of the second rack 22 is helical; and the second rack 22 is engaged with the water storage gear 21; the third rack 23 is arranged on the lever bar 52, and the third rack 23 is meshed with the second rack 22; the threaded rod 24 is arranged on the water storage gear 21; the threaded torsion spring 25 is connected with the bottom of the threaded rod 24 and the bottom of the water storage cavity 11; the hydraulic plate 26 can be embedded in the water storage cavity 11 in a way of moving up and down; the ratchet rack 27 is arranged on the inner wall of the water storage cavity 11; the moving teeth 28 are embedded on the hydraulic plate 26 in a transversely movable manner, and the moving teeth 28 are connected with the hydraulic plate 26 by adopting springs; the first inclined block 29 is arranged at the upper end of the moving tooth 28 and is triangular; the longitudinal section of the second oblique block 290 is triangular and is arranged at the lower end of the movable tooth 28; the longitudinal section of the spring fastener 291 is oval; the longitudinal section of the clamping groove 292 is oval and is arranged in the water pressure plate 26; the longitudinal section of the inclined block 293 is triangular and is arranged at the upper end and the lower end of the water storage cavity 11; the reservoir pipe 294 connects the inlet tray 13 to the bottom of the reservoir chamber.
While there have been shown and described what are at present considered the fundamental principles and essential features of the invention and its advantages, it will be apparent to those skilled in the art that the invention is not limited to the details of the foregoing exemplary embodiments, but is capable of other specific forms without departing from the spirit or essential characteristics thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (4)

1. A cat dinner plate capable of automatically feeding food comprises a base (1), a water storage cavity (11) arranged on the base (1), a water storage device (2) arranged on the water storage cavity (11), a fixed block (12) arranged on the water storage cavity (11), a water inlet disc (13) and a food feeding disc (14) arranged on the fixed block (12), and a food feeding device (3) arranged on the fixed block (12); the method is characterized in that: the feeding device (3) comprises a feeding barrel (31) arranged on the fixed block (12), a material storage cavity (32) arranged at the upper end of the feeding barrel (31), a feeding hole (33) arranged on the feeding barrel (31), a sealing mechanism (4) arranged in the feeding hole (33), a driving mechanism (5) arranged on the feeding disc (14) and a discharging hole (34) arranged at the bottom of the feeding barrel (31); the feeding barrel (31) is cylindrical and is arranged on the fixed block (12); the material storage cavity (32) is arranged at the upper end of the feeding barrel (31), and the longitudinal section of the material storage cavity (32) is semicircular;
the sealing mechanism (4) comprises a rotating disk (41) arranged on the feeding hole (33), a sealing plate (42) arranged on the rotating disk (41), an arc rod (43) arranged on the sealing plate (42), a material pushing groove (44) arranged at the bottom of the material storage cavity (32), an arc block (45) arranged on the material pushing groove (44), a rotating gear (46) arranged on the arc block (45), a rotating plate (47) arranged on the rotating gear (46), a second rack (48) arranged on the inner wall of the material pushing groove (44), a first ratchet ring (480) arranged at the bottom of the rotating disk (41), a first torsion spring (49) arranged on the rotating disk (41), a second rotating disk (490) arranged in the fixing block (12), a second ratchet ring (491) arranged at the upper end of the second rotating disk (490), and a third ratchet ring (492) arranged at the bottom of the second rotating disk (490), The second torsion spring (493) is arranged on the second rotating disk (490), and the limiting component (7) is arranged in the fixed block (12); the cross section of the sealing plate (42) is fan-shaped and is rotatably embedded on the feed port (33); the first ratchet ring (480) is arranged at the bottom of the rotating disc (41); the first torsion spring (49) is connected with the rotating disc (41) and the inner wall of the feeding hole (33); the second rotating disk (490) is rotatably embedded in the fixed block (12) and is positioned below the first ratchet ring (480); the second ratchet ring (491) is arranged at the upper end of the second rotating disk (490); the third ratchet ring (492) is arranged at the lower end of the second rotating disk (490); the second torsion spring (493) is connected with the second rotating disk (490) and the inner wall of the fixed block (12); the limiting component (7) is arranged in the fixed block (12);
spacing part (7) including locating weigh heavy piece (71) of throwing edible bucket (31) bottom, locate weigh spring (72) of heavy piece (71) bottom, locate spacing chamber (73) in fixed block (12) inner wall, locate gag lever post (74) in spacing chamber (73), locate spacing tooth (75) of gag lever post (74) upper end, locate mix subassembly (8) of throwing edible bucket (31) inner wall, locate stopper (77) of spacing chamber (73) bottom, locate spacing spring (78) on stopper (77), locate unblock piece (79) of spacing chamber (73) bottom, locate crossing board (790) in spacing chamber (73), locate crisscross torsional spring (791) in crossing board (790), locate locating piece (792) of rotary disk (41) bottom, locate constant head tank (793) in fixed block (12), A sliding block (794) arranged at the lower end of the positioning groove (793); the limiting rod (74) can be embedded in the limiting cavity (73) in a way of moving up and down; the limiting tooth (75) is arranged at the upper end of the limiting rod (74) and is abutted against the third ratchet ring (492); the longitudinal section of the limiting tooth (75) is crescent; the unlocking block (79) is arranged at the bottom of the limiting cavity (73), and the longitudinal section of the unlocking block (79) is trapezoidal and abuts against the weighing block (71);
the stirring component (8) comprises a stirring ring (81) arranged on the inner wall of the feeding barrel (31), a stirring groove (82) arranged on the inner wall of the stirring ring (81), a stirring gear ring (83) arranged on the stirring ring (81), a rotating table (84) arranged in the limiting cavity (73), driving teeth (85) arranged on the rotating table (84), an elliptical groove (86) arranged on the limiting rod (74), and a connecting rod (88) arranged on the driving teeth (85); the stirring ring (81) is rotatably embedded on the inner wall of the feeding barrel (31); the longitudinal section of the stirring groove (82) is wavy and is arranged on the inner wall of the stirring ring (81); the longitudinal section of the oval groove (86) is oval and is arranged on the surface of the limiting rod (74).
2. The automatically eatable cat meal tray of claim 1, wherein: the driving mechanism (5) comprises a feeding spring (50) arranged at the bottom of the feeding tray (14), a driving cavity (51) arranged in a fixed block (12), a lever bar (52) arranged in the driving cavity (51), a lever torsion spring (53) arranged on the lever bar (52), a piston block (54) arranged in the driving cavity (51), a first one-way valve (55) arranged on the piston block (54), a driving plate (56) arranged in the driving cavity (51), a driving spring (57) arranged at the bottom of the driving plate (56), an air hole (58) arranged on the driving plate (56), two turning plates (59) arranged on the inner wall of the air hole (58), a turning plate torsion spring (590) arranged on the turning plates (59), a moving block (591) arranged in the driving cavity (51), and an air hole (592) and a vent (592) arranged on the moving block (591), A second turning plate (593) arranged at the bottom of the vent hole (592), a turning rod (594) arranged at the top of the driving cavity (51), a ratchet block (595) arranged on the turning rod (594), and a material pushing component (6) arranged on the discharge hole (34); the lower end of the piston block (54) is hinged with the left end of the lever bar (52), and the upper end is movably embedded in the driving cavity (51); the cross section of the air hole (58) is rectangular, and the longitudinal section of the air hole is trapezoidal; and the upper end opening of the air hole (58) is larger than the lower end opening.
3. The automatically eatable cat meal tray of claim 2, wherein: the material pushing component (6) comprises a material pushing plate (61) arranged at the bottom of the material outlet (34), a material pushing torsion spring (62) arranged at the right end of the material pushing plate (61), a moving groove (63) arranged on the material pushing plate (61), a baffle plate (64) arranged on the moving groove (63), a first rack (65) arranged at the bottom of the material outlet (34), a moving gear (66) arranged at the left end of the moving groove (63), a connecting rope (67) connecting the moving gear (66) and the baffle plate (64), and a material pushing spring (68) arranged at the left end of the material pushing plate (61); the material pushing plate (61) inclines towards the port of the material outlet (34); the right end of the material pushing plate (61) is rotatably embedded on the discharge hole (34).
4. The automatically eatable cat meal tray of claim 1, wherein: the water storage device (2) comprises a water storage gear (21) arranged at the top of a water storage cavity (11), a second rack (22) arranged at the top of the water storage cavity (11), a third rack (23) arranged on a driving mechanism (5), a threaded rod (24) arranged on the water storage gear (21), a threaded torsion spring (25) arranged at the bottom of the threaded rod (24), a hydraulic plate (26) arranged in the water storage cavity (11), a ratchet rack (27) arranged on the inner wall of the water storage cavity (11), a movable tooth (28) arranged on the hydraulic plate (26), a first inclined block (29) arranged on the movable tooth (28), a second inclined tooth (290) arranged at the lower end of the movable tooth (28), a spring buckle (291) arranged on the movable tooth (28), a clamping groove (292) arranged in the hydraulic plate (26), and inclined blocks (293) arranged on the lower wall of the water storage cavity (11) respectively, The water storage pipe (294) is arranged at the bottom of the water inlet disc (13); the threaded torsion spring (25) is connected with the bottom of the threaded rod (24) and the bottom of the water storage cavity (11); the water pressure plate (26) can be embedded in the water storage cavity (11) in a vertically moving manner; the ratchet bar (27) is arranged on the inner wall of the water storage cavity (11); the moving teeth (28) are embedded on the water pressure plate (26) in a transversely movable mode, and the moving teeth (28) are connected with the water pressure plate (26) through springs.
CN202110907842.5A 2021-08-09 2021-08-09 Cat dinner plate capable of automatically feeding food Active CN113632738B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110907842.5A CN113632738B (en) 2021-08-09 2021-08-09 Cat dinner plate capable of automatically feeding food

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110907842.5A CN113632738B (en) 2021-08-09 2021-08-09 Cat dinner plate capable of automatically feeding food

Publications (2)

Publication Number Publication Date
CN113632738A CN113632738A (en) 2021-11-12
CN113632738B true CN113632738B (en) 2022-08-09

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Application Number Title Priority Date Filing Date
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Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT312354B (en) * 1969-12-04 1973-12-27 Boehm Leo Kg Feeding system, especially for pigs
KR20040083736A (en) * 2003-03-24 2004-10-06 한상곤 A feed apparatus
JP2006266148A (en) * 2005-03-23 2006-10-05 Michihiko Watanabe Water turbine and automatic feeding/water supplying device with timer function
WO2011076379A2 (en) * 2009-12-26 2011-06-30 Hans Stark E.K. Animal food cover actuation device, in particular for animal food containers and an animal food device
CN108094241A (en) * 2017-11-27 2018-06-01 浦江县泰如食品科技有限公司 Pet dog automatic feeding equipment
CN208446339U (en) * 2018-07-18 2019-02-01 辽宁工业大学 A kind of pet food dispensing device
CN109156375B (en) * 2018-08-20 2021-06-15 成都赛果物联网技术有限公司 Pet snack feeding device and feeding method
CN109362597A (en) * 2018-11-09 2019-02-22 盐城市华阜服饰玩具有限公司 A kind of pet toy with feeding function
CN111990271A (en) * 2020-09-07 2020-11-27 衢州飞河畜牧科技有限公司 Livestock feed quantitative feeding equipment

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Denomination of invention: A cat dinner plate that can be fed automatically

Effective date of registration: 20220920

Granted publication date: 20220809

Pledgee: Agricultural Bank Chinese Limited by Share Ltd. Jingning She Nationality Autonomous County branch

Pledgor: ZHEJIANG JINGNING MINGHUI ARTS & CRAFTS CO.,LTD.

Registration number: Y2022980015697