CN213961276U - Automatic feeder - Google Patents

Automatic feeder Download PDF

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Publication number
CN213961276U
CN213961276U CN202022800580.6U CN202022800580U CN213961276U CN 213961276 U CN213961276 U CN 213961276U CN 202022800580 U CN202022800580 U CN 202022800580U CN 213961276 U CN213961276 U CN 213961276U
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controller
shell
transmission
automatic feeder
driven gear
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CN202022800580.6U
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Chinese (zh)
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肖江林
黄高飞
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Guangdong Linsheng Intelligent Technology Co ltd
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Guangdong Linsheng Intelligent Technology Co ltd
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Abstract

The utility model relates to an automatic feeder; the material storage device comprises a controller and a material storage mechanism, wherein the material storage mechanism comprises a charging bucket and a sealing cover, the controller comprises a shell, a power supply mechanism and a transmission mechanism, the shell comprises an outer shell and an inner shell, the inner shell is provided with a material cavity communicated with the interior of the charging bucket, a material stirring rotor mutually connected with the transmission mechanism is arranged in the material cavity, the outer shell is provided with a material discharging channel, one end of the material discharging channel is exposed out of the outer side of the controller to form a material discharging port, the material discharging channel is provided with an infrared sensing head, and the outer shell is provided with a touch control panel; the beneficial effects of the utility model embody: through set up the infrared induction head on discharging channel in order to prevent stifled grain to increase the rotational speed of gear box in order to control group material rotor in the controller, the storage bucket adopts the assembly of detachable rotation type, can pull down the back and reverse detain in the outside of controller, reduces whole volume, and the packing and accomodating of being convenient for are provided with the drier in the top cap, can prevent that grain from weing, convenient to use, and the practicality is strong.

Description

Automatic feeder
Technical Field
The utility model relates to a feeder refers in particular to an automatic feeder that can realize accurate feeding and reduce the convenient storage of packing.
Background
As the living standard of people is continuously improved, more and more people can select different pets to be fed in daily life to increase the life pleasure, because the feeding time and the food consumption of different pets are different, and people often need to go out, the pet feeder is difficult to ensure to feed accurately and accurately, so the feeder becomes the optimal choice of the waiters, the pet feeder on the market generally feeds directly at present, the pet can continuously eat the food stored in the feeder, the pet is too much to eat and is easy to get fat, the food is easy to be polluted after being exposed in the air for a long time, a lot of food is wasted, and the feeder does not have any moisture-proof measure, so the food of the pet is easy to be damaged due to moisture, the health of the pet is influenced after the pet is eaten, the food is easy to be blocked, the pet is hungry and is inconvenient to use by people, the practicability is poor.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problems, the utility model aims to provide a feeder, in particular to an automatic feeder which can realize accurate feeding and reduce packaging.
In order to achieve the above object, the utility model adopts the following technical scheme: an automatic feeder comprises a controller and a storage mechanism detachably mounted on the controller, wherein the storage mechanism comprises a charging basket and a sealing cover arranged at the top of the charging basket, the controller comprises a shell, a power supply mechanism and a transmission mechanism, the shell comprises an outer shell and an inner shell arranged in the outer shell, the power supply mechanism and the transmission mechanism are respectively arranged in the outer shell, the inner shell is provided with a material cavity used for quantitatively distributing grains, the material cavity is communicated with the inside of the charging basket, a material stirring rotor is arranged in the material cavity, the material stirring rotor is in transmission connection with the transmission mechanism, a discharging channel used for sending out the grains is arranged in the outer shell, one end of the discharging channel is communicated with the material cavity, the other end of the discharging channel is exposed out of the controller to form a discharging port used for discharging, two sides of the discharging channel are respectively provided with an infrared induction head used for detecting whether grain blockage exists or not, a touch control panel is arranged on the surface of the shell;
when in use, the charging bucket is positively arranged on the controller to form a cylinder body for containing grains;
when the storage device is in a storage state, the charging barrel on the controller is detached and reversely sleeved outside the controller, so that the storage with reduced volume is realized.
Preferably, the transmission mechanism comprises a gear box and a reduction gear set arranged in the gear box, a driving motor for providing integral transmission power is arranged in the gear box, and the reduction gear set is respectively connected with the driving motor and the material stirring rotor in a transmission manner so as to realize transmission.
Preferably, reduction gear set includes first driven gear, second driven gear, third driven gear and output gear, first driven gear with driving motor's transmission shaft intermeshing realizes power transmission, second driven gear respectively with first driven gear with third driven gear intermeshing, third driven gear with output gear intermeshing is in order to realize the transmission, it is provided with the transfer line to dial the material rotor, the transfer line card is located on the output gear, so that output gear drives it rotates to dial the material rotor.
Preferably, the bottom of the output gear is provided with a toothed limiting bump, the gear box is provided with a micro switch for recording eating times, and an elastic reed of the micro switch is abutted against the limiting bump so that the limiting bump can trigger a signal of the eating times by shifting the reed.
Preferably, a comb-tooth-shaped blocking piece for preventing grain blockage is arranged in the material cavity, and the blocking piece is positioned in the middle of the material cavity and separates the material discharging channel from the material cavity.
Preferably, one side of the controller is provided with a USB interface for plugging an external power supply, and the other side of the controller is provided with a hopper which is detachably arranged below the discharge port.
Preferably, the inside of sealed lid is provided with the detachable installing frame, be provided with the drier in the installing frame, the inside of sealed lid is provided with annular cardboard, be provided with a plurality of joint hole on the annular cardboard, the top inboard of storage bucket be provided with a plurality of with joint hole matched with locking block, a plurality of locking block and a plurality of the joint hole mutually supports the joint, makes sealed lid rotatably dismantle install in the top of storage bucket.
Preferably, control panel is provided with a plurality of button, a plurality of the button all is provided with the warning light in order to show current state, the shell is provided with and is corresponding to a plurality of the button with the display area of control panel position, the wall thickness in display area is less than the wall thickness of shell to make light pass through the display area shows.
Preferably, the inner shell is provided with annular mounting groove, be provided with positioning slot on the lateral wall of mounting groove, the bottom of storage bucket be provided with mounting groove matched with installation piece, the inboard integrated into one piece of installation piece be provided with positioning slot matched with positioning fixture block, the installation piece card is located in the mounting groove, make positioning fixture block with positioning slot realizes mutual joint or unclamps through the not equidirectional rotary motion, thereby makes storage bucket detachably install in on the inner shell.
Preferably, the driving motor and the control panel are electrically connected to the power supply mechanism respectively.
The beneficial effects of the utility model embody: the utility model aims at providing an automatic feeder, through set up the infrared induction head on discharging channel, flow through infrared ray detection food in discharging channel is in order to record out and eat the number of times, and increase the gear box and increase the rotational speed of moment of torsion in order to control the stirring rotor in the controller, prevent that the rotational speed from influencing out at the excessive speed and eating, the storage bucket adopts detachable rotation type assembly, can pull down the outside of back reverse knot at the controller when not using, in order to reduce whole volume, be convenient for pack and accomodate, and be provided with the drier in the top cap, can effectively prevent that grain from weing, convenient to use, therefore, the clothes hanger is strong in practicability.
Drawings
Fig. 1 is a schematic view of the overall structure of the present invention.
Fig. 2 is a schematic diagram of the internal structure of the controller of the present invention.
Fig. 3 is the internal structure schematic diagram of the storage mechanism of the present invention.
Fig. 4 is a schematic structural diagram of the inner shell of the present invention.
Fig. 5 is a structural sectional view of the inner shell and the discharge passage of the present invention.
Fig. 6 is a schematic view of the internal structure of the gear box of the present invention.
Fig. 7 is the assembly structure diagram of the reduction gear set and the material stirring rotor of the present invention.
Fig. 8 is a schematic structural diagram of the controller of the present invention.
Fig. 9 is a schematic structural view of the present invention in the overall storage state.
Fig. 10 is a schematic structural view of the charging bucket of the present invention.
Reference is made to the accompanying drawings in which:
1-a controller; 2-a material storage mechanism; 3-a charging basket; 4-sealing cover; 5-a shell; 6-a power supply mechanism; 7-a transmission mechanism; 8-a housing; 9-inner shell; 10-a material cavity; 11-a material poking rotor; 12-a discharge channel; 13-a discharge hole; 14-infrared induction head; 15-control panel; 16-a gearbox; 17-a reduction gear set; 18-a drive motor; 19-a first driven gear; 20-a second driven gear; 21-a third driven gear; 22-output gear; 23-a drive shaft; 24-a limit bump; 25-a microswitch; 26-a baffle plate; 27-a USB interface; 28-a hopper; 29-mounting the frame; 30-a key; 31-a mounting groove; 32-positioning card slot; 34-positioning fixture block; 35-a transmission rod; 39-locking block.
Detailed Description
In the following description, any concept relating to the directions or orientations of up, down, left, right, front, and rear is given with respect to the position shown in the drawings being described, and thus should not be construed as particularly limiting the technical solution provided by the present invention.
The following detailed description of the embodiments of the present invention is provided with reference to the accompanying drawings:
as shown in fig. 1-10, an automatic feeder comprises a controller 1 and a storage mechanism 2 detachably mounted on the controller 1, the storage mechanism 2 includes a bucket 3 and a sealing cover 4 disposed on the top of the bucket 3, the controller 1 includes a casing 5, a power supply mechanism 6 and a transmission mechanism 7, the casing 5 includes an outer casing 8 and an inner casing 9 disposed in the outer casing 8, the power supply mechanism 6 and the transmission mechanism 7 are respectively disposed in the outer casing 8, the inner casing 9 is provided with a material cavity 10 for quantitatively distributing grains, the material cavity 10 is communicated with the inside of the bucket 3, the material cavity 10 is provided with a material stirring rotor 11, the material stirring rotor 11 and the transmission mechanism 7 are drivingly connected with each other, the outer casing 8 is provided with a discharge channel 12 for sending out grains, one end of the discharge channel 12 is communicated with the material cavity 10, the other end of the discharge channel 12 is exposed outside the controller 1 to form a discharge port 13 for discharging, infrared induction heads 14 for detecting whether grain blockage occurs or not are respectively arranged on two sides of the discharge channel 12, when grain blockage occurs, the driving motor 18 stops rotating, the infrared induction heads 14 for detecting the food discharge frequency of the discharge channel 12 are respectively arranged on two sides of the discharge channel 12, infrared rays are emitted and received through the infrared induction heads 14, when food passes through the middle of the discharge channel 12, signals are sensed by the infrared induction heads 14 and are recorded as one-time food discharge, and a touch control panel 15 is arranged on the surface of the shell 8;
in a use state, the charging bucket 3 is positively arranged on the controller 1 to form a cylinder body for containing grains;
when in a storage state, the charging barrel 3 on the controller 1 is detached and reversely sleeved outside the controller 1, so that storage with reduced volume is realized.
Preferably, the transmission mechanism 7 comprises a gear box 16 and a reduction gear set 17 arranged in the gear box 16, a driving motor 18 providing integral transmission power is arranged in the gear box 16, and the reduction gear set 17 is respectively connected with the driving motor 18 and the material stirring rotor 11 in a transmission manner to realize transmission.
Preferably, the reduction gear set 17 includes a first driven gear 19, a second driven gear 20, a third driven gear 21 and an output gear 22, the first driven gear 19 is engaged with a transmission shaft 23 of the driving motor 18 to realize power transmission, the second driven gear 20 is respectively engaged with the first driven gear 19 and the third driven gear 21, the third driven gear 21 is engaged with the output gear 22 to realize transmission, the material stirring rotor 11 is provided with a transmission rod 35, and the transmission rod 35 is clamped on the output gear 22 to enable the output gear 22 to drive the material stirring rotor 11 to rotate.
Preferably, a toothed limiting bump 24 is arranged at the bottom of the output gear 22, the gear box 16 is provided with a micro switch 25 for recording the eating times, and an elastic reed of the micro switch 25 abuts against the limiting bump 24, so that the limiting bump 24 triggers the reed to send a signal of the eating times.
Preferably, a comb-shaped baffle 26 for preventing grain blockage is arranged in the material cavity 10, and the baffle 26 is located in the middle of the material cavity 10 and separates the material outlet channel 12 and the material cavity 10 from each other.
Preferably, one side of the controller 1 is provided with a USB interface 27 for connecting an external power supply, and the other side is provided with a hopper 28, and the hopper 28 is detachably arranged below the discharge hole 13.
Preferably, the inside of sealed lid 4 is provided with detachable installing frame 29, be provided with the drier in the installing frame 29, the inside of sealed lid 4 is provided with annular cardboard, be provided with a plurality of joint hole on the annular cardboard, the top inboard of storage bucket 3 be provided with a plurality of with joint hole matched with locking block 39, a plurality of locking block 39 and a plurality of the joint hole mutually supports the joint, makes sealed lid 4 rotatably dismantle install in the top of storage bucket 3.
Preferably, control panel 15 is provided with a plurality of button 30, a plurality of button 30 all is provided with the warning light in order to show current state, shell 8 is provided with corresponding to a plurality of button 30 with the display area of control panel 15 position, the wall thickness of display area is less than the wall thickness of shell 8, so that light can pass through the display area shows, specifically, shell 8 will glue a wall thickness and draw thin in the position department that corresponds the display light to make light can pass through shell 8, improve display effect.
Preferably, the inner shell 9 is provided with annular mounting groove 31, be provided with positioning slot 32 on the lateral wall of mounting groove 31, the bottom of storage bucket 3 be provided with mounting groove 31 matched with installation piece, the inboard integrated into one piece of installation piece be provided with positioning slot 32 matched with location fixture block 34, the installation piece card is located in the mounting groove 31, make location fixture block 34 with positioning slot 32 realizes mutual joint or unclamps through the not equidirectional rotary motion, thereby makes storage bucket 3 detachably install in on the inner shell 9.
Preferably, the driving motor 18 and the control panel 15 are electrically connected to the power supply mechanism 6, respectively.
The utility model relates to an automatic feeder, storage bucket 3 are both ends open-ended cavity round platform form casing 5, and the less one end of width is the bottom of storage bucket 3, and the great one end of width is the top of storage bucket 3, and its top width is greater than the whole width of controller 1.
Further, when in use, charging basket 3 is forward installed on inner shell 9, and in the installation, the bottom installation piece card of charging basket 3 is located in the mounting groove 31 of inner shell 9 to rotate charging basket 3, make the inboard location fixture block 34 of material through bottom installation piece block locate the positioning slot 32 on the mounting groove 31 inside wall respectively, thereby make charging basket 3 fix the top at controller 1, pour grain into charging basket 3, and cover the sealed lid 4 that is provided with the drier and can use.
Further, when need not use or go out to carry, rotate storage bucket 3 with the opposite direction when installing, make the location fixture block 34 on the installation piece of storage bucket 3 bottom deviate from positioning slot 32, realize the dismantlement of storage bucket 3 in inner shell 9, dismantle when storage bucket 3 and accomplish the back, prevent hopper 28 in the material chamber 10 of inner shell 9, then reverse storage bucket 3, and wholly detain and establish the outside at controller 1, cover sealed lid 4 again on the outside storage bucket 3 of controller 1, in order to accomplish holistic accomodating.
Further, the reduction gear set 17 includes a first driven gear 19, a second driven gear 20, a third driven gear 21 and an output gear 22, wherein the first driven gear 19, the second driven gear 20 and the third driven gear 21 are all double-layer gears, a large gear ring of the first driven gear 19 is engaged with a transmission shaft 23 of the driving motor 18, power is transmitted to the first driven gear 19 through the transmission shaft 23, a large gear ring of the second driven gear 20 is engaged with a small gear ring on the first driven gear 19 to realize power transmission, a large gear ring of the third driven gear 21 is engaged with a small gear ring of the second driven gear 20, a small gear ring of the third driven gear 21 is engaged with the output gear 22, a connecting hole is arranged in the middle of the output gear 22, a transmission rod 35 is arranged at the bottom of the material stirring rotor 11, the transmission rod 35 is inserted into the connecting hole to connect the output gear 22 and the material stirring rotor 11, thereby enabling power transmission from the drive motor 18 to the kick-off rotor 11.
The above, it is only the preferred embodiment of the present invention, not right the technical scope of the present invention makes any restriction, the technical personnel of the industry, under this technical scheme's enlightenment, can do some deformation and modification, all the basis the utility model discloses a technical essence is to any modification, the equivalent change and the modification of the above embodiment do, all still belong to the technical scheme's scope of the present invention.

Claims (10)

1. An automatic feeder, comprising: the grain storage device comprises a controller and a storage mechanism detachably mounted on the controller, the storage mechanism comprises a charging basket and a sealing cover arranged at the top of the charging basket, the controller comprises a shell, a power supply mechanism and a transmission mechanism, the shell comprises an outer shell and an inner shell arranged in the outer shell, the power supply mechanism and the transmission mechanism are respectively arranged in the outer shell, the inner shell is provided with a material cavity used for quantitatively distributing grains, the material cavity is communicated with the inside of the charging basket, a material stirring rotor is arranged in the material cavity, the material stirring rotor is in transmission interconnection with the transmission mechanism, a discharging channel used for sending out grains is arranged in the outer shell, one end of the discharging channel is communicated with the material cavity, the other end of the discharging channel is exposed out of the controller to form a discharging port used for discharging, and infrared induction heads used for detecting whether grain blockage exists or not are respectively arranged on two sides of the discharging channel, a touch control panel is arranged on the surface of the shell;
when in use, the charging bucket is positively arranged on the controller to form a cylinder body for containing grains;
when the storage device is in a storage state, the charging barrel on the controller is detached and reversely sleeved outside the controller, so that the storage with reduced volume is realized.
2. The automatic feeder of claim 1, wherein: the transmission mechanism comprises a gear box and a reduction gear set arranged in the gear box, a driving motor for providing integral transmission power is arranged in the gear box, and the reduction gear set is respectively connected with the driving motor and the material stirring rotor in a transmission manner so as to realize transmission.
3. The automatic feeder of claim 2, wherein: the reduction gear set comprises a first driven gear, a second driven gear, a third driven gear and an output gear, the first driven gear is meshed with a transmission shaft of the driving motor to achieve power transmission, the second driven gear is meshed with the first driven gear and the third driven gear respectively, the third driven gear is meshed with the output gear to achieve transmission, the material stirring rotor is provided with a transmission rod, and the transmission rod is clamped on the output gear to enable the output gear to drive the material stirring rotor to rotate.
4. The automatic feeder of claim 3, wherein: the bottom of the output gear is provided with a toothed limiting bump, the gear box is provided with a micro switch for recording the eating times, and an elastic reed of the micro switch is abutted against the limiting bump so that the limiting bump can trigger the eating times signal by shifting the reed.
5. The automatic feeder of claim 1, wherein: the grain-blocking-prevention material feeding device is characterized in that a comb-tooth-shaped blocking piece for preventing grains from being blocked is arranged in the material cavity, is positioned in the middle of the material cavity and separates the material discharging channel from the material cavity.
6. The automatic feeder of claim 1, wherein: one side of the controller is provided with a USB interface for plugging an external power supply, and the other side of the controller is provided with a hopper which is detachably arranged below the discharge hole.
7. The automatic feeder of claim 1, wherein: the inside of sealed lid is provided with the detachable installing frame, be provided with the drier in the installing frame, the inside of sealed lid is provided with annular cardboard, be provided with a plurality of joint hole on the annular cardboard, the top inboard of storage bucket be provided with a plurality of with joint hole matched with locking block, a plurality of locking block and a plurality of the joint hole mutually supports the joint, makes sealed lid rotatably install in the top of storage bucket with dismantling.
8. The automatic feeder of claim 1, wherein: control panel is provided with a plurality of button, a plurality of the button all is provided with the warning light in order to show current state, the shell is provided with corresponding to a plurality of the button with the display area of control panel position, the wall thickness of display area is less than the wall thickness of shell to make light pass through the display area shows.
9. The automatic feeder of claim 1, wherein: the inner shell is provided with annular mounting groove, be provided with positioning channel groove on the lateral wall of mounting groove, the bottom of storage bucket be provided with mounting groove matched with installation piece, the inboard integrated into one piece of installation piece be provided with positioning channel groove matched with positioning fixture block, the installation piece card is located in the mounting groove, make positioning fixture block with positioning channel groove realizes mutual joint or unclamps through the not equidirectional rotary motion, thereby makes storage bucket detachably install in on the inner shell.
10. The automatic feeder of claim 2, wherein: the driving motor and the control panel are respectively electrically connected with the power supply mechanism.
CN202022800580.6U 2020-11-28 2020-11-28 Automatic feeder Active CN213961276U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022800580.6U CN213961276U (en) 2020-11-28 2020-11-28 Automatic feeder

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022800580.6U CN213961276U (en) 2020-11-28 2020-11-28 Automatic feeder

Publications (1)

Publication Number Publication Date
CN213961276U true CN213961276U (en) 2021-08-17

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022800580.6U Active CN213961276U (en) 2020-11-28 2020-11-28 Automatic feeder

Country Status (1)

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CN (1) CN213961276U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114698562A (en) * 2022-03-28 2022-07-05 安克创新科技股份有限公司 Feeder and food jam detection method thereof

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114698562A (en) * 2022-03-28 2022-07-05 安克创新科技股份有限公司 Feeder and food jam detection method thereof
CN114698562B (en) * 2022-03-28 2023-11-17 安克创新科技股份有限公司 Feeding device and card food detection method thereof

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