CN216535041U - Material conveying device of closed intelligent cooking equipment - Google Patents

Material conveying device of closed intelligent cooking equipment Download PDF

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Publication number
CN216535041U
CN216535041U CN202122392083.1U CN202122392083U CN216535041U CN 216535041 U CN216535041 U CN 216535041U CN 202122392083 U CN202122392083 U CN 202122392083U CN 216535041 U CN216535041 U CN 216535041U
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China
Prior art keywords
basket
conveyer
intelligent cooking
conveying channel
cooking equipment
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CN202122392083.1U
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Chinese (zh)
Inventor
王黎明
谢强
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Wuxi Institute of Commerce
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Wuxi Institute of Commerce
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Abstract

The utility model provides a material delivery device capable of saving labor force for closed intelligent cooking equipment, and aims to solve the problems that the material delivery device of the existing closed intelligent cooking equipment is inconvenient to add materials and affects labor force release. This closed intelligent cooking equipment's material conveyer includes conveyer, installs basket and material transfer passage on conveyer's conveyer belt, and material transfer passage is from conveyer top downward sloping to pan directly over, and there is a breach material transfer passage's bottom, and this breach can supply to empty the basket of the material and pass when the conveyer belt moves. A whistle-shaped connecting bridge is arranged on the outer wall of the bottom of the material conveying channel, and a bridge arm extends out of the outer wall of the bottom of the material conveying channel to the gap. After the material basket reaches the top end of the conveying device, under the gravity of the materials, the cover plate of the material basket is opened and is lapped on the extended bridge arm to cover the gap, so that the materials can smoothly fall into the pot through the material conveying channel.

Description

Material conveying device of closed intelligent cooking equipment
Technical Field
The utility model relates to the field of intelligent cooking, in particular to a material conveying device of closed intelligent cooking equipment.
Background
In the dual background of negative growth in labor and rapid development of the intelligent technology level, research on automatic cooking apparatuses is beginning to rise. The feeding system of the intelligent cooking equipment is an important component of the intelligent cooking equipment. At present, the material putting mode of the intelligent cooking equipment mainly comprises the following types: (1) the pot body is moved to a receiving position, the material box pours the materials into the pot, namely the position of the material box is relatively fixed, and the material box can turn over and pour the materials around a shaft; (2) the pot body is fixed at a fixed position, and the material box is conveyed to the pot body position through the conveying mechanism to dump materials; (3) the material box is positioned above the pot body, namely the pot body and the material box are relatively fixed, and the material box is opened and closed through the opening mechanism to put in the materials. In the prior art, the material putting mode of the type (2) is mainly directed at the open type intelligent cooking equipment, and the material putting of the closed type intelligent cooking equipment is mainly the type (1) and the type (3). For the closed intelligent cooking equipment, the feeding systems of the materials (1) and (3) are very inconvenient to feed, the panel of the closed intelligent cooking equipment needs to be opened, the material box is taken out, and the materials are filled and then are put back. The purpose of developing intelligent cooking equipment is to save labor force, and the feeding mode of the material feeding systems (1) and (3) reduces the releasing effect of the intelligent cooking equipment on the labor force.
Disclosure of Invention
The utility model provides a material delivery device capable of saving labor force for closed intelligent cooking equipment, and aims to solve the problems that the material delivery device of the existing closed intelligent cooking equipment is inconvenient to add materials and affects labor force release.
The utility model adopts the following scheme to solve the problems: this closed intelligent cooking equipment's material conveyer includes conveyer, installs basket and material transfer passage on conveyer's conveyer belt, and material transfer passage is from conveyer top downward sloping to pan directly over, and there is a breach material transfer passage's bottom, and this breach can supply to empty the basket of the material and pass when the conveyer belt moves.
A whistle-shaped connecting bridge is arranged on the outer wall of the bottom of the material conveying channel, and a bridge arm extends out of the outer wall of the bottom of the material conveying channel to the gap. After the material basket reaches the top end of the conveying device, under the gravity of the materials, the cover plate of the material basket is opened and is lapped on the extended bridge arm to cover the gap, so that the materials can smoothly fall into the pot through the material conveying channel.
The root of the bridge arm of the connecting bridge is a rotatable cylinder or a sphere, preferably a cylinder. The rotating shaft of the cylinder or the sphere is horizontal and parallel to the surface of the conveying belt, and the inner wall of the cylinder at the root of the bridge arm is provided with the gravity block. The bridge arm can rotate around the rotating shaft of the cylinder to leave the position of the notch for the material basket to pass through. After the material basket passes through the gap, the bridge arm rotates to the original position under the action of the gravity block. In order to accelerate the bridge arm to return to the original position and be stable, a first magnet piece is installed on the bridge arm, and a second magnet piece attracted with the first magnet piece is installed at the bottom of the material conveying channel.
In order to prevent that the material residue from dropping to intelligent cooking equipment, increase the clearance degree of difficulty, be equipped with the spherical arch of making by elastic material on the material basket apron, the basket corresponds the position and is equipped with the hole of corresponding size, and spherical arch can be by the extrusion in the embedding hole. The attractive force between the first magnet piece and the second magnet piece and the weight of the gravity block are controlled, so that the spherical protrusions can be extruded and embedded into the holes by the reaction force applied to the bridge arm when the material basket passes through the notch and pushes the bridge arm to rotate.
The utility model has the advantages that: prior art conveyors typically convey material laterally and the material is placed directly on a conveyor belt. Such a conveyor is not feasible for material transfer in a closed intelligent cooking device. Because the conveying belt is transversely arranged, the occupied area is too large, and the applicability is not strong; the materials used in cooking are primarily pre-treated cooking raw materials that are placed directly on the conveyor belt and can contaminate the conveyor belt and "taint" the cooked product. The conveyor belt is vertically arranged, so that the space can be saved; the separate material baskets prevent the cooking raw materials from being deeply contaminated with each other and the conveyor belt from being deeply contaminated.
The whistle-shaped connecting bridge used in the utility model enables the material basket to pass through the gap of the material conveying channel after the material basket conveys the material and return to the original position, and meanwhile, the gap does not influence the material conveying. The connecting mechanism is simple in structure and convenient to use.
Drawings
FIG. 1 is a schematic view of a material transfer device;
FIG. 2 is a schematic view of the location of a "Whistle" type connecting bridge;
FIG. 3 is a schematic sectional view of a whistle-type connecting bridge;
FIG. 4 is a schematic cross-sectional view of an elastic protrusion and a corresponding hole of a material basket;
FIG. 5 is a schematic view of a material basket installation configuration;
FIG. 6 is a schematic view of the structure of an elastic bulge and a corresponding hole of a material basket;
FIG. 7 is a schematic diagram of the state of a material conveying channel and the position of a material conveying device in an intelligent cooking device when the material passes through the material conveying channel;
fig. 8 is a schematic view of the state of a whistle-type connecting bridge when the material basket passes through the gap.
Detailed Description
The material conveying device of the closed intelligent cooking equipment in the embodiment comprises a conveying device 1, a material basket 3 detachably mounted on the conveying device 1 and a material conveying channel 4, wherein the conveying device 1 comprises a first cylindrical gear 5, a second cylindrical gear 6 and a conveying belt 2 matched with the gears. First cylindrical gear 5 is the same with second cylindrical gear 6, and installs side by side in the vertical direction, and one side conveyer belt and closed intelligent cooking equipment lateral wall parallel and level, and first cylindrical gear 5 is connected with the motor, is the action wheel, and second cylindrical gear 6 is from the driving wheel. The material inlet 13 of the material conveying channel 4 is positioned above the first cylindrical gear 5, the material outlet 14 is positioned right above the pot, the trend of downward inclination is from the material inlet 13 to the material outlet 14, and the material outlet 14 is lower than the first cylindrical gear 5. The bottom 12 of the material conveying channel 4 is a plane, and a gap 24 is arranged between the bottom 12 and the conveyor belt 2, and the gap 24 can at least contain the material basket 3 to pass through (figure 1). A "whistle" type connecting bridge 15 is mounted on the outside of the bottom surface 12, and the arms 16 of the connecting bridge 15 extend from the outside of the bottom surface 12 in the direction of the notches 24 along the bottom surface 12. The root of the bridge arm 16 is a hollow cylinder 19 which can rotate, the axis of rotation of the hollow cylinder 19 being horizontal and parallel to the vertical surface of the conveyor belt 2, around which central axis the bridge arm 16 can rotate (fig. 4). And a gravity block 20 is arranged on the inner wall of the cylinder 19 opposite to the root of the bridge arm 16. A first magnet piece 17 is attached to the arm 16, a second magnet piece 18 is attached to the bottom surface 12 at a position corresponding to the first magnet piece 17, and the first magnet piece 17 and the second magnet piece 18 attract each other (fig. 2 and 3).
The material basket 3 is mounted on the conveyor 1 by mounting structure. The mounting arrangement comprises a mounting bracket 7 secured to the conveyor 1 and a spigot on the material basket 3. The mounting bracket 7 is provided with a mounting hole 8, an elastic bulge 9 is arranged in the mounting hole 8, a plug 10 of the material basket 3 is matched with the mounting hole 8 in shape, and a groove 11 (shown in figure 4) matched with the elastic bulge 9 in shape is arranged at a position corresponding to the elastic bulge 9.
In order to pour out the raw materials, the material basket 3 is in an inverted cone shape, and a cover plate 21 is arranged on the basket. The cover plate 21 is provided with a spherical latex bulge 22, and a hole 23 is arranged at the corresponding position of the basket body. The diameter of the spherical latex projection 22 is 1-2 mm larger than that of the hole 23. The spherical latex protrusions 22 are not inserted into the holes 23 when the cover plate 21 is normally covered on the basket, but if force is applied, the spherical latex is deformed to be inserted into the holes 23 (fig. 5 and 6). The attractive force between the first magnet piece 17 and the second magnet piece 18 and the weight of the gravity block 20 are controlled so that the spherical latex protrusions 22 can be pressed into the insertion holes 23 by the reaction force applied when the material basket 3 pushes the bridge arm 16 to rotate through the notch 24.
When the device is used for conveying raw materials, the motor drives the first cylindrical gear 5 to rotate anticlockwise so as to drive the conveying belt 2 to rotate anticlockwise. The raw material is loaded into the basket 3, and the cover plate 21 is covered on the basket 3 in such a manner that the spherical latex projections 22 are not inserted into the holes 23. The material basket 3 rises along with the conveyor belt 2, when the material basket reaches the top end of the conveyor 1 and begins to fall, the cover plate 21 is opened under the action of self gravity and material thrust, and turns downwards to be lapped on the bridge arm 16 of the connecting bridge 15, a gap 24 between the bottom 12 of the material conveying channel 4 and the conveyor belt 2 is covered, and materials smoothly pass through the material conveying channel 4 and enter a pot (figure 7). After the raw materials are poured, the material basket 3 moves downwards along with the conveyor belt 2, the included angle between the basket body and the cover plate 21 is smaller and smaller until 0 degree, then the basket body and the cover plate 21 apply acting force to the bridge arm 16 of the connecting bridge 15 together, and mainly overcome the attraction between the first magnet piece 17 and the second magnet piece 18 and the gravity borne by the gravity block, so that the bridge arm 16 rotates downwards clockwise, a gap 24 (shown in figure 8) is exposed, and the material basket 3 passes through (shown in figure 8). After basket 3 has passed through gap 24, bridge 15 is rotated back into position counter-clockwise by gravity block 20. Basket 3 is also subjected to the reaction force of arm 16, while applying force to arm 16. This reaction force causes the spherical latex projections 22 to be fitted into the holes 23.
When the charging basket 3 needs to be cleaned, the charging basket can be pulled out of the mounting hole 8 of the mounting bracket 7, and after cleaning is finished, the charging basket is inserted into the mounting hole 8.
The spherical latex protrusions 22 in the utility model can also be made of other elastic materials, such as rubber and elastic alloy. The basket body of the material basket can be in an inverted cone or pyramid shape, and the design is easy to pour materials cleanly; the device can also be a cube, so that more installation space can be saved. The material conveying channel 4 may be a non-deformable rigid pipe made of steel plate or a deformable flexible pipe made of plastic or the like. The flexible pipeline can save the inner space of the closed intelligent cooking equipment. When the flexible pipeline is used, the position of the notch and the contact part with the connecting bridge 15 need to be kept undeformed.

Claims (4)

1. The utility model provides a material conveyer of closed intelligent cooking equipment, includes conveyer (1), installs basket (3) and material transfer passage (4) on conveyer (1), conveyer (1) vertically conveys basket (3), material transfer passage (4) are followed conveyer (1) top downward sloping to pan top, characterized by: a notch (24) for the material basket (3) to pass through is arranged between the bottom (12) of the material conveying channel (4) and the conveyor belt (2) of the conveyor device (1), after the material basket (3) reaches the top end of the conveyor device (1), the cover plate (21) of the material basket (3) is opened and covers the notch (24), and the joint positions of the bottom (12) of the material conveying channel (4) and the cover plate (21) are connected through a connecting bridge (15).
2. The material transfer device of the enclosed intelligent cooking apparatus as set forth in claim 1, wherein: the connecting bridge (15) is of a whistle type, a bridge arm (16) of the connecting bridge extends out of the outer wall of the bottom of the material conveying channel (4) to a gap (24) and can rotate around a central shaft of a cylinder (19), a first magnet piece (17) is mounted on the bridge arm (16), a second magnet piece (18) attracted with the first magnet piece (17) is mounted at the corresponding position of the material conveying channel (4), and a gravity block (20) is mounted on the inner wall of the cylinder (19) on the opposite side of the root of the bridge arm (16).
3. The material-transferring device of the enclosed intelligent cooking apparatus as set forth in claim 2, wherein: the central axis of the cylinder (19) is horizontal and parallel to the surface of the conveyor belt (2) of the conveyor device (1).
4. The material transfer device of the enclosed intelligent cooking apparatus as set forth in claim 1, wherein: elastic bulges (22) are arranged on the cover plate (21), holes (23) are formed in the basket body of the material basket (3) in a corresponding position, and the elastic bulges (22) can be extruded and embedded into the holes (23).
CN202122392083.1U 2021-09-30 2021-09-30 Material conveying device of closed intelligent cooking equipment Active CN216535041U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122392083.1U CN216535041U (en) 2021-09-30 2021-09-30 Material conveying device of closed intelligent cooking equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122392083.1U CN216535041U (en) 2021-09-30 2021-09-30 Material conveying device of closed intelligent cooking equipment

Publications (1)

Publication Number Publication Date
CN216535041U true CN216535041U (en) 2022-05-17

Family

ID=81565527

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122392083.1U Active CN216535041U (en) 2021-09-30 2021-09-30 Material conveying device of closed intelligent cooking equipment

Country Status (1)

Country Link
CN (1) CN216535041U (en)

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
EE01 Entry into force of recordation of patent licensing contract
EE01 Entry into force of recordation of patent licensing contract

Assignee: SHENZHEN HANSHI INTELLIGENT TECHNOLOGY Co.,Ltd.

Assignor: WUXI INSTITUTE OF COMMERCE

Contract record no.: X2023980037044

Denomination of utility model: Material conveying device for closed intelligent cooking equipment

Granted publication date: 20220517

License type: Common License

Record date: 20230627