INTELLIGENT GARBAGE CAN
20220250835 · 2022-08-11
Inventors
Cpc classification
B65F2210/181
PERFORMING OPERATIONS; TRANSPORTING
B65F1/1638
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An intelligent garbage can includes an end cover rack of which the interior is hollow and the middle portion is horizontally provided with a support; a first member of which the middle portion is hollow and which is provided above the support; and a second member of which the middle portion is hollow and which is provided below the support; wherein one side of the second member is provided with an arc-shaped connecting portion extending outwards in a radial direction, and the arc-shaped connecting portion is bent upwards to form an arc-shaped surface. According to embodiments of the present disclosure, the arc-shaped connecting portion is provided on the bottom surface of the end cover, so that the sealing of the connection position of a garbage can containing box and the end cover is enhanced, and user experience is improved.
Claims
1. A connecting device, comprising: an end mechanism; an accommodating box disposed under the end mechanism; a connecting mechanism located between the end mechanism and the accommodating box; wherein the connecting mechanism is provided with at least two baffle plates, and the baffle plates form a wiring slot.
2. The connecting device of claim 1, wherein the connecting mechanism has a convex shape as a whole, an upper portion of the connecting mechanism is rotatably connected with the end mechanism, and a lower portion of the connecting mechanism is fixedly connected with the accommodating box.
3. The connecting device of claim 1, wherein the connecting mechanism is further provided with a holding cavity in which a gear set is placed.
4. The connecting device of claim 3, wherein a locking seat is provided in the holding cavity.
5. The connecting device of claim 1, wherein a rotating shaft hole is formed on a side wall of the connecting mechanism.
6. The connecting device of claim 1, wherein a through hole is provided on an upper bottom surface of the connecting mechanism.
7. The connecting device of claim 1, wherein the accommodating box is provided with a support flange.
8. The connecting device of claim 1, wherein the accommodating box is provided with grid ribs.
9. The connecting device of claim 1, wherein a blind hole is provided on the accommodating box, and the blind hole is adapted to a through hole to realize fixed connection of the connecting mechanism.
10. A positioning device, comprising: an end mechanism; an accommodating box disposed under the end mechanism; and a connecting mechanism located between the end mechanism and the accommodating box; wherein the accommodating box is provided with at least two positioning mechanisms, and the positioning mechanisms are disposed at intervals on a front surface of the connecting mechanism.
11. The positioning device of claim 10, wherein an outer periphery of the positioning mechanism is provided with reinforcing ribs at intervals.
12. The positioning device of claim 10, wherein the accommodating box is provided with a support flange.
13. The positioning device of claim 12, wherein the accommodating box is provided with grid ribs.
14. The positioning device of claim 13, wherein a middle of the positioning mechanism is provided with a blind hole, and the positioning mechanism is disposed at a lower portion of the grid ribs.
15. The positioning device of claim 10, wherein the connecting mechanism is in a convex shape as a whole, an upper portion of the connecting mechanism is rotatably connected with the end mechanism, and a lower portion of the connecting mechanism is fixedly connected with the accommodating box.
16. The positioning device of claim 10, wherein the connecting mechanism is further provided with a holding cavity in which a gear set is placed.
17. The positioning device of claim 10, wherein a through hole is provided on an upper bottom surface of the connecting mechanism, and the through hole is matched with the positioning mechanism.
18. The positioning device of claim 10, wherein the connecting mechanism is provided with a spring structure which comprises: a locking plate integrally formed with the connecting mechanism; and a spring extending upwardly to form a spring hook which fits with the locking plate.
19. An intelligent garbage can, comprising the positioning device according to claim 10.
20. The intelligent garbage can of claim 19, wherein an outer periphery of the positioning mechanism is provided with reinforcing ribs disposed at intervals, the accommodating box is provided with grid ribs, a middle of the positioning mechanism is provided with a blind hole, and the positioning mechanism is disposed at a lower portion of the grid ribs.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0116] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, but not all of the embodiments. All other embodiments obtained by a person of ordinary skill in the art without creative work based on the embodiments in the present application fall within the protection scope of the present application.
[0117] In the drawings, the shapes and dimensions may be exaggerated for clarity, and the same reference numbers will be used throughout the drawings to refer to the same or like parts.
[0118] In the following description, terms such as center, thickness, height, length, front, back, rear, left, right, top, bottom, upper, lower, etc., are defined relative to the configurations shown in the various figures. In certain circumstances, “height” corresponds to a size from top to bottom, “width” corresponds to a size from left to right, and “depth” corresponds to a size from front to back. They are relative concepts, so they may change accordingly according to their different locations and different states of use. Therefore, these and other orientations should not be construed as limiting.
[0119] Terms relating to attachment, coupling, etc., (e.g., “connected” and “attached”) refer to a relationship in which these structures are directly or indirectly fixed or attached to each other through intermediate structures, and refer to a movable or rigid attachment or relationship of these structures to each other through intermediate structures, unless expressly stated otherwise.
[0120] As shown in
[0121] an end cap frame 11, an interior of the end cap frame 11 being hollow, and a middle portion of the end cap frame 11 being horizontally provided with a bracket 111 (as shown in FIG. 8);
[0122] a first member 12, a middle of the first member 12 being hollow, and the first member 12 being disposed above the bracket 111; and
[0123] a second member 13, a middle of the second member 13 being hollow, and the second member 13 being disposed below the bracket 111;
[0124] the end cap frame 11, the first member 12 and the second member 13 are disposed coaxially from top to bottom in sequence, and the end cap device 10 is disposed above an equipment box 20 and an accommodating box 30.
[0125] The bracket 111 provides a guarantee for the stability of the first member 12 and the second member 13 in the end cap frame 11, and has a certain support for the first member 12, thereby reducing the supporting effect of the second member 13 on the first member 12.
[0126] With reference to
[0127] Referring first to
[0128] The flange 121 and the arc-shaped connecting portion 131 are disposed on a same side.
[0129] The first member 12 is provided with a skirt 122 extending axially and downwardly.
[0130] The first member 12 is provided with first support feet 1211 extending downwardly in an axial direction.
[0131] The supporting feet 1211 are distributed around the skirt 122 in a circular array and are integrated with the first member 12.
[0132] The first member 12 is provided with first snaps 1212 at intervals, and the first snaps 1212 are distributed in a circular array.
[0133] In a specific structure, a hollow portion of the first member 12 is provided with a garbage bag box 14. The purpose of providing the skirt 122 is that the skirt 122 also enables sealing throughout the end cap device 1 when the garbage bag box 14 leaves the first member 12. No dust or water will get inside the end cap, thus protecting the internal circuits.
[0134] Referring now to
[0135] The second member 13 is provided with second snaps 1312 at intervals, and the second snaps 1312 are distributed in a circular array.
[0136] The second member 13 is provided with a mounting groove 132 and partitions 1321 disposed in the mounting groove 132 at intervals.
[0137] In a specific embodiment, a packaging mechanism 16 is installed on the mounting groove 132. The partitions 1321 play a certain supporting role for the packing mechanism 16.
[0138] As shown in
[0139] The hook structures 1121 are respectively matched with the first snap 1212 and the second snap 1312 to form a snap structure.
[0140] Referring now to
[0141] A lower end surface of the bracket 111 of the end cap frame 11 is provided with a partition support portion 1112.
[0142] Wherein the partition support base 1111 is matched with the first support foot 1211, and the partition support portion 1112 is matched with the second support base 1311.
[0143] The snap structure and the cooperation between the support feet and the support base are all to strengthen the stability between the various parts of the end cap device 10.
[0144] The number of equipment and processing scale described here are intended to simplify the description of the present application. Applications, modifications and variations to the present application will be apparent to those skilled in the art.
[0145] As shown in
[0146] an end cap frame 21, an interior of the end cap frame 21 being hollow, and a middle portion of the end cap frame 21 being horizontally provided with a separation layer 211;
[0147] a first member 22, a middle of the first member 22 being hollow, and the first member 22 being disposed above the separation layer 211;
[0148] a second member 23, a middle of the second member 23 being hollow, and the second member 23 being disposed below the separation layer 211; and
[0149] a lighting assembly 28, the lighting assembly 28 being disposed on a lower end face of the second member 23; wherein the lighting assembly 28 has a simple structure, does not occupy a space inside the garbage can, has low cost and high work efficiency.
[0150] Wherein the end cap frame 21, the first member 22 and the second member 23 are disposed coaxially from top to bottom in sequence.
[0151] Referring to
[0152] a lampshade 281 provided with a flange 2814 on at least one side thereof; wherein it should be understood that the flange 2814 must be provided on an edge of the lampshade 281 facing the accommodating box 3 to ensure that lamps inside the lampshade 281 are not contaminated;
[0153] a LED lamp 282 provided inside the lampshade 281; and
[0154] wherein a shape of the LED lamp 282 is adapted to the lampshade 281. The lampshade 281 is preferably in an elongated shape, so the LED lamp adapted to it is also in an elongated shape.
[0155] Although the lampshade 281 is described as being elongated, it may be cylindrical or square, or the like.
[0156] A middle of the lampshade 281 is provided with a middle partition plate 2811. The middle partition plate 2811 prevents the LED lamp inside the lampshade 281 from changing its position due to the dumping or shaking of the garbage can, resulting in poor lighting effects.
[0157] As shown in
[0158] At least two through holes 2812 are provided at a bottom of the lampshade 281.
[0159] Referring now to
[0160] A mounting hole 2331 is provided at the top of the lampshade groove 233. The mounting hole 2331 is matched with the through hole 2812. The mounting hole 2331 and the through hole 2812 are fixed by a screw. This installation method is convenient for the staff to install and disassemble, and to replace the internal components.
[0161] In a specific embodiment, the LED lamp is placed in the receiving groove 2813. The material of the lampshade 281 is preferably a transparent plastic material, which can make the lighting efficiency of the LED lamp higher. In addition, the lampshade 281 can also play a certain protective role for the LED lamp.
[0162] Referring now to
[0163] The purpose of the LED lamp is to illuminate the accommodating situation inside the accommodating box 3. Even in a dark environment, the garbage can be accurately put into the box, so that the internal storage situation can be seen at a glance, preventing the garbage from overflowing.
[0164] Referring again to
[0165] Referring now to
[0166] The garbage bag box 24 includes an upper cover 242 and a lower trough 241.
[0167] It should be understood that the lower trough 241 is surrounded by an outer circle side wall and an inner circle side wall.
[0168] Wherein the upper cover 242 is combined with the lower trough 241 to form a putting space.
[0169] A side wall of the upper cover 242 is provided with box snap holes 2422 at intervals.
[0170] Referring now to
[0171] Box hooks 2412 are provided on an outer wall of the peripheral side wall of the lower trough 241. The box hooks 2412 are matched with the box snap holes 2422 to form a snap structure. The snap structure ensures that a garbage bag will not be scattered in the garbage bag box 24.
[0172] Protrusion 2411 are provided on an inner wall of the peripheral side wall of the lower trough 241. The protrusions 2411 are matched with the reinforcing ribs 2421, so that the upper cover 242 can be supported on the lower trough 241, thereby reducing the load-bearing strength of the snap structure.
[0173] The number of equipment and processing scale described here are intended to simplify the description of the present application. Applications, modifications and variations to the present application will be apparent to those skilled in the art.
[0174] As shown in
[0175] an accommodating box 33; and
[0176] an outer casing 32 disposed on one side of the accommodating box 33;
[0177] wherein the accommodating box 33 is fixedly connected to an equipment box 32, and a bottom surface of the outer casing 32 is provided with a plurality of mesh holes 3211 disposed in an array.
[0178] The outer casing 32 is provided with snap structures 321 disposed in a circular array at intervals.
[0179] Referring now to
[0180] A cross-sectional area of the snap structure 322 is gradually increasing along a direction in which the outer casing 32 approaches the accommodating box 33.
[0181] Referring to
[0182] The support portion 321 and the outer casing 32 are integrated, and a cross-sectional area of the support portion 32 gradually decreases outwardly from the outer casing 32.
[0183] An interior of the support portion 321 is hollow.
[0184] A bottom surface of the support portion 321 is provided with mesh holes 3211 disposed in an array, and the mesh holes 3211 are in connecting with the mesh holes 3211 on the bottom surface of the outer casing 32. The mesh holes 3211 for ventilation of the support portion 321 are set as a whole, which can make it difficult for dust to enter the inside of the garbage can under the condition of ensuring ventilation, so that the environment inside the garbage can becomes clean and tidy, and it is convenient for the user to maintain the cleanliness of the garbage can.
[0185] Although it is not shown in the drawings, it should be understood that the bottom of the garbage can is provided with protrusions that play a supporting role, on the one hand, it supports the garbage can; on the other hand, the mesh holes 3211 for ventilation at the bottom are exchanged with the ambient air. And even if dust is brought into the garbage can, it will be deposited under the garbage can due to gravity, or it will fall out of the garbage can, creating an automatic cleaning effect.
[0186] Referring now to
[0187] As shown in
[0188] a bellows 3321 covering the ventilation holes 331; and
[0189] a guide fan 3322 disposed above the bellows 3321.
[0190] The guide fan 3322 includes:
[0191] a guide impeller 33221 disposed coaxially with a casing of the guide fan 3322;
[0192] an air outlet channel 33222 being tangent to a main body of the guide fan 3322.
[0193] In a specific embodiment, when the guide impeller 33221 starts to be activated, the turbid air inside the accommodating box 33 will enter the bellows 3321 from the ventilation hole 331 in the lower portion due to the flow of air and converge. Then, the turbid air is discharged from the air outlet channel 33222 and enters the outer casing 32 along a rotation direction of the guide impeller 33221. After circulation, the turbid air is discharged out of the trash can through the mesh holes 3211 at the bottom.
[0194] The accommodating box 33 is provided with hook structures 333 at intervals.
[0195] Wherein the hook structures 333 and the accommodating box 33 are integrated. The clip structure 333 is matched with the snap structure.
[0196] The hook structure 333 is provided with three-sided flanges. The three-sided flanges form a resting space. The edge flange 3222 of the snap structure 322 is disposed in the resting space, so that the outer casing 32 and the accommodating box 33 can be closely matched.
[0197] The number of equipment and processing scale described here are intended to simplify the description of the present application. Applications, modifications and variations to the present application will be apparent to those skilled in the art.
[0198] As shown in
[0199] an end mechanism 41;
[0200] an accommodating box 43 disposed under the end mechanism 41; and
[0201] a connecting mechanism 434 located between the end mechanism 41 and the accommodating box 43.
[0202] Referring now to
[0203] The baffle plate 4341 can also fix the internal structure, for example, a motor capable of driving the movement of the internal components of the intelligent garbage can. The motor is placed on the baffle plate 4341. On the one hand, the baffle plate 4341 can also play a certain supporting role for the motor; and on the other hand, the wiring slot formed by the baffle plates 4341 can also arrange the circuit wires connected to the motor in an orderly manner, so that the wiring inside the intelligent garbage can is not entangled and the occurrence of faults is reduced.
[0204] The connecting mechanism 434 has a convex shape as a whole.
[0205] An upper portion of the connecting mechanism 434 is rotatably connected with the end mechanism 434.
[0206] A lower portion of the connecting mechanism 434 is fixedly connected with the accommodating box 43.
[0207] Referring now to
[0208] Referring again to
[0209] The side wall of the connecting mechanism 434 is provided with a rotating shaft hole, and a rotating shaft is rotatably connected to the end mechanism 41 through the rotating shaft hole, so as to realize the flipping action of the end mechanism 41.
[0210] Referring again to
[0211] Referring now to
[0212] A blind hole 4344 is provided on the accommodating box 43; wherein the blind hole 4344 is adapted to the through hole 4343 to realize fixed connection of the connecting mechanism.
[0213] In a specific embodiment, the connecting device is placed on the support flange 4345, and the blind hole 4344 is matched with the through hole 4343, so that the connecting device is fixed on the accommodating box 43. The grid rib 4346 can make the side wall of the connecting device in a front view direction have supporting points, so as to enhance the strength of the connecting device.
[0214] As shown in
[0215] an end mechanism 51;
[0216] an accommodating box 53 located under the end mechanism 51; and
[0217] a connecting mechanism 534 disposed between the end mechanism 51 and the accommodating box 53;
[0218] wherein the connecting mechanism 534 is provided with a spring structure 5347 to support the end mechanism 51 when the end mechanism 51 is turned up.
[0219] Referring again to
[0220] a locking plate 53472 integrally formed with the connecting mechanism 534; and
[0221] a spring 53473 extending upwardly to form a spring hook;
[0222] wherein the spring hook fits with the locking plate 53472.
[0223] A notch is formed on the locking plate 53472, and the spring hook is matched with the notch.
[0224] Although the position of the notch is not shown in the drawings, it should be understood that, in order to be able to play a limiting role, the spring hook should be provided with a component that can limit the movement of the spring hook.
[0225] The spring structure 5347 further includes a rotating shaft 53471, the spring 53473 is fixedly connected with the rotating shaft 53471, the rotating shaft 53471 is fixedly connected with the end mechanism 51, the rotating shaft 53471 is rotatably connected with the rotating shaft hole on the connecting mechanism 534, so as to realize the opening or closing of the end mechanism 51.
[0226] In a specific embodiment, since the spring 53473 is fixedly connected with the rotating shaft 53471, the rotating shaft 53471 also rotates with the rotation of the end mechanism 51, and the spring 53473 also rotates with the rotation of the end mechanism 51. When the opening and closing angle of the end mechanism 51 is 90°, the spring hook and the notch are mutually restricted, so that the end mechanism 51 no longer rotates.
[0227] Referring again to
[0228] The baffle plate 5341 can also fix the internal structure, for example, a motor capable of driving the movement of the internal components of the intelligent garbage can. The motor is placed on the baffle plate 5341. On the one hand, the baffle plate 5341 can also play a certain supporting role for the motor; and on the other hand, the wiring slot formed by the baffle plates 5341 can also arrange the circuit wires connected to the motor in an orderly manner, so that the wiring inside the intelligent garbage can is not entangled and the occurrence of faults is reduced.
[0229] As shown in
[0230] Referring now to
[0231] The holding cavity 5342 is provided with a locking seat 53421, and the locking seat 53421 is matched with the size of the gear set, so as to make the gear set rotate smoothly inside.
[0232] The connecting mechanism 534 is in a convex shape as a whole.
[0233] Wherein an upper portion of the connecting mechanism 534 is rotatably connected with the end mechanism 534.
[0234] A lower portion of the connecting mechanism 534 is fixedly connected with the accommodating box 53.
[0235] Referring now to
[0236] In a specific embodiment, the connecting mechanism 534 is placed on the support flange 5345 and connected by screws, so that the connection device is fixed on the accommodating box 53. The grid ribs 5346 can make the side wall of the connecting device in the front view direction have supporting points, so as to enhance the strength of the connecting device.
[0237] As shown in
[0238] an end cap frame 611, an interior of the end cap frame 611 being hollow, and a middle portion of the end cap frame 611 being horizontally provided with a separation layer 6111;
[0239] a first member 612, a middle of the first member 612 being hollow, the first member 612 being disposed above the separation layer 6111; and
[0240] a second member 613, a middle of the second member 613 being hollow, the second member 613 being disposed below the separation layer 6111.
[0241] Referring to
[0242] The separation layer 6111 provides a guarantee for the stability of the first member 612 and the second member 613 in the end cap frame 611, and has a certain support for the first member 612, thereby reducing the supporting effect of the second member 613 on the first member 612.
[0243] Partitions 61321 are disposed in the mounting groove 61322 at intervals.
[0244] In a specific embodiment, the conveyor belt 616 is mounted on the mounting slot 61322. The partitions 61321 are provided under the conveyor belt 616 to support the conveyor belt 16, which can improve the stability of the conveyor belt 616, increase the service life of the conveyor belt 616, and reduce costs.
[0245] According to the illustration in
[0246] The first member 612 is provided with first snaps 61212 at intervals, and the first snaps 61212 are distributed in a circular array.
[0247] Referring again to
[0248] The second member 613 is provided with second support feet 61311 disposed at intervals, distributed in a circular array and extending upwardly in the axial direction.
[0249] There is still a gap between the support feet 61311 and the mounting plate 6132. The gap is used to place the line connecting the conveyor belt 616, so that the inner circle realizes the movement of the conveyor belt 616, and the outer circle realizes the direction of the line, making full use of the internal space, improving the space utilization rate inside the garbage can, and saving costs.
[0250] Referring now to
[0251] The second snaps 61312 are distributed in a circular array.
[0252] Referring now to
[0253] The hook structures 61121 are respectively matched with the first snap 61212 and the second snap 61312.
[0254] An upper end surface of the separation layer 6111 of the end cap frame 611 is provided with a partition support base 61111.
[0255] A lower end surface of the separation layer 6111 of the end cap frame 611 is provided with a partition support portion 61112.
[0256] Wherein the partition support base 61111 is matched with the first support feet 61211, and the partition support portion 61112 is matched with the second support base 61311.
[0257] The cooperation of the snap structure and the support feet as well as the support seat are all to strengthen the stability between the various parts of the end of the intelligent garbage can.
[0258] As shown in
[0259] an end mechanism 71;
[0260] an accommodating box 73 disposed under the end mechanism 71; and
[0261] a connecting mechanism 734 located between the end mechanism 71 and the accommodating box 73.
[0262] Referring to
[0263] The positioning mechanism 7344 is a blind hole, and its outer periphery is provided with reinforcing ribs 73441 at intervals. At least three reinforcing ribs 73441 are provided. In a specific embodiment, four reinforcing ribs 73441 are provided, which is more in line with conventional settings.
[0264] Referring now to
[0265] In a specific embodiment, by positioning the connecting mechanism 734 positioned in the accommodating box 73 through the positioning mechanism 7344, by placing the connecting mechanism 734 on the support flange 7345, and by the matching of the blind hole and the through hole 7343 on the positioning mechanism 7344, the connecting mechanism is fixed on the accommodating box 73. The grid ribs 7346 can make the side wall of the connecting device in the front view direction have supporting points, so as to enhance the strength of the connecting device.
[0266] Wherein, at least two positioning mechanisms are provided. Preferably, three positioning mechanisms 7344 are provided. The three positioning mechanisms 7344 further and more securely install the connecting mechanism 734 on the accommodating box 733 without causing a substantial increase in cost.
[0267] As shown in
[0268] The connecting mechanism 734 is provided with a through hole 7343 on the bottom surface thereof. The through hole 7343 is matched with the positioning mechanism 7344. The through hole 7343 and the positioning mechanism 7344 are fixedly connected by screws on the through hole 7343 and the positioning mechanism 7344.
[0269] Referring to
[0270] Although the position of the notch is not shown in the drawings, it should be understood that, in order to be able to play a limiting role, the spring hook should be provided with a component that can limit the movement of the spring hook.
[0271] The spring structure 7347 further includes a rotating shaft 73471, the spring 73473 is fixedly connected with the rotating shaft 73471, the rotating shaft 73471 is fixedly connected with the end mechanism 71, and the rotating shaft 73471 is rotatably connected with the rotating shaft hole on the connecting mechanism 734, so as to realize opening or closing of the end mechanism 71.
[0272] In a specific embodiment, since the spring 73473 is fixedly connected with the rotating shaft 73471, the rotating shaft 73471 also rotates with the rotation of the end mechanism 71, and the spring 73473 also rotates with the rotation of the end mechanism 71. When the opening and closing angle of the end mechanism 71 is 90°, the spring hook and the notch are mutually restricted, so that the end mechanism 71 no longer rotates.
[0273] Referring again to
[0274] Although the embodiments of the present application have been disclosed above, they are not limited to the applications listed in the description and the embodiments, and can be applied to various fields suitable for the present application. Additional modifications can readily be implemented by those skilled in the art. Therefore, the application is not limited to the specific details and illustrations shown and described herein without departing from the general concept defined by the claims and the scope of equivalents.