WO2021136166A1 - 智能垃圾桶 - Google Patents

智能垃圾桶 Download PDF

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Publication number
WO2021136166A1
WO2021136166A1 PCT/CN2020/140142 CN2020140142W WO2021136166A1 WO 2021136166 A1 WO2021136166 A1 WO 2021136166A1 CN 2020140142 W CN2020140142 W CN 2020140142W WO 2021136166 A1 WO2021136166 A1 WO 2021136166A1
Authority
WO
WIPO (PCT)
Prior art keywords
box
end cover
connecting mechanism
buckle
present application
Prior art date
Application number
PCT/CN2020/140142
Other languages
English (en)
French (fr)
Inventor
俞浩
Original Assignee
追觅科技(上海)有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN201922459947.XU external-priority patent/CN212314532U/zh
Priority claimed from CN201922459905.6U external-priority patent/CN212221255U/zh
Priority claimed from CN201922459893.7U external-priority patent/CN211811515U/zh
Priority claimed from CN201922468591.6U external-priority patent/CN213110873U/zh
Priority claimed from CN201922468567.2U external-priority patent/CN213110872U/zh
Priority claimed from CN201922468677.9U external-priority patent/CN211811516U/zh
Priority claimed from CN201922459891.8U external-priority patent/CN212314531U/zh
Priority to KR1020227022481A priority Critical patent/KR20220107050A/ko
Priority to JP2022538461A priority patent/JP2022553439A/ja
Application filed by 追觅科技(上海)有限公司 filed Critical 追觅科技(上海)有限公司
Priority to AU2020417866A priority patent/AU2020417866A1/en
Priority to EP20911048.5A priority patent/EP4046938A4/en
Publication of WO2021136166A1 publication Critical patent/WO2021136166A1/zh
Priority to US17/730,175 priority patent/US11753241B2/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F1/16Lids or covers
    • B65F1/1623Lids or covers with means for assisting the opening or closing thereof, e.g. springs
    • B65F1/1638Electromechanically operated lids
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F1/16Lids or covers
    • B65F1/1607Lids or covers with filling openings
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F1/16Lids or covers
    • B65F1/1615Lids or covers with means for locking, fastening or permanently closing thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F2001/1653Constructional features of lids or covers
    • B65F2001/1676Constructional features of lids or covers relating to means for sealing the lid or cover, e.g. against escaping odors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/139Illuminating means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/168Sensing means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F2210/00Equipment of refuse receptacles
    • B65F2210/181Ventilating means, e.g. holes

Definitions

  • This application relates to the field of smart devices, and in particular to a smart trash can.
  • vent is arranged on the side wall of the trash can, although smooth ventilation in the trash can can be achieved, but during the ventilation process, dust from the outside will also fall into the trash can and cause pollution, which cannot be cleaned.
  • connecting devices of different structures are usually used to realize the flip function of the trash can.
  • there are many lines inside the trash can which are prone to entanglement, causing the trash can to jam.
  • the connecting device and the main body of the trash can cannot be disassembled in one piece.
  • the function only realizes the connection function of the connecting device, resulting in space. Waste.
  • smart trash cans usually adopt different structural forms of buckle devices to realize the limit of the end mechanism of the trash can.
  • the end mechanism of the existing smart trash can easily collides with the lower receiving box when it is turned upwards, which will cause wear and tear over time, which shortens the life of the smart trash can; the end mechanism of the smart trash can Equipped with auto-driving devices and other components inside, the weight of the end mechanism increases, and the strength of the connecting part will be increased when it is turned up.
  • the smart trash can adopts storage devices of different structures to implement the installation of the conveyor belt.
  • the existing conveyor belts only rely on the support of fixed points to realize the conveyor belt fixed in the trash can, which will cause the conveyor belt to shake during movement, which affects the smoothness of the movement; secondly, the longevity will reduce the service life of the conveyor belt and cause waste.
  • positioning devices of different structures are usually used to realize the installation and positioning of the internal structure of the trash can.
  • the existing positioning mechanism generally has a cylindrical main body and is fixed by a cross rib inside. After the internal structure is installed, the positioning mechanism loses its meaning and occupies internal space.
  • the present application provides an end cover device, a lighting device, a ventilation device, a connecting device, a buckle device, a holding device, a positioning device, and a smart trash can to solve the above technical problems.
  • an end cap device including:
  • End cover frame which is hollow inside and has a bracket horizontally in the middle;
  • the first member, the middle part is hollow and is arranged above the bracket;
  • the second member is hollow in the middle part and is arranged under the bracket;
  • one side of the second member is provided with an arc-shaped connecting portion extending radially outward, and the arc-shaped connecting portion is bent upward to form an arc-shaped surface.
  • a smart trash can which includes the end cover device described in the first aspect of the present application.
  • the sealing performance of the connection between the trash can containing box and the end cover can be enhanced, and user experience can be improved.
  • a lighting device including:
  • End cover frame with hollow interior and horizontal separation layer in the middle;
  • the first member is hollow in the middle part and is arranged above the separation layer;
  • the second member which is hollow in the middle part and arranged below the separation layer;
  • the lighting assembly is arranged on the lower end surface of the second member
  • the end cover frame, the first member, and the second member are arranged coaxially from top to bottom in sequence.
  • a smart trash can which includes the lighting device described in the third aspect of the present application.
  • the amount of garbage can be judged by increasing the brightness of the trash can as much as possible, and the real-time sensing mechanism can be provided to achieve lighting when needed. No lighting at other times to reduce light pollution.
  • a ventilation device including:
  • the outer shell which is arranged on one side of the containing box
  • the accommodating box and the equipment box are fixedly connected, and the bottom surface of the outer shell is provided with meshes arranged in an array.
  • a smart trash can which includes the ventilation device described in the fifth aspect of the present application.
  • ventilation holes can be provided on the bottom surface of the trash can to prevent external dust from entering the trash can as much as possible, and smooth ventilation can be achieved.
  • connection device including:
  • the containment box which is set directly below the end cover mechanism
  • a connecting mechanism which is located between the end mechanism and the accommodating box;
  • baffles are provided on the connecting mechanism, and the baffles form a wiring groove.
  • the connecting device can be provided with a baffle to form a wiring groove, so that the internal wiring of the trash can is organized. Further, by providing a containing cavity on the connecting device, the space inside the trash can can be saved.
  • a buckle device including:
  • the containment box is set directly below the end mechanism
  • the connecting mechanism is arranged between the end mechanism and the containing box;
  • the connecting mechanism is provided with a spring structure to support the tip mechanism when it is turned up.
  • a smart trash can which includes the buckle device described in the eighth aspect of the present application.
  • the end mechanism when the end mechanism is turned up, it stops when it is opened to a certain degree of expansion and does not collide with the containing box, increasing the use life. Further, by providing the clamping plate and the spring, the end mechanism can be supported to a certain extent when the end mechanism is upturned, and the bearing strength of the connecting part can be shared, so that the service life of the trash can is ensured.
  • a container for installing a conveyor belt including:
  • End cover frame with hollow interior and horizontal separation layer in the middle;
  • the first member is hollow in the middle part and is arranged above the separation layer;
  • the second member which is hollow in the middle part and arranged below the separation layer;
  • the second member is provided with a mounting plate
  • the inner ring of the second member is provided with an inner ring flange
  • the mounting plate and the inner ring flange form a mounting groove
  • a smart trash can which includes the container according to the tenth aspect of the present application.
  • the installation grooves can be provided as much as possible, so that the conveyor belt is supported everywhere, and it is not easy to shake.
  • the shaking phenomenon of the conveyor belt can be improved by setting the installation slot, which further increases the service life of the conveyor belt and reduces the cost.
  • a positioning device including:
  • the containment box which is set directly below the end cover mechanism
  • a connecting mechanism which is located between the end mechanism and the accommodating box;
  • At least two positioning mechanisms are provided on the containing box, and the positioning mechanisms are arranged on the front side of the connecting mechanism at intervals.
  • a blind hole can be provided on the main body and a reinforcing rib is provided on the outer periphery, so that the positioning mechanism can be fully utilized, which is more conducive to assembly.
  • Fig. 1 is a perspective view of a smart trash can according to an embodiment of the present application
  • Figure 2 is a perspective view of a part of the end cap device proposed according to an embodiment of the present application.
  • Figure 3 is a perspective view of an end cap device according to an embodiment of the present application.
  • Figure 4 is a partial cross-sectional view of a smart trash can according to an embodiment of the present application.
  • Fig. 5 is a perspective view of a first member according to an embodiment of the present application.
  • Fig. 6 is a perspective view of a second member according to an embodiment of the present application.
  • Fig. 7 is a front view of a second member according to an embodiment of the present application.
  • Figure 8 is a perspective view of an end cover frame proposed according to an embodiment of the present application.
  • Figure 9 is a top view of the end cover frame proposed according to one embodiment of the present application.
  • Figure 10 is a cross-sectional view along A-A of the end cover frame proposed according to an embodiment of the present application.
  • Fig. 11 is a top view of a smart trash can according to an embodiment of the present application.
  • Figure 12 is a cross-sectional view along A-A of the smart trash can according to one embodiment of the present application.
  • Figure 13 is a perspective view of an end cover frame proposed according to an embodiment of the present application.
  • Figure 14 is a perspective view of a lampshade proposed according to an embodiment of the present application.
  • Fig. 15 is a perspective view of an LED lamp according to an embodiment of the present application.
  • Fig. 16 is a top view of a lampshade proposed according to an embodiment of the present application.
  • Figure 17 is a perspective view of a part of a smart trash can according to an embodiment of the present application.
  • FIG. 18 is a perspective view of a part of a smart trash can according to an embodiment of the present application.
  • Figure 19 is a perspective view of a separation device for a garbage bag box according to an embodiment of the present application.
  • Figure 20 is a bottom view of the upper magazine proposed according to an embodiment of the present application.
  • Figure 21 is a perspective view of an upper magazine according to an embodiment of the present application.
  • Fig. 22 is a perspective view of a smart trash can according to an embodiment of the present application.
  • FIG. 23 is a perspective view of an outer casing according to an embodiment of the present application.
  • Fig. 24 is a perspective view of an outer housing proposed according to an embodiment of the present application.
  • Figure 25 is a bottom view of the outer housing proposed according to one embodiment of the present application.
  • Figure 26 is a top view of a trash can according to an embodiment of the present application.
  • Figure 27 is a cross-sectional view along A-A of the trash can according to one embodiment of the present application.
  • Figure 28 is a perspective view of a part of the trash can according to an embodiment of the present application.
  • Figure 29 is a rear view of a part of the trash can according to one embodiment of the present application.
  • FIG. 30 is a perspective view of a smart trash can according to an embodiment of the present application.
  • Figure 31 is a top view of a smart trash can according to one embodiment of the present application.
  • FIG. 32 is a partial cross-sectional view of a smart trash can according to an embodiment of the present application.
  • Fig. 33 is a perspective view of a connecting device according to an embodiment of the present application.
  • FIG. 34 is a front view of a connecting device according to an embodiment of the present application.
  • Figure 35 is a perspective view of a containing box proposed according to an embodiment of the present application.
  • Fig. 36 is a front view of a containing box proposed according to an embodiment of the present application.
  • Fig. 37 is a partial perspective view of a smart trash can according to an embodiment of the present application.
  • Figure 38 is a front view of a connecting mechanism according to an embodiment of the present application.
  • Figure 39 is a perspective view of a connecting mechanism according to an embodiment of the present application.
  • Figure 40 is a perspective view of a connecting mechanism according to an embodiment of the present application.
  • Figure 41 is a top view of a smart trash can according to an embodiment of the present application.
  • FIG. 42 is a cross-sectional view along A-A of the smart trash can according to an embodiment of the present application.
  • Figure 43 is a perspective view of a containing box proposed according to one embodiment of the present application.
  • Fig. 44 is a front view of a containing box proposed according to an embodiment of the present application.
  • FIG. 45 is a perspective view of the end cover rack proposed according to an embodiment of the present application.
  • Fig. 46 is a partial perspective view of a holding device for installing a conveyor belt according to an embodiment of the present application.
  • FIG. 47 is a cross-sectional view of a smart trash can according to an embodiment of the present application.
  • Fig. 48 is a perspective view of a second member according to an embodiment of the present application.
  • FIG. 49 is a partial perspective view of a smart trash can according to an embodiment of the present application.
  • Figure 50 is a perspective view of a first member according to an embodiment of the present application.
  • Figure 51 is a top view of the end cover frame proposed according to one embodiment of the present application.
  • Figure 52 is a cross-sectional view along A-A of the end cover frame proposed according to an embodiment of the present application.
  • FIG. 53 is a perspective view of a smart trash can according to an embodiment of the present application.
  • Fig. 54 is a partial perspective view of a smart trash can according to an embodiment of the present application.
  • Figure 55 is a perspective view of a containing box proposed according to one embodiment of the present application.
  • Fig. 56 is a front view of a containing box proposed according to an embodiment of the present application.
  • Fig. 57 is a front view of a connecting mechanism according to an embodiment of the present application.
  • Figure 58 is a perspective view of a connecting mechanism according to an embodiment of the present application.
  • Fig. 59 is a cross-sectional view of a smart trash can according to an embodiment of the present application.
  • connection refers to the relationship in which these structures are directly or indirectly fixed or attached to each other through intermediate structures, and the movable or rigid attachment or relationship, unless Other ways are clearly stated.
  • an end cap device is provided in an embodiment of the present application, and the device may include:
  • the end cover frame 11 has a hollow inside and a bracket 111 horizontally in the middle (as shown in Figure 8);
  • the first member 12 is hollow in its middle part and arranged above the bracket 111;
  • the second member 13 is hollow in its middle part and arranged under the bracket 111;
  • the end cover frame 11, the first member 12, and the second member 13 are arranged coaxially from top to bottom in sequence, and the end cover device 10 is arranged above the equipment box 20 and the containing box 30.
  • the bracket 111 provides a guarantee for the stability of the first member 12 and the second member 13 in the end cover frame 11, provides a certain degree of support for the first member 12, and reduces the impact of the second member 13 on the first member 12 The supporting role.
  • one side of the second member 13 is provided with an arc-shaped connecting portion 131 extending radially outward, and the arc-shaped connecting portion 131 is bent upward to form an arc-shaped surface.
  • the shape surface is consistent with the equipment box end surface 201 of the equipment box 20, so as to ensure that the end cover device 10 and the equipment box are always closely attached when the trash can is used to ensure airtightness and reduce the emission of peculiar smell.
  • one side of the first member 12 is provided with a flange 121 extending radially outward;
  • the flange 121 and the arc-shaped connecting portion 131 are arranged on the same side.
  • the first member 12 is provided with a skirt 122 extending downward in the axial direction.
  • the first member 12 is provided with a first supporting leg 1211 extending downward in the axial direction;
  • the supporting legs 1211 are distributed around the periphery of the skirt 122 in a circular array and are self-contained with the first member 12.
  • the first member 12 is provided with first snap rings 1212 at intervals; the first snap rings 1212 are distributed in a circular array.
  • a trash bag box 14 is erected in the hollow of the first member 12, and the purpose of the skirt 122 is that when the trash bag box 14 leaves the first member 12, the skirt 122 can also make the end cover device 1 The tightness of all parts prevents dust or water stains from entering the inside of the end cap and protects the internal circuit.
  • the second member 13 is provided with second supporting feet 1311 distributed in a circumferential array at intervals and extending upward in the axial direction.
  • the second member 13 is provided with second snap rings 1312 at intervals, and the second snap rings 1312 are distributed in a circular array.
  • the second member 13 is provided with an installation groove 132, and partitions 1321 are provided in the installation groove 132 at intervals.
  • a packing mechanism 16 is installed on the installation groove 132, and the partition 1321 supports the packing mechanism 16 to a certain extent.
  • the end cover frame 11 is provided with a side wall 112, the side wall 112 is provided with a hook structure 1121, and the cross-sectional area of the hook structure 1121 is along the radial direction. Gradually decrease inward;
  • the hook structure 1121 is matched with the first snap ring 1212 and the second snap ring 1312 respectively to form a snap structure.
  • the lower end surface of the bracket 111 of the end cover frame 11 is provided with a partition support foot 1112;
  • partition support base 1111 matches the first support leg 1211
  • partition support leg 1112 matches the second support base 1311.
  • the buckle structure and the cooperative use of the supporting feet and the supporting seat are both to strengthen the stability between the various parts of the end cover device 10.
  • an end cap device is provided in an embodiment of the present application, and the device may include:
  • the end cover frame 21 has a hollow interior and a horizontal separation layer 211 in the middle;
  • the first member 22 is hollow in its middle part and arranged above the separation layer 211;
  • the second member 23 is hollow in its middle part and arranged under the separation layer 211;
  • the lighting assembly 28 is arranged on the lower end surface of the second member 23.
  • the lighting assembly 28 has a simple structure, does not occupy the space inside the trash can, has low cost and high work efficiency;
  • the end cover frame 21, the first member 22, and the second member 23 are arranged coaxially from top to bottom in sequence.
  • the lighting assembly 28 may include:
  • the lampshade 281 is provided with a flange 2814 on at least one side. It should be understood that the edge of the lampshade 281 facing the receiving box 3 must be provided with a flange 2814 to ensure that the lamp inside the lampshade 281 is not contaminated;
  • LED lamp 282 which is arranged inside the lampshade 281;
  • the shape of the LED lamp 282 is adapted to the lamp shade 281, and the lamp shade 281 is preferably a long strip, so the LED lamp adapted to it is also a long strip.
  • the lamp cover 281 is described as a long strip, it may be cylindrical, square, or the like.
  • a middle partition 2811 is provided in the middle of the lampshade 281, and the middle partition 2811 prevents the LED lights inside the lampshade 281 from changing positions due to the dumping or shaking of the trash can, and the lighting effect is not good.
  • At least two through holes 2812 are provided at the bottom of the lampshade 281.
  • the lower end surface of the second member 23 is provided with a lampshade groove 233 recessed inward;
  • the top of the lampshade groove 233 is provided with a mounting hole 2331, the mounting hole 2331 matches the through hole 2812, the mounting hole 2331 and the through hole 2812 are fixed by screws, and the mounting method is convenient for work Personnel installation and disassembly, and replacement of internal components.
  • the LED lamp is placed in the mounting groove 2813, and the material of the lamp cover 281 is preferably a transparent plastic material, which can make the lighting efficiency of the LED lamp higher, and the lamp cover 281 can also protect the LED The light plays a certain protective role.
  • the first member 22 is provided with a sensing mechanism 223, the sensing mechanism 223 is provided at the front of the upper end surface of the trash can, when a person's hand or a cover is covered above the sensing mechanism 223 At this time, the cover 29 will flip up, and the LED light will be inductively lit, the cover 29 will return to the initial state after a set time, and the LED light will be off at this time, which will not cause light pollution.
  • the purpose of the LED lamp is to illuminate the accommodating situation inside the accommodating box 3, so that the garbage can be accurately put into the box even in a dark environment, so that the internal accommodating situation is unobstructed, and the garbage is prevented from overflowing.
  • the garbage bag magazine 24 is erected on the partition layer 211.
  • the garbage bag material box 24 includes an upper material cover 242 and a lower material tank 241;
  • the lower trough 241 is surrounded by an outer ring side wall and an inner ring side wall.
  • the upper material cover 242 and the lower material tank 241 are combined to form a discharge space.
  • the side wall of the upper material cover 242 is provided with material box clamping holes 2422 at intervals;
  • the upper end surface of the upper material cover 242 is provided with a flange 2423 extending downward in the radial direction, and the lower part of the flange 2423 is provided with reinforcing ribs 2421 at intervals.
  • the lower hopper 241 is provided with a material box hook 2412 on the outer wall of the peripheral side wall.
  • the material box hook 2412 matches the material box hole 2422 to form a buckle structure that ensures that the garbage bag is in place. The garbage bag material box 24 will not spill out.
  • the inner wall of the peripheral side wall of the lower trough 241 is provided with protrusions 2411, and the protrusions 2411 are matched with the reinforcing ribs 2421, so that the upper material box cover 242 can be supported on the lower trough 241, which reduces the buckling.
  • the bearing capacity of the structure is provided.
  • an embodiment of the present application provides a ventilation device, and the device may include:
  • the outer shell 32 is arranged on one side of the containing box 33;
  • the accommodating box 33 and the equipment box 32 are fixedly connected, and the bottom surface of the outer shell 32 is provided with meshes 3211 arranged in an array.
  • the outer shell 32 is provided with buckle structures 321 arranged in a circular array at intervals.
  • the buckle mechanism 322 is recessed inwardly into a groove 3221, and an edge flange 3222 is provided on the edge of the buckle mechanism 322.
  • the cross-sectional area of the buckle structure 322 gradually increases along the direction of the outer shell 32 approaching the receiving box 33.
  • the bottom end of the outer wall of the outer shell 32 is provided with a supporting foot 321;
  • the supporting leg 321 is integral with the outer casing 32, and its cross-sectional area gradually decreases from the outer casing 32 to the outside.
  • the supporting leg 321 is hollow inside;
  • the bottom surface of the supporting leg 321 is provided with meshes 3211 arranged in an array, and the meshes 3211 are connected to the meshes 3211 on the bottom surface of the outer housing 32 as a whole, and the meshes 3211 for ventilation of the supporting legs 321 are arranged as
  • the integration can make it difficult for dust to enter the inside of the trash can under the condition of ensuring ventilation, so that the environment inside the trash can becomes clean and tidy, and it is convenient for users to maintain the cleanliness of the trash can.
  • the bottom of the trash can is provided with supporting protrusions on the one hand to support the trash can; on the other hand, the bottom of the mesh 3211 for ventilation and The ambient air is interchanged, and even if dust is brought into the trash can in the air, it will be deposited under the trash can due to gravity, or it will fall out of the trash can to create an automatic cleaning effect.
  • FIG. 26 and FIG. 27 it can be clearly known that the lower part of the contact surface of the containing box 33 and the outer shell 32 is provided with ventilation holes 331 arranged in an array.
  • a gathering mechanism 332 is provided on the outer wall of the containing box 33, and the gathering mechanism 332 includes:
  • a bellows 3321 which covers the ventilation holes 331;
  • the guide fan 3322 is arranged above the wind box 3321.
  • the guide fan 3322 includes:
  • the guide vane 33221 is arranged coaxially with the casing of the guide fan 3322;
  • the air outlet channel 33222 is tangent to the main body of the guide fan 3322.
  • the turbid air inside the containment box 33 will enter the wind box 3321 from the lower ventilation hole 331 due to the flow of air and converge, and then follow the rotation of the guide vane 33221. In the direction, it is discharged from the air outlet channel 33222 into the outer shell 32, and after circulation, it is discharged from the trash can through the mesh 3211 at the bottom.
  • the accommodating box 33 is provided with hook structures 333 at intervals;
  • the hook structure 333 and the containing box 33 are self-contained, and the locking structure 333 matches the snap structure.
  • the hook structure 333 is provided with three-sided flanges, the three-sided flanges form a storage space, and the edge flanges 3222 of the buckle structure 322 are arranged in the storage space, so that the outer shell 32 and the receiving box 33 can be close. Cooperate.
  • an embodiment of the present application provides a connection device, and the device may include:
  • the containing box 43 is arranged directly below the end cover mechanism 41;
  • the connecting mechanism 434 is located between the end mechanism 41 and the receiving box 43;
  • the connecting mechanism 434 is provided with at least two baffles 4341, and the baffles 4341 form a wiring groove.
  • the baffle 4341 can also fix the internal structure, for example, a motor that can drive the internal components of the smart trash can.
  • the motor is placed on the baffle 4341; on the one hand, the baffle 4341 can also actuate the motor.
  • the wiring groove formed by the baffle 4341 can also arrange the circuit lines connected to the motor in an orderly manner, so that the internal wiring of the smart trash can will not be entangled and reduce the occurrence of failures. .
  • the connecting mechanism 434 has a convex shape as a whole
  • the upper part of the connecting mechanism 434 is rotatably connected with the end mechanism 434;
  • the lower part of the connecting mechanism 434 is fixedly connected with the containing box 43.
  • the connecting mechanism 434 is also provided with a containing cavity 4342, the containing cavity 4342 is placed in the gear set 435, the containing cavity 4342 is placed in the gear 435 group can save garbage
  • the space inside the barrel also protects the gear set 435 to a certain extent.
  • the holding cavity 4342 is provided with a holder 43421, and the holder 43421 matches the size of the gear set to enable the gear set to rotate smoothly inside.
  • the side wall of the connecting mechanism 434 is provided with a rotating shaft hole, and the rotating shaft is rotatably connected with the tip mechanism 41 through the rotating shaft hole, so as to realize the flipping action of the tip mechanism 41.
  • a through hole 4343 is provided on the bottom surface of the connecting mechanism 434.
  • the receiving box 43 is provided with a supporting flange 4345, and the receiving box 43 is provided with a grid rib 4346.
  • the receiving box 43 is provided with a blind hole 4344; wherein, the blind hole 4344 is adapted to the through hole 4343 to realize the fixed connection of the connecting mechanism.
  • the connecting device is placed on the supporting flange 4345, and the blind hole 4344 is matched with the through hole 4343, so that the connecting device is fixed on the receiving box 43, and the grid rib 4346 can
  • the side wall in the front view direction of the connecting device is provided with supporting points to enhance the strength of the connecting device.
  • an embodiment of the present application provides a buckle device, and the device may include:
  • the containing box 53 is set directly below the end mechanism 51;
  • the connecting mechanism 534 is arranged between the end mechanism 51 and the containing box 53;
  • the connecting mechanism 534 is provided with a spring structure 5347 to support the tip mechanism 51 when it is turned up.
  • the spring structure 5347 includes:
  • the card board 53472 which is integrally formed with the connecting mechanism 534;
  • the spring hook is matched with the clamping plate 53472.
  • the card board 53472 is provided with a notch, and the spring hook is matched with the notch.
  • the spring structure 5347 also includes a rotating shaft 53471, the spring 53473 is fixedly connected to the rotating shaft 53471, the rotating shaft 53471 is fixedly connected to the end mechanism 51, and the rotating shaft 53471 is connected to the rotating shaft of the connecting mechanism 534.
  • the holes are rotationally connected to realize the opening or closing of the end mechanism 51.
  • 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;
  • the opening and closing angle of the end mechanism 51 is 90.
  • the spring hook and the notch restrict each other, so that the end mechanism 51 no longer rotates.
  • the connecting mechanism 534 is provided with a baffle 5341 to form a wiring groove.
  • the baffle 5341 can also fix the internal structure, for example, a motor that can drive the internal components of the smart trash can.
  • the motor is placed on the baffle 5341; on the one hand, the baffle 5341 can also actuate the motor.
  • the wiring groove formed by the baffle 5341 can also arrange the circuit lines connected to the motor in an orderly manner, so that the internal wiring of the smart trash can will not be entangled and the occurrence of failures will be reduced. .
  • the connecting mechanism 534 is also provided with a containing cavity 5342;
  • a gear set 535 is placed in the containing cavity 5342, a gear set 535 is placed in the containing cavity 5342, and a gear set 535 is placed in the containing cavity 5342.
  • the space inside the trash can can be saved, and the gear set 535 can also be protected to a certain extent.
  • the receiving cavity 5342 is provided with a clamping seat 53421, and the clamping seat 53421 matches the size of the gear set, so that the gear set can rotate smoothly inside.
  • the connecting mechanism 534 has a convex shape as a whole
  • the upper part of the connecting mechanism 534 is rotatably connected with the end mechanism 534;
  • the lower part of the connecting mechanism 534 is fixedly connected with the containing box 53.
  • the receiving box 53 is provided with a supporting flange 5345, and as shown in FIG. 44, the receiving box 53 is provided with a grid rib 5346.
  • the connecting mechanism 534 is placed on the supporting flange 5345 and connected by threads, so that the connecting device is fixed on the receiving box 53, and the grid ribs 5346 can make the side of the connecting device in the front view direction
  • the wall has supporting points to increase the strength of the connecting device.
  • an embodiment of the present application provides a holding device for installing a conveyor belt, and the device may include:
  • the end cover frame 611 is hollow inside and horizontally provided with a separation layer 6111 in the middle;
  • the first member 612 is hollow in its middle part and arranged above the separation layer 6111;
  • the second member 613 is hollow in the middle part and arranged under the separation layer 6111;
  • the second member 613 is provided with a mounting plate 6132
  • the inner ring of the second member 613 is provided with an inner ring flange 61313
  • the mounting plate 6132 is connected to the mounting plate 6132.
  • the inner ring flange 61313 forms a mounting groove 61322.
  • the separation layer 6111 provides a guarantee for the stability of the first member 612 and the second member 613 in the end cover frame 611, provides a certain degree of support for the first member 612, and reduces the impact of the second member 613 on the first member.
  • the mounting groove 61322 is provided with partitions 61321 at intervals.
  • the conveyor belt 616 is installed on the installation groove 61322, and there are partitions 61321 underneath the conveyor belt 616 to support the conveyor belt 16, which can improve the stability of the conveyor belt 616 and increase the service life of the conveyor belt 616. ,Reduce the cost.
  • the first member 612 is provided with a skirt 6122 extending downward in the axial direction, and the first member 612 is provided with a first supporting leg 61211 extending downward in the axial direction.
  • the supporting feet 61211 are distributed in a circumferential array on the periphery of the skirt 6122 and are self-contained with the first member 612.
  • the first member 612 is provided with first snap rings 61212 at intervals; the first snap rings 61212 are distributed in a circular array.
  • the first member 612 is provided with a trash bag box 614 in the hollow, and the purpose of the skirt 6122 is when the trash bag box 614 leaves the first member 612 ,
  • the skirt 6122 can also make the sealing of the end cover device 61 everywhere, prevent dust or water stains from entering the inside of the end cover, and protect the internal circuit.
  • the second member 613 is provided with second supporting legs 61311 distributed in a circular array and extending upward in the axial direction at intervals.
  • the gap is used to place the line connecting the conveyor belt 616 to realize the movement of the conveyor belt 616 in the inner ring and the direction of the line in the outer ring to make full use of the inner ring. Space, improve the space utilization rate inside the trash can, and save costs.
  • the second member 613 is provided with second snap rings 61312 at intervals;
  • the second retaining rings 61312 are distributed in a circular array.
  • the end cover frame 611 is provided with a side wall 6112, the side wall 6112 is provided with a hook structure 61121, and the cross-section of the hook structure 61121 The area gradually decreases inward in the radial direction;
  • the hook structure 61121 is matched with the first snap ring 61212/the second snap ring 61312 respectively.
  • the upper end surface of the partition layer 6111 of the end cover frame 611 is provided with a partition support seat 61111;
  • the lower end surface of the partition layer 6111 of the end cover frame 611 is provided with partition support feet 61112;
  • the partition support base 61111 matches the first support leg 61211, and the partition support leg 61112 matches the second support base 61311.
  • the buckle structure and the cooperative use of the supporting foot and the supporting seat are all to strengthen the stability between the various parts of the end of the smart trash can.
  • an embodiment of the present application provides a positioning device, and the device may include:
  • the containing box 73 is arranged directly below the end cover mechanism 71;
  • the connecting mechanism 734 is located between the end mechanism 71 and the containing box 73;
  • the receiving box 73 is provided with at least two positioning mechanisms 7344, and the positioning mechanisms 7344 are arranged on the front surface of the connecting mechanism 734 at intervals.
  • the positioning mechanism 7344 is a blind hole, and its outer circumference is provided with reinforcing ribs 73441.
  • the reinforcing ribs 73441 are provided with at least three, and in a specific embodiment, there are four, which is more in line with conventional settings.
  • the receiving box 73 is provided with a supporting flange 7345, the receiving box 73 is provided with a grid rib 7346, and the positioning mechanism 7344 is provided at The lower part of the grid rib 7346.
  • the connecting mechanism 734 is positioned in the containing box 73 by the positioning mechanism 7344, and the connecting mechanism 734 is placed on the supporting flange 7345, and is connected with the blind hole on the positioning mechanism 7344.
  • the matching of the through hole 7343 makes the connecting mechanism fixed on the receiving box 73, and the grid rib 7346 can make the side wall of the connecting mechanism in the front view direction have supporting points, so as to enhance the strength of the connecting device.
  • positioning mechanisms 7344 there are at least two positioning mechanisms. Specifically, three positioning mechanisms 7344 are preferably provided. The three positioning mechanisms 7344 further securely install the connecting mechanism 734 on the containing box 733 without causing significant cost. Increased.
  • the connecting mechanism 734 has a convex shape as a whole, wherein the upper part of the connecting mechanism 734 is rotatably connected with the end mechanism 734, and the lower part of the connecting mechanism 734 is fixedly connected with the receiving box 73,
  • the connecting mechanism 734 is also provided with a containing cavity 7342, a gear set 735 is placed in the containing cavity 7342, and a card seat 73421 is also provided in the containing cavity 7342.
  • the card seat 73421 is connected to the gear set The size is matched to make the gear set rotate smoothly inside.
  • a through hole 7343 is provided on the upper bottom surface of the connecting mechanism 734; the through hole 7343 matches the positioning mechanism 7344.
  • the through hole 7343 and the positioning mechanism 7344 are fixedly connected to the through hole 7343 and the positioning mechanism 7344 by screws.
  • the spring structure 7347 includes: a clamping plate 73472, which is integrally formed with the connecting mechanism 734, a spring 73473, which extends upward to form a spring hook, wherein the spring hook and The card board 73472 is matched, the card board 73472 is provided with a notch, and the spring hook is matched with the notch.
  • the spring structure 7347 also includes a rotating shaft 73471, the spring 73473 is fixedly connected to the rotating shaft 73471, the rotating shaft 73471 is fixedly connected to the end mechanism 71, and the rotating shaft 73471 is connected to the rotating shaft of the connecting mechanism 734.
  • the holes are rotationally connected to realize the opening or closing of the end mechanism 71.
  • 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;
  • 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.
  • the connecting mechanism 734 is provided with a baffle 7341 to form a wiring groove.
  • the baffle 7341 can also fix the internal structure, for example, a motor that can drive the internal components of the smart trash can.
  • the motor is placed on the baffle 7341; on the one hand, the baffle 7341 can also actuate the motor.
  • the wiring groove formed by the baffle 7341 can also arrange the circuit lines connected to the motor in an orderly manner, so that the internal wiring of the smart trash can will not be entangled and reduce the occurrence of failures. .

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Refuse Receptacles (AREA)
  • Processing Of Solid Wastes (AREA)
  • Medicines Containing Material From Animals Or Micro-Organisms (AREA)

Abstract

本申请公开了一种智能垃圾桶,包括:端盖机架,其内部中空且中部水平设有支架;第一构件,其中部中空且设于支架的上方;第二构件,其中部中空且设于支架的下方;其中,第二构件一侧设有沿径向向外延伸的弧形连接部,所述弧形连接部向上弯曲形成弧形面。本申请各实施例可以通过在端盖的底面设有弧形连接部,使得垃圾桶容纳箱与端盖连接处的密封性增强,提高用户体验感。

Description

智能垃圾桶 技术领域
本申请涉及智能设备领域,特别涉及一种智能垃圾桶。
背景技术
在智能垃圾桶领域中,采用不同结构形式的端盖装置来实现垃圾桶密封是众所周知的。但是现有技术中端盖装置与垃圾桶的垃圾容纳区域的连接部处存在缝隙,不够严密,会使得垃圾桶中垃圾的味道散发出来,影响用户体验感。
另外,在环境较为幽暗的情况下,垃圾桶内的盛放量会使人们拿不准,造成垃圾溢出的现象。
其次,采用不同结构形式的通风装置来实现垃圾桶的通风是众所周知的。但是现有技术中通风口设置在垃圾桶的侧壁上,虽然可以实现垃圾桶内的通风流畅,但在通风的过程中外界的灰尘也会落入垃圾桶内部造成污染,不以清洗。
再次,现有的智能垃圾桶中,通常采用不同结构形式的连接装置来实现垃圾桶的翻盖功能。但是现有技术中,垃圾桶内部的线路繁多,容易出现缠绕的现象,造成垃圾桶卡顿,连接装置与垃圾桶的主体一体成型不能够拆卸,起作用仅仅实现连接装置的连接功能,造成空间的浪费。
另一方面,现有技术中,智能垃圾桶通常会采用不同结构形式的卡扣装置来实现垃圾桶端头机构的限位。但是,现有的智能垃圾桶的端头机构在向上翻起时,容易与下部的容纳箱相撞,时间久了会造成磨损,使得智能垃圾桶的寿命减短;智能垃圾桶的端头机构内设有自动驱动装置等零部件使得端头机构的重量增加,在上翻时会增加连接部分承受力度。
再一方面,现有技术中,智能垃圾桶会采用不同结构形式的盛放装置来实现传送带的安装。但是现有的传送带仅靠固定点的支撑来实现传送带固定于垃圾桶内,会造成传送带在运动时发生晃动,影响走位的顺畅性;其次,长此以往会使得传送带的使用寿命降低,造成浪费。
又一方面,现有技术中,通常采用不同结构形式的定位装置来实现垃圾桶 内部结构的安装定位。但是现有的定位机构一般主体为圆柱体,内部设有十字肋板固定,所述定位机构在内部结构完成安装后其作用就失去了意义,还占用内部空间。
发明内容
本申请提供一种端盖装置、照明装置、通风装置、连接装置、卡扣装置、盛放装置、定位装置及智能垃圾桶,以解决上述的技术问题。
根据本申请的第一方面,提供了一种端盖装置,包括:
端盖机架,其内部中空且中部水平设有支架;
第一构件,其中部中空且设于支架的上方;
第二构件,其中部中空且设于支架的下方;
其中,第二构件一侧设有沿径向向外延伸的弧形连接部,所述弧形连接部向上弯曲形成弧形面。
根据本申请的第二方面,提供了一种智能垃圾桶,其包含有本申请第一方面所述的端盖装置。
根据本申请的第一方面及第二方面所述的实施方式,通过在端盖的底面设有弧形连接部,可以使得垃圾桶容纳箱与端盖连接处的密封性增强,提高用户体验。
根据本申请的第三方面,提供了一种照明装置,包括:
端盖机架,其内部中空且中部水平设有分隔层;
第一构件,其中部中空且设于分隔层的上方;
第二构件,其中部中空且设于分隔层的下方;以及
照明组件,其设于第二构件的下端面;
其中,端盖机架、第一构件、第二构件依次从上到下同轴设置。
根据本申请的第四方面,提供了一种智能垃圾桶,其包含有本申请第三方面所述的照明装置。
根据本申请的第三方面及第四方面所述的实施方式,可以通过尽可能地提高垃圾桶内部的明亮度来判断垃圾的盛放量,且通过设有实时感应机构来实现所需时照明,其他时间不照明,减少光污染。
根据本申请的第五方面,提供了一种通风装置,包括:
容纳箱;
外壳体,其设于容纳箱的一侧;
其中,所述容纳箱与设备箱之间固定连接,外壳体的底面设有呈阵列排布的网孔。
根据本申请的第六方面,提供了一种智能垃圾桶,其包含有本申请第五方面所述的通风装置。
根据本申请的第五方面及第六方面所述的实施方式,可以通过在垃圾桶底面设有通风孔尽可能地不让外界灰尘进入垃圾桶而且能够实现通风流畅。
根据本申请的第七方面,提供了一种连接装置,包括:
端头机构;
容纳箱,其设于端盖机构的正下方;
连接机构,其位于所述端头机构与容纳箱之间;
其中,所述连接机构上设有至少两个挡板,所述挡板形成一走线槽。
根据本申请的第七方面所述的实施方式,可以通过连接装置上设置有挡板,形成走线槽,使得垃圾桶内部线路有条理性。进一步的,通过在连接装置上设置一盛放腔,可以节省垃圾桶内部的空间。
根据本申请的第八方面,提供了一种卡扣装置,包括:
端头机构;
容纳箱,其设于端头机构的正下方;
连接机构,其设于端头机构与容纳箱之间;
其中,连接机构上设有弹簧结构以支撑上翻时的端头机构。
根据本申请的第九方面,提供了一种智能垃圾桶,其包含有本申请第八方面所述的卡扣装置。
根据本申请的第八方面及第九方面所述的实施方式,通过设置卡板和弹簧使得端头机构在上翻时,打开到一定张合度就停止,不会与容纳箱相碰撞,增加使用寿命。进一步的,通过设置卡板和弹簧可以在端头机构上翻时对所述端头机构起到一定的支撑作用,分担连接部分的承受力度,使得垃圾桶的使用寿命。
根据本申请的第十方面,提供了一种用于安装传送带的盛放装置,包括:
端盖机架,其内部中空且中部水平设有分隔层;
第一构件,其中部中空且设于分隔层的上方;
第二构件,其中部中空且设于分隔层的下方;
其中,第二构件上设有安装板,所述第二构件内圈设有内圈凸缘,所述安装板与所述内圈凸缘形成安装槽。
根据本申请的第十一方面,提供了一种智能垃圾桶,其包含有本申请第十方面所述的盛放装置。
根据本申请第十方面及第十一方面所述的实施方式,可以通过尽可能地设有安装槽,使得传送带各处都有支撑,不易发生晃动。可以通过设置安装槽使得传送带发生晃动现象得到改善,进一步使得传送带的使用寿命提高,减少成本。
根据本申请的第十二方面,提供了一种定位装置,包括:
端头机构;
容纳箱,其设于端盖机构的正下方;
连接机构,其位于所述端头机构与容纳箱之间;
其中,所述容纳箱上设有至少两个定位机构,所述定位机构间隔设置在所述连接机构的正面。
根据本申请的第十三方面所述的实施方式,可以通过在主体上设有盲孔,外周设有加强筋,使得所述定位机构充分利用,更有利于装配。
附图说明
图1为根据本申请一个实施方式提出的智能垃圾箱的立体图;
图2为根据本申请一个实施方式提出的部分端盖装置的立体图;
图3为根据本申请一个实施方式提出的端盖装置的立体图;
图4为根据本申请一个实施方式提出的智能垃圾箱的部分剖视图;
图5为根据本申请一个实施方式提出的第一构件的立体图;
图6为根据本申请一个实施方式提出的第二构件的立体图;
图7为根据本申请一个实施方式提出的第二构件的前视图;
图8为根据本申请一个实施方式提出的端盖机架的立体图;
图9为根据本申请一个实施方式提出的端盖机架的俯视图;
图10为根据本申请一个实施方式提出的端盖机架沿A-A的剖视图;
图11为根据本申请一个实施方式提出的智能垃圾桶的俯视图;
图12为根据本申请一个实施方式提出的智能垃圾桶沿A-A的剖视图;
图13为根据本申请一个实施方式提出的端盖机架的立体图;
图14为根据本申请一个实施方式提出的灯罩的立体图;
图15为根据本申请一个实施方式提出的LED灯的立体图;
图16为根据本申请一个实施方式提出的灯罩的俯视图;
图17为根据本申请一个实施方式提出的部分智能垃圾桶的立体图;
图18为根据本申请一个实施方式提出的部分智能垃圾桶的立体图;
图19为根据本申请一个实施方式提出的垃圾袋料盒的分离装置立体图;
图20为根据本申请一个实施方式提出的上部料盒的仰视图;
图21为根据本申请一个实施方式提出的上部料盒的立体图;
图22为根据本申请一个实施方式提出的智能垃圾桶的立体图;
图23为根据本申请一个实施方式提出的外壳体的立体图;
图24为根据本申请一个实施方式提出的外壳体的立体图;
图25为根据本申请一个实施方式提出的外壳体的仰视图;
图26为根据本申请一个实施方式提出的垃圾桶的俯视图;
图27为根据本申请一个实施方式提出的垃圾桶沿A-A的剖视图;
图28为根据本申请一个实施方式提出的部分垃圾桶的立体图;
图29为根据本申请一个实施方式提出的部分垃圾桶的后视图;
图30为根据本申请一个实施方式提出的智能垃圾桶的立体图;
图31为根据本申请一个实施方式提出的智能垃圾桶的俯视图;
图32为根据本申请一个实施方式提出的智能垃圾桶的部分剖视图;
图33为根据本申请一个实施方式提出的连接装置的立体图;
图34为根据本申请一个实施方式提出的连接装置的正视图;
图35为根据本申请一个实施方式提出的容纳箱的立体图;
图36为根据本申请一个实施方式提出的容纳箱的正视图;
图37为根据本申请一个实施方式提出的智能垃圾桶部分立体图;
图38为根据本申请一个实施方式提出的连接机构的正视图;
图39为根据本申请一个实施方式提出的连接机构的立体图;
图40为根据本申请一个实施方式提出的连接机构的立体图;
图41为根据本申请一个实施方式提出的智能垃圾桶的俯视图;
图42为根据本申请一个实施方式提出的智能垃圾桶沿A-A的剖视图;
图43为根据本申请一个实施方式提出的容纳箱的立体图;
图44为根据本申请一个实施方式提出的容纳箱的正视图;
图45为根据本申请一个实施方式提出的端盖机架的立体图;
图46为根据本申请一个实施方式提出的用于安装传送带的盛放装置的部分立体图;
图47为根据本申请一个实施方式提出的智能垃圾桶的剖视图;
图48为根据本申请一个实施方式提出的第二构件的立体图;
图49为根据本申请一个实施方式提出的智能垃圾桶的部分立体图;
图50为根据本申请一个实施方式提出的第一构件的立体图;
图51为根据本申请一个实施方式提出的端盖机架的俯视图;
图52为根据本申请一个实施方式提出的端盖机架沿A-A的剖视图;
图53为根据本申请一个实施方式提出的智能垃圾桶的立体图;
图54为根据本申请一个实施方式提出的智能垃圾桶的部分立体图;
图55为根据本申请一个实施方式提出的容纳箱的立体图;
图56为根据本申请一个实施方式提出的容纳箱的正视图;
图57为根据本申请一个实施方式提出的连接机构的正视图;
图58为根据本申请一个实施方式提出的连接机构的立体图;
图59为根据本申请一个实施方式提出的智能垃圾桶的剖视图。
具体实施方式
下面将结合本申请实施方式中的附图,对本申请实施方式中的技术方案进行清楚、完整的描述,显然,所描述的实施方式仅仅是本申请一部分实施方式, 而不是全部的实施方式。基于本申请中的实施方式,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
在附图中,为清晰起见,可对形状和尺寸进行放大,并将在所有图中使用相同的附图标记来指示相同或相似的部件。
在下列描述中,诸如中心、厚度、高度、长度、前部、背部、后部、左边、右边、顶部、底部、上部、下部等用词是相对于各附图中所示的构造进行定义的,特别地,“高度”相当于从顶部到底部的尺寸,“宽度”相当于从左边到右边的尺寸,“深度”相当于从前到后的尺寸,它们是相对的概念,因此有可能会根据其所处不同位置、不同使用状态而进行相应地变化,所以,也不应当将这些或者其他的方位用于解释为限制性用语。
涉及附接、联接等的术语(例如,“连接”和“附接”)是指这些结构通过中间结构彼此直接或间接固定或附接的关系、以及可动或刚性附接或关系,除非以其他方式明确地说明。
如图1-图3所示,本申请一种实施例中提供了一种端盖装置,所述装置可以包括:
端盖机架11,其内部中空且中部水平设有支架111(如图8所示);
第一构件12,其中部中空且设于支架111的上方;
第二构件13,其中部中空且设于支架111的下方;
所述端盖机架11、第一构件12、第二构件13之间依次从上到下同轴设置,所述端盖装置10设置于设备箱20和容纳箱30的上方。
所述支架111为第一构件12和第二构件13在端盖机架11内的稳定性提供了保障,对第一构件12有一定的支撑性,减轻了第二构件13对第一构件12的支撑作用。
结合图4,可以清楚地看出,其中,第二构件13一侧设有沿径向向外延伸的弧形连接部131,所述弧形连接部131向上弯曲形成弧形面,所述弧形面与设备箱20的设备箱端面201相一致,以确保在垃圾桶使用时,端盖装置10与设备箱始终是紧密贴合,保证密封性,减少异味的散出。
先参考图5,其详细清楚地描述了所述第一构件12一侧设有沿径向向外延伸的凸缘121;
所述凸缘121与弧形连接部131设于同一侧。
所述第一构件12设有沿轴向向下延伸裙部122。
所述第一构件12设有沿轴向向下延伸的第一支撑脚1211;
所述支撑脚1211呈圆周阵列分布于裙部122外围且与第一构件12自成一体。
所述第一构件12间隔设有第一卡环1212;所述第一卡环1212呈圆周阵列分布。
在具体结构中,所述第一构件12中空处架设有垃圾袋盒14,所述裙部122的目的是在垃圾袋盒14离开第一构件12时,裙部122还能够使得端盖装置1各处的密封性,不会使灰尘或水渍进入端盖内部,保护内部线路。
现参考图6,且结合图7,可以清楚地看到所述第二构件13间隔设有呈圆周阵列分布且沿轴向向上延伸的第二支撑脚座1311。
所述第二构件13间隔设有第二卡环1312,所述第二卡环1312呈圆周阵列分布。
所述第二构件13上设有安装槽132,所述安装槽132内间隔设有隔板1321。
在具体实施方式中,所述安装槽132上安装有打包机构16,所述隔板1321对所述打包机构16起到一定的支撑作用。
根据图8所示,可以清楚地看到所述端盖机架11设有侧壁112,所述侧壁112设有卡钩结构1121,所述卡钩结构1121的横截面积沿径向方向向内逐渐减小;
所述卡钩结构1121分别与第一卡环1212和第二卡环1312相匹配以形成卡扣结构。
现在参考图9,结合图10,可以清楚地得到所述端盖机架11的支架111的上端面设有分隔支撑座1111;
所述端盖机架11的支架111的下端面设有分隔支撑脚1112;
其中,分隔支撑座1111与第一支撑脚1211相匹配,分隔支撑脚1112与第二支撑座1311相匹配。
所述卡扣结构和支撑脚与支撑座的配合使用都是为加固端盖装置10各个部分之间的稳定性。
这里说明的设备数量和处理规模是用来简化本申请的说明的。对本申请的应用、修改和变化对本领域的技术人员来说是显而易见的。
如图11-图13所示,本申请一种实施例中提供了一种端盖装置,所述装置可以包括:
端盖机架21,其内部中空且中部水平设有分隔层211;
第一构件22,其中部中空且设于分隔层211的上方;
第二构件23,其中部中空且设于分隔层211的下方;以及
照明组件28,其设于第二构件23的下端面,所述照明组件28其结构简单,不占用垃圾桶内部的空间,且成本低,工作效率高;
其中,端盖机架21、第一构件22、第二构件23依次从上到下同轴设置。
现在结合图15,现参考图14,其详细地示出了所述照明组件28可以包括:
灯罩281,其至少一面设有凸缘2814,应当理解的是,所述灯罩281面向容纳箱3的边缘必须设有凸缘2814以确保灯罩281内部的灯不被污染;
LED灯282,其设于灯罩281的内部;
其中,LED灯282的形状与灯罩281相适应,所述灯罩281优选的是长条形,所以与其适配的LED灯也是长条形。
虽然灯罩281被描述为长条形,它可以是圆柱形或正方形等。
所述灯罩281中部设有中部隔板2811,所述中间隔板2811使得灯罩281内部的LED灯不会因所述垃圾桶的倾倒或晃动而位置改变,照明效果不佳。
根据图16所示,可以清楚地看到,所述中部隔板2811与所述凸缘2814形成一安放槽2813。
所述灯罩281的底部至少设有两个通孔2812。
现在参考图17,所述第二构件23的下端面设有向内凹陷的灯罩槽233;
所述灯罩槽233的顶部设有安装孔2331,所述安装孔2331与所述通孔2812相匹配,所述安装孔2331与所述通孔2812通过螺钉使其固定,所述安装方式方便工作人员安装拆卸,以及更换内部器件。
在具体实施方式中,所述LED灯放置在安放槽2813内,所述灯罩281材料优选的是透明塑料材质,可以使得LED灯的照明效率更高,并且所述灯罩281还能够对所述LED灯起到一定的保护作用。
现参考图18,可以得到,所述第一构件22上设有感应机构223,所述感应机构223设于垃圾桶上端面的前部,当人的手或者遮挡物覆盖于感应机构223的上方时,盖板29会向上翻起,且LED灯会感应亮起,所述盖板29经过设定时间会回归到初始状态,此时的LED灯熄灭,不会引起光污染。
所述LED灯的目的是照明容纳箱3内部的容纳情况,即使在黑暗的环境下也能够准确地将垃圾投入箱内,使得内部容纳情况一览无余,防止垃圾溢出。
再次参考图18,可以清楚地看到所述第一构件22的内圈设有垃圾袋料盒24;
现在参考图19,结合图18的示出,所述垃圾袋料盒24架设于分隔层211上。
所述垃圾袋料盒24包括上部料盖242和下部料槽241;
应当理解的是,下部料槽241有外圈侧壁和内圈侧壁围绕而成。
其中,所述上部料盖242与下部料槽241相合以形成放料空间。
上部料盖242侧壁间隔设有料盒卡孔2422;
现在参考图20及图21,可以清楚地看到上部料盖242的上端面设有沿径向方向向下延伸的凸缘2423,且所述凸缘2423的下部间隔设有加强筋2421。
所述下部料槽241外围侧壁外壁上设有料盒卡钩2412,所述料盒卡钩2412与所述料盒卡孔2422相匹配以形成卡扣结构,所述卡扣结构保证垃圾袋在垃圾袋料盒24内不会散落出来。
所述下部料槽241的外围侧壁的内壁上设有凸起2411,所述凸起2411与加强筋2421相匹配,使得上料盒盖242能够支撑在下部料槽241上,减轻了卡扣结构的承重力度。
这里说明的设备数量和处理规模是用来简化本申请的说明的。对本申请的应用、修改和变化对本领域的技术人员来说是显而易见的。
如图22、图23所示,本申请一种实施例中提供了一种通风装置,所述装置可以包括:
容纳箱33;
外壳体32,其设于容纳箱33的一侧;
其中,所述容纳箱33与设备箱32之间固定连接,外壳体32的底面设有呈 阵列排布的网孔3211。
所述外壳体32上间隔设有呈圆周阵列排布的卡扣结构321。
现在结合图24,可以清楚地了解,所述卡扣机构322向内凹陷成一凹槽3221,其边缘设有边缘凸缘3222。
所述卡扣结构322的横截面积沿外壳体32靠近容纳箱33的方向呈逐渐递增之势。
参考图25可以注意到,所述外壳体32外壁底端设有一支撑脚321;
所述支撑脚321与外壳体32自成一体,其横截面积由外壳体32向外呈逐渐减小之势。
所述支撑脚321内部中空;
所述支撑脚321的底面设有呈阵列排布网孔3211,所述网孔3211与外壳体32底面的网孔3211连接成一体,所述支撑脚321的用于通风的网孔3211设置成一体能够在保证通风的情况下,使得灰尘不易进入垃圾桶内部,使垃圾桶内部的环境变得干净整洁,方便用户维护垃圾桶的清洁度。
虽然没有在图中示出,应当理解的是,垃圾桶的底部间隔设有起支撑作用的凸起,一方面对垃圾桶起支撑作用;另一方面,使得底部用于通风的网孔3211与外界环境空气互换,而且即使空气中带入灰尘进入垃圾桶,也会因重力作用沉积在垃圾桶的下方,或这是掉落出垃圾桶,营造一种自动清洁的效果。
现在结合图26,参考图27,可以清楚地知道,所述容纳箱33与外壳体32相接触的面下部设有呈阵列排布的通风孔331。
根据图28以及图29所示,所述容纳箱33的外壁上设有聚拢机构332,所述聚拢机构332包括:
风箱3321,其笼罩所述通风孔331;
导流风扇3322,其设于风箱3321的上方。
所述导流风扇3322内包括:
导流叶轮33221,其与导流风扇3322壳体同轴设置;
出风通道33222,其与导流风扇3322的主体相切。
在具体的实施方式中,当导流叶轮33221开始启动,所述容纳箱33内部的浊气会因空气的流动从下部的通风孔331进入风箱3321汇聚,随后沿着导流叶 轮33221的转动的方向,从出风通道33222排出进入外壳体32内,经过循环,经底部的网孔3211排出垃圾桶。
所述容纳箱33间隔设有卡钩结构333;
其中,所述卡钩结构333与容纳箱33自成一体,所述卡构结构333与卡扣结构相匹配。
所述卡钩结构333设有三面凸缘,所述三面凸缘形成一搁置空间,损失卡扣结构322的边缘凸缘3222设于所述搁置空间内,使得外壳体32与容纳箱33能够紧密配合。
这里说明的设备数量和处理规模是用来简化本申请的说明的。对本申请的应用、修改和变化对本领域的技术人员来说是显而易见的。
如图30、图31及图32所示,本申请一种实施例提供了一种连接装置,所述装置可以包括:
端头机构41;
容纳箱43,其设于端盖机构41的正下方;
连接机构434,其位于所述端头机构41与容纳箱43之间;
现在参考图33,可以清楚地了解到所述连接机构434上设有至少两个挡板4341,所述挡板4341形成一走线槽。
所述挡板4341还可以固定内部的结构,例如,能够驱动智能垃圾桶内部部件运动的电机,所述电机安放在所述挡板4341上;一方面,所述挡板4341还能够对电机起到一定的支撑作用,另一方面,所述挡板4341形成的走线槽,还能够将与电机连接的电路线安排的有条不紊,使得智能垃圾桶内部走线时不发生缠绕,减少故障的发生。
所述连接机构434整体呈凸字形;
其中,所述连接机构434的上部与端头机构434转动连接;
所述连接机构434的下部与容纳箱43固定连接。
现参考图34,可以注意到所述连接机构434上还设有一盛放腔4342,所述盛放腔4342内放置有齿轮组435,所述盛放腔4342内安放齿轮435组能有节约垃圾桶内部的空间,对所述齿轮组435也起到一定的保护作用。
再次参照图32,其清楚详细地示出了所述盛放腔4342内设有卡座43421, 所述卡座43421与齿轮组的尺寸相匹配,以使得所述齿轮组在内部的平稳转动。
所述连接机构434的侧壁上设有转动轴孔,转动轴通过所述转动轴孔与端头机构41转动连接,以实现端头机构41的翻盖动作。
现再次参照图34,可以注意到,所述连接机构434上底面上设有通孔4343。
现在参考图35及图36,根据所示可以得知,所述容纳箱43上设有支撑凸缘4345,所述容纳箱43上设有网格肋板4346。
所述容纳箱43上设有盲孔4344;其中,所述盲孔4344与通孔4343相适应以实现连接机构的固定连接。
在具体实施方式中,连接装置安放在所述支撑凸缘4345上,并通过所述盲孔4344与通孔4343的配合,使得连接装置固定在容纳箱43上,所述网格肋板4346能够使得连接装置正视方向上的侧壁有支撑点,以增强所述连接装置的强度。
如图37、图38所示,本申请一种实施例提供了一种卡扣装置,所述装置可以包括:
端头机构51;
容纳箱53,其设于端头机构51的正下方;
连接机构534,其设于端头机构51与容纳箱53之间;
其中,连接机构534上设有弹簧结构5347以支撑上翻时的端头机构51。
再次结合图38,参考图39,其详细清楚地示出了所述弹簧结构5347包括:
卡板53472,其与连接机构534一体成型;
弹簧53473,其向上延伸以形成以弹簧钩;
其中,弹簧钩与卡板53472相适配。
所述卡板53472上设有一缺口,所述弹簧钩与所述缺口相匹配。
虽然没有在图中示出所述缺口的位置,应当理解,所述弹簧钩要想能够起到限位的作用,应当设有可以限制弹簧钩运动的部件。
所述弹簧结构5347还包括转动轴53471,所述弹簧53473与转动轴53471固定连接,所述转动轴53471与端头机构51固定连接,所述转动轴53471与所述连接机构534上的转动轴孔转动连接,以实现端头机构51的张开或闭合。
在具体实施方式中,所述弹簧53473因为与转动轴53471固定连接,随着 端头机构51的转动而转动轴53471也跟随转动,所述弹簧53473也随着端头机构51的转动而转动;当端头机构51开合角度为90。时,所述弹簧钩与所述缺口相互限制,使得所述端头机构51不再转动。
再次参照图38,可以清楚地看到,所述连接机构534设有挡板5341以形成走线槽。
所述挡板5341还可以固定内部的结构,例如,能够驱动智能垃圾桶内部部件运动的电机,所述电机安放在所述挡板5341上;一方面,所述挡板5341还能够对电机起到一定的支撑作用,另一方面,所述挡板5341形成的走线槽,还能够将与电机连接的电路线安排的有条不紊,使得智能垃圾桶内部走线时不发生缠绕,减少故障的发生。
根据图40所示,所述连接机构534上还设有一盛放腔5342;
现在结合图41,参照图42,可以注意到,所述盛放腔5342内放置有齿轮组535,所述盛放腔5342内放置有齿轮组535,所述盛放腔5342内安放齿轮535组能有节约垃圾桶内部的空间,对所述齿轮组535也起到一定的保护作用。
所述盛放腔5342内设有卡座53421,所述卡座53421与齿轮组的尺寸相匹配,以使得所述齿轮组在内部的平稳转动。
所述连接机构534整体呈凸字形;
其中,所述连接机构534的上部与端头机构534转动连接;
所述连接机构534的下部与容纳箱53固定连接。
现在参照图43,可以清楚地得到,所述容纳箱53上设有支撑凸缘5345,根据图44所示,所述容纳箱53上设有网格肋板5346。
在具体实施方式中,连接机构534安放在所述支撑凸缘5345上,并通过螺纹连接,使得连接装置固定在容纳箱53上,所述网格肋板5346能够使得连接装置正视方向上的侧壁有支撑点,以增强所述连接装置的强度。
如图45、图46以及图47所示,本申请一种实施例中提供了一种用于安装传送带的盛放装置,所述装置可以包括:
端盖机架611,其内部中空且中部水平设有分隔层6111;
第一构件612,其中部中空且设于分隔层6111的上方;
第二构件613,其中部中空且设于分隔层6111的下方;
根据图48及图49的示出,可以注意到,其中,第二构件613上设有安装板6132,所述第二构件613内圈设有内圈凸缘61313,所述安装板6132与所述内圈凸缘61313形成安装槽61322。
所述分隔层6111为第一构件612和第二构件613在端盖机架611内的稳定性提供了保障,对第一构件612有一定的支撑性,减轻了第二构件613对第一构件612的支撑作用。
所述安装槽61322内间隔设有隔板61321。
在具体实施方式中,传送带616安装在所述安装槽61322上,所述传送带616的各处下方都有隔板61321对传送带16进行支撑,能够提高传送带616的稳定性,增加传送带616的使用寿命,减少成本。
根据图50的示出,可以清楚地了解,所述第一构件612设有沿轴向向下延伸裙部6122,所述第一构件612设有沿轴向向下延伸的第一支撑脚61211;所述支撑脚61211呈圆周阵列分布于裙部6122外围且与第一构件612自成一体。
所述第一构件612间隔设有第一卡环61212;所述第一卡环61212呈圆周阵列分布。
再次参考图46,结合图47所示,在具体结构中,所述第一构件612中空处架设有垃圾袋盒614,所述裙部6122的目的是在垃圾袋盒614离开第一构件612时,裙部6122还能够使得端盖装置61各处的密封性,不会使灰尘或水渍进入端盖内部,保护内部线路。
所述第二构件613间隔设有呈圆周阵列分布且沿轴向向上延伸的第二支撑脚座61311。
所述支撑脚座61311与所述安装板6132之间还留有空隙,所述空隙用来安放连接传送带616的线路,实现内圈实现传送带616的运动,外圈实现线路的走向,充分利用内部空间,提高垃圾桶内部的空间利用率,节约成本。
现在再次参照图48,可以清楚地了解到所述第二构件613间隔设有第二卡环61312;
所述第二卡环61312呈圆周阵列分布。
现在结合图51,参考图52所示,可以清楚地得出所述端盖机架611设有侧壁6112,所述侧壁6112设有卡钩结构61121,所述卡钩结构61121的横截面积 沿径向方向向内逐渐减小;
所述卡钩结构61121分别与第一卡环61212/第二卡环61312相匹配。
所述端盖机架611的分隔层6111的上端面设有分隔支撑座61111;
所述端盖机架611的分隔层6111的下端面设有分隔支撑脚61112;
其中,分隔支撑座61111与第一支撑脚61211相匹配,分隔支撑脚61112与第二支撑座61311相匹配。
所述卡扣结构和支撑脚与支撑座的配合使用都是为加固智能垃圾桶端部各个部分之间的稳定性。
如图53和图54所示,本申请一种实施例提供了一种定位装置,所述装置可以包括:
端头机构71;
容纳箱73,其设于端盖机构71的正下方;
连接机构734,其位于所述端头机构71与容纳箱73之间;
参考图55,可以注意到,其中,所述容纳箱73上设有至少两个定位机构7344,所述定位机构7344间隔设置在所述连接机构734的正面。
所述定位机构7344为盲孔,其外周间隔设有加强筋73441,所述加强筋73441至少设有三个,在具体的实施方式中设有四个,更符合常规设置。
现结合图55,参考图56所示,可以清楚地了解到所述容纳箱73上设有支撑凸缘7345,所述容纳箱73上设有网格肋板7346,所述定位机构7344设于网格肋板7346的下部。
在具体实施方式中,通过所述定位机构7344将连接机构734定位在容纳箱73内,所述连接机构734安放在所述支撑凸缘7345上,并通过所述定位机构7344上的盲孔与通孔7343的配合,使得连接机构固定在容纳箱73上,所述网格肋板7346能够使得连接机构正视方向上的侧壁有支撑点,以增强所述连接装置的强度。
其中,所述定位机构至少设有两个,具体优选的是设有三个定位机构7344,三个定位机构7344进一步更稳妥地将连接机构734安装于容纳箱733上,还不会造成成本的大幅度增加。
根据图57及图58所示,所述连接机构734整体呈凸字形,其中,所述连 接机构734的上部与端头机构734转动连接,所述连接机构734的下部与容纳箱73固定连接,所述连接机构734上还设有一盛放腔7342,所述盛放腔7342内放置有齿轮组735,所述盛放腔7342内还设有卡座73421,所述卡座73421与齿轮组的尺寸相匹配,以使得所述齿轮组在内部的平稳转动。
所述连接机构734上底面上设有通孔7343;所述通孔7343与所述定位机构7344相匹配。其中在通孔7343与定位机构7344上通过螺钉将通孔7343与定位机构7344固定连接。
再次结合图57,参考图59,可以清楚地了解到所述弹簧结构7347包括:卡板73472,其与连接机构734一体成型,弹簧73473,其向上延伸以形成以弹簧钩,其中,弹簧钩与卡板73472相适配,所述卡板73472上设有一缺口,所述弹簧钩与所述缺口相匹配。
虽然没有在图中示出所述缺口的位置,应当理解,所述弹簧钩要想能够起到限位的作用,应当设有可以限制弹簧钩运动的部件。
所述弹簧结构7347还包括转动轴73471,所述弹簧73473与转动轴73471固定连接,所述转动轴73471与端头机构71固定连接,所述转动轴73471与所述连接机构734上的转动轴孔转动连接,以实现端头机构71的张开或闭合。
在具体实施方式中,所述弹簧73473因为与转动轴73471固定连接,随着端头机构71的转动而转动轴73471也跟随转动,所述弹簧73473也随着端头机构71的转动而转动;当端头机构71开合角度为90。时,所述弹簧钩与所述缺口相互限制,使得所述端头机构71不再转动。
再次参考图57及图58,所述连接机构734设有挡板7341以形成走线槽。所述挡板7341还可以固定内部的结构,例如,能够驱动智能垃圾桶内部部件运动的电机,所述电机安放在所述挡板7341上;一方面,所述挡板7341还能够对电机起到一定的支撑作用,另一方面,所述挡板7341形成的走线槽,还能够将与电机连接的电路线安排的有条不紊,使得智能垃圾桶内部走线时不发生缠绕,减少故障的发生。
尽管本申请的实施方案已公开如上,但其并不仅限于说明书和实施方式中所列运用,它完全可以被适用于各种适合本申请的领域,对于熟悉本领域的人 员而言,可容易地实现另外的修改,因此在不背离权利要求及等同范围所限定的一般概念下,本申请并不限于特定的细节和这里示出与描述的图例。

Claims (70)

  1. 一种端盖装置,其特征在于,包括:
    端盖机架,其内部中空且中部水平设有支架;
    第一构件,其中部中空且设于所述支架的上方;
    第二构件,其中部中空且设于所述支架的下方,所述第二构件一侧设有沿径向向外延伸的弧形连接部,所述弧形连接部向上弯曲形成弧形面。
  2. 如权利要求1所述的端盖装置,其特征在于,所述第一构件一侧设有沿径向向外延伸的凸缘,所述凸缘与弧形连接部设于同一侧。
  3. 如权利要求1所述的端盖装置,其特征在于,所述第一构件设有沿轴向向下延伸裙部。
  4. 如权利要求3所述的端盖装置,其特征在于,所述第一构件设有沿轴向向下延伸的第一支撑脚,所述支撑脚呈圆周阵列分布于裙部外围且与第一构件自成一体。
  5. 如权利要求1所述的端盖装置,其特征在于,所述第一构件间隔设有第一卡环;
    所述第一卡环呈圆周阵列分布。
  6. 如权利要求1所述的端盖装置,其特征在于,所述第二构件间隔设有第二卡环,所述第二卡环呈圆周阵列分布。
  7. 如权利要求1所述的端盖装置,其特征在于,所述第二构件上设有安装槽,所述安装槽内间隔设有隔板。
  8. 如权利要求1所述的端盖装置,其特征在于,所述端盖机架设有侧壁,所述侧壁设有卡钩结构,所述卡钩结构分别与第一卡环/第二卡环相匹配。
  9. 如权利要求1所述的端盖装置,其特征在于,所述端盖机架的支架的上端面设有分隔支撑座;
    所述端盖机架的支架的下端面设有分隔支撑脚;
    其中,分隔支撑座与第一支撑脚相匹配,分隔支撑脚与第二支撑座相匹配。
  10. 一种智能垃圾桶,其特征在于,其包含有根据权利要求1至10中任一项所述的端盖装置。
  11. 一种照明装置,其特征在于,包括:
    端盖机架,其内部中空且中部水平设有分隔层;
    第一构件,其中部中空且设于分隔层的上方;
    第二构件,其中部中空且设于分隔层的下方;以及
    照明组件,其设于第二构件的下端面;
    所述端盖机架、所述第一构件、所述第二构件依次从上到下同轴设置。
  12. 如权利要求11所述的照明装置,其特征在于,所述照明组件包括:
    灯罩,其至少一面设有凸缘;
    LED灯,其设于灯罩的内部,LED灯的形状与灯罩相适应。
  13. 如权利要求12所述的照明装置,其特征在于,所述灯罩中部设有中部隔板,所述中部隔板与所述凸缘形成一安放槽。
  14. 如权利要求12所述的照明装置,其特征在于,所述灯罩的底部至少设有两个通孔。
  15. 如权利要求12所述的照明装置,其特征在于,所述第二构件的下端面设有向内凹陷的灯罩槽,所述灯罩槽的顶部设有安装孔,所述安装孔与所述通孔相匹配。
  16. 如权利要求11所述的照明装置,其特征在于,所述第一构件上设有感应机构。
  17. 如权利要求11所述的照明装置,其特征在于,所述第一构件的内圈设有垃圾袋料盒,所述垃圾袋料盒架设于分隔层上。
  18. 如权利要求16所述的照明装置,其特征在于,所述垃圾袋料盒包括上部料盖和下部料槽,所述上部料盖与下部料槽相合以形成放料空间。
  19. 如权利要求17所述的照明装置,其特征在于,上部料盖侧壁间隔设有料盒卡孔,其上端面设有沿径向方向向下延伸的凸缘,且所述凸缘的下部间隔设有加强筋。
  20. 一种智能垃圾桶,其特征在于,其包含有根据权利要求11~19中任一项所述的照明装置。
  21. 一种通风装置,其特征在于,包括:
    容纳箱;
    外壳体,其设于容纳箱的一侧;
    其中,所述容纳箱与设备箱之间固定连接,外壳体的底面设有呈阵列排布 的网孔。
  22. 如权利要求21所述的通风装置,其特征在于,所述外壳体上间隔设有呈圆周阵列排布的卡扣结构。
  23. 如权利要求22所述的通风装置,其特征在于,所述卡扣机构向内凹陷成一凹槽,其边缘设有边缘凸缘。
  24. 如权利要求22所述的通风装置,其特征在于,所述卡扣结构的横截面积沿外壳体靠近容纳箱的方向呈逐渐递增之势。
  25. 如权利要求21所述的通风装置,其特征在于,所述外壳体外壁底端设有一支撑脚;
    所述支撑脚与外壳体自成一体,其横截面积由外壳体向外呈逐渐减小之势。
  26. 如权利要求25所述的通风装置,其特征在于,所述支撑脚内部中空;
    所述支撑脚的底面设有呈阵列排布网孔,所述网孔与外壳体底面的网孔连接成一体。
  27. 如权利要求21所述的通风装置,其特征在于,所述容纳箱与外壳体相接触的面下部设有呈阵列排布的通风孔。
  28. 如权利要求27所述的通风装置,其特征在于,所述容纳箱的外壁上设有聚拢机构,所述聚拢机构包括:
    风箱,其笼罩试试通风孔;
    导流风扇,其设于风箱的上方。
  29. 如权利要求28所述的通风装置,其特征在于,所述导流风扇内包括:
    导流叶轮,其与导流风扇壳体同轴设置;
    出风通道,其与导流风扇的主体相切。
  30. 一种智能垃圾桶,其特征在于,其包含有根据权利要求21~29中任一项所述的通风装置。
  31. 一种连接装置,其特征在于,包括:
    端头机构;
    容纳箱,其设于端盖机构的正下方;
    连接机构,其位于所述端头机构与容纳箱之间;
    所述连接机构上设有至少两个挡板,所述挡板形成一走线槽。
  32. 如权利要求31所述的连接装置,其特征在于,所述连接机构整体呈凸字形,所述连接机构的上部与端头机构转动连接,所述连接机构的下部与容纳箱固定连接。
  33. 如权利要求31所述的连接装置,其特征在于,所述连接机构上还设有一盛放腔,所述盛放腔内放置有齿轮组。
  34. 如权利要求33所述的连接装置,其特征在于,所述盛放腔内设有卡座。
  35. 如权利要求31所述的连接装置,其特征在于,所述连接机构的侧壁上设有转动轴孔。
  36. 如权利要求31所述的连接装置,其特征在于,所述连接机构上底面上设有通孔。
  37. 如权利要求31所述的连接装置,其特征在于,所述容纳箱上设有支撑凸缘。
  38. 如权利要求31所述的连接装置,其特征在于,所述容纳箱上设有网格肋板。
  39. 如权利要求31所述的连接装置,其特征在于,所述容纳箱上设有盲孔,所述盲孔与通孔相适应以实现连接机构的固定连接。
  40. 一种智能垃圾桶,其特征在于,其包含根据权利要求31~39中任一项所述的连接装置。
  41. 一种卡扣装置,其特征在于,包括:
    端头机构;
    容纳箱,其设于端头机构的正下方;
    连接机构,其设于端头机构与容纳箱之间;
    所述连接机构上设有弹簧结构以支撑上翻时的端头机构。
  42. 如权利要求41所述的卡扣装置,其特征在于,所述弹簧结构包括:
    卡板,其与连接机构一体成型;
    弹簧,其向上延伸以形成以弹簧钩,弹簧钩与卡板相适配。
  43. 如权利要求42所述的卡扣装置,其特征在于,所述卡板上设有一缺口,所述弹簧钩与所述缺口相匹配。
  44. 如权利要求42所述的卡扣装置,其特征在于,所述弹簧结构还包括转动 轴,所述弹簧与转动轴固定连接。
  45. 如权利要求41所述的卡扣装置,其特征在于,所述连接机构设有挡板以形成走线槽。
  46. 如权利要求41所述的卡扣装置,其特征在于,所述连接机构上还设有一盛放腔,所述盛放腔内放置有齿轮组。
  47. 如权利要求41所述的卡扣装置,其特征在于,所述盛放腔内设有卡座。
  48. 如权利要求41所述的卡扣装置,其特征在于,所述容纳箱上设有支撑凸缘。
  49. 如权利要求41所述的卡扣装置,其特征在于,所述容纳箱上设有网格肋板。
  50. 一种智能垃圾桶,其特征在于,其包含有根据权利要求41~49中任一项所述的卡扣装置。
  51. 一种用于安装传送带的盛放装置,其特征在于,包括:
    端盖机架,其内部中空且中部水平设有分隔层;
    第一构件,其中部中空且设于分隔层的上方;
    第二构件,其中部中空且设于分隔层的下方;
    所述第二构件上设有安装板,所述第二构件内圈设有内圈凸缘,所述安装板与所述内圈凸缘形成安装槽。
  52. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述安装槽内间隔设有隔板。
  53. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述第一构件设有沿轴向向下延伸裙部。
  54. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述第一构件设有沿轴向向下延伸的第一支撑脚,所述支撑脚呈圆周阵列分布于裙部外围且与第一构件自成一体。
  55. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述第一构件间隔设有第一卡环,所述第一卡环呈圆周阵列分布。
  56. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述第二构件间隔设有呈圆周阵列分布且沿轴向向上延伸的第二支撑脚座。
  57. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述第二构件间隔设有第二卡环,所述第二卡环呈圆周阵列分布。
  58. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述端盖机架设有侧壁,所述侧壁设有卡钩结构,所述卡钩结构分别与第一卡环/第二卡环相匹配。
  59. 如权利要求51所述的用于安装传送带的盛放装置,其特征在于,所述端盖机架的分隔层的上端面设有分隔支撑座,所述端盖机架的分隔层的下端面设有分隔支撑脚,所述分隔支撑座与所述第一支撑脚相匹配,所述分隔支撑脚与所述第二支撑座相匹配。
  60. 一种智能垃圾桶,其特征在于,其包含有根据权利要求51~59中任一项所述的用于安装传送带的盛放装置。
  61. 一种定位装置,其特征在于,包括:
    端头机构;
    容纳箱,其设于端盖机构的正下方;
    连接机构,其位于所述端头机构与容纳箱之间;
    所述容纳箱上设有至少两个定位机构,所述定位机构间隔设置在所述连接机构的正面。
  62. 如权利要求61所述的定位装置,其特征在于,所述定位机构的外周间隔设有加强筋。
  63. 如权利要求61所述的定位装置,其特征在于,所述容纳箱上设有支撑凸缘。
  64. 如权利要求63所述的定位装置,其特征在于,所述容纳箱上设有网格肋板。
  65. 如权利要求64所述的定位装置,其特征在于,所述定位机构的中间为盲孔,且所述定位机构设于网格肋板的下部。
  66. 如权利要求61所述的定位装置,其特征在于,所述连接机构整体呈凸字形,所述连接机构的上部与端头机构转动连接,下部与容纳箱固定连接。
  67. 如权利要求61所述的定位装置,其特征在于,所述连接机构上还设有一盛放腔,所述盛放腔内放置有齿轮组。
  68. 如权利要求61所述的定位装置,其特征在于,所述连接机构上底面上设有通孔,所述通孔与所述定位机构相匹配。
  69. 如权利要求61所述的定位装置,其特征在于,所述连接机构设有弹簧结构,其包括:
    卡板,其与连接机构一体成型;
    弹簧,其向上延伸以形成以弹簧钩,所述弹簧钩与卡板相适配。
  70. 一种智能垃圾桶,其特征在于,其包含有根据权利要求61至69中任一项所述的定位装置。
PCT/CN2020/140142 2019-12-31 2020-12-28 智能垃圾桶 WO2021136166A1 (zh)

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CN201922459891.8U CN212314531U (zh) 2019-12-31 2019-12-31 一种用于安装传送带的盛放装置及智能垃圾桶
CN201922468677.9U CN211811516U (zh) 2019-12-31 2019-12-31 一种端盖装置及智能垃圾桶
CN201922468567.2U CN213110872U (zh) 2019-12-31 2019-12-31 一种定位装置及智能垃圾桶
CN201922468591.6U CN213110873U (zh) 2019-12-31 2019-12-31 一种通风装置及智能垃圾桶
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