CN114379956A - Intelligence solid-liquid separation garbage bin - Google Patents

Intelligence solid-liquid separation garbage bin Download PDF

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Publication number
CN114379956A
CN114379956A CN202111517621.3A CN202111517621A CN114379956A CN 114379956 A CN114379956 A CN 114379956A CN 202111517621 A CN202111517621 A CN 202111517621A CN 114379956 A CN114379956 A CN 114379956A
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CN
China
Prior art keywords
bag
pedal
expansion
partitioning device
winding
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Granted
Application number
CN202111517621.3A
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Chinese (zh)
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CN114379956B (en
Inventor
陈建
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Taizhou Hengxiang Building Decoration Engineering Co ltd
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Individual
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Priority to CN202111517621.3A priority Critical patent/CN114379956B/en
Publication of CN114379956A publication Critical patent/CN114379956A/en
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Publication of CN114379956B publication Critical patent/CN114379956B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/04Refuse receptacles; Accessories therefor with removable inserts
    • B65F1/06Refuse receptacles; Accessories therefor with removable inserts with flexible inserts, e.g. bags or sacks
    • B65F1/068Refuse receptacles; Accessories therefor with removable inserts with flexible inserts, e.g. bags or sacks with means aiding the removal of the flexible insert
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B51/00Devices for, or methods of, sealing or securing package folds or closures; Devices for gathering or twisting wrappers, or necks of bags
    • B65B51/10Applying or generating heat or pressure or combinations 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
    • 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
    • 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
    • B65F1/163Pedal-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
    • B65F2001/1653Constructional features of lids or covers
    • 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
    • B65F2210/176Sorting 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
    • B65F2210/184Weighing means
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/10Waste collection, transportation, transfer or storage, e.g. segregated refuse collecting, electric or hybrid propulsion

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Refuse Receptacles (AREA)

Abstract

The invention relates to the field of intelligent home furnishing, in particular to an intelligent solid-liquid separation garbage can which comprises a can body, wherein a rotatable can cover is arranged above the can body, a cover opening pedal is arranged at the lower end of the front side of the can body, a bag changing pedal is arranged at the lower end of the rear side of the can body, a packaging pedal is arranged at the lower end of one side of the can body, a garbage cavity is formed in the can body, two bag opening expanders are symmetrically arranged in the garbage cavity, a bag sleeving chamfer is respectively arranged on the outer side of each bag opening expander, a bag sleeving clamping opening is respectively arranged on the surface of each bag opening expander below each bag sleeving chamfer to assist garbage bag clamping, and the garbage can realize solid-liquid separation of garbage and can be respectively packaged to facilitate garbage classification and recovery when being taken out.

Description

Intelligence solid-liquid separation garbage bin
Technical Field
The invention belongs to the field of intelligent home furnishing, and particularly relates to an intelligent solid-liquid separation garbage can.
Background
A garbage can, also known as a waste bin or a garbage can, is a container for containing garbage, is mostly made of metal or plastic, is put into a plastic bag when in use, can be pricked up to be discarded when more garbage is used, is a container for storing dirt in the life of people, but the traditional garbage can has the following problems:
the caliber of a traditional garbage can is fixed, so that the problem that the garbage bag cannot be fixed at the opening of the garbage can and easily falls off due to the fact that the garbage bag is too large when different garbage bags are used, or the problem that the garbage bag cannot be completely sleeved at the opening of the garbage can due to the fact that the opening of the garbage bag is too small can occur;
the traditional garbage can only has one can body, so that solid and liquid are in one area at the same time, when too much garbage is generated, odor is easy to generate, and the solid and the liquid are not easy to separate when the garbage is classified and recycled;
therefore, the scheme designs the intelligent solid-liquid separation garbage can which can facilitate garbage bag sleeving, can realize solid-liquid separation according to actual needs, can adjust the capacity of the liquid area and the solid area in real time to adapt to different environmental needs, and can separate and pack the liquid area and the solid area before the garbage bag is taken out so as to facilitate garbage classification and recovery
Disclosure of Invention
The invention aims to solve the problems in the prior art, and provides an intelligent solid-liquid separation garbage can which is convenient for garbage bag sleeving, can realize solid-liquid separation according to actual needs, can adjust the capacity of a liquid area and a solid area in real time to adapt to different environmental needs, and can separate and pack the liquid area and the solid area before a garbage bag is taken out so as to facilitate garbage classification and recovery.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides an intelligence solid-liquid separation garbage bin, includes the ladle body, rotatable bung is installed to the ladle body top, the footboard of uncapping is installed to ladle body front side lower extreme, ladle body rear side lower extreme is installed and is traded a bag footboard, the packing footboard is installed to ladle body one side lower extreme, the rubbish chamber has been seted up in the ladle body, rubbish intracavity symmetry is provided with two sack expanders, every the bagging chamfer has been seted up respectively in the sack expander outside, every bagging chamfer below has been seted up respectively on sack expander surface and has been overlapped the supplementary disposal bag centre gripping of bag clamp mouth.
Preferably, one side of the upper end face of the barrel body, which is close to the bag changing pedal, is rotatably provided with a barrel cover rotating shaft, one side of the barrel cover rotating shaft, which is far away from the packing pedal, extends out of the barrel body and is fixedly provided with a pedal shaft pull ring towards one side of the bag changing pedal, a barrel cover shaft sleeve is fixedly sleeved outside the barrel cover rotating shaft, and the barrel cover shaft sleeve is fixedly connected with the barrel cover to rotate and cover the garbage cavity to prevent odor from escaping.
Preferably, the uncovering pedal groove has been seted up to ladle body front side below, the pivot of uncapping is installed to uncapping pedal inslot rotation, the outer fixed cover of pivot of uncapping is equipped with the axle sleeve of uncapping, install the footboard wind spring of uncapping in the axle sleeve of uncapping, uncapping footboard and uncapping axle sleeve fixed connection, the pivot of uncapping is kept away from packing footboard one side and is stretched out the ladle body outer and towards uncapping footboard one side and set firmly half curved footboard axle pull ring, footboard axle pull ring is connected with pull ring down towards packing footboard one side, the vertical direction in pull ring top has set firmly the uncapping pole down, uncapping pole upper end has set firmly the pull ring, it is close to packing footboard one side and sets up the footboard axle pull ring of bung pivot one side is connected.
Preferably, a transmission gas cavity is formed in the bottom surface of the garbage cavity, an expansion rod movable groove is formed in the barrel below the transmission gas cavity, the middle of the transmission gas cavity penetrates through the barrel upwards, a weight measuring plate is slidably mounted on the penetrating part, a platform is fixedly arranged on the upper end face of the weight measuring plate, two weight measuring plate reset springs are fixedly mounted on two sides of the lower end face of the platform respectively, a solid area expansion sinking rod is fixedly arranged on the lower end face of the weight measuring plate, and the lower end of the solid area expansion sinking rod extends out of the transmission gas cavity to form a T-shaped fork and can slide up and down in the expansion rod movable groove.
Preferably, both sides of the inner wall of the barrel body are respectively provided with a partitioner limit, a partitioner power rod is respectively arranged in each partitioner limit, the lower end of each partitioner power rod is respectively arranged in a transmission gas cavity, the upper end of each partitioner power rod is respectively sleeved with a partitioner height reset spring, the upper ends of the two partitioner power rods, which are close to each other, are respectively and fixedly provided with a leakage-proof plate on one side, the two partitioner expansion slide rods are respectively and fixedly arranged on one side, close to each other, of the two leakage-proof plates on the other side, a partitioner is slidably sleeved outside the partitioner expansion slide rods on the same side, a partitioner expansion slide cavity is respectively arranged on the upper side and the lower side of the interior of the partitioner, a corresponding partitioner expansion slide rod is respectively arranged in each partitioner expansion slide cavity, and the tail end of each partitioner expansion slide rod is respectively and fixedly connected with a partitioner clamping reset spring in the partitioner, and one end of each of the two dividers, which is in mutual contact with each other, is provided with a liquid leakage hole along the vertical direction.
Preferably, two dividers are respectively and symmetrically installed with a heater up and down inside one side close to each other, two heaters at the same height are respectively and symmetrically installed with a heat sealing strip at one side close to each other for conducting heat to seal the garbage bag, a current sensor is installed between the two heaters at the same side, two current sensors are respectively and electrically connected with a conducting strip at one side close to each other for detecting whether the plastic bag is placed, a sliding groove is formed in each divider between each current sensor and the heater below, a cutting knife is respectively arranged in each sliding groove, cutting metal columns are respectively and fixedly arranged at one sides of the two cutting knives far away from each other, a cutting knife spring is respectively sleeved outside each cutting metal column, an electromagnet is respectively installed at one end of each cutting metal column far away from each other for controlling the movement of the cutting knife, the heaters and the current sensors, the cutting metal posts are respectively electrically connected with the packaging pedal.
Preferably, the two dividers are limited to be away from each other, transmission cavities are respectively formed in the barrel body at one side, close to the power rod of the divider, of each transmission cavity, a wire clamping device is respectively installed in each transmission cavity, a double-wire winding rotating wheel shaft is respectively and fixedly arranged in each transmission cavity, a double-wire winding rotating wheel is respectively sleeved outside each double-wire winding rotating wheel shaft, a winding transmission main gear is respectively and fixedly arranged at one side of each double-wire winding rotating wheel, a winding driven shaft is respectively and fixedly arranged above each winding transmission main gear in the transmission cavity in the horizontal direction, a winding driven shaft sleeve is respectively and fixedly sleeved outside each winding driven shaft, a winding transmission driven gear is respectively and fixedly arranged at one side, close to each winding transmission main gear, of each winding driven shaft sleeve, and each winding transmission driven gear is respectively and fixedly connected with the winding transmission main gear below in a meshing manner.
Preferably, a bag changing pedal groove is formed in the surface of the barrel body below the transmission cavity, a bag changing pedal shaft is fixedly arranged in the bag changing pedal groove in the horizontal direction, a bag changing pedal shaft sleeve is rotatably sleeved outside the bag changing pedal shaft, a bag changing pedal coil spring is installed in the bag changing pedal shaft sleeve, the bag changing pedal shaft sleeve is fixedly connected with a bag changing pedal, a bag changing pull rope is wound outside the bag changing pedal shaft sleeve, the bag changing pull rope is fixedly connected with the two-wire winding rotating wheels on the two sides above the bag changing pedal shaft sleeve respectively, a wire clamping pull rope is further wound outside the two-wire winding rotating wheels, each wire clamping pull rope is fixedly connected with a wire clamping device on the same side respectively, a zoning device pull rope winder is installed inside each wire clamping device respectively, a zoning device pull rope is wound on the surface of the zoning device pull rope winder, the zoning device pull rope extends out of the wire clamping device and penetrates through the barrel body, the zoning device power rod and the zoning device plate and is fixedly connected with the zoning device on the same side, an inclined opening is formed in the front side of the wire clamp, a lifting column is arranged in the inclined opening, a linkage rod which slides up and down is fixedly arranged on the upper end face of the lifting column, a lifting column reset spring is sleeved outside the linkage rod, the linkage rod is Contraband-shaped, a wire clamp is fixedly arranged below the other end of the linkage rod, and the lower end face of the wire clamp is rough and clamps the pulling rope of the divider.
Preferably, every the outer winding respectively of driven shaft sleeve of wire winding has the sack stay cord, every sack stay cord top is provided with wired steering spindle respectively, the sack stay cord has set firmly slidable sack expansion pole around wire steering spindle and terminal horizontal direction, every sack expansion pole stretches into respectively in the rubbish intracavity and the end has set firmly the sack connecting block, every respectively the sack connecting block with the sack expander fixed connection of top, every respectively terminal surface has set firmly the expansion slider that resets respectively under the sack connecting block, every the expansion slider that resets is outer respectively the cover be equipped with solid area and enlarge the ejector pin, every solid area enlarges the ejector pin and is close to that ladle body one side is stretched into inside and with the expansion pole movable groove fixed connection of below, every expansion slider is kept away from ladle body inner wall one side fixedly connected with sack expansion reset spring respectively.
Advantageous effects
1. By utilizing the liquidity of the liquid garbage, a channel is formed between the liquid area and the solid area, so that the liquid garbage can flow into the liquid area below the channel through the channel to carry out solid-liquid separation, and the garbage can be conveniently recycled and classified at the later stage;
2. the quality of the liquid garbage and whether the liquid garbage exists or not are utilized to judge the condition in the garbage can, so that two liquid areas for carrying out garbage bag are adjusted to adapt to different environments according to different liquid areas;
3. when needs are abandoned rubbish, whether the footboard that utilizes the setting to set up in garbage bin one side judges to have the disposal bag in to the garbage bin and prevents that the mistake from touching, if there is the disposal bag then utilize the heat-seal to seal the liquid district and the solid district of disposal bag and prevent that the solid rubbish of top from falling into the below to cut apart convenient classification abandoning to the disposal bag after the heat-seal.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic front view of the present invention;
FIG. 3 is a cross-sectional view taken at B-B of FIG. 2;
FIG. 4 is a cross-sectional view taken at C-C of FIG. 2;
FIG. 5 is an enlarged view of FIG. 3 at D;
FIG. 6 is an enlarged view of E in FIG. 3;
FIG. 7 is an enlarged view of FIG. 3 at F;
in the figure: a barrel body 10, a barrel cover 11, a cover opening pedal 12, a cover opening shaft sleeve 13, a packaging pedal 14, a packaging rotating shaft 15, a garbage cavity 16, a bag changing pedal 17, a bag changing pedal shaft sleeve 18, a bag changing pedal coil spring 19, a bag changing pedal shaft 20, a transmission cavity 21, a double-wire winding rotating shaft 22, a double-wire winding rotating wheel 23, a winding transmission main gear 24, a winding transmission driven gear 25, a winding driven shaft sleeve 26, a winding driven shaft 27, a bag opening pull rope 28, a wire steering shaft 29, a bag opening expansion rod 30, a cover opening pedal coil spring 31, a cover opening rotating shaft 32, a cover opening pedal groove 33, a transmission gas cavity 34, a weight measuring plate 35, a partitioner power rod 36, a partitioner height reset spring 37, a partitioner expansion pull rope 38, a thread clamping pull rope 39, a partitioner 40, a partitioner expansion sliding cavity 41, a weight measuring plate reset spring 42, a partitioner limit barrel cover 43, a leakage-proof plate 44, a barrel cover shaft sleeve 45, a barrel cover rotating shaft 46, a bag opening 47, a garbage cavity, a garbage bag cover 16, a garbage bag opening, a garbage box cover rotating shaft 17, a garbage box cover 18, a garbage box cover, The bag opening expanding device comprises a bag covering chamfer 48, a bag covering clamping opening 49, a bag opening connecting block 50, a solid area expanding ejector rod 51, a bag opening expanding reset spring 52, an expanding reset sliding block 53, a wire clamp 54, a partitioner pull rope winder 55, a wire clamp 56, a partitioner pull rope 57, a lifting column 58, a lifting column reset spring 59, a linkage rod 60, a heater 61, a heat sealing strip 62, a current sensor 63, a conductive strip 64, a cutting knife 65, a cutting metal column 66, a cutting knife spring 67, a solid area expanding sunken rod 68, an expanding rod movable groove 69, a partitioner expanding sliding rod 70, a pedal shaft pull ring 71, a pull-down ring 72, a cover opening rod 73, a liquid leakage hole 74, an upper pull ring 75, an electromagnet 76, a bag changing pedal plate groove 77, a bag changing pull rope 78 and a partitioner clamping reset spring 79.
Detailed Description
The following are specific embodiments of the present invention and are further described with reference to the drawings, but the present invention is not limited to these embodiments.
In the description of the present invention, it should be noted that the terms "inside", "below", and the like refer to orientations or positional relationships based on the orientations or positional relationships shown in the drawings or orientations or positional relationships that the products of the present invention conventionally place when used, and are used only for convenience in describing the present invention and simplifying the description, but do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed in a specific orientation, and be operated, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and the like are used merely to distinguish one description from another, and are not to be construed as indicating or implying relative importance.
Combine attached figure 1, attached figure 4, an intelligence solid-liquid separation garbage bin, including ladle body 10, rotatable bung 11 is installed to ladle body 10 top, uncovering footboard 12 is installed to ladle body 10 front side lower extreme, bag footboard 17 is changed to ladle body 10 rear side lower extreme installation, packing footboard 14 is installed to ladle body 10 one side lower extreme, garbage chamber 16 has been seted up in the ladle body 10, the symmetry is provided with two sack expanders 47 in garbage chamber 16, cover bag chamfer 48 has been seted up respectively in every sack expander 47 outside, cover bag chamfer 49 supplementary disposal bag centre gripping has been seted up respectively on sack expander 47 surface to every cover bag chamfer 48 below.
Further, with reference to fig. 1 and fig. 3, a lid rotating shaft 46 is rotatably disposed on one side of the upper end surface of the can body 10 close to the bag changing pedal 17, a pedal shaft pull ring 71 is fixedly disposed on one side of the lid rotating shaft 46, which is far away from the packing pedal 14, and extends out of the can body 10 and faces one side of the bag changing pedal 17, a lid shaft sleeve 45 is fixedly sleeved outside the lid rotating shaft 46, and the lid shaft sleeve 45 is fixedly connected with the lid 11 to rotate and cover the garbage cavity 16 to prevent odor from escaping.
Further combine attached figure 2, attached figure 3, uncap pedal groove 33 has been seted up to ladle body 10 front side below, uncap pivot 32 is installed to uncap pedal inslot 33 internal rotation, uncap pivot 32 external fixation cover is equipped with uncap axle sleeve 13, install uncap pedal wind spring 31 in the uncap axle sleeve 13, uncap pedal 12 and uncap axle sleeve 13 fixed connection, uncap pivot 32 keeps away from packing footboard 14 one side and stretches out outside ladle body 10 and towards uncap pedal 12 one side and set firmly semicurved footboard axle pull ring 71, footboard axle pull ring 71 is connected with lower pull ring 72 towards packing footboard 14 one side, the vertical direction in lower pull ring 72 top has set firmly uncap pole 73, uncap pole 73 upper end has set firmly pull ring 75, it is connected with the footboard axle pull ring 71 that sets up in bung pivot 46 one side to go up pull ring 75 and be close to packing footboard 14 one side.
Further, with reference to fig. 3 and 4, a transmission gas cavity 34 is formed in the lower bottom surface of the garbage cavity 16, an expansion rod moving groove 69 is formed in the barrel 10 below the transmission gas cavity 34, the middle of the transmission gas cavity 34 penetrates the barrel 10 upwards, a weight measuring plate 35 is slidably mounted on a penetrating portion, a platform is fixedly mounted on the upper end surface of the weight measuring plate 35, weight measuring plate return springs 42 are fixedly mounted on two sides of the lower end surface of the platform respectively, a solid area expansion sinking rod 68 is fixedly mounted on the lower end surface of the weight measuring plate 35, and the lower end of the solid area expansion sinking rod 68 extends out of the transmission gas cavity 34 to form a T-shaped fork and can slide up and down in the expansion rod moving groove 69.
Further, with reference to fig. 3 and 4, two sides of the inner wall of the barrel 10 are respectively provided with a partitioning device limit 43, each partitioning device limit 43 is internally provided with a partitioning device power rod 36, the lower end of each partitioning device power rod 36 is respectively arranged in the transmission gas cavity 34, the upper end of each partitioning device power rod 36 is respectively sleeved with a partitioning device height return spring 37, the upper ends of the two partitioning device power rods 36 close to each other are respectively and fixedly provided with a leakage-proof plate 44, the two partitioning device expansion slide rods 70 are respectively and fixedly arranged on the two sides of the two leakage-proof plates 44 close to each other along the horizontal direction, a partitioning device 40 is slidably sleeved outside the partitioning device expansion slide rod 70 on the same side, a partitioning device expansion slide cavity 41 is respectively arranged on the upper side and the lower side of the inside of the partitioning device 40, a corresponding partitioning device expansion slide rod 70 is respectively arranged in each partitioning device expansion slide cavity 41, and the tail end of each partitioning device expansion slide rod 70 is respectively and fixedly connected with a partitioning device clamping return spring 79 in the partitioning device 40, the two dividers 40 have a liquid leakage hole 74 at the end contacting each other along the vertical direction.
Further, with reference to fig. 3 and fig. 6, two partitioning devices 40 are respectively and symmetrically installed inside and above one side close to each other with heaters 61, two heaters 61 at the same height are respectively and symmetrically installed inside and below one side close to each other with heat sealing strips 62 for conducting heat to seal the garbage bag, a current sensor 63 is installed between two heaters 61 at the same side, two current sensors 63 are respectively and adjacently installed with conductive strips 64 for detecting whether plastic bags are placed or not, sliding grooves are formed in the partitioning devices 40 between the current sensors 63 and the heaters 61 below, cutting knives 65 are respectively arranged in the sliding grooves, cutting metal posts 66 are respectively and fixedly installed on one sides of two cutting knives 65 far away from each other, cutting knife springs 67 are respectively sleeved outside each cutting metal post 66, and an electromagnet 76 is respectively installed at one end of two cutting metal posts 66 far away from each other for controlling the movement of the cutting knives 65, the heater 61, the current sensor 63 and the cutting metal column 66 are electrically connected to the packing pedal 14.
Further referring to fig. 3, the two partitioning device limiting parts 43 are respectively provided with a transmission cavity 21 in the barrel 10 at the side away from each other, a wire clamping device 54 is respectively installed in the side of each transmission cavity 21 close to the partitioning device power rod 36, a twin wire winding rotating wheel shaft 22 is respectively fixed in each transmission cavity 21, a twin wire winding rotating wheel 23 is respectively sleeved outside each twin wire winding rotating wheel shaft 22, a winding transmission master gear 24 is respectively fixed at one side of each twin wire winding rotating wheel 23, a winding driven shaft 27 is respectively fixed in the transmission cavity 21 above each winding transmission master gear 24 in the horizontal direction, a winding driven shaft sleeve 26 is respectively fixed outside each winding driven shaft 27, a winding transmission slave gear 25 is respectively fixed at one side of each winding driven shaft sleeve 26 close to the winding transmission master gear 24, and each winding transmission slave gear 25 is respectively engaged with the winding transmission master gear 24 below.
Further referring to fig. 3, 4 and 5, a bag-changing pedal groove 77 is formed in the surface of the barrel body 10 below the transmission cavity 21, a bag-changing pedal shaft 20 is fixedly arranged in the bag-changing pedal groove 77 in the horizontal direction, a bag-changing pedal shaft sleeve 18 is rotatably sleeved outside the bag-changing pedal shaft 20, a bag-changing pedal coil spring 19 is arranged in the bag-changing pedal shaft sleeve 18, the bag-changing pedal shaft sleeve 18 is fixedly connected with a bag-changing pedal 17, a bag-changing pull rope 78 is wound outside the bag-changing pedal shaft sleeve 18, the bag-changing pull rope 78 is respectively and fixedly connected with the two-wire winding rotating wheels 23 on the two sides above the bag-changing pedal shaft sleeve 18, a wire-clamping pull rope 39 is further wound outside the two-wire winding rotating wheels 23, each wire-clamping pull rope 39 is respectively and fixedly connected with the wire clamping device 54 on the same side, a zoning device wire winding device 55 is respectively arranged inside each wire clamping device 54, a zoning device wire winding device 57 is wound on the surface of the zoning device wire winding device 55, the zoning device wire pulling rope 57 extends out of the zoning device wire clamping device 54 and penetrates through the barrel body 10, The power rod 36 and the leakage-proof plate 44 of the partitioning device are fixedly connected with the partitioning device 40 on the same side, an inclined opening is formed in the front side of the wire clamp 54, a lifting column 58 is arranged in the inclined opening, a linkage rod 60 which slides up and down is fixedly arranged on the upper end face of the lifting column 58, a lifting column return spring 59 is sleeved outside the linkage rod 60, the linkage rod 60 is Contraband-shaped, a wire clamp 56 is fixedly arranged below the other end of the linkage rod 60, and the lower end face of the wire clamp 56 is rough and clamps a partition device pull rope 57.
Further in conjunction with figure 3 of the accompanying drawings, fig. 7, a bag opening pulling rope 28 is respectively wound around the outside of each winding driven shaft sleeve 26, a wire steering shaft 29 is respectively arranged above each bag opening pulling rope 28, the bag opening pulling rope 28 bypasses the wire steering shaft 29, a slidable bag opening expansion rod 30 is fixedly arranged in the horizontal direction of the tail end of the wire steering shaft 29, each bag opening expansion rod 30 respectively extends into the garbage chamber 16, a bag opening connecting block 50 is fixedly arranged at the tail end of the garbage chamber 16, each bag opening connecting block 50 is fixedly connected with a bag opening expander 47 above the bag opening connecting block 50, an expansion reset sliding block 53 is respectively fixedly arranged on the lower end face of each bag opening connecting block 50, a solid area expansion ejection rod 51 is respectively sleeved outside each expansion reset sliding block 53, each solid area expansion ejection rod 51 is fixedly connected with an expansion rod movable groove 69 inside the garbage chamber 10 and below the garbage chamber 10 near one side of the garbage chamber 10, and a bag opening expansion reset spring 52 is respectively fixedly connected with one side of each expansion reset sliding block 53 far away from the inner wall of the garbage chamber 10.
Principle of operation
The bag changing pedal 17 arranged behind the barrel body 10 is stepped, at the moment, the bag changing pull rope 78 is loosened due to the clockwise rotation of the bag changing pedal 17, the upper end of the bag changing pull rope 78 is connected with the double-wire winding wheel 23, so the loosened bag changing pull rope 78 is pulled by the clockwise rotation of the double-wire winding wheel 23, at the moment, the double-wire winding wheel 23 winds up the wire clamping pull rope 39 wound on the surface due to the clockwise rotation of the double-wire winding wheel 23, so the wire clamping device 54 is pulled back, the wire clamp 56 is closed due to the fact that the garbage barrel is in an initial state before use, the zoning device pull rope 57 cannot move, so the wire clamping device 54 is pulled back to enable the zoning device pull ropes 57 to move back together, and the zoning devices 40 on two sides are opened;
the dual-wire winding wheel 23 rotates clockwise, so that the winding transmission main gear 24 fixedly connected with the dual-wire winding wheel 23 rotates, the winding transmission main gear 24 rotates to drive the winding transmission driven gear 25 meshed with the winding transmission main gear to rotate, the winding transmission driven gear 25 rotates to drive the winding driven shaft sleeve 26 fixedly connected with the winding transmission driven gear to rotate anticlockwise, so that the bag opening stay cord 28 is loosened, the bag opening stay cord 28 is loosened to enable the bag opening expansion rod 30 not to be subjected to tension, the bag opening connecting block 50 fixedly connected with the bag opening expansion rod 30 is not subjected to tension, the bag opening expansion reset spring 52 on the lower portion pulls the expansion reset sliding block 53 to enable the two bag openings 47 on the upper portion to be considered mutually, and a ring formed between the two bag openings 47 is reduced so as to conveniently sleeve a garbage bag;
when a garbage bag is sleeved, a bag sleeving chamfer 48 on the outer ring of the bag opening expander 47 assists the sleeving of the garbage bag opening, after the garbage bag opening is sleeved, the garbage bag can be clamped in an auxiliary mode under the action of the bag sleeving chamfer 48 on the lower portion, and the garbage bag body penetrates between the two subarears 40 which are opened on the lower portion;
when the garbage bag is placed, the foot of the bag changing pedal 17 is released, at this time, the bag changing pedal sleeve 18 is reset under the action of the bag changing pedal coil spring 19 in the bag changing pedal 17, the bag changing pedal sleeve 18 is reset to pull the bag changing pull rope 78 wound on the outer side, so that the double-wire winding wheel 23 connected with the bag changing pull rope 78 rotates anticlockwise to loosen the wire clamping pull rope 39, the partitioner 40 is not pulled and is drawn towards the middle under the action of the partitioner clamping reset spring 79, the winding transmission main gear 24 fixedly connected with the double-wire winding wheel 23 rotates anticlockwise together with the double-wire winding wheel 23, so that the winding transmission driven gear 25 above the winding transmission main gear 24 rotates the double-wire and the winding driven shaft sleeve 26 fixedly connected with the double-wire winding wheel 23 clockwise to rotate the bag opening pull rope 28 clockwise, and therefore the two bag opening expanders 47 above are pulled, the ring formed between the bag mouth expanders 47 expands to open the garbage bag mouth;
when the garbage needs to be thrown into the garbage can, the cover opening pedal 12 arranged on the front side of the can body 10 is stepped, at the moment, the cover opening pedal 12 is pressed down to drive the cover opening shaft sleeve 13 to rotate, the rotation of the cover opening shaft sleeve 13 drives the inner cover opening pedal 12 to rotate, so that the cover opening pedal 12 extends out of the can body 10 to rotate, the pedal shaft pull ring 71 inclines downwards to pull the lower pull ring 72 to move downwards, at the moment, the cover opening rod 73 and the upper pull ring 75 sink integrally due to the downward movement of the lower pull ring 72, the sinking of the upper pull ring 75 pulls the pull ring arranged on the surface of the can cover rotating shaft 46 to enable the can cover rotating shaft 46 to rotate clockwise, and the can cover rotating shaft 46 drives the outer can cover shaft sleeve 45 to rotate so as to lift the can cover 11;
after the garbage falls into the garbage bag, the solid garbage is blocked above by the partitioning device 40, and the liquid flows into the part clamped below the partitioning device 40 through the hole formed by the liquid leakage holes 74 formed at the side, close to each other, of the two partitioning devices 40;
when the liquid in the liquid collecting area below the subarea 40 gradually increases, the weight plate 35 below is pressed to sink, at the moment, the weight plate 35 sinks, so that the subarea power rods 36 on two sides are extruded and lifted by the gas in the transmission gas cavity 34, so that the anti-leakage plate 44 fixedly connected with the subarea power rods 36 is lifted, therefore, the subareas 40 on two sides are lifted together under the action of the anti-leakage plate 44, so that the subarea 40 is lifted to be a liquid area release space below for collecting more liquid, during the lifting process of the subarea power rods 36, the subarea expansion pull rope 38 is fixedly connected with one side of the subarea 40, so that the subarea expansion pull rope 38 is lifted close to one end of the subarea 40, at the moment, the subarea expansion pull rope 38 lifts the lifting column 58 inside the wire clamp 54 because the subarea expansion pull rope 54 on the other end of the subarea expansion pull rope 38 is immovable, the lifting column 58 lifts the linkage rod 60, so that the wire clamp 56 on the other end of the linkage rod 60 is lifted, at this point, the wire clip 56 no longer clamps the indexer expansion cord 38 so that the excess indexer expansion cord 38 wound in the indexer cord reel 55 is pulled out so that the indexer 40 can continue to be raised;
when the liquid collecting area below the partitioning device 40 is not provided with liquid or is low in liquid, the solid garbage above the partitioning device 40 is increased to generate pressure on the partitioning device 40 to enable the partitioning device to descend to a certain height so as to increase the capacity of the solid area, in the descending process, the power rod 36 of the partitioning device descends to enable the weighing plate 35 to rise under the action of gas in the transmission gas cavity 34, and at the moment, the solid area expanding and sinking rod 68 fixedly connected with the weighing plate 35 rises to push and draw the two bag mouth expanders 47 above the weighing plate to push and draw the garbage bags in the liquid collecting area below the weighing plate so as to expand the solid area above the weighing plate;
when needing to take out the disposal bag, trample the packing footboard 14 that sets up in ladle body 10 one side, because the packing footboard 14 is pressed down consequently the signaling starts the current sensor 63 that sets up in subregion ware 40 and sends the undercurrent and judge this moment, if the conducting strip 64 electric current between two current sensor 63 is not expert then start the heating element 61 that sets up in upper and lower both sides and heat through heat-seal strip 62 respectively and carry out the heat-seal to the disposal bag of this department, a period of time later electro-magnet 76 cuts off the power failure and loses magnetism, two cutting knife 65 pop out and cut apart the rubbish area of this department under the effect of cutting knife spring 67 respectively, if conducting strip 64 circular telegram between the current sensor 63 then do not start all the other motors and report the mistake.
The above description is only an embodiment of the present invention, and not intended to limit the scope of the present invention, and all modifications of equivalent structures and equivalent processes, which are made by using the contents of the present specification and the accompanying drawings, or directly or indirectly applied to other related technical fields, are included in the scope of the present invention.

Claims (9)

1. The utility model provides an intelligence solid-liquid separation garbage bin, includes ladle body (10), its characterized in that, rotatable bung (11) is installed to ladle body (10) top, cover opening pedal (12) are installed to ladle body (10) front side lower extreme, bag changing pedal (17) are installed to ladle body (10) rear side lower extreme, packing footboard (14) are installed to ladle body (10) one side lower extreme, rubbish chamber (16) have been seted up in ladle body (10), the symmetry is provided with two sack expanders (47) in rubbish chamber (16), every bagging chamfer (48), every have been seted up respectively in sack expander (47) outside bagging chamfer (48) below has seted up bagging clamp mouth (49) supplementary disposal bag centre gripping respectively on sack expander (47) surface.
2. The intelligent solid-liquid separation trash can of claim 1, wherein a can cover rotating shaft (46) is rotatably arranged on one side, close to the bag changing pedal (17), of the upper end surface of the can body (10), one side, far away from the packaging pedal (14), of the can cover rotating shaft (46) extends out of the can body (10), a pedal shaft pull ring (71) is fixedly arranged on one side, facing the bag changing pedal (17), of the can cover rotating shaft (46), a can cover shaft sleeve (45) is fixedly sleeved outside the can cover rotating shaft (46), and the can cover shaft sleeve (45) is fixedly connected with the can cover (11) to rotate and cover the trash cavity (16) to prevent odor from escaping.
3. The intelligent solid-liquid separation trash can of claim 1, wherein an uncovering pedal groove (33) is formed below the front side of the can body (10), an uncovering rotating shaft (32) is rotatably mounted in the uncovering pedal groove (33), an uncovering shaft sleeve (13) is fixedly sleeved outside the uncovering rotating shaft (32), an uncovering pedal coil spring (31) is mounted in the uncovering shaft sleeve (13), the uncovering pedal (12) is fixedly connected with the uncovering shaft sleeve (13), one side, away from a packing pedal (14), of the uncovering rotating shaft (32) extends out of the can body (10) and a semi-arc-shaped pedal shaft pull ring (71) is fixedly arranged towards one side of the uncovering pedal (12), a lower pull ring (72) is connected to one side of the pedal shaft pull ring (71) towards the packing pedal (14), an uncovering pull ring (73) is fixedly arranged in the vertical direction above the lower pull ring (72), an upper end of the uncovering lever (73) is fixedly arranged with an upper pull ring (75), one side of the upper pull ring (75) close to the packing pedal (14) is connected with a pedal shaft pull ring (71) arranged on one side of the barrel cover rotating shaft (46).
4. The intelligent solid-liquid separation trash can of claim 1, wherein a transmission gas cavity (34) is formed in the lower bottom surface of the trash cavity (16), an expansion rod movable groove (69) is formed in the trash can body (10) below the transmission gas cavity (34), the middle of the transmission gas cavity (34) penetrates through the trash can body (10) upwards, a weight measuring plate (35) is slidably mounted on the penetrating portion, a platform is fixedly mounted on the upper end surface of the weight measuring plate (35), weight measuring plate return springs (42) are fixedly mounted on two sides of the lower end surface of the platform respectively, a solid area expansion sinking rod (68) is fixedly mounted on the lower end surface of the weight measuring plate (35), and the lower end of the solid area expansion sinking rod (68) extends out of the transmission gas cavity (34) to form a T-shaped fork and can slide up and down in the expansion rod movable groove (69).
5. The intelligent solid-liquid separation trash can of claim 1, wherein two sides of the inner wall of the can body (10) are respectively provided with a partitioning device limit (43), each partitioning device limit (43) is internally provided with a partitioning device power rod (36), the lower end of each partitioning device power rod (36) is respectively arranged in the transmission gas cavity (34), the upper end of each partitioning device power rod (36) is respectively sleeved with a partitioning device height return spring (37), the upper ends of the two partitioning device power rods (36) close to each other are respectively and fixedly provided with a leakage-proof plate (44), the two partitioning device expansion sliding rods (70) close to each other are respectively and fixedly provided with two partitioning device expansion sliding rods (70) along the horizontal direction, the partitioning device expansion sliding rods (70) on the same side are respectively and slidably sleeved with a partitioning device (40), the upper side and the lower side of the partitioning device (40) are respectively provided with a partitioning device expansion sliding cavity (41), each partitioning device expansion sliding cavity (41) is internally provided with a corresponding partitioning device expansion sliding rod (70), the tail end of each partitioning device expansion sliding rod (70) is fixedly connected with a partitioning device clamping return spring (79) in each partitioning device (40), and one end, in mutual contact, of each partitioning device (40) is provided with a liquid leakage hole (74) in the vertical direction.
6. The intelligent solid-liquid separation trash can of claim 5, wherein two dividers (40) are provided with heaters (61) symmetrically at the upper and lower parts of the inner part close to one side, two heaters (61) at the same height are provided with heat sealing strips (62) respectively at the side close to one side for conducting heat to seal the trash bag, a current sensor (63) is provided between the two heaters (61) at the same side, two current sensors (63) are provided with conducting strips (64) respectively at the side close to one side for detecting whether a plastic bag is placed, chutes are formed in the dividers (40) between the current sensor (63) and the lower heater (61), each chute is provided with a cutting knife (65), and the cutting metal columns (66) are fixedly arranged at the side far away from one side of the two cutting knives (65), every cutting metal post (66) is equipped with cutting knife spring (67) outward respectively the cover, two cutting metal post (66) keep away from one end each other and install an electro-magnet (76) respectively and be used for controlling cutting knife (65) and remove, heater (61) and current sensor (63), cutting metal post (66) respectively with packing footboard (14) electric connection.
7. The intelligent solid-liquid separation trash can of claim 6, wherein one side of each of the two partitioning device stoppers (43) away from each other is provided with a transmission cavity (21) in the can body (10), one side of each of the transmission cavities (21) close to the partitioning device power rod (36) is provided with a wire clamper (54), one side of each of the two-wire winding rotating wheels (23) is provided with a two-wire winding rotating wheel shaft (22), one side of each of the two-wire winding rotating wheels (23) is provided with a winding transmission master gear (24), one winding driven shaft (27) is horizontally arranged in the transmission cavity (21) above each of the winding transmission master gears (24), and one winding driven shaft sleeve (26) is fixedly sleeved outside each of the winding driven shafts (27), and one side of each winding driven shaft sleeve (26) close to the winding transmission main gear (24) is fixedly provided with a winding transmission driven gear (25), and each winding transmission driven gear (25) is meshed with the winding transmission main gear (24) below.
8. The intelligent solid-liquid separation trash can of claim 7, wherein a bag-changing pedal groove (77) is formed in the surface of the can body (10) below the transmission cavity (21), a bag-changing pedal shaft (20) is fixedly arranged in the bag-changing pedal groove (77) in the horizontal direction, a bag-changing pedal shaft sleeve (18) is rotatably sleeved outside the bag-changing pedal shaft (20), a bag-changing pedal coil spring (19) is arranged in the bag-changing pedal shaft sleeve (18), the bag-changing pedal shaft sleeve (18) is fixedly connected with a bag-changing pedal (17), a bag-changing pull rope (78) is wound outside the bag-changing pedal shaft sleeve (18), the bag-changing pull rope (78) is respectively and fixedly connected with the winding double-wire rotating wheels (23) on the two sides above, a yarn-clamping-wire pulling rope (39) is further wound outside the double-wire winding rotating wheels (23), and each yarn-clamping-pulling rope (39) is respectively and fixedly connected with a yarn clamping device (54) on the same side, a zoning device pull rope winder (55) is installed in each wire clamp (54), a zoning device pull rope (57) is wound on the surface of each zoning device pull rope winder (55), each zoning device pull rope (57) extends out of each wire clamp (54), penetrates through the barrel body (10), a zoning device power rod (36) and the leakage-proof plate (44), and is fixedly connected with a zoning device (40) on the same side, an inclined opening is formed in the front side of each wire clamp (54), a lifting column (58) is arranged in each inclined opening, a linkage rod (60) which slides up and down is fixedly arranged on the upper end face of each lifting column (58), a lifting column reset spring (59) is sleeved outside each linkage rod (60), each linkage rod (60) is Contraband-shaped, a wire clamp (56) is fixedly arranged below the other end of each wire clamp (56), and the lower end face of each wire clamp (56) is rough and clamps the zoning device pull ropes (57).
9. The intelligent solid-liquid separation trash can of claim 7, characterized in that, every driven shaft sleeve (26) of wire winding is wound respectively outward and is had sack stay cord (28), every sack stay cord (28) top is provided with wired steering spindle (29) respectively, sack stay cord (28) are walked around line steering spindle (29) and terminal horizontal direction and have set firmly slidable sack expansion pole (30), every sack expansion pole (30) stretch into respectively in rubbish chamber (16) and the end has set firmly sack connecting block (50), every sack connecting block (50) respectively with sack expander (47) fixed connection of top, every terminal surface has set firmly expansion slider (53) respectively under sack connecting block (50), every expansion slider (53) are outer are respectively the cover and are equipped with solid area expansion ejector pin (51), every solid area expansion ejector pin (51) are close to that ladle body (10) one side stretches into inside and with ladle body (10) one side and with below The expansion rod movable grooves (69) are fixedly connected, and a bag opening expansion return spring (52) is fixedly connected to one side, far away from the inner wall of the barrel body (10), of each expansion return slide block (53).
CN202111517621.3A 2021-12-13 2021-12-13 Intelligent solid-liquid separation garbage can Active CN114379956B (en)

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CN109368090A (en) * 2018-12-05 2019-02-22 陕西理工大学 A kind of tea grounds intelligence separating of garbage bucket
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