Intelligent packing garbage storage device

CN224715645UActive Publication Date: 2026-09-04DONGGUAN TANS BABY PROD CO LTD
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Patent Information

Application Number
CN202521853661.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-29
Publication Date
2026-09-04
Estimated Expiration
2035-08-29

AI Technical Summary

Technical Problem

[0002]在日常生活中,传统的垃圾收纳装置功能较为单一

Benefits of technology

[0015]本实用新型的有益效果:通过盖体控制放置腔上端启闭,减少异味逸出;套袋结构自动将垃圾袋套设于收纳腔,省去人工套袋步骤,并且内置垃圾袋更换方便;封口机构对垃圾袋热烫封口及热溶切断,使异味垃圾打包成独立包装,热烫封口,防止异味泄漏,婴儿护理、老人护理、厨房、宠物等领域产生的异味垃圾皆可使用;自动底盖承载垃圾袋并控制已打包异味垃圾掉落收纳腔,实现垃圾自动收纳,使打包后的异味垃圾集中,便于一次性处理,使用大容量桶体可以较长时间清理一次。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to garbage treatment technical field especially, more particularly to a kind of garbage storage device of intelligent packing, including bucket body and machine core;Bucket body inside is provided with storage cavity;Machine core is set in the upper of storage cavity;Machine core includes shell, lid, bag structure, sealing mechanism and automatic bottom cover.The utility model is through lid control to place the cavity upper end opening and closing, reduce peculiar smell escape;Bag structure automatically sets garbage bag in storage cavity, saves artificial bagging step, and built-in garbage bag is more convenient to replace;Sealing mechanism is to garbage bag hot sealing and heat-dissolving cut-off, so that peculiar smell garbage is packed into independent package, hot sealing, prevent peculiar smell leakage, baby care, old people care, kitchen, pet and so on The peculiar smell garbage produced in the field can be used;Automatic bottom cover carries garbage bag and controls the peculiar smell garbage that has been packed to drop storage cavity, realizes garbage automatic storage, so that the peculiar smell garbage after packing is concentrated, it is convenient to handle once, use large-capacity bucket body can clean once for a long time.
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Description

Technical Field

[0001] This utility model relates to the field of waste treatment technology, and in particular to an intelligent packaging waste collection device. Background Technology

[0002] In daily life, traditional garbage collection devices have relatively limited functions. When dealing with smelly garbage, people often need to manually tie the garbage bags, which is not only inconvenient to operate, but also allows odors to easily spread into the surrounding environment during the tying process, affecting air quality and user experience.

[0003] Furthermore, each time garbage bags are replaced, new garbage bags need to be manually placed on the garbage bins, a cumbersome process. Therefore, how to design a garbage collection device that can automatically pack and bag odorous waste has become an urgent technical problem to be solved, and thus, improvement is necessary. Utility Model Content

[0004] The purpose of this invention is to address the shortcomings of existing technologies by providing an intelligent garbage collection device. The device controls the opening and closing of the upper part of the storage chamber via a cover, reducing odor escape. The bagging structure automatically places the garbage bag into the storage chamber, eliminating the need for manual bagging and facilitating bag replacement. The sealing mechanism heat-seals and heat-melts the garbage bag, packaging odorous waste into individual packages. The heat-sealing prevents odor leakage. This device can be used for odorous waste from baby care, elderly care, kitchens, pets, and other areas. An automatic bottom cover holds the garbage bag and controls the packaged odorous waste from falling into the storage chamber, achieving automatic garbage collection. This concentrates the packaged odorous waste for easy one-time processing, and the large-capacity container allows for longer intervals between cleanings.

[0005] To achieve the above objectives, this utility model provides an intelligent packaging waste collection device, comprising a bin and a mechanism. The inside of the barrel is provided with a storage cavity for collecting and packaging odorous waste; The mechanism is positioned above the storage cavity; The mechanism includes a housing, a cover, a bagging structure, a sealing mechanism, and an automatic bottom cover; The housing has a placement cavity located above the storage cavity, which provides space for temporarily storing odorous waste. The cover is disposed on the upper part of the housing and is used to control the opening and closing of the upper end of the placement cavity; The bag-covering structure is located inside the cover body and is used to cover the garbage bag inside the storage cavity; The sealing mechanism is slidably disposed in the placement cavity and is used for heat sealing and heat melting cutting of the garbage bag; the automatic bottom cover is disposed at the lower end of the placement cavity and is used to support the garbage bag and control the packaged odorous garbage from falling into the storage cavity.

[0006] Preferably, the bagging structure is provided with a bag storage cavity for storing garbage bags. A guide groove is provided on one side of the storage bag cavity, and the guide groove is connected to the placement cavity; The cover is provided with a garbage placement opening that communicates with the upper end of the placement cavity. A slot is provided inside the garbage placement opening, and the bag structure is locked in the slot.

[0007] Preferably, in this embodiment, the cover is provided with an upper cover, a transmission sector gear, a drive gear, and a flip-top driver. The upper cover is rotatably connected to the cover body and is used to control the opening and closing of the garbage placement opening; The transmission sector gear is fixed to one end of the upper cover, and the driving gear meshes with the transmission sector gear; The flip-top driver is fixed to the cover and is used to drive the drive gear to rotate.

[0008] Preferably, the sealing mechanism includes a heating slide, an abutment slider, and a sealing driver; The heating slide and the abutting slider are slidably disposed on the inner side of the housing, and the sealing driver is fixed to the housing and simultaneously drives the heating slide and the abutting slider to move closer or further apart from each other.

[0009] Preferably, a middle frame is provided inside the housing, and a guide rod is provided inside the middle frame. The heating slide and the abutting slider are both slidably connected to the guide rod. The heating slider is provided with multiple heating wires, and a heat-insulating abutment piece is provided at the end of the abutting slider facing the heating wires. The sealing driver is equipped with a touch control switch.

[0010] Preferably, both the heating slider and the abutting slider are rotatably equipped with exhaust and extrusion plates. The two exhaust extrusion plates are inclined relative to each other to compress the gas inside the garbage bag.

[0011] Preferably, the automatic bottom cover includes a first half-cover, a second half-cover, and a bottom cover actuator; The first half-cover and the second half-cover are rotatably mounted on the housing to support the garbage bag and control the packaged odorous garbage from falling into the storage cavity; The bottom cover driver is fixed to the housing and is used to simultaneously drive the first half cover and the second half cover to move closer or further apart from each other.

[0012] Preferably, a lower frame is provided inside the housing, and the lower frame is located at the lower end of the placement cavity; The lower frame is provided with a trash drop-out port that communicates with the storage cavity; The first half-cover and the second half-cover are rotatably mounted relative to each other on the lower frame; The garbage dump opening is provided with an extended edging, and the first half-cover and the second half-cover are both provided with a wrapping edge corresponding to the extended edging.

[0013] Preferably, the storage cavity is provided with ribs, and the ribs are provided with folding handles; The movement is positioned above the storage cavity, and the bottom of the movement abuts against the folded handle in its folded state.

[0014] Preferably, the upper part of the barrel is provided with a clearance groove, which is used to expose the movement.

[0015] The beneficial effects of this utility model are as follows: the opening and closing of the upper end of the placement cavity is controlled by the cover, reducing odor escape; the bagging structure automatically places the garbage bag into the storage cavity, eliminating the need for manual bagging, and the built-in garbage bag is easy to replace; the sealing mechanism heat-seals and heat-melts the garbage bag, making the odorous garbage into an independent package, and the heat-sealing prevents odor leakage. It can be used for odorous garbage generated in fields such as baby care, elderly care, kitchen, and pets; the automatic bottom cover carries the garbage bag and controls the packaged odorous garbage from falling into the storage cavity, realizing automatic garbage collection, making the packaged odorous garbage concentrated, easy to process at one time, and the large-capacity bin can be cleaned more frequently. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the exploded structure of this utility model.

[0017] Figure 2 This is a cross-sectional structural diagram of the cover of this utility model.

[0018] Figure 3 This is an exploded structural diagram of the shell of this utility model.

[0019] Figure 4 This is a schematic diagram of the sealing mechanism of this utility model.

[0020] The reference numerals in the figures include: 1. Barrel body; 11. Storage cavity; 12. Ribs; 13. Folding handle; 14. Clearance groove; 2. Movement; 21. Housing; 211. Storage cavity; 212. Middle frame; 213. Guide rod; 214. Lower frame; 215. Waste disposal opening; 216. Extended edging; 22. Cover; 221. Trash hopper; 222. Slot; 223. Top cover; 224. Drive sector gear; 225. Drive gear; 226. Flip-top actuator; 23. Bag-covering structure; 231. Storage cavity; 232. Guide groove; 24. Sealing mechanism; 241. Heating slide; 242. Abutting slider; 243. Sealing driver; 244. Heating wire; 245. Heat insulation abutting plate; 246. Touch control switch; 247. Exhaust extrusion plate; 25. Automatic bottom cover; 251. First half cover; 252. Second half cover; 253. Bottom cover actuator; 254. Enclosing edge; 3. Synchronous belt pulley drive module; 31. Active bevel gear; 32. Transmission bevel gear; 33. Linkage bevel gear rod; 34. First synchronous belt pulley group; 35. Second synchronous belt pulley group. Detailed Implementation

[0021] The present invention will now be described in detail with reference to the accompanying drawings.

[0022] like Figures 1 to 4 As shown, the present invention provides an intelligent packaging waste collection device, comprising a bin 1 and a mechanism 2.

[0023] The bin 1 has an internal storage cavity 11 for collecting and packing odorous waste; this allows the packaged odorous waste to be concentrated in the storage cavity 11 for easy one-time disposal. In actual use, a large-capacity bin 1 can be used, allowing for cleaning at longer intervals.

[0024] The mechanism 2 is positioned above the storage cavity 11 and is used to pack odorous waste; it seals the odorous waste to prevent odors from spreading into the surrounding environment and affecting air quality and user experience. Furthermore, the mechanism 2 is detachable from the container 1, facilitating the removal of the packed odorous waste and cleaning of the storage cavity 11.

[0025] The mechanism 2 includes a housing 21, a cover 22, a bagging structure 23, a sealing mechanism 24, and an automatic bottom cover 25.

[0026] The housing 21 has a placement cavity 211 inside, which is located above the storage cavity 11 and is used to provide space for temporarily storing odorous waste. The placement cavity 211 creates an independent space for temporarily storing odorous waste and also provides space for subsequent packaging operations.

[0027] The cover 22 is disposed on the upper part of the housing 21 and is used to control the opening and closing of the upper end of the placement cavity 211. By controlling the opening and closing of the upper end of the placement cavity 211 through the cover 22, it is convenient to dispose of garbage, and when closed, it can effectively reduce the escape of odor.

[0028] The bag-covering structure 23 is disposed inside the cover 22 and is used to cover the garbage bag inside the storage cavity 11. The bag-covering structure 23 can automatically cover the garbage bag inside the storage cavity 11, eliminating the tedious step of manual bag covering. In addition, the bag-covering structure 23 has a garbage bag inside for easy replacement.

[0029] The sealing mechanism 24 is slidably disposed within the placement cavity 211, used for heat sealing and heat-sealing of the garbage bags. By moving within the placement cavity 211 and heat-sealing the garbage bags, the odorous waste is packaged into a single unit, and the heat-sealing process separates the packaged odorous waste from unused garbage bags. This method is particularly suitable for use with odorous waste generated in areas such as baby care, elderly care, kitchens, and pets. Each piece of odorous waste is individually packaged and heat-sealed to prevent odor leakage. For example, in baby care, each diaper can be individually packaged and heat-sealed to prevent odor overflow.

[0030] The automatic bottom cover 25 is disposed at the lower end of the placement cavity 211, and is used to hold the garbage bag and control the packaged odorous garbage from falling into the storage cavity 11. As a component for holding and controlling, the automatic bottom cover 25 holds the garbage bag and controls the packaged odorous garbage from falling into the storage cavity 11, thereby realizing automatic garbage collection.

[0031] During operation, the cover 22 is in the open state, the bottom of the garbage bag in the bagging structure 23 is at the top of the placement cavity 211, the automatic bottom cover 25 is in the closed state, and the sealing mechanism 24 is located in the placement cavity 211 between the garbage bag and the garbage bag, waiting for the garbage to be packaged.

[0032] When a user disposes of smelly waste, the weight of the waste pulls the waste bag inside the bagging structure 23, automatically placing it into the placement cavity 211. The automatic bottom cover 25 supports the bottom of the waste bag, and the smelly waste is temporarily stored in the placement cavity 211. The user then closes the cover 22. After the cover 22 is closed, it effectively reduces the odor from the waste in the placement cavity 211 from escaping into the surrounding environment, keeping the air relatively fresh.

[0033] One method involves the sealing mechanism 24 activating when garbage needs to be packaged. The sealing mechanism 24 slides within the placement chamber 211 to hold the garbage bag and uses heat-sealing technology to seal the garbage bag, thus sealing the odorous garbage inside to form packaged odorous garbage.

[0034] After the packaging is completed, the automatic bottom cover 25 opens. Since the automatic bottom cover 25 originally supported the bottom of the garbage bag, after opening, the packaged odorous garbage is suspended in the storage cavity 11 inside the bin 1 under the action of gravity. The sealing mechanism 24 then heat-melts and cuts the garbage bag, and the packaged odorous garbage is separated from the unused garbage bag above under the action of gravity, forming an independent garbage bag that falls into the storage cavity 11.

[0035] After the packaged odorous waste is placed in the collection chamber 11, the automatic bottom cover 25 closes, and a new garbage bag is placed on top. The sealing mechanism 24 resets, ready for the next waste packaging operation. At the same time, the bagging structure 23 provides a new garbage bag for subsequent waste disposal, eliminating the need for manual bagging.

[0036] Another method is to use an automatic bottom cover 25 to heat-seal and pack the garbage bags without heat-melting and cutting them. After multiple garbage packing operations, the packed garbage is stored in a string in the storage cavity 11 inside the bin 1. The string-like garbage packs are easy to remove from the storage cavity 11 at once.

[0037] like Figure 2 As shown, the bagging structure 23 of this embodiment is provided with a storage cavity 231 for storing garbage bags, which provides a specific storage space for the garbage bags. This facilitates the storage and management of garbage bags, allowing them to be quickly obtained when needed, thus improving ease of use.

[0038] A guide groove 232 is provided on one side of the bag storage cavity 231, and the guide groove 232 communicates with the placement cavity 211. The guide groove 232 establishes a connection channel between the bag storage cavity 231 and the placement cavity 211, and the guide groove 232 guides the garbage bag in the bag storage cavity 231 to smoothly enter the placement cavity 211. This facilitates the transfer of the garbage bag from the bag storage cavity 231 to the placement cavity 211. The garbage bag in the bag storage cavity 231 is a long, continuous cylindrical garbage bag, which is sealed by the sealing mechanism 24 or manually knotted. When the user throws away the odorous garbage, the gravity of the odorous garbage pulls the garbage bag out of the bag storage cavity 231 and automatically places it into the placement cavity 211, improving the bagging efficiency.

[0039] The cover 22 is provided with a waste placement opening 221 communicating with the upper end of the placement cavity 211. A slot 222 is provided inside the waste placement opening 221, and the bag-covering structure 23 is secured within the slot 222. The waste placement opening 221 provides a channel for waste disposal, allowing waste to enter the waste bag inside the placement cavity 211. This facilitates waste disposal, conforms to daily usage habits, and improves the user experience.

[0040] The locking action of the slot 222 secures the bag-covering structure 23 to the inside of the garbage placement opening 221, ensuring its stability during use. This prevents the bag-covering structure 23 from moving unnecessarily and guarantees that the garbage bag can be pulled out stably from within the bag-covering structure 23, thus improving its stability and reliability.

[0041] like Figure 2As shown, the cover 22 in this embodiment is provided with an upper cover 223, a transmission sector gear 224, a drive gear 225, and a flip-top driver 226. The upper cover 223 is rotatably connected to the cover body 22 and is used to control the opening and closing of the garbage placement opening 221; The transmission sector gear 224 is fixed to one end of the upper cover 223, and the driving gear 225 meshes with the transmission sector gear 224; The flip-top driver 226 is fixed to the cover 22 and is used to drive the drive gear 225 to rotate.

[0042] A rotating connection is used, allowing the top cover 223 to rotate around a specific axis. As the top cover 223 rotates to different positions, it changes the opening degree of the waste disposal opening 221, thus controlling its opening and closing. The opening can be easily opened when waste needs to be disposed of, and can be closed promptly after disposal to reduce odor emissions and prevent waste exposure, maintaining a clean environment.

[0043] The flip-cover driver 226 is a geared motor, and the drive gear 225 is mounted on the output shaft of the flip-cover driver 226. The drive gear 225 meshes with the transmission sector gear 224 to transmit the power of the flip-cover driver 226 to the transmission sector gear 224, thereby driving the upper cover 223 to rotate.

[0044] like Figure 3 and Figure 4 As shown, the sealing mechanism 24 in this embodiment includes a heating slide 241, an abutting slide block 242, and a sealing driver 243; The heating slide 241 and the abutting slider 242 are slidably disposed on the inner side of the housing 21. The sealing driver 243 is fixed to the housing 21 and simultaneously drives the heating slide 241 and the abutting slider 242 to move closer or further away from each other.

[0045] By slidably arranging the heating slide 241 and the abutting slider 242 relative to each other inside the housing 21, the heating slide 241 and the abutting slider 242 can move relative to each other, providing a motion basis for subsequent mutual clamping and sealing of the garbage bag. The distance between the heating slide 241 and the abutting slider 242 can be flexibly adjusted to adapt to the sealing requirements of garbage bags of different thicknesses, ensuring that the sealing operation can be carried out effectively.

[0046] When the sealing driver 243 simultaneously drives the heating slide 241 and the abutting slider 242 to approach each other, the heating slide 241 and the abutting slider 242 come into contact, clamping the garbage bag and facilitating the heat sealing operation. Alternatively, the heating slide 241 and the abutting slider 242 can be driven to move away from each other, releasing the garbage bag and allowing it to be placed into the placement cavity 211.

[0047] like Figure 3 As shown, in this embodiment, a middle frame 212 is provided inside the housing 21, and a guide rod 213 is provided inside the middle frame 212. The heating slide 241 and the abutting slider 242 are both slidably connected to the guide rod 213. The guide rod 213 provides a stable sliding track for the heating slide 241 and the abutting slider 242. Utilizing the guiding effect of the guide rod 213, the heating slide 241 and the abutting slider 242 can move linearly in a predetermined direction. This ensures that the movement of the heating slide 241 and the abutting slider 242 is smooth and accurate, avoiding deviation or jamming, ensuring that the sealing operation can be performed accurately, and improving the sealing quality.

[0048] The heating slide 241 is equipped with multiple heating wires 244, and the end of the abutting slider 242 facing the heating wires is provided with a heat-insulating abutment piece 245. By providing multiple heating wires 244 on the heating slide 241, when current passes through the heating wires, electrical energy is converted into heat energy according to Joule's law, causing the heating wires to heat up and providing heat for sealing the garbage bag. Multiple heating wires 244 increase the heating area and improve heating efficiency, allowing the garbage bag to quickly reach a molten state, achieving a fast and secure seal. The heat-insulating abutment piece 245 is a heat-insulating material that prevents heat from being transferred from the heating wires to the abutting slider 242. This prevents the abutting slider 242 from being damaged by heat, extending its service life, while also preventing heat loss to unnecessary parts, improving heat utilization, and ensuring a good sealing effect.

[0049] The sealing driver 243 is equipped with a touch control switch 246. The touch control switch 246 controls the on / off state of the circuit by sensing the capacitance or pressure changes generated by human touch, thereby controlling the working state of the sealing driver 243. Users can start or stop the sealing operation with just a light touch of the switch, which is convenient and quick to use, improving the user experience and intelligence of the product.

[0050] The sealing driver 243 can be a synchronous belt pulley drive module, a linear motor or a lead screw motor, which can simultaneously drive the heated sliding block 241 and the abutting slider 242 to move closer to each other.

[0051] like Figure 4 As shown, specifically, this embodiment uses the sealing driver 243 as an example of the synchronous belt pulley drive module 3. The synchronous belt pulley drive module 3 includes a reduction motor, an active bevel gear 31, a transmission bevel gear 32, a linkage bevel gear rod 33, a first synchronous pulley group 34, and a second synchronous pulley group 35. The first synchronous pulley group 34 and the second synchronous pulley group 35 are respectively arranged in parallel and rotatably on the middle frame 212. The heating slide 241 is fixed to the synchronous belt on the side of the first synchronous pulley group 34 and the second synchronous pulley group 35 that is close to each other. The abutting slider 242 is fixed to the synchronous belt on the side of the first synchronous pulley group 34 and the second synchronous pulley group 35 that is far away from each other, so that the heating slide 241 and the abutting slider 242 are respectively connected to the first synchronous pulley group 34 and the second synchronous pulley group 35.

[0052] There are two transmission bevel gears 32. The synchronous pulleys on the same side of the first synchronous pulley group 34 and the second synchronous pulley group 35 are connected to the transmission bevel gears 32. The linkage bevel gear rod 33 meshes between the two transmission bevel gears 32. The active bevel gear 31 is fixed to the output shaft of the geared motor. The active bevel gear 31 meshes with one of the transmission bevel gears 32, so that the geared motor drives the heating sliding 241 and the abutting slider 242 to slide closer or further away from each other along the guide rod 213 through the active bevel gear 31, the transmission bevel gear 32, the linkage bevel gear rod 33, the first synchronous pulley group 34 and the second synchronous pulley group 35.

[0053] like Figure 4 As shown, in this embodiment, both the heating slide 241 and the abutting slider 242 are rotatably equipped with exhaust squeezing plates 247. The two exhaust squeezing plates 247 are inclined relative to each other and are used to squeeze the gas inside the garbage bag. This allows the exhaust squeezing plates 247 to slide and shift with the heating slide 241 and the abutting slider 242.

[0054] As the heated sliding block 241 and the abutting sliding block 242 approach each other, the distance between the two inclined exhaust extrusion plates 247 gradually decreases, exerting a squeezing effect on the garbage bag and thus expelling the gas inside. This also helps to reduce the volume of the garbage bag and save storage space.

[0055] Preferably, a torsion spring is provided between the exhaust extrusion plate 247 and the heating slide 241 and the abutting slide block 242. After the extrusion operation is completed, the exhaust extrusion plate 247 is reset by the torsion spring.

[0056] like Figure 3 As shown, the automatic bottom cover 25 in this embodiment includes a first half cover 251, a second half cover 252, and a bottom cover driver 253; The first half-cover 251 and the second half-cover 252 are rotatably disposed on the housing 21 to support the garbage bag and control the packaged odorous garbage from falling into the storage cavity 11; specifically, both the first half-cover 251 and the second half-cover 252 are rotated via a rotating shaft.

[0057] The bottom cover actuator 253 is fixed to the housing 21 and is used to simultaneously drive the first half-cover 251 and the second half-cover 252 to move closer or further apart. The bottom cover actuator 253 is a geared motor. Through a linkage and gear mechanism, the bottom cover actuator 253 simultaneously drives the first half-cover 251 and the second half-cover 252 to rotate, thus moving them closer or further apart. This improves the accuracy and consistency of operation. Users only need to control the bottom cover actuator 253 to easily complete the opening and closing of the bottom cover, further enhancing the automation level of the waste disposal equipment and the user experience.

[0058] When the first half-cover 251 and the second half-cover 252 approach each other, the automatic bottom cover 25 closes, thus enabling the automatic bottom cover 25 to hold the garbage. When the first half-cover 251 and the second half-cover 252 move away from each other, the automatic bottom cover 25 opens, thus controlling the packaged odorous garbage to fall into the storage cavity 11.

[0059] like Figure 3 As shown, in this embodiment, a lower frame 214 is provided inside the housing 21, and the lower frame 214 is located at the lower end of the placement cavity 211; the lower frame 214 constructs a stable support structure, providing a foundation for the subsequent installation and functional realization of other components.

[0060] The lower frame 214 is provided with a garbage drop outlet 215 that communicates with the storage cavity 11. By opening the garbage drop outlet 215 on the lower frame 214 that communicates with the storage cavity 11, a channel is provided for the packaged odorous garbage to go from the placement cavity 211 to the storage cavity 11, and the garbage can fall naturally by gravity.

[0061] The first half-cover 251 and the second half-cover 252 are rotatably mounted on the lower frame 214. The first half-cover 251 and the second half-cover 252 are mounted on the lower frame 214 in a relatively rotatable manner, allowing them to open and close flexibly, thereby controlling the opening and closing of the garbage dump 215. This rotatable mounting of the first half-cover 251 and the second half-cover 252 on the housing 21 is achieved.

[0062] The waste discharge port 215 is provided with an extended edging 216 extending downwards. The first half-cover 251 and the second half-cover 252 are each provided with a closing edge 254 corresponding to the extended edging 216. The extended edging 216 of the waste discharge port 215 cooperates with the closing edges 254 of the first half-cover 251 and the second half-cover 252. When the first half-cover 251 and the second half-cover 252 are closed, the closing edges 254 can wrap around the extended edging 216, forming a relatively sealed structure. This effectively prevents odors and waste residue from leaking out from the gaps between the waste discharge port 215 and the first half-cover 251 and the second half-cover 252 during waste discharge and equipment operation, improving the equipment's sealing and odor prevention effects, and ensuring a clean and hygienic operating environment.

[0063] like Figure 1 As shown, the storage cavity 11 in this embodiment is provided with a rib 12, and a folding handle 13 is provided on the rib 12. The folding handle 13 is mounted on the rib 12, and the supporting effect of the rib 12 provides a stable support for the folding handle 13 when unfolded and folded. Furthermore, the folding design reduces the space occupied by the handle when not in use. This allows users to flexibly unfold or fold the handle 13 as needed. When moving equipment or disposing of waste in the storage cavity 11, unfolding the handle makes it easy to lift; when not in use, folding it saves space, improving the convenience of equipment use and space utilization.

[0064] The mechanism 2 is positioned above the storage cavity 11, and the bottom of the mechanism 2 abuts against the folded handle 13 in its folded state, thus securing the mechanism 2 to the barrel body 1.

[0065] like Figure 1 As shown, in this embodiment, the upper part of the barrel 1 is provided with a clearance groove 14, which is used to expose the movement 2. The clearance groove 14 is specially designed on the upper part of the barrel 1 to provide a specific exposure space for the movement 2 by changing the local shape of the barrel 1, thus breaking the complete obstruction of the movement 2 by the barrel 1. The clearance groove 14 allows direct contact with the movement 2, facilitating the separation of the movement 2 from the barrel 1.

[0066] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation method and application scope based on the idea of ​​this utility model. The content of this specification should not be construed as a limitation of this utility model.

Claims

1. A smart, packaged waste collection device, characterized in that, Includes barrel body (1) and mechanism (2); The barrel (1) is provided with a storage cavity (11) for storing packaged odorous waste. The mechanism (2) is positioned above the storage cavity (11); The mechanism (2) includes a housing (21), a cover (22), a bagging structure (23), a sealing mechanism (24), and an automatic bottom cover (25). The housing (21) has a placement cavity (211) inside, which is located above the storage cavity (11) and is used to provide space for temporarily storing odorous waste; The cover (22) is disposed on the upper part of the housing (21) and is used to control the opening and closing of the upper end of the placement cavity (211); The bag-covering structure (23) is located inside the cover (22) and is used to cover the garbage bag inside the storage cavity (11); The sealing mechanism (24) is slidably disposed in the placement cavity (211) for heat sealing and heat melting cutting of garbage bags; The automatic bottom cover (25) is located at the lower end of the placement cavity (211) and is used to carry garbage bags and control the packaged odorous garbage from falling into the storage cavity (11).

2. The intelligent packaging waste collection device according to claim 1, characterized in that, The bagging structure (23) is provided with a bag storage cavity (231) for storing garbage bags. A guide groove (232) is provided on one side of the storage cavity (231), and the guide groove (232) is connected to the placement cavity (211); The cover (22) is provided with a garbage placement port (221) that communicates with the upper end of the placement cavity (211). A slot (222) is provided inside the garbage placement port (221), and the bag structure (23) is locked in the slot (222).

3. The intelligent packaging waste collection device according to claim 2, characterized in that, The cover (22) is provided with an upper cover (223), a transmission sector gear (224), a drive gear (225), and a flip cover driver (226). The upper cover (223) is rotatably connected to the cover body (22) and is used to control the opening and closing of the garbage placement opening (221); The transmission sector gear (224) is fixed to one end of the upper cover (223), and the driving gear (225) meshes with the transmission sector gear (224); The flip-top driver (226) is fixed to the cover (22) and is used to drive the drive gear (225) to rotate.

4. The intelligent packaging waste collection device according to claim 1, characterized in that, The sealing mechanism (24) includes a heating slide (241), an abutting slide (242), and a sealing driver (243). The heating slide (241) and the abutting slider (242) are slidably disposed on the inner side of the housing (21). The sealing driver (243) is fixed to the housing (21) and simultaneously drives the heating slide (241) and the abutting slider (242) to move closer or further away from each other.

5. The intelligent packaging waste collection device according to claim 4, characterized in that, The housing (21) is provided with a middle frame (212), and the middle frame (212) is provided with a guide rod (213). The heating slide (241) and the abutting slide (242) are both slidably connected to the guide rod (213). The heating slider (241) is provided with multiple heating wires (244), and the abutting slider (242) is provided with a heat-insulating abutting piece (245) at one end facing the heating wires. The sealing driver (243) is equipped with a touch control switch (246).

6. The intelligent packaging waste collection device according to claim 4, characterized in that, Both the heating slider (241) and the abutting slider (242) are rotatably equipped with exhaust extrusion plates (247). The two exhaust extrusion plates (247) are arranged at opposite angles to extrude gas inside the garbage bag.

7. The intelligent packaging waste collection device according to claim 1, characterized in that, The automatic bottom cover (25) includes a first half cover (251), a second half cover (252), and a bottom cover actuator (253). The first half-cover (251) and the second half-cover (252) are rotatably disposed on the housing (21) to carry the garbage bag and control the packaged odorous garbage from falling into the storage cavity (11). The bottom cover driver (253) is fixed to the housing (21) and is used to simultaneously drive the first half cover (251) and the second half cover (252) to move closer or further apart from each other.

8. The intelligent packaging waste collection device according to claim 7, characterized in that, A lower frame (214) is provided inside the housing (21), and the lower frame (214) is located at the lower end of the placement cavity (211); The lower frame (214) is provided with a garbage drop outlet (215) that communicates with the storage cavity (11). The first half cover (251) and the second half cover (252) are rotatably mounted on the lower frame (214) relative to each other. The garbage dump (215) is provided with an extended edge (216) extending downwards, and the first half cover (251) and the second half cover (252) are provided with a wrapping edge (254) corresponding to the extended edge (216).

9. The intelligent packaging waste collection device according to claim 1, characterized in that, The storage cavity (11) is provided with a rib (12), and a folding handle (13) is provided on the rib (12). The mechanism (2) is positioned above the storage cavity (11), and the bottom of the mechanism (2) abuts against the folded handle (13) in the folded state.

10. A smart packaging waste collection device according to claim 1, characterized in that, The upper part of the barrel (1) is provided with a clearance groove (14), which is used to expose the movement (2).