CN211197384U - Sliding cover type garbage can - Google Patents

Sliding cover type garbage can Download PDF

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Publication number
CN211197384U
CN211197384U CN201921466688.7U CN201921466688U CN211197384U CN 211197384 U CN211197384 U CN 211197384U CN 201921466688 U CN201921466688 U CN 201921466688U CN 211197384 U CN211197384 U CN 211197384U
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Prior art keywords
sliding
cover
cover body
telescopic rod
driving
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CN201921466688.7U
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Chinese (zh)
Inventor
吕益美
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Yongkang Qingwei Industry And Trade Co ltd
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Individual
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Abstract

The utility model discloses a sliding closure type garbage can, which comprises a base, two can bodies arranged on the base and a cover body rotationally connected with the upper end of the rear part of the base, wherein two sliding closures are arranged on the cover body in a sliding way, two sides of one end of each sliding closure, which is close to the other sliding closure, are provided with inner sliding heads, and two sides of the other end are provided with outer sliding heads; the two side walls of the cover body along the length direction are symmetrically provided with sliding chutes which are in sliding connection with the inner sliding head and the outer sliding head; the upper end of each sliding chute is provided with an outer return groove and an inner return groove; when the sliding cover is in an initial state, the outer sliding head is positioned in the range of the outer return groove, and the inner sliding head is positioned in the range of the inner return groove; a telescopic rod is connected between each sliding cover and the cover body; when the telescopic rod extends, the sliding cover connected with the telescopic rod is driven to slide to the lower part of the other sliding cover along the sliding groove. The utility model discloses a two sliding closures can slide to the below of another sliding closure along same spout respectively under the telescopic link drive to make the rubbish entrance to throw in of current position be in the open mode.

Description

Sliding cover type garbage can
Technical Field
The utility model belongs to articles for daily use field, concretely relates to slide type garbage bin.
Background
The existing garbage can is mostly of a flip type, namely, a cover used for shielding the bung hole is connected to the rear portion of the can body through a rotating shaft, and the bung hole is opened through a pedal and a transmission mechanism or through a motor to drive the cover to rotate upwards. The cover has the defects that the air flow near the opening of the garbage can generates obvious flow during the opening process of the cover, the peculiar smell in the garbage can is easily diffused outwards, and particularly, the garbage can used for containing perishable kitchen garbage is obvious when being used outdoors.
Chinese patent document No. CN106628753A discloses a multifunctional intelligent garbage can, which comprises an outer can, a cylindrical inner can mounted in the outer can, and a can cover sleeved on the upper end of the outer can; an arc-shaped garbage throwing inlet is formed in the front upper part of the barrel cover, baffle guide grooves are symmetrically formed in the two sides of the garbage throwing inlet on the barrel cover, and an elastic baffle for blocking the garbage throwing inlet is slidably mounted between the two baffle guide grooves in the two sides; a pyroelectric sensor for detecting whether a user approaches is arranged at the upper part of the front side of the outer barrel; the lower end of the filter mounting cavity is connected with an air pumping cylinder communicated with the filter mounting cavity, and the lower end of each air pumping cylinder is connected with a fan; the lower end of the inner barrel is integrally connected with a lower support, and the upper end of the rear side of the lower support is formed with an exhaust barrel which is in sealed insertion connection with the lower end of the fan; when the pyroelectric sensor detects that a user approaches, the fan works, and then the elastic baffle moves downwards to open the garbage throwing inlet, so that the user can not smell the peculiar smell of the garbage in the garbage throwing process.
Compared with a rotary cover, the sliding cover provided in the scheme has the advantages that airflow disturbance to the position near the opening of the garbage can is small in the opening process of the sliding cover, odor in the garbage can is obviously reduced from being emitted outwards, but the elastic baffle in the scheme has elasticity, so that the rigidity in the width direction obviously has a defect, and the elastic baffle is easy to deform after being used for a long time or has low degree of fit with the baffle guide groove, so that the problem of poor sliding is solved.
SUMMERY OF THE UTILITY MODEL
The utility model discloses the technical problem that will solve is: the garbage can has the advantages that the structural design is ingenious, the two sliding covers can slide by the aid of the sliding grooves to achieve opening and closing, and the garbage can be suitable for garbage classification.
In order to realize the purpose of the utility model, the technical proposal is that the sliding cover type garbage can comprises at least two can bodies (2) for holding garbage;
a base (1) on which the tub is placed/mounted;
a lid (3), correspond every on the lid the bung hole position of staving is equipped with rubbish input mouth (3c), its characterized in that:
a sliding cover used for shielding the garbage throwing-in opening is slidably arranged on the cover body, and the sliding covers are respectively positioned right above the bucket openings of the corresponding bucket bodies in an initial state;
in two adjacent sliding covers, a pair of inner sliding heads (302) is symmetrically arranged on two sides of one sliding cover close to one end of the other sliding cover, and a pair of outer sliding heads (301) is symmetrically arranged on two sides of the other end of the sliding cover; the cover body is symmetrically provided with sliding chutes (321) which are in sliding connection with the inner sliding head and the outer sliding head; a telescopic rod (33) is connected between each sliding cover and the cover body; when the sliding cover is at an initial position, the telescopic rod is in a contraction state, and when the telescopic rod extends, the sliding cover connected with the telescopic rod is driven to slide to the position below the adjacent sliding cover along the sliding groove.
Preferably, the method comprises the following steps: the telescopic rod is an air cylinder, two driving air cylinders which are respectively used for driving adjacent sliding covers to move are installed in the base, and each driving air cylinder is connected with the air cylinder connected with the corresponding sliding cover through a hose; the base is provided with a pedal for driving the driving cylinder to contract, and the driving cylinder is internally provided with a return spring for driving the driving cylinder to reset or the base is internally provided with a return spring for driving the driving cylinder to reset.
Preferably, the method comprises the following steps: the telescopic rod is an electric push rod, and a control switch for controlling the electric push rod to extend and retract is arranged on the cover body or the base; the base or the cover body is internally provided with a controller and a storage battery, and each electric push rod, the storage battery and the control switch are respectively electrically connected with the controller.
Preferably, the method comprises the following steps: two ends of the telescopic rod are respectively connected with the sliding cover and the cover body in a rotating way; an outer return groove (3211) and an inner return groove (3212) are formed in the upper end of each sliding groove; when the sliding cover is at an initial position, the outer sliding head is positioned in the range of the outer return groove, and the inner sliding head is positioned in the range of the inner return groove; a return spring (34) is connected between the sliding cover and the cover body, when the telescopic rod contracts to drive the sliding cover to move towards the initial position and the outer sliding head slides into the outer return groove, the return spring drives the inner sliding head to retract into the inner return groove.
Preferably, the method comprises the following steps: the return spring is a tension spring connected between the telescopic rod and the cover body, and the connection position of the tension spring and the cover body is positioned above the telescopic rod; or the return spring is a torsion spring, and the torsion spring is arranged at the position where the telescopic rod is rotatably connected with the cover body.
Preferably, the method comprises the following steps: the outer end of the inner sliding head is provided with a rotating connecting portion, and one end of the telescopic rod is rotatably connected with the rotating connecting portion.
Preferably, the method comprises the following steps: the cover body is rotatably connected with the base, and covers the upper ends of the two barrel bodies when the cover body rotates to the horizontal position.
Preferably, the method comprises the following steps: the cover body also comprises a lower cover body and an upper cover body connected with the lower cover body; an installation cavity for installing the telescopic rod is formed between the upper cover body and the lower cover body.
Preferably, the method comprises the following steps: the upper cover body comprises a sliding cover installation wall (32a) in a rectangular frame body shape and an upper end wall (32b) integrally formed on the periphery of the upper end of the sliding cover installation wall, and the sliding grooves are formed in two opposite long wall surfaces of the sliding cover installation wall.
Preferably, the method comprises the following steps: the base comprises a supporting part (11), a cover body connecting part (12) connected with the supporting part, and a bottom cover (13) connected to the lower end of the supporting part; an air cylinder bracket (132) is arranged on the bottom cover, and a driving air cylinder is fixed on the air cylinder bracket; the driving cylinder comprises a cylinder body (51) and a piston in sealing sliding connection with the cylinder body, and a return spring is arranged between the bottom of the cylinder body and the piston; the bottom cover is provided with a pedal support (131), the middle of the pedal is rotationally connected with the pedal support, the front end of the pedal extends out of the outer side of the front end of the base, the rear end of the pedal is fixedly connected with a driving rod (41), and the lower end of the piston is connected with a sliding sleeve (521) which is in sliding sleeve connection with the driving rod.
Compared with the prior art, the beneficial effects of the utility model are that: the utility model discloses a two adjacent sliding closures can slide to the below of another sliding closure along same spout respectively under the telescopic link drive to make the rubbish of current position throw in the mouth and be in the open mode.
Further, the utility model discloses a lid is whole to be connected with the base rotation, like this when needs take out the disposal bag (of being equipped with rubbish) in the staving, only need with the lid whole upwards turn-up can, and after having changed the disposal bag, the sack of disposal bag turns over the bung hole outside of staving outward, the lid covers the back and compresses tightly the sack of disposal bag on the bung hole of staving on the one hand, on the other hand also makes the sack of disposal bag not contact with rubbish for hand and the sack that does not receive the pollution contact when taking out the disposal bag, the health has been guaranteed.
Furthermore, when the telescopic rod is a cylinder driven by gas or liquid, the cylinder only needs to be connected with the driving cylinder through a hose, and the rotation of the cover body cannot be hindered; when the telescopic link is electric putter, the electric elements that are used for driving electric putter work can install in the lid completely, if some electric elements install in the base, also only need carry out the electricity through soft wire and connect, can not lead to the fact the influence to the rotation of lid. Furthermore, the spout is used for holding respectively through setting up outer return groove and interior return groove the outer slip head and the interior slip head of sliding closure for when the sliding closure is located initial condition with the sliding closure slip to be in different horizontal planes when opening the state, two sliding closures can share a set of spout like this, the structure of lid has been simplified, and sliding closure and driver part all can share, can reduce the die sinking, assembly cost, make two sliding closures all can be in the same level when initial condition simultaneously, make the whole appearance of garbage bin level and smooth.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the first sliding cover of the present invention in an open state.
Fig. 3 is a schematic structural diagram of the second sliding cover of the present invention in an open state.
Fig. 4 is an exploded schematic view of the present invention.
Fig. 5 is a schematic view of an installation structure of the slide cover.
Fig. 6 is a schematic structural state diagram of the first sliding cover in the open state.
Fig. 7 is an exploded view of the cover portion.
Fig. 8 is a schematic structural view of the upper cover.
Fig. 9 is a schematic view of the mounting structure of the driving cylinder.
1. A base; 11. a support portion; 111. a barrel body positioning groove; 12. a cover body connecting part; 121. a hinged seat; 122. perforating the trachea; 13. a bottom cover; 131. a pedal support; 132. a cylinder support; 2. a barrel body; 3. A cover body; 3a, a first sliding cover; 3b, a second sliding cover; 3c, a garbage throwing port; 301. an outer slider; 302. An inner slide head; 303. a cylinder joint; 304. a slope surface; 31. a lower cover body; 32. an upper cover body; 32a, a slide mounting wall; 32b, an upper end wall; 321. a chute; 3211. an outer return groove; 3212. an inner return groove; 322. a middle spacer bar; 323. rotating the connecting seat; 324. a spring connecting portion; 33. a telescopic rod; 331. A first cylinder; 332. a second cylinder; 34. a return spring; 4. a pedal; 41. a drive rod; 5. a driving cylinder; 51. a cylinder body; 52. a piston; 521. a sliding sleeve; 53. a return spring.
Detailed Description
Example 1
Referring to fig. 1 to 9, the present embodiment is a sliding-lid trash can, which structurally includes:
a base 1 for supporting and positioning the barrel body 2;
the two barrel bodies 2 are symmetrically arranged or detachably arranged at the upper end of the base 1;
and the rear part of the cover body 3 is rotationally connected with the upper end of the base 1, and when the cover body 3 rotates to a horizontal position, the cover body 3 covers the upper ends of the two barrel bodies 2.
The rear end of the cover body 3 is provided with a hinged joint, the upper end of the rear part of the base 1 is provided with a hinged seat 121, and the hinged joint and the hinged seat 121 are rotationally connected through a pin shaft, so that the cover body 3 can be rotated backwards by 90 degrees or by over 90 degrees when the garbage bag in the barrel body 2 is replaced, and the interference of the cover body 3 in the bag replacing process is avoided.
Correspond two on the lid 3 the bung hole position of staving 2 is equipped with rubbish and throws in the mouth 3c, slidable mounting has two on the lid 3 and is used for shielding two respectively rubbish throws in the sliding closure of mouth 3c, two the sliding closure is located directly over the bung hole of two staving 2 respectively under initial condition.
Referring to fig. 7 and 8, a pair of inner sliding heads 302 is symmetrically disposed on both sides of one end of the sliding cover close to the other sliding cover, and a pair of outer sliding heads 301 is symmetrically disposed on both sides of one end of the sliding cover far from the other sliding cover.
The two side walls of the cover body 3 along the length direction are symmetrically provided with sliding grooves 321 which are in sliding connection with the inner sliding head 302 and the outer sliding head 301.
An outer return groove 3211 and an inner return groove 3212 are formed in the upper end of each sliding slot 321, and the lower ends of the outer return groove 3211 and the inner return groove 3212 incline toward the direction of the sliding cover on the other side; when the sliding cover is in an initial state, the outer sliding head 301 is located within the outer return groove 3211, and the inner sliding head 302 is located within the inner return groove 3212.
A cylinder 5 is connected between each sliding cover and the cover body 3; when the sliding cover is in the initial state, the telescopic rod 33 is in the retracted state, and when the telescopic rod 33 is extended, the sliding cover connected with the telescopic rod is driven to slide to the lower side of the other sliding cover along the sliding groove 321.
Two ends of the telescopic rod 33 are respectively connected with the sliding cover and the cover body 3 in a rotating way; a return spring 34 is connected between the sliding cover and the cover body 3, when the telescopic rod 33 contracts to drive the sliding cover to move to an initial state and the outer sliding head 301 slides into the outer return groove 3211, the return spring 34 drives the inner sliding head 302 to retract into the inner return groove 3212. The outer end of the inner sliding head 302 is provided with a rotating connecting part 303, and one end of the telescopic rod 33 is rotatably connected with the rotating connecting part.
Specifically, the return spring 34 shown in fig. 5 is a tension spring connected between the telescopic rod 33 and the cover body 3, and the connection position of the tension spring and the cover body 3 is located above the telescopic rod 33; or, the return spring 34 is a torsion spring, and the torsion spring is installed at a position where the telescopic rod 33 is rotatably connected with the cover body 3.
Further, the cover 3 includes a lower cover 31 and an upper cover 32 fixedly connected to the upper end of the lower cover 31; an installation cavity for installing the telescopic rod 33 is formed between the upper cover body 32 and the lower cover body 31.
The upper cover body 32 includes a sliding cover installation wall 32a in a rectangular frame shape, and an upper end wall 32b integrally formed on the outer periphery of the upper end of the sliding cover installation wall 32a, and the sliding grooves 321 are formed on two opposite long wall surfaces of the sliding cover installation wall 32 a. The slide cover mounting wall 32a is formed with a rotary connecting seat 323 rotatably connected to one end of the cylinder, and a spring connecting portion 324 connected to one end of the spring.
In addition, a middle spacer bar 322 is connected to the sliding cover installation wall 32a between the two barrels 2 to fill up a gap between the two sliding covers in the initial state, and correspondingly, a slope 304 is formed on one side of each of the two sliding covers close to the middle spacer bar 322.
Two driving cylinders 5 which are respectively used for driving the two sliding covers to move are arranged in the base 1, and each driving cylinder 5 is connected with a cylinder connected with the corresponding sliding cover through a hose; the base 1 is provided with a pedal 4 for driving the driving cylinder 5 to contract, and the driving cylinder 5 is internally provided with a return spring 53 for driving the driving cylinder 5 to reset.
Specifically, the base 1 includes a supporting portion 11, a connecting portion 12 of the cover 3 fixedly connected to the upper end of the rear portion of the supporting portion 11, and a bottom cover 13 connected to the lower end of the supporting portion 11.
The upper end of the bottom cover 13 is provided with an air cylinder bracket 132, and the driving air cylinder 5 is vertically fixed on the air cylinder bracket 132; the driving cylinder 5 comprises a cylinder body 51 and a piston 52 which is in sealing sliding connection with the cylinder body 51, and the return spring 53 is arranged between the bottom of the cylinder body 51 and the piston 52. As shown in fig. 9, the piston 52 is mounted at the lower part of the cylinder 51, and when the piston 52 is pushed upwards, the pressure in the cylinder 51 is increased, so that the cylinder is pushed to extend, and the return spring 53 is compressed; after the pushing force on the piston 52 is removed, the piston 52 is reset downwards under the action of the reset spring 53, the pressure in the cylinder body 51 is reduced, and the cylinder is driven to return to the initial state through negative pressure. The closed pipeline formed by the driving cylinder 5 and the air cylinder can be filled with air, water or liquid grease and the like.
The bottom cover 13 is provided with a pedal support 131, the middle part of the pedal 4 is rotatably connected with the pedal support 131, the front end of the pedal 4 extends out of the outer side of the front end of the base 1, the rear end of the pedal 4 is fixedly connected with a driving rod 41, and the lower end of the piston 52 is connected with a sliding sleeve 521 which is slidably sleeved with the driving rod 41.
To facilitate understanding, as shown in fig. 2 and fig. 3, the first sliding cover 3a on the left side and the second sliding cover 3b on the left side are defined, and accordingly, the cylinder for driving the first sliding cover 3a to move is the first cylinder 331, and the cylinder for driving the second sliding cover 3b to move is the second cylinder 332.
When the left pedal 4 is stepped on, the rear end of the pedal 4 generates upward displacement, the piston 52 of the driving cylinder 5 moves upward, so that fluid in the driving cylinder 5 flows to the first cylinder 331 through the hose and drives the first cylinder 331 to extend, the first sliding cover 3a is driven by the first cylinder 331, the outer sliding head 301 and the inner sliding head 302 slide downward into the sliding groove 321 along the outer return groove 3211 and the inner return groove 3212 respectively and continue to move rightward along the sliding groove 321 to the lower side of the second sliding cover 3b, and the return spring 34 is stretched when the inner sliding head 302 slides into the sliding groove 321 from the inner return groove 3212; after the pedal 4 is released, the return spring 53 drives the piston 52 to return, so that the fluid flows back into the driving cylinder 5, the first cylinder 331 contracts and returns to the left under the negative pressure, when the inner sliding head 302 moves to the position of the inner return groove 3212 leftwards along the sliding groove 321, the return spring 34 pulls the inner sliding head 302 back into the inner return groove 3212, so that the first sliding cover 3a returns to the initial state. When the pedal 4 on the right side is stepped down, the second sliding cover 3b moves leftwards to the lower part of the first sliding cover 3a, and the principle is the same as that of the first sliding cover 3 a.
Example 2
The difference between this embodiment and embodiment 1 is that the air cylinder is replaced by an electric push rod, and correspondingly, a control switch for controlling the extension and retraction of the electric push rod is installed on the cover body 3 or the base 1; the base 1 or the cover body 3 are internally provided with a controller and a storage battery, and each electric push rod, the storage battery and the control switch are respectively electrically connected with the controller.
Example 3
The difference between this embodiment and embodiment 1 lies in that the corresponding increase of apron and staving quantity is other reasonable settings such as three, four, and correspondingly, adopts above-mentioned setting between two adjacent apron of adjustment and the staving, other position adaptability adjustment.

Claims (10)

1. A sliding cover type garbage can structurally comprises:
at least two can bodies (2) for holding garbage;
a base (1) on which the tub is placed/mounted;
a lid (3), correspond every on the lid the bung hole position of staving is equipped with rubbish input mouth (3c), its characterized in that:
a sliding cover used for shielding the garbage throwing-in opening is slidably arranged on the cover body, and the sliding covers are respectively positioned right above the bucket openings of the corresponding bucket bodies in an initial state;
in two adjacent sliding covers, a pair of inner sliding heads (302) is symmetrically arranged on two sides of one sliding cover close to one end of the other sliding cover, and a pair of outer sliding heads (301) is symmetrically arranged on two sides of the other end of the sliding cover; the cover body is symmetrically provided with sliding chutes (321) which are in sliding connection with the inner sliding head and the outer sliding head; a telescopic rod (33) is connected between each sliding cover and the cover body; when the sliding cover is at an initial position, the telescopic rod is in a contraction state, and when the telescopic rod extends, the sliding cover connected with the telescopic rod is driven to slide to the position below the adjacent sliding cover along the sliding groove.
2. The sliding-lid garbage can according to claim 1, wherein: the telescopic rod is an air cylinder, two driving air cylinders which are respectively used for driving adjacent sliding covers to move are installed in the base, and each driving air cylinder is connected with the air cylinder connected with the corresponding sliding cover through a hose; the base is provided with a pedal for driving the driving cylinder to contract, and the driving cylinder is internally provided with a return spring for driving the driving cylinder to reset or the base is internally provided with a return spring for driving the driving cylinder to reset.
3. The sliding-lid garbage can according to claim 1, wherein: the telescopic rod is an electric push rod, and a control switch for controlling the electric push rod to extend and retract is arranged on the cover body or the base; the base or the cover body is internally provided with a controller and a storage battery, and each electric push rod, the storage battery and the control switch are respectively electrically connected with the controller.
4. A sliding lid refuse receptacle according to claim 1, 2 or 3, characterized in that: two ends of the telescopic rod are respectively connected with the sliding cover and the cover body in a rotating way; an outer return groove (3211) and an inner return groove (3212) are formed in the upper end of each sliding groove; when the sliding cover is at an initial position, the outer sliding head is positioned in the range of the outer return groove, and the inner sliding head is positioned in the range of the inner return groove; a return spring (34) is connected between the sliding cover and the cover body, when the telescopic rod contracts to drive the sliding cover to move towards the initial position and the outer sliding head slides into the outer return groove, the return spring drives the inner sliding head to retract into the inner return groove.
5. The sliding-lid garbage can according to claim 4, wherein: the return spring is a tension spring connected between the telescopic rod and the cover body, and the connection position of the tension spring and the cover body is positioned above the telescopic rod;
or the return spring is a torsion spring, and the torsion spring is arranged at the position where the telescopic rod is rotatably connected with the cover body.
6. The sliding-lid garbage can according to claim 4, wherein: the outer end of the inner sliding head is provided with a rotating connecting portion, and one end of the telescopic rod is rotatably connected with the rotating connecting portion.
7. The sliding closure type trash can of claim 1, 2, 3, 5 or 6, wherein: the cover body is rotatably connected with the base, and covers the upper end of the barrel body when the cover body rotates to the horizontal position.
8. The sliding closure type trash can of claim 1, 2, 3, 5 or 6, wherein: the cover body also comprises a lower cover body and an upper cover body connected with the lower cover body; an installation cavity for installing the telescopic rod is formed between the upper cover body and the lower cover body.
9. The sliding-lid garbage can according to claim 8, wherein: the upper cover body comprises a sliding cover installation wall (32a) in a rectangular frame body shape and an upper end wall (32b) integrally formed on the periphery of the upper end of the sliding cover installation wall, and the sliding grooves are formed in two opposite long wall surfaces of the sliding cover installation wall.
10. A sliding lid type garbage can as claimed in claim 2 or 3 or 5 or 6 or 9, wherein: the base comprises a supporting part (11), a cover body connecting part (12) connected with the supporting part, and a bottom cover (13) connected to the lower end of the supporting part;
an air cylinder bracket (132) is arranged on the bottom cover, and a driving air cylinder is fixed on the air cylinder bracket; the driving cylinder comprises a cylinder body (51) and a piston in sealing sliding connection with the cylinder body, and a return spring is arranged between the bottom of the cylinder body and the piston;
the bottom cover is provided with a pedal support (131), the middle of the pedal is rotationally connected with the pedal support, the front end of the pedal extends out of the outer side of the front end of the base, the rear end of the pedal is fixedly connected with a driving rod (41), and the lower end of the piston is connected with a sliding sleeve (521) which is in sliding sleeve connection with the driving rod.
CN201921466688.7U 2019-09-05 2019-09-05 Sliding cover type garbage can Active CN211197384U (en)

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Application Number Priority Date Filing Date Title
CN201921466688.7U CN211197384U (en) 2019-09-05 2019-09-05 Sliding cover type garbage can

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Application Number Priority Date Filing Date Title
CN201921466688.7U CN211197384U (en) 2019-09-05 2019-09-05 Sliding cover type garbage can

Publications (1)

Publication Number Publication Date
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111908163A (en) * 2020-09-11 2020-11-10 山东德日机械科技有限公司 Cloth head collecting box and cloth head collecting method
CN112061629A (en) * 2020-09-07 2020-12-11 广州鼎奥科技有限公司 Internet of things-based smart home recycling device
CN113353481A (en) * 2020-09-17 2021-09-07 湖南环得鑫新能源科技有限公司 Waste battery recovery unit of leak protection liquid
CN115108199A (en) * 2021-03-18 2022-09-27 西安佳赢企业管理咨询有限公司 Garbage can

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112061629A (en) * 2020-09-07 2020-12-11 广州鼎奥科技有限公司 Internet of things-based smart home recycling device
CN112061629B (en) * 2020-09-07 2021-12-14 合肥荣事达电子电器集团有限公司 Internet of things-based smart home recycling device
CN111908163A (en) * 2020-09-11 2020-11-10 山东德日机械科技有限公司 Cloth head collecting box and cloth head collecting method
CN113353481A (en) * 2020-09-17 2021-09-07 湖南环得鑫新能源科技有限公司 Waste battery recovery unit of leak protection liquid
CN115108199A (en) * 2021-03-18 2022-09-27 西安佳赢企业管理咨询有限公司 Garbage can

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Effective date of registration: 20210918

Address after: 321300 south of floor 2, No. 885, Huangcheng North Road, huangchengli village, Yongkang Economic Development Zone, Jinhua City, Zhejiang Province (self declaration)

Patentee after: Yongkang Qingwei industry and Trade Co.,Ltd.

Address before: 321300 No.128, Confucianist village, Zhiying street, Yongkang City, Jinhua City, Zhejiang Province

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