CN112122316A - Garbage disposal device - Google Patents

Garbage disposal device Download PDF

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Publication number
CN112122316A
CN112122316A CN202010970637.9A CN202010970637A CN112122316A CN 112122316 A CN112122316 A CN 112122316A CN 202010970637 A CN202010970637 A CN 202010970637A CN 112122316 A CN112122316 A CN 112122316A
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China
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gear
cutting
ring
rolling
driven
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CN202010970637.9A
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Chinese (zh)
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CN112122316B (en
Inventor
康望才
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Kang Jihao
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Hunan Hankun Industrial Co Ltd
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Priority to CN202010970637.9A priority Critical patent/CN112122316B/en
Publication of CN112122316A publication Critical patent/CN112122316A/en
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Publication of CN112122316B publication Critical patent/CN112122316B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B09DISPOSAL OF SOLID WASTE; RECLAMATION OF CONTAMINATED SOIL
    • B09BDISPOSAL OF SOLID WASTE
    • B09B3/00Destroying solid waste or transforming solid waste into something useful or harmless

Abstract

The invention discloses a garbage disposal device which comprises a shell, a rolling mechanism, a rolling and crushing mechanism, a power driving mechanism, a first transmission mechanism and a second transmission mechanism, wherein the shell is hollow and has two open ends, and a water inlet is arranged above the shell; the rolling and crushing mechanism comprises a rolling component, a first cutting component, a second cutting component and a third cutting component; the rolling mechanism, the rolling component, the first cutting component, the third cutting component and the second cutting component are sequentially installed inside the shell in a rotating mode from top to bottom. The invention realizes the automatic and thorough crushing of the garbage so as to avoid that the sewer is blocked by large garbage and the like to influence the garbage discharge.

Description

Garbage disposal device
Technical Field
The invention relates to the technical field of garbage disposal equipment, in particular to a garbage disposal device.
Background
Present rubbish is especially domestic wet rubbish, often people can directly pour into and discharge to the sewer, and the jam of sewer is caused very easily to bold rubbish, must carry out sewer defeated expert after blockking up, the life of giving people has brought the inconvenience, in order to prevent to pour into the rubbish jam sewer in the sewer, consequently need a rubbish shredding device urgently, with rethread to the sewer behind the rubbish shredding, effectively avoid the sewer to block up, guarantee that rubbish effectively discharges, this remains further research and development solution.
Disclosure of Invention
The invention aims to overcome the defects of the prior art and provides a garbage treatment device, which realizes the automatic and thorough crushing of garbage so as to avoid that the discharge of the garbage is influenced by blocking a sewer by large garbage and the like.
In order to achieve the purpose, the invention provides a garbage treatment device which comprises a shell, a rolling mechanism, a rolling and crushing mechanism, a power driving mechanism, a first transmission mechanism and a second transmission mechanism, wherein the shell is hollow and has two open ends, and a water inlet is arranged above the shell; the rolling and crushing mechanism comprises a rolling component, a first cutting component, a second cutting component and a third cutting component; the rolling mechanism, the rolling component, the first cutting component, the third cutting component and the second cutting component are sequentially and rotatably arranged in the shell from top to bottom;
the rolling component comprises an outer rotating cylinder and an inner rotor positioned in the outer rotating cylinder, the outer rotating cylinder and the inner rotor are eccentrically arranged, a gear ring is arranged on the outer surface of the outer rotating cylinder, an outer turbine groove is formed in the outer surface of the inner rotor, and an inner turbine groove matched with the outer turbine groove is formed in the inner surface of the outer rotating cylinder;
the first cutting assembly comprises a first inner circular plate, a first outer circular ring, first cutting strips, a first outer gear ring and an inner gear ring, the first inner circular plate is connected with the first outer circular ring through the first cutting strips, the first inner circular plate and the first cutting strips are positioned in the first outer circular ring, and the first cutting strips are uniformly distributed along the circumference of the outer surface of the first inner circular plate; the first outer gear ring and the inner gear ring are both connected with the first outer ring;
the second cutting assembly comprises a second inner circular plate, a second outer circular ring, a second outer gear ring, an intermediate gear and second cutting strips, the second inner circular plate is connected with the second outer circular ring through the second cutting strips, the second inner circular plate and the second cutting strips are positioned in the second outer circular ring, and the second cutting strips are uniformly distributed along the circumference of the outer surface of the second inner circular plate; the second external gear ring is connected with the first external ring, and the intermediate gear is connected with the second internal ring plate;
the third cutting assembly comprises an inner cylinder, a cutting plate and an outer cylinder, the inner cylinder and the cutting plate are positioned in the outer cylinder, the inner cylinder is connected with the outer cylinder through a plurality of cutting plates, the plurality of cutting plates are uniformly distributed along the circumference of the outer surface of the inner cylinder, and third outer gear rings are arranged above and below the outer surface of the outer cylinder;
the power driving mechanism is connected with the gear ring, the first outer gear ring and the second outer gear ring through the first transmission mechanism, and the rotating directions of the first cutting assembly and the second cutting assembly are opposite; a third outer gear ring above the outer cylinder is meshed with the inner gear ring, and a third outer gear ring below the outer cylinder is meshed with the intermediate gear; the number of the third cutting assemblies is multiple, and the third cutting assemblies are uniformly distributed along the circumference of the outer surface of the intermediate gear; the power driving mechanism is connected with the rolling mechanism through the second transmission mechanism.
Further, the power driving mechanism comprises a motor and a motor base, the motor base is connected with the shell, the motor is installed on the motor base, the first transmission mechanism comprises a driving shaft, a driven shaft, a driving gear, a transmission gear, a first driven gear, a transition gear and a second driven gear, the motor is connected with the transmission shaft, the driving gear, the transmission gear and the transition gear are installed on the driving shaft, the first driven gear is installed on the motor base through the driven shaft in a rotating mode, the driving gear is meshed with the first driven gear, the first driven gear is meshed with the gear ring, the transmission gear is meshed with the first outer gear ring, the second driven gear is installed on the shell through a rotating shaft in a rotating mode, and the transition gear is meshed with the second driven gear, the second driven gear is meshed with the second external gear ring.
Further, rolling mechanism includes two cylinders that alternate setting side by side, be equipped with the gear hobbing on the cylinder, second drive mechanism includes worm wheel, worm, third driven gear, the cylinder tip is installed third driven gear, two third driven gear meshes mutually, the worm wheel rotate install in on the motor cabinet, the worm with the driven shaft is connected, the worm with the worm wheel meshes mutually, the worm wheel meshes with one of them third driven gear mutually.
Furthermore, the garbage disposal device also comprises a sound-proof housing which covers the shell, the power driving mechanism, the first transmission mechanism and the second transmission mechanism, and the sound-proof housing is connected with the shell.
Further, the rolling component further comprises an installation frame, and the two ends of the inner rotor are connected with the shell through the installation frame.
The garbage enters the shell from the upper part of the shell, meanwhile, a proper amount of water is added into the water inlet, the garbage is rolled by the rolling mechanism after entering the shell, and then is sequentially rolled by the rolling component, cut by the first cutting component, cut by the third cutting component and cut by the second cutting component and discharged from the lower part of the shell, and after the multiple treatment, the garbage discharged from the shell is thoroughly crushed, so that the problem that the sewer is blocked by the garbage and the like is effectively avoided, and the smooth garbage conveying is ensured.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a perspective view of the present invention.
Fig. 2 is a perspective view of fig. 1 cut away.
Fig. 3 is a perspective view of fig. 1 with the housing removed.
Fig. 4 is a perspective view of the rolling assembly of the present invention.
Fig. 5 is a perspective view of a first cutting assembly of the present invention.
Fig. 6 is a perspective view of fig. 5 rotated by a certain angle.
Fig. 7 is a perspective view of a second cutting assembly of the present invention.
Fig. 8 is a perspective view of a third cutting assembly of the present invention.
Fig. 9 is a perspective view of fig. 1 with the soundproof cover attached.
The above reference numerals:
1 shell, 101 water inlet, 20 rollers, 21 hobbing, 30 outer cylinders, 31 inner rotors, 301 gear rings, 32 first cutting assemblies, 33 second cutting assemblies, 34 third cutting assemblies, 320 first inner circular plates, 321 first cutting strips, 322 first outer gear rings, 323 first outer circular rings, 324 inner gear rings, 330 first inner circular plates, 331 intermediate gears, 332 second cutting strips, 333 second outer circular rings, 334 second outer gear rings, 340 outer cylinders, 341 inner cylinders, 342 cutting plates, 343 third outer gear rings, 40 motors, 41 motor bases, 42 driving gears, 43 transmission gears, 44 transmission shafts, 45 transition gears, 46 second driven gears, 47 first driven gears, 48 driven shafts, 49 worms, 50 worm gears, 51 third driven gears, 52 rotating shafts, 6 mounting racks, 7 sound insulation covers.
Detailed Description
The following detailed description of the present invention is given for the purpose of better understanding technical solutions of the present invention by those skilled in the art, and the present description is only exemplary and explanatory and should not be construed as limiting the scope of the present invention in any way.
It should be noted that: like reference numbers and letters refer to like items in the following figures, and thus, once an item is defined in one figure, it need not be further defined and explained in subsequent figures.
It is to be understood that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," and the like are used in a generic and descriptive sense only and not for purposes of limitation, the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," and the like are used in the generic and descriptive sense only and not for purposes of limitation, as the term is used in the generic and descriptive sense, and not for purposes of limitation, unless otherwise specified or implied, and the specific reference to a device or element is intended to be a reference to a particular element, structure, or component. Furthermore, the terms "first," "second," "third," and the like are used solely to distinguish one from another and are not to be construed as indicating or implying relative importance.
Furthermore, the terms "horizontal", "vertical", "overhang" and the like do not imply that the components are required to be absolutely horizontal or overhang, but may be slightly inclined. For example, "horizontal" merely means that the direction is more horizontal than "vertical" and does not mean that the structure must be perfectly horizontal, but may be slightly inclined.
In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
As shown in fig. 1 to 9, the garbage disposal apparatus according to the present embodiment includes a housing 1, a rolling mechanism, a rolling and crushing mechanism, a power driving mechanism, a first transmission mechanism, and a second transmission mechanism, wherein the housing 1 is hollow and has two open ends, and a water inlet 101 is provided above the housing 1; the rolling crushing mechanism comprises a rolling component, a first cutting component 32, a second cutting component 33 and a third cutting component 34; the rolling mechanism, the rolling component, the first cutting component 32, the third cutting component 34 and the second cutting component 33 are sequentially installed inside the shell 1 in a rotating mode from top to bottom.
The rolling component comprises an outer rotating cylinder 30 and an inner rotor 31 positioned in the outer rotating cylinder 30, the outer rotating cylinder 30 and the inner rotor 31 are arranged eccentrically, a gear ring 301 is arranged on the outer surface of the outer rotating cylinder 30, an outer turbine groove is formed in the outer surface of the inner rotor 31, and an inner turbine groove matched with the outer turbine groove is formed in the inner surface of the outer rotating cylinder 30. Wherein the rolling assembly is rotatably mounted with the housing 1, i.e. the outer rotor 30 and the inner rotor 31 are rotatably mounted with the housing 1.
The first cutting assembly 32 comprises a first inner circular plate 320, a first outer circular ring 323, first cutting strips 321, a first outer gear ring 322 and an inner gear ring 324, the first inner circular plate 320 is connected with the first outer circular ring 323 through a plurality of first cutting strips 321, the first inner circular plate 320 and the first cutting strips 321 are positioned inside the first outer circular ring 323, and the plurality of first cutting strips 321 are uniformly distributed along the circumference of the outer surface of the first inner circular plate 320; the first outer ring gear 322 and the inner ring gear 324 are connected to the first outer ring 323. The first inner circular plate 320, the first outer circular ring 323, the first cutting strip 321, the first outer gear ring 322, and the inner gear ring 324 are integrated, the first cutting assembly 32 is rotatably mounted to the housing 1 through the first outer circular ring 323, and the housing 1 is provided with an inner step matching with the first outer circular ring 323.
The second cutting assembly 33 comprises a second inner circular plate 330, a second outer circular ring 333, a second outer gear ring 334, an intermediate gear 331 and second cutting strips 332, wherein the second inner circular plate 330 is connected with the second outer circular ring 333 through a plurality of second cutting strips 332, the second inner circular plate 330 and the second cutting strips 332 are positioned inside the second outer circular ring 333, and the plurality of second cutting strips 332 are uniformly distributed along the circumference of the outer surface of the second inner circular plate 330; the second external gear ring 334 is connected to the first external ring 333, and the intermediate gear 331 is connected to the second internal ring 330. The second inner circular plate 330, the second outer circular ring 333, the second outer gear ring 334, the middle gear 331 and the second cutting strip 332 are of an integrated structure, the second cutting assembly 33 is rotatably mounted with the housing 1 through the second outer circular ring 333, and the housing 1 is provided with an inner step matched with the second outer circular ring 333.
The third cutting assembly 34 comprises an inner cylinder 341, a cutting plate 342, and an outer cylinder 340, wherein the inner cylinder 341 and the cutting plate 342 are located inside the outer cylinder 340, the inner cylinder 341 is connected with the outer cylinder 340 through a plurality of cutting plates 342, the plurality of cutting plates 342 are uniformly distributed along the circumference of the outer surface of the inner cylinder 341, and third outer gear rings 343 are arranged above and below the outer surface of the outer cylinder 340.
The power driving mechanism is connected with the gear ring 301, the first outer gear ring 322 and the second outer gear ring 334 through the first transmission mechanism, and the rotating directions of the first cutting assembly 32 and the second cutting assembly 33 are opposite; the third outer gear ring 343 above the outer cylinder 340 is meshed with the inner gear ring 324, and the third outer gear ring 343 below the outer cylinder 340 is meshed with the intermediate gear 331; the number of the third cutting assemblies 34 is multiple, and the multiple third cutting assemblies 34 are uniformly distributed along the circumference of the outer surface of the intermediate gear 331; the power driving mechanism is connected with the rolling mechanism through the second transmission mechanism.
When the garbage-discharging machine is used, garbage enters the shell 1 from the upper side of the shell 1, meanwhile, a proper amount of water can be added into the water inlet 101, the garbage is firstly rolled by the rolling mechanism after entering the shell 1, and then is discharged from the lower side of the shell 1 after being sequentially rolled by the rolling assembly, cut by the first cutting assembly 32, cut by the third cutting assembly 34 and cut by the second cutting assembly 33, and the garbage is completely crushed by the shell 1 after being subjected to the multiple treatments, so that the problem that the sewer is blocked by the garbage is effectively solved, and the smooth conveying of the garbage is ensured. The added proper amount of water can play a role in flushing garbage, so that the garbage can be quickly discharged from the lower part of the shell after being treated.
In the embodiment, the power driving mechanism drives the outer cylinder 30 to rotate through the first transmission mechanism, the garbage rolled by the rolling mechanism enters the rolling space formed by the outer turbine groove and the inner turbine groove, the outer cylinder 30 drives the inner rotor 31 to rotate during the rotation process, meanwhile, the garbage between the outer turbine groove and the inner turbine groove is rolled, the rolled garbage is sequentially cut and crushed by the plurality of first cutting strips 321 in the first cutting assembly 32, the plurality of cutting plates 342 in the third cutting assembly 34, and the plurality of second cutting strips 332 in the second cutting assembly 33, and then is discharged from the lower part of the housing 1, wherein the power driving mechanism drives the first cutting assembly 32 and the second cutting assembly 33 to rotate relative to the housing 1 through the first transmission mechanism, and the rotation directions of the first cutting assembly 32 and the second cutting assembly 33 are opposite, so as to effectively improve the garbage cutting and crushing effect, after the power driving mechanism drives the first cutting assembly 32 and the second cutting assembly 33 to rotate, the inner gear ring 324 drives the third outer gear ring 343 above the outer cylinder 340 to rotate, and the second outer gear ring 334 drives the third outer gear ring 343 below the outer cylinder 340 to rotate in the same direction as the third outer gear ring 343 above, so that the third cutting assembly 34 rotates, and the plurality of third cutting assemblies 34 realize garbage cutting and crushing.
Outer cylinder 30 and inner rotor 31 are eccentric settings outside this embodiment, and when rubbish moved between outer turbine groove and interior turbine groove like this, the space that rolls can change, so improved the effect that rubbish rolled greatly for rubbish is effectively smashed.
In this embodiment, preferably, the power driving mechanism includes a motor 40 and a motor base 41, the motor base 41 is connected to the housing 1, the motor 40 is mounted on the motor base 41, the first transmission mechanism includes a driving shaft 44, a driven shaft 48, a driving gear 42, a transmission gear 43, a first driven gear 47, a transition gear 45, and a second driven gear 46, the motor 40 is connected to the transmission shaft 44, the driving gear 42, the transmission gear 43, and the transition gear 45 are mounted on the driving shaft 44, the first driven gear 47 is rotatably mounted on the motor base 41 through the driven shaft 48, the driving gear 42 is engaged with the first driven gear 47, the first driven gear 47 is engaged with the ring gear 301, the transmission gear 43 is engaged with the first outer ring gear 322, the second driven gear 46 is rotatably mounted on the housing 1 through a rotating shaft 52, the transition gear 45 is engaged with the second driven gear 46, and the second driven gear 46 is engaged with the second external gear 334. When the cutting device is used, the motor 40 is started to drive the driving shaft 44 to rotate, the driving shaft 44 rotates to drive the driving gear 42, the transmission gear 43 and the transition gear 45 to rotate, the driving gear 42 rotates to drive the first driven gear 47 and the driven shaft 48 to rotate relative to the motor base 41, the first driven gear 47 rotates to drive the gear ring 301 to rotate, so that the outer rotary drum 30 is driven to rotate, the transmission gear 43 rotates to drive the first outer gear ring 322 to rotate, so that the first cutting assembly 32 is driven to rotate relative to the shell 1, the transition gear 45 rotates to drive the second driven gear 46 to rotate, the second driven gear 46 rotates to drive the second outer gear ring 334 to rotate, and the second outer gear ring 334 rotates so that the second cutting assembly 33 is driven.
Preferably, in this embodiment, the rolling mechanism includes two rollers 20 arranged side by side at an interval, the rollers 20 are provided with hobbing 21, that is, the two rollers 20 are rotatably mounted on the housing 1, the second transmission mechanism includes a worm gear 50, a worm 49 and a third driven gear 51, the third driven gear 51 is mounted at the end of the roller 20, the third driven gear 51 is engaged with the worm 50, the worm gear 50 is rotatably mounted on the motor base 41, the worm 49 is connected with the driven shaft 48, specifically, the worm 49 and the driven shaft 48 form an integrated structure, the worm 49 is engaged with the worm gear 50, and the worm gear 50 is engaged with one of the third driven gears 51. When the garbage rolling crusher is used, the motor 40 is started to drive the driving shaft 44 to rotate, the driving shaft 44 rotates to drive the driving gear 42, the transmission gear 43 and the transition gear 45 to rotate, the driving gear 42 rotates to drive the first driven gear 47 and the driven shaft 48 to rotate relative to the motor base 41, the driven shaft 48 rotates to drive the worm 49 to rotate, the worm 49 rotates to drive the worm gear 50 to rotate relative to the motor base 41, the worm gear 50 rotates to drive the third driven gear 51 to rotate, so that the two rollers 20 are driven to rotate, and garbage is rolled and crushed through the gear hobbing 21 when passing through the two rollers 20.
In the embodiment, one power source of the power driving mechanism is adopted, and the rolling mechanism, the rolling component, the first cutting component 32, the third cutting component 34 and the second cutting component 33 can be driven to rotate simultaneously through the first transmission mechanism and the second transmission mechanism, so that the structure is compact, and the energy is saved.
The power driving mechanism, the first transmission mechanism and the second transmission mechanism of the present embodiment are located outside the housing 1, and therefore, the housing 1 is provided with an opening groove through which the first driven gear 47 passes, an opening groove through which the transmission gear 43 passes and an opening groove through which the second driven gear 46 passes, respectively.
In this embodiment, the garbage disposal apparatus further includes a soundproof cover 7 covering the housing 1, the power driving mechanism, the first transmission mechanism, and the second transmission mechanism, and the soundproof cover 7 is connected to the housing 1. The sound insulation and noise reduction functions during garbage disposal are realized through the sound insulation cover 7.
Preferably, the rolling compaction assembly further comprises a mounting bracket 6, and both ends of the inner rotor 31 are connected with the outer shell 1 through the mounting bracket 6.
The motor is the low-speed rotation when this embodiment refuse treatment device handles to rolling mechanism, rolling subassembly, first cutting subassembly, third cutting subassembly, second cutting subassembly are the low-speed rotation, and vibrations are little, and the noise is little.
It should be noted that, in this document, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (5)

1. A garbage disposal device is characterized by comprising a shell, a rolling mechanism, a rolling and crushing mechanism, a power driving mechanism, a first transmission mechanism and a second transmission mechanism, wherein the shell is hollow and has two open ends, and a water inlet is arranged above the shell; the rolling and crushing mechanism comprises a rolling component, a first cutting component, a second cutting component and a third cutting component; the rolling mechanism, the rolling component, the first cutting component, the third cutting component and the second cutting component are sequentially and rotatably arranged in the shell from top to bottom;
the rolling component comprises an outer rotating cylinder and an inner rotor positioned in the outer rotating cylinder, the outer rotating cylinder and the inner rotor are eccentrically arranged, a gear ring is arranged on the outer surface of the outer rotating cylinder, an outer turbine groove is formed in the outer surface of the inner rotor, and an inner turbine groove matched with the outer turbine groove is formed in the inner surface of the outer rotating cylinder;
the first cutting assembly comprises a first inner circular plate, a first outer circular ring, first cutting strips, a first outer gear ring and an inner gear ring, the first inner circular plate is connected with the first outer circular ring through the first cutting strips, the first inner circular plate and the first cutting strips are positioned in the first outer circular ring, and the first cutting strips are uniformly distributed along the circumference of the outer surface of the first inner circular plate; the first outer gear ring and the inner gear ring are both connected with the first outer ring;
the second cutting assembly comprises a second inner circular plate, a second outer circular ring, a second outer gear ring, an intermediate gear and second cutting strips, the second inner circular plate is connected with the second outer circular ring through the second cutting strips, the second inner circular plate and the second cutting strips are positioned in the second outer circular ring, and the second cutting strips are uniformly distributed along the circumference of the outer surface of the second inner circular plate; the second external gear ring is connected with the first external ring, and the intermediate gear is connected with the second internal ring plate;
the third cutting assembly comprises an inner cylinder, a cutting plate and an outer cylinder, the inner cylinder and the cutting plate are positioned in the outer cylinder, the inner cylinder is connected with the outer cylinder through a plurality of cutting plates, the plurality of cutting plates are uniformly distributed along the circumference of the outer surface of the inner cylinder, and third outer gear rings are arranged above and below the outer surface of the outer cylinder;
the power driving mechanism is connected with the gear ring, the first outer gear ring and the second outer gear ring through the first transmission mechanism, and the rotating directions of the first cutting assembly and the second cutting assembly are opposite; a third outer gear ring above the outer cylinder is meshed with the inner gear ring, and a third outer gear ring below the outer cylinder is meshed with the intermediate gear; the number of the third cutting assemblies is multiple, and the third cutting assemblies are uniformly distributed along the circumference of the outer surface of the intermediate gear; the power driving mechanism is connected with the rolling mechanism through the second transmission mechanism.
2. The garbage disposal apparatus according to claim 1, wherein the power driving mechanism comprises a motor and a motor base, the motor base is connected to the housing, the motor is mounted on the motor base, the first transmission mechanism comprises a driving shaft, a driven shaft, a driving gear, a transmission gear, a first driven gear, a transition gear, and a second driven gear, the motor is connected to the transmission shaft, the driving gear, the transmission gear, and the transition gear are mounted on the driving shaft, the first driven gear is rotatably mounted on the motor base through the driven shaft, the driving gear is engaged with the first driven gear, the first driven gear is engaged with the gear ring, the transmission gear is engaged with the first outer gear ring, and the second driven gear is rotatably mounted on the housing through a rotating shaft, the transition gear is meshed with the second driven gear, and the second driven gear is meshed with the second external gear ring.
3. The garbage disposal device of claim 2, wherein the rolling mechanism comprises two rollers arranged side by side at intervals, the rollers are provided with rolling teeth, the second transmission mechanism comprises a worm gear, a worm and a third driven gear, the third driven gear is mounted at the end of each roller, the two third driven gears are meshed, the worm gear is rotatably mounted on the motor base, the worm is connected with the driven shaft and meshed with the worm gear, and the worm gear is meshed with one of the third driven gears.
4. A waste disposal device as defined in claim 1, further comprising a sound enclosure housing said housing, power drive mechanism, first drive mechanism, and second drive mechanism, said sound enclosure being connected to said housing.
5. A waste disposal device as claimed in claim 1 wherein the roller compaction assembly further comprises a mounting bracket, both ends of the inner rotor being connected to the outer housing by the mounting bracket.
CN202010970637.9A 2020-09-15 2020-09-15 Garbage disposal device Active CN112122316B (en)

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