CN213412614U - Waste treatment equipment - Google Patents

Waste treatment equipment Download PDF

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Publication number
CN213412614U
CN213412614U CN202021551491.6U CN202021551491U CN213412614U CN 213412614 U CN213412614 U CN 213412614U CN 202021551491 U CN202021551491 U CN 202021551491U CN 213412614 U CN213412614 U CN 213412614U
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CN
China
Prior art keywords
spur gear
fixed
shell
roller
cutting
Prior art date
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Active
Application number
CN202021551491.6U
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Chinese (zh)
Inventor
罗元月
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Shaoguan Guangkong Mechanical Transmission Technology Co ltd
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Shaoguan Guangkong Mechanical Transmission Technology Co ltd
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Priority to CN202021551491.6U priority Critical patent/CN213412614U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/62Plastics recycling; Rubber recycling

Abstract

The utility model discloses a waste product treatment equipment, its characterized in that: the automatic ring-pull can cutting machine comprises a support frame which can be fixed on the ground, wherein a shell with a feeding hole and a discharging hole is fixed above the support frame, a screening mechanism capable of filtering large ring-pull cans is arranged above the shell, a funnel is arranged at an inlet of the shell, a shaking mechanism capable of shaking the ring-pull cans is arranged below the funnel, cutting rollers capable of cutting the ring-pull cans into strips are symmetrically inserted in the lower portion of the shell, the lower portion of each cutting roller is positioned in the shell, symmetrically inserted with a cutting roller capable of cutting the ring-pull cans after being cut into sections, and a first driving mechanism capable of driving the shaking mechanism and the screening mechanism to operate and simultaneously drive the cutting rollers and the cutting roller to rotate is arranged on the outer wall of the rear side of the shell.

Description

Waste treatment equipment
Technical Field
The utility model relates to a waste product treatment facility field, in particular to waste product treatment facility.
Background
At present, plastic waste products such as plastic bottles, plastic sheets and the like generally need to be subjected to crushing pretreatment before being recycled, so that the plastic waste products are not only beneficial to storage, but also more space-saving, and are also more beneficial to the production of subsequent plastic particles.
Generally, current and the crushing mode of plastics waste product is cuted by the handheld scissors of operating personnel and is smashed, leads to crushing efficiency lower, cuts through the staff, can cause the injury to the human body, and current waste product treatment facility lacks the effect that can sieve the waste product size simultaneously, can die the equipment card when the not waste product of equidimension when handling.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a waste product treatment equipment.
In order to achieve the above purpose, the utility model adopts the following scheme:
a waste treatment apparatus characterized in that: the device comprises a support frame which can be fixed on the ground, a shell with a feed inlet and a discharge outlet is fixed above the support frame, a screening mechanism which can filter a larger pop can is arranged above the shell, a funnel is arranged at an inlet of the shell, a shaking mechanism which can shake the pop can is arranged below the funnel, cutting rollers which can cut the pop can into strips are symmetrically inserted in the lower part of the shell, cutting rollers which can cut the cut pop can into sections are symmetrically inserted in the lower part of the cutting rollers, a first driving mechanism which can drive the shaking mechanism and the screening mechanism to operate and drive the cutting rollers and the cutting rollers to rotate is arranged on the outer wall of the rear side of the shell, a fixed seat which can be fixed on the ground is arranged on the right side of the shell, a protective shell is fixed at the upper end of the fixed seat, and extruding rollers which can flatten the larger pop can are symmetrically inserted in the protective shell, a conveying mechanism capable of conveying the flattened pop-top can is arranged between the shell and the protective shell, and a second driving mechanism capable of driving the conveying mechanism to operate and driving the extrusion roller to rotate is fixed on the rear side of the outer wall of the protective shell.
Furthermore, the cutting roller comprises a first roller which is inserted in the lower portion of the shell, a spiral cutter is spirally fixed on the outer wall of the first roller, a plurality of notches which can drive the pop-top can to move towards the contact position between the first rollers are formed in the spiral cutter, and a plurality of convex blocks which can be embedded in the notches are fixed on the first roller.
Furthermore, the cutting roller comprises second rollers which are symmetrically inserted below the first rollers and are positioned in the shell, a plurality of section cutters are respectively fixed on the outer walls of the circumferences of the second rollers, and the section cutter edge of one second roller is in butt joint with the section cutter edge of the other second roller.
Further, screening mechanism fixes the slide rail in shell and protective housing top including the symmetry slide rail slant activity is provided with the screening board, screening board incline direction is toward the protective housing slope, the screening board is selected great easy open can and is carried toward the protective housing.
Furthermore, the shaking mechanism comprises a shaking plate movably arranged in the shell, an eccentric shaft rod capable of driving the shaking plate to shake is inserted into the shell at one side adjacent to the shaking plate, and the eccentric shaft rod is connected with the first driving mechanism.
Further, the first driving mechanism comprises a first motor fixing seat fixed on the outer wall of the rear side of the shell, a first motor is fixed on the first motor fixing seat, a first straight gear is fixed at the output end of the first motor, a second straight gear and a third straight gear are respectively fixed at the splicing end of the cutting roller and the splicing end of the cutting roller, a first rolling shaft and a second rolling shaft are respectively fixed at the centers of the second straight gear and the third straight gear, belts are sleeved and connected on the first rolling shaft and the second rolling shaft, the first straight gear is meshed with the second straight gear, a fourth straight gear is fixed at the rear end of the eccentric shaft rod, a fifth straight gear is spliced on the rear surface of the shell between the fourth straight gear and the first straight gear, a lever is hinged between the peripheral side of the fifth straight gear and the screening plate, the fifth spur gear is meshed with the fourth spur gear.
Further, conveying mechanism is including setting up first pivot and the second pivot in the shell and the protective housing respectively the cover is established and is connected with the hold-in range in first pivot and the second pivot end fixing has the sixth spur gear, sixth spur gear and second actuating mechanism are connected.
Furthermore, the second driving mechanism comprises a second motor fixing seat fixed on the rear side wall surface of the protective shell, a second motor is transversely fixed on the second motor fixing seat, a seventh straight gear is fixed at the output end of the second motor, an eighth straight gear is fixed at the inserting end of the squeeze roller, the seventh straight gear is meshed with the sixth straight gear, and the eighth straight gear is meshed with the seventh straight gear.
To sum up, the utility model discloses for its beneficial effect of prior art is:
the above technical scheme is adopted in the utility model, can realize through falling jar class waste product on there is first actuating mechanism driven screening mechanism when needs are handled jar class waste product, fall in the protective housing after making great waste product select, during less waste product falls the funnel in the shell, less waste product drives the shake mechanism through first actuating mechanism and shakes less waste product and carries out the slitting on cutting the roller, carry out the dissection through cutting off the roller behind the slitting, cut off the roller and pass through the first actuating mechanism of actuating mechanism, great waste product drives the squeeze roll through second actuating mechanism earlier and extrudees, then drive conveying mechanism through actuating mechanism, waste product after will flattening is carried on cutting the roller, contrast prior art can remove the manual work from and handle the waste product, can the waste product carry out the screening of size simultaneously, it dies to place the equipment card.
Drawings
Fig. 1 is a perspective view of the present invention.
Fig. 2 is a schematic view of the half-section of the present invention.
Fig. 3 is an exploded view of the present invention.
Fig. 4 is an enlarged schematic view of the point a-1 of fig. 3 according to the present invention.
Description of reference numerals: 1. a support frame; 2. a housing; 3. a funnel; 4. a cutting roller; 5. a cutting roller; 6. a fixed seat; 7. a protective shell; 8. a squeeze roll; 100. a screening mechanism; 200. a shaking mechanism; 300. a first drive mechanism; 400. a conveying mechanism; 500. a second drive mechanism; 101. a slide rail; 102. screening the plate; 201. an eccentric shaft lever; 202. a shaking plate; 301. a first motor fixing seat; 302. a first motor; 303. a first straight gear; 304. a second spur gear; 305. a third spur gear; 306. a first roller; 307. a second roller; 308. a belt; 309. a fourth spur gear; 310. a lever; 311. a fifth spur gear; 401. a first rotating shaft; 402. a second rotating shaft; 403. a synchronous belt; 404. a sixth spur gear; 501. a second motor fixing seat; 502. a second motor; 503. a seventh spur gear; 504. an eighth spur gear; 41. a first roller; 42. a spiral cutter; 43. a notch; 44. a bump; 51. a second roller; 52. a section cutter.
Detailed Description
The following detailed description provides many different embodiments or examples for implementing the invention. Of course, these are merely embodiments or examples and are not intended to be limiting. In addition, repeated reference numbers, such as repeated numbers and/or letters, may be used in various embodiments. These iterations are for simplicity and clarity of describing the present invention and are not intended to represent a particular relationship between the various embodiments and/or configurations discussed.
Furthermore, spatially relative terms, such as "below" … "," below "," inside-out "," above "," upper "and the like, may be used herein to facilitate describing the relationship of one element(s) or feature(s) to another element(s) or feature(s) in the drawings and may encompass different orientations of the device in use or operation and the orientation depicted in the drawings. The devices may be turned to different orientations (rotated 90 degrees or at other orientations) and the spatially relative descriptors used therein should be interpreted accordingly and are not to be construed as limiting the invention, and the terms "first" and "second" are used for descriptive purposes only and are not intended to indicate or imply relative importance or to implicitly indicate the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature.
The invention will be further described with reference to the following description and embodiments in conjunction with the accompanying drawings:
as shown in fig. 1 to 4, a waste treatment device comprises a support frame 1 which can be fixed on the ground, a housing 2 with a feed inlet and a discharge outlet is fixed above the support frame 1, a screening mechanism 100 which can filter a large pop can is arranged above the housing 2, a funnel 3 is arranged at an inlet of the housing 2, a shaking mechanism 200 which can shake the pop can is arranged below the funnel, a cutting roller 4 which can cut the pop can into strips is symmetrically inserted below the housing 2, a cutting roller 5 which can cut the cut pop can into sections is symmetrically inserted below the cutting roller 4 in the housing 2, a first driving mechanism 300 which can drive the shaking mechanism 200 and the screening mechanism 100 to operate and drive the cutting roller 4 and the cutting roller 5 to rotate is arranged on the outer wall of the rear side of the housing, a fixing seat 6 which can be fixed on the ground is arranged on the right side of the housing 2, a protective shell 7 is fixed at the upper end of the fixed seat 6, squeeze rollers 8 capable of flattening a large pop can are symmetrically inserted in the protective shell 7, a conveying mechanism 400 capable of conveying the flattened pop can is arranged between the shell 2 and the protective shell 7, a second driving mechanism 500 capable of driving the conveying mechanism 400 to operate and simultaneously driving the squeeze rollers 8 to rotate is fixed at the rear side of the outer wall of the protective shell 7, when can waste products need to be processed, the can waste products are poured on a screening mechanism 100 with a first driving mechanism driving 300, so that the large waste products are screened and then fall into the protective shell 2, the small waste products fall into a funnel 3 in the shell 1, the small waste products drive a shaking mechanism 200 through the first driving mechanism 300 to shake the small waste products onto a cutting roller 4 for slitting, the slitting roller 5 is used for slitting, the cutting roller 4 and the slitting roller 5 pass through the first driving mechanism 300, great waste product drives squeeze roll 7 through second actuating mechanism 500 earlier and extrudees, and drives conveying mechanism 400 through second actuating mechanism 500 afterwards, and on cutting roller 4 was carried to the waste product after will flattening, contrast prior art can remove the manual work from and handle the waste product, can carry out the screening of size by the waste product simultaneously, and it dies to place the equipment card.
Cutting roller 4 is including the first gyro wheel 41 to the plug-in shell 2 below first gyro wheel 41 outer wall spiral is fixed with helical cutting sword 42 be equipped with a plurality of breach 43 that can drive the easy open can and move toward contact department between the first gyro wheel 41 on the helical cutting sword 42 be fixed with a plurality of can gomphosis at the lug 44 of breach 43 on the first gyro wheel 41, drive helical cutting sword 42 and rotate when rotating through first roll wheel 41, breach 43 removes can type waste product toward contact department between the first gyro wheel 41 this moment for helical cutting sword 42 is to can type waste product slitting, and later breach 43 passes through lug 44 and accomplishes the gomphosis, can cut can type waste product, forms the strip.
The cutting roller 5 is including the symmetry peg graft second gyro wheel 51 in first gyro wheel 41 below position in shell 2 second gyro wheel 51 circumference outer wall is fixed with a plurality of dissection swoves 52 respectively, and the dissection sword 52 edge of a knife of one of them second gyro wheel 51 and the dissection sword 52 edge of a knife of another second gyro wheel 51 butt joint drive dissection sword 52 and rotate when rotating through second gyro wheel 51, can make banding jar class waste product cut into the segmentation.
Screening mechanism 100 is including the symmetry to fix the slide rail 101 in shell 2 and protective housing 7 top slide rail 101 slant activity is provided with screening board 102, screening board 102 incline direction is toward protective housing 7 slope, screening board 102 is selected great easy open can and is carried toward protective housing 7, drives screening board 102 through actuating mechanism 300 and reciprocates along slide rail 101, can make jar type waste product shake the screening.
Shaking mechanism 200 is including the activity setting shaking plate 202 in shell 2, and it has the eccentric shaft pole 201 that can drive shaking plate 202 shake to peg graft on shell 2 to be located one side of neighbouring shaking plate 202, eccentric shaft pole 201 with first actuating mechanism 300 is connected, drives eccentric shaft pole 201 through actuating mechanism 300 and rotates, and the protruding part roof pressure of eccentric shaft pole 201 shakes terminal surface under the plate 202 for shaking plate 202 shakes, can drop the waste product shake on the shaking plate on the cutting roller.
The first driving mechanism 300 of the present invention comprises a first motor fixing base 301 fixed on the outer wall of the rear side of the housing 2, a first motor 302 fixed on the first motor fixing base 301, a first spur gear 303 fixed on the output end of the first motor 302, a second spur gear 304 and a third spur gear 305 fixed on the insertion ends of the cutting roller 5 and the cutting roller 5 respectively, a first roller 306 and a second roller 307 fixed on the centers of the second spur gear 304 and the third spur gear 305 respectively, a belt 308 connected on the first roller 306 and the second roller 307, a fourth spur gear 309 fixed on the rear end of the eccentric shaft 201, a fifth spur gear 311 inserted on the side wall surface of the rear side of the housing 2 between the fourth spur gear 309 and the first spur gear 303, the fifth spur gear 311 engaged with the first spur gear 303, a lever 310 is hinged between one side of the periphery of the fifth spur gear 311 and the screening plate 102, the fifth spur gear 311 is meshed with the fourth spur gear 309, and is driven by a first motor 302 fixed on a first motor fixing seat 301 through power connection, so that the output end of the first motor 302 drives the first spur gear 303 to rotate, the first spur gear 303 drives the fourth spur gear 309 and the fifth spur gear 311 to rotate first when rotating, at the moment, the fourth spur gear 309 rotates to drive an eccentric shaft rod 301 to rotate, the fifth spur gear 311 moves the screening plate 102 through the lever 310, meanwhile, the first spur gear 303 drives the second spur gear 304 to rotate, the second spur gear 304 drives the first roller 306 to rotate, the first roller 306 drives the second roller 307 to rotate through a belt 308, and a plurality of mechanisms can be driven to operate simultaneously.
Conveying mechanism 400 is including setting up first pivot 401 and the second pivot 402 in shell 2 and protective housing 7 respectively the cover is established and is connected with hold-in range 403 on first pivot 401 and the second pivot 402 end fixing has sixth spur gear 404, sixth spur gear 404 and second actuating mechanism 500 are connected, drive second pivot 402 through second actuating mechanism 500 and rotate, and second pivot 402 drives first pivot 401 through hold-in range 403 and rotates this moment, and hold-in range 403 carries the jar type waste product after the extrusion on the cutting roller.
Second actuating mechanism 500 is including fixing the second motor fixing base 501 at the protective housing 7 rear side wall face transversely be fixed with second motor 502 on the second motor fixing base 501 second motor 502 output end is fixed with seventh spur gear 503 squeeze roller 8 grafting end is fixed with eighth spur gear 504, seventh spur gear 503 and the meshing of sixth spur gear 404, eighth spur gear 504 and the meshing of seventh spur gear 503 make second motor 502 output end drive seventh spur gear 503 to rotate through the second motor 502 drive on the power switch-on fixing base second motor fixing base 501, and seventh spur gear 503 drives eighth spur gear 504 and rotates squeeze roller 8, and seventh spur gear 503 drives sixth spur gear 404 and rotates second pivot 402 simultaneously, can drive different mechanism functions simultaneously.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above, and it should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the description in the above embodiments and the description is only illustrative of the principles of the present invention, and the present invention can be modified in various ways without departing from the spirit and scope of the present invention, and these modifications and changes fall into the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. A waste treatment apparatus characterized in that: the device comprises a support frame (1) which can be fixed on the ground, a shell (2) with a feed inlet and a discharge outlet is fixed above the support frame (1), a screening mechanism (100) capable of filtering larger pop cans is arranged above the shell (2), a funnel (3) is arranged at an inlet of the shell (2), a shaking mechanism (200) capable of shaking the pop cans is arranged below the funnel, cutting rollers (4) capable of cutting the pop cans into strips are symmetrically inserted in the lower part of the shell (2), cutting rollers (5) capable of cutting the cut pop cans into sections are symmetrically inserted in the shell (2) below the cutting rollers (4), and a first driving mechanism (300) capable of driving the shaking mechanism (200) and the screening mechanism (100) to operate and simultaneously drive the cutting rollers (4) and the cutting rollers (5) to rotate is arranged on the outer wall of the rear side of the shell, shell (2) right side is equipped with can fix subaerial fixing base (6) upper end is fixed with protective housing (7) symmetry is pegged graft in protective housing (7) and is had squeeze roll (8) that can flatten great easy open can be equipped with between shell (2) and protective housing (7) and carry conveying mechanism (400) of flattening back easy open can be fixed with can drive conveying mechanism (400) function and drive squeeze roll (8) pivoted second actuating mechanism (500) simultaneously.
2. The waste treatment equipment according to claim 1, characterized in that the cutting roller (4) comprises a first roller (41) which is inserted in the lower part of the shell (2), a spiral cutter (42) is spirally fixed on the outer wall of the first roller (41), a plurality of notches (43) which can drive the pop cans to move towards the contact part between the first rollers (41) are arranged on the spiral cutter (42), and a plurality of lugs (44) which can be embedded in the notches (43) are fixed on the first rollers (41).
3. The waste treatment plant according to claim 2, characterized in that the cutting roller (5) comprises a second roller (51) symmetrically inserted below the first roller (41) and positioned in the housing (2), a plurality of cutting knives (52) are respectively fixed on the outer circumferential wall of the second roller (51), wherein the cutting knife (52) of one second roller (51) is butted with the cutting knife (52) of the other second roller (51).
4. The waste treatment equipment of claim 3, characterized in that the screening mechanism (100) comprises slide rails (101) symmetrically fixed above the housing (2) and the protective housing (7), a screening plate (102) is obliquely and movably arranged on the slide rails (101), the screening plate (102) is inclined towards the protective housing (7), and the screening plate (102) screens out larger cans and can convey the cans to the protective housing (7).
5. The apparatus for treating waste according to claim 1, wherein the shaking mechanism (200) comprises a shaking plate (202) movably disposed in the housing (2), an eccentric shaft (201) capable of shaking the shaking plate (202) is inserted into the housing (2) at a side adjacent to the shaking plate (202), and the eccentric shaft (201) is connected to the first driving mechanism (300).
6. The waste treatment apparatus according to claim 5, wherein the first driving mechanism (300) comprises a first motor fixing base (301) fixed on the outer wall of the rear side of the housing (2), a first motor (302) is fixed on the first motor fixing base (301), a first spur gear (303) is fixed at the output end of the first motor (302), a second spur gear (304) and a third spur gear (305) are respectively fixed at the insertion ends of the cutting roller (5) and the cutting roller (5), a first rolling shaft (306) and a second rolling shaft (307) are respectively fixed at the centers of the second spur gear (304) and the third spur gear (305), a belt rolling shaft (308) is sleeved on the first rolling shaft (306) and the second rolling shaft (307), the first spur gear (303) is engaged with the second spur gear (304), a fourth spur gear (309) is arranged behind the eccentric shaft (201), a fifth spur gear (311) is inserted in a wall surface on the rear side of the shell (2) between the fourth spur gear (309) and the first spur gear (303), the fifth spur gear (311) is meshed with the first spur gear (303), a lever (310) is hinged between the periphery side of the fifth spur gear (311) and the screening plate (102), and the fifth spur gear (311) is meshed with the fourth spur gear (309).
7. The waste treatment equipment according to claim 1, wherein the conveying mechanism (400) comprises a first rotating shaft (401) and a second rotating shaft (402) which are respectively arranged in the shell (2) and the protective shell (7), a synchronous belt (403) is sleeved on the first rotating shaft (401) and the second rotating shaft (402), a sixth spur gear (404) is fixed at the end part of the second rotating shaft (402), and the sixth spur gear (404) is connected with the second driving mechanism (500).
8. The waste treatment equipment according to claim 7, wherein the second driving mechanism (500) comprises a second motor fixing seat (501) fixed on the rear side wall surface of the protective shell (7), a second motor (502) is transversely fixed on the second motor fixing seat (501), a seventh spur gear (503) is fixed at the output end of the second motor (502), an eighth spur gear (504) is fixed at the inserting end of the squeezing roller (8), the seventh spur gear (503) is meshed with the sixth spur gear (404), and the eighth spur gear (504) is meshed with the seventh spur gear (503).
CN202021551491.6U 2020-07-30 2020-07-30 Waste treatment equipment Active CN213412614U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021551491.6U CN213412614U (en) 2020-07-30 2020-07-30 Waste treatment equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021551491.6U CN213412614U (en) 2020-07-30 2020-07-30 Waste treatment equipment

Publications (1)

Publication Number Publication Date
CN213412614U true CN213412614U (en) 2021-06-11

Family

ID=76255535

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021551491.6U Active CN213412614U (en) 2020-07-30 2020-07-30 Waste treatment equipment

Country Status (1)

Country Link
CN (1) CN213412614U (en)

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