CN109230048B - Solid waste treatment device - Google Patents

Solid waste treatment device Download PDF

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Publication number
CN109230048B
CN109230048B CN201811292370.1A CN201811292370A CN109230048B CN 109230048 B CN109230048 B CN 109230048B CN 201811292370 A CN201811292370 A CN 201811292370A CN 109230048 B CN109230048 B CN 109230048B
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China
Prior art keywords
wall
annular
clamping
ring
hole
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CN201811292370.1A
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CN109230048A (en
Inventor
商庆尧
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Hanzhong Runli Recycling Technology Co.,Ltd.
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Taizhou Yinzi Intellectual Property Service Co Ltd
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Publication of CN109230048A publication Critical patent/CN109230048A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/04Refuse receptacles; Accessories therefor with removable inserts
    • B65F1/06Refuse receptacles; Accessories therefor with removable inserts with flexible inserts, e.g. bags or sacks
    • B65F1/068Refuse receptacles; Accessories therefor with removable inserts with flexible inserts, e.g. bags or sacks with means aiding the removal of the flexible insert
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65FGATHERING OR REMOVAL OF DOMESTIC OR LIKE REFUSE
    • B65F1/00Refuse receptacles; Accessories therefor
    • B65F1/14Other constructional features; Accessories
    • B65F1/141Supports, racks, stands, posts or the like for holding refuse receptacles
    • B65F1/1415Supports, racks, stands, posts or the like for holding refuse receptacles for flexible receptables, e.g. bags, sacks

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Processing Of Solid Wastes (AREA)
  • Refuse Receptacles (AREA)

Abstract

The invention relates to a solid waste treatment device, which comprises a garbage outer barrel, a bagging device and a cylindrical garbage bag, wherein the garbage outer barrel is provided with a bag inlet and a bag outlet; the garbage outer barrel comprises an outer barrel body, a left vertical plate and a left rack; the bagging device comprises an upper lantern ring, a clamping outer ring, a clamping inner ring, a driving screw rod, a driving circular ring, a longitudinal shaft input device, a transverse shaft input device and a second pressure spring. A method of using a solid waste treatment plant comprising the steps of: step 1, sleeving a cylindrical garbage bag; step 2, clamping the outer ring and the inner ring: step 2.1, unlocking the left rack; step 2.2, the clamping inner ring goes upward; step 2.3, carrying out primary clamping on the outer ring; step 2.4, further clamping the clamping inner ring; and 2.5, locking the left rack. The solid waste treatment device is convenient to operate; garbage can be conveniently put into the cylindrical garbage bag through the interior of the lantern ring body; to a certain extent, the overflow of refuse from the opening can be avoided.

Description

Solid waste treatment device
Technical Field
The invention relates to the technical field of environment-friendly equipment, in particular to a solid waste treatment device and a using method thereof.
Background
Garbage cans are common appliances in daily life and learning. The product is especially necessary in public places, particularly schools, hospitals, office places and the like. The existing garbage can is very troublesome to arrange in a sleeving manner, the garbage bag cannot be well attached to the garbage can, and the garbage can is not attractive and affects use.
Therefore, it is necessary to design a convenient solid waste disposal device, which is convenient for sleeving and taking out the garbage bag.
Disclosure of Invention
In order to solve the technical problems in the background art, the invention provides a solid waste treatment device, wherein the clamping inner ring clamps the elastic rubber band of the cylindrical garbage bag, and effective regulation is carried out through double clamping, so that the cylindrical garbage bag is prevented from falling; furthermore, the inner wall of the cylindrical garbage bag can be clamped only by the clamping outer ring; garbage can be conveniently put into the cylindrical garbage bag through the interior of the lantern ring body; the overflow of the trash from the opening can be avoided.
The technical scheme adopted by the invention for solving the technical problems is as follows:
a solid waste treatment device comprises a garbage outer barrel, a bagging device and a cylindrical garbage bag;
the rubbish urceolus includes:
the outer cylinder body is in a hollow cylindrical shape with an opening at the upper end;
the left vertical plate is arranged on the left side of the upper edge of the outer barrel body, a left jack is arranged on the upper end face of the left vertical plate in a downward direction, and an input transverse shaft is formed on the left end face of the wall of the left jack in a rightward mode;
the left rack is longitudinally inserted into the front half part of the left insertion hole, a rack inner hole is formed in the left rack, a locking side hole is formed in the left side of the lower end of the rack inner hole, a locking sliding block is arranged on the left side of the lower end of the rack inner hole, the left end of the locking sliding block penetrates through the locking side hole and abuts against the left side of the inner wall of the left insertion hole, a sliding block upper plate is arranged on the right side of the upper end face of the locking sliding block, a first pressure spring abutting against the locking sliding block is further arranged on the right side of the lower end of the rack inner hole, a rotating cylinder is further inserted into the upper end of the rack inner hole, an eccentric rotating disc is arranged at the center of the;
the bagging apparatus includes:
the upper lantern ring comprises a lantern ring body fixed on the right side of the left vertical plate, an annular lower groove arranged on the lower edge of the lantern ring body, a rotating insertion hole which is circumferentially and uniformly distributed at the upper end of the annular lower groove and communicated with the annular lower groove, an annular upper cavity which is arranged in the lantern ring body and communicated with the upper end of the rotating insertion hole, a transmission left cavity arranged on the left side of the annular upper cavity, and a communication left hole which is arranged on the left side of the transmission left cavity and communicated with the left insertion hole, and further comprises a lower cylindrical barrel arranged below the inner edge of the annular lower groove, a longitudinal limiting groove longitudinally arranged on the outer wall of the lower cylindrical barrel, an annular lower bottom arranged on the lower edge of the outer wall of the lower cylindrical barrel, a supporting cylindrical barrel arranged on the outer edge of the outer end face of the annular lower bottom, and a limiting clamping block arranged;
the clamping outer ring comprises an outer ring body which is sleeved on the outer wall of the supporting cylinder in a sliding way, an outer ring longitudinal groove which is arranged on the inner wall of the outer ring body and corresponds to the limiting clamping block in an inserting way, perforated lugs which are uniformly distributed on the inner wall of the outer ring body in the circumferential direction and correspond to the rotating jacks one by one, and a conical outer wall which is arranged on the upper half part of the outer wall of the outer ring body and is narrow at the top and wide at the bottom;
the clamping inner ring comprises an inner ring body which is sleeved on the outer wall of the lower cylindrical barrel in a sliding way, an inner ring plug which is arranged on the inner wall of the inner ring body and is in splicing fit with the longitudinal limiting groove, and threaded jacks which are uniformly distributed on the inner ring body in the circumferential direction and correspond to the lugs with holes one by one;
the driving screw comprises screw bodies which correspond to the threaded jacks one by one and are in threaded connection, the lower ends of the screw bodies penetrate through the corresponding lugs with holes and then abut against the upper end surface of the annular lower bottom, the upper ends of the screw bodies penetrate through the corresponding rotary jacks and then are inserted into the annular upper cavity, and driven rotating wheels are further formed on the parts of the screw bodies, which are positioned in the annular upper cavity;
the driving circular ring is rotatably arranged in the annular upper cavity, anti-skid stripes are uniformly distributed on the inner wall and the outer wall of the driving circular ring in the circumferential direction respectively, and the inner wall of the driving circular ring is in transmission connection with the driven rotating wheel;
the longitudinal axis input device comprises a longitudinal rotating shaft which is rotatably arranged in the transmission left cavity, a driving rotating wheel which is arranged on the longitudinal rotating shaft and is in transmission connection with the outer wall of the driving circular ring, and a longitudinal axis conical wheel which is coaxially arranged on the driving rotating wheel;
the transverse shaft input device comprises a left gear which is rotatably inserted on the input transverse shaft and is in transmission connection with the left rack, a transverse rotating shaft which is arranged at the right end of the left gear and penetrates through the left hole, and a transverse shaft conical pulley which is arranged at the right end of the transverse rotating shaft and is in transmission connection with the longitudinal shaft conical pulley;
the second pressure spring is wound in the annular cavity between the lower cylindrical barrel and the supporting cylinder, the upper end of the second pressure spring is abutted with the lug with the hole, and the lower end of the second pressure spring is abutted with the annular lower bottom;
the upper end of the tubular garbage bag is provided with an opening, and the upper end of the tubular garbage bag is provided with an elastic rubber band for tightening the bag opening.
Furthermore, the lower edge of the lantern ring body is provided with concentric circular anti-skid lines at equal intervals from inside to outside.
A method of using a solid waste treatment plant comprising the steps of:
step 1, sleeving a cylindrical garbage bag:
the clamping outer ring and the clamping inner ring are positioned at a low position in a normal state;
sleeving the upper end of the tubular garbage bag with the clamping outer ring from bottom to top, wherein the elastic rubber band of the tubular garbage bag contracts to drive the opening of the tubular garbage bag to abut against the outer side of the screw rod body;
step 2, clamping the outer ring and the inner ring:
step 2.1, unlocking the left rack:
the rotating cylinder and the eccentric turntable are rotated, the eccentric turntable acts on the upper slide block plate to drive the upper slide block plate to move rightwards, and the locking slide block is separated from the left side of the inner wall of the left jack to be unlocked;
step 2.2, the clamping inner ring goes upwards:
pulling the left rack upwards to drive the left gear, the transverse rotating shaft and the transverse shaft conical pulley to rotate;
the transverse shaft conical pulley drives the longitudinal shaft conical pulley, the longitudinally arranged rotating shaft and the driving rotating wheel to rotate;
the driving rotating wheel drives the driving circular ring to rotate;
the driving circular ring drives the driven rotating wheel and the screw rod body to rotate;
the screw rod body finally drives the inner ring body and the inner ring plug to move upwards along the longitudinal limiting groove;
step 2.3, preliminary clamping of the outer ring:
the second pressure spring drives the clamping outer ring to move upwards along with the clamping inner ring until the clamping outer ring is abutted against the lower end face of the lantern ring body so as to preliminarily clamp the bag wall of the cylindrical garbage bag;
step 2.4, further clamping of the clamping inner ring:
continuously driving the clamping inner ring to move upwards, moving the clamping inner ring into the annular lower groove and clamping the elastic rubber band of the cylindrical garbage bag;
step 2.5, locking the left rack:
rotate rotation cylinder, eccentric rotating disc, first pressure spring acts on the slider upper plate and makes slider upper plate, locking slider walk on the left, the locking slider with the jack inner wall butt and then the locking is put to a left side.
Further, the method also comprises a step 3 of resetting:
unlocking the left rack in the step 2.1, and then pressing down the left rack to drive the left gear, the transverse rotating shaft and the transverse shaft conical pulley to rotate in the direction opposite to the direction in the step 2.2;
the transverse shaft conical pulley drives the longitudinal shaft conical pulley, the longitudinally arranged rotating shaft and the driving rotating wheel to rotate in the direction opposite to the direction in the step 2.2;
the driving rotating wheel drives the driving circular ring to rotate in the direction opposite to the direction in the step 2.2;
the driving circular ring drives the driven rotating wheel and the screw body to rotate in the direction opposite to the direction in the step 2.2;
the screw rod body finally drives the inner ring body and the inner ring plug to move downwards along the longitudinal limiting groove;
and the clamping inner ring and the clamping outer ring reset.
The invention has the beneficial effects that:
according to the solid waste treatment device, in a normal state, namely when the clamping inner ring and the clamping outer ring are at low positions, the cylindrical garbage bag is sleeved on the bagging device, then the left rack is pulled upwards to lift the clamping inner ring and the clamping outer ring, the clamping outer ring clamps the bag wall of the cylindrical garbage bag, the clamping inner ring clamps the elastic rubber band of the cylindrical garbage bag, effective regulation is carried out through double clamping, and the cylindrical garbage bag is prevented from falling.
Furthermore, the solid waste treatment device is convenient to operate; furthermore, when the density of the garbage to be loaded is low, even if the cylindrical garbage bag is fully filled with the garbage, the weight is light, and at the moment, the inner wall of the cylindrical garbage bag can be clamped only by the clamping outer ring; the solid waste treatment apparatus can be flexibly operated according to the use state.
The solid waste treatment device can conveniently place garbage into the cylindrical garbage bag through the interior of the lantern ring body, when the garbage is close to a full state, the left rack can be pressed down to lower the clamping inner ring and the clamping outer ring so as to release the cylindrical garbage bag and the garbage in the bag, and the elastic rubber band of the cylindrical garbage bag and the garbage in the bag is propped open under the action of gravity and then falls.
Further, the tube-shape disposal bag can avoid rubbish to overflow from the opening to a certain extent: release under the condition that rubbish is piled up the tube-shape disposal bag completely the tube-shape disposal bag, when rubbish falls in tube-shape disposal bag and the bag, elasticity rubber band contracts the opening, can avoid rubbish to scatter out from the sack to a certain extent.
Drawings
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a front view of an embodiment of the solid waste treatment apparatus.
Fig. 2 is a sectional view of an embodiment of the solid waste treatment apparatus.
Fig. 3 is an enlarged schematic view of an embodiment of portion a of fig. 2.
Fig. 4 is an enlarged schematic view of another embodiment of portion a of fig. 2.
Fig. 5 is a sectional view taken along line B-B of fig. 2.
FIG. 6 is a cross-sectional view of one embodiment of the left rack.
Fig. 7 is a cross-sectional view of another embodiment of the left rack.
In the figure:
1. the garbage outer barrel comprises a garbage outer barrel body, 11, 12, a left vertical plate, 12a, a left jack, 12b, an input transverse shaft, 13, a left rack, 13a, a rack inner hole, 13b, a locking side hole, 13c, a locking sliding block, 13d, a sliding block upper plate, 13e, a first pressure spring, 13f, a rotating cylinder and 13g, an eccentric rotating disc;
2. the bag-sleeving device comprises a bag-sleeving device, 21, an upper lantern ring, 21a, a lantern ring body, 21b, an annular lower groove, 21c, a rotating insertion hole, 21d, an annular upper cavity, 21e, a transmission left cavity, 21f, a communication left hole, 21g, a lower cylindrical barrel, 21h, a longitudinal limiting groove, 21i, an annular lower bottom, 21j, a supporting cylinder, 21k, a limiting fixture block, 22, a clamping outer ring, 22a outer ring body, 22b, an outer ring longitudinal groove, 22c, a perforated lug, 22d, a conical outer wall, 23, a clamping inner ring, 23a inner ring body, 23b, an inner ring plug, 23c, a threaded insertion hole, 24, a driving screw, 24a screw body, 24b, a driven rotating wheel, 25, a driving circular ring, 26, a longitudinal axis input device, 26a longitudinal rotating shaft, 26b driving rotating wheel, 26c longitudinal axis conical wheel, 27, a transverse axis input device, 27a left gear, 27b, a transverse rotating shaft, 27c, a transverse axis conical wheel and 28, a second pressure spring;
3. a cylindrical garbage bag 31, an elastic rubber band.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
A solid waste treatment device comprises a garbage outer barrel 1, a bagging device 2 and a cylindrical garbage bag 3;
the garbage outer barrel 1 comprises:
an outer cylinder body 11 in the shape of a hollow cylinder with an open upper end;
the left vertical plate 12 is arranged on the left side of the upper edge of the outer barrel body 11, a left insertion hole 12a is formed in the upper end face of the left vertical plate 12 in a downward mode, and an input transverse shaft 12b is formed in the left end face of the hole wall of the left insertion hole 12a in a rightward mode;
a left rack 13 longitudinally inserted into the front half of the left insertion hole 12a, a rack inner hole 13a is formed in the left rack 13, a locking side hole 13b is formed in the left side of the lower end of the rack inner hole 13a, a locking slider 13c is arranged on the left side of the lower end of the rack inner hole 13a, the left end of the locking slider 13c penetrates through the locking side hole 13b and abuts against the left side of the inner wall of the left insertion hole 12a, a slider upper plate 13d is arranged on the right side of the upper end face of the locking slider 13c, a first pressure spring 13e abutting against the locking slider 13c is further arranged on the right side of the lower end of the rack inner hole 13a, a rotating cylinder 13f is further inserted into the upper end of the rack inner hole 13a, an eccentric rotating disc 13g is arranged at the center of the lower end face of the rotating cylinder 13f, and;
the bagging apparatus 2 comprises:
the upper lantern ring 21 comprises a lantern ring body 21a fixed on the right side of the left vertical plate 12, an annular lower groove 21b arranged on the lower edge of the lantern ring body 21a, a rotary insertion hole 21c uniformly distributed at the upper end of the annular lower groove 21b in the circumferential direction and communicated with the annular lower groove 21b, an annular upper cavity 21d arranged in the lantern ring body 21a and communicated with the upper end of the rotary insertion hole 21c, a transmission left cavity 21e arranged on the left side of the annular upper cavity 21d, a communication left hole 21f arranged on the left side of the transmission left cavity 21e and communicated with the left insertion hole 12a, a lower cylindrical barrel 21g arranged below the inner edge of the annular lower groove 21b, a longitudinal limiting groove 21h longitudinally arranged on the outer wall of the lower cylindrical barrel 21g, an annular lower bottom 21i arranged on the lower edge of the outer wall of the lower cylindrical barrel 21g, a support cylinder 21j arranged on the outer edge of the upper end face of the annular lower bottom 21i, a support cylinder 21j, A limiting fixture block 21k arranged on the outer wall of the supporting cylinder 21 j;
the clamping outer ring 22 comprises an outer ring body 22a which is slidably sleeved on the outer wall of the supporting cylinder 21j, an outer ring longitudinal groove 22b which is arranged on the inner wall of the outer ring body 22a and corresponds to the limiting clamping block 21k in an inserting manner, perforated lugs 22c which are uniformly distributed on the inner wall of the outer ring body 22a in the circumferential direction and correspond to the rotating insertion holes 21c one by one, and a conical outer wall 22d which is arranged on the upper half part of the outer wall of the outer ring body 22a and is narrow at the top and wide at the bottom;
the clamping inner ring 23 comprises an inner ring body 23a which is sleeved on the outer wall of the lower cylindrical barrel 21g in a sliding way, an inner ring plug 23b which is arranged on the inner wall of the inner ring body 23a and is in plug-in fit with the longitudinal limiting groove 21h, and threaded jacks 23c which are uniformly distributed on the inner ring body 23a in the circumferential direction and correspond to the lugs 22c with holes one to one;
the driving screw 24 comprises screw bodies 24a which are in one-to-one correspondence with the thread insertion holes 23c and are in threaded fit, the lower ends of the screw bodies 24a penetrate through the corresponding perforated lugs 22c and then abut against the upper end surface of the annular lower base 21i, the upper ends of the screw bodies 24a penetrate through the corresponding rotary insertion holes 21c and then are inserted into the annular upper cavity 21d, and driven rotating wheels 24b are further formed on the parts, located in the annular upper cavity 21d, of the screw bodies 24 a;
the driving circular ring 25 is rotatably arranged in the annular upper cavity 21d, anti-skid stripes are uniformly distributed on the inner wall and the outer wall of the driving circular ring 25 in the circumferential direction respectively, and the inner wall of the driving circular ring 25 is in transmission connection with the driven rotating wheel 24 b;
the longitudinal shaft input device 26 comprises a longitudinal rotating shaft 26a which is rotatably arranged in the transmission left cavity 21e, a driving rotating wheel 26b which is arranged on the longitudinal rotating shaft 26a and is in transmission connection with the outer wall of the driving circular ring 25, and a longitudinal shaft conical pulley 26c which is coaxially arranged on the driving rotating wheel 26 b;
the transverse shaft input device 27 comprises a left gear 27a which is rotatably inserted on the input transverse shaft 12b and is in transmission connection with the left rack 13, a transverse rotating shaft 27b which is arranged at the right end of the left gear 27a and penetrates through the communicating left hole 21f, and a transverse shaft conical pulley 27c which is arranged at the right end of the transverse rotating shaft 27b and is in transmission connection with the longitudinal shaft conical pulley 26 c;
the second pressure spring 28 is wound in an annular cavity between the lower cylindrical barrel 21g and the supporting cylinder 21j, the upper end of the second pressure spring 28 is abutted with the lug 22c with the hole, and the lower end of the second pressure spring 28 is abutted with the annular lower bottom 21 i;
the upper end of the cylindrical garbage bag 3 is provided with an opening, and the upper end of the cylindrical garbage bag 3 is provided with an elastic rubber band 31 for tightening the opening of the bag.
Further, the lower edge of the lantern ring body 21a is provided with concentrically arranged circular anti-skid grains at equal intervals from inside to outside.
As a further embodiment, the front end face of the outer cylinder body 11 is provided with an opening and is hinged with a hinged front door, so that the cylindrical garbage bag falling into the lower end face of the outer cylinder body 11 and garbage in the bag can be taken out from the interior of the lantern ring body 21a and can also be taken out from the opening.
As a further embodiment, a lower storage bin is arranged on the front lower bottom surface of the outer barrel body 11, and a plurality of folded and flat tubular garbage bags can be placed for standby.
As a further embodiment, the lower end surface of the driving ring 25 is provided with a ring of annular convex edge, and the annular convex edge is coated with lubricating oil, so as to reduce the running friction force of the driving ring, so that the driving wheel 26b can smoothly drive the driving ring 25 to rotate.
A method of using a solid waste treatment plant comprising the steps of:
step 1, sleeving a cylindrical garbage bag 3:
the clamping outer ring 22 and the clamping inner ring 23 are normally located at a low position;
sleeving the upper end of the cylindrical garbage bag 3 on the clamping outer ring 22 from bottom to top, and enabling the elastic rubber band 31 of the cylindrical garbage bag 3 to contract to drive the bag opening of the cylindrical garbage bag 3 to abut against the outer side of the screw rod body 24 a;
step 2, clamping the outer ring 22 and the inner ring 23:
step 2.1, unlocking the left rack 13:
the rotating cylinder 13f and the eccentric rotary table 13g are rotated, the eccentric rotary table 13g acts on the upper slide block plate 13d to drive the upper slide block plate to move rightwards, and the locking slide block 13c is separated from the left side of the inner wall of the left insertion hole 12a to be unlocked;
step 2.2, the clamping inner ring 23 moves upwards:
the left rack 13 is pulled upwards to drive the left gear 27a, the transverse rotating shaft 27b and the transverse conical pulley 27c to rotate;
the transverse axis conical pulley 27c drives the longitudinal axis conical pulley 26c, the longitudinal rotating shaft 26a and the driving rotating wheel 26b to rotate;
the driving rotating wheel 26b drives the driving ring 25 to rotate;
the driving ring 25 drives the driven rotating wheel 24b and the screw body 24a to rotate;
the screw body 24a finally drives the inner ring body 23a and the inner ring plug 23b to move upwards along the longitudinal limiting groove 21 h;
step 2.3, preliminary clamping of the clamping outer ring 22:
the second pressure spring 28 drives the clamping outer ring 22 to move upwards along with the clamping inner ring 23 until the clamping outer ring 22 is abutted against the lower end face of the lantern ring body 21a so as to preliminarily clamp the bag wall of the cylindrical garbage bag 3;
step 2.4, further clamping of the clamping inner ring 23:
continuing to drive the clamping inner ring 23 to move upwards, moving the clamping inner ring 23 into the annular lower groove 21b and clamping the elastic rubber band 31 of the cylindrical garbage bag 3;
step 2.5, locking the left rack 13:
the rotating cylinder 13f and the eccentric rotary table 13g are rotated, the first pressure spring 13e acts on the upper sliding block plate 13d to enable the upper sliding block plate 13d and the locking sliding block 13c to move left, and the locking sliding block 13c is abutted to the inner wall of the left insertion hole 12a to be locked.
Further, the method also comprises a step 3 of resetting:
unlocking the left rack 13 according to the step 2.1, and then pressing down the left rack 13 to drive the left gear 27a, the transverse rotating shaft 27b and the transverse conical pulley 27c to rotate in the direction opposite to the step 2.2;
the transverse axis conical pulley 27c drives the longitudinal axis conical pulley 26c, the longitudinal rotating shaft 26a and the driving rotating wheel 26b to rotate in the direction opposite to the direction in the step 2.2;
the driving wheel 26b drives the driving ring 25 to rotate in the direction opposite to the direction in step 2.2;
the driving ring 25 drives the driven rotating wheel 24b and the screw body 24a to rotate in the direction opposite to the direction in the step 2.2;
the screw body 24a finally drives the inner ring body 23a and the inner ring plug 23b to move downwards along the longitudinal limiting groove 21 h;
the clamping inner ring 23 and the clamping outer ring 22 are reset.
In light of the foregoing description of the preferred embodiment of the present invention, many modifications and variations will be apparent to those skilled in the art without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.

Claims (2)

1. A solid waste treatment apparatus characterized by: comprises a garbage outer cylinder (1), a bagging device (2) and a cylindrical garbage bag (3);
the garbage outer cylinder (1) comprises:
an outer cylinder body (11) in the shape of a hollow cylinder with an open upper end;
the left vertical plate (12) is arranged on the left side of the upper edge of the outer barrel body (11), a left insertion hole (12a) is formed in the upper end face of the left vertical plate (12) in a downward mode, and an input transverse shaft (12b) is formed in the left end face of the hole wall of the left insertion hole (12a) in a rightward mode;
put rack (13) on a left side, establish along vertically inserting put the first half of jack (12a) on a left side, put rack (13) inside and be equipped with rack hole (13a) on a left side, rack hole (13a) lower extreme left side is equipped with locking side opening (13b), rack hole (13a) lower extreme left side is equipped with locking slider (13c), locking slider (13c) left end pass locking side opening (13b) and with jack (12a) inner wall left side butt is put on a left side, locking slider (13c) up end right side is equipped with slider upper plate (13d), rack hole (13a) lower extreme right side still be equipped with first pressure spring (13e) of locking slider (13c) butt, rack hole (13a) upper end still is inserted and is equipped with rotation cylinder (13f), it is equipped with eccentric rotary table (13g) to rotate cylinder (13f) lower terminal surface center, the eccentric rotary table (13g) is abutted against the left side of the sliding block upper plate (13 d);
the bagging device (2) comprises:
the upper lantern ring (21) comprises a lantern ring body (21a) fixed on the right side of the left vertical plate (12), an annular lower groove (21b) formed in the lower edge of the lantern ring body (21a), a rotary insertion hole (21c) circumferentially and uniformly distributed at the upper end of the annular lower groove (21b) and communicated with the annular lower groove (21b), an annular upper cavity (21d) formed in the lantern ring body (21a) and communicated with the upper end of the rotary insertion hole (21c), a transmission left cavity (21e) formed in the left side of the annular upper cavity (21d), a communication left hole (21f) formed in the left side of the transmission left cavity (21e) and communicated with the left insertion hole (12a), and the upper lantern ring (21) further comprises a lower cylindrical barrel (21g) formed in the annular lower groove (21b) along the lower side, and a longitudinal limiting groove (21h) formed in the outer wall of the lower cylindrical barrel (21g) along the longitudinal direction, The lower edge of the outer wall of the lower cylindrical barrel (21g) is provided with an annular lower bottom (21i), the outer edge of the upper end surface of the annular lower bottom (21i) is provided with a supporting cylinder (21j), and the outer wall of the supporting cylinder (21j) is provided with a limiting clamping block (21 k);
the clamping outer ring (22) comprises an outer ring body (22a) which is slidably sleeved on the outer wall of the supporting cylinder (21j), an outer ring longitudinal groove (22b) which is arranged on the inner wall of the outer ring body (22a) and corresponds to the limiting clamping block (21k) in an inserting manner, perforated lugs (22c) which are uniformly distributed on the inner wall of the outer ring body (22a) in the circumferential direction and correspond to the rotating insertion holes (21c) one by one, and a conical outer wall (22d) which is arranged on the upper half part of the outer wall of the outer ring body (22a) and is narrow at the top and wide at the bottom;
the clamping inner ring (23) comprises an inner ring body (23a) which is slidably sleeved on the outer wall of the lower cylindrical barrel (21g), an inner ring plug (23b) which is arranged on the inner wall of the inner ring body (23a) and is in plug fit with the longitudinal limiting groove (21h), and threaded jacks (23c) which are uniformly distributed on the inner ring body (23a) in the circumferential direction and correspond to the lugs (22c) with holes one to one;
the driving screw rod (24) comprises screw rod bodies (24a) which correspond to the thread insertion holes (23c) in a one-to-one mode and are in threaded fit, the lower end of each screw rod body (24a) penetrates through the corresponding lug with the hole (22c) and then abuts against the upper end face of the annular lower base (21i), the upper end of each screw rod body (24a) penetrates through the corresponding rotary insertion hole (21c) and then is inserted into the annular upper cavity (21d), and a driven rotating wheel (24b) is further formed in the part, located in the annular upper cavity (21d), of each screw rod body (24 a);
the driving circular ring (25) is rotatably arranged in the annular upper cavity (21d), anti-skid stripes are uniformly distributed on the inner wall and the outer wall of the driving circular ring (25) in the circumferential direction respectively, and the inner wall of the driving circular ring (25) is in transmission connection with the driven rotating wheel (24 b);
a circle of annular convex edge is arranged on the lower end face of the driving circular ring (25), and lubricating oil is coated on the annular convex edge;
the longitudinal shaft input device (26) comprises a longitudinal rotating shaft (26a) which is rotatably arranged in the transmission left cavity (21e), a driving rotating wheel (26b) which is arranged on the longitudinal rotating shaft (26a) and is in transmission connection with the outer wall of the driving circular ring (25), and a longitudinal shaft conical wheel (26c) which is coaxially arranged on the driving rotating wheel (26 b);
the transverse shaft input device (27) comprises a left gear (27a) which is rotatably inserted on the input transverse shaft (12b) and is in transmission connection with the left rack (13), a transverse rotating shaft (27b) which is arranged at the right end of the left gear (27a) and penetrates through a communicating left hole (21f), and a transverse shaft conical pulley (27c) which is arranged at the right end of the transverse rotating shaft (27b) and is in transmission connection with the longitudinal shaft conical pulley (26 c);
the second pressure spring (28) is wound in an annular cavity between the lower cylindrical barrel (21g) and the support cylinder (21j), the upper end of the second pressure spring (28) is abutted with the lug (22c) with the hole, and the lower end of the second pressure spring (28) is abutted with the annular lower bottom (21 i);
the garbage bag is characterized in that an opening is formed in the upper end of the cylindrical garbage bag (3), and an elastic rubber band (31) used for tightening the bag opening is arranged at the upper end of the cylindrical garbage bag (3).
2. A solid waste treatment plant according to claim 1, wherein: the lower edge of the lantern ring body (21a) is provided with concentrically arranged circular anti-skid grains at equal intervals from inside to outside.
CN201811292370.1A 2018-11-01 2018-11-01 Solid waste treatment device Active CN109230048B (en)

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Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN204416217U (en) * 2015-01-08 2015-06-24 台州市中野塑业有限公司 Sewage disposer

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Publication number Priority date Publication date Assignee Title
CN201010274Y (en) * 2006-09-20 2008-01-23 张勋 Garbage bag covered refuse can
US9707324B2 (en) * 2014-04-09 2017-07-18 The Cleveland Clinic Foundation Container, system, and method for collecting medical waste
CN204489724U (en) * 2015-02-13 2015-07-22 重庆暄洁再生资源利用有限公司 The fixable sewage disposer of a kind of refuse bag
CN205931990U (en) * 2016-07-23 2017-02-08 李先朔 Dismantling type garbage bin
CN207450786U (en) * 2017-09-14 2018-06-05 杨卓洁 A kind of dustbin convenient for bagging
CN108438604B (en) * 2018-03-28 2020-12-01 汪鲜红 Garbage bag opening flanging device
CN108516243B (en) * 2018-03-28 2020-07-07 安徽玄同机电科技有限公司 Garbage can
CN108609320B (en) * 2018-03-28 2021-04-20 汪鲜红 Bagging method

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN204416217U (en) * 2015-01-08 2015-06-24 台州市中野塑业有限公司 Sewage disposer

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