CN202388648U - All-in-one machine for crushing and milling of junked diagonal tires - Google Patents

All-in-one machine for crushing and milling of junked diagonal tires Download PDF

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Publication number
CN202388648U
CN202388648U CN2011204933762U CN201120493376U CN202388648U CN 202388648 U CN202388648 U CN 202388648U CN 2011204933762 U CN2011204933762 U CN 2011204933762U CN 201120493376 U CN201120493376 U CN 201120493376U CN 202388648 U CN202388648 U CN 202388648U
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CN
China
Prior art keywords
emery wheel
fixedly connected
casing
frame
mill
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Expired - Fee Related
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CN2011204933762U
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Chinese (zh)
Inventor
刘彩军
韦德泉
韩学政
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Zaozhuang University
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Zaozhuang University
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Priority to CN2011204933762U priority Critical patent/CN202388648U/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
    • Y02W30/52Mechanical processing of waste for the recovery of materials, e.g. crushing, shredding, separation or disassembly
    • 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

An all-in-one machine for crushing and milling of junked diagonal tires, which is low in cost, simple to operate and environment-friendly, comprises a lower fixing frame, an upper fixing frame and a machine casing, left portions of the lower fixing frame and the upper fixing frame are fixedly connected with each other through a supporting frame, the upper surface of the upper fixing frame is fixedly connected with a feeding mechanism and an abrasive wheel mechanism, the abrasive wheel mechanism is located on the right side of the feeding mechanism, a worm conveying mechanism is designed below the feeding mechanism and is fixedly connected with the lower surface of the upper fixing frame, an abrasive disk mechanism is fixedly connected with the upper surface of the lower fixing frame, fixed between the upper fixing frame and the lower fixing frame through an abrasive disk supporting base and located on the lower right side of the worm conveying mechanism, and a granule selection barrel is designed on the right side of the abrasive disk mechanism and fixed between the lower fixing frame and the upper fixing frame through a granule selection barrel supporting base.

Description

Waste and old oblique tire powder crushing process all-in-one
Technical field
The utility model relates to a kind of pulverizer, relates in particular to a kind of waste and old oblique tire powder crushing process all-in-one.
Background technology
At present, there are every year a large amount of waste products to handle, handle a large amount of waste rubber products and can avoid polluting with environment to society, again can recycling, this is the purposes of the common pursuit in various countries, the world today.Developed many production methods at present, it is that the rubber used always reclaims approach that waste old is processed rubber powder, and wherein commonly used have traditional normal temperature crushing up and a cryogenic freezing comminuting method; The tradition normal temperature crushing up adopts secondary to tie up and produces 0.3 rubber powder to the 1.4mm particle diameter; Another kind is the normal-temperature continuous comminuting method, produces the rubber powder of above-mentioned same particle diameter through coarse crushing, the broken two procedures of fine powder, and the shortcoming of said method is that the rubber powder particle diameter is big; Satisfied not customer requirements, yielded poorly, cost is high; The quality of production is unstable, is difficult to adapt to modernized industrial production requirement.
The cryogenic freezing comminuting method, like US4863106 and the disclosed cryogenic freezing comminuting method of US5368040, the employing liquid nitrogen is a cold-producing medium; Cryogenic temperature is-196 ℃, pulverizes through impact type machinery and obtains the fine rubber powder of 0.075mm to the 0.30mm fineness, and be main to 0.22mm wherein with 0.18mm; But the method apparatus expensive; Investment is big, and production cost is high, and many difficulties are brought in aspects such as start, production, maintenance, management.
Summary of the invention
The purpose of the utility model provides the waste and old oblique tire powder crushing process all-in-one of low, the simple to operate and environmental protection of a kind of cost.
For realizing above-mentioned purpose, the technical scheme that the utility model adopts is: a kind of waste and old oblique tire powder crushing process all-in-one comprises lower fixed frame, upper holder and casing; The left part of lower fixed frame and upper holder is fixedly connected through bracing frame; It is characterized in that: the upper surface of described upper holder is fixedly connected with feed mechanism and emery wheel mechanism, and emery wheel mechanism is positioned at the right-hand of feed mechanism, and the feed mechanism below is designed with the worm screw connecting gear; The worm screw connecting gear is fixedly connected with the lower surface of upper holder; The lower fixed frame upper surface is fixedly connected with disc-grinding mechanism, and disc-grinding mechanism is fixed between upper holder and the lower fixed frame through the mill bearing, and disc-grinding mechanism is positioned at the lower right of worm screw connecting gear; The right-hand choosing grain bucket that is designed with of disc-grinding mechanism, choosing grain bucket is fixed between lower fixed frame and the upper holder through choosing grain bucket bearing.
In this structure, feed mechanism comprises frame, is connected with stationary roll and movable roll through bearing between the frame; Be designed with the gap between stationary roll and the movable roll, movable roll is positioned at the stationary roll top, and the two ends of movable roll are connected with adjustment structure; One end of stationary roll and movable roll also is with stationary roll gear and the movable roll gear that is meshed, and the other end of stationary roll is connected with first reduction box through belt, and first reduction box is connected with first motor through shaft coupling; The right-hand member of frame is fixedly connected with pressing plate; Pressing plate is corresponding with the gap location of stationary roll and movable roll, and the right-hand member of frame also is fixedly connected with casing, and pressing plate is positioned at casing.
In this structure, adjustment structure comprises slide block, has the axis hole that has bearing on the slide block, and the upper end of slide block is fixedly connected with lifting arm, the upper end design release handle of lifting arm, and release handle is threaded with frame, and the axle of movable roll is positioned at axis hole.
In this structure, emery wheel mechanism comprises second motor, and second motor connects second reduction box through shaft coupling, and second reduction box is connected with bevel gear through axle; On the axle belt pulley is installed, bevel gear is connected with short slab through axle, the hinged long slab of short slab, and long slab and described casing are hinged; Long slab is fixedly connected with vibratory sieve, and vibratory sieve is positioned at the bottom of casing, and vibratory sieve is the low right high dip shape in a left side; The vibratory sieve below is designed with lautertuns, and casing has discharging opening left, and the upper holder upper surface also is fixedly connected with the bulky grain collecting vessel; The bulky grain collecting vessel is corresponding with discharging opening, and the upper holder upper surface also is fixedly connected with the emery wheel shaft supporting frame, is connected with the emery wheel axle through bearing on the emery wheel shaft supporting frame; Be with the emery wheel shaft pulley on the emery wheel axle, belt pulley is connected through belt with the emery wheel shaft pulley, and the left end of emery wheel axle is fixedly connected with emery wheel; Emery wheel is positioned at casing, emery wheel be centered close to pressing plate position on the lower side, emery wheel is a circular slab; Have the emery wheel hole on the emery wheel, the emery wheel raising has the emery wheel thorn, and the emery wheel hole is corresponding with the emery wheel thorn.
In this structure, the worm screw connecting gear comprises the 3rd motor, and the 3rd motor is connected with the 3rd decelerator through shaft coupling; The 3rd decelerator connects worm screw through belt; Worm screw is through fixing with the fixing holder of upper holder, and worm screw is positioned at casing, and worm screw is corresponding with described lautertuns.
In this structure, disc-grinding mechanism comprises the 4th motor, and the 4th motor connects the 4th decelerator through shaft coupling; The 4th decelerator connects mill spindle through belt, flexibly connects mill on the mill spindle, and mill comprises movable grinding disc; Movable grinding disc is with fixed millstone outward, and fixed millstone is fixedly connected with upper holder with lower fixed frame through the mill bearing, is designed with the gap between movable grinding disc and the fixed millstone; Movable grinding disc is a hollow-core construction, and movable grinding disc outer surface and fixed millstone inner surface are designed with lines.
In this structure, choosing grain bucket is corresponding with mill, and choosing grain bucket overcoat has casing; Mill spindle passes choosing grain bucket, and the traversing through end of mill spindle is connected with choosing grain bucket bracing strut through bearing, and choosing grain bucket bracing strut is fixedly connected with lower fixed frame; The right part of mill spindle is connected with scraper plate, and scraper plate contacts with the bucket wall of choosing grain bucket, and the bucket wall of choosing grain bucket is netted; The right lower quadrant of choosing grain bucket has granule and goes out groove, and the right lower quadrant of the casing corresponding with the choosing grain has bulky grain and goes out groove.
The utility model has the advantages of and be: because the upper surface of the upper holder in the utility model is fixedly connected with feed mechanism and emery wheel mechanism, emery wheel mechanism is positioned at the right-hand of feed mechanism, and the feed mechanism below is designed with the worm screw connecting gear; The worm screw connecting gear is fixedly connected with the lower surface of upper holder; The lower fixed frame upper surface is fixedly connected with disc-grinding mechanism, and disc-grinding mechanism is fixed between upper holder and the lower fixed frame through the mill bearing, and disc-grinding mechanism is positioned at the lower right of worm screw connecting gear; The right-hand choosing grain bucket that is designed with of disc-grinding mechanism; Choosing grain bucket is fixed between lower fixed frame and the upper holder through choosing grain bucket bearing, so use the utility model can effectively pulverize out qualified particle, cost is low; Processing ease, result of use is good.
Description of drawings
Fig. 1 is the front view of the utility model;
Fig. 2 is the left view of the utility model;
Fig. 3 is the emery wheel structural representation in the utility model;
Fig. 4 is an A-A cut-away view among Fig. 1;
Fig. 5 is a B-B cut-away view among Fig. 2.
In the accompanying drawing: 1, release handle; 2, gear; 3, pressing plate; 4, casing; 5, emery wheel; 6, vibratory sieve; 7, emery wheel axle; 8, lautertuns; 9, worm screw; 10, second reduction box; 11, mill; 12, second motor; 13, scraper plate; 14, choosing grain bucket; 15, bulky grain goes out groove; 16, granule goes out groove; 17, choosing grain bucket bracing strut; 18, choosing grain bucket bearing; 19, mill bearing; 20, lower fixed frame; 21, the 4th decelerator; 22, the 4th motor; 23, bracing frame; 24, the 3rd decelerator; 25, the 3rd motor; 26, upper holder; 27, bulky grain collecting vessel; 28, first motor; 29, first reduction box; 30, fixed gear; 31, frame; 32, movable roll; 33, stationary roll; 34, movable grinding disc; 35, fixed millstone.
The specific embodiment
Below in conjunction with accompanying drawing and specific embodiment the utility model is described further:
The utility model is like Fig. 1,2,3,4, shown in 5; A kind of waste and old oblique tire powder crushing process all-in-one; Comprise lower fixed frame 20, upper holder 26 and casing 4, the left part of lower fixed frame 20 and upper holder 26 is fixedly connected through bracing frame 23, it is characterized in that: the upper surface of described upper holder 26 is fixedly connected with feed mechanism and emery wheel mechanism; Emery wheel mechanism is positioned at the right-hand of feed mechanism; The feed mechanism below is designed with the worm screw connecting gear, and the worm screw connecting gear is fixedly connected with the lower surface of upper holder 26, and lower fixed frame 20 upper surfaces are fixedly connected with disc-grinding mechanism; Disc-grinding mechanism is fixed between upper holder 26 and the lower fixed frame 20 through mill bearing 19; Disc-grinding mechanism is positioned at the lower right of worm screw connecting gear, the right-hand choosing grain bucket 14 that is designed with of disc-grinding mechanism, and choosing grain bucket 14 is fixed between lower fixed frame 20 and the upper holder 26 through choosing grain bucket bearing 18.In the present embodiment, feed mechanism comprises frame 31, is connected with stationary roll 33 and movable roll 32 through bearing between the frame 31; Be designed with the gap between stationary roll 33 and the movable roll 32; Movable roll 32 is positioned at stationary roll 33 tops, and the two ends of movable roll 32 are connected with adjustment structure, and an end of stationary roll 33 and movable roll 32 also is with the stationary roll gear 30 and movable roll gear 2 that is meshed; The other end of stationary roll 33 is connected with first reduction box 29 through belt; First reduction box 29 is connected with first motor 28 through shaft coupling, and the right-hand member of frame 31 is fixedly connected with pressing plate 3, and pressing plate 3 is corresponding with the gap location of stationary roll 33 and movable roll 32; The right-hand member of frame 31 also is fixedly connected with casing 4, and pressing plate is positioned at casing 4.In the present embodiment, adjustment structure comprises slide block, has the axis hole that has bearing on the slide block, and the upper end of slide block is fixedly connected with lifting arm, the upper end design release handle 1 of lifting arm, and release handle 1 is threaded with frame 31, and the axle of movable roll 32 is positioned at axis hole.In the present embodiment, emery wheel mechanism comprises that second motor, 12, the second motors 12 connect second reduction box, 10, the second reduction boxes 10 through shaft coupling and are connected with bevel gear through axle; On the axle belt pulley is installed, bevel gear is connected with short slab through axle, the hinged long slab of short slab, and long slab and described casing are hinged; Long slab is fixedly connected with vibratory sieve 6, and vibratory sieve 6 is positioned at the bottom of casing, and vibratory sieve 6 is the low right high dip shape in a left side; Vibratory sieve 6 belows are designed with lautertuns 8, and casing has discharging opening left, and upper holder 26 upper surfaces also are fixedly connected with bulky grain collecting vessel 27; Bulky grain collecting vessel 27 is corresponding with discharging opening, and upper holder 26 upper surfaces also are fixedly connected with the emery wheel shaft supporting frame, are connected with emery wheel axle 7 through bearing on the emery wheel shaft supporting frame; Be with the emery wheel shaft pulley on the emery wheel axle 7, belt pulley is connected through belt with the emery wheel shaft pulley, and the left end of emery wheel axle 7 is fixedly connected with emery wheel 5; Emery wheel 5 is positioned at casing 4, emery wheel 5 be centered close to pressing plate 3 position on the lower side, emery wheel is a circular slab; Have the emery wheel hole on the emery wheel, the emery wheel raising has the emery wheel thorn, and the emery wheel hole is corresponding with the emery wheel thorn.In the present embodiment; The worm screw connecting gear comprises the 3rd motor 25; The 3rd motor 25 is connected with the 3rd decelerator 24, the three decelerators 24 through shaft coupling and connects worm screw 9 through belt, and worm screw 9 is through fixing with upper holder 26 fixing holders; Worm screw 9 is positioned at casing 4, and worm screw 9 is corresponding with described lautertuns 8.In the present embodiment, disc-grinding mechanism comprises that the 4th motor 22, the four motors 22 connect the 4th decelerator 21 through shaft coupling; The 4th decelerator 21 connects mill spindle through belt; Flexibly connect mill 11 on the mill spindle, mill 11 comprises movable grinding disc 34, the movable grinding disc 34 outer fixed millstones 35 that are with; Fixed millstone 35 is fixedly connected with upper holder 26 with lower fixed frame 20 through mill bearing 19; Be designed with the gap between movable grinding disc 34 and the fixed millstone 35, movable grinding disc 34 is a hollow-core construction, and movable grinding disc 34 outer surfaces and fixed millstone 35 inner surfaces are designed with lines.In the present embodiment, choosing grain bucket 14 is corresponding with mill 11, and choosing grain bucket 14 overcoats have casing 4; Mill spindle passes choosing grain bucket 14; The traversing through end of mill spindle is connected with choosing grain bucket bracing strut 17 through bearing, and choosing grain bucket bracing strut 17 is fixedly connected with lower fixed frame 20, and the right part of mill spindle is connected with scraper plate 13; Scraper plate 13 contacts with the bucket wall of choosing grain bucket 14; The bucket wall of choosing grain bucket 14 is netted, and the right lower quadrant of choosing grain bucket 14 has granule and goes out groove 16, and the right lower quadrant of the casing 4 corresponding with the choosing grain has bulky grain and goes out groove 15.
The utility model reclaims at waste and old Bias tyre especially, receives and utilize.
In the utility model, the fore-and-aft distance between stationary roll and the movable roll can be according to the size of rubber thickness, through the adjusted handle; Regulate adjustment structure, and then regulate the distance of the above-below direction of movable roll fixed distance roller, when being transferred to suitable distance; Rubber is put between stationary roll and the movable roll, seen off, run into emery wheel up to rubber and pulverize through preliminary through pressing plate; After preliminary the pulverizing, a part of satisfactory particle is through vibratory sieve, and the remaining undesirable particle bulky grain collecting vessel that bleeds is collected; Satisfactory particle gets into lautertuns, through worm screw satisfactory particle is sent between fixed millstone and the movable grinding disc then, and the worm screw feeding can steadily be delivered to satisfactory particle between fixed millstone and the movable grinding disc; Pulverize more fully; Through choosing grain bucket granule is gone out groove through granule then and discharge, bulky grain advances oversized particles and goes out the groove discharge, and the granule of discharge is final qualified particle.
Spacing between fixed millstone and the movable grinding disc is diminished to discharge end by feed end gradually; Keep one section less spacing so that rubber fully grinds at last; Movable grinding disc moves the distance between scalable itself and the fixed millstone along the axle axle; Thereby change the size of abrasive grains, and lines helps satisfactory particle and gets into along mill and grind.
In the choosing grain bucket four scraper plates are arranged, through the rib support fixation, the head design of scraper plate becomes 30 degree angles between two adjacent scraper plates, and the selected to greatest extent grain bucket of qualified particle is passed through.
The rubber of seeing off from pressing plate is the big position of contact emery wheel linear velocity directly, and the emery wheel thorn becomes 60 to spend angles with emery wheel, so that to the cutting and the pulverizing of rubber.
Be uniform-distribution with aperture on the vibratory sieve, arrive 5mm for 2mm between the aperture.
Worm screw is used suitable conveying worm, and is can guaranteed efficiency again can not feed too many, prevents to produce at the mill feeding port to pile up.
The emery wheel thorn becomes 60 degree angles with emery wheel, when emery wheel was rotated counterclockwise, the emery wheel thorn just helped cutting and the pulverizing to rubber, and the rubber grain after the pulverizing is discharged by the emery wheel right side through the aperture on the emery wheel.
Vibratory sieve is a rectangle iron plate, is evenly distributed with the hole on it, and the diameter in hole is that 2mm is to 5mm.
Choosing grain bucket is cylindrical iron sheet, and even distribution diameter is the hole of 0.1mm to 0.3mm on the bucket wall, so that qualified particle passes through.

Claims (7)

1. waste and old oblique tire powder crushing process all-in-one; Comprise lower fixed frame (20), upper holder (26) and casing (4); The left part of lower fixed frame (20) and upper holder (26) is fixedly connected through bracing frame (23); It is characterized in that: the upper surface of described upper holder (26) is fixedly connected with feed mechanism and emery wheel mechanism, and emery wheel mechanism is positioned at the right-hand of feed mechanism, and the feed mechanism below is designed with the worm screw connecting gear; The worm screw connecting gear is fixedly connected with the lower surface of upper holder (26); Lower fixed frame (20) upper surface is fixedly connected with disc-grinding mechanism, and disc-grinding mechanism is fixed between upper holder (26) and the lower fixed frame (20) through mill bearing (19), and disc-grinding mechanism is positioned at the lower right of worm screw connecting gear; The right-hand choosing grain bucket (14) that is designed with of disc-grinding mechanism, choosing grain bucket (14) is fixed between lower fixed frame (20) and the upper holder (26) through choosing grain bucket bearing (18).
2. waste and old oblique tire powder crushing process all-in-one according to claim 1; It is characterized in that: said feed mechanism comprises frame (31); Be connected with stationary roll (33) and movable roll (32) through bearing between the frame (31), be designed with the gap between stationary roll (33) and the movable roll (32), movable roll (32) is positioned at stationary roll (33) top; The two ends of movable roll (32) are connected with adjustment structure; One end of stationary roll (33) and movable roll (32) also is with stationary roll gear (30) and the movable roll gear (2) that is meshed, and the other end of stationary roll (33) is connected with first reduction box (29) through belt, and first reduction box (29) is connected with first motor (28) through shaft coupling; The right-hand member of frame (31) is fixedly connected with pressing plate (3); Pressing plate (3) is corresponding with the gap location of stationary roll (33) and movable roll (32), and the right-hand member of frame (31) also is fixedly connected with casing (4), and pressing plate is positioned at casing (4).
3. waste and old oblique tire powder crushing process all-in-one according to claim 2; It is characterized in that: said adjustment structure comprises slide block; Have the axis hole that has bearing on the slide block, the upper end of slide block is fixedly connected with lifting arm, the upper end design release handle (1) of lifting arm; Release handle (1) is threaded with frame (31), and the axle of movable roll (32) is positioned at axis hole.
4. waste and old oblique tire powder crushing process all-in-one according to claim 3 is characterized in that: described emery wheel mechanism comprises second motor (12), and second motor (12) connects second reduction box (10) through shaft coupling; Second reduction box (10) is connected with bevel gear through axle, on the axle belt pulley is installed, and bevel gear is connected with short slab through axle; The hinged long slab of short slab, long slab and described casing are hinged, and long slab is fixedly connected with vibratory sieve (6); Vibratory sieve (6) is positioned at the bottom of casing, and vibratory sieve (6) is the low right high dip shape in a left side, and vibratory sieve (6) below is designed with lautertuns (8); Casing has discharging opening left, and upper holder (26) upper surface also is fixedly connected with bulky grain collecting vessel (27), and bulky grain collecting vessel (27) is corresponding with discharging opening; Upper holder (26) upper surface also is fixedly connected with the emery wheel shaft supporting frame, is connected with emery wheel axle (7) through bearing on the emery wheel shaft supporting frame, and the emery wheel axle is with the emery wheel shaft pulley on (7); Belt pulley is connected through belt with the emery wheel shaft pulley, and the left end of emery wheel axle (7) is fixedly connected with emery wheel (5), and emery wheel (5) is positioned at casing (4); Emery wheel (5) be centered close to pressing plate (3) position on the lower side, emery wheel is a circular slab, has the emery wheel hole on the emery wheel; The emery wheel raising has the emery wheel thorn, and the emery wheel hole is corresponding with the emery wheel thorn.
5. waste and old oblique tire powder crushing process all-in-one according to claim 4; It is characterized in that: described worm screw connecting gear comprises the 3rd motor (25); The 3rd motor (25) is connected with the 3rd decelerator (24) through shaft coupling, and the 3rd decelerator (24) connects worm screw (9) through belt, and worm screw (9) is through fixing with the fixing holder of upper holder (26); Worm screw (9) is positioned at casing (4), and worm screw (9) is corresponding with described lautertuns (8).
6. waste and old oblique tire powder crushing process all-in-one according to claim 5; It is characterized in that: described disc-grinding mechanism comprises the 4th motor (22); The 4th motor (22) connects the 4th decelerator (21) through shaft coupling, and the 4th decelerator (21) connects mill spindle through belt, flexibly connects mill (11) on the mill spindle; Mill (11) comprises movable grinding disc (34); The outer fixed millstone (35) that is with of movable grinding disc (34), fixed millstone (35) is fixedly connected with upper holder (26) with lower fixed frame (20) through mill bearing (19), is designed with the gap between movable grinding disc (34) and the fixed millstone (35); Movable grinding disc (34) is a hollow-core construction, and movable grinding disc (34) outer surface and fixed millstone (35) inner surface are designed with lines.
7. waste and old oblique tire powder crushing process all-in-one according to claim 6 is characterized in that: described choosing grain bucket (14) is corresponding with mill (11), and choosing grain bucket (14) overcoat has casing (4); Mill spindle passes choosing grain bucket (14); The traversing through end of mill spindle is connected with choosing grain bucket bracing strut (17) through bearing, and choosing grain bucket bracing strut (17) is fixedly connected with lower fixed frame (20), and the right part of mill spindle is connected with scraper plate (13); Scraper plate (13) contacts with the bucket wall of choosing grain bucket (14); The bucket wall of choosing grain bucket (14) is netted, and the right lower quadrant of choosing grain bucket (14) has granule and goes out groove (16), and the right lower quadrant of the casing (4) corresponding with the choosing grain has bulky grain and goes out groove (15).
CN2011204933762U 2011-11-22 2011-11-22 All-in-one machine for crushing and milling of junked diagonal tires Expired - Fee Related CN202388648U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2011204933762U CN202388648U (en) 2011-11-22 2011-11-22 All-in-one machine for crushing and milling of junked diagonal tires

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2011204933762U CN202388648U (en) 2011-11-22 2011-11-22 All-in-one machine for crushing and milling of junked diagonal tires

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Publication Number Publication Date
CN202388648U true CN202388648U (en) 2012-08-22

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102490285A (en) * 2011-11-22 2012-06-13 枣庄学院 Powdering crushing all-in-one machine for waste bias-ply tires
CN104339478A (en) * 2014-11-10 2015-02-11 安徽华奇管业有限公司 Crushing plant for waste pipes

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102490285A (en) * 2011-11-22 2012-06-13 枣庄学院 Powdering crushing all-in-one machine for waste bias-ply tires
CN102490285B (en) * 2011-11-22 2014-06-25 枣庄学院 Powdering crushing all-in-one machine for waste bias-ply tires
CN104339478A (en) * 2014-11-10 2015-02-11 安徽华奇管业有限公司 Crushing plant for waste pipes

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Granted publication date: 20120822

Termination date: 20121122