CN208494352U - A kind of conveying equipment - Google Patents
A kind of conveying equipment Download PDFInfo
- Publication number
- CN208494352U CN208494352U CN201820852563.7U CN201820852563U CN208494352U CN 208494352 U CN208494352 U CN 208494352U CN 201820852563 U CN201820852563 U CN 201820852563U CN 208494352 U CN208494352 U CN 208494352U
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- cabinet
- baffle plate
- channel
- wall
- driving mechanism
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Abstract
The utility model belongs to the conveying device technical field of the material for crushing loading or unloading, specifically discloses a kind of conveying equipment.It including cabinet, is equipped in cabinet and crushes channel, screening pipe and driving mechanism, the crushing channel is driven by driving mechanism and carries out attrition crushing to material, and the screening pipe is driven by driving mechanism and vibrated and sieve to material.The utility model aim is to solve the problems, such as crush to material by special disintegrating apparatus at present to need to add new conveying circuit and crushing rear material is difficult to differentiate between.
Description
Technical field
The utility model belongs to the conveying device technical field of the material for crushing loading or unloading, specifically discloses one
Kind conveying equipment.
Background technique
Conveying equipment is a kind of machinery of transported material in a continuous manner.It, can be by material in certain conveying using it
On line, from initial for a kind of shots to the conveying process for forming material final emptying point.It can both carry out granular object
The conveying of material can also carry out the conveying of work piece.It, can also be raw with each industrial enterprise in addition to carrying out pure material conveying
The requirement for producing the technical process in process matches, and forms rhythmical continuous productive process supply line.So conveying equipment is answered extensively
For in the various industrial enterprises of modernization.
At present in many fields, have and the demand then sieved is crushed to the material of major diameter, such as
It digs up mine quarrying field, but currently, people pass through special pulverizer crushes, smashed material diameter is different, causes
Major diameter material is difficult to differentiate between after mixing with minor diameter material, and is crushed by special equipment, needs to add new defeated
Line sending road, production cost are higher.
Utility model content
The utility model discloses a kind of conveying equipments, it is therefore intended that solves at present by special disintegrating apparatus to material
Crush and needs to add new conveying circuit and the problem of crushing rear material is difficult to differentiate between.
The base case of the utility model are as follows: a kind of conveying equipment, including cabinet, interior be equipped with of cabinet crush channel, screening
Pipe and driving mechanism, the crushing channel are driven by driving mechanism and carry out attrition crushing to material, and the screening pipe is by driving
Mechanism drives and vibrates and sieve to material.
The technical principle and beneficial effect of the utility model are: material being put into after crushing in channel, driving mechanism is driven
It moves and crushes channel to the material progress attrition crushing crushed in channel, so that material is pressurized and fragmentation, then along crushing channel
Into screening pipe in, driving mechanism driving screening tube vibration so that smashed material be sized pipe screening so that major diameter with
The material of minor diameter is sized, and avoids the problem of being difficult to differentiate between after major diameter is mixed with minor diameter material, and this equipment without
New conveying circuit need to individually be added, it is only necessary to which this equipment is placed in existing conveying circuit.
Further, the crushing channel includes overhead gage and lower baffle plate, and the overhead gage inclination is fixedly connected in cabinet,
The lower baffle plate is parallel with overhead gage and is slidably connected in cabinet, and crushing is surrounded between overhead gage, lower baffle plate and cabinet wall
Channel, crushing channel higher end be first charging aperture, lower one end be used for by material be conveyed into screening pipe, the lower baffle plate by
Driving mechanism driving pumps.By above-mentioned design, so that lower baffle plate driven-mechanism drives and up and down reciprocatingly transports
When dynamic, just the material crushed in channel is caused to squeeze, so that material is pressurized and crushes, the material after being crushed is along lower baffle plate
It automatically falls into screening pipe, carries out the next step.
Further, the screening pipe, which is located at, crushes below channel, the screening pipe crushed immediately below the lower one end in channel
On be provided with second charging aperture, sieve and be fixedly connected with reseting pressuring spring between pipe lower end surface and cabinet inner bottom surface, screening pipe lower wall is
Sieve is provided with the first discharge port on cabinet lower wall, and the screening pipe of second charging aperture side is equipped with inclined-plane, and the inclined-plane is by driving
The side that mechanism drives and reduces towards the increased side of bevel altitude and height moves back and forth, screening lower one end in pipe inclined-plane
Equipped with opening, the second discharge port is provided on the wall box of the lower one end in inclined-plane.By above-mentioned design, in driving mechanism pair
Under inclined-plane force and the elastic force collective effect of reseting pressuring spring, so that inclined-plane reduced towards the increased side of bevel altitude and height
Side moves back and forth, so that the side that inclined-plane drives screening pipe to reduce towards the increased side of bevel altitude and height is reciprocal
Movement, so that screening pipe body vibration, so that the material in screening pipe is sieved by sieve under vibration.
Further, driving mechanism includes the motor being fixedly connected on cabinet exterior, and motor output shaft rotationally protrudes into case
In vivo, motor output shaft protrudes into the intracorporal part of case and has been fixedly and coaxially connected cam, and cam is convex between lower baffle plate and inclined-plane
Wheel side wall offsets with lower baffle plate lower end surface and inclined-plane upper end.By above-mentioned design, so that just driving lower baffle plate when cam rotation
It is moved back and forth with screening pipe.
Further, the cabinet inner bottom surface is in inverted cone-shaped, and the second discharge port is opened at cabinet lower wall center.By above-mentioned
Design so that by sieve screen out come material fall on cabinet inner bottom surface and slide into the second discharging along cabinet inner bottom surface
Mouthful, finally cabinet is left from the second discharge port.
Further, restoring board is further fixed on the cabinet wall, restoring board is located at below lower baffle plate, restoring board and lower block
Reset tension spring is fixed between plate.By above-mentioned design, so that keeping the abutting state between cam.
Detailed description of the invention
Fig. 1 is the elevational cross-sectional view of the utility model embodiment.
Specific embodiment
It is further described below by specific embodiment:
Appended drawing reference in Figure of description includes: cabinet 1, first charging aperture 2, overhead gage 3, lower baffle plate 4, reset tension spring
5, restoring board 6, driving cam 7, driving motor output shaft 8, second charging aperture 9, screening pipe 10, sieve 11, reseting pressuring spring 12, the
One discharge port 13, inclined-plane 14, the second discharge port 15.
Embodiment is substantially as shown in Fig. 1: a kind of conveying equipment, including cabinet 1, and the top of 1 left wall of cabinet is provided with first
Feed inlet 2, is fixedly installed with overhead gage 3 on 1 inner wall of cabinet on the right side of first charging aperture 2, and overhead gage 3 is from left to right to the right
It tilts, lower baffle plate 4 is slidably fitted on 1 inner wall of cabinet of 3 lower section of overhead gage, lower baffle plate 4 is parallel to overhead gage 3, and lower baffle plate 4 is left
First charging aperture 2, lower baffle plate 4 and 1 inner wall of cabinet are protruded into end and overhead gage 3 surrounds the tubulose that left and right ends are open jointly and crushes and leads to
Road, is welded with restoring board 6 on the left inside wall of cabinet 1 of the lower section of lower baffle plate 4 in the horizontal direction, under 6 upper surface of restoring board and lower baffle plate 4
It is fixedly installed with reset tension spring 5 between end face, driving motor, driving electricity are fixedly installed on 1 outer wall of cabinet of 4 lower section of lower baffle plate
Machine output shaft 8 is protruded into cabinet 1 and is rotatablely connected with 1 side wall of cabinet, and the part that driving motor output shaft 8 protrudes into cabinet 1 is same
Axis is fixedly installed with driving cam 7, and 4 lower end surface of lower baffle plate offsets with driving 7 side wall of cam, in the cabinet 1 of 7 lower section of driving cam
Screening pipe 10 is installed, second charging aperture 9 is provided on the screening pipe 10 immediately below 4 right end of lower baffle plate, second charging aperture 9 is left
Integrally formed with the inclined-plane 14 of inclined upward, driving cam 7 offset with inclined-plane 14, sieve to the right from left to right on the feed pipe of side
10 left end of pipe opening, sieves and is provided with the first discharge port 13 in 1 left wall of cabinet in 10 left side of pipe, and screening 10 left end of pipe is protruded into first and gone out
In material mouth 13,13 diameter of the first discharge port is greater than the caliber of screening 10 left end opening of pipe, and sieves pipe 10 and protrude into the first discharging
Part in mouth 13 is not contacted with the first discharge port 13, and screening 10 lower wall of pipe is sieve 11, and 1 inner bottom surface of cabinet is in inverted cone-shaped,
The second discharge port 15 is provided at the center of 1 lower wall of cabinet, between 1 inner bottom surface of 11 lower end surface of sieve and cabinet there are two fixed installations
Reseting pressuring spring 12, screening 10 right wall of pipe are not contacted with the right inner wall of cabinet 1.
Specific implementation process is as follows: starting driving motor then puts into material into cabinet 1 from first charging aperture 2, drives
Motor output shaft 8 drives driving cam 7 to rotate, at this time due to being equipped with reset tension spring 5 between lower baffle plate 4 and restoring board 6,
4 lower end surface of lower baffle plate is made to keep driving 7 turns of cam with the contact condition of driving cam 7 under the pulling force effect of reset tension spring 5
When dynamic, under the collective effect of driving cam 7 and reset tension spring 5, so that lower baffle plate 4 constantly up and down reciprocatingly slides, so that
It crushes material in channel be crushed by extruding and the collision of lower baffle plate 4, pulverized material is along crushing channel from the
Two feed inlets 9 are fallen into screening pipe 10, since driving cam 7 is contacted with the inclined-plane 14 sieved on pipe 10, and in reseting pressuring spring
Under the action of 12, so that inclined-plane 14 and driving cam 7 keep the state to offset, therefore when driving 7 convex portion of cam and inclined-plane
14 when offseting, and moves inclined-plane 14 to the right, inclined-plane 14 and then drives screening pipe 10 is whole to overcome reseting pressuring spring 12
Elastic force moves to the right, when driving 7 convex portion of cam to leave inclined-plane 14, just makes under the elastic force effect of reseting pressuring spring 12
The whole upper direction to the left of pipe 10 must be sieved to reset, so that the material dropped into screening pipe 10 is jumped to the left on sieve 11
Dynamic, with the continuous rotation of driving cam 7, screening pipe 10 is also constantly duplicate to be moved to bottom right and upper left side, and then forms vibration
Dynamic, while so that material is constantly beated to the left in screening pipe 10, the lesser material of granularity passes through sieve 11 and falls in 1 bottom of cabinet
On face, and cabinet 1 is left from the second discharge port 15 along bottom surface, and the biggish material of granularity can not pass through sieve 11, just constantly
It beats to the left in screening pipe 10, finally leaves cabinet 1 from the first discharge port 13, by the above process, realize in transmission process
In crushing and screening to material.
Above-described is only the embodiments of the present invention, and the common sense such as well known specific structure and characteristic are herein in scheme
It does not describe excessively.It should be pointed out that for those skilled in the art, in the premise for not departing from the utility model structure
Under, several modifications and improvements can also be made, these also should be considered as the protection scope of the utility model, these all will not influence
The effect and patent practicability that the utility model is implemented.
Claims (6)
1. a kind of conveying equipment, it is characterised in that: including cabinet, be equipped in cabinet and crush channel, screening pipe and driving mechanism, institute
It states and crushes channel by driving mechanism driving and to material progress attrition crushing, the screening pipe is driven and vibration pair by driving mechanism
Material is sieved.
2. a kind of conveying equipment according to claim 1, it is characterised in that: the crushing channel includes overhead gage and lower block
Plate, the overhead gage inclination are fixedly connected in cabinet, and the lower baffle plate is parallel with overhead gage and is slidably connected in cabinet, on
It is surrounded between baffle, lower baffle plate and cabinet wall and crushes channel, crushing channel higher end is first charging aperture, and lower one end is used
In material is conveyed into screening pipe, the lower baffle plate is pumped by driving mechanism driving.
3. a kind of conveying equipment according to claim 2, it is characterised in that: the screening pipe, which is located at, to be crushed below channel,
Be provided with second charging aperture on the screening pipe crushed immediately below the lower one end in channel, screening pipe lower end surface and cabinet inner bottom surface it
Between be fixedly connected with reseting pressuring spring, screening pipe lower wall is sieve, is provided with the first discharge port, second charging aperture side on cabinet lower wall
Screening pipe be equipped with inclined-plane, the inclined-plane by driving mechanism drive and towards the increased side of bevel altitude and height reduce
Side moves back and forth, and screening lower one end in pipe inclined-plane is equipped with opening, and the is provided on the wall box of the lower one end in inclined-plane
Two discharge ports.
4. a kind of conveying equipment according to claim 3, it is characterised in that: driving mechanism includes being fixedly connected on outside cabinet
Motor on wall, motor output shaft rotationally protrude into cabinet, and motor output shaft protrudes into the intracorporal part of case and is fixedly and coaxially connected
There is cam, between lower baffle plate and inclined-plane, cam side wall offsets cam with lower baffle plate lower end surface and inclined-plane upper end.
5. a kind of conveying equipment according to claim 4, it is characterised in that: the cabinet inner bottom surface is in inverted cone-shaped, the
Two discharge ports are opened at cabinet lower wall center.
6. a kind of conveying equipment according to claim 5, it is characterised in that: be further fixed on reset on the cabinet wall
Plate, restoring board are located at below lower baffle plate, and reset tension spring is fixed between restoring board and lower baffle plate.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820852563.7U CN208494352U (en) | 2018-05-31 | 2018-05-31 | A kind of conveying equipment |
Applications Claiming Priority (1)
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CN201820852563.7U CN208494352U (en) | 2018-05-31 | 2018-05-31 | A kind of conveying equipment |
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CN208494352U true CN208494352U (en) | 2019-02-15 |
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CN201820852563.7U Active CN208494352U (en) | 2018-05-31 | 2018-05-31 | A kind of conveying equipment |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109939781A (en) * | 2019-02-26 | 2019-06-28 | 英鸿纳米科技股份有限公司 | Ball-milling device is used in a kind of production of nano material |
CN109987287A (en) * | 2019-05-10 | 2019-07-09 | 赖秋霞 | A kind of intelligent binding apparatus for logistics |
CN110819413A (en) * | 2019-12-20 | 2020-02-21 | 南安初盼商贸有限公司 | Equipment for manufacturing solid fuel by using waste plastics |
-
2018
- 2018-05-31 CN CN201820852563.7U patent/CN208494352U/en active Active
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN109939781A (en) * | 2019-02-26 | 2019-06-28 | 英鸿纳米科技股份有限公司 | Ball-milling device is used in a kind of production of nano material |
CN109939781B (en) * | 2019-02-26 | 2021-01-19 | 英鸿纳米科技股份有限公司 | Ball-milling device is used in nano-material production |
CN109987287A (en) * | 2019-05-10 | 2019-07-09 | 赖秋霞 | A kind of intelligent binding apparatus for logistics |
CN109987287B (en) * | 2019-05-10 | 2020-11-10 | 蒙城县友继家庭农场 | A intelligent binding apparatus for commodity circulation |
CN110819413A (en) * | 2019-12-20 | 2020-02-21 | 南安初盼商贸有限公司 | Equipment for manufacturing solid fuel by using waste plastics |
CN110819413B (en) * | 2019-12-20 | 2021-05-14 | 广州绿之洁清洁服务有限公司 | Equipment for manufacturing solid fuel by using waste plastics |
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