CN108855385A - A kind of motor-driven mill - Google Patents
A kind of motor-driven mill Download PDFInfo
- Publication number
- CN108855385A CN108855385A CN201810962320.3A CN201810962320A CN108855385A CN 108855385 A CN108855385 A CN 108855385A CN 201810962320 A CN201810962320 A CN 201810962320A CN 108855385 A CN108855385 A CN 108855385A
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- CN
- China
- Prior art keywords
- bevel gear
- working chamber
- rotary shaft
- gear
- connection
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
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Classifications
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C23/00—Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group
- B02C23/08—Separating or sorting of material, associated with crushing or disintegrating
- B02C23/16—Separating or sorting of material, associated with crushing or disintegrating with separator defining termination of crushing or disintegrating zone, e.g. screen denying egress of oversize material
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C7/00—Crushing or disintegrating by disc mills
- B02C7/02—Crushing or disintegrating by disc mills with coaxial discs
- B02C7/08—Crushing or disintegrating by disc mills with coaxial discs with vertical axis
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B02—CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
- B02C—CRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
- B02C7/00—Crushing or disintegrating by disc mills
- B02C7/11—Details
- B02C7/16—Driving mechanisms
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- Engineering & Computer Science (AREA)
- Food Science & Technology (AREA)
- Transmission Devices (AREA)
Abstract
A kind of motor-driven mill of the invention, including apparatus main body, it is set to the intracorporal grinding device of described device master and is set to the intracorporal screening plant of described device master, the grinding device includes being set to intracorporal first working chamber of described device master, motor is installed in end wall on the left of first working chamber, the output shaft of the motor is fixedly connected with the transmission shaft extended to the right, first bevel gear and second bevel gear are installed on the transmission shaft, the first bevel gear upper end engagement is connected with third hand tap gear;The present apparatus is capable of the grinding and screening of intelligent automation progress raw material, operation and the operation for reducing manpower are practical, make the proud convenience of grinding work for needing the raw material being ground, raw material after ground can also be screened, then will filter out and not grind complete material and carry out secondary grinding.
Description
Technical field
The present invention relates to processing technique field, specifically a kind of motor-driven mill.
Background technique
Nowadays people's lives level is become better and better in China, and the grinding of various characteristic is also had in life
Machine, with widely, the processing of the various articles such as coffee bean, Chinese medicine requires to use grinder, it is therefore desirable to which design can
Intelligent automation grinds work, reduces operation and the service time of manpower, enables the convenient equipment of work of grinding, so needing
Design a kind of motor-driven mill of intelligent automation a kind of it is really necessary to.
Summary of the invention
Technical problem to be solved by the invention is to provide a kind of motor-driven mills, are able to solve above-mentioned show in the art
The problem of.
The present invention is achieved through the following technical solutions:A kind of motor-driven mill of the invention, including apparatus main body,
It is set to the intracorporal grinding device of described device master and is set to the intracorporal screening plant of described device master, the grinding device
Including being set to intracorporal first working chamber of described device master, it is installed with motor in end wall on the left of first working chamber, it is described
The output shaft of motor is fixedly connected with the transmission shaft extended to the right, and first bevel gear and the second cone tooth are installed on the transmission shaft
Wheel, first bevel gear upper end engagement are connected with third hand tap gear, are equipped with the on the upside of first working chamber in end wall
Two working chambers, the third hand tap gear axle center are installed with the first rotary shaft extended into second working chamber, and described first
Rotary shaft upper end is installed with the 4th bevel gear, and the 4th bevel gear upper end engagement is connected with the 5th bevel gear, and described the
Five bevel gear axle center are installed with end wall on the left of left end and second working chamber and are rotatably assorted the connecting shaft of connection, it is described
The engagement of 5th bevel gear upper end is connected with the 6th bevel gear, is equipped with belt wheel chamber, institute on the upside of second working chamber in end wall
It states the 6th bevel gear axle center and is installed with the second rotary shaft for upwardly extending the connection that is rotatably assorted with end wall on the upside of the belt wheel chamber, institute
It states the second rotary shaft upper end and is installed with first pulley, connection is equipped with third working chamber, the first pulley on the right side of the belt wheel chamber
It is rotatably assorted by belt and is connected with the second belt wheel, second belt wheel axle center is installed with third rotary shaft, the third rotation
The 7th bevel gear is installed on axis, the 7th bevel gear left end engagement is connected with the 8th bevel gear, the 8th cone tooth
Wheel axle center is installed with end wall on the left of left end and the third working chamber and is rotatably assorted the 4th rotary shaft of connection, the 4th rotation
The 9th bevel gear is installed on axis, the 9th bevel gear lower end engagement is connected with the tenth bevel gear, the third work
Gear cavity is equipped on the downside of chamber in end wall, the tenth bevel gear axle center is installed with to extend downwardly to be turned with end wall on the downside of the gear cavity
The 5th rotary shaft being cooperatively connected is moved, is installed with the first spur gear in the 5th rotary shaft, the second bevel gear upper end is nibbled
Conjunction is connected with the 11st bevel gear, and the 11st bevel gear axle center, which is installed with, extends upwardly into second working chamber
6th rotary shaft, the 6th rotary shaft upper end is installed with the 12nd bevel gear, fixed in end wall on the right side of second working chamber
There is the first cylinder, the outputting axial power of first cylinder is connected with the first fixing axle, passes through axle sleeve in first fixing axle
Be rotatably assorted be connected with move right after engaged with the 12nd bevel gear left end be cooperatively connected the tenth third hand tap gear, it is described
Upper end engagement is connected with the 14th bevel gear after tenth third hand tap gear moves right, on the upside of second working chamber in end wall
Equipped with the 4th working chamber, the 14th bevel gear axle center is installed with to upwardly extend and rotate with end wall on the upside of the 4th working chamber
The screw rod of mating connection is threadedly engaged the slide plate being connected with the 5th rotary shaft sliding connection, institute on the screw rod
It states slide plate lower end surface and is installed with the second fixing axle, the fixing axle lower end is installed with circular fixed block, the fixing axle and institute
State fixed block be rotatably assorted be connected with move down rear outer wall engaged with first spur gear be cooperatively connected round briquetting, institute
It states round briquetting lower end surface and is installed with emery disc, connection is equipped with primary cavity on the downside of the 4th working chamber, connects on the left of the primary cavity
Logical to be equipped with base plate chamber, the base plate chamber is slidably connected with the bottom plate that lower end surface is installed with rack gear.
The screening plant includes being set to intracorporal 5th working chamber of described device master as a preferred technical solution,
The transmission shaft extends into the 5th working chamber and right end is installed with the 15th bevel gear, the 15th bevel gear rear end
Engagement is connected with the 16th bevel gear, and the 16th bevel gear axle center is installed with front and back end and works respectively with the described 5th
Side wall is rotatably assorted the 7th rotary shaft of connection before and after chamber, is installed with the second spur gear in the 7th rotary shaft and third is straight
Gear, the 5th working chamber front side connection are equipped with the second slide bar chamber, are installed with second in end wall on rear side of the 5th working chamber
Cylinder, the outputting axial power of second cylinder is connected with extension forward and telescopic third fixing axle, the third are fixed
It is rotatably assorted to be connected with after movement by axle sleeve on axis and engages cooperation with second spur gear and the third spur gear right end
4th spur gear of connection, right end engagement is combined with the 5th spur gear and the 6th spur gear, institute after the 4th spur gear is mobile
It states the 5th spur gear axle center and is installed with end wall on rear side of rear end and the 5th working chamber and be rotatably assorted the 8th rotary shaft of connection, institute
It states the 6th spur gear axle center and is installed with end wall on front side of front end and the 5th working chamber and be rotatably assorted the 9th rotary shaft of connection, institute
It states connection on the right side of the 5th working chamber and is equipped with the 6th working chamber and the 7th working chamber, be installed with third band in the 8th rotary shaft
Wheel, the third belt wheel is rotatably assorted by belt is connected with the 4th belt wheel, and the 4th belt wheel axle center is installed with both ends difference
Be rotatably assorted the tenth rotary shaft of connection with side wall before and after the 6th working chamber, is installed in the tenth rotary shaft
The 7th spur gear being cooperatively connected is engaged at end with the rack gear of the bottom plate lower end, is installed with the 5th band in the 9th rotary shaft
Wheel, the 5th belt wheel is rotatably assorted by belt is connected with the 6th belt wheel, and the 6th belt wheel axle center is installed with both ends difference
Be rotatably assorted the 11st rotary shaft of connection with side wall before and after the 7th working chamber, symmetrically solid in the 11st rotary shaft
Equipped with cam, connection is equipped with powder chambers on the downside of the primary cavity, and the powder chambers left and right sides is connected to and left side opposite equipped with opening
The sieve plate chamber being connected to the 7th working chamber, the sieve plate chamber are slidably connected with sieve plate, and the sieve plate right end, which is equipped with, to be slided
Slot, the sliding slot are slidably connected with sliding block, and connection is equipped with spring cavity on the right side of the sieve plate chamber, and the sliding block right end is installed with
With the resonance block of spring cavity sliding connection, the resonance block right end is installed with end wall on the right side of right end and the spring cavity
The resonant spring being fixedly connected.
Sub-unit is symmetrical arranged in the third working chamber and inside primary cavity as a preferred technical solution,.
It is connected on front side of the primary cavity as a preferred technical solution, and is equipped with feed cavity for opening forward, before the sieve plate
End is installed with extension block, facilitates and takes out the sieve plate, will not grind complete material and carry out secondary operation, the powder chambers downside
Connection is equipped with feeding chamber for opening forward, and the feeding chamber is slidably connected with powder box, for holding ground former material
Material.
The beneficial effects of the invention are as follows:The configuration of the present invention is simple, it is easy to operate, when being worked by the present apparatus, need
When carrying out grinding work, suitable raw material are added from feed cavity, motor is started to work, and motor drives the first cone by transmission shaft
Gear rotation then drives to drive the rotation of the first rotary shaft by third hand tap gear and drives connection by the 4th bevel gear
Axis rotation drives the rotation of the 6th bevel gear eventually by the 5th bevel gear, and the 6th bevel gear drives first by the second rotary shaft
Belt wheel rotation then drives the 7th bevel gear by the 7th bevel gear to drive the rotation of third rotary shaft by the second belt wheel
Rotation drives the rotation of the 9th bevel gear eventually by the 4th rotary shaft, and the 9th bevel gear drives the 5th rotation by the tenth bevel gear
Shaft rotation, final to drive the rotation of the first spur gear, at the same time, transmission shaft drives the 11st bevel gear by second bevel gear
Rotation, to drive the rotation of the 12nd bevel gear by the 6th rotary shaft, the first cylinder is started to work at this time, and the first cylinder passes through
First fixing axle drives the tenth third hand tap gear to move right, and then drives the rotation of the tenth triconodont wheel by the tenth plug tap gear,
Screw rod rotation is driven eventually by the 14th bevel gear, screw rod drives the second fixing axle to move down by slide plate, to pass through
Round briquetting drives emery disc to move down, and final first spur gear passes through round briquetting and drives emery disc rotation, when being sieved
When selecting work and carrying out secondary operation, the 15th bevel gear drives the rotation of the 7th rotary shaft by the 16th bevel gear, thus band
Dynamic second spur gear and the rotation of third spur gear, the second cylinder are started to work, and the second cylinder drives the 4th by third fixing axle
Spur gear moves backward, and then drives the rotation of the 5th spur gear by the 4th spur gear, drives the eventually by the 8th rotary shaft
The rotation of three belt wheels, third belt wheel drives the rotation of the tenth rotary shaft by the 4th belt wheel, to drive bottom plate by the 7th spur gear
Be moved to the left, it is ground after raw material fall on sieve plate, the second cylinder start to work, the second cylinder by sieve plate drive the 4th
Spur gear moves forward, and then the second spur gear drives the rotation of the 6th spur gear by the 4th spur gear, eventually by the 5th band
Wheel drives the rotation of the 6th belt wheel, and the 6th belt wheel is rotated by the 11st rotary shaft band moving cam, so that sieve plate side-to-side vibrations is driven,
Raw material after grinding completely, which are screened, to be fallen into powder box, is taken out sieve plate, will not ground complete raw material and grind again
Mill, the present apparatus are capable of the grinding and screening of intelligent automation progress raw material, and operation and the operation for reducing manpower are practical, make to need
The proud convenience of grinding work for the raw material being ground, additionally it is possible to the raw material after ground are screened, it then will screening
It does not grind complete material out and carries out secondary grinding.
Detailed description of the invention
The present invention is described in detail by following specific embodiments and drawings for ease of explanation,.
Fig. 1 is a kind of schematic diagram of internal structure of motor-driven mill of the invention;
Fig. 2 is the top view in direction " A-A " in Fig. 1;
Fig. 3 is the top view in direction " B-B " in Fig. 1;
Fig. 4 is a kind of main view of motor-driven mill of the invention.
Specific embodiment
As Figure 1-Figure 4, a kind of motor-driven mill of the invention, including apparatus main body 10, it is set to described device master
Grinding device in body 10 and the screening plant being set in described device main body 10, the grinding device include being set to institute
The first working chamber 11 in apparatus main body 10 is stated, is installed with motor 12, the motor in the 11 left side end wall of the first working chamber
12 output shaft is fixedly connected with the transmission shaft 13 extended to the right, is installed with first bevel gear 14 and second on the transmission shaft 13
Bevel gear 15,14 upper end of the first bevel gear engagement are connected with third hand tap gear 16,11 upside of the first working chamber
It is equipped with the second working chamber 17 in end wall, 16 axle center of third hand tap gear is installed with the extended into second working chamber 17
One rotary shaft 18,18 upper end of the first rotary shaft are installed with the 4th bevel gear 19, and 19 upper end of the 4th bevel gear engagement is matched
Conjunction is connected with the 5th bevel gear 23, and 23 axle center of the 5th bevel gear is installed with 17 left side of left end and second working chamber
End wall is rotatably assorted the connecting shaft 22 of connection, 23 upper end of the 5th bevel gear engagement is connected with the 6th bevel gear 24, institute
State and be equipped with belt wheel chamber 25 in 17 upside end wall of the second working chamber, 24 axle center of the 6th bevel gear be installed with upwardly extend with it is described
25 upside end wall of belt wheel chamber is rotatably assorted the second rotary shaft 26 of connection, and 26 upper end of the second rotary shaft is installed with first pulley
27, connection is equipped with third working chamber 28 on the right side of the belt wheel chamber 25, and the first pulley 27 is rotatably assorted by belt to be connected with
Second belt wheel 29,29 axle center of the second belt wheel are installed with third rotary shaft 30, and the 7th cone is installed in the third rotary shaft
Gear 31,31 left end of the 7th bevel gear engagement are connected with the 8th bevel gear 32, and 32 axle center of the 8th bevel gear is solid
It is rotatably assorted the 4th rotary shaft 33 of connection equipped with left end and the 28 left side end wall of third working chamber, the 4th rotary shaft 33
On be installed with the 9th bevel gear 34,34 lower end of the 9th bevel gear engagement is connected with the tenth bevel gear 35, the third
Gear cavity 36 is equipped in 28 downside end wall of working chamber, 35 axle center of the tenth bevel gear, which is installed with, to be extended downwardly and the gear cavity
36 downside end walls are rotatably assorted the 5th rotary shaft 37 of connection, are installed with the first spur gear 38, institute in the 5th rotary shaft 37
It states the engagement of 15 upper end of second bevel gear and is connected with the 11st bevel gear 39,39 axle center of the 11st bevel gear is fixed oriented
On extend into the 6th rotary shaft 40 of second working chamber 17,40 upper end of the 6th rotary shaft is installed with the 12nd bevel gear
41, the first cylinder 20, the outputting axial power connection of first cylinder 20 are installed in the 17 right side end wall of the second working chamber
Have the first fixing axle 21, be rotatably assorted in first fixing axle 21 by axle sleeve be connected with move right after with the described 12nd
The tenth third hand tap gear 42 that the engagement of 41 left end of bevel gear is cooperatively connected, upper end is engaged after the tenth third hand tap gear 42 moves right
It is connected with the 14th bevel gear 43, is equipped with the 4th working chamber 44 in the 17 upside end wall of the second working chamber, the described tenth
Four bevel gears, 43 axle center is installed with the screw rod 45 for upwardly extending the connection that is rotatably assorted with the 44 upside end wall of the 4th working chamber, institute
State the slide plate 46 for being threadedly engaged and being connected with the 5th rotary shaft 37 sliding connection on screw rod 45,46 lower end of slide plate
Face is installed with the second fixing axle 47, and 47 lower end of fixing axle is installed with circular fixed block 48, the fixing axle 47 and described
Fixed block 48, which is rotatably assorted to be connected with, moves down the round briquetting that rear outer wall engages mating connection with first spur gear 38
49,49 lower end surface of the circle briquetting is installed with emery disc 50, and connection is equipped with primary cavity 51 on the downside of the 4th working chamber 44, described
Connection is equipped with base plate chamber 52 on the left of primary cavity 51, and the base plate chamber 52 is slidably connected with the bottom plate that lower end surface is installed with rack gear
53。
Valuably, the screening plant includes the 5th working chamber 54 being set in described device main body 10, the transmission
Axis 13 extends into the 5th working chamber 54 and right end is installed with the 15th bevel gear 55,55 rear end of the 15th bevel gear
Engagement is connected with the 16th bevel gear 56, and 56 axle center of the 16th bevel gear is installed with front and back end respectively with the described 5th
54 front and back side wall of working chamber is rotatably assorted the 7th rotary shaft 57 of connection, is installed with the second straight-tooth in the 7th rotary shaft 57
58 and third spur gear 59 are taken turns, connection is equipped with the second slide bar chamber 60, the 5th working chamber 54 on front side of the 5th working chamber 54
It is installed with the second cylinder 61 in rear side end wall, the outputting axial power of second cylinder 61, which is connected with, to be extended forward and telescopic
Third fixing axle 62, be rotatably assorted in the third fixing axle 62 by axle sleeve be connected with it is mobile after with second spur gear 59
The 4th spur gear 63 being cooperatively connected with 60 right end of third spur gear engagement, right end is nibbled after the 4th spur gear 63 is mobile
Conjunction is combined with the 5th spur gear 64 and the 6th spur gear 65, and 64 axle center of the 5th spur gear is installed with rear end and the 5th work
Make 54 rear side end wall of chamber to be rotatably assorted the 8th rotary shaft 66 of connection, 65 axle center of the 6th spur gear be installed with front end with it is described
5th working chamber, 54 front side end wall is rotatably assorted the 9th rotary shaft 67 of connection, and connection is equipped with the on the right side of the 5th working chamber 54
Six working chambers 68 and the 7th working chamber 69, third belt wheel 70 is installed in the 8th rotary shaft 66, and the third belt wheel 70 is logical
Cross belt and be rotatably assorted and be connected with the 4th belt wheel 71,71 axle center of the 4th belt wheel be installed with both ends respectively with the 6th work
Make 68 front and back side wall of chamber to be rotatably assorted the tenth rotary shaft 72 of connection, be installed in the tenth rotary shaft 72 upper end with it is described
The rack gear of 53 lower end of bottom plate engages the 7th spur gear 73 being cooperatively connected, and is installed with the 5th belt wheel in the 9th rotary shaft 67
74, the 5th belt wheel 74 is rotatably assorted by belt is connected with the 6th belt wheel 75, and 75 axle center of the 6th belt wheel is installed with two
Hold the 11st rotary shaft 76 of the connection that is rotatably assorted respectively with the 69 front and back side wall of the 7th working chamber, the 11st rotation
Cam 77 is symmetrically installed on axis 76, connection is equipped with powder chambers 78 on the downside of the primary cavity 51, and 78 left and right sides of powder chambers connects
The logical sieve plate chamber 79 for being equipped with opening relatively and left side is connected to the 7th working chamber, the sieve plate chamber 79 are slidably connected with
Sieve plate 80,80 right end of sieve plate are equipped with sliding slot 81, and the sliding slot 81 is slidably connected with sliding block 82, and the sieve plate chamber 79 is right
Side connection is equipped with spring cavity 83, and 82 right end of sliding block is installed with the resonance block 84 with the spring cavity 83 sliding connection,
Resonance 84 right end of block is installed with the resonant spring 85 that right end is fixedly connected with the 83 right side end wall of spring cavity.
Valuably, it is symmetrical arranged in the third working chamber 28 with 51 inside sub-unit of primary cavity.
Valuably, connection is equipped with feed cavity 86 for opening forward on front side of the primary cavity 51, and 80 front end of sieve plate is fixed
There is extension block 87, facilitate and take out the sieve plate 80, complete material will not ground and carry out secondary operation, 78 downside of powder chambers
Connection is equipped with feeding chamber 88 for opening forward, and the feeding chamber 88 is slidably connected with powder box 89, ground for holding
Raw material.
When being worked by the present apparatus, when needing to carry out grinding work, suitable raw material are added from feed cavity 86, electricity
Machine 12 is started to work, and motor 12 drives first bevel gear 14 to rotate by transmission shaft 13, to be driven by third hand tap gear 16
The rotation of first rotary shaft 18, then drives and drives connecting shaft 22 to rotate by the 4th bevel gear 19, eventually by the 5th bevel gear
23 drive the rotation of the 6th bevel gear 24, and the 6th bevel gear 24 drives first pulley 27 to rotate by the second rotary shaft 26, thus logical
Crossing the second belt wheel 29 drives third rotary shaft 30 to rotate, and then drives the rotation of the 7th bevel gear 32 by the 7th bevel gear 31, most
The rotation of the 9th bevel gear 34 is driven by the 4th rotary shaft 33 eventually, the 9th bevel gear 34 drives the 5th rotation by the tenth bevel gear 35
Shaft 37 rotates, final to drive the rotation of the first spur gear 38, and at the same time, transmission shaft 13 drives the tenth by second bevel gear 15
The rotation of one bevel gear 39, to drive the rotation of the 12nd bevel gear 41 by the 6th rotary shaft 40, the first cylinder 20 starts at this time
Work, the first cylinder 20 drive the tenth third hand tap gear 42 to move right by the first fixing axle 21, then pass through the tenth plug tap tooth
Wheel 41 drives the rotation of the tenth third hand tap gear 42, drives screw rod 45 to rotate eventually by the 14th bevel gear 43, screw rod 45 passes through cunning
Plate 46 drives the second fixing axle 47 to move down, to drive emery disc 50 to move down by round briquetting 49, final first is straight
Gear 38 passes through round briquetting 49 and emery disc 50 is driven to rotate, when needing to carry out screening operation and carrying out secondary operation, the 15th
Bevel gear 55 drives the rotation of the 7th rotary shaft 57 by the 16th bevel gear 56, to drive the second spur gear 58 and third straight-tooth
59 rotation of wheel, the second cylinder 61 are started to work, and the second cylinder 61 drives the 4th spur gear 63 to move back by third fixing axle 62
It is dynamic, then 58 the rotation of the 5th spur gear 64 is driven by the 4th spur gear 63, drives third band eventually by the 8th rotary shaft 66
70 rotation of wheel, third belt wheel 70 drives the rotation of the tenth rotary shaft 72 by the 4th belt wheel 71, to pass through 73 band of the 7th spur gear
Dynamic bottom plate 53 is moved to the left, it is ground after raw material fall on sieve plate 80, the second cylinder 61 is started to work, and the second cylinder 61 is logical
Crossing sieve plate 62 drives the 4th spur gear 63 to move forward, and then the second spur gear 59 drives the 6th straight-tooth by the 4th spur gear 63
65 rotation of wheel drives the rotation of the 6th belt wheel 75 eventually by the 5th belt wheel 74, and the 6th belt wheel 75 passes through 76 band of the 11st rotary shaft
Moving cam 77 rotates, to drive 80 side-to-side vibrations of sieve plate, the raw material after grinding completely, which are screened, to be fallen into powder box 89, takes
Sieve plate 80 out will not grind complete raw material and grind again.
The beneficial effects of the invention are as follows:The configuration of the present invention is simple, it is easy to operate, when being worked by the present apparatus, need
When carrying out grinding work, suitable raw material are added from feed cavity, motor is started to work, and motor drives the first cone by transmission shaft
Gear rotation then drives to drive the rotation of the first rotary shaft by third hand tap gear and drives connection by the 4th bevel gear
Axis rotation drives the rotation of the 6th bevel gear eventually by the 5th bevel gear, and the 6th bevel gear drives first by the second rotary shaft
Belt wheel rotation then drives the 7th bevel gear by the 7th bevel gear to drive the rotation of third rotary shaft by the second belt wheel
Rotation drives the rotation of the 9th bevel gear eventually by the 4th rotary shaft, and the 9th bevel gear drives the 5th rotation by the tenth bevel gear
Shaft rotation, final to drive the rotation of the first spur gear, at the same time, transmission shaft drives the 11st bevel gear by second bevel gear
Rotation, to drive the rotation of the 12nd bevel gear by the 6th rotary shaft, the first cylinder is started to work at this time, and the first cylinder passes through
First fixing axle drives the tenth third hand tap gear to move right, and then drives the rotation of the tenth triconodont wheel by the tenth plug tap gear,
Screw rod rotation is driven eventually by the 14th bevel gear, screw rod drives the second fixing axle to move down by slide plate, to pass through
Round briquetting drives emery disc to move down, and final first spur gear passes through round briquetting and drives emery disc rotation, when being sieved
When selecting work and carrying out secondary operation, the 15th bevel gear drives the rotation of the 7th rotary shaft by the 16th bevel gear, thus band
Dynamic second spur gear and the rotation of third spur gear, the second cylinder are started to work, and the second cylinder drives the 4th by third fixing axle
Spur gear moves backward, and then drives the rotation of the 5th spur gear by the 4th spur gear, drives the eventually by the 8th rotary shaft
The rotation of three belt wheels, third belt wheel drives the rotation of the tenth rotary shaft by the 4th belt wheel, to drive bottom plate by the 7th spur gear
Be moved to the left, it is ground after raw material fall on sieve plate, the second cylinder start to work, the second cylinder by sieve plate drive the 4th
Spur gear moves forward, and then the second spur gear drives the rotation of the 6th spur gear by the 4th spur gear, eventually by the 5th band
Wheel drives the rotation of the 6th belt wheel, and the 6th belt wheel is rotated by the 11st rotary shaft band moving cam, so that sieve plate side-to-side vibrations is driven,
Raw material after grinding completely, which are screened, to be fallen into powder box, is taken out sieve plate, will not ground complete raw material and grind again
Mill, the present apparatus are capable of the grinding and screening of intelligent automation progress raw material, and operation and the operation for reducing manpower are practical, make to need
The proud convenience of grinding work for the raw material being ground, additionally it is possible to the raw material after ground are screened, it then will screening
It does not grind complete material out and carries out secondary grinding.
The above description is merely a specific embodiment, but scope of protection of the present invention is not limited thereto, any
The change or replacement expected without creative work, should be covered by the protection scope of the present invention.Therefore, of the invention
Protection scope should be determined by the scope of protection defined in the claims.
Claims (4)
1. a kind of motor-driven mill of the invention, including apparatus main body, be set to the intracorporal grinding device of described device master and
It is set to the intracorporal screening plant of described device master, it is characterised in that:The grinding device includes being set to described device main body
The first interior working chamber is installed with motor in end wall on the left of first working chamber, and the output shaft of the motor is fixedly connected with
The transmission shaft extended to the right is installed with first bevel gear and second bevel gear, the first bevel gear upper end on the transmission shaft
Engagement is connected with third hand tap gear, is equipped with the second working chamber, the triconodont on the upside of first working chamber in end wall
Wheel axle center is installed with the first rotary shaft extended into second working chamber, and first rotary shaft upper end is installed with the 4th cone
Gear, the 4th bevel gear upper end engagement are connected with the 5th bevel gear, and the 5th bevel gear axle center is installed with left end
Be rotatably assorted the connecting shaft of connection with end wall on the left of second working chamber, the 5th bevel gear upper end engagement cooperation
It is connected with the 6th bevel gear, is equipped with belt wheel chamber on the upside of second working chamber in end wall, the 6th bevel gear axle center is installed with
The second rotary shaft of the connection that is rotatably assorted with end wall on the upside of the belt wheel chamber is upwardly extended, second rotary shaft upper end is installed with
First pulley, belt wheel chamber right side connection are equipped with third working chamber, and the first pulley is rotatably assorted by belt to be connected with
Second belt wheel, second belt wheel axle center are installed with third rotary shaft, the 7th bevel gear, institute are installed in the third rotary shaft
It states the engagement of the 7th bevel gear left end and is connected with the 8th bevel gear, the 8th bevel gear axle center is installed with left end and described the
End wall is rotatably assorted the 4th rotary shaft of connection on the left of three working chambers, is installed with the 9th bevel gear, institute in the 4th rotary shaft
It states the engagement of the 9th bevel gear lower end and is connected with the tenth bevel gear, be equipped with gear cavity on the downside of the third working chamber in end wall,
The tenth bevel gear axle center is installed with the 5th rotary shaft for extending downwardly the connection that is rotatably assorted with end wall on the downside of the gear cavity,
The first spur gear is installed in 5th rotary shaft, the second bevel gear upper end engagement is connected with the 11st cone tooth
Wheel, the 11st bevel gear axle center are installed with the 6th rotary shaft for extending upwardly into second working chamber, the 6th rotation
Shaft upper end is installed with the 12nd bevel gear, is installed with the first cylinder, first gas in end wall on the right side of second working chamber
The outputting axial power of cylinder is connected with the first fixing axle, and being rotatably assorted to be connected with by axle sleeve in first fixing axle moves right
The tenth third hand tap gear being cooperatively connected is engaged with the 12nd bevel gear left end afterwards, after the tenth third hand tap gear moves right
Upper end engagement is connected with the 14th bevel gear, is equipped with the 4th working chamber on the upside of second working chamber in end wall, and described the
14 bevel gear axle center are installed with the screw rod for upwardly extending the connection that is rotatably assorted with end wall on the upside of the 4th working chamber, the silk
The slide plate being connected with the 5th rotary shaft sliding connection is threadedly engaged on bar, the slide plate lower end surface is installed with second
Fixing axle, the fixing axle lower end are installed with circular fixed block, and the fixing axle and the fixed block are rotatably assorted and are connected with
It moves down rear outer wall and engages the round briquetting being cooperatively connected with first spur gear, the circle briquetting lower end surface is installed with
Emery disc, the 4th working chamber downside connection are equipped with primary cavity, and connection is equipped with base plate chamber, the base plate chamber on the left of the primary cavity
It is slidably connected with the bottom plate that lower end surface is installed with rack gear.
2. a kind of motor-driven mill according to claim, it is characterised in that:The screening plant is described including being set to
The 5th working chamber in apparatus main body, the transmission shaft extends into the 5th working chamber and right end is installed with the 15th cone tooth
Wheel, the 15th bevel gear rear end engagement are connected with the 16th bevel gear, and the 16th bevel gear axle center is installed with
Front and back end is rotatably assorted with side wall before and after the 5th working chamber the 7th rotary shaft of connection respectively, in the 7th rotary shaft
It is installed with the second spur gear and third spur gear, connection is equipped with the second slide bar chamber, the 5th work on front side of the 5th working chamber
Make to be installed with the second cylinder on rear side of chamber in end wall, the outputting axial power of second cylinder, which is connected with, to be extended forward and telescopic
Third fixing axle, be rotatably assorted in the third fixing axle by axle sleeve be connected with it is mobile after with second spur gear and described
The 4th spur gear that the engagement of third spur gear right end is cooperatively connected, right end engagement is combined with the 5th after the 4th spur gear is mobile
Spur gear and the 6th spur gear, the 5th spur gear axle center are installed with rear end and match with end wall rotation on rear side of the 5th working chamber
The 8th rotary shaft of connection is closed, the 6th spur gear axle center is installed with front end and matches with end wall rotation on front side of the 5th working chamber
The 9th rotary shaft of connection is closed, is connected on the right side of the 5th working chamber and is equipped with the 6th working chamber and the 7th working chamber, the described 8th
Third belt wheel is installed in rotary shaft, the third belt wheel is rotatably assorted by belt is connected with the 4th belt wheel, the 4th band
Wheel axle center is installed with both ends and is rotatably assorted respectively with side wall before and after the 6th working chamber the tenth rotary shaft of connection, described
It is installed with upper end in tenth rotary shaft and engages the 7th spur gear being cooperatively connected, the 9th rotation with the rack gear of the bottom plate lower end
The 5th belt wheel is installed in shaft, the 5th belt wheel is rotatably assorted by belt is connected with the 6th belt wheel, the 6th belt wheel
Axle center is installed with both ends and is rotatably assorted respectively with side wall before and after the 7th working chamber the 11st rotary shaft of connection, and described the
Cam is symmetrically installed in 11 rotary shafts, connection is equipped with powder chambers, the powder chambers left and right sides connection on the downside of the primary cavity
The sieve plate chamber that opposite and left side is connected to the 7th working chamber equipped with opening, the sieve plate chamber are slidably connected with sieve plate,
The sieve plate right end is equipped with sliding slot, and the sliding slot is slidably connected with sliding block, and connection is equipped with spring cavity on the right side of the sieve plate chamber,
The sliding block right end be installed with the spring cavity sliding connection resonance block, the resonance block right end be installed with right end and
The resonant spring that end wall is fixedly connected on the right side of the spring cavity.
3. a kind of motor-driven mill according to claim, it is characterised in that:In the third working chamber and in primary cavity
Section components are symmetrical arranged.
4. a kind of motor-driven mill according to claim, it is characterised in that:Connection is equipped with opening on front side of the primary cavity
Forward feed cavity, the sieve plate front end are installed with extension block, facilitate and take out the sieve plate, will not grind complete material and carry out
Secondary operation, powder chambers downside connection are equipped with feeding chamber for opening forward, and the feeding chamber is slidably connected with powder
Box, for holding ground raw material.
Priority Applications (1)
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CN201810962320.3A CN108855385A (en) | 2018-08-22 | 2018-08-22 | A kind of motor-driven mill |
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CN201810962320.3A CN108855385A (en) | 2018-08-22 | 2018-08-22 | A kind of motor-driven mill |
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CN201810962320.3A Withdrawn CN108855385A (en) | 2018-08-22 | 2018-08-22 | A kind of motor-driven mill |
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CN109845653A (en) * | 2018-11-26 | 2019-06-07 | 钱巍 | A kind of livestock breed aquatics device for feeding |
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CN110861679A (en) * | 2019-12-02 | 2020-03-06 | 绍兴上虞渡进电子科技有限公司 | Novel railway locomotive quick rail transfer device |
CN110841856A (en) * | 2019-12-12 | 2020-02-28 | 义乌轩久铁路技术有限公司 | Automatic painting device used during checking and clearing of train stop |
CN110841856B (en) * | 2019-12-12 | 2021-05-11 | 绍兴不忘初心机械设计有限公司 | Automatic painting device used during checking and clearing of train stop |
CN110936294A (en) * | 2019-12-20 | 2020-03-31 | 东阳鸿松机械科技有限公司 | Grinding wheel grinding effect detection equipment |
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CN111215278B (en) * | 2020-03-10 | 2020-12-08 | 温州安旭鞋业有限公司 | Boot surface nano-coating spraying device |
CN111250398A (en) * | 2020-03-11 | 2020-06-09 | 义乌奥莉机械科技有限公司 | Building grit sieving mechanism |
CN111318334A (en) * | 2020-03-24 | 2020-06-23 | 龙游讴凡纳米材料有限公司 | Nano-material produces grinder |
CN111318342A (en) * | 2020-03-24 | 2020-06-23 | 龙游讴凡纳米材料有限公司 | Nanometer sand mill that can grind repeatedly |
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Application publication date: 20181123 |