CN215463803U - V-shaped mixer - Google Patents

V-shaped mixer Download PDF

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Publication number
CN215463803U
CN215463803U CN202120840625.4U CN202120840625U CN215463803U CN 215463803 U CN215463803 U CN 215463803U CN 202120840625 U CN202120840625 U CN 202120840625U CN 215463803 U CN215463803 U CN 215463803U
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China
Prior art keywords
motor
charging barrel
barrel
rotating shaft
shaped charging
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CN202120840625.4U
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Chinese (zh)
Inventor
曾国辉
左建伟
吴柏峰
肖彦達
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Hunan Yibai Yiyou Biotechnology Co ltd
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Hunan Yibai Yiyou Biotechnology Co ltd
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Abstract

The utility model discloses a V-shaped mixer which comprises a fixed column and a V-shaped charging barrel, wherein a discharging hole of the V-shaped charging barrel is provided with a stirring device. V type feed cylinder is rotatory between two fixed columns, mixes the material in the V type feed cylinder, mixes the completion back, and the sealed lid of discharge gate of V type feed cylinder is opened, and agitating unit work simultaneously stirs the material that gets into the discharge gate, breaks up the material that gets into the discharge gate, helps the material to discharge smoothly through the discharge gate, avoids taking place the material and blocks up, effectively solves the problem that V type blendor unloading inefficiency that the feed opening of V type blendor blockked up the cause.

Description

V-shaped mixer
Technical Field
The utility model relates to the technical field of blenders, in particular to a V-shaped blender.
Background
The V-shaped mixer is used for mixing dry powder materials or granular materials and is suitable for the industries of chemical industry, food, medicine, feed, ceramics, metallurgy and the like.
The feed opening of V type blendor is arranged and is probably taken place the powder and pile up, causes the discharge gate to block up, consequently needs solve the jam problem of feed opening with the help of other instruments, causes V type blendor unloading speed slow, and the unloading is inefficient.
Therefore, how to solve the problem of low discharging efficiency of the V-shaped mixer caused by the blockage of the discharging opening of the V-shaped mixer becomes a technical problem to be solved urgently by technical personnel in the field.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides a V-shaped mixer, which is used for solving the problem of low discharging efficiency of the V-shaped mixer caused by blockage of a discharging opening of the V-shaped mixer.
In order to achieve the purpose, the utility model provides the following technical scheme:
a V-blender comprising:
the number of the fixed columns is two and the fixed columns are arranged oppositely;
a V-shaped charging barrel which is positioned between the two fixed columns, wherein two sides of the V-shaped charging barrel are respectively provided with a first rotating shaft, one end of the first rotating shaft is fixedly connected with the V-shaped charging barrel, the other end of the first rotating shaft is rotatably connected with the fixed columns, one first rotating shaft is connected with a driving device, two feeding holes of the V-shaped charging barrel are provided with a feeding hole sealing cover, a discharging hole sealing cover is arranged on a discharging hole of the V-shaped charging barrel, the discharging hole of the V-shaped charging barrel is provided with a stirring device for stirring materials entering the discharging hole to prevent the discharging hole from being blocked,
the stirring device comprises a stirring paddle and a first motor, the stirring paddle is located at the discharge port, the stirring paddle and the discharge port are coaxially arranged, a first bevel gear is arranged on a second rotating shaft of the stirring paddle, a second bevel gear is arranged on an output shaft of the first motor, the first motor drives the stirring paddle to rotate through the first bevel gear meshed with the second bevel gear, the first motor is located outside the V-shaped charging barrel, and the output shaft of the first motor is perpendicular to the second rotating shaft.
Preferably, in the V-shaped mixer, the paddle includes at least three blades.
Preferably, in the V-shaped mixer, the stirring paddle is a stainless steel stirring paddle, an aluminum alloy stirring paddle or a plastic stirring paddle.
Preferably, in the above V-shaped mixer, the V-shaped charging barrel includes two feeding barrels and a discharging barrel arranged in a V shape, an included angle between the two feeding barrels is an acute angle, the lower ends of the two feeding barrel cylinders are connected and communicated with each other, the discharging barrel is connected and communicated with the lower ends of the two feeding barrels, the axis of the discharging barrel coincides with the bisector of the acute angle between the two feeding barrels, and the stirring device is disposed in the discharging barrel.
Preferably, in the above V-shaped mixer, a discharge valve is disposed in the discharge barrel, and the discharge valve is located below the stirring paddle.
Preferably, in the above V-blender, one of the two feed cylinders has a length greater than that of the other feed cylinder.
Preferably, in the V-shaped mixer, the V-shaped charging barrel is rotatably connected to the first rotating shaft through a sleeve, an axis of the sleeve is perpendicular to an axis of the discharging barrel, one end of the sleeve is welded to a barrel wall of the V-shaped charging barrel, and the other end of the sleeve is used for inserting the first rotating shaft.
Preferably, in the V-type blender, the driving means comprises:
a second motor;
the speed reducer is connected with an output shaft of the second motor through a coupler;
a first gear mounted on an output shaft of the reducer;
a second gear installed on the first rotating shaft and engaged with the first gear;
alternatively, the driving device includes:
a second motor;
the speed reducer is connected with an output shaft of the second motor through a coupler;
a first sprocket mounted on an output shaft of the reducer;
and the second chain wheel is arranged on the first rotating shaft and is connected with the first chain wheel through a chain.
Preferably, in the V-shaped mixer, one of the fixed columns is a hollow column, and the driving device is disposed in a cavity of the hollow column.
Preferably, in the V-shaped mixer, the mixer further includes a base, and the two fixing columns are mounted on the base.
According to the technical scheme, the V-shaped mixer comprises the fixing column and the V-shaped charging barrel, and the discharging hole of the V-shaped charging barrel is provided with the stirring device. V type feed cylinder is rotatory between two fixed columns, mixes the material in the V type feed cylinder, mixes the completion back, and the sealed lid of discharge gate of V type feed cylinder is opened, and agitating unit work simultaneously stirs the material that gets into the discharge gate, breaks up the material that gets into the discharge gate, helps the material to discharge smoothly through the discharge gate, avoids taking place the material and blocks up, effectively solves the problem that V type blendor unloading inefficiency that the feed opening of V type blendor blockked up the cause.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Fig. 1 is a schematic structural diagram of a V-shaped mixer provided in an embodiment of the present invention.
Wherein the content of the first and second substances,
1. the device comprises a fixed column, a V-shaped charging barrel 2, a feeding barrel 21, a discharging barrel 22, a stirring device 3, a stirring paddle 31, a stirring paddle 32, a first motor 4 and a base.
Detailed Description
The utility model discloses a V-shaped mixer, which aims to solve the problem of low discharging efficiency of the V-shaped mixer caused by blockage of a discharging opening of the V-shaped mixer.
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Please refer to fig. 1.
The utility model discloses a V-shaped mixer which comprises a fixed column 1 and a V-shaped charging barrel 2.
The number of the fixed columns 1 is two and the fixed columns are oppositely arranged, and a V-shaped charging barrel 2 is arranged between the two fixed columns 1. As shown in fig. 1, the V-shaped barrel 2 is located on the same plane with two fixed posts 1.
The both sides of V type feed cylinder 2 are provided with first pivot respectively, the one end and the 2 fixed connection of V type feed cylinder of first pivot, and the other end fixed column 1 of first pivot rotates to be connected. It should be noted here that two first rotating shafts on two sides of the V-shaped charging barrel 2 are coaxially arranged, and the V-shaped charging barrel 2 can rotate around the axis of the first rotating shaft synchronously with the first rotating shaft.
The rotation of the V-shaped charging barrel 2 is realized through a driving device, the driving device is connected with one of the first rotating shafts to drive the first rotating shafts to rotate, and the first rotating shafts drive the V-shaped charging barrel 2 to rotate.
Because V type feed cylinder 2 realizes the homogeneous mixing of material through rotating, in order to avoid the material to throw away from the feed inlet and the discharge gate of V type feed cylinder 2, need set up the sealed lid of feed inlet at the feed inlet of V type feed cylinder 2, set up the sealed lid of discharge gate at the discharge gate of V type feed cylinder 2. It should be noted here that the larger end of the V-shaped barrel 2 has two inlets, and the smaller end of the V-shaped barrel 2 is provided with a discharge port, through which the material fed into the V-shaped barrel 2 is finally discharged. When the materials are fed into the V-shaped hopper, two sealing covers of the feeding port are required to be opened, and the sealing covers of the discharging port are screwed tightly; when the V-shaped hopper rotates to mix materials, two sealing covers of the feeding port are required to be screwed, and the sealing cover of the discharging port is required to be screwed; when the V type hopper ejection of compact, need open two sealed lids of feed inlet, the sealed lid of discharge gate is opened.
In order to avoid the material to take place to block up when discharging through the discharge gate, this scheme is provided with agitating unit 3 at the discharge gate, and agitating unit 3 is used for stirring the material that gets into the discharge gate and breaks up, prevents that the material from taking place to block up at the discharge gate. Preferably, the stirring device 3 is opened when the V-shaped hopper discharges.
In a particular embodiment of the solution, the stirring device 3 comprises a stirring paddle and a first motor 32. Specifically, the stirring paddle 31 is located at the discharge port of the V-shaped charging barrel 2, and is lower than the merging position of the two charging barrels 21 of the V-shaped charging barrel 2, and the stirring paddle 31 is arranged coaxially with the discharge port.
The paddle 31 includes at least three blades.
The stirring paddle 31 may be a stainless steel stirring paddle, an aluminum alloy stirring paddle, or a plastic stirring paddle.
The first motor 32 drives the stirring paddle 31 to rotate. Specifically, a first bevel gear is arranged on a second rotating shaft of the stirring paddle 31, a second bevel gear is arranged on an output shaft of the first motor 32, the first motor 32 drives the second rotating shaft to rotate through the first bevel gear meshed with the second bevel gear, and the second rotating shaft drives the stirring paddle 31 to rotate.
Preferably, the first motor 32 is located outside the V-shaped barrel 2, and an output shaft of the first motor 32 is perpendicular to the second rotating shaft.
The V type blendor that this scheme disclosed, including fixed column 1 and V type feed cylinder 2, the discharge gate of V type feed cylinder 2 is provided with agitating unit 3. V type feed cylinder 2 is rotatory between two fixed columns 1, mixes the material in V type feed cylinder 2, mixes the completion back, and the sealed lid of discharge gate of V type feed cylinder 2 is opened, and agitating unit 3 works simultaneously, stirs the material that gets into the discharge gate, breaks up the material that gets into the discharge gate, helps the material to discharge smoothly through the discharge gate, avoids taking place the material and blocks up, effectively solves the problem that V type blendor unloading inefficiency that the feed opening of V type blendor blockked up the cause.
Simultaneously, agitating unit 3 includes first motor 32 and stirring rake 31, and first motor 32 drive stirring rake 31 rotates, realizes breaing up the automation of discharge gate material, does not need artifical supplementary discharge gate unloading, reduces the artifical intensity of labour who solves the feed opening and block up the problem.
The diameter of the circumference that the periphery of stirring rake 31 was located is less than the diameter of discharge gate, avoids stirring rake 31 to occupy the space of discharge gate too much, influences the unloading speed of discharge gate.
The V-shaped charging barrel 2 comprises two feeding barrels 21 and a discharging barrel 22 which are arranged in a V shape, an included angle between the two feeding barrels 21 is an acute angle, the lower ends of the two feeding barrels 21 are connected and communicated with each other, the discharging barrel 22 is connected and communicated with the lower ends of the two feeding barrels 21, the axis of the discharging barrel 22 coincides with the bisector of the acute angle between the two feeding barrels 21, and the stirring device 3 is arranged in the discharging barrel 22.
This scheme has prolonged the length of play feed cylinder 22, in fact the time delay has prolonged the length of discharge gate, provides sufficient installation space for agitating unit 3.
The lower extreme welded connection of two feed cylinders 21 in this scheme goes out feed cylinder 22 and two feed cylinders 21 welded connection.
In the scheme, the lengths of the two feeding cylinders 21 are not equal, wherein the length of one feeding cylinder 21 is greater than that of the other feeding cylinder 21. The two feeding cylinders 21 are different in length, so that the effect of dumping can be achieved, and the full mixing in the V-shaped charging barrel 2 is realized.
Preferably, a discharge valve is arranged in the discharge cylinder 22, and the discharge valve is positioned below the stirring paddle 31.
In order to reduce the connection difficulty of the V-shaped charging barrel 2 and the first rotating shaft, the V-shaped charging barrel 2 is provided with a sleeve, and the axis of the sleeve is perpendicular to the axis of the discharging barrel 22. When the connecting device is connected, one end of the sleeve is connected with the V-shaped charging barrel 2 in a welding mode, and the other end of the sleeve is used for inserting the first rotating shaft. Preferably, the sleeve is a clearance fit with the first shaft and the sleeve is connected or keyed to the first shaft.
In a particular embodiment of the solution, the drive means comprise a second motor, a reduction gear, a first gear and a second gear. The speed reducer is connected with an output shaft of the second motor through a coupler, the first gear is installed on the output shaft of the speed reducer, and the second gear is installed on the first rotating shaft and meshed with the first gear.
When the charging device works, the second motor drives the first gear to rotate through the coupler and the speed reducer, the first gear drives the second gear to rotate, the second gear drives the first rotating shaft to rotate, and finally the first rotating shaft drives the V-shaped charging barrel 2 to rotate.
In another embodiment of the present solution, the driving means comprises a second motor, a speed reducer, a first sprocket and a second sprocket. The speed reducer is connected with an output shaft of the second motor through a coupler, the first chain wheel is installed on the output shaft of the speed reducer, and the second chain wheel is installed on the first rotating shaft and is connected with the first chain wheel through a chain.
During operation, the second motor drives the first chain wheel to rotate through the coupler and the speed reducer, the first chain wheel drives the second chain wheel to rotate through the chain, the second chain wheel drives the first rotating shaft to rotate, and finally the first rotating shaft drives the V-shaped charging barrel 2 to rotate.
Fixed column 1 adopts hollow post in this scheme, sets up drive arrangement in the cavity of one of them fixed column 1.
Adopt hollow column can alleviate the whole quality of V type blendor to a certain extent, reduce the transport degree of difficulty of V type blendor.
The V type blendor that this scheme disclosed, two fixed columns 1 install on base 4, and base 4 sits on the field.
Base 4 is connected with two fixed columns 1, has increased the area of contact on V type blendor and ground, improves the stability of V type blendor work.
When in use, the utility model is used for cleaning the inner wall of the tank,
firstly, opening a sealing cover of a feeding hole, pouring materials into a V-shaped material barrel 2 at one time, starting a second motor to mix materials for 3-5 minutes, and closing the second motor;
then discharging, opening a sealing cover of a discharge hole, starting a first motor 32, and rotating a stirring paddle 31 to stir the material at the discharge hole;
and after the discharging is finished, the first motor 32 is turned off, and the equipment is cleaned.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the utility model. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (10)

1. The utility model provides a V type blendor which characterized in that includes:
the fixing device comprises fixing columns (1), wherein the number of the fixing columns (1) is two, and the fixing columns are oppositely arranged;
the V-shaped charging barrel (2) is positioned between the two fixed columns (1), two sides of the V-shaped charging barrel (2) are respectively provided with a first rotating shaft, one end of each first rotating shaft is fixedly connected with the V-shaped charging barrel (2), the other end of each first rotating shaft is rotatably connected with the corresponding fixed column (1), one first rotating shaft is connected with a driving device, two feed inlets of the V-shaped charging barrel (2) are provided with feed inlet sealing covers, a discharge outlet of the V-shaped charging barrel (2) is provided with a discharge outlet sealing cover, a discharge outlet of the V-shaped charging barrel (2) is provided with a stirring device (3) for stirring materials entering the discharge outlet to prevent the discharge outlet from being blocked,
agitating unit (3) are including stirring rake (31) and first motor (32), stirring rake (31) are located the discharge gate, stirring rake (31) with the discharge gate is coaxial to be arranged, be provided with first bevel gear in the second pivot of stirring rake (31), be provided with on the output shaft of first motor (32) with second bevel gear, first motor (32) through with second bevel gear meshing first bevel gear drives stirring rake (31) rotate, first motor (32) are located outside V type feed cylinder (2), the output shaft of first motor (32) with the second pivot is perpendicular.
2. A V-blender according to claim 1, characterized in that the paddle (31) comprises at least three blades.
3. The V-type blender according to claim 1, wherein said paddle (31) is a stainless steel paddle or an aluminum alloy paddle or a plastic paddle.
4. The V-shaped mixer according to claim 1, wherein the V-shaped charging barrel (2) comprises two feeding barrels (21) and a discharging barrel (22) which are arranged in a V shape, the included angle between the two feeding barrels (21) is an acute angle, the lower ends of the two feeding barrels (21) are connected and communicated with each other, the discharging barrel (22) is connected and communicated with the lower ends of the two feeding barrels (21), the axis of the discharging barrel (22) is coincident with the bisector of the acute angle between the two feeding barrels (21), and the stirring device (3) is arranged in the discharging barrel (22).
5. The V-blender according to claim 4, wherein a discharge valve is arranged in the discharge barrel (22), and the discharge valve is positioned below the stirring paddle (31).
6. V-blender according to claim 4, characterized in that one (21) of said two feed cylinders (21) has a length greater than the other (21).
7. The V-shaped mixer according to claim 1, wherein the V-shaped charging barrel (2) is rotatably connected with the first rotating shaft through a sleeve, the axis of the sleeve is perpendicular to the axis of the discharging barrel (22), one end of the sleeve is connected with the wall of the V-shaped charging barrel (2) in a welding mode, and the other end of the sleeve is used for inserting the first rotating shaft.
8. The V-blender as claimed in claim 1, wherein the driving means comprises:
a second motor;
the speed reducer is connected with an output shaft of the second motor through a coupler;
a first gear mounted on an output shaft of the reducer;
a second gear installed on the first rotating shaft and engaged with the first gear;
alternatively, the driving device includes:
a second motor;
the speed reducer is connected with an output shaft of the second motor through a coupler;
a first sprocket mounted on an output shaft of the reducer;
and the second chain wheel is arranged on the first rotating shaft and is connected with the first chain wheel through a chain.
9. The V-blender according to claim 1, wherein one of said stationary posts (1) is a hollow post, said drive means being disposed within a cavity of said hollow post.
10. The V-type blender according to claim 9, further comprising a base (4), wherein two of said fixing posts (1) are mounted on said base (4).
CN202120840625.4U 2021-04-22 2021-04-22 V-shaped mixer Active CN215463803U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120840625.4U CN215463803U (en) 2021-04-22 2021-04-22 V-shaped mixer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120840625.4U CN215463803U (en) 2021-04-22 2021-04-22 V-shaped mixer

Publications (1)

Publication Number Publication Date
CN215463803U true CN215463803U (en) 2022-01-11

Family

ID=79775549

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120840625.4U Active CN215463803U (en) 2021-04-22 2021-04-22 V-shaped mixer

Country Status (1)

Country Link
CN (1) CN215463803U (en)

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