CN210646550U - Ultramicro colloid mill device - Google Patents
Ultramicro colloid mill device Download PDFInfo
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- CN210646550U CN210646550U CN201921628833.7U CN201921628833U CN210646550U CN 210646550 U CN210646550 U CN 210646550U CN 201921628833 U CN201921628833 U CN 201921628833U CN 210646550 U CN210646550 U CN 210646550U
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- grinding stone
- grindstone
- colloid mill
- mill device
- main shaft
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Abstract
The utility model discloses an ultramicro colloid mill device, the novel nipple rectifier comprises a cylindrical shel, be provided with first grindstone in the barrel, first grindstone is round platform shape, and the top of first grindstone is provided with the second grindstone, and the through-hole has been seted up to the centre of second grindstone, and the lower extreme of this through-hole is round platform shape, the structure phase-match of this round platform shape structure and first grindstone, the bottom of first grindstone is connected with the one end of main shaft, and the other end of main shaft is provided with from the driving wheel, is connected with the action wheel through the belt from the driving wheel, and the top of action wheel is connected with first motor, the top of second grindstone is connected with the one end of axostylus axostyle through first crossbearer, and the other end of axostylus ax. This super little colloid mill device adopts first grindstone and first grindstone matched with structural design, can two-way rotation grinding, and two grindstones move relatively for the material bears grinds the rate of cut faster, thereby has greatly improved grinding efficiency.
Description
Technical Field
The utility model relates to an ultramicro mill technical field specifically is an ultramicro colloid mill device.
Background
Superfine mill is a device for grinding fine material particles into superfine powder. The commonly used ultra-micro mill is one of colloid mills. The device can be used not only for ultra-fine grinding, but also for mixing, dispersing and emulsifying.
The ultra-micro mill mainly utilizes the high-speed rotation of a grinding stone to grind materials, the traditional device adopts unidirectional rotation and lacks a device for pushing the materials, and the descending speed of the materials is slow, so that the grinding efficiency is low.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide an ultramicro colloid mill device to solve the lower problem of the grinding efficiency who proposes in the above-mentioned background art.
In order to achieve the above object, the utility model provides a following technical scheme: the utility model provides an ultramicro colloid mill device, includes the barrel, be provided with first grindstone in the barrel, first grindstone is the round platform shape, and the top of first grindstone is provided with the second grindstone, and the through-hole has been seted up to the centre of second grindstone, and the lower extreme of this through-hole is the round platform shape, the structure phase-match of this round platform shape structure and first grindstone, the bottom of first grindstone is connected with the one end of main shaft, and the other end of main shaft is provided with from the driving wheel, is connected with the action wheel through the belt from the driving wheel, and the top of action wheel is connected with first motor, the top of second grindstone is connected with the one end of axostylus axostyle through first crossbearer, and.
Preferably, the outer wall of the shaft is provided with helical teeth having a diameter smaller than that of the central through hole of the second grinding stone.
Preferably, the top of barrel is connected with the feeder hopper, and the top of feeder hopper is provided with three Y-shaped second crossbearers, and the three-end of second crossbearer passes through screwed connection with the inner wall of feeder hopper respectively, and the second motor is installed in the middle of the second crossbearer.
Preferably, a plurality of support rings are arranged on the inner wall of the barrel at equal intervals, a plurality of annular grooves are formed in the outer wall of the second grinding stone at equal intervals, and the structures of the annular grooves are matched with the structures of the support rings.
Preferably, one side of the cylinder is provided with a box body, the first motor is installed in the box body, a supporting beam is arranged in the cylinder body, and the main shaft penetrates through the middle position of the supporting beam.
Preferably, the spindle is sleeved with a centrifugal impeller, one side of the cylinder is connected with a discharge hopper, and the position of the discharge hopper corresponds to the position of the centrifugal impeller.
Compared with the prior art, the beneficial effects of the utility model are that: this super little colloid mill device adopts first grindstone and first grindstone matched with structural design, can two-way rotation grinding, and two grindstones move relatively for the material bears grinds the rate of cut faster, thereby has greatly improved grinding efficiency.
Drawings
FIG. 1 is a front view of an ultramicro colloid mill device of the utility model;
FIG. 2 is a top view of a first cross frame of an ultramicro colloid mill device according to the present invention;
fig. 3 is a top view of the second cross frame of the ultramicro colloid mill device of the utility model.
In the figure: 1. the device comprises a shaft rod, 2, a feeding hopper, 3, a first cross frame, 4, a cylinder, 5, a second grinding stone, 6, a first motor, 7, a box body, 8, a driving wheel, 9, a supporting ring, 10, the first grinding stone, 11, a main shaft, 12, a centrifugal impeller, 13, a supporting beam, 14, a discharging hopper, 15, a driven wheel, 16, a belt, 17, a second motor, 18 and a second cross frame.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-3, the present invention provides a technical solution: an ultramicro colloid mill device comprises a cylinder body 4, wherein a first grinding stone 10 is arranged in the cylinder body 4, the first grinding stone 10 is in a round table shape, a second grinding stone 5 is arranged at the top of the first grinding stone 10, a through hole is formed in the middle of the second grinding stone 5, the lower end of the through hole is in a round table shape, the round table shape structure is matched with the structure of the first grinding stone 10, the structure enables the first grinding stone 10 and the second grinding stone 5 to have larger contact area and enables materials to slowly descend along an inclination angle, the grinding time is prolonged, the bottom of the first grinding stone 10 is connected with one end of a main shaft 11, the main shaft 11 is connected with the first grinding stone 10 through screws, the lower end of the main shaft 11 is rotatably connected with the bottom edge of the cylinder body 4 through a bearing, a centrifugal impeller 12 is sleeved outside the main shaft 11 and connected with the main shaft 11 through screws, one side of the cylinder body 4 is connected with a discharge hopper 14, the discharge hopper 14 is connected with the cylinder body 4, the position of the discharge hopper 14 corresponds to the position of the centrifugal impeller 12, the centrifugal impeller 12 can drive the ground material to move towards the discharge hopper 14 to promote the discharge of the material, the other end of the main shaft 11 is provided with a driven wheel 15, the driven wheel 15 is connected with the main shaft 11 in a clamping manner, the driven wheel 15 is connected with a driving wheel 8 through a belt 16, the top of the driving wheel 8 is connected with a first motor 6, the driving wheel 8 is connected with the first motor 6 through a shaft, the structure enables the first grinding stone 10 to be driven to rotate by the first motor 6, the top of the second grinding stone 5 is connected with one end of a shaft lever 1 through a first cross frame 3, the other end of the shaft lever 1 is connected with a second motor 17, the first cross frame 3 is fixedly connected with the shaft lever 1 and the second grinding stone 5 through screws, the first cross frame 3 is connected with the second motor 17 through a shaft coupling, the structure enables the second grinding stone 5 to be driven to, the second grinding stone 5 and the first grinding stone 10 have opposite rotating directions, the first grinding stone 10 and the first grinding stone 10 are matched to realize bidirectional rotating grinding, the two grinding stones operate relatively to ensure that the grinding and cutting speed borne by materials is higher, thereby greatly improving the grinding efficiency, the outer wall of the shaft lever 1 is provided with spiral teeth, the diameter of the spiral teeth is smaller than that of a middle through hole of the second grinding stone 5, the spiral teeth and the shaft lever 1 are of an integral structure, the structure can continuously push the materials downwards to improve the feeding efficiency, the diameter of the spiral teeth is smaller, when the grinding speed is smaller than the material pushing efficiency, the materials can be extruded to upwards turn over from the four circumferential directions of the spiral teeth to prevent the materials from being blocked, the top of the barrel 4 is connected with the feed hopper 2, the feed hopper 2 and the barrel 4 are welded, the connecting mode can improve the integrity and is firmer, the top of the feed hopper 2 is provided with a second cross frame 18 in a three-fork shape, the three ends of the second cross frame 18 are respectively connected with the inner wall of the feed hopper 2 through screws, the second motor 17 is arranged in the middle of the second cross frame 18, the second cross frame 18 is connected with the second motor 17 through screws, the structure can stably support the second motor 17, a plurality of support rings 9 are equidistantly arranged on the inner wall of the barrel 4, the number of the support rings 9 is shown in figure 1, a plurality of annular grooves are equidistantly arranged on the outer wall of the second grinding stone 5, the structures of the annular grooves are matched with the structures of the support rings 9, the support rings 9 are connected with the barrel 4 through screws, the connection mode is firmer, the support limit of the support rings 9 on the second grinding stone 5 enables the second grinding stone 5 to rotate more stably and smoothly, the box body 7 is arranged on one side of the barrel 4, the first motor 6 is arranged in the box body 7, the box body 7 is connected with the barrel 4 through screws, and the inner wall of the first motor 6 is connected with the box body 7 through screws, this structure can protect first motor 6, is provided with a supporting beam 13 in the barrel 4, and main shaft 11 wears to locate a supporting beam 13's intermediate position, and main shaft 11 passes through the bearing with a supporting beam 13 and rotates and be connected, and this structure can improve main shaft 11's stability.
Example 2: the barrel 4 and the feed hopper 2 can also be connected through screws, and the connection mode is more convenient to disassemble, assemble, repair and maintain.
The working principle is as follows: when the ultramicro colloid mill device is used, whether parts are damaged or not or the connection is not firm is firstly checked, the ultramicro colloid mill device is used after the checking is correct, a first grinding stone 10 and a second grinding stone 5 are arranged in a cylinder body 4 of the device, the first grinding stone 10 and the second grinding stone 5 are respectively driven by a first motor 6 and a second motor 17 to rotate in opposite directions, materials are put into the ultramicro colloid mill device from an opening at the upper end of a feed hopper 2 and fall into the middle of the first grinding stone 10 downwards, the materials can efficiently enter the space between the first grinding stone 10 and the second grinding stone 5 by the push of spiral teeth on a shaft lever 1, the rotating directions of the second grinding stone 5 and the first grinding stone 10 are opposite, the two grinding stones are matched, bidirectional rotating grinding can be realized, the two grinding stones run oppositely, the grinding cutting rate borne by the materials is higher, the grinding efficiency is greatly improved, the materials after grinding fall from the periphery of the bottom of the second grinding stone 5, when the material reaches the position area of the centrifugal impeller 12, the centrifugal impeller 12 drives the material to flow, and the material is promoted to be discharged from the discharge hopper 14, which is the working principle of the ultramicro colloid mill device.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.
Claims (6)
1. An ultramicro colloid mill device is characterized in that: the grinding device comprises a cylinder body (4), wherein a first grinding stone (10) is arranged in the cylinder body (4), the first grinding stone (10) is in a circular truncated cone shape, a second grinding stone (5) is arranged at the top of the first grinding stone (10), a through hole is formed in the middle of the second grinding stone (5), the lower end of the through hole is in a circular truncated cone shape, the structure of the circular truncated cone shape is matched with that of the first grinding stone (10), the bottom of the first grinding stone (10) is connected with one end of a main shaft (11), the other end of the main shaft (11) is provided with a driven wheel (15), the driven wheel (15) is connected with a driving wheel (8) through a belt (16), the top of the driving wheel (8) is connected with a first motor (6), the top of the second grinding stone (5) is connected with one end of a shaft lever (1) through a first transverse frame (3), and the other end of the shaft lever (1.
2. The ultra-fine colloid mill device according to claim 1, characterized in that: the outer wall of the shaft rod (1) is provided with spiral teeth, and the diameter of the spiral teeth is smaller than that of a middle through hole of the second grinding stone (5).
3. The ultra-fine colloid mill device according to claim 1, characterized in that: the top of barrel (4) is connected with feeder hopper (2), and the top of feeder hopper (2) is provided with three forked second crossbearers (18), and the three-terminal of second crossbearer (18) passes through screwed connection with the inner wall of feeder hopper (2) respectively, and second motor (17) install in the middle of the second crossbearer (18) is positive.
4. The ultra-fine colloid mill device according to claim 1, characterized in that: a plurality of support rings (9) are arranged on the inner wall of the barrel (4) at equal intervals, a plurality of annular grooves are formed in the outer wall of the second grinding stone (5) at equal intervals, and the structures of the annular grooves are matched with the structures of the support rings (9).
5. The ultra-fine colloid mill device according to claim 1, characterized in that: one side of barrel (4) is provided with box (7), and first motor (6) install in box (7), be provided with supporting beam (13) in barrel (4), and main shaft (11) wear to locate the intermediate position of supporting beam (13).
6. The ultra-fine colloid mill device according to claim 1, characterized in that: the centrifugal impeller (12) is sleeved outside the main shaft (11), one side of the cylinder body (4) is connected with a discharge hopper (14), and the position of the discharge hopper (14) corresponds to the position of the centrifugal impeller (12).
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CN201921628833.7U CN210646550U (en) | 2019-09-27 | 2019-09-27 | Ultramicro colloid mill device |
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CN201921628833.7U CN210646550U (en) | 2019-09-27 | 2019-09-27 | Ultramicro colloid mill device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112718146A (en) * | 2020-12-09 | 2021-04-30 | 何静 | Broken sieving mechanism of material for chemical industry |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN112718146A (en) * | 2020-12-09 | 2021-04-30 | 何静 | Broken sieving mechanism of material for chemical industry |
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