CN113578152A - Stirring machine - Google Patents
Stirring machine Download PDFInfo
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- CN113578152A CN113578152A CN202111019015.9A CN202111019015A CN113578152A CN 113578152 A CN113578152 A CN 113578152A CN 202111019015 A CN202111019015 A CN 202111019015A CN 113578152 A CN113578152 A CN 113578152A
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- stirring
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- stirring blade
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Abstract
The invention aims to provide a stirrer with excellent stirring effect. The structure of the stirrer comprises a charging barrel with an opening at the upper part, the stirring assembly comprises a rotation stirring shaft and a peripheral stirring blade mounting frame, wherein the rotation stirring shaft is rotatably connected with the end part of the rotation driving swing arm, the peripheral stirring blade mounting frame is connected with the end part of the peripheral stirring driving swing arm, the end part of the rotation stirring shaft is provided with a driving gear, the driving gear is connected with the rotation driving fluted disc through a rotation driving chain, the peripheral stirring blade mounting frame comprises a vertical stirring blade mounting rod and a bottom stirring blade mounting rod, and the upper end and the lower end of the vertical stirring blade mounting rod are respectively connected with the peripheral stirring driving swing arm and the bottom stirring blade mounting rod.
Description
Technical Field
The invention belongs to the technical field of mixers.
Background
The stirrer is a material stirring mechanism commonly used in food processing and building industries. The existing stirrer generally improves the material stirring efficiency on the basis of the traditional single stirring paddle or by arranging the single stirring paddle with a complex three-dimensional structure or by arranging a plurality of groups of stirring paddles. The single stirring paddle stirrer with a complex three-dimensional structure still has stirring dead angles in the charging barrel easily, and the stirrer with multiple groups of stirring paddles needs multiple groups of stirring motors and transmission mechanisms, so that the structure is more complex, the multiple groups of stirring motors are difficult to rotate in a coordinated manner, and the phenomenon of uneven stirring is easily caused due to the difference of the rotating speeds among the multiple groups of stirring paddles.
Disclosure of Invention
The invention aims to provide a stirrer with excellent stirring effect.
The stirring machine comprises a charging barrel with an opening at the upper part, a driving mechanism arranged at the opening of the charging barrel and a stirring assembly arranged in the charging barrel, wherein the driving mechanism comprises a mounting base, a mandrel which penetrates through the mounting base and extends downwards is arranged in the mounting base, a self-rotation driving fluted disc is fixedly connected to the lower end of the mounting base, a self-rotation driving swing arm and a peripheral stirring driving swing arm are respectively fixed to the lower end of the mandrel, the stirring assembly comprises a self-rotation stirring shaft which is rotatably connected with the end part of the self-rotation driving swing arm and a peripheral stirring blade mounting frame which is connected with the end part of the peripheral stirring driving swing arm, a driving gear is arranged at the end part of the self-rotation stirring shaft, the driving gear is connected with the self-rotation driving fluted disc through a self-rotation driving chain, and the peripheral stirring blade mounting frame comprises a vertical stirring blade mounting rod and a bottom stirring blade mounting rod, the upper end and the lower end of the vertical stirring blade mounting rod are respectively connected with the peripheral stirring driving swing arm and the bottom stirring blade mounting rod.
When the invention is used, different types of autorotation stirring blades can be arranged on the autorotation stirring shaft according to different stirring materials, and different types of peripheral stirring blades are arranged on the peripheral stirring blade mounting frame; when the stirring device works, materials to be stirred are added into the charging barrel, the mandrel is driven to rotate by the motor, the mandrel simultaneously drives the rotation driving swing arm and the peripheral stirring driving swing arm at the lower end to rotate, when the rotation driving swing arm rotates around the mandrel, because the rotation driving fluted disc is fixed, the end part of the rotation stirring shaft connected with the end part of the rotation driving swing arm is connected with the rotation driving fluted disc by the rotation transmission chain, the rotation stirring shaft revolves around the mandrel and also rotates under the driving of the rotation transmission chain, so that the stirring blades arranged on the rotation stirring shaft can change the stirring position by revolution while stirring, the materials are fully stirred, the stirring effect is provided, meanwhile, the peripheral stirring blade mounting frame rotates under the driving of the peripheral stirring driving swing arm, the peripheral stirring blades on the vertical stirring blade mounting rod and the peripheral stirring blades on the bottom stirring blade mounting rod are used for guiding the materials near the side wall of the charging barrel and near the bottom surface of the charging barrel to the bottom surface The stirring area in the middle of the charging barrel is turned over, so that the stirring uniformity is further improved.
Furthermore, the middle part of rotation drive swing arm with the dabber is connected, the rotation (mixing) shaft is including setting up in pairs the first rotation (mixing) shaft and the second rotation (mixing) shaft at rotation drive swing arm both ends, the rotation drive fluted disc includes upper drive fluted disc and lower drive fluted disc, upper drive fluted disc pass through first rotation driving chain with the drive gear of first rotation (mixing) shaft is connected, the lower drive fluted disc pass through second rotation driving chain with the drive gear of second rotation (mixing) shaft is connected. The rotation stirring shaft and the corresponding rotation stirring paddle blades are arranged in pairs, so that the stirring efficiency can be improved, the performance requirement of the motor is reduced, and the reliability is improved.
Furthermore, the mandrel is connected with a mounting box, the autorotation driving swing arm is a bottom plate of the mounting box, a top plate of the mounting box is connected with the mounting base through a rotating bearing in the middle, the upper driving fluted disc, the lower driving fluted disc, the first autorotation driving chain and the second autorotation driving chain are all arranged in the mounting box, and the first autorotation stirring shaft and the second autorotation stirring shaft are respectively connected with the bottom plate of the mounting box through a first sealing shaft sleeve and a second sealing shaft sleeve. Therefore, the transmission part of the driving mechanism extending into the charging barrel is protected by the mounting box and the sealing shaft sleeve, and the driving mechanism is prevented from being blocked by materials.
Furthermore, the bottom of rotation (mixing) shaft is equipped with cage stirring rake, is particularly useful for the dispersion stirring that food material needs.
Further, in order to improve the efficiency of the materials turning in to the stirring area, the vertical stirring blade mounting rods comprise a first vertical stirring blade mounting rod and a second vertical stirring blade mounting rod which are arranged in pairs, a first side stirring blade and a second side stirring blade are arranged on the first vertical stirring blade mounting rod and the second vertical stirring blade mounting rod respectively, two ends of the bottom stirring blade mounting rod are connected with the first vertical stirring blade mounting rod and the second vertical stirring blade mounting rod respectively, and the bottom stirring blade mounting rod is provided with a bottom side stirring blade.
Furthermore, first side stirring leaf is followed the pole length direction interval of first vertical stirring leaf installation pole is equipped with a plurality of, second side stirring leaf is followed the pole length direction interval of second vertical stirring leaf installation pole is equipped with a plurality of, first side stirring leaf with the mounting height interval setting of second side stirring leaf. Therefore, the resistance of the vertical stirring blades can be reduced under the condition of ensuring the efficiency of folding and turning the materials to the stirring area, and the requirement on the rotating moment of the mandrel is reduced.
Furthermore, first side stirring leaf, second side stirring leaf and bottom side stirring leaf all include fixing base, socket and blade, the socket is equipped with connects the slot, connect to be equipped with the joint post in the slot, the inboard of blade be equipped with joint post complex draw-in groove. The blades are of an inserting structure, and peripheral stirring blades can be conveniently replaced.
Further, the bottom surface of feed cylinder is the conical surface, the bottom surface center of feed cylinder is the discharge gate, bottom stirring leaf installation pole includes first bottom stirring leaf installation pole and second bottom stirring leaf installation pole, first bottom stirring leaf installation pole and second bottom stirring leaf installation pole are the V-arrangement and connect. The bottom surface of the charging barrel, on which the conical surface is arranged, can facilitate discharging, and the first bottom stirring blade mounting rod and the second bottom stirring blade mounting rod which are connected in a V shape can be matched with the bottom surface of the conical surface to stir the material to the center of the charging barrel and then discharge the material from the center discharging opening under the action of gravity and the bottom stirring blades.
Furthermore, the opening of the upper part of the charging barrel is provided with a charging barrel upper cover, the driving mechanism is fixed with the charging barrel upper cover, and the charging barrel upper cover is provided with a feed back feeding hole which can be connected with a feed back pipe. When the material stirring device is used, the material can be repeatedly stirred by connecting the material return pipe with the material return inlet and the material discharge port, so that the stirring effect is improved.
Further, one side of feed cylinder upper cover is equipped with the feed inlet through articulated flip, feed inlet department is equipped with the protection network to can prevent the hand from stretching into in the feed cylinder and the unexpected injury that the contact of stirring subassembly leads to in the convenient material of throwing through flip.
Compared with the existing stirrer, the invention has the following advantages:
1. the rotation stirring shaft and the rotation stirring paddle connected with the rotation stirring shaft can change the stirring position through revolution while stirring by rotation, so that the materials are fully stirred, and the stirring effect is excellent;
2. the peripheral stirring blade mounting frame and the peripheral stirring blades mounted on the peripheral stirring blade mounting frame can turn the materials near the side wall and the bottom surface of the charging barrel to the stirring area in the middle of the charging barrel, so that the stirring dead angle is fully eliminated, and the stirring uniformity is further improved;
3. the rotation rotating speeds of the rotation stirring shafts and the rotation stirring paddles connected with the rotation stirring shafts are consistent, and the stirring effects are consistent and uniform;
4. through the plurality of autorotation stirring shafts and the peripheral stirring blade mounting frame arranged in a frame type, stirring resistance is dispersed, the torque requirements of the mandrel and the driving motor are reduced, and high-speed operation of the stirring assembly is ensured;
5. the autorotation stirring shaft and the peripheral stirring blade mounting frame are driven by a single motor through a single mandrel, the driving mechanism is simple, and the reliability is high.
Drawings
FIG. 1 is a schematic structural diagram of the present invention.
FIG. 2 is a schematic view showing the structure of opening the upper lid of the cartridge according to the present invention.
Fig. 3 is a schematic structural view of the driving mechanism and the stirring assembly of the present invention.
FIG. 4 is a schematic view of the connection structure of the rotation stirring shaft of the present invention.
Fig. 5 is a schematic cross-sectional structure of fig. 4.
FIG. 6 is a schematic view of the connection structure between the autorotation driving fluted disc and the autorotation stirring shaft of the present invention.
Fig. 7 is a schematic view of the connection structure of the peripheral stirring blade mounting frame according to the present invention.
Fig. 8 is a schematic view of the mounting structure of the peripheral stirring blade of the present invention.
Fig. 9 is a schematic view of the assembly of the patch panel and blade of the present invention.
In which the figures are as follows: 1. a charging barrel; 10. a discharge port; 11. an upper cover of the charging barrel; 12. a feed back inlet; 13. the turning cover is hinged; 14. a feed inlet; 15. a protective net; 2. mounting a base; 20. a motor; 201. a gear case; 21. a self-rotation driving fluted disc; 21a, an upper driving fluted disc; 21b, a lower driving fluted disc; 3. a mandrel; 4. the swing arm is driven by autorotation; 5. the periphery drives the swing arm in a stirring way; 6. a self-rotating stirring shaft; 6a, a first autorotation stirring shaft; 6b, a second autorotation stirring shaft; 6a1, a first seal bush; 6b1, a second seal bush; 61. a drive gear; 61a, a driving gear of the first rotation stirring shaft; 61b, a driving gear of the second autorotation stirring shaft; 62. a self-rotation transmission chain; 62a, a first rotation transmission chain; 62b, a second rotation transmission chain; 63. a self-rotating stirring paddle; 7. a peripheral stirring blade mounting frame; 70. a peripheral stirring blade; 701. a fixed seat; 702. a socket; 7021. connecting a slot; 7022. a clamping column; 703. a blade; 7031. a card slot; 71. a vertical stirring blade mounting rod; 71a, a first vertical stirring blade mounting rod; 71a1, first side stirring blade; 71b, a second vertical stirring blade mounting rod; 71b1, second side stirring blades; 72. a bottom stirring blade mounting rod; 72a, a first bottom stirring blade mounting rod; 72b, a second bottom stirring blade mounting rod; 721. a bottom side stirring blade; 8. mounting a box; 81. a base plate; 82. a top plate.
Detailed Description
The following describes embodiments of the present invention, such as shapes and structures of respective members, mutual positions and connection relationships between respective portions, and actions and operation principles of the respective portions, in further detail, with reference to the accompanying drawings.
Referring to fig. 1-9, the stirrer of the present invention comprises a charging barrel 1 with an upper opening, a driving mechanism disposed at the opening of the charging barrel 1, and a stirring assembly disposed in the charging barrel 1, wherein the driving mechanism comprises a mounting base 2, a mandrel 3 passing through the mounting base 2 and extending downward is disposed in the mounting base 2, a rotation driving fluted disc 21 is fixedly connected to the lower end of the mounting base 2, a rotation driving swing arm 4 and a peripheral stirring driving swing arm 5 are respectively fixed to the lower end of the mandrel 3, the stirring assembly comprises a rotation stirring shaft 6 rotatably connected to the end of the rotation driving swing arm 4 and a peripheral stirring blade mounting frame 7 connected to the end of the peripheral stirring driving swing arm 5, a driving gear 61 is disposed at the end of the rotation stirring shaft 6, the driving gear 61 is connected to the rotation driving fluted disc 21 via a rotation driving chain 62, the peripheral stirring blade mounting frame 7 comprises a vertical stirring blade mounting rod 71 and a bottom stirring blade mounting rod 72, the upper end and the lower end of the vertical stirring blade mounting rod 71 are respectively connected with the peripheral stirring driving swing arm 5 and the bottom stirring blade mounting rod 72. In the present embodiment, the spindle 3 is driven by the motor 20 and the gear box 201 on the mounting base 2, and in practical applications, the spindle 3 may also be driven by other types of mechanisms such as a belt mechanism.
When the invention is used, different types of autorotation stirring blades 63 can be arranged on the autorotation stirring shaft 6 according to different stirring materials, and different types of peripheral stirring blades 70 are arranged on the peripheral stirring blade mounting frame 7; when the stirring device works, materials to be stirred are added into the charging barrel 1, the spindle 3 is driven to rotate by the motor 20, the spindle 3 simultaneously drives the autorotation driving swing arm 4 and the peripheral stirring driving swing arm 5 at the lower end to rotate, when the autorotation driving swing arm 4 rotates around the spindle 3, because the autorotation driving fluted disc 21 is fixed, and the end part of the autorotation stirring shaft 6 connected with the end part of the autorotation driving swing arm 4 is connected with the autorotation driving fluted disc 21 by the autorotation transmission chain 62, the autorotation stirring shaft 6 revolves around the spindle 3 and also revolves under the driving of the autorotation transmission chain 62, so that the autorotation stirring blades 63 arranged on the autorotation stirring shaft 6 can change the stirring position by revolution at the same time of autorotation stirring, the materials are fully stirred, the stirring effect is provided, and meanwhile, the peripheral stirring blade mounting frame 7 rotates under the driving of the peripheral stirring driving swing arm 5, the materials near the side wall of the charging barrel 1 and near the bottom surface of the charging barrel 1 are turned to the stirring area in the middle of the charging barrel 1 through the peripheral stirring blades on the vertical stirring blade mounting rod 71 and the peripheral stirring blades on the bottom stirring blade mounting rod 72, so that the stirring uniformity is further improved.
In a preferred embodiment, the rotation driving swing arm 4 is connected at its middle portion to the mandrel 3, the rotation stirring shaft 6 includes a first rotation stirring shaft 6a and a second rotation stirring shaft 6b provided at both ends of the rotation driving swing arm 4 in a pair, the rotation driving toothed disc 21 includes an upper driving toothed disc 21a and a lower driving toothed disc 21b, the upper driving toothed disc 21a is connected to the driving gear 61a of the first rotation stirring shaft 6a via a first rotation transmission chain 62a, and the lower driving toothed disc 6b is connected to the driving gear 61b of the second rotation stirring shaft 6b via a second rotation transmission chain 62 b. The rotation stirring shaft and the corresponding rotation stirring paddle blades are arranged in pairs, so that the stirring efficiency can be improved, the performance requirement of the motor is reduced, and the reliability is improved. Of course, in practical application, the rotation stirring shaft 6 can also be arranged in a delta shape or a rectangular array.
Preferably, the spindle 3 is connected with a mounting box 8, the rotation driving swing arm 4 is a bottom plate 81 of the mounting box 8, a top plate 82 of the mounting box 8 is connected with the mounting base 2 through a rotating bearing in the middle, the upper driving fluted disc 21a, the lower driving fluted disc 21b, the first rotation transmission chain 62a and the second rotation transmission chain 62b are all arranged in the mounting box 8, and the first rotation stirring shaft 6a and the second rotation stirring shaft 6b are respectively connected with the bottom plate 81 of the mounting box 8 through a first sealing shaft sleeve 6a1 and a second sealing shaft sleeve 6b 1. Thus, the transmission part of the driving mechanism extending into the charging barrel 1 is protected by the mounting box and the sealing shaft sleeve, and the driving mechanism is prevented from being blocked by materials.
Preferably, the bottom of rotation (mixing) shaft 6 is equipped with cage stirring rake, and rotation stirring paddle 63 is cage stirring rake promptly, is particularly useful for the dispersion stirring that food material needs.
Preferably, as shown in fig. 7, in order to improve the efficiency of folding and turning the material to the stirring area, the vertical stirring blade mounting rod 71 includes a first vertical stirring blade mounting rod 71a and a second vertical stirring blade mounting rod 71b which are arranged in pairs, a first side stirring blade 71a1 and a second side stirring blade 71b1 are respectively arranged on the first vertical stirring blade mounting rod 71a and the second vertical stirring blade mounting rod 71b, two ends of the bottom stirring blade mounting rod 72 are respectively connected with the first vertical stirring blade mounting rod 71a and the second vertical stirring blade mounting rod 71b, and the bottom stirring blade mounting rod 72 is provided with a bottom stirring blade 721. In fig. 7, in order to show the vicinity of the side wall of the barrel 1 and the vicinity of the bottom surface of the barrel 1 by dotted lines, the process of turning the materials in the vicinity of the side wall of the barrel 1 and the vicinity of the bottom surface of the barrel 1 toward the stirring region in the middle of the barrel 1 by the first side stirring blade 71a1 and the second side stirring blade 71b1 and the bottom side stirring blade 721 can be more clearly understood.
Preferably, a plurality of the first side stirring blades 71a1 are arranged along the rod length direction of the first vertical stirring blade mounting rod 71a at intervals, a plurality of the second side stirring blades 71b1 are arranged along the rod length direction of the second vertical stirring blade mounting rod 71b at intervals, and the mounting heights of the first side stirring blades 71a1 and the second side stirring blades 71b1 are arranged at intervals. Therefore, the resistance of the vertical stirring blades can be reduced under the condition of ensuring the efficiency of folding and turning the materials to the stirring area, and the requirement on the rotating moment of the mandrel 3 is reduced.
Preferably, as shown in fig. 8 and 9, each of the first side stirring blade 71a1, the second side stirring blade 71b1 and the bottom side stirring blade 721 includes a fixing seat 701, a socket 702 and a blade 703, the socket 702 is provided with a socket 7021, a locking column 7022 is arranged in the socket 7021, and a locking groove 7031 matched with the locking column 7022 is arranged inside the blade 703. The blades 703 are of an insertion structure, and peripheral stirring blades can be conveniently replaced.
Preferably, as shown in fig. 7, the bottom surface of the barrel 1 is a conical surface, the center of the bottom surface of the barrel 1 is the discharge port 10, the bottom mixing blade mounting rod 72 includes a first bottom mixing blade mounting rod 72a and a second bottom mixing blade mounting rod 72b, and the first bottom mixing blade mounting rod 72a and the second bottom mixing blade mounting rod 72b are connected in a V-shape. The bottom surface of the charging barrel with the conical surface can facilitate discharging, the first bottom stirring blade mounting rod 72a and the second bottom stirring blade mounting rod 72b which are connected in a V shape can be matched with the bottom surface of the conical surface, and materials are stirred towards the center of the charging barrel and then discharged from the central discharging port 10 under the action of gravity and the bottom stirring blades.
Preferably, the upper opening of the charging barrel 1 is provided with a charging barrel upper cover 11, the driving mechanism is fixed with the charging barrel upper cover 11, and the charging barrel upper cover 11 is provided with a feed back inlet 12 which can be connected with a feed back pipe. When the material stirring device is used, the material can be repeatedly stirred by connecting the material return pipe with the material return outlet 10 and the material return inlet 12, so that the stirring effect is improved.
Preferably, one side of the charging barrel upper cover 11 is provided with a feeding hole 14 through a hinged flip 13, and a protective screen 15 is arranged at the feeding hole 14, so that when the charging is conveniently carried out through the flip, the accidental injury caused by the fact that a hand extends into the charging barrel 1 and contacts with the stirring component can be prevented.
The foregoing is a more detailed description of the invention in connection with specific preferred embodiments and it is not intended that the invention be limited to these specific details. For those skilled in the art to which the invention pertains, several simple deductions or substitutions can be made without departing from the spirit of the invention, and all shall be considered as belonging to the protection scope of the invention.
Claims (10)
1. A stirrer is characterized by comprising a charging barrel with an opening at the upper part, a driving mechanism arranged at the opening part of the charging barrel and a stirring assembly arranged in the charging barrel, wherein the driving mechanism comprises a mounting base, a mandrel which penetrates through the mounting base and extends downwards is arranged in the mounting base, the lower end of the mounting base is fixedly connected with a self-rotation driving fluted disc, the lower end of the mandrel is respectively fixed with a self-rotation driving swing arm and a peripheral stirring driving swing arm, the stirring assembly comprises a self-rotation stirring shaft which is rotatably connected with the end part of the self-rotation driving swing arm and a peripheral stirring blade mounting frame which is connected with the end part of the peripheral stirring driving swing arm, the end part of the self-rotation stirring shaft is provided with a driving gear, the driving gear is connected with the self-rotation driving fluted disc through a self-rotation driving chain, and the peripheral stirring blade mounting frame comprises a vertical stirring blade mounting rod and a bottom stirring blade mounting rod, the upper end and the lower end of the vertical stirring blade mounting rod are respectively connected with the peripheral stirring driving swing arm and the bottom stirring blade mounting rod.
2. The stirring machine as claimed in claim 1, wherein the middle of the rotation driving swing arm is connected to the spindle, the rotation stirring shaft includes a first rotation stirring shaft and a second rotation stirring shaft which are disposed at two ends of the rotation driving swing arm in pairs, the rotation driving fluted disc includes an upper driving fluted disc and a lower driving fluted disc, the upper driving fluted disc is connected to the driving gear of the first rotation stirring shaft through a first rotation transmission chain, and the lower driving fluted disc is connected to the driving gear of the second rotation stirring shaft through a second rotation transmission chain.
3. The stirring machine as claimed in claim 2, wherein the spindle is connected to a mounting box, the rotation driving swing arm is a bottom plate of the mounting box, a top plate of the mounting box is connected to the mounting base through a rotation bearing at a middle portion, the upper driving fluted disc, the lower driving fluted disc, the first rotation driving chain and the second rotation driving chain are all arranged in the mounting box, and the first rotation stirring shaft and the second rotation stirring shaft are respectively connected to the bottom plate of the mounting box through a first sealing bushing and a second sealing bushing.
4. A mixer according to claim 1, wherein the bottom of said self-rotating mixer shaft is provided with cage type mixing paddles.
5. The stirring machine as claimed in claim 1, 2, 3 or 4, wherein the vertical stirring blade mounting rods comprise a first vertical stirring blade mounting rod and a second vertical stirring blade mounting rod which are arranged in pairs, the first vertical stirring blade mounting rod and the second vertical stirring blade mounting rod are respectively provided with a first side stirring blade and a second side stirring blade, two ends of the bottom stirring blade mounting rod are respectively connected with the first vertical stirring blade mounting rod and the second vertical stirring blade mounting rod, and the bottom stirring blade mounting rod is provided with a bottom side stirring blade.
6. A mixer according to claim 5, wherein the first side mixing blades are spaced apart from each other along the length of the first vertical mixing blade mounting bar, the second side mixing blades are spaced apart from each other along the length of the second vertical mixing blade mounting bar, and the first side mixing blades are spaced apart from the second side mixing blades along the mounting height thereof.
7. The stirring machine as claimed in claim 5, wherein the first side stirring blade, the second side stirring blade and the bottom side stirring blade each comprise a fixing base, a socket and a blade, the socket is provided with a socket, a clamping column is arranged in the socket, and a clamping groove matched with the clamping column is arranged on the inner side of the blade.
8. The mixer of claim 5 wherein the bottom surface of the barrel is tapered, the center of the bottom surface of the barrel is the discharge opening, the bottom mixing blade mounting bar comprises a first bottom mixing blade mounting bar and a second bottom mixing blade mounting bar, and the first bottom mixing blade mounting bar and the second bottom mixing blade mounting bar are connected in a V-shape.
9. The mixer of claim 8 wherein the top opening of the barrel is provided with a barrel top cover, the drive mechanism is fixed to the barrel top cover, and the barrel top cover is provided with a feed back inlet connectable to a feed back pipe.
10. The mixer of claim 9 wherein the top cover of the barrel is provided with a feed inlet at one side thereof by a hinged flip cover, the feed inlet being provided with a protective screen.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202111019015.9A CN113578152A (en) | 2021-09-01 | 2021-09-01 | Stirring machine |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN202111019015.9A CN113578152A (en) | 2021-09-01 | 2021-09-01 | Stirring machine |
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CN113578152A true CN113578152A (en) | 2021-11-02 |
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CN202111019015.9A Pending CN113578152A (en) | 2021-09-01 | 2021-09-01 | Stirring machine |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114471269A (en) * | 2022-01-13 | 2022-05-13 | 广东理标信息科技有限公司 | High-efficient processing device that mixes of aquaculture fodder |
CN114504980A (en) * | 2022-03-16 | 2022-05-17 | 李华生 | Celadon production and processing equipment capable of improving mixing efficiency during reduction of material mixing |
-
2021
- 2021-09-01 CN CN202111019015.9A patent/CN113578152A/en active Pending
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114471269A (en) * | 2022-01-13 | 2022-05-13 | 广东理标信息科技有限公司 | High-efficient processing device that mixes of aquaculture fodder |
CN114504980A (en) * | 2022-03-16 | 2022-05-17 | 李华生 | Celadon production and processing equipment capable of improving mixing efficiency during reduction of material mixing |
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