CN213885759U - High-efficient mixer is used in antirust agent filling - Google Patents

High-efficient mixer is used in antirust agent filling Download PDF

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Publication number
CN213885759U
CN213885759U CN202022752829.0U CN202022752829U CN213885759U CN 213885759 U CN213885759 U CN 213885759U CN 202022752829 U CN202022752829 U CN 202022752829U CN 213885759 U CN213885759 U CN 213885759U
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stirring
fixedly connected
mixing
shaft
stirring leaf
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CN202022752829.0U
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Chinese (zh)
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朱焱
童春子
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Wuhan Baijie Technology Co ltd
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Wuhan Baijie Technology Co ltd
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Abstract

The utility model belongs to the technical field of the antirust agent production and specifically relates to a high-efficient mixer is used in antirust agent filling is related to, it includes support and stirring storehouse, stirring storehouse and support fixed connection, the feed inlet has been seted up to the upper end in stirring storehouse, the stirring storehouse rotates along the horizontal direction and is connected with the (mixing) shaft, week side fixedly connected with left stirring leaf and the right stirring leaf of (mixing) shaft, the vertical symmetry plane symmetry in left side stirring leaf and the relative stirring storehouse of right stirring leaf sets up, left side stirring leaf and right stirring leaf all are the week side that the heliciform encloses and locate the (mixing) shaft along the axial of (mixing) shaft, support fixedly connected with servo motor, servo motor's output and the coaxial fixed connection of (mixing) shaft. This application utilizes left stirring leaf and right stirring leaf to make the raw materials remove respectively to the vertical plane of symmetry department of (mixing) shaft and mix that intersects, has the more even effect of raw materials mixture that will produce the rust inhibitor, is favorable to improving the quality of rust inhibitor.

Description

High-efficient mixer is used in antirust agent filling
Technical Field
The application relates to the field of antirust agent production, especially relates to a high-efficient mixer is used in antirust agent filling.
Background
The metal processing piece is easy to rust in the production, processing and transportation processes, so that a layer of film is required to be formed on the surface of metal by using antirust oil, and the metal is prevented from being rusted by chemicals. All raw materials are mixed into the antirust agent in proportion and then need to be uniformly stirred and filled into a collecting barrel so as to be convenient for subsequent transportation.
Now, a chinese patent with CN208247171U publication is found, which discloses a single horizontal shaft powder mixer, comprising: a frame; the stirring drum is rotatably arranged on the rack and is provided with a material inlet and a material outlet; the stirring shaft penetrates through the stirring cylinder and is driven by a motor to rotate, and a part of the stirring shaft, which is positioned in the stirring cylinder, is provided with a rotating blade; the swinging piece is arranged on the frame and drives the stirring cylinder to rotate around the stirring shaft so as to pour the powder in the stirring cylinder out of the material inlet and the material outlet; and the positioning mechanism is arranged on the frame, locks the mixing drum to keep the mixing drum in the positioned state or unlocks the mixing drum to enable the swinging piece to drive the mixing drum to rotate.
In view of the above-mentioned related art, the inventor believes that the movable stirring blade can only stir the powder in the stirring cylinder from the rotation direction thereof, and it is difficult to uniformly mix various raw materials in the process of producing the rust preventive.
SUMMERY OF THE UTILITY MODEL
In order to improve the problem that raw and other materials are difficult to the misce bene, this application provides a rust inhibitor is high-efficient mixer for filling.
The application provides a rust inhibitor is high-efficient mixer for filling adopts following technical scheme:
high-efficient mixer is used in antirust agent filling, including support and stirring storehouse, the stirring storehouse with support fixed connection, the feed inlet has been seted up to the upper end in stirring storehouse, the stirring storehouse is rotated along the horizontal direction and is connected with the (mixing) shaft, the week side fixedly connected with left side stirring leaf and the right side stirring leaf of (mixing) shaft, a left side stirring leaf with the right side stirring leaf is relative the vertical plane of symmetry in stirring storehouse sets up, a left side stirring leaf with the right side stirring leaf is all followed the axial of (mixing) shaft is the heliciform and encloses to be located week side of (mixing) shaft, support fixedly connected with servo motor, servo motor's output with the coaxial fixed connection of (mixing) shaft.
Through adopting above-mentioned technical scheme, pour raw and other materials into stirring storehouse back by the feed inlet, start servo motor drive (mixing) shaft and rotate, the (mixing) shaft drives left stirring leaf and right stirring leaf and rotates simultaneously, left side stirring leaf and right stirring leaf are the heliciform, and stir the vertical plane of symmetry setting in storehouse relatively, left side stirring leaf and right stirring leaf are respectively in its direction of rotation stirring raw materials, make the raw materials of stirring by left side stirring leaf and right stirring leaf move towards the vertical plane of symmetry direction of (mixing) shaft respectively, make the raw materials in the stirring storehouse mix at the vertical plane of symmetry department intersection of (mixing) shaft, then be squeezed open by the raw materials of follow-up motion to here again, make the mixed collision each other of raw materials in the stirring storehouse more abundant from this, realize the more even effect of raw materials mixture of producing the antirust agent, be favorable to improving the quality of antirust agent.
Preferably, the stirring bin is fixedly connected with a receiving hopper at the feeding port, and the opening area of the receiving hopper is gradually increased along the direction deviating from the stirring bin.
Through adopting above-mentioned technical scheme, the open area of receiving the hopper is crescent along the direction that deviates from the stirring storehouse, is favorable to increasing receiving area, is convenient for receive the raw materials that the hopper received and pours into, and the raw materials is scattered when preventing to pour into the raw materials and is gone out.
Preferably, one end of the receiving hopper close to the stirring bin is fixedly connected with a protective net.
Through adopting above-mentioned technical scheme, the raw materials are pulverous passes through the protection network easily smoothly, utilizes the protection network to be favorable to preventing debris from falling into the stirring storehouse, is favorable to guaranteeing left stirring leaf and right stirring leaf normal operating work.
Preferably, the lower extreme in stirring storehouse has seted up the discharge gate, the stirring storehouse in discharge gate department fixedly connected with ejection of compact pipeline, ejection of compact pipeline department is provided with pneumatic valve.
Through adopting above-mentioned technical scheme, utilize pneumatic valve to be convenient for open and shut the ejection of compact pipeline, after the raw materials stirs evenly in the stirring storehouse, pneumatic valve opens the finished product in the stirring storehouse of being convenient for discharge, and pneumatic valve closes and can stop the emission.
Preferably, the ejection of compact pipeline is kept away from the one end fixedly connected with buffer pipe in stirring storehouse, buffer pipe's open area orientation deviates from discharge pipe's direction reduces gradually, buffer pipe keeps away from discharge pipe's one end fixedly connected with discharge line, discharge line with be provided with manual valve between the buffer pipe.
Through adopting above-mentioned technical scheme, utilize the buffer line to be favorable to reducing finished product exhaust speed, be convenient for the on-the-spot direct stop discharge finished product through manual valve, reduce the error of finished product discharge amount, be convenient for discharge the finished product in the collecting vessel through the discharge pipeline.
Preferably, one end of the discharge pipeline, which is far away from the stirring bin, is provided with a soft dust bag, and the dust bag is tubular with two ends being provided with openings.
Through adopting above-mentioned technical scheme, if the finished product is direct to drop to the collecting vessel in by the exhaust duct, splash the powder of raise dust form easily, produce extravagantly when causing environmental pollution, the dust bag is soft materials, puts into the collecting vessel with the one end of dust bag in, the finished product is favorable to preventing to produce the raise dust in falling into the collecting vessel along the dust bag, reduces extravagantly, environmental protection more.
Preferably, support fixedly connected with dust cover, the orientation has been seted up to the dust cover receive the dust absorption mouth of hopper, the dust cover deviates from receive the one end fixedly connected with dust absorption pipeline of hopper, dust absorption pipeline keeps away from the one end fixedly connected with air exhauster of dust absorption mouth.
Through adopting above-mentioned technical scheme, when pouring the raw materials into receiving hopper, the production has the raise dust, utilizes the dust cover to prevent that the raise dust from scattering to the distant place, and air exhauster work makes the raise dust be taken away by dust absorption mouth department, is favorable to guaranteeing good operational environment.
Preferably, a transparent cover body is detachably arranged at the opening of the receiving hopper.
Through adopting above-mentioned technical scheme, pour the raw materials into and receive the hopper after, cover the lid, utilize the lid to be favorable to preventing the in-process raw materials effluvium at the stirring raw materials, and the lid is transparent material, is favorable to seeing through the condition in the lid observation stirring storehouse.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the servo motor drives the stirring shaft to drive the left stirring blade and the right stirring blade to rotate simultaneously, so that raw materials stirred by the left stirring blade and the right stirring blade move to the vertical symmetrical plane of the stirring shaft respectively to be mixed, the raw materials in the stirring bin are mixed and collided more fully, the effect of more uniformly mixing the raw materials for producing the antirust agent is realized, and the quality of the antirust agent is improved;
2. the receiving hopper is convenient for receiving poured raw materials, the protective net is beneficial to preventing sundries from falling into the stirring bin, the cover body is covered at the opening of the receiving hopper, and raised dust is pumped out by the dust suction port on the dust cover, so that the cleanness of air in the working environment is guaranteed;
3. utilize pneumatic valve to be convenient for to open and shut the ejection of compact pipeline, utilize the buffer pipeline to be favorable to reducing finished product exhaust speed, be favorable to reducing the error of finished product discharge amount through manual valve, the finished product falls into the collecting vessel along the dust bag in, produces the raise dust when being favorable to preventing to collect the finished product.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is a schematic overall structure diagram of another view angle according to the embodiment of the present application.
Fig. 3 is an enlarged view at a in fig. 1.
Fig. 4 is an exploded view of the receiving hopper and the cover in an embodiment of the present application.
FIG. 5 is a schematic structural diagram of a stirring shaft, a left stirring blade and a right stirring blade in the embodiment of the present application.
Description of reference numerals: 1. a support; 2. a stirring bin; 3. a stirring shaft; 4. a left stirring blade; 5. a right stirring blade; 6. a servo motor; 7. a connecting cylinder; 8. a receiving hopper; 9. a protective net; 10. a cover body; 11. a handle; 12. a fixing frame; 13. a rubber ring; 14. a dust cover; 15. a dust suction port; 16. a dust collection duct; 17. a discharge pipeline; 18. a pneumatic valve; 19. a buffer pipe; 20. a discharge conduit; 21. a manual valve; 22. a first flange plate; 23. a second flange plate; 24. a limiting strip; 25. positioning the bolt; 26. an adjusting disk; 27. sealing glue; 28. an exhaust fan; 29. a dust bag; 30. a limiting groove.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses high-efficient mixer is used in antirust agent filling.
Referring to fig. 1 and 5, the efficient stirrer for filling the antirust agent comprises a support 1 and a stirring bin 2, wherein the stirring bin 2 is fixedly connected with the support 1, the stirring bin 2 is a horizontal rectangle, the lower end of the stirring bin 2 is arc-shaped, and a feeding hole (not shown in the figure) is formed in the upper end of the stirring bin 2. Stirring storehouse 2 rotates along the horizontal direction and is connected with (mixing) shaft 3, (mixing) shaft 3 sets up along the length direction in stirring storehouse 2, week side fixedly connected with left side stirring leaf 4 and right side stirring leaf 5 of (mixing) shaft 3, left side stirring leaf 4 and the relative vertical plane of symmetry setting in stirring storehouse 2 of right side stirring leaf 5, left side stirring leaf 4 and right side stirring leaf 5 all are the heliciform along the axial of (mixing) shaft 3 and enclose week side of locating (mixing) shaft 3, 1 fixedly connected with servo motor 6 of support, servo motor 6's output and the coaxial fixed connection of (mixing) shaft 3.
After raw materials are poured into the stirring bin 2 from the feeding hole, the servo motor 6 is started to drive the stirring shaft 3 to rotate, the stirring shaft 3 drives the left stirring blade 4 and the right stirring blade 5 to rotate simultaneously, the left stirring blade 4 and the right stirring blade 5 are both spiral and are symmetrically arranged relative to the vertical symmetrical plane of the stirring bin 2, the left stirring blade 4 and the right stirring blade 5 respectively stir the raw materials in the rotating direction, so that the raw materials stirred by the left stirring blade 4 and the right stirring blade 5 respectively move towards the vertical symmetrical plane direction of the stirring shaft 3, so that the raw materials in the stirring bin 2 are mixed together at the vertical symmetrical plane of the stirring shaft 3, then is squeezed open by the follow-up raw materials that moves to here again, makes the mutual mixing collision of raw materials in stirring storehouse 2 more abundant from this, realizes the more even effect of raw materials mixing that will produce the rust inhibitor, is favorable to improving the quality of rust inhibitor.
Referring to fig. 1 and 4, in order to pour the raw materials into stirring storehouse 2 for the convenience, stirring storehouse 2 rotates in feed inlet department and is connected with connecting cylinder 7, and one end fixedly connected with receiving hopper 8 that stirring storehouse 2 was kept away from to connecting cylinder 7, and the horizontal cross-section of receiving hopper 8 is the square, and the open area of receiving hopper 8 is crescent along the direction that deviates from stirring storehouse 2, and receiving hopper 8 is close to the one end fixedly connected with protection network 9 of stirring storehouse 2.
Receiving hopper 8's open area is along deviating from the direction crescent in stirring storehouse 2, is favorable to increasing receiving area, is convenient for receiving hopper 8 and receives the raw materials of pouring, and the raw materials is scattered when preventing to pour the raw materials and is gone out. Through rotating connecting cylinder 7 on stirring storehouse 2, be convenient for adjust the angle of receiving hopper 8, be favorable to conveniently pouring the raw materials into, the raw materials is powdered to pass through protection network 9 easily smoothly, utilizes protection network 9 to be favorable to preventing that debris from falling into stirring storehouse 2, is favorable to guaranteeing left stirring leaf 4 and 5 normal operating work of right stirring leaf.
Referring to fig. 4, in order to reduce the raise dust at the feed inlet, a transparent cover 10 is detachably disposed at the opening of the receiving hopper 8, the cover 10 is a square and a handle 11 fixedly connected to the cover 10, a fixed frame 12 is fixedly connected to the peripheral side of the cover 10, a fixed groove (not shown in the figure) is disposed along the peripheral direction of the fixed frame 12 towards one end of the receiving hopper 8, an elastic rubber ring 13 is fixedly connected to the peripheral side of one end of the receiving hopper 8 away from the stirring bin 2, and the rubber ring 13 is in interference fit with the fixed groove.
Referring to fig. 1 and 2, the bracket 1 is fixedly connected with a dust cover 14, the dust cover 14 covers the upper end of the stirring bin 2, one end of the dust cover 14 in the length direction of the stirring bin 2 is an opening, the dust cover 14 is provided with a dust suction port 15 facing the receiving hopper 8, one end of the dust cover 14 away from the receiving hopper 8 is fixedly connected with a dust suction pipe 16, and one end of the dust suction pipe 16 away from the dust suction port 15 is fixedly connected with an exhaust fan 28.
Referring to fig. 1 and 4, the opening side of the dust cover 14 is convenient for pouring raw materials into the receiving hopper 8, when the raw materials are poured into the receiving hopper 8, raised dust is generated, the dust cover 14 is used for preventing the raised dust from scattering to a far place, and the exhaust fan 28 (referring to fig. 2) works to enable the raised dust to be pumped away from the dust suction port 15, so that a good working environment is guaranteed. Pour the raw materials into and receive hopper 8 back, remove and locate receiving hopper 8 openings department with lid 10 lid through handle 11 for the rubber circle 13 of receiving 8 openings department week sides of hopper is pegged graft in the fixed slot, makes lid 10 fixed relatively receiving hopper 8, utilizes lid 10 to be favorable to preventing the in-process raw materials effluvium at the stirring raw materials, and lid 10 is transparent material, is favorable to seeing through the condition in the lid 10 observation stirring storehouse 2.
Referring to fig. 1 and 3, in order to discharge the finished product of stirring, the discharge gate (not shown in the figure) has been seted up to the lower extreme of stirring storehouse 2, stirring storehouse 2 is in the square discharge pipe 17 of discharge gate fixedly connected with, discharge pipe 17 department is provided with pneumatic valve 18, discharge pipe 17 keeps away from the one end fixedly connected with buffer pipeline 19 of stirring storehouse 2, buffer pipeline 19's horizontal cross-section is square, buffer pipeline 19's open area orientation reduces gradually towards the direction that deviates from discharge pipe 17, buffer pipeline 19 keeps away from the one end fixedly connected with discharge pipe 20 of discharge pipe 17, discharge pipe 20 keeps away from the opening of buffer pipeline 19's one end and sets up to one side downwards, be provided with manual valve 21 between discharge pipe 20 and the buffer pipeline 19.
The pneumatic valve 18 is used for facilitating opening and closing of the discharge pipeline 17, after raw materials are uniformly stirred in the stirring bin 2, the pneumatic valve 18 is opened to facilitate discharging of finished products in the stirring bin 2, and the pneumatic valve 18 is closed to stop discharging. The buffer pipeline 19 is used for reducing the discharging speed of the finished product, the finished product can be conveniently and directly stopped to be discharged on site through the manual valve 21, the error of the discharging amount of the finished product is reduced, and the finished product can be conveniently discharged into the collecting barrel through the discharging pipeline 20.
Referring to fig. 3, in order to facilitate opening and closing of the manual valve 21, the buffer pipeline 19 and the discharge pipeline 20 are respectively and fixedly connected with a first flange 22 and a second flange 23, the first flange 22 and the second flange 23 are fixed through a plurality of studs and nuts, the second flange is fixedly connected with two limiting strips 24, the two limiting strips 24 are located between the first flange 22 and the second flange 23 and located on two sides of the position where the buffer pipeline 19 and the discharge pipeline 20 are communicated, the manual valve 21 is rectangular, two opposite sides of the manual valve 21 are respectively abutted to the two limiting strips 24 and slide along the two limiting strips 24, the upper end face and the lower end face of the manual valve 21 are respectively abutted to the first flange 22 and the second flange 23, and one end, located outside a space between the first flange 22 and the second flange 23, of the manual valve 21 is arranged in an upward turning manner.
The first flange plate 22 is provided with a positioning bolt 25 along the vertical direction in a penetrating manner, the positioning bolt 25 is in threaded connection with the first flange plate 22, the lower end of the positioning bolt 25 is abutted to the upper end face of the manual valve 21, and the upper end of the positioning bolt 25 is fixedly connected with an adjusting plate 26 provided with anti-skid grains. Sealant 27 is filled between the two ends of the first flange 22 and the second flange 23, which are away from the two limiting strips 24, and the end, which is away from the manual valve 21 and slides out, of the first flange.
The first flange plate 22 and the second flange plate 23 are used for facilitating installation and fixation of the discharge pipeline 20 and the buffer pipeline 19, the sealant 27 is used for facilitating prevention of leakage of finished product powder between the first flange plate 22 and the second flange plate 23, the adjusting plate 26 is used for facilitating screwing of the positioning bolt 25, when the positioning bolt 25 is screwed to be separated from the manual valve 21, the manual valve 21 is pulled conveniently, the manual valve 21 is used for separating or opening a communication part between the buffer pipeline 19 and the discharge pipeline 20, and therefore control of discharge amount of the finished product powder is facilitated, when the communication part between the buffer pipeline 19 and the discharge pipeline 20 is completely closed by the manual valve 21, the positioning bolt 25 is screwed to abut against the manual valve 21, the effect of facilitating fixation of the manual valve 21 is achieved, and continuous discharge of the finished product powder from the discharge pipeline 20 is facilitated.
Referring to fig. 3, in order to prevent the generation of dust when receiving the finished product, a soft dust bag 29 is disposed at one end of the discharge pipe 20 away from the mixing bin 2, the dust bag 29 is tubular with two open ends, an elastic ring (not shown in the figure) is fixedly connected to the peripheral side of one end of the dust bag 29 close to the discharge pipe 20, a limiting groove 30 is disposed on the peripheral wall of the discharge pipe 20, and the elastic ring is tightly sleeved in the limiting groove 30 on the peripheral side of the discharge pipe 20.
If the finished product is direct to drop to the collecting vessel in by exhaust duct 20, the powder of raise dust form splashes easily, produce extravagantly when causing environmental pollution, dust bag 29 is soft materials, utilize rubber band ring tensioning cover to locate in the spacing groove 30 of exhaust duct 20 week side, the week side of exhaust duct 20 is located to the pot head of dust bag 29 of being convenient for, put into the collecting vessel with dust bag 29's one end in, the finished product falls into the collecting vessel along dust bag 29, be favorable to preventing to produce the raise dust, reduce extravagantly, environmental protection more.
The implementation principle of the embodiment of the application is as follows:
after raw materials are poured into the stirring bin 2 from the receiving hopper 8, the cover body 10 is covered at the opening of the receiving hopper 8, the dust cover 14 is used for preventing the raised dust from scattering to a distance, and meanwhile, the suction fan 28 works to enable the raised dust to be drawn away from the dust suction port 15. Start servo motor 6 drive (mixing) shaft 3 and rotate, and (mixing) shaft 3 drives left stirring leaf 4 and right stirring leaf 5 and rotates simultaneously for the raw materials of stirring by left stirring leaf 4 and right stirring leaf 5 remove respectively to the vertical plane of symmetry department of (mixing) shaft 3 and mix in crossing, make the raw materials in the stirring storehouse 2 each other mix the collision more abundant.
Utilize pneumatic valve 18 to be convenient for open and shut ejection of compact pipeline 17, pneumatic valve 18 opens the finished product in the stirring storehouse 2 of being convenient for discharge, utilize buffer pipe 19 to be favorable to reducing the speed of finished product discharge, twist positioning bolt 25 to separate with manual valve 21 through adjusting disk 26, the discharge tube 20 is opened to the manual valve 21 of the pull of being convenient for, the finished product falls into the collecting vessel along dust bag 29 in, prevent that the finished product from directly dropping to the collecting vessel by ejection of compact pipeline 20 and splash the raise dust.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a rust inhibitor filling is with high-efficient mixer which characterized in that: including support (1) and stirring storehouse (2), stirring storehouse (2) with support (1) fixed connection, the feed inlet has been seted up to the upper end in stirring storehouse (2), stirring storehouse (2) are rotated along the horizontal direction and are connected with (mixing) shaft (3), week side fixedly connected with left side stirring leaf (4) and right side stirring leaf (5) of (mixing) shaft (3), left side stirring leaf (4) with right side stirring leaf (5) are relative the vertical plane of symmetry in stirring storehouse (2) sets up, left side stirring leaf (4) with right side stirring leaf (5) are all followed the axial of (mixing) shaft (3) is the heliciform and encloses and locate week side of (mixing) shaft (3), support (1) fixedly connected with servo motor (6), the output of servo motor (6) with (mixing) shaft (3) coaxial fixed connection.
2. The efficient mixer for antirust agent filling according to claim 1, wherein: stirring storehouse (2) in feed inlet department fixedly connected with receives hopper (8), the open area of receiving hopper (8) is along deviating from stirring storehouse (2) direction crescent.
3. The efficient mixer for antirust agent filling according to claim 2, wherein: one end of the receiving hopper (8) close to the stirring bin (2) is fixedly connected with a protective net (9).
4. The efficient mixer for antirust agent filling according to claim 1, wherein: the discharge gate has been seted up to the lower extreme in stirring storehouse (2), stirring storehouse (2) in discharge gate department fixedly connected with ejection of compact pipeline (17), ejection of compact pipeline (17) department is provided with pneumatic valve (18).
5. The efficient mixer for antirust agent filling according to claim 4, wherein: discharge tube (17) are kept away from the one end fixedly connected with buffer pipe way (19) in stirring storehouse (2), the open area orientation of buffer pipe way (19) deviates from the direction of discharge tube (17) reduces gradually, buffer pipe way (19) are kept away from the one end fixedly connected with discharge pipe way (20) of discharge tube (17), discharge pipe way (20) with be provided with manual valve (21) between buffer pipe way (19).
6. The efficient mixer for antirust agent filling according to claim 5, wherein: one end of the discharge pipeline (20) far away from the stirring bin (2) is provided with a soft dust bag (29), and the two ends of the dust bag (29) are both in a tubular shape with openings.
7. The efficient mixer for antirust agent filling according to claim 2, wherein: support (1) fixedly connected with dust cover (14), the orientation has been seted up in dust cover (14) receive dust absorption mouth (15) of hopper (8), dust cover (14) deviate from receive one end fixedly connected with dust absorption pipeline (16) of hopper (8), keep away from dust absorption pipeline (16) the one end fixedly connected with air exhauster (28) of dust absorption mouth (15).
8. The efficient mixer for antirust agent filling according to claim 2, wherein: the opening of the receiving hopper (8) is detachably provided with a transparent cover body (10).
CN202022752829.0U 2020-11-24 2020-11-24 High-efficient mixer is used in antirust agent filling Active CN213885759U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022752829.0U CN213885759U (en) 2020-11-24 2020-11-24 High-efficient mixer is used in antirust agent filling

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022752829.0U CN213885759U (en) 2020-11-24 2020-11-24 High-efficient mixer is used in antirust agent filling

Publications (1)

Publication Number Publication Date
CN213885759U true CN213885759U (en) 2021-08-06

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CN202022752829.0U Active CN213885759U (en) 2020-11-24 2020-11-24 High-efficient mixer is used in antirust agent filling

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