CN210934861U - Flocculating agent production feed arrangement with water conservancy diversion function - Google Patents

Flocculating agent production feed arrangement with water conservancy diversion function Download PDF

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Publication number
CN210934861U
CN210934861U CN201921042418.3U CN201921042418U CN210934861U CN 210934861 U CN210934861 U CN 210934861U CN 201921042418 U CN201921042418 U CN 201921042418U CN 210934861 U CN210934861 U CN 210934861U
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pipe
inlet pipe
feed
pivot
reaction tank
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CN201921042418.3U
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刘征东
周旭
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Sichuan Keerrui Environmental Protection Technology Co ltd
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Sichuan Keerrui Environmental Protection Technology Co ltd
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Abstract

The utility model discloses a flocculating agent production feed arrangement with water conservancy diversion function relates to flocculating agent production technical field, including the retort, the fixed discharging pipe that is provided with on the lateral wall of retort, be provided with rabbling mechanism in the retort, the fixed first driving motor that is provided with of retort up end, first driving motor one side is provided with first inlet pipe, be provided with water conservancy diversion mechanism in the first inlet pipe, the one end of first inlet pipe with retort fixed connection, and the other end fixedly connected with second inlet pipe of first inlet pipe, fixed mounting has feed hopper on the one end lateral wall that first inlet pipe was kept away from to the second inlet pipe, be provided with conveying mechanism in the second inlet pipe, the one end that feed hopper was kept away from to the second inlet pipe is provided with actuating mechanism. The utility model discloses it is rational in infrastructure, can make the material evenly add, prevent that the material from to the jam of feed inlet, be favorable to improving the production efficiency of flocculating agent.

Description

Flocculating agent production feed arrangement with water conservancy diversion function
Technical Field
The utility model belongs to the technical field of the flocculating agent production, specifically be flocculating agent production feed arrangement with water conservancy diversion function.
Background
Flocculants can be classified into inorganic flocculants and organic flocculants according to the total chemical composition. Wherein the inorganic flocculant comprises an inorganic coagulant and an inorganic polymeric flocculant, and the theoretical basis is as follows: in the theory of "coalescence", the flocculating agent is mainly a chemical agent, called flocculating agent, which is used for this purpose, and has groups with positive (negative) electricity and particles or granules with negative (positive) electricity in water, which are difficult to separate, close to each other, reduce the potential of the particles, make the particles in an unstable state, and concentrate the particles by utilizing the polymerization property of the particles and separate the particles by a physical or chemical method. The flocculant is mainly applied to the fields of water supply and sewage treatment.
At present, with the development of society, the use of flocculating agents is more and more, and in the process of producing the flocculating agents, because of the difference of material properties, the flocculating agents are easy to block in the feeding process, so that the production efficiency of the flocculating agents is reduced, and the flocculating agents cannot be uniformly fed.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: in order to solve the problem that a feeding device cannot guide flow in the production process of the flocculant, the feeding device for flocculant production with a flow guide function is provided.
The utility model adopts the technical scheme as follows: the flocculant production and feeding device with the flow guide function comprises a reaction tank, a discharge pipe is fixedly arranged on the side wall of the reaction tank, a one-way valve is fixedly arranged on the side wall of the discharge pipe, a support column is fixedly connected with the lower end surface of the reaction tank, a stirring mechanism is arranged in the reaction tank, a first driving motor is fixedly arranged on the upper end surface of the reaction tank, a first feeding pipe is arranged on one side of the first driving motor, a flow guide mechanism is arranged in the first feeding pipe, one end of the first feeding pipe is fixedly connected with the reaction tank, the other end of the first feeding pipe is fixedly connected with a second feeding pipe, a feeding funnel is fixedly arranged on the side wall of one end of the second feeding pipe, which is far away from the first feeding pipe, be provided with conveying mechanism in the second inlet pipe, the one end that feed hopper was kept away from to the second inlet pipe is provided with actuating mechanism.
Wherein, rabbling mechanism includes the vertical first pivot of setting in the retort, first pivot upper end with the retort rotates to be connected, be provided with a plurality of stirring rakes on the lateral wall of first pivot, it is a plurality of the stirring rake with first pivot fixed connection.
The guide mechanism comprises a plurality of guide plates which are obliquely arranged in the first feeding pipe, and the guide plates are fixedly connected with the inner wall of the first feeding pipe.
Wherein, conveying mechanism includes the second pivot of level setting in the second inlet pipe, the one end that feed hopper was kept away from in the second pivot with the second inlet pipe rotates to be connected, and fixed cover is equipped with helical blade in the second pivot.
The driving mechanism comprises a second driving motor fixedly arranged on the side wall of one end, far away from the feeding funnel, of the second feeding pipe, and the driving end of the second driving motor penetrates through the second feeding pipe and is coaxially and fixedly connected with the second rotating shaft.
Wherein, the included angle between a plurality of guide plates and the first feed pipe is 30-60 degrees.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. the utility model discloses in, through setting up helical blade, can prevent to block up, make the even joining of material in the middle of the apparatus for producing, show the production efficiency who improves the flocculating agent.
2. The utility model discloses in, through being provided with a plurality of guide plates, can carry out the water conservancy diversion to the material, prevent to get into too much material, can carry out even feeding, be favorable to the production of flocculating agent, make the product quality of flocculating agent obtain promoting, can improve the production efficiency of flocculating agent moreover.
Drawings
FIG. 1 is a schematic diagram of the structure of the present invention;
fig. 2 is a cross-sectional view of the present invention;
fig. 3 is an enlarged view of the position a of the present invention.
The labels in the figure are: 1. a reaction tank; 2. a support pillar; 3. a one-way valve; 4. a discharge pipe; 5. a first drive motor; 6. a first feed tube; 7. a drive mechanism; 8. a feed hopper; 9. a second feed tube; 10. a second drive motor; 11. a second rotating shaft; 12. a helical blade; 13. a conveying mechanism; 14. a flow guide mechanism; 15. a baffle; 16. a first rotating shaft; 17. a stirring paddle; 18. and a stirring mechanism.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
Referring to fig. 1-3, a flocculant production and feeding device with a flow guide function comprises a reaction tank 1, a discharge pipe 4 is fixedly arranged on the side wall of the reaction tank 1, a flocculant is discharged from the discharge pipe 4, a check valve 3 controls the discharge pipe 4, a check valve 3 is fixedly arranged on the side wall of the discharge pipe 4, a support column 2 is fixedly connected to the lower end surface of the reaction tank 1, the support column 2 enables the device to be more stable, a stirring mechanism 18 is arranged in the reaction tank 1, the stirring mechanism 18 stirs materials to accelerate the production efficiency of the flocculant, a first driving motor 5 is fixedly arranged on the upper end surface of the reaction tank 1, the first driving motor 5 is the prior art, details are not repeated herein, a first feed pipe 6 is arranged on one side of the first driving motor 5, a flow guide mechanism 14 is arranged in the first feed pipe 6, the flow guide mechanism 14 enables the materials, one end and retort 1 fixed connection of first inlet pipe 6, and the other end fixedly connected with second inlet pipe 9 of first inlet pipe 6, fixed mounting has feed hopper 8 on the one end lateral wall that first inlet pipe 6 was kept away from to second inlet pipe 9, feed hopper 8 makes the material join more conveniently in the landing first inlet pipe 6, be provided with conveying mechanism 13 in the second inlet pipe 9, conveying mechanism 13 prevents the solidification of material in second inlet pipe 9, thereby prevent the jam problem, make the even entering into first inlet pipe 6 of material simultaneously, the one end that feed hopper 8 was kept away from to second inlet pipe 9 is provided with actuating mechanism 7.
As shown in fig. 2, the stirring mechanism 18 includes a first rotating shaft 16 vertically disposed in the reaction tank 1, the upper end of the first rotating shaft 16 is rotatably connected with the reaction tank 1, a plurality of stirring paddles 17 are disposed on the side wall of the first rotating shaft 16, the plurality of stirring paddles 17 stir the added materials, thereby increasing the production efficiency of the flocculant, the plurality of stirring paddles 17 are fixedly connected with the first rotating shaft 16, the conveying mechanism 13 includes a second rotating shaft 11 horizontally disposed in the second feeding pipe 9, one end of the second rotating shaft 11 far away from the feeding hopper 8 is rotatably connected with the second feeding pipe 9, and the second rotating shaft 11 is fixedly sleeved with a helical blade 12, the helical blade 12 can convey the added materials, thereby preventing the materials from solidifying in the pipe, thereby preventing the problem of blockage, the driving mechanism 7 includes a second driving motor 10 fixedly disposed on the side wall of one end of the second feeding pipe 9 far away from the feeding hopper 8, the second driving motor 10 is a conventional driving motor, and will not be described herein again, and a driving end of the second driving motor 10 penetrates through the second feeding pipe 9 and is coaxially and fixedly connected with the second rotating shaft 11.
As shown in fig. 3, the diversion mechanism 14 includes a plurality of diversion plates 15 obliquely disposed in the first feeding pipe 6, the plurality of diversion plates 15 are fixedly connected to the inner wall of the first feeding pipe 6, an included angle between the plurality of diversion plates 15 and the first feeding pipe 6 is 30-60 degrees, and the plurality of diversion plates 15 can make the material uniformly added into the reaction tank 1, so that the material can enter more uniformly.
The working principle is as follows: in carrying out the feeding operation in-process, at first pour the material into feed hopper 8, second driving motor 10 begins work, second driving motor 10 makes second pivot 11 rotate, second pivot 11 drives the rotation of helical blade 12, helical blade 12 carries the material by feed hopper 8 in first inlet pipe 6, the material enters into in first inlet pipe 6 back through guide plate 15 the water conservancy diversion evenly enter into retort 1, first driving motor 5 drives first pivot 16 and rotates, make stirring rake 17 stir the material, after the stirring, open check valve 3 and make the flocculating agent discharge by discharging pipe 4.
The above description is only exemplary of the present invention and should not be taken as limiting the scope of the present invention, as any modifications, equivalents, improvements and the like made within the spirit and principles of the present invention are intended to be included within the scope of the present invention.

Claims (6)

1. Flocculating agent production feed arrangement with water conservancy diversion function, including retort (1), its characterized in that: the reaction tank is characterized in that a discharge pipe (4) is fixedly arranged on the side wall of the reaction tank (1), a one-way valve (3) is fixedly arranged on the side wall of the discharge pipe (4), a support column (2) is fixedly connected to the lower end face of the reaction tank (1), a stirring mechanism (18) is arranged in the reaction tank (1), a first driving motor (5) is fixedly arranged on the upper end face of the reaction tank (1), a first feed pipe (6) is arranged on one side of the first driving motor (5), a flow guide mechanism (14) is arranged in the first feed pipe (6), one end of the first feed pipe (6) is fixedly connected with the reaction tank (1), a second feed pipe (9) is fixedly connected with the other end of the first feed pipe (6), and a feed hopper (8) is fixedly arranged on the side wall of one end, far away from the first feed pipe (6), of, be provided with conveying mechanism (13) in second inlet pipe (9), the one end that feed hopper (8) were kept away from in second inlet pipe (9) is provided with actuating mechanism (7).
2. The flocculant-producing feed device having a flow-guiding function according to claim 1, wherein: rabbling mechanism (18) include vertical setting first pivot (16) in retort (1), first pivot (16) upper end with retort (1) rotates and connects, be provided with a plurality of stirring rake (17), it is a plurality of on the lateral wall of first pivot (16) stirring rake (17) with first pivot (16) fixed connection.
3. The flocculant-producing feed device having a flow-guiding function according to claim 1, wherein: the flow guide mechanism (14) comprises a plurality of flow guide plates (15) which are obliquely arranged in the first feeding pipe (6), and the flow guide plates (15) are fixedly connected with the inner wall of the first feeding pipe (6).
4. The flocculant-producing feed device having a flow-guiding function according to claim 1, wherein: conveying mechanism (13) include second pivot (11) of level setting in second inlet pipe (9), second pivot (11) keep away from feed hopper (8) one end with second inlet pipe (9) rotate to be connected, and fixed cover is equipped with helical blade (12) on second pivot (11).
5. The flocculant-producing feed device having a flow-guiding function according to claim 4, wherein: the driving mechanism (7) comprises a second driving motor (10) fixedly arranged on the side wall of one end, far away from the feeding hopper (8), of the second feeding pipe (9), and the driving end of the second driving motor (10) penetrates through the second feeding pipe (9) and is coaxially and fixedly connected with the second rotating shaft (11).
6. The flocculant-producing feed device having a flow-guiding function according to claim 3, wherein: the included angle between the guide plates (15) and the first feeding pipe (6) is 30-60 degrees.
CN201921042418.3U 2019-07-05 2019-07-05 Flocculating agent production feed arrangement with water conservancy diversion function Active CN210934861U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921042418.3U CN210934861U (en) 2019-07-05 2019-07-05 Flocculating agent production feed arrangement with water conservancy diversion function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201921042418.3U CN210934861U (en) 2019-07-05 2019-07-05 Flocculating agent production feed arrangement with water conservancy diversion function

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115957679A (en) * 2023-02-01 2023-04-14 重庆工商大学 Composition, production process and processing device of a general-purpose fuel oil additive

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115957679A (en) * 2023-02-01 2023-04-14 重庆工商大学 Composition, production process and processing device of a general-purpose fuel oil additive

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