CN218901834U - Utilize reation kettle agitating unit in potassium fluotitanate technology - Google Patents

Utilize reation kettle agitating unit in potassium fluotitanate technology Download PDF

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Publication number
CN218901834U
CN218901834U CN202222804507.5U CN202222804507U CN218901834U CN 218901834 U CN218901834 U CN 218901834U CN 202222804507 U CN202222804507 U CN 202222804507U CN 218901834 U CN218901834 U CN 218901834U
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stirring
reaction kettle
stirring bin
bin
stirring device
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王文星
张敏敏
张蒙
左立勇
孙吉鹏
朱铭
吴慧萍
杨小利
杨少文
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Fujian Sanming Jinfu Chemical Technology Co ltd
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Fujian Sanming Jinfu Chemical Technology Co ltd
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Abstract

The utility model provides a reaction kettle stirring device in a potassium fluotitanate utilization process, which comprises a stirring bin, wherein a U-shaped frame is arranged below the stirring bin, and two vertical plates of the U-shaped frame are provided with rotating parts for driving the stirring bin to rotate; the left end of the upper surface of the stirring bin is provided with a feeding part for conveying materials into the stirring bin, the right end of the upper surface of the stirring bin is provided with a feeding hopper for conveying the materials into the stirring bin, and the stirring bin is internally provided with a stirring part for mixing the materials; the utility model has simple structure and convenient operation, and can realize the stirring of the raw materials when preparing the potassium fluotitanate.

Description

Utilize reation kettle agitating unit in potassium fluotitanate technology
Technical Field
The utility model relates to the technical field of chemical industry, in particular to a reaction kettle stirring device in a potassium fluotitanate process.
Background
Potassium fluotitanate is used as one of the main raw materials for preparing aluminum-titanium-boron alloy (aluminum and grain refiner of aluminum alloy), and the yield and purity of the potassium fluotitanate directly influence the preparation of the aluminum-titanium-boron alloy. For the preparation of potassium fluotitanate, the traditional process mainly comprises a fluotitanic acid method, a meta-titanic acid method and the like, in the traditional preparation process, raw materials for preparing potassium fluotitanate are required to be conveyed and stirred, and then formed potassium fluotitanate precipitate is dried, so that the subsequent use is facilitated, but in the prior art, the stirring effect is performed manually, so that not only is manpower and material resources wasted, but also the working efficiency is low, and the stirring is uneven easily.
Disclosure of Invention
In view of the above, the present utility model aims to provide a reactor stirring apparatus in a potassium fluotitanate utilization process, which can stir raw materials during the preparation of potassium fluotitanate.
The utility model is realized by the following steps: a reaction kettle stirring device in a potassium fluotitanate process comprises a stirring bin, wherein a U-shaped frame is arranged below the stirring bin, and two vertical plates of the U-shaped frame are provided with rotating parts for driving the stirring bin to rotate; the stirring bin is characterized in that a feeding part for conveying materials into the stirring bin is arranged at the left end of the upper surface of the stirring bin, a feeding hopper for conveying the materials into the stirring bin is arranged at the right end of the upper surface of the stirring bin, and a stirring part for mixing the materials is arranged in the stirring bin.
Further, the rotating piece comprises an annular guide rail groove, annular plates are arranged on two vertical plates of the U-shaped frame, the annular guide rail groove is formed in the inner side face of the annular plates, extension rods are arranged at the lower ends of the left side and the right side of the peripheral side face of the stirring bin, the extension rods are embedded into the annular guide rail groove, guide wheels are arranged on the lower surface of the extension rods, and a first motor for driving the guide wheels to rotate is arranged on the side face of the guide wheels.
Further, the front of the stirring bin is provided with an observation window.
Further, the feeding piece comprises a three-way valve, the three-way valve is arranged at the left end of the upper surface of the stirring bin, the left end and the right end of the three-way valve are both communicated with a first feeding pipe, the lower end of the three-way valve is communicated with a second feeding pipe, and a feeding hole of the second feeding pipe penetrates through the upper surface of the stirring bin and extends into the stirring bin.
Further, a first electromagnetic valve is arranged at the discharge hole of the feed hopper, and a liquid level sensor is arranged at the upper end of the left side surface in the stirring bin.
Further, the stirring piece includes the second motor, the second motor set up in stirring storehouse upper surface, the output of second motor is connected with the pivot, the pivot warp bearing with the stirring storehouse inner bottom surface middle part is connected and is set up, the equidistance cover is equipped with a plurality of stirring leaves in the pivot, pivot lower extreme left and right sides all is provided with and is used for the cleanness the scraper blade of stirring storehouse bottom surface, the outside of scraper blade is provided with the rubber and scrapes the piece.
Further, a discharging pipe is arranged on the lower surface of the stirring bin, and a second electromagnetic valve is arranged at a discharging hole of the discharging pipe.
Further, the stirring device comprises a stirring bin, and is characterized by further comprising a suction part, the suction part comprises a suction pump, the suction pump is arranged at the upper end of the right side surface of the stirring bin, a fixed seat is arranged at the upper end of the right side surface of the stirring bin, a plurality of sections of telescopic cylinders are arranged at the left end of the lower surface of the fixed seat, lifting plates are arranged at the tail ends of telescopic rods of the plurality of sections of telescopic cylinders, a suction port of the suction pump is connected with a suction pipe, the suction pipe penetrates through the right side surface of the stirring bin and extends into the stirring bin, a third electromagnetic valve is arranged at the discharge port of the suction pipe, a corrugated pipe is communicated with the discharge port of the suction pipe, the corrugated pipe is vertically arranged with the suction pipe, and the suction port of the corrugated pipe penetrates through the lifting plates and extends to the lower part of the lifting plates.
The utility model has the beneficial effects that: according to the stirring device, the stirring bin, the rotating piece and the stirring piece are added into the device, so that the stirring effect of materials in the stirring bin can be realized through the effect of the stirring piece, and then the whole stirring of the stirring bin can be realized through the effect of the rotating piece, so that the stirring effect of the materials is better, and the mixing of the materials can be better realized; the utility model has simple structure and convenient operation, can effectively reduce manpower and material resources and improve the working efficiency.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic diagram of the internal structure of the present utility model.
Detailed Description
The utility model is further described below with reference to the accompanying drawings.
Referring to fig. 1 and 2, the present utility model provides an embodiment: a reaction kettle stirring device in a potassium fluotitanate process comprises a stirring bin 1, wherein a U-shaped frame 2 is arranged below the stirring bin 1, and two vertical plates of the U-shaped frame 2 are provided with rotating pieces 3 for driving the stirring bin 1 to rotate; the left end of the upper surface of the stirring bin 1 is provided with a feeding piece 4 for conveying materials into the stirring bin 1, the right end of the upper surface of the stirring bin 1 is provided with a feeding hopper 5 for conveying the materials into the stirring bin 1, and the stirring bin 1 is internally provided with a stirring piece 6 for mixing the materials. So that the material for preparing potassium fluotitanate is conveyed into the stirring bin 1 through the feeding member 4 and the feeding hopper 5, and is stirred through the stirring member 6, thereby forming potassium fluotitanate precipitate.
Referring to fig. 1 and 2, in an embodiment of the present utility model, the rotating member 3 includes an annular guide rail groove 31, annular plates 32 are disposed on two vertical plates of the U-shaped frame 2, the annular guide rail groove 31 is disposed on an inner side surface of the annular plates 32, extension rods 33 are disposed at lower ends of left and right sides of a circumferential side surface of the stirring bin 1, the extension rods 33 are embedded into the annular guide rail groove 31, a guide wheel 34 is disposed on a lower surface of the extension rods 33, and a first motor 35 for driving the guide wheel 34 to rotate is disposed on a side surface of the guide wheel 34. So that the guide wheel 34 can be driven to rotate in the annular guide rail groove 31 by the action of the first motor 35, thereby realizing the integral rotation of the stirring bin 1.
Referring to fig. 1, in an embodiment of the present utility model, an observation window 11 is disposed on the front surface of the stirring chamber 1. So that the condition in the stirring vessel 1 can be observed through the observation window 11.
Referring to fig. 1 and 2, in an embodiment of the utility model, the feeding member 4 includes a three-way valve 41, the three-way valve 41 is disposed at the left end of the upper surface of the stirring bin 1, the left and right ends of the three-way valve 41 are both communicated with a first feeding pipe 42, the lower end of the three-way valve 41 is communicated with a second feeding pipe 43, and a feeding hole of the second feeding pipe 43 extends into the stirring bin 1 through the upper surface of the stirring bin 1. So that hydrofluoric acid and peroxide solution are conveyed into the stirring bin 1 through the second feeding pipe 43 by the action of the first feeding pipe 42, and then ilmenite is crushed into mineral powder through the feeding hopper 5 and added into the stirring bin 1 for stirring, thereby preparing potassium fluotitanate precipitate.
Referring to fig. 1 and 2, in an embodiment of the present utility model, a first electromagnetic valve 51 is disposed at a discharge port of the feeding hopper 5, and a liquid level sensor 12 is disposed at an upper end of an inner left side surface of the stirring bin 1. So that the opening and closing action of the feed hopper 5 can be realized through the action of the first electromagnetic valve 51, and the waste liquid can be discharged when the water level in the stirring bin 1 reaches the liquid level sensor 12 through the action of the liquid level sensor 12.
Referring to fig. 1 and 2, in an embodiment of the present utility model, the stirring member 6 includes a second motor 61, the second motor 61 is disposed on an upper surface of the stirring bin 1, an output end of the second motor 61 is connected with a rotating shaft 62, the rotating shaft 62 is connected with a middle portion of an inner bottom surface of the stirring bin 1 through a bearing, a plurality of stirring blades 63 are sleeved on the rotating shaft 62 at equal distances, scrapers 64 for cleaning the bottom surface of the stirring bin 1 are disposed on left and right sides of a lower end of the rotating shaft 62, and rubber scraping blocks 65 are disposed on an outer side of the scrapers 64. So that through second motor 61, can drive pivot 62 and rotate to realize stirring leaf 63 and rotate, realize the stirring effect of material, the effect of rethread scraper blade 64 can realize the scraping of stirring storehouse 1 interior bottom surface, avoids the material to glue in stirring storehouse 1 bottom surface.
Referring to fig. 1 and 2, in an embodiment of the present utility model, a discharging pipe 13 is disposed on the lower surface of the stirring bin 1, and a second electromagnetic valve 14 is disposed at a discharging hole of the discharging pipe 13. So that the opening and closing action of the discharge pipe 13 can be realized by the action of the second electromagnetic valve 14.
Referring to fig. 1 and 2, in an embodiment of the present utility model, the apparatus further includes a suction member 7, the suction member 7 includes a suction pump 71, the suction pump 71 is disposed at an upper end of a right side surface of the stirring bin 1, a fixed seat 72 is disposed at an upper end of the right side surface of the stirring bin 1, a plurality of telescopic cylinders 73 are disposed at a left end of a lower surface of the fixed seat 72, a lifting plate 74 is disposed at an end of a telescopic rod of the plurality of telescopic cylinders 73, a suction port of the suction pump 71 is connected with a suction pipe 75, the suction pipe 75 passes through the right side surface of the stirring bin 1 and extends into the stirring bin 1, a third electromagnetic valve 76 is disposed at a discharge port of the suction pipe 75, a bellows 77 is communicated at a discharge port of the suction pipe 75, and the bellows 77 is disposed perpendicularly to the suction pipe 75, and the suction port of the bellows 77 passes through the lifting plate 74 and extends below the lifting plate 74. So that the lifting plate 74 can be driven to lift up and down by the multi-section telescopic cylinder 73, thereby realizing the up and down lifting of the corrugated pipe 77, and the waste liquid after stirring can be discharged into the stirring bin 1 through the pumping pipe 75 under the action of the pumping pump 71.
In the utility model, the electromagnetic valve, the telescopic cylinder, the motor, the material sucking pump, the three-way valve and the liquid level sensor are all in the prior art, and those skilled in the art can clearly understand that the liquid level sensor can be an OLS-C02 type without being limited thereto.
The foregoing description is only of the preferred embodiments of the utility model, and all changes and modifications that come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein.

Claims (8)

1. A reaction kettle stirring device in a potassium fluotitanate process is utilized, which is characterized in that: the stirring device comprises a stirring bin, wherein a U-shaped frame is arranged below the stirring bin, and rotating pieces for driving the stirring bin to rotate are arranged on two vertical plates of the U-shaped frame; the stirring bin is characterized in that a feeding part for conveying materials into the stirring bin is arranged at the left end of the upper surface of the stirring bin, a feeding hopper for conveying the materials into the stirring bin is arranged at the right end of the upper surface of the stirring bin, and a stirring part for mixing the materials is arranged in the stirring bin.
2. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the rotating piece comprises an annular guide rail groove, annular plates are arranged on two vertical plates of the U-shaped frame, the annular guide rail groove is formed in the inner side face of the annular plates, extension rods are arranged at the lower ends of the left side and the right side of the peripheral side face of the stirring bin, the extension rods are embedded into the annular guide rail groove, guide wheels are arranged on the lower surfaces of the extension rods, and a first motor for driving the guide wheels to rotate is arranged on the side face of the guide wheels.
3. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the front of the stirring bin is provided with an observation window.
4. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the feeding piece comprises a three-way valve, the three-way valve is arranged at the left end of the upper surface of the stirring bin, the left end and the right end of the three-way valve are both communicated with a first feeding pipe, the lower end of the three-way valve is communicated with a second feeding pipe, and a feeding hole of the second feeding pipe penetrates through the upper surface of the stirring bin and extends into the stirring bin.
5. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the discharge gate department of feeder hopper is provided with first solenoid valve, left surface upper end is provided with liquid level sensor in the stirring storehouse.
6. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the stirring piece comprises a second motor, the second motor set up in stirring storehouse upper surface, the output of second motor is connected with the pivot, the pivot warp bearing with the stirring storehouse inner bottom surface middle part is connected and is set up, the equidistance cover is equipped with a plurality of stirring leaves in the pivot, pivot lower extreme left and right sides all is provided with and is used for the cleanness the scraper blade of stirring storehouse bottom surface, the outside of scraper blade is provided with rubber scratch piece.
7. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: the stirring bin lower surface is provided with the discharging pipe, the discharge gate department of discharging pipe is provided with the second solenoid valve.
8. The reaction kettle stirring device in the potassium fluotitanate process according to claim 1, wherein the reaction kettle stirring device comprises: still include one and inhale the material spare, inhale the material spare including take out the material pump, take out the material pump set up in stirring storehouse right flank upper end, stirring storehouse interior right flank upper end is provided with the fixing base, fixing base lower surface left end is provided with the flexible cylinder of multisection, the telescopic link end of the flexible cylinder of multisection is provided with the lifter plate, take out the material mouth of taking out the material pump and be connected with the material pipe, the material pipe passes stirring storehouse right flank extends to in the stirring storehouse, the discharge gate department of material pipe is provided with the third solenoid valve, the discharge gate department intercommunication of material pipe has the bellows, just the bellows with take out the perpendicular setting of material pipe, the material mouth department of taking out of bellows passes the lifter plate extends to the lifter plate below.
CN202222804507.5U 2022-10-24 2022-10-24 Utilize reation kettle agitating unit in potassium fluotitanate technology Active CN218901834U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222804507.5U CN218901834U (en) 2022-10-24 2022-10-24 Utilize reation kettle agitating unit in potassium fluotitanate technology

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222804507.5U CN218901834U (en) 2022-10-24 2022-10-24 Utilize reation kettle agitating unit in potassium fluotitanate technology

Publications (1)

Publication Number Publication Date
CN218901834U true CN218901834U (en) 2023-04-25

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CN202222804507.5U Active CN218901834U (en) 2022-10-24 2022-10-24 Utilize reation kettle agitating unit in potassium fluotitanate technology

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