CN213823523U - Crystallization kettle for chemical raw material processing - Google Patents

Crystallization kettle for chemical raw material processing Download PDF

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Publication number
CN213823523U
CN213823523U CN202022595382.0U CN202022595382U CN213823523U CN 213823523 U CN213823523 U CN 213823523U CN 202022595382 U CN202022595382 U CN 202022595382U CN 213823523 U CN213823523 U CN 213823523U
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crystallization kettle
fixedly connected
pipe
shaft
crystallization
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CN202022595382.0U
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许广云
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Shenyang Bailichang Technology Co ltd
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Shenyang Bailichang Technology Co ltd
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Abstract

The utility model discloses a crystallization kettle is used in industrial chemicals processing, including crystallization kettle, crystallization kettle's top is run through there is the bearing axle, the bearing axle rotates with crystallization kettle to be connected, the top fixedly connected with condensate pump of bearing axle, the end intercommunication of intaking of condensate pump has the feed liquor pipe, the play water end intercommunication of condensate pump has the drain pipe, circulation chamber has all been seted up to the inside both sides of bearing axle, the one end that the condensate pump was kept away from to feed liquor pipe and drain pipe runs through the top of bearing axle both sides respectively and respectively with two circulation chamber intercommunication. The utility model discloses an annular condenser pipe cools down to the inside raw materials solution of crystallization kettle, and what annular condenser pipe did not stop simultaneously stirs the solution for the inside raw materials solution uniform cooling of crystallization kettle mixes raw materials solution and cools off to combine together, when having improved the homogeneous mixing quality and the efficiency of raw materials, also can guarantee that the processing solution cools off evenly, thereby has improved crystallization quality.

Description

Crystallization kettle for chemical raw material processing
Technical Field
The utility model relates to a chemical production device field specifically is a crystallization kettle is used in industrial chemicals processing.
Background
The crystallization kettle is a crystallization device which needs chilled water or refrigerant water to be rapidly cooled in an interlayer after material mixing reaction, and has the key links of the size of the area of the interlayer, the structural form and the material outlet form of a stirrer, high-precision polishing in a tank body and the requirement of no dead angle in cleaning in the tank body to meet the process use conditions, so that the crystallization kettle is widely applied in the modern chemical production process.
At present, when the existing crystallization kettle is used for stirring and mixing chemical raw materials in the crystallization process of the chemical raw materials, the existing crystallization kettle cannot be cooled, a secondary cooling process is needed, the production efficiency is reduced, the raw material mixed solution which is not stirred and cooled is not cooled uniformly, and the quality of later-stage crystallization is reduced.
Therefore, it is necessary to provide a crystallization kettle for processing chemical raw materials to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a crystallization kettle is used in industrial chemicals processing to solve the inhomogeneous problem of prior art cooling.
In order to achieve the above object, the utility model provides a following technical scheme: a crystallization kettle for processing chemical raw materials comprises a crystallization kettle, wherein a bearing shaft penetrates through the top of the crystallization kettle, the bearing shaft is rotatably connected with the crystallization kettle, a condensing pump is fixedly connected to the top of the bearing shaft, a water inlet end of the condensing pump is communicated with a liquid inlet pipe, a water outlet end of the condensing pump is communicated with a liquid outlet pipe, circulation cavities are respectively arranged on two sides inside the bearing shaft, one ends of the liquid inlet pipe and the liquid outlet pipe, which are far away from the condensing pump, respectively penetrate through the tops of two sides of the bearing shaft and are respectively communicated with the two circulation cavities, an annular condensing pipe is communicated between the bottoms of the two circulation cavities on one side, which are far away from each other, and is positioned below the bearing shaft, a transmission gear is fixedly connected to the surface of the bearing shaft and is positioned below the liquid inlet pipe, the top of the right side of the crystallization kettle is fixedly connected with a mounting seat through a bolt, and the top of the mounting seat is fixedly connected with a driving motor, the utility model discloses a crystallization kettle, including crystallization kettle top, driving motor's output shaft fixedly connected with drive shaft, the one end fixedly connected with action wheel of drive shaft, the right side at crystallization kettle top is rotated and is connected with the transmission shaft, the surface of transmission shaft just is located the bottom fixedly connected with of action wheel from the driving wheel, the action wheel rotates with from the driving wheel to be connected, the surface of transmission shaft just is located the below fixedly connected with drive gear from the driving wheel, drive gear meshes with drive gear mutually.
Preferably, the both sides on bearing shaft surface just are located the equal fixedly connected with connecting plate in crystallization kettle's inside, the bottom fixedly connected with connecting block of bearing shaft, the bottom fixedly connected with connecting rod of connecting block, the bottom of annular condenser pipe runs through the connecting rod and extends to the below of connecting rod.
Preferably, the both ends of connecting rod just are located the equal fixedly connected with scraper blade of internal surface of crystallization kettle, two the scraper blade all contacts with the crystallization kettle, two the both sides that the connecting plate is kept away from respectively with two the relative one side fixed connection of scraper blade, two the scraper blade all is through slider and crystallization kettle's internal surface sliding connection.
Preferably, the left top fixedly connected with fixing base of crystallization kettle, it has the feeder hopper to run through on the fixing base, the bottom intercommunication of feeder hopper has the inlet pipe.
Preferably, the bottom of inlet pipe communicates in the left side of crystallization kettle and is located the below of connecting rod, set up the feed inlet of cooperation inlet pipe feeding on the inner wall of crystallization kettle.
Preferably, the bottom of the crystallization kettle is communicated with a discharge pipe, and the two sides of the bottom of the crystallization kettle are fixedly connected with bases.
Compared with the prior art, the beneficial effects of the utility model are that:
(1) the crystallization kettle for processing the chemical raw materials comprises a feeding hopper, a valve on the feeding pipe is opened by sequentially adding raw materials to be used into the feeding hopper, the raw materials are conveyed into the crystallization kettle through the feeding pipe and the feeding port, after the raw materials are added, the valve on the feeding pipe is closed, a driving motor is started, a driving shaft is enabled to rotate, the driving shaft drives a driving wheel to rotate, the driving wheel drives a driven wheel to rotate, the driving wheel drives a transmission shaft to rotate, the transmission shaft drives a driving gear to rotate, the driving gear is meshed with a transmission gear, the transmission gear drives a bearing shaft to rotate, the bearing shaft rotates on the crystallization kettle, so that an annular condensation pipe is driven to rotate inside the crystallization kettle, the raw materials are stirred and mixed, after the mixing is completed, a condensation pump is started again, the condensate in the annular condensation pipe is extracted through a liquid inlet pipe and a circulation cavity, and the condensate is cooled again through the condensation pump, through going out the liquid pipe and carrying into another circulation intracavity, carry the inside of advancing the annular condenser pipe once more, make the inside condensate of condenser pipe last low temperature, cool down the inside raw materials solution of crystallization kettle through the annular condenser pipe, the annular condenser pipe stirs solution constantly simultaneously, make the inside raw materials solution uniform cooling of crystallization kettle, mix raw materials solution and cool off and combine together, when having improved the homogeneous mixing quality and the efficiency of raw materials, also can guarantee that processing solution cools off evenly, thereby crystallization quality has been improved.
(2) This crystallization kettle is used in industrial chemicals processing, through starting driving motor, make the drive shaft rotate, the drive shaft drives the action wheel and rotates, the action wheel drives driven round of rotation, the action wheel drives the transmission shaft and rotates, the transmission shaft drives drive gear and rotates, drive gear meshes with drive gear mutually, thereby drive gear and rotate, drive gear drives the bearing axle and rotates, the bearing axle drives two connecting plates and rotates, drive the connecting rod simultaneously through the connecting block and rotate, connecting rod and two connecting plates drive two scrapers simultaneously and rotate around crystallization kettle's internal surface, the scraper blade is cut adnexed crystallization on the crystallization kettle internal surface and is cut down, prevent that the crystallization adhesion is difficult for taking out on crystallization kettle internal surface, material residue has been reduced, raw materials resources have been practiced thrift, thereby manufacturing cost has been saved.
Drawings
FIG. 1 is a schematic structural diagram of a crystallization kettle for processing chemical raw materials according to a preferred embodiment of the present invention;
fig. 2 is a schematic front view of the bearing shaft shown in fig. 1.
In the figure: 1. a crystallization kettle; 2. a load bearing shaft; 3. a condensate pump; 4. a liquid inlet pipe; 5. a liquid outlet pipe; 6. a flow-through chamber; 7. an annular condenser tube; 8. a transmission gear; 9. a mounting seat; 10. a drive motor; 11. a drive shaft; 12. a driving wheel; 13. a drive shaft; 14. a driven wheel; 15. a connecting plate; 16. connecting blocks; 17. a connecting rod; 18. a squeegee; 19. a fixed seat; 20. a feed hopper; 21. a feed pipe; 22. a feed inlet; 23. a discharge pipe; 24. a base; 25. a slider; 26. the gears are driven.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-2, the present invention provides an embodiment: a crystallization kettle for processing chemical raw materials comprises a crystallization kettle 1, wherein a bearing shaft 2 penetrates through the top of the crystallization kettle 1, the bearing shaft 2 is rotatably connected with the crystallization kettle 1, a condensing pump 3 is fixedly connected to the top of the bearing shaft 2, a liquid inlet pipe 4 is communicated with the water inlet end of the condensing pump 3, a liquid outlet pipe 5 is communicated with the water outlet end of the condensing pump 3, circulation cavities 6 are respectively arranged on two sides of the interior of the bearing shaft 2, the two circulation cavities 6 are U-shaped cavities and symmetrically arranged in the interior of the bearing shaft 2, condensate is respectively filled in the two circulation cavities 6, the liquid inlet pipe 4, the liquid outlet pipe 5 and the annular condenser pipe 7, one ends of the liquid inlet pipe 4 and the liquid outlet pipe 5, which are far away from the condensing pump 3, respectively penetrate through the tops of two sides of the bearing shaft 2 and are respectively communicated with the two circulation cavities 6, the annular condenser pipe 7 is communicated between the bottoms of the two circulation cavities 6, which are far away from one side, and is positioned below the bearing shaft 2, a transmission gear 8 is fixedly connected on the surface of the bearing shaft 2 and below the liquid inlet pipe 4, the top of the right side of the crystallization kettle 1 is fixedly connected with a mounting seat 9 through a bolt, the top of the mounting seat 9 is fixedly connected with a driving motor 10, an output shaft of the driving motor 10 is fixedly connected with a driving shaft 11, the driving motor 10 is connected with an external power supply and is provided with a switch for controlling the power supply, one end of the driving shaft 11 is fixedly connected with a driving wheel 12, a transmission shaft 13 is rotatably connected to the right side of the top of the crystallization kettle 1, a driven wheel 14 is fixedly connected to the surface of the transmission shaft 13 and the bottom of the driving wheel 12, the driving wheel 12 is rotatably connected with the driven wheel 14, a driving gear 26 is fixedly connected on the surface of the transmission shaft 13 and below the driven wheel 14, the driving gear 26 is meshed with the transmission gear 8, and the driving wheel 12 and the driven wheel 14 are both conical gears.
The equal fixedly connected with connecting plate 15 in the both sides on bearing axle 2 surface and the inside that is located crystallization kettle 1, the bottom fixedly connected with connecting block 16 of bearing axle 2, the bottom fixedly connected with connecting rod 17 of connecting block 16, the bottom of annular condenser pipe 7 runs through connecting rod 17 and extends to the below of connecting rod 17.
The both ends of connecting rod 17 just are located the equal fixedly connected with scraper blade 18 of internal surface of crystallization kettle 1, two scraper blade 18 all contacts with crystallization kettle 1, two the both sides that connecting plate 15 departed from mutually respectively with two the relative one side fixed connection of scraper blade 18, two scraper blade 18 all is through the internal surface sliding connection of slider 25 with crystallization kettle 1, set up the gliding annular spout of cooperation slider 25 on the internal surface of crystallization kettle 1.
The left top fixedly connected with fixing base 19 of crystallization kettle 1, it has feeder hopper 20 to run through on the fixing base 19, the bottom intercommunication of feeder hopper 20 has inlet pipe 21, be provided with the valve on the inlet pipe 21.
The bottom of inlet pipe 21 communicates in the left side of crystallization kettle 1 and is located the below of connecting rod 17, set up the feed inlet 22 of cooperation inlet pipe 21 feeding on the inner wall of crystallization kettle 1.
The bottom of crystallization kettle 1 is communicated with a discharge pipe 23, a valve is arranged on discharge pipe 23, and two sides of the bottom of crystallization kettle 1 are fixedly connected with a base 24.
The working principle is as follows: when in use, raw materials which are generated and used are sequentially added into the feed hopper 20, a valve on the feed pipe 21 is opened, the raw materials are conveyed into the crystallization kettle 1 through the feed pipe 21 and the feed inlet 22, after the raw materials are added, the valve on the feed pipe 21 is closed, the driving motor 10 is started, the driving shaft 11 is rotated, the driving shaft 11 drives the driving wheel 12 to rotate, the driving wheel 12 drives the driven wheel 14 to rotate, the driving wheel 14 drives the transmission shaft 13 to rotate, the transmission shaft 13 drives the driving gear 26 to rotate, the driving gear 26 is meshed with the transmission gear 8, so as to drive the transmission gear 8 to rotate, the transmission gear 8 drives the bearing shaft 2 to rotate, the bearing shaft 2 rotates on the crystallization kettle 1, so as to drive the annular condensation pipe 7 to rotate in the crystallization kettle 1, the raw materials are stirred and mixed, after the mixing is finished, the condensation pump 3 is started, and the condensate in the annular condensation pipe 7 is extracted through the feed inlet pipe 4 and the circulation cavity 6, after the condensate is cooled again through the condensing pump 3, the condensate is conveyed into another circulation cavity 6 through the liquid outlet pipe 5 and conveyed into the annular condensing pipe 7 again, so that the condensate in the condensing pipe 7 is continuously cooled, the raw material solution in the crystallization kettle 1 is cooled through the annular condensing pipe 7, meanwhile, the solution is continuously stirred by the annular condensing pipe 7, so that the raw material solution in the crystallization kettle 1 is uniformly cooled, the cooling is finished, the driving motor 10 and the condensing pump 3 are closed again, the raw material solution is opened for standing crystallization, after the crystallization is finished, the driving motor 10 is restarted, so that the driving shaft 11 rotates, the driving shaft 11 drives the driving wheel 12 to rotate, the driving wheel 12 drives the driven wheel 14 to rotate, the driving wheel 14 drives the transmission shaft 13 to rotate, the transmission shaft 13 drives the driving gear 26 to rotate, the driving gear 26 is meshed with the transmission gear 8, and the transmission gear 8 is driven to rotate, the transmission gear 8 drives the bearing shaft 2 to rotate, the bearing shaft 2 drives the two connecting plates 15 to rotate, meanwhile, the connecting rod 17 is driven to rotate through the connecting block 16, the connecting rod 17 and the two connecting plates 15 simultaneously drive the two scrapers 18 to rotate around the inner surface of the crystallization kettle 1, the scrapers 18 scrape off crystals attached to the inner surface of the crystallization kettle 1 to prevent the crystals from being adhered to the inner surface of the crystallization kettle 1 and being not easy to take out, after the crystals are scraped off, the driving motor 10 is closed to open a valve on the discharge pipe 23, and a solution containing the crystals is taken out from the discharge pipe 23 to perform a next production process.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides a crystallization kettle is used in industrial chemicals processing, includes crystallization kettle (1), its characterized in that: a bearing shaft (2) penetrates through the top of the crystallization kettle (1), the bearing shaft (2) is rotatably connected with the crystallization kettle (1), a condensing pump (3) is fixedly connected to the top of the bearing shaft (2), a liquid inlet pipe (4) is communicated with a water inlet end of the condensing pump (3), a liquid outlet pipe (5) is communicated with a water outlet end of the condensing pump (3), circulation cavities (6) are respectively formed in two sides of the interior of the bearing shaft (2), one ends, far away from the condensing pump (3), of the liquid inlet pipe (4) and the liquid outlet pipe (5) respectively penetrate through the tops of two sides of the bearing shaft (2) and are respectively communicated with the two circulation cavities (6), an annular condensing pipe (7) is communicated between the bottoms of two separated sides of the circulation cavities (6) and below the bearing shaft (2), a transmission gear (8) is fixedly connected to the surface of the bearing shaft (2) and below the liquid inlet pipe (4), bolt fixedly connected with mount pad (9) is passed through at the top on crystallization kettle (1) right side, top fixedly connected with driving motor (10) of mount pad (9), output shaft fixedly connected with drive shaft (11) of driving motor (10), the one end fixedly connected with action wheel (12) of drive shaft (11), the right side at crystallization kettle (1) top is rotated and is connected with transmission shaft (13), the surface of transmission shaft (13) just is located the bottom fixedly connected with of action wheel (12) from driving wheel (14), action wheel (12) rotate with from driving wheel (14) and are connected, the surface of transmission shaft (13) just is located the below fixedly connected with drive gear (26) from driving wheel (14), drive gear (26) mesh with drive gear (8) mutually.
2. The crystallization kettle for chemical raw material processing according to claim 1, characterized in that: the utility model discloses a crystallization kettle, including the equal fixedly connected with connecting plate (15) in the inside that just is located crystallization kettle (1) on both sides on bearing axle (2) surface, the bottom fixedly connected with connecting block (16) of bearing axle (2), the bottom fixedly connected with connecting rod (17) of connecting block (16), the bottom through connection pole (17) of annular condenser pipe (7) just extend to the below of connecting rod (17).
3. The crystallization kettle for chemical raw material processing according to claim 2, characterized in that: the both ends of connecting rod (17) just are located the equal fixedly connected with scraper blade (18) of internal surface of crystallization kettle (1), two scraper blade (18) all contact with crystallization kettle (1), two the both sides that connecting plate (15) kept away from respectively with two the relative one side fixed connection of scraper blade (18), two scraper blade (18) all are through the internal surface sliding connection of slider (25) with crystallization kettle (1).
4. The crystallization kettle for chemical raw material processing according to claim 3, characterized in that: the left top fixedly connected with fixing base (19) of crystallization kettle (1), it has feeder hopper (20) to run through on fixing base (19), the bottom intercommunication of feeder hopper (20) has inlet pipe (21).
5. The crystallization kettle for chemical raw material processing according to claim 4, characterized in that: the bottom of inlet pipe (21) communicates in the left side of crystallization kettle (1) and is located the below of connecting rod (17), set up feed inlet (22) of cooperation inlet pipe (21) feeding on the inner wall of crystallization kettle (1).
6. The crystallization kettle for chemical raw material processing according to claim 1, characterized in that: the bottom of the crystallization kettle (1) is communicated with a discharge pipe (23), and two sides of the bottom of the crystallization kettle (1) are fixedly connected with bases (24).
CN202022595382.0U 2020-11-11 2020-11-11 Crystallization kettle for chemical raw material processing Active CN213823523U (en)

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CN202022595382.0U CN213823523U (en) 2020-11-11 2020-11-11 Crystallization kettle for chemical raw material processing

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114642896A (en) * 2022-05-19 2022-06-21 东营市赫邦化工有限公司 Crystallizer for hydroxylamine hydrochloride production

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114642896A (en) * 2022-05-19 2022-06-21 东营市赫邦化工有限公司 Crystallizer for hydroxylamine hydrochloride production
CN114642896B (en) * 2022-05-19 2022-08-05 东营市赫邦化工有限公司 Crystallizer is used in hydroxylamine hydrochloride production

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