CN218608144U - Praseodymium neodymium oxide preparation is with edulcoration device - Google Patents
Praseodymium neodymium oxide preparation is with edulcoration device Download PDFInfo
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- CN218608144U CN218608144U CN202223239747.1U CN202223239747U CN218608144U CN 218608144 U CN218608144 U CN 218608144U CN 202223239747 U CN202223239747 U CN 202223239747U CN 218608144 U CN218608144 U CN 218608144U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
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Abstract
The utility model discloses an impurity removing device for preparing praseodymium neodymium oxide, relating to the technical field of praseodymium neodymium oxide preparation, comprising a connecting barrel and a material spreading component; connecting the barrel: a liquid discharge pipe is fixed inside a liquid discharge port arranged on the lower end face, an electromagnetic valve is installed on the circumferential surface of the liquid discharge pipe, a separation assembly is connected onto the lower end face of the liquid discharge pipe, and a rotating assembly is installed on the upper end face of the connecting barrel; spill the material subassembly: contain feedwell, conical duct, play workbin, arrange the material pipe and spill the material mouth, it changes the hole to have seted up on the up end of connecting the bucket, the inside rotation that changes the hole is connected with the feedwell, the inside upper end of feedwell is fixed with the conical duct, four corresponding fixed orificess have been seted up on the periphery of feedwell, the inside of fixed orificess is fixed with out the workbin, set up the connecting hole on the downside of play workbin, can improve the efficiency and the effect of edulcoration with adsorbing the feed liquid intensive mixing of edulcoration liquid and oxidation praseodymium neodymium.
Description
Technical Field
The utility model relates to a praseodymium neodymium oxide preparation technical field specifically is an edulcoration device is used in praseodymium neodymium oxide preparation.
Background
The existing praseodymium neodymium oxide mostly needs to remove impurities from material liquid in order to improve the purity of the praseodymium neodymium oxide in the preparation process, the existing impurity removing mode mostly adds an adsorption impurity removing agent into the praseodymium neodymium oxide material liquid to adsorb impurities in the praseodymium neodymium oxide material liquid, and the impurities can be removed by solid-liquid separation after adsorption.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome current defect, provide an edulcoration device is used in praseodymium neodymium oxide preparation, can improve the efficiency and the effect of edulcoration, can effectively solve the problem in the background art with adsorbing the feed liquid intensive mixing of edulcoration liquid and praseodymium neodymium oxide.
In order to achieve the above object, the utility model provides a following technical scheme: a praseodymium neodymium oxide preparation is with edulcoration device, including connecting the bucket and spilling the material subassembly;
connecting the barrel: a liquid discharge pipe is fixed inside a liquid discharge port arranged on the lower end face, an electromagnetic valve is installed on the circumferential surface of the liquid discharge pipe, a separation assembly is connected onto the lower end face of the liquid discharge pipe, and a rotating assembly is installed on the upper end face of the connecting barrel;
spill the material subassembly: the material spraying device comprises a feeding barrel, a tapered pipe, a discharging box, a discharging pipe and a material spraying opening, wherein a rotating hole is formed in the upper end face of the connecting barrel, the feeding barrel is rotatably connected inside the rotating hole, the tapered pipe is fixed at the upper end inside the feeding barrel, four corresponding fixing holes are formed in the circumferential surface of the feeding barrel, the discharging box is fixed inside the fixing holes, a connecting hole is formed in the lower side surface of the discharging box, the discharging pipe is rotatably connected inside the connecting hole, the uniformly distributed material spraying openings are formed in the circumferential surface of the discharging pipe, a stirring assembly is installed on the lower end face of the feeding barrel, and impurity adsorbing liquid is uniformly sprayed into the material liquid by the material spraying assembly;
wherein: the input end of the electromagnetic valve is electrically connected with the output end of an external power supply.
Furthermore, spill the material subassembly and still include first ring gear and internal tooth ring, arrange the upper end of material pipe periphery and be fixed with first ring gear, the inside of connecting the bucket is fixed with internal tooth ring, internal tooth ring meshes with four ring gear mutually.
Further, the stirring subassembly contains pivot and stirring frame, it is connected with the pivot to rotate on the lower terminal surface of feedwell, be fixed with evenly distributed's stirring frame on the periphery of pivot, mix absorption edulcoration liquid and feed liquid through setting up the stirring subassembly.
Furthermore, the separating component comprises a filter vat and a filter screen, the lower end of the liquid discharge pipe is fixed inside a liquid inlet formed in the upper end face of the filter vat, the filter screen is fixed inside the filter vat, and impurities are separated by the separating component.
Furthermore, the rotating assembly comprises a second gear ring, a motor and a gear, the second gear ring is fixed at the upper end of the circumferential surface of the feeding barrel, the motor is installed on the upper end surface of the connecting barrel, the gear is fixed on the output shaft of the motor and meshed with the second gear ring, the input end of the motor is electrically connected with the output end of the external control switch group, and the feeding barrel is driven to rotate by the rotating assembly.
Furthermore, the inside joint of the sprue that sets up on the connecting barrel up end has the sealing plug, be fixed with the handle on the up end of sealing plug, seal connecting the bucket through setting up the sealing plug.
Furthermore, a slag discharge port is formed in the front end of the circumferential surface of the filter barrel, a baffle is hinged inside the slag discharge port, a pull block is fixed on the front side face of the baffle, and residues after impurity removal are discharged through the slag discharge port.
Furthermore, a liquid outlet pipe is fixed inside a liquid outlet arranged at the lower end of the circumferential surface of the filter barrel, a cover cap is buckled at the front end of the liquid outlet pipe, and filtrate after impurity removal is discharged through the liquid outlet pipe.
Compared with the prior art, the beneficial effects of the utility model are that: this praseodymium neodymium oxide preparation is with edulcoration device has following benefit:
1. the adsorption impurity removal liquid can be stored in the feeding barrel in the using process by arranging the material scattering assembly, then the motor is started to enable the gear to rotate to drive the second gear ring to rotate, the feeding barrel is enabled to rotate in the rotating process of the second gear ring, the four discharging boxes are enabled to rotate in the rotating process of the feeding barrel, the four discharging boxes rotate to enable the four discharging pipes to move, at the moment, the four first gear rings also move along the inner gear ring to rotate, the four first gear rings rotate to drive the four discharging pipes to rotate, and under the condition, the adsorption impurity removal liquid can be uniformly scattered into the praseodymium oxide neodymium liquid through the material scattering opening, so that the two materials are mixed more conveniently;
2. the stirring component is arranged, so that the feeding barrel can drive the rotating shaft to rotate in the rotating process, and all the stirring frames are driven to rotate in the rotating process of the rotating shaft, so that the adsorption impurity-removing liquid uniformly scattered in the praseodymium neodymium oxide material liquid can be fully mixed with the praseodymium neodymium oxide material liquid, and the impurity in the praseodymium neodymium oxide material liquid can be thoroughly adsorbed by the adsorption impurity-removing liquid after mixing;
3. after the feed liquid and the adsorption impurity removing liquid are mixed, the electromagnetic valve can be opened, then the mixed liquid of the feed liquid and the adsorption impurity removing liquid downwards enters the interior of the filter barrel through the liquid discharge pipe, and at the moment, the impurities in the mixed liquid can be rapidly filtered by the filter screen in the filter barrel, so that the impurity removing can be completed under the condition, and the operation is very convenient;
4. make the in-process that carries out the edulcoration can be sealed with the sprue that sets up on the connecting barrel up end through setting up the sealing plug to avoid the waste gas that produces at the edulcoration in-process to discharge polluted environment everywhere.
Drawings
FIG. 1 is a schematic front side view of the present invention;
fig. 2 is a schematic structural view of the material spreading assembly of the present invention;
FIG. 3 is a schematic structural view of the separating assembly of the present invention;
fig. 4 is a schematic view of the structure of the rotating assembly of the present invention.
In the figure: 1 connecting barrel, 2 drain pipes, 3 electromagnetic valves, 4 material scattering assemblies, 41 feed barrels, 42 conical pipes, 43 material discharging boxes, 44 material discharging pipes, 45 material scattering openings, 46 first gear rings, 47 inner gear rings, 5 stirring assemblies, 51 rotating shafts, 52 stirring frames, 6 separating assemblies, 61 filter barrels, 62 filter screens, 7 rotating assemblies, 71 second gear rings, 72 motors, 73 gears, 8 sealing plugs, 9 handles, 10 baffles, 11 pull blocks, 12 liquid outlet pipes and 13 cover caps.
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. 1-4, the present embodiment provides a technical solution: an impurity removal device for preparing praseodymium neodymium oxide comprises a connecting barrel 1 and a material scattering assembly 4;
connecting the barrel 1: a liquid discharge pipe 2 is fixed inside a liquid discharge port arranged on the lower end face, an electromagnetic valve 3 is installed on the circumferential surface of the liquid discharge pipe 2, a separation component 6 is connected on the lower end face of the liquid discharge pipe 2, a rotating component 7 is installed on the upper end face of a connecting barrel 1, the separation component 6 comprises a filtering barrel 61 and a filtering net 62, the lower end of the liquid discharge pipe 2 is fixed inside a liquid inlet arranged on the upper end face of the filtering barrel 61, the filtering net 62 is fixed inside the filtering barrel 61, the rotating component 7 comprises a second gear ring 71, a motor 72 and a gear 73, the upper end of the circumferential surface of a feeding barrel 41 is fixed with the second gear ring 71, the motor 72 is installed on the upper end face of the connecting barrel 1, the gear 73 is fixed on an output shaft of the motor 72, the gear 73 is meshed with the second gear ring 71, the input end of the motor 72 is electrically connected with the output end of an external control switch group, the feeding barrel 41 is driven to rotate by the rotation component 7, and impurities are separated by the separation component 6;
spill material subassembly 4: the material scattering device comprises a feed barrel 41, a tapered pipe 42, a discharge box 43, a discharge pipe 44 and a material scattering opening 45, wherein a rotary hole is formed in the upper end face of a connecting barrel 1, the interior of the rotary hole is rotatably connected with the feed barrel 41, the tapered pipe 42 is fixed at the upper end inside the feed barrel 41, four corresponding fixed holes are formed in the circumferential face of the feed barrel 41, the discharge box 43 is fixed inside the fixed holes, a connecting hole is formed in the lower side face of the discharge box 43, the discharge pipe 44 is rotatably connected inside the connecting hole, the circumferential face of the discharge pipe 44 is provided with the material scattering openings 45 which are uniformly distributed, a stirring assembly 5 is installed on the lower end face of the feed barrel 41, the material scattering assembly 4 further comprises a first gear ring 46 and an inner gear ring 47, the first gear ring 46 is fixed at the upper end of the circumferential face of the discharge pipe 44, the inner gear ring 47 is fixed inside the connecting barrel 1, the inner gear ring 47 is meshed with the four first gear rings 46, the stirring assembly 5 comprises a rotary shaft 51 and a stirring frame 52, the lower end face of the feed barrel 41 is rotatably connected with a rotary shaft 51, the stirring frame 52 which is uniformly distributed, and the stirring assembly which is used for adsorbing impurity-removing liquid and adsorbing the material liquid uniformly;
wherein: the input end of the electromagnetic valve 3 is electrically connected with the output end of an external power supply.
Wherein: the inside joint of the sprue that sets up on connecting 1 up end of bucket has sealing plug 8, is fixed with handle 9 on the up end of sealing plug 8, seals connecting bucket 8 through setting up sealing plug 8.
Wherein: the front end of the circumferential surface of the filter barrel 61 is provided with a slag discharge port, the inner part of the slag discharge port is hinged with a baffle 10, the front side surface of the baffle 10 is fixed with a pulling block 11, and the residue after impurity removal is discharged through the slag discharge port.
Wherein: a liquid outlet pipe 12 is fixed in a liquid outlet arranged at the lower end of the circumferential surface of the filtering barrel 61, a cover cap 13 is buckled at the front end of the liquid outlet pipe 12, and filtrate after impurity removal is discharged through the liquid outlet pipe 12.
The utility model provides a pair of praseodymium neodymium oxide preparation is with edulcoration device's theory of operation as follows: firstly, inject into the inside of connecting bucket 1 with the neodymium oxide feed liquid, then will adsorb the inside that edulcoration liquid was stored into charging bucket 41, it makes gear 73 rotate and drive second gear 71 ring rotation to store finishing back starter motor 72, second gear 71 pivoted in-process will make charging bucket 41 rotate, charging bucket 41 pivoted in-process will make four ejection of compact case 43 rotate, four ejection of compact case 43 rotate and make four arrange material pipe 44 remove, thereby four first gear 46 will also remove along inner tooth ring 47 and appear rotating this moment, four first gear 46 rotate and drive four row material pipe 44 and rotate, can be with adsorbing the edulcoration liquid through scattering the inside that material mouth 45 was even scattered to neodymium oxide feed liquid under such circumstances, also will drive pivot 51 rotation at charging bucket 41 at the pivoted in-process simultaneously, will drive all stirring frame 52 rotations at pivot 51 pivoted in-process, can be with scattering the inside impurity removal liquid and adsorbing the abundant mixture of neodymium oxide feed liquid and adsorbing the neodymium oxide feed liquid through scattering the inside quick mixed liquid that adsorbs the neodymium oxide feed liquid, then can filter the inside quick impurity removal barrel that adsorbs the neodymium oxide feed liquid that can be very open this moment, then can be through the inside mixed liquid filter screen that filters the mixed liquid that can make things convenient for adsorbing neodymium oxide feed liquid.
It should be noted that the external control switch set disclosed in the above embodiments is provided with buttons corresponding to the solenoid valves 3 and the motors 72 one by one, the motors 72 can be 65KTYZ ac motors, and the solenoid valves 3 can be ZCA vacuum solenoid valves.
The above only is the embodiment of the present invention, not limiting the scope of the present invention, all the equivalent structures or equivalent processes of the present invention are used in the specification and the attached drawings, or directly or indirectly applied to other related technical fields, and the same principle is included in the protection scope of the present invention.
Claims (8)
1. The utility model provides a praseodymium neodymium oxide preparation is with edulcoration device which characterized in that: comprises a connecting barrel (1) and a material spreading component (4);
connecting barrel (1): a liquid discharge pipe (2) is fixed inside a liquid discharge port arranged on the lower end face, an electromagnetic valve (3) is installed on the circumferential surface of the liquid discharge pipe (2), a separation assembly (6) is connected onto the lower end face of the liquid discharge pipe (2), and a rotating assembly (7) is installed on the upper end face of the connecting barrel (1);
spill material subassembly (4): the material distribution device comprises a feeding barrel (41), a conical pipe (42), a discharging box (43), a discharging pipe (44) and a material scattering port (45), wherein a rotary hole is formed in the upper end face of a connecting barrel (1), the feeding barrel (41) is rotatably connected to the inside of the rotary hole, the conical pipe (42) is fixed to the upper end of the inside of the feeding barrel (41), four corresponding fixed holes are formed in the circumferential face of the feeding barrel (41), the discharging box (43) is fixed to the inside of each fixed hole, a connecting hole is formed in the lower side face of the discharging box (43), the discharging pipe (44) is rotatably connected to the inside of the connecting hole, the material scattering ports (45) which are uniformly distributed are formed in the circumferential face of the discharging pipe (44), and a stirring assembly (5) is installed on the lower end face of the feeding barrel (41);
wherein: the input end of the electromagnetic valve (3) is electrically connected with the output end of an external power supply.
2. The praseodymium neodymium oxide preparation impurity removing device according to claim 1, wherein: spill material subassembly (4) and still contain first ring gear (46) and interior ring gear (47), the upper end of arranging material pipe (44) periphery is fixed with first ring gear (46), the inside of connecting bucket (1) is fixed with interior ring gear (47), interior ring gear (47) and four first ring gear (46) mesh mutually.
3. The praseodymium neodymium oxide preparation impurity removing device according to claim 1, wherein: stirring subassembly (5) contain pivot (51) and stirring frame (52), it is connected with pivot (51) to rotate on the lower terminal surface of feed barrel (41), be fixed with evenly distributed's stirring frame (52) on the periphery of pivot (51).
4. The praseodymium neodymium oxide preparation impurity removing device according to claim 1, wherein: separation module (6) contain lauter tub (61) and filter screen (62), the inside of the inlet that sets up on lauter tub (61) up end is fixed to the lower extreme of fluid-discharge tube (2), the inside of lauter tub (61) is fixed with filter screen (62).
5. The praseodymium neodymium oxide preparation impurity removing device according to claim 1, wherein the praseodymium neodymium oxide preparation impurity removing device comprises: the rotating assembly (7) comprises a second gear ring (71), a motor (72) and a gear (73), the upper end of the circumferential surface of the feeding barrel (41) is fixed with the second gear ring (71), the upper end surface of the connecting barrel (1) is provided with the motor (72), the output shaft of the motor (72) is fixed with the gear (73), the gear (73) is meshed with the second gear ring (71), and the input end of the motor (72) is electrically connected with the output end of the external control switch group.
6. The praseodymium neodymium oxide preparation impurity removing device according to claim 1, wherein the praseodymium neodymium oxide preparation impurity removing device comprises: the inside joint of the sprue that sets up on connecting bucket (1) up end has sealing plug (8), be fixed with handle (9) on the up end of sealing plug (8).
7. The praseodymium neodymium oxide preparation impurity removing device according to claim 4, wherein the praseodymium neodymium oxide preparation impurity removing device comprises: the slag discharging port is formed in the front end of the circumferential surface of the filtering barrel (61), a baffle (10) is hinged to the inner portion of the slag discharging port, and a pulling block (11) is fixed on the front side face of the baffle (10).
8. The praseodymium neodymium oxide preparation impurity removing device according to claim 4, wherein: a liquid outlet pipe (12) is fixed in a liquid outlet arranged at the lower end of the circumferential surface of the filter barrel (61), and a cover cap (13) is buckled at the front end of the liquid outlet pipe (12).
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Cited By (1)
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CN117654108A (en) * | 2023-11-24 | 2024-03-08 | 南华大学 | Device and method for diverting leaching liquid in adsorption tower |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN117654108A (en) * | 2023-11-24 | 2024-03-08 | 南华大学 | Device and method for diverting leaching liquid in adsorption tower |
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