Special stirrer for xanthate kneading machine
Through the design of a special agitator for yellow medicine mixer, the problems of low stirring efficiency and poor drug purification effect are solved, efficient mixing of raw materials and temperature control are achieved, and production efficiency and automation are improved.
Patent Information
- Application Number
- CN202422513570.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-17
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-10-17
AI Technical Summary
During the existing yellow medicine extraction process, the stirring device has low agitation efficiency and poor drug purification effect.
The special stirrer for yellow medicine mixer is adopted, which includes the synergistic effect of the mixing drive machine, stirring gear set, stirring conductor shaft tube and S-type drainage shaft tube. Combined with the stirring ring block and the adjustment of the stirring rod, the temperature is adjusted through the cooler or electric heating pipe, and the adsorption electromagnet and drainage L-type metal rod are used to achieve flexible adjustment of the stirring rod, and the quantitative loading structure is used to achieve efficient mixing and uniform transportation of raw materials.
It realizes efficient mixing and uniform stirring of raw materials, improves production efficiency, reduces manual operation complexity and error rate, and meets the temperature control of different process requirements.
Smart Images

Figure CN223221438U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of xanthate mixers, in particular to a special agitator for xanthate mixers. Background Art
[0002] Xanthate extraction, as a process designed to fully utilize modern scientific and technological means, aims to maximize the extraction of active ingredients from xanthate, thereby significantly improving the intrinsic quality and clinical therapeutic effects of xanthate preparations and ensuring that the therapeutic effects of xanthate are fully demonstrated. This process requires not only precise and efficient technology, but also emphasizes the in-depth exploration and utilization of the deep-seated pharmacological components of xanthate.
[0003] Currently, in the actual operation of xanthate extraction, the stirring device is a key piece of equipment, and its performance directly affects the extraction efficiency and drug purification results. Unfortunately, many traditional stirring devices on the market often suffer from low stirring efficiency and poor drug purification results when used for xanthate extraction. In view of this, in-depth research on these issues has led to the present case. Utility Model Content
[0004] To achieve the above objectives, the present invention is implemented through the following technical solutions: a special agitator for a xanthate kneading machine, comprising: a xanthate kneading machine, a stirring structure and a quantitative feeding structure, wherein the stirring structure and the quantitative feeding structure are installed on the xanthate kneading machine;
[0005] The stirring structure includes: two pairs of stirring conduction shaft tubes, a pair of S-shaped drainage shaft tubes, a stirring gear set, a stirring drive motor, a temperature control box, a cooler, a radiator, an electric heating tube, a drainage pump, a pair of diverter pipes, two pairs of stirring circular blocks, a plurality of adjustable telescopic shafts, a plurality of adjustable set blocks, a plurality of adjustable stirring rods, a plurality of adsorption circular magnets, a plurality of adsorption circular metal blocks, two pairs of drainage L-shaped metal rods and two pairs of adsorption electromagnets;
[0006] Two pairs of the stirring conduction shaft tubes are respectively inserted into the inner side of the yellow medicine kneader, a pair of the S-shaped drainage shaft tubes are respectively connected to the two pairs of the stirring conduction shaft tubes, the stirring gear set is installed on a pair of the stirring conduction shaft tubes, the driving end of the stirring drive is connected to the stirring gear set, the temperature control box is installed on the outer side of the yellow medicine kneader, the cooler and the electric heating tube are installed on the inner side of the temperature control box, the radiator is installed on the outer side of the temperature control box, the drainage pump is installed on the temperature control box, a pair of the diverter pipes are respectively connected to the two pairs of the stirring conduction shaft tubes, and a pair of the diverter pipes are respectively connected to the drainage pump and the temperature control box, two pairs of the stirring circles The ring blocks are respectively installed on the two pairs of the stirring conduction shaft tubes, the two pairs of the stirring circular ring blocks are provided with a plurality of telescopic extrusion grooves, the plurality of adjustable telescopic shafts are respectively inserted into the inner sides of the plurality of telescopic extrusion grooves, the plurality of adjustable sleeve blocks are respectively sleeved on the plurality of adjustable telescopic shafts, the plurality of adjustable stirring rods are respectively inserted into the plurality of adjustable sleeve blocks, the plurality of adsorption circular ring magnets are respectively installed on the plurality of adjustable stirring rods, the plurality of adsorption circular ring metal blocks are respectively installed on the two pairs of the stirring circular ring blocks, the two pairs of the drainage L-shaped metal rods are respectively inserted into the xanthate kneader, and the two pairs of the adsorption electromagnets are respectively installed on the two pairs of the drainage L-shaped metal rods;
[0007] It should be noted that, in the above, the operation of the stirring driving machine drives the stirring gear set on the driving end of the stirring driving machine to operate, and the stirring gear set drives a pair of stirring conduction shaft tubes thereon to rotate, and the pair of stirring conduction shaft tubes respectively drive the S-shaped drainage shaft tubes thereon to rotate, and the operation is carried out by the cooler or electric heating tube, so as to cool or heat the liquid inside the temperature control box, and then the liquid inside the temperature control box is drained to the inside of the diversion tube through the drainage pump, and the low-temperature or high-temperature liquid is drained to the inside of the pair of S-shaped drainage shaft tubes through the diversion tube, and the raw materials inside the yellow medicine kneader are mixed and stirred by the rotation of the pair of S-shaped drainage shaft tubes, and at the same time, the two pairs of stirring conduction shaft tubes respectively drive the stirring ring blocks thereon to rotate stably vertically relative to each other, and the two pairs of stirring ring blocks respectively drive several adjustment telescopic shafts and several adjustment set blocks thereon, and the several adjustment set blocks respectively drive the adjustment The stirring rod is used to mix and stir the raw materials inside the yellow medicine kneader through several adjustable stirring rods. By energizing two pairs of adsorption electromagnets, magnetism is generated by the two pairs of adsorption electromagnets, and magnetic conduction is performed on the two pairs of drainage L-shaped metal rods. The two pairs of drainage L-shaped metal rods are rotated to contact several adsorption circular metal blocks, so that the drainage L-shaped metal rods conduct magnetic conduction to the adsorption circular metal blocks, and several adsorption circular metal blocks magnetically adsorb several adsorption circular magnets. The several adsorption circular magnets respectively drive the adjustment sets on them, so that the several adjustment sets are respectively extended and retracted along the inner sides of several adjustment telescopic shafts. The positions of the adjustment stirring rods on them are respectively driven by the adjustment sets, so that the positions of the several adjustment stirring rods are changed according to different needs, thereby achieving telescopic stirring, thereby mixing and stirring the inside of the yellow medicine kneader, and achieving multi-angle rotational kneading.
[0008] Preferably, the quantitative feeding structure comprises: a plurality of feeding raw material boxes, a plurality of feeding ring boxes, a plurality of feeding drive shafts, a plurality of feeding discs, a plurality of feeding shaft tubes, a plurality of feeding drive machines and a plurality of feeding valves;
[0009] Several feeding ring boxes are evenly installed on the xanthate kneading machine, several feeding valves are respectively connected to the upper and lower ends of several feeding raw material boxes, and several feeding valves are connected to several feeding raw material boxes and the xanthate kneading machine, several feeding drive shafts are respectively inserted into several feeding ring boxes, several feeding discs are respectively installed on several feeding drive shafts, several feeding shaft tubes are respectively and evenly inserted into several feeding discs in pairs, and several feeding drive motor drive ends are respectively connected to several feeding shafts;
[0010] It should be noted that, in the above, the raw materials on the inside of the feeding raw material box are drained to the inside of the feeding shaft tube on the inside of the feeding ring box through the feeding drive machine, and the feeding drive shaft on the driving end of the feeding drive machine is driven to rotate through the feeding drive shaft, and the pair of feeding discs on it are driven to rotate, and the pair of feeding discs respectively drive several feeding shaft tubes on it to rotate stably horizontally, and the falling raw materials are respectively rotated stably horizontally through several feeding shaft tubes, thereby draining the raw materials to the inside of the yellow medicine kneader.
[0011] Preferably, a stability sensor is provided on the inner side of the xanthate kneader.
[0012] Preferably, the xanthate kneader is provided with a magnetic knocking block.
[0013] Preferably, a cover plate is provided on each of the two pairs of stirring conduction shaft tubes.
[0014] Preferably, the xanthate kneading machine is provided with a discharging hydraulic plate. Beneficial effects
[0015] The utility model provides a special agitator for xanthate kneading machine. It has the following beneficial effects: the special agitator for xanthate kneading machine realizes efficient mixing and stirring of raw materials through the synergistic effect of the stirring drive motor, stirring gear set, stirring conduction shaft tube and S-shaped drainage shaft tube; the addition of stirring ring blocks and regulating stirring rods further enhances the stirring effect and ensures uniform mixing of raw materials; the use of coolers or electric heating tubes enables the system to accurately cool or heat the liquid inside the temperature control box, thereby meeting different process requirements; through the interaction of the adsorption electromagnet, the drainage L-shaped metal rod, the adsorption ring metal block and the adsorption ring magnet, it realizes Flexible adjustment of the stirring rod position; this design enables the stirring rod to be extended and retracted according to actual needs, thereby achieving the effect of multi-angle rotation and kneading; the feeding system realizes stable transportation of raw materials through the coordinated work of the feeding valve, feeding ring box, feeding drive machine, feeding drive shaft and feeding disc; the horizontal rotation of several feeding shaft tubes ensures that the raw materials can enter the yellow medicine kneader evenly and stably; the entire system is highly automated and integrated from raw material transportation, temperature control to mixing and stirring; this not only improves production efficiency, but also reduces the complexity and error rate of manual operation. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a schematic diagram of a main cross-section of a special agitator for a xanthate kneading machine according to the present invention.
[0017] Figure 2 This is a top-down cross-sectional schematic diagram of a special agitator for a xanthate kneading machine according to the present invention.
[0018] In the figure: 1. Xanthate kneader; 2. Stirring conduction shaft tube; 3. S-shaped drainage shaft tube; 4. Stirring gear set; 5. Stirring drive motor; 6. Temperature control box; 7. Cooler; 8. Radiator; 9. Electric heating tube; 10. Drainage pump; 11. Stirring ring block; 12. Adjustable telescopic shaft; 13. Adjustable set block; 14. Adjustable stirring rod; 15. Adsorption ring magnet; 16. Adsorption ring metal block; 17. Drainage L-shaped metal rod; 18. Adsorption electromagnet. DETAILED DESCRIPTION
[0019] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.
[0020] Through the use of wires by those skilled in the art, all electrical components in this case are connected to their corresponding power supplies, and appropriate controllers and encoders should be selected according to actual conditions to meet control requirements. The specific connection and control sequence should refer to the following working principle, in which the electrical components are electrically connected in sequence. The detailed connection means are well-known technologies in this field. The following mainly introduces the working principle and process, and no longer explains the electrical control. Example
[0021] The present invention will be described in detail below with reference to the accompanying drawings. Figure 1-2As shown, the stirring structure and the quantitative feeding structure are installed on the yellow medicine kneading machine 1; the stirring structure includes: two pairs of stirring conduction shaft tubes 2, a pair of S-shaped drainage shaft tubes 3, a stirring gear set 4, a stirring drive machine 5, a temperature control box 6, a cooler 7, a radiator 8, an electric heating tube 9, a drainage pump 10, a pair of diverter pipes, two pairs of stirring circular blocks 11, a plurality of adjustable telescopic shafts 12, a plurality of adjustable set blocks 13, a plurality of adjustable stirring rods 14, a plurality of adsorption circular magnets 15, a plurality of adsorption circular metal blocks 16, two pairs of drainage L-shaped metal rods 17 and two pairs of adsorption electromagnets 18; the two pairs of stirring conduction shaft tubes 2 are respectively inserted into the inner side of the yellow medicine kneading machine 1, a pair of S-shaped drainage shaft tubes are respectively connected to the two pairs of stirring conduction shaft tubes 2, the stirring gear set 4 is installed on a pair of stirring conduction shaft tubes 2, and the stirring drive machine 5 drives The moving end is connected to the stirring gear set 4, the temperature control box 6 is installed on the outside of the yellow medicine kneading machine 1, the cooler 7 and the electric heating tube 9 are installed on the inside of the temperature control box 6, the radiator 8 is installed on the outside of the temperature control box 6, the drainage pump 10 is installed on the temperature control box 6, a pair of the diverter pipes are respectively connected to the two pairs of the stirring conduction shaft tubes 2, and a pair of the diverter pipes are respectively connected to the drainage pump 10 and the temperature control box 6, two pairs of the stirring ring blocks 11 are respectively installed on the two pairs of the stirring conduction shaft tubes 2, and the two pairs of the stirring ring blocks 11 are provided with a plurality of telescopic extrusion grooves, and a plurality of the adjusting telescopic shafts 12 are respectively inserted into a plurality of the telescopic adjusting shafts 12. On the inner side of the extrusion groove, several of the adjustment sets 13 are respectively mounted on several of the adjustment telescopic shafts 12, several of the adjustment stirring rods 14 are respectively inserted on several of the adjustment sets 13, several of the adsorption ring magnets 15 are respectively installed on several of the adjustment stirring rods 14, several of the adsorption ring metal blocks 16 are respectively installed on two pairs of the stirring ring blocks 11, two pairs of the drainage L-shaped metal rods 17 are respectively inserted on the yellow medicine kneading machine 1, and two pairs of the adsorption electromagnets 18 are respectively installed on two pairs of the drainage L-shaped metal rods 17; the quantitative feeding structure includes: several feeding raw material boxes, several feeding ring boxes, several feeding drive shafts, several A feeding disc, several feeding shaft tubes, several feeding drive machines and several feeding valves; several of the feeding ring boxes are evenly installed on the yellow medicine kneading machine 1, several of the feeding valves are respectively connected to the upper and lower ends of several of the feeding raw material boxes, and several of the feeding valves are connected to several of the feeding raw material boxes and the yellow medicine kneading machine 1, several of the feeding drive shafts are respectively inserted into several of the feeding ring boxes, several of the feeding discs are respectively installed on several of the feeding drive shafts, several of the feeding shaft tubes are respectively evenly inserted into several of the feeding discs in pairs, and the driving ends of several of the feeding drive machines are respectively connected to several of the feeding shafts;The inside of the yellow medicine kneading machine 1 is provided with a stability sensor; the yellow medicine kneading machine 1 is provided with a magnetic knocking block; the two pairs of the stirring conduction shaft tubes 2 are respectively provided with a cover plate; the yellow medicine kneading machine 1 is provided with a discharge hydraulic plate.
[0022] According to the attached Figure 1-2 It is concluded that the stirring driving machine 5 is operated to drive the stirring gear set 4 on the driving end of the stirring driving machine 5 to operate, and the stirring gear set 4 drives the pair of stirring conduction shaft tubes 2 thereon to rotate, and the pair of stirring conduction shaft tubes 2 respectively drive the S-shaped drainage shaft tubes thereon to rotate, and the cooler 7 or the electric heating tube 9 is operated to cool or heat the liquid inside the temperature control box 6, and then the drainage pump 10 is used to drain the liquid inside the temperature control box 6 to the inside of the diversion tube, and the low-temperature or high-temperature liquid is drained to the inside of the pair of S-shaped drainage shaft tubes through the diversion tube. Through the rotation of the pair of S-shaped drainage shaft tubes, the liquid inside the yellow medicine kneader 1 is The raw materials on the side are mixed and stirred, and at the same time, the two pairs of stirring conduction shaft tubes 2 respectively drive the stirring ring blocks 11 thereon to perform stable vertical relative rotation, and the two pairs of stirring ring blocks 11 respectively drive the several adjustable telescopic shafts 12 and the several adjustable set blocks 13 thereon, and the several adjustable set blocks 13 respectively drive the adjustable stirring rods 14 thereon, and the raw materials inside the yellow medicine kneader 1 are mixed and stirred by the several adjustable stirring rods 14, and the two pairs of adsorption electromagnets 18 are energized, and the two pairs of adsorption electromagnets 18 generate magnetism, and the two pairs of drainage L-shaped metal rods 17 are magnetically conducted, and the two pairs of The rotation of the drainage L-shaped metal rod 17 contacts the plurality of adsorption ring metal blocks 16, thereby magnetically conducting the drainage L-shaped metal rod 17 to the adsorption ring metal block 16, and magnetically adsorbing the plurality of adsorption ring magnets 15 through the plurality of adsorption ring metal blocks 16. The plurality of adsorption ring magnets 15 respectively drive the adjustment set blocks 13 thereon, so that the plurality of adjustment set blocks 13 respectively extend and retract along the inner sides of the plurality of adjustment telescopic shafts 12, and the position of the adjustment stirring rods 14 thereon is respectively driven by the adjustment set blocks 13 to adjust, thereby changing the plurality of adjustment stirring rods 14 according to different needs. 4, thereby achieving telescopic stirring, thereby mixing and stirring the inside of the yellow medicine kneading machine 1, thereby achieving multi-angle rotation kneading; the raw materials inside the feeding raw material box are drained to the inside of the feeding shaft tube inside the feeding ring box through the feeding valve, and the feeding drive machine is operated to drive the feeding drive shaft on the driving end of the feeding drive machine to rotate, and the feeding drive shaft drives a pair of feeding discs thereon to rotate, and the pair of feeding discs respectively drive several feeding shaft tubes thereon to rotate stably horizontally, and the falling raw materials are respectively rotated stably horizontally by the several feeding shaft tubes, thereby draining the raw materials to the inside of the yellow medicine kneading machine 1.
[0023] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A special agitator for a xanthate kneading machine, comprising: A xanthate kneader, a stirring structure and a quantitative feeding structure, wherein the stirring structure and the quantitative feeding structure are installed on the xanthate kneader; The stirring structure includes: two pairs of stirring conduction shaft tubes, a pair of S-shaped drainage shaft tubes, a stirring gear set, a stirring drive motor, a temperature control box, a cooler, a radiator, an electric heating tube, a drainage pump, a pair of diverter pipes, two pairs of stirring circular blocks, a plurality of adjustable telescopic shafts, a plurality of adjustable set blocks, a plurality of adjustable stirring rods, a plurality of adsorption circular magnets, a plurality of adsorption circular metal blocks, two pairs of drainage L-shaped metal rods and two pairs of adsorption electromagnets; Two pairs of the stirring conduction shaft tubes are respectively inserted into the inner side of the yellow medicine kneader, a pair of the S-shaped drainage shaft tubes are respectively connected to the two pairs of the stirring conduction shaft tubes, the stirring gear set is installed on a pair of the stirring conduction shaft tubes, the driving end of the stirring drive is connected to the stirring gear set, the temperature control box is installed on the outer side of the yellow medicine kneader, the cooler and the electric heating tube are installed on the inner side of the temperature control box, the radiator is installed on the outer side of the temperature control box, the drainage pump is installed on the temperature control box, a pair of the diverter pipes are respectively connected to the two pairs of the stirring conduction shaft tubes, and a pair of the diverter pipes are respectively connected to the drainage pump and the temperature control box, two pairs of the stirring circles The ring blocks are respectively installed on the two pairs of the stirring conduction shaft tubes, and a number of telescopic extrusion grooves are provided on the two pairs of the stirring circular ring blocks. A number of the adjusting telescopic shafts are respectively inserted into the inner sides of the telescopic extrusion grooves, and a number of the adjusting sleeve blocks are respectively sleeved on the adjusting telescopic shafts. A number of the adjusting stirring rods are respectively inserted into the adjusting sleeve blocks. A number of the adsorption circular ring magnets are respectively installed on the adjusting stirring rods. A number of the adsorption circular ring metal blocks are respectively installed on the two pairs of the stirring circular ring blocks. Two pairs of the drainage L-shaped metal rods are respectively inserted into the xanthate kneader, and two pairs of the adsorption electromagnets are respectively installed on the two pairs of the drainage L-shaped metal rods.
2. A special agitator for a xanthate kneading machine according to claim 1, characterized in that: The quantitative feeding structure includes: a plurality of feeding raw material boxes, a plurality of feeding ring boxes, a plurality of feeding drive shafts, a plurality of feeding discs, a plurality of feeding shaft tubes, a plurality of feeding drive machines and a plurality of feeding valves; Several of the feeding ring boxes are evenly installed on the yellow medicine kneading machine, several of the feeding valves are respectively connected to the upper and lower ends of several of the feeding raw material boxes, and several of the feeding valves are connected to several of the feeding raw material boxes and the yellow medicine kneading machine, several of the feeding drive shafts are respectively inserted on several of the feeding ring boxes, several of the feeding discs are respectively installed on several of the feeding drive shafts, several of the feeding shaft tubes are respectively evenly inserted on several of the feeding discs in pairs, and several of the feeding drive machine driving ends are respectively connected to several of the feeding shafts.
3. A special agitator for a xanthate kneading machine according to claim 2, characterized in that: A stability sensor is provided on the inner side of the xanthate kneading machine.
4. A special agitator for a xanthate kneading machine according to claim 3, characterized in that: The xanthate kneading machine is provided with a magnetic knocking block.
5. A special agitator for a xanthate kneading machine according to claim 4, characterized in that: The two pairs of stirring conduction shaft tubes are respectively provided with cover plates.
6. A special agitator for a xanthate kneading machine according to claim 5, characterized in that: The xanthate kneading machine is provided with a discharging hydraulic plate.