Active polysaccharide precipitation separation equipment
Technical Field
The utility model relates to the technical field of separation equipment, in particular to active polysaccharide precipitation separation equipment.
Background
It is considered that the saccharide has its function in living body mainly as energy source or as structural material, but it is proved by experiments that the polysaccharide and its conjugate have close relation with the regulation of various life phenomena of cell, and the active polysaccharide obtained from different living bodies of plant, animal and microbe has various different medicinal biological activities, and the active polysaccharide can raise human immunity and treat various diseases.
However, when the existing active polysaccharide precipitation separation works, active polysaccharide to be separated is poured into the device, and shaking is carried out after entering the internal precipitation to separate the active polysaccharide, due to the fact that the mutual viscosity of the polysaccharides causes agglomeration, the active polysaccharide precipitation separation device is not thorough enough in separation, and then when single separation filtration work is adopted in separation, the efficiency is low, and the phenomenon of uneven separation of the active polysaccharide exists.
Disclosure of Invention
The utility model aims to provide an active polysaccharide precipitation separation device, which aims to solve the problems that in the prior art, active polysaccharide precipitation separation is proposed, when the active polysaccharide precipitation separation is carried out, active polysaccharide to be separated is poured into the device, the active polysaccharide precipitation separation is not thorough when the active polysaccharide precipitation separation is carried out due to agglomeration caused by mutual viscosity of the active polysaccharide, and then the active polysaccharide precipitation separation is not uniform when the active polysaccharide precipitation separation is carried out by adopting single separation filtration work, so that the efficiency is low.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an active polysaccharide deposits splitter, includes installing support and connecting rod, the upper end fixedly connected with supporting seat of installing support, the inside rotation of supporting seat is connected with the connecting axle, the connecting rod is located the front end of connecting axle, the end-to-end rotation of connecting rod is connected with first pivot, the inside rotation of first pivot is connected with the transfer line, the end-to-end rotation of transfer line is connected with the second pivot, the inside rotation of second pivot is connected with the guide bar, the end fixedly connected with connecting block of guide bar, the left end face block of connecting block is connected with the linking bridge, the inside rotation of linking bridge is connected with the threaded bolt, the first separating funnel of inner wall fixedly connected with of linking bridge, the below of first separating funnel is located the inner wall of linking bridge and installs the second separating funnel, the inside sliding connection of second separating funnel has the slide bar, the up end fixedly connected with rose box of installing support, the upper end fixedly connected with feed chamber of rose, the inside rotation of feed chamber is connected with first gear, the lower extreme of first gear is connected with the second gear, the second gear is connected with the outer surface fixedly connected with the second gear of second connecting rod.
Preferably, the connecting rod and the supporting seat form a rotating structure through the connecting shaft, and the transmission rod and the connecting rod form the rotating structure through the first rotating shaft.
Preferably, the guide rod and the separation box form a sliding structure through the transmission rod and the second rotating shaft.
Preferably, the first separating funnel forms a clamping structure with the guide rod through a connecting bracket and a connecting block, and the connecting bracket forms a detachable structure with the connecting block through a threaded bolt.
Preferably, the first separating funnel and the second separating funnel form a sliding structure with the separating box through a sliding rod, and the first separating funnel is in a net structure.
Preferably, the stirring rod and the first gear form a rotating structure through the mounting rod and the second gear, and the tail end of the stirring rod is provided with a convex plate.
Compared with the prior art, the utility model has the beneficial effects that;
1. the utility model discloses a setting up the guide bar, first separating funnel and the second separating funnel of installation carry out certain fixedly through linking bridge and connecting block and guide bar under the effect of screw bolt, realize carrying out certain work of rocking on first separating funnel and the second separating funnel, carry out certain work of separating with the inside active polysaccharide of rocking of first separating funnel and second separating funnel, improve efficiency when carrying out the separation, then first separating funnel and second separating funnel are network structure, and the network diameter of first separating funnel is greater than second separating funnel, realize carrying out multistage separation work to active polysaccharide, improve the work efficiency of equipment;
2. the utility model discloses a set up the puddler, when will need separate the active polysaccharide that deposits and carry out work, the puddler of installation can rotate work through installation pole and second gear and first gear under the effect of motor, realizes carrying out certain stirring work to the active polysaccharide that needs to deposit, is convenient for to the mutual separation between the material, improves the efficiency at separating;
drawings
FIG. 1 is a schematic diagram of a front cross-sectional structure of the present utility model;
FIG. 2 is a schematic view of a first separating funnel driving structure according to the present utility model;
FIG. 3 is a schematic view of the internal structure of the feeding chamber of the present utility model.
In the figure: 1. a mounting bracket; 2. a support base; 3. a connecting shaft; 4. a connecting rod; 5. a first rotating shaft; 6. a transmission rod; 7. a second rotating shaft; 8. a guide rod; 9. a connecting block; 10. a connecting bracket; 11. a threaded bolt; 12. a first separation funnel; 13. a second separation funnel; 14. a slide bar; 15. a separation box; 16. a feed chamber; 17. a first gear; 18. a second gear; 19. a mounting rod; 20. stirring rod.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1-3, the present utility model provides a technical solution: the utility model provides an active polysaccharide deposits splitter, including installing support 1 and connecting rod 4, the upper end fixedly connected with supporting seat 2 of installing support 1, the inside rotation of supporting seat 2 is connected with connecting axle 3, connecting rod 4 is located the front end of connecting axle 3, the end rotation of connecting rod 4 is connected with first pivot 5, the inside rotation of first pivot 5 is connected with transfer line 6, the end rotation of transfer line 6 is connected with second pivot 7, the inside rotation of second pivot 7 is connected with guide bar 8, the end fixedly connected with connecting block 9 of guide bar 8, the left end face block of connecting block 9 is connected with linking bridge 10, the inside rotation of linking bridge 10 is connected with threaded bolt 11, the inner wall fixedly connected with first separating funnel 12 of linking bridge 10, the lower part of first separating funnel 12 is located the inner wall of linking bridge 10 and is installed second separating funnel 13, the inside sliding connection of second separating funnel 13 has slide bar 14, the up end fixedly connected with separator 15 of installing support 1, the upper end fixedly connected with feed chamber 16 of separator 15, the inside rotation of feed chamber 16 is connected with first gear 17, the lower extreme of first gear 17 is connected with second gear 18, the outer surface of second gear 19 is installed to the second gear 19 fixedly connected with outer surface of second gear 19.
Further, the connecting rod 4 forms a rotating structure with the supporting seat 2 through the connecting shaft 3, the transmission rod 6 forms a rotating structure with the connecting rod 4 through the first rotating shaft 5, the installed connecting rod 4 realizes rotating operation on the connecting shaft 3 through the rocker, and then the installed transmission rod 6 can perform certain rotating adjustment function between the first rotating shaft 5 and the connecting rod 4.
Further, the guide rod 8 forms a sliding structure with the separation box 15 through the transmission rod 6 and the second rotating shaft 7, when the transmission rod 6 is installed to perform circular motion, the guide rod 8 can perform certain sliding operation between the transmission rod 6 and the second rotating shaft 7 and the separation box 15, so that the guide rod 8 can perform certain reciprocating motion in the separation box 15, and the active polysaccharide in the separation box can perform certain shaking to perform certain separation operation.
Further, the first separating funnel 12 forms a clamping structure with the guide rod 8 through the connecting bracket 10 and the connecting block 9, the connecting bracket 10 forms a detachable structure with the connecting block 9 through the threaded bolt 11, the first separating funnel 12 and the second separating funnel 13 which are installed are fixed with the connecting block 9 and the guide rod 8 to a certain extent under the action of the threaded bolt 11 through the connecting bracket 10, certain shaking work is carried out on the first separating funnel 12 and the second separating funnel 13, and active polysaccharide in the first separating funnel 12 and the second separating funnel 13 is subjected to certain shaking to carry out certain separating work.
Further, the first separating funnel 12 and the second separating funnel 13 form a sliding structure through the sliding rod 14 and the separating box 15, the first separating funnel 12 is of a net structure, the first separating funnel 12 and the second separating funnel 13 which are installed slide through the sliding rod 14 and the separating box 15 when in reciprocating motion, stability of equipment in operation is improved, then the first separating funnel 12 and the second separating funnel 13 are of a net structure, net diameter of the first separating funnel 12 is larger than that of the second separating funnel 13, multistage separation of active polysaccharide is achieved, and working efficiency of the equipment is improved.
Further, the stirring rod 20 forms a rotating structure with the first gear 17 through the mounting rod 19 and the second gear 18, a convex plate is arranged at the tail end of the stirring rod 20, when active polysaccharide which needs to be separated and precipitated is operated, the mounted stirring rod 20 can rotate under the action of a motor through the mounting rod 19, the second gear 18 and the first gear 17, the active polysaccharide which needs to be precipitated is subjected to certain stirring operation, mutual separation between materials is facilitated, separation efficiency is improved, and residual materials on the inner wall of the feeding chamber 16 are cleaned through the convex plate.
Working principle: the connecting rod 4 of installation is realized rotating the work through the rocker to connecting axle 3 at first, then the transfer line 6 of installation can carry out certain rotation regulation effect between first pivot 5 and the connecting rod 4, then the transfer line 6 of installation can carry out certain slip work through between transfer line 6 and second pivot 7 and the separator tank 15 when carrying out circular motion, realize carrying out certain reciprocating motion to the guide line 8 of installation can be in the inside of separator tank 15, and the first separator funnel 12 of installation and second separator funnel 13 carry out certain fixed with connecting block 9 and guide bar 8 through linking bridge 10 under the effect of threaded bolt 11, realize carrying out certain rocking work on first separator funnel 12 and second separator funnel 13, carry out certain rocking work with the inside active polysaccharide of first separator funnel 12 and second separator funnel 13, finally the puddler 20 of installation can carry out rotation work under the effect of motor through installation pole 19 and second gear 18 and first gear 17 before carrying out the separation, realize carrying out certain stirring work to the active polysaccharide that needs to precipitate, be convenient for carry out certain stirring work to the mutual separation efficiency between the material, realize the material clearance room 16 through the realization of separating between the separation funnel.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.