CN220736306U - Extraction machine for biochemical engineering - Google Patents

Extraction machine for biochemical engineering Download PDF

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Publication number
CN220736306U
CN220736306U CN202322348418.9U CN202322348418U CN220736306U CN 220736306 U CN220736306 U CN 220736306U CN 202322348418 U CN202322348418 U CN 202322348418U CN 220736306 U CN220736306 U CN 220736306U
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China
Prior art keywords
extraction
fixed
movable rod
barrel
auxiliary
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CN202322348418.9U
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Chinese (zh)
Inventor
王斌
张世阳
沈宏
郭凤玲
贾秀秀
杨敏祺
王皓晴
马喆
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Shanghai Xianlian Biotechnology Co ltd
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Shanghai Xianlian Biotechnology Co ltd
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Abstract

The utility model discloses an extraction machine for biochemical engineering, which comprises a base, a supporting plate and an extraction barrel, wherein the supporting plate is fixed above the base, the extraction barrel is arranged above the base, an adding port is arranged above the extraction barrel and is used for adding materials into the extraction barrel, a mounting shaft is fixed on the left side of the extraction barrel, an auxiliary shaft is fixed on the right side of the extraction barrel, the horizontal central lines of the auxiliary shaft and the mounting shaft are mutually overlapped, the auxiliary shaft and the mounting shaft are respectively arranged on the supporting plate and between the supporting plate to form rotary connection, the support is provided for the extraction barrel, and a fixed gear is fixed at the left end of the mounting shaft. This extraction machine for biochemical engineering is through the rotatory swing of extraction bucket self realization to its inside liquid, and liquid can produce when the swing and vibrate, and the mixed effect is better, has avoided the existence of puddler to disturb the solution of layering when discharging liquid subsequently, conveniently better collects liquid.

Description

Extraction machine for biochemical engineering
Technical Field
The utility model relates to the technical field of biochemical extraction, in particular to an extractor for biochemical engineering.
Background
In biochemical engineering research, extraction is a common extraction and separation means, during extraction operation, an extracting agent and a substance to be extracted can be mixed through an extracting machine, for example, the extracting machine for biochemical engineering disclosed in application number CN202122974122.9, 222 year 4 and 29, and an extracting agent and an extracting mixture can be respectively and quantitatively added through a feeding box, a feeding pipe and an electromagnetic valve, so that independent feeding is realized, convenience and rapidness are realized, quantitative and repeated addition are facilitated, and the extracting agent and the extracting mixture are conveniently mixed to enable the extracting agent and the extracting mixture to fully react;
above-mentioned extraction machine and current extraction machine are generally through the mode of stirring with the extract, adopt its puddler of this mode to be located inside the solution all the time, when the solution is drawed to the follow-up solution layering, the liquid level change of solution and puddler appear relative movement, make the puddler form the stirring effect to the solution, it is undulant again to lead to the solution of follow-up layering, influence follow-up to the collection quality of liquid, and the puddler is located the solution, follow-up puddler surface adhesion's liquid also takes place to mix along with the removal of liquid level easily, influence holistic extraction effect.
Disclosure of Invention
The utility model aims to provide an extraction machine for biochemical engineering, which aims to solve the problems that the existing extraction machine provided by the background technology generally mixes extraction liquid in a stirring mode, a stirring rod is always positioned in a solution, when the solution is extracted in a subsequent solution layering mode, the liquid level of the solution changes and the stirring rod moves relatively, so that the stirring rod forms a stirring effect on the solution, the subsequent layered solution is fluctuated again, and the subsequent collection quality of the liquid is affected.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides an extraction machine for biochemical engineering, includes base, backup pad and extraction bucket, the top of base is fixed with the backup pad, and the top of base is provided with the extraction bucket to the top of extraction bucket is provided with the interpolation mouth, is used for carrying out the interpolation of material in the extraction bucket, the left side of extraction bucket is fixed with the installation axle, and the right side of extraction bucket is fixed with the auxiliary shaft, and the horizontal central line of auxiliary shaft and installation axle overlap each other and set up, the auxiliary shaft and installation axle are installed respectively and are constituted the rotation connection between backup pad and the backup pad, provide the support for the extraction bucket, the left end of installation axle is fixed with fixed gear, the rotation of control installation axle, and fixed gear's rear side meshing has the fly leaf to constitute sliding structure from top to bottom between fly leaf and the backup pad, the outside of fly leaf is provided with reciprocating drive mechanism, controls the fly leaf and carries out reciprocating motion of upper and lower direction, thereby control installation axle carries out reciprocating rotation, the right side of auxiliary shaft is fixed with the limiting disc, and limiting disc's right side is provided with stop mechanism, carries out the spacing of vertical direction with the extraction bucket.
Further optimizing the technical scheme, the reciprocating driving mechanism comprises a reset spring, a squeezing wheel, a transmission shaft and a motor;
the reset spring is arranged above the movable plate and provides a pushing reset force for the movable plate;
the extrusion wheel is arranged below the movable plate and is adhered to the lower surface of the movable plate;
the transmission shaft is fixed at the left side of the extrusion wheel and used for controlling the rotation of the extrusion wheel, and the horizontal center line of the transmission shaft and the horizontal center line of the extrusion wheel are staggered;
and the motor is fixed on the surface of the supporting plate and connected with the transmission shaft to control the rotation of the transmission shaft, and the transmission shaft drives the extrusion wheel to make eccentric motion so as to drive the movable plate to move.
Further optimizing the technical scheme, the limiting mechanism comprises a limiting groove and a connecting rod;
the limiting groove is arranged below the limiting disc;
the connecting rod is arranged in the limiting groove and is connected with the limiting groove in a clamping mode, the right end of the connecting rod penetrates through the right side surface of the supporting plate and is connected with the supporting plate in a threaded mode, and the connecting rod can be controlled to be connected with the limiting groove through the rotating connecting rod.
Further optimize this technical scheme, the inside of extraction bucket is provided with supplementary rabbling mechanism, stirs the liquid in the extraction bucket when the extraction bucket rocks.
Further optimizing the technical scheme, the auxiliary stirring mechanism comprises a movable rod, a connector, an auxiliary rod and a positioning mechanism;
the movable rod is arranged in the extraction barrel, and the upper end of the movable rod penetrates through the upper surface of the extraction barrel and forms an up-down sliding structure with the extraction barrel;
the connector is fixed above the movable rod and used for controlling the movement of the movable rod;
the auxiliary rod is fixed at the lower end of the movable rod and used for stirring the liquid in the extraction barrel;
the positioning mechanism is arranged on the movable rod to position the movable rod in the extraction barrel.
Further optimizing the technical scheme, the positioning mechanism comprises a magnetic block and an adsorption magnet;
the magnetic block is fixed in the movable rod;
and the adsorption magnet is fixed above the extraction barrel, and the magnetic block moves to the adsorption magnet to attract the magnetic block, so that the movable rod is positioned.
Compared with the prior art, the utility model has the beneficial effects that:
this extraction machine for biochemical engineering is through the rotatory swing of extraction bucket self realization to its inside liquid, and liquid can produce the vibration when the swing, and mixing effect is better, and follow-up when discharging the liquid has avoided the existence of puddler to the solution of layering to disturb, convenient better collects the liquid, and is provided with the movable rod that can reciprocate in the extraction bucket, can insert the auxiliary rod of movable rod lower extreme in the liquid when vibrating and assist the stirring to the liquid, can pull out the auxiliary rod from the liquid when standing the liquid, avoid the layering collection of follow-up influence to the liquid;
this extraction machine for biochemical engineering can carry out spacingly to the rotation of auxiliary shaft through the connection of connecting rod and spacing groove, makes the extraction bucket can keep vertical steady state after carrying out intensive mixing to the liquid, and the solution of conveniently standing makes its layering, also makes things convenient for follow-up solution to carry out the layering to the extraction in the bucket and discharges and collect.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic view of the main sectional structure of the mounting shaft of the present utility model;
FIG. 3 is a schematic side view of the movable plate of the present utility model;
FIG. 4 is a schematic view of the main section of the auxiliary shaft of the present utility model;
FIG. 5 is a schematic diagram of the internal structure of the extraction tank according to the present utility model.
In the figure: 1. a base; 2. a support plate; 3. an extraction barrel; 4. a mounting shaft; 401. an auxiliary shaft; 5. an addition port; 6. a fixed gear; 7. a movable plate; 8. a return spring; 9. a pressing wheel; 10. a transmission shaft; 11. a motor; 12. a limiting disc; 13. a limit groove; 14. a connecting rod; 15. a movable rod; 16. a connector; 17. an auxiliary lever; 18. a magnetic block; 19. and (5) adsorbing the magnet.
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. 1-5, the present utility model provides a technical solution: an extraction machine for biochemical engineering comprises a base 1, a support plate 2 and an extraction barrel 3, wherein the support plate 2 is fixed above the base 1, the extraction barrel 3 is arranged above the base 1, an adding port 5 is arranged above the extraction barrel 3 and used for adding materials into the extraction barrel 3, a mounting shaft 4 is fixed on the left side of the extraction barrel 3, an auxiliary shaft 401 is fixed on the right side of the extraction barrel 3, the horizontal central lines of the auxiliary shaft 401 and the mounting shaft 4 are mutually overlapped, the auxiliary shaft 401 and the mounting shaft 4 are respectively arranged on the support plate 2 and form rotary connection between the support plate 2 to provide support for the extraction barrel 3, a fixed gear 6 is fixed at the left end of the mounting shaft 4 to control the rotation of the mounting shaft 4, a movable plate 7 is meshed at the rear side of the fixed gear 6, an up-down sliding structure is formed between the movable plate 7 and the support plate 2, a reciprocating driving mechanism is arranged on the outer side of the movable plate 7, the movable plate 7 is controlled to reciprocate in the up-down direction, thereby controlling the mounting shaft 4 to reciprocate, the right side of the auxiliary shaft 401 is fixed with a limiting disc 12, the right side of the limiting disc 12 is provided with a limiting mechanism for limiting the extraction barrel 3 in the vertical direction, the reciprocating driving mechanism comprises a return spring 8, a squeezing wheel 9, a transmission shaft 10 and a motor 11, the return spring 8 is arranged above the movable plate 7 to provide a pushing return force for the movable plate 7, the squeezing wheel 9 is arranged below the movable plate 7 and is attached to the lower surface of the movable plate 7, the transmission shaft 10 is fixed on the left side of the squeezing wheel 9 to control the rotation of the squeezing wheel 9, the horizontal center line of the transmission shaft 10 and the horizontal center line of the squeezing wheel 9 are staggered, the motor 11 is fixed on the surface of the support plate 2 and is connected with the transmission shaft 10 to control the rotation of the transmission shaft 10, the transmission shaft 10 drives the extrusion wheel 9 to make eccentric motion and can drive the movable plate 7 to move;
during use, the extraction liquid and the liquid to be treated can be added into the extraction barrel 3 through the addition port 5 for extraction reaction, the motor 11 can be started in the extraction process, the extrusion wheel 9 is driven by the transmission shaft 10 to eccentrically rotate, the distance between the extrusion wheel 9 and the movable plate 7 is changed, the movable plate 7 is driven by the cooperation of the reset spring 8 to reciprocate in the vertical direction, the installation shaft 4 is driven to rotate through the meshing between the movable plate 7 and the fixed gear 6 in the moving process of the movable plate 7, the installation shaft 4 drives the extraction barrel 3 to rotate, the extraction barrel 3 can reciprocate in the front-back direction, and the extraction liquid can be conveniently and fully mixed.
The limiting mechanism comprises a limiting groove 13 and a connecting rod 14, the limiting groove 13 is formed below the limiting disc 12, the connecting rod 14 is arranged in the limiting groove 13 and between the limiting groove 13 to form a clamping connection, the right end of the connecting rod 14 penetrates through the right side surface of the supporting plate 2 to form threaded connection with the supporting plate 2, the connection between the connecting rod 14 and the limiting groove 13 can be controlled through the rotating connecting rod 14, an auxiliary stirring mechanism is arranged in the extraction barrel 3, liquid in the extraction barrel 3 is stirred when the extraction barrel 3 shakes, the auxiliary stirring mechanism comprises a movable rod 15, a connector 16, an auxiliary rod 17 and a positioning mechanism, the movable rod 15 is arranged in the extraction barrel 3, the movable rod 15, the connector 16 is arranged in the extraction barrel 3, the upper end of the movable rod 15 penetrates through the upper surface of the extraction barrel 3 to form an up-down sliding structure, the connector 16 is fixed above the movable rod 15 to control the movement of the movable rod 15, the auxiliary rod 17 is fixed at the lower end of the movable rod 15 to stir the liquid in the extraction barrel 3, the positioning mechanism is arranged on the movable rod 15 to position the movable rod 15 in the extraction barrel 3, the positioning mechanism comprises a magnetic block 18 and an adsorption magnet 19, the magnetic block 19 is fixed in the magnetic block 19, and a magnetic magnet 19 is fixed in the magnetic block 19, and the magnetic block 19 is fixed in the magnetic block 19 to the magnetic block 19 and the magnetic magnet 19 is attracted to the magnetic magnet 19;
the movable rod 15 and the auxiliary rod 17 can play a role in auxiliary stirring in the extraction barrel 3 during mixing, when the extraction barrel 3 needs to be stood after mixing is completed, the connector 16 can be pulled upwards, the auxiliary rod 17 is pulled out of liquid, the magnetic block 18 is moved to the adsorption magnet 19, the adsorption magnet 19 attracts the magnetic block 18, the movable rod 15 is positioned, the influence of the movable rod 15 on the discharge of subsequent liquid is avoided, then the extraction barrel 3 can be rotated to a vertical state, the connecting rod 14 is rotated, the connecting rod 14 moves in the support plate 2 through threaded connection with the support plate 2, the connecting rod 14 is inserted into the limit groove 13 to limit the limit disc 12, so that the rotation of the extraction barrel 3 is prevented, the stability can be kept, and the solution layering and subsequent extraction operation are facilitated.
What is not described in detail in this specification is prior art known to those skilled in the art.
Although the present utility model has been described with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments described, or equivalents may be substituted for elements thereof, and any modifications, equivalents, improvements and changes may be made without departing from the spirit and principles of the present utility model.

Claims (6)

1. The utility model provides an extraction machine for biochemical engineering, includes base (1), backup pad (2) and extraction bucket (3), the top of base (1) is fixed with backup pad (2), and the top of base (1) is provided with extraction bucket (3) to the top of extraction bucket (3) is provided with interpolation mouth (5) for carry out the interpolation of material in to extraction bucket (3);
the method is characterized in that: the left side of extraction bucket (3) is fixed with installation axle (4), and the right side of extraction bucket (3) is fixed with auxiliary shaft (401) to auxiliary shaft (401) and the horizontal central line of installation axle (4) coincide each other and set up, auxiliary shaft (401) and installation axle (4) are installed respectively and constitute and rotate between backup pad (2) on backup pad (2) and are connected, provide support for extraction bucket (3), the left end of installation axle (4) is fixed with fixed gear (6), the rotation of control installation axle (4), and the rear side meshing of fixed gear (6) has fly leaf (7) to constitute sliding construction from top to bottom between fly leaf (7) and backup pad (2), the outside of fly leaf (7) is provided with reciprocating drive mechanism, controls fly leaf (7) and reciprocates, thereby control installation axle (4) are reciprocated, the right side of auxiliary shaft (401) is fixed with spacing dish (12), and the right side of spacing dish (12) is provided with stop gear, carries out the spacing of vertical direction with extraction bucket (3).
2. The extractor for biochemical engineering according to claim 1, wherein: the reciprocating driving mechanism comprises a reset spring (8), an extrusion wheel (9), a transmission shaft (10) and a motor (11);
a return spring (8) arranged above the movable plate (7) for providing a pushing-down return force for the movable plate (7);
the extrusion wheel (9) is arranged below the movable plate (7) and is attached to the lower surface of the movable plate (7);
the transmission shaft (10) is fixed at the left side of the extrusion wheel (9) to control the rotation of the extrusion wheel (9), and the horizontal center line of the transmission shaft (10) and the horizontal center line of the extrusion wheel (9) are staggered;
and a motor (11) fixed on the surface of the supporting plate (2) and connected with the transmission shaft (10) to control the rotation of the transmission shaft (10).
3. The extractor for biochemical engineering according to claim 1, wherein: the limiting mechanism comprises a limiting groove (13) and a connecting rod (14);
the limiting groove (13) is formed below the limiting disc (12);
the connecting rod (14) is arranged in the limiting groove (13) and is connected with the limiting groove (13) in a clamping mode, and the right end of the connecting rod (14) penetrates through the right side surface of the supporting plate (2) and is connected with the supporting plate (2) in a threaded mode.
4. The extractor for biochemical engineering according to claim 1, wherein: the inside of extraction bucket (3) is provided with supplementary rabbling mechanism, stirs the liquid in extraction bucket (3) when extraction bucket (3) rocks.
5. The extractor for biochemical engineering according to claim 4, wherein: the auxiliary stirring mechanism comprises a movable rod (15), a connector (16), an auxiliary rod (17) and a positioning mechanism;
the movable rod (15) is arranged in the extraction barrel (3), and the upper end of the movable rod (15) penetrates through the upper surface of the extraction barrel (3) and forms an up-down sliding structure between the extraction barrel (3);
a connector (16) fixed above the movable rod (15) for controlling the movement of the movable rod (15);
an auxiliary rod (17) fixed at the lower end of the movable rod (15) for stirring the liquid in the extraction barrel (3);
the positioning mechanism is arranged on the movable rod (15) to position the movable rod (15) in the extraction barrel (3).
6. The extractor for biochemical engineering according to claim 5, wherein: the positioning mechanism comprises a magnetic block (18) and an adsorption magnet (19);
a magnetic block (18) fixed inside the movable rod (15);
the adsorption magnet (19) is fixed above the extraction barrel (3), and the magnetic block (18) moves to the adsorption magnet (19) to attract the magnetic block (18) by the adsorption magnet (19) so as to position the movable rod (15).
CN202322348418.9U 2023-08-31 2023-08-31 Extraction machine for biochemical engineering Active CN220736306U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322348418.9U CN220736306U (en) 2023-08-31 2023-08-31 Extraction machine for biochemical engineering

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322348418.9U CN220736306U (en) 2023-08-31 2023-08-31 Extraction machine for biochemical engineering

Publications (1)

Publication Number Publication Date
CN220736306U true CN220736306U (en) 2024-04-09

Family

ID=90558597

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322348418.9U Active CN220736306U (en) 2023-08-31 2023-08-31 Extraction machine for biochemical engineering

Country Status (1)

Country Link
CN (1) CN220736306U (en)

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