CN112716801A - Decocting pot with hydraulic driving single-chamber structure - Google Patents

Decocting pot with hydraulic driving single-chamber structure Download PDF

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Publication number
CN112716801A
CN112716801A CN202011591024.0A CN202011591024A CN112716801A CN 112716801 A CN112716801 A CN 112716801A CN 202011591024 A CN202011591024 A CN 202011591024A CN 112716801 A CN112716801 A CN 112716801A
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China
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rod
vertical
outside
stirring shaft
driving
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CN202011591024.0A
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Chinese (zh)
Inventor
蔡永潮
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Hangzhou Yiyin Health Technology Co Ltd
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Hangzhou Yiyin Health Technology Co Ltd
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Priority to CN202011591024.0A priority Critical patent/CN112716801A/en
Publication of CN112716801A publication Critical patent/CN112716801A/en
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J3/00Devices or methods specially adapted for bringing pharmaceutical products into particular physical or administering forms
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J2200/00General characteristics or adaptations
    • A61J2200/20Extrusion means, e.g. for producing pharmaceutical forms
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
    • A61J2200/00General characteristics or adaptations
    • A61J2200/40Heating or cooling means; Combinations thereof
    • A61J2200/42Heating means

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  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Pharmacology & Pharmacy (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Accessories For Mixers (AREA)
  • Mixers Of The Rotary Stirring Type (AREA)

Abstract

The invention discloses a medicine decocting tank with a hydraulic drive single-chamber structure, which comprises a tank body and a stirring shaft, wherein the stirring shaft is provided with a vertical sliding cavity of a stirring shaft part, a stirring shaft part piston connected with the lower end of a vertical driving rod is connected in the vertical sliding cavity of the stirring shaft part in a sliding manner, the vertical sliding cavity of the stirring shaft part is divided into an upper liquid storage cavity and a lower liquid storage cavity by the stirring shaft part piston, the stirring shaft is provided with a transverse sliding pipe, a sliding pipe part first piston connected with the inner end of an inner side driving cross rod and a sliding pipe part second piston connected with the inner end of an outer side driving cross rod are connected in the transverse sliding pipe in a sliding and sealing manner, the outer end of the inner side driving cross rod is connected with an inner side extrusion plate, the outer end of the outer side driving cross rod is connected with an outer side extrusion plate, the middle liquid storage cavity and two edge liquid storage cavities are separated in the transverse sliding pipe by the. The invention solves the problem that the medicine decocting pot can not extrude medicinal materials in the process of decocting the medicine.

Description

Decocting pot with hydraulic driving single-chamber structure
Technical Field
The invention belongs to the technical field of production of traditional Chinese medicine preparations, and particularly relates to a hydraulic-driven single-chamber-structure medicine decocting pot.
Background
At present, the chemical components of traditional Chinese medicines are very complex, not only contain various active ingredients, but also have invalid ingredients and also contain toxic ingredients, the extraction of the traditional Chinese medicines is to extract the active ingredients by utilizing some technologies to the maximum extent, so that the internal quality and the clinical treatment effect of a traditional Chinese medicine preparation are improved, the effect of the traditional Chinese medicines is exerted to the maximum extent, the traditional Chinese medicines such as vines, woody, tubers and fruits can be extracted only by being extruded, the traditional Chinese medicine decoction and extrusion are finished by different equipment, the extrusion of the medicinal materials in the decoction process cannot be realized, and the decoction process is greatly prolonged.
Disclosure of Invention
The invention provides a hydraulic drive single-chamber structure medicine decocting pot, which solves the problem that the traditional medicine decocting pot cannot extrude medicinal materials in the medicine decocting process so as to improve the medicine decocting efficiency.
The technical problem is solved by the following technical scheme: a decocting pot with a hydraulic drive single-chamber structure comprises a pot body and a stirrer, wherein the stirrer comprises a stirring shaft and a motor for driving the stirring shaft to rotate, and is characterized in that the stirring shaft is connected to the top wall of the pot body, a stirring shaft vertical sliding cavity is arranged in the stirring shaft, a stirring shaft piston connected with the lower end of a vertical driving rod is connected in the stirring shaft vertical sliding cavity in a sliding way, the upper end of the vertical driving rod is connected with a driving rod lifting mechanism for driving the vertical driving rod to lift, the stirring shaft piston divides the stirring shaft vertical sliding cavity into an upper liquid storage cavity and a lower liquid storage cavity, the stirring shaft is provided with a plurality of cross sliding pipes distributed along the circumferential direction of the stirring shaft, the cross sliding pipes are connected with a sliding pipe first piston connected with the inner end of an inner side driving transverse rod and a sliding pipe second piston connected with the inner end of an outer side driving transverse, the outer end of the inner side driving transverse rod is connected with an inner side extrusion plate, the outer side driving transverse rod is arranged in a penetrating mode in a sliding seal mode, the outer end of the outer side driving transverse rod is connected with an outer side extrusion plate, the first piston of the sliding rod portion and the second piston of the sliding rod portion are separated into a middle liquid storage cavity and two edge liquid storage cavities in the transverse sliding tube, the lower liquid storage cavity is communicated with the middle liquid storage cavity, and the two edge liquid storage cavities are communicated with the upper liquid storage cavity. When the stirring tank is used, medicinal materials are placed in the tank body, and the stirring shaft drives the extrusion plate, the transverse sliding pipe and the transverse driving rod to rotate, so that the stirring effect is achieved. The stirring axial region is erected smooth chamber and the liquid storage cavity of slide pipe portion and is filled with liquid, when needs extrude the medicinal material, through erecting actuating lever lift drive and erecting the actuating lever lift, inboard stripper plate folds and extrudees the medicinal material with outside stripper plate when erecting the actuating lever decline, inboard stripper plate and outside stripper plate part when erecting the actuating lever and rising to make the in-process of stirring can extrude traditional chinese medicine, make to decoct effectual and carry out the effect of smashing with traditional chinese medicine.
Preferably, the lower end of the stirring shaft is provided with a plurality of push plates which are distributed along the circumferential direction of the stirring shaft and extend radially, the surface of one side of each push plate inclines upwards, and the surface of each push plate, which inclines upwards, is positioned in front of the push plate along the rotation direction of the stirring shaft. Thereby can make the process chinese-medicinal material of stirring produce and shift up and improve the extrusion effect, prevent that the medicinal material of large granule from deposiing and can not reach between the inside and outside stripper plate.
Preferably, the lower surface of the push plate and the bottom wall of the tank body abut against each other to scrape the bottom wall of the tank body. Can prevent the phenomenon of bottom sticking and coking in the process of decocting the medicines.
Preferably, a cylinder body sleeved on the upper end of the stirring shaft is arranged on the top wall of the tank body, an annular driving groove extending along the circumferential direction of the cylinder body in an inclined mode is formed in the inner circumferential surface of the cylinder body, a hook head connected into the annular driving groove in a sliding mode is arranged at the upper end of the vertical driving rod, a rotation stopping pin is arranged on the vertical driving rod, a vertical rotation stopping groove is formed in the stirring shaft, the rotation stopping pin penetrates through the vertical rotation stopping groove, and when the stirring shaft rotates, the hook head slides in the annular driving groove along the extending direction of the annular driving groove to move up and down. The utility model provides a concrete technical scheme of vertical drive pole lift, this technical scheme can share the motor of (mixing) shaft as the power supply, and the structure is succinct compact moreover.
Preferably, an inner side folding rod assembly positioned on one side, close to the stirring shaft, of the inner side extrusion plates is arranged between any two adjacent inner side extrusion plates, the inner side folding rod assembly comprises an inner side folding rod and an inner side vertical rotating shaft, the inner side folding rod comprises an inner side first connecting rod and an inner side second connecting rod, one inner side extrusion plate in the adjacent inner side extrusion plates is hinged to one end of the inner side first connecting rod, the other inner side extrusion plate in the adjacent inner side extrusion plates is hinged to one end of the inner side second connecting rod, and the other end of the inner side first connecting rod and the other end of the inner side second connecting rod are hinged together through the inner side; the outside folding rod component which is positioned between any two adjacent outside extrusion plates and is far away from one side of the stirring shaft is arranged, the outside folding rod component comprises an outside folding rod and an outside vertical rotating shaft, the outside folding rod comprises an outside first connecting rod and an outside second connecting rod, one end of one outside extrusion plate in the adjacent outside extrusion plates is hinged with one end of the outside first connecting rod, one end of the other outside extrusion plate is hinged with the outside second connecting rod, and the other end of the outside first connecting rod and the other end of the outside second connecting rod are hinged together through the outside vertical rotating shaft. Can prevent that the horizontal actuating lever of inside and outside from producing and rotate and improve the stirring effect.
Preferably, the inner folding rods in the inner folding rod assembly are distributed along the vertical direction, the inner folding rod assembly further comprises a plurality of inner first vertical blocking rods and a plurality of inner second vertical blocking rods, the inner first vertical blocking rods are distributed along the extending direction of the inner first connecting rods and are connected with all the inner first connecting rods, the inner second vertical blocking rods are distributed along the extending direction of the inner second connecting rods and are connected with all the inner second connecting rods, and the inner folding rods, the inner vertical rotating shafts, the inner first vertical blocking rods and the inner second vertical blocking rods are connected together to form an inner filtering fence; outside folding rod among the folding rod subassembly in the outside has a plurality of roots and distributes along upper and lower direction, outside folding rod subassembly still includes that the first vertical arresting barrier in a plurality of outsides and a plurality of outside second erect arresting barrier, and the first vertical arresting barrier in the outside distributes and links together with all outside first connecting rods along the extending direction of the first connecting rod in the outside, and the outside second erects arresting barrier and distributes and link together with all outside second connecting rods along the extending direction of outside second connecting rod, outside folding rod, the outside are erected pivot, the first vertical arresting barrier in the outside and the outside second erect arresting barrier and link together and constitute outside filtration fence. According to the technical scheme, when the medicine is decocted, the medicinal materials are stored in the area surrounded by the inner side extrusion plate, the outer side extrusion plate and the inner side and the outer side filtering fences, and small medicinal materials penetrate through the filtering fences and are not extruded so as to avoid influencing the extrusion efficiency.
Preferably, the inner vertical rotating rod is connected with the stirring shaft through an inner compression spring, and the inner compression spring is used for providing force for pulling the inner transverse driving rod out of the transverse sliding pipe; the outer vertical rotating rod is connected to the inner circumferential surface of the tank body through an outer compression spring, the outer compression spring is connected to the inner circumferential surface of the tank body in a sliding manner along the circumferential direction of the tank body, and the outer compression spring is used for providing force for inserting the outer transverse driving rod into the transverse sliding pipe; a transverse sliding hole and a communicating hole which communicates an upper liquid storage cavity with a lower liquid storage cavity are arranged in the stirring shaft part piston, a conical section which is intersected with the communicating hole is arranged in the transverse sliding hole, a transverse sliding rod and a plug opening spring are connected in the transverse sliding hole in a sealing and sliding manner, one end of the transverse sliding rod is provided with a conical head which seals the communicating hole and is positioned in the conical section, the other end of the transverse sliding rod is provided with an inclined surface which inclines upwards, a vertical cavity which is communicated with the transverse sliding hole is arranged in the vertical driving rod, a vertical driving rod of which the lower end is supported on the inclined surface is arranged in the vertical cavity, the plug opening spring provides force for the transverse sliding rod to move towards the direction of the vertical driving rod, an adjusting screw rod of which the upper end outputs the upper end surface of the vertical driving rod is in threaded connection with the top wall of the vertical cavity, and the lower end of the, thereby controlling the squeezing effect and improving the convenience in manufacturing. The specific distance control process comprises the following steps: the distance between the inner side extrusion plate and the outer side extrusion plate is the largest initially, the piston of the stirring shaft part is located at the lowest position, then the adjusting screw rod is rotated to ascend, the conical section loses the sealing effect on the communicating hole under the action of the plug opening spring, the inner side extrusion plate and the outer side extrusion plate are folded under the action of the inner side compression spring, and when the inner side extrusion plate and the outer side extrusion plate move to the position where the required gap meets the requirement (at the moment, the inner side extrusion plate and the outer side extrusion plate are in the fully folded state), the adjusting screw rod is rotated to descend to enable the conical.
Preferably, the upper end of the stirring shaft is provided with a driven gear, a power output shaft of the motor is provided with a driving gear, and the driving gear is connected with the driven gear through a chain. The utility model provides a motor drive (mixing) shaft's a concrete technical scheme, this scheme makes the upper end of (mixing) shaft can vacate, is convenient for vacate spatial layout actuating lever elevating system.
Preferably, the inner and outer compression plates are pressed in a planar fit. Can improve the disturbance of the rotation of a plurality of traditional Chinese medicines and liquid in the extrusion process, thereby improving the stirring effect.
The invention has the following beneficial effects: can extrude, stir and filter the traditional Chinese medicine in the process of decocting the medicine.
Drawings
FIG. 1 is a schematic diagram of a first embodiment of the present invention;
FIG. 2 is a schematic cross-sectional view of a first embodiment of the present invention;
FIG. 3 is an enlarged partial schematic view at A of FIG. 1;
FIG. 4 is a schematic elevational view of the inside folding bar assembly;
FIG. 5 is a schematic elevational view of the outboard folding bar assembly;
FIG. 6 is a schematic cross-sectional view of a second embodiment of the present invention;
FIG. 7 is a partial schematic view of a second embodiment of the present invention
Fig. 8 is a partially enlarged schematic view at B of fig. 7.
The figure is as follows: the tank comprises a tank body 1, a first vertical blocking rod 2, a motor 3, a driven gear 4, a driving gear 5, a chain 6, a second vertical blocking rod 7, a top wall 8 of the tank body, a vertical driving rod 9, a transverse sliding pipe 10, an inner driving cross rod 11, an inner extrusion plate 12, an inner first connecting rod 13, an inner second connecting rod 14, an inner vertical rotating rod 15, an inner compression spring 16, an outer driving cross rod 17, a cylinder body 18, an annular driving groove 19, a hook head 20, a rotation stopping pin 21, a vertical rotation stopping groove 22, a stirring shaft part piston 23, an upper liquid storage cavity 24, a lower liquid storage cavity 25, a sliding pipe part first piston 26, a sliding pipe part second piston 27, a middle liquid storage cavity 28, an outer extrusion plate 29, an inner liquid storage cavity 30, an outer liquid storage cavity 31, a stirring shaft 32, an outer first connecting rod 33, an outer second connecting rod 34, an outer vertical rotating rod 35, an outer compression spring 36, an outer second vertical blocking rod 37, an outer first vertical blocking rod 38, a transverse sliding pipe, A stirring shaft part vertical sliding cavity 39, a push plate 40, a side surface 41 of the push plate, a first liquid flow channel 42, a second liquid flow channel 43, a communication hole 44, a cross sliding rod 45, a plug opening spring 46, a conical head 47, a slope 48, a vertical cavity 49, a vertical transmission rod 50, an adjusting screw 51 and a third liquid flow channel 52.
Detailed Description
The invention is further described with reference to the following detailed description and accompanying drawings.
First embodiment, referring to fig. 1 to 5, a hydraulic-driven decocting pot of a single-chamber structure comprises a pot body 1 and a stirrer. The stirrer comprises a stirring shaft 32 and a motor 3 for driving the stirring shaft to rotate. The upper end of the stirring shaft is provided with a driven gear 4, the power output shaft of the motor is provided with a driving gear 5, and the driving gear is connected with the driven gear through a chain 6. The stirring shaft is connected with the top wall 8 of the tank body. A stirring shaft part vertical sliding cavity is arranged in the stirring rotating shaft. The stirring shaft part vertical sliding cavity is internally and slidably connected with a stirring shaft part piston 23 connected with the lower end of a vertical driving rod 9, and the upper end of the vertical driving rod is connected with a driving rod lifting mechanism for driving the vertical driving rod to lift. The stirring shaft portion piston divides the stirring shaft portion vertical sliding chamber into an upper reservoir chamber 24 and a lower reservoir chamber 25. The stirring shaft is provided with a plurality of cross sliding pipes 10 distributed along the circumferential direction of the stirring shaft, and a first piston 26 of a sliding pipe part connected with the inner end of the inner side driving cross rod 11 and a second piston 27 of the sliding pipe part connected with the inner end of the outer side driving cross rod 17 are connected in a sliding and sealing mode in the cross sliding pipes. The outer end of the inner driving cross bar is connected with an inner extrusion plate 12. The outer side driving cross rod penetrates through the inner side driving cross rod in a sliding sealing mode, and the outer end of the outer side driving cross rod is connected with an outer side extrusion plate 29. The first piston of the slide bar portion and the second piston of the slide bar portion separate a middle liquid storage cavity 28, an inner side liquid storage cavity 30 and an outer side liquid storage cavity 31 in the cross slide tube. The lower reservoir chamber communicates with the intermediate reservoir chamber via a first fluid flow path 42. The inner side liquid storage cavity is communicated with the outer side liquid storage cavity through the second liquid flow channel 43, and the inner side liquid storage cavity is communicated with the upper liquid storage cavity through the third liquid flow channel 52. An inner side folding rod component which is positioned on one side of the inner side extrusion plates close to the stirring shaft is arranged between any two adjacent inner side extrusion plates, and the inner side folding rod component comprises an inner side vertical rotating rod 15, a plurality of inner side first vertical blocking rods 2, a plurality of inner side second vertical blocking rods 7 and a plurality of inner side folding rods which are distributed along the vertical direction. The inside folding bar includes an inside first link 13 and an inside second link 14. One inner side extrusion plate in the adjacent inner side extrusion plates is hinged with one end of the inner side first connecting rod, the other inner side extrusion plate is hinged with one end of the inner side second connecting rod, and the other end of the inner side first connecting rod and the other end of the inner side second connecting rod are hinged together through the inner side vertical rotating rod. The inner side first vertical blocking rods are distributed along the extending direction of the inner side first connecting rods and are connected with all the inner side first connecting rods, the inner side second vertical blocking rods are distributed along the extending direction of the inner side second connecting rods and are connected with all the inner side second connecting rods, and the inner side folding rods, the inner side vertical rotating shafts, the inner side first vertical blocking rods and the inner side second vertical blocking rods are connected together to form an inner side filtering fence.
An outer side folding rod assembly is arranged between any two adjacent outer side extrusion plates and is positioned on one side of the outer side extrusion plates, which is far away from the stirring shaft, and the outer side folding rod assembly comprises an outer side vertical rotating rod 35, a plurality of outer side first vertical blocking rods 38, a plurality of outer side second vertical blocking rods 37 and a plurality of outer side folding rods distributed along the vertical direction. The outside folding bar includes an outside first link 33 and an outside second link 34. One outer side extrusion plate in the adjacent outer side extrusion plates is hinged with one end of the outer side first connecting rod, the other outer side extrusion plate is hinged with one end of the outer side second connecting rod, and the other end of the outer side first connecting rod and the other end of the outer side second connecting rod are hinged together through the outer side vertical rotating rod. The outer side first vertical barrier rods are distributed along the extending direction of the outer side first connecting rods and connected with all the outer side first connecting rods, the outer side second vertical barrier rods are distributed along the extending direction of the outer side second connecting rods and connected with all the outer side second connecting rods, and the outer side folding rods, the outer side vertical rotating shafts, the outer side first vertical barrier rods and the outer side second vertical barrier rods are connected together to form the outer side filtering fence.
The driving rod lifting mechanism comprises a cylinder body 18 which is arranged on the top wall of the tank body and sleeved on the upper end of the stirring shaft, an annular driving groove 19 which is arranged on the inner circumferential surface of the cylinder body and extends along the circumferential direction of the cylinder body in an inclined mode, a hook head 20 which is arranged at the upper end of the vertical driving rod and is connected into the annular driving groove in a sliding mode, a rotation stopping pin 21 arranged on the vertical driving rod and a vertical rotation stopping groove 22 arranged in the stirring shaft. The rotation stopping pin penetrates through the vertical rotation stopping groove, and when the stirring shaft rotates, the hook head slides in the annular driving groove along the extending direction of the annular driving groove to move up and down.
The lower extreme of (mixing) shaft is equipped with a plurality of push plates 40 that radially extend along (mixing) shaft circumference distribution, and one side surface 41 of push plate slopes up, and the surface that the push plate slopes up is located the push plate along the place ahead of (mixing) shaft rotation direction. The lower side of the push plate and the bottom wall of the tank body are abutted together to scrape the bottom wall of the tank body. When the stirring shaft is used, the stirring blades and the extrusion plates are driven to stir when the stirring shaft rotates, the driving rod lifting mechanism drives the vertical driving rod to lift, and the inner side extrusion plate and the outer side extrusion plate are opened and closed to extrude the traditional Chinese medicine when the vertical driving rod lifts.
Embodiment two, the difference bits from embodiment one:
referring to fig. 6, the inboard vertical rod is connected to the agitator shaft by an inboard compression spring 16 which is used to provide the force that the inboard drive cross rod pulls out of the cross slide. The outer vertical rod is connected to the inner peripheral surface of the tank by an outer compression spring 36, and the outer tension spring is slidably connected to the inner peripheral surface of the tank in the circumferential direction of the tank. The outboard compression spring is used to provide a force that the outboard drive cross bar is inserted into the cross slide.
Referring to fig. 7 and 8, a transverse slide hole and a communication hole 44 communicating an upper liquid storage cavity with a lower liquid storage cavity are arranged in the piston of the stirring shaft part of the driving rod, the transverse slide hole is provided with a conical section crossed with the communication hole, a transverse slide rod 45 and a plug opening spring 46 are connected in the transverse slide hole in a sealing and sliding manner, one end of the transverse slide rod is provided with a conical head 47 which seals the communication hole and is positioned in the conical section, the other end of the transverse slide rod is provided with an inclined surface 48 which inclines upwards, a vertical cavity 49 communicated with the transverse slide hole is arranged in the vertical driving rod, a vertical driving rod 50 with the lower end supported on the inclined surface is arranged in the vertical cavity, the plug opening spring provides force for the transverse slide rod to move towards the direction of the vertical driving rod, an adjusting screw 51 with the upper end for outputting the upper end.

Claims (8)

1. A decocting pot with a hydraulic drive single-chamber structure comprises a pot body and a stirrer, wherein the stirrer comprises a stirring shaft and a motor for driving the stirring shaft to rotate, and is characterized in that the stirring shaft is connected to the top wall of the pot body, a stirring shaft vertical sliding cavity is arranged in the stirring shaft, a stirring shaft piston connected with the lower end of a vertical driving rod is connected in the stirring shaft vertical sliding cavity in a sliding way, the upper end of the vertical driving rod is connected with a driving rod lifting mechanism for driving the vertical driving rod to lift, the stirring shaft piston divides the stirring shaft vertical sliding cavity into an upper liquid storage cavity and a lower liquid storage cavity, the stirring shaft is provided with a plurality of cross sliding pipes distributed along the circumferential direction of the stirring shaft, the cross sliding pipes are connected with a sliding pipe first piston connected with the inner end of an inner side driving transverse rod and a sliding pipe second piston connected with the inner end of an outer side driving transverse, the outer end of the inner side driving transverse rod is connected with an inner side extrusion plate, the outer side driving transverse rod is arranged in a penetrating mode in a sliding seal mode, the outer end of the outer side driving transverse rod is connected with an outer side extrusion plate, the first piston of the sliding rod portion and the second piston of the sliding rod portion are separated from a middle liquid storage cavity, an inner side liquid storage cavity and an outer side liquid storage cavity in the sliding tube, the lower liquid storage cavity is communicated with the middle liquid storage cavity, and the inner side liquid storage cavity, the outer side liquid storage cavity and the upper liquid storage cavity are communicated.
2. The pot of claim 1, wherein the lower end of the stirring shaft is provided with a plurality of push plates extending radially along the circumferential direction of the stirring shaft, one side surface of each push plate is inclined upward, and the surface of each push plate inclined upward is located in front of the push plate in the rotation direction of the stirring shaft.
3. The hydraulically driven single-chamber decocting pot of claim 2, wherein the lower surface of the push plate abuts against the bottom wall of the pot to scrape the bottom wall of the pot.
4. The pot for decocting medicinal herbs of claim 1, wherein the top wall of the pot body is provided with a cylinder body sleeved on the upper end of the stirring shaft, the inner circumferential surface of the cylinder body is provided with an annular driving groove extending obliquely along the circumferential direction of the cylinder body, the upper end of the vertical driving rod is provided with a hook head slidably connected in the annular driving groove, the vertical driving rod is provided with a rotation stopping pin, the stirring shaft is provided with a vertical rotation stopping groove, the rotation stopping pin is inserted in the vertical rotation stopping groove, and when the stirring shaft rotates, the hook head slides in the annular driving groove along the extending direction of the annular driving groove to move up and down.
5. The pot of claim 1, wherein an inner folding bar assembly is installed between any two adjacent inner squeezing plates and located on a side of the inner squeezing plates close to the stirring shaft, the inner folding bar assembly comprises an inner folding bar and an inner vertical rotating shaft, the inner folding bar comprises an inner first connecting bar and an inner second connecting bar, one inner squeezing plate of the adjacent inner squeezing plates is hinged to one end of the inner first connecting bar, the other inner squeezing plate is hinged to one end of the inner second connecting bar, and the other end of the inner first connecting bar and the other end of the inner second connecting bar are hinged together through the inner vertical rotating shaft; the outside folding rod component which is positioned between any two adjacent outside extrusion plates and is far away from one side of the stirring shaft is arranged, the outside folding rod component comprises an outside folding rod and an outside vertical rotating shaft, the outside folding rod comprises an outside first connecting rod and an outside second connecting rod, one end of one outside extrusion plate in the adjacent outside extrusion plates is hinged with one end of the outside first connecting rod, one end of the other outside extrusion plate is hinged with the outside second connecting rod, and the other end of the outside first connecting rod and the other end of the outside second connecting rod are hinged together through the outside vertical rotating shaft.
6. The hydraulically driven single-chamber decocting pot of claim 5, wherein the inner folding bars of the inner folding bar assembly comprise a plurality of inner vertical bars and a plurality of inner vertical bars, the inner folding bars further comprise a plurality of inner first vertical bars and a plurality of inner second vertical bars, the inner first vertical bars are distributed along the extending direction of the inner first connecting bars and connected to all the inner first connecting bars, the inner second vertical bars are distributed along the extending direction of the inner second connecting bars and connected to all the inner second connecting bars, and the inner folding bars, the inner vertical shafts, the inner first vertical bars and the inner second vertical bars are connected to form an inner filtering fence; outside folding rod among the folding rod subassembly in the outside has a plurality of roots and distributes along upper and lower direction, outside folding rod subassembly still includes that the first vertical arresting barrier in a plurality of outsides and a plurality of outside second erect arresting barrier, and the first vertical arresting barrier in the outside distributes and links together with all outside first connecting rods along the extending direction of the first connecting rod in the outside, and the outside second erects arresting barrier and distributes and link together with all outside second connecting rods along the extending direction of outside second connecting rod, outside folding rod, the outside are erected pivot, the first vertical arresting barrier in the outside and the outside second erect arresting barrier and link together and constitute outside filtration fence.
7. The hydraulically driven single-chamber decocting pot of claim 5, wherein said inner vertical rod is connected to said stirring shaft by an inner compression spring for providing force for pulling said inner horizontal driving rod out of said horizontal sliding tube; the outer vertical rotating rod is connected to the inner circumferential surface of the tank body through an outer compression spring, the outer compression spring is connected to the inner circumferential surface of the tank body in a sliding manner along the circumferential direction of the tank body, and the outer compression spring is used for providing force for inserting the outer transverse driving rod into the transverse sliding pipe; the stirring shaft part is internally provided with a transverse slide hole and a communicating hole for communicating an upper liquid storage cavity with a lower liquid storage cavity, the transverse slide hole is provided with a conical section crossed with the communicating hole, a transverse slide rod and a plug opening spring are connected in the transverse slide hole in a sealing and sliding manner, one end of the transverse slide rod is provided with a conical head positioned in the conical section of the communicating hole, the other end of the transverse slide rod is provided with an inclined plane inclined upwards, a vertical cavity communicated with the transverse slide hole is arranged in the vertical driving rod, a vertical driving rod on the inclined plane is arranged in the vertical cavity, the plug opening spring provides force for moving the transverse slide rod towards the direction of the vertical driving rod, an adjusting screw rod for outputting the upper end face of the vertical driving rod is in threaded connection with the top wall of the vertical cavity, and the lower end of the adjusting screw rod.
8. The pot as claimed in claim 1, wherein the stirring shaft has a driven gear at its upper end, and the motor has a driving gear at its power output shaft, and the driving gear is connected to the driven gear via a chain.
CN202011591024.0A 2020-12-29 2020-12-29 Decocting pot with hydraulic driving single-chamber structure Withdrawn CN112716801A (en)

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Application Number Priority Date Filing Date Title
CN202011591024.0A CN112716801A (en) 2020-12-29 2020-12-29 Decocting pot with hydraulic driving single-chamber structure

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Application Number Priority Date Filing Date Title
CN202011591024.0A CN112716801A (en) 2020-12-29 2020-12-29 Decocting pot with hydraulic driving single-chamber structure

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115152982A (en) * 2022-04-06 2022-10-11 湖南神乐生态庄园有限公司 Method and equipment for preparing health-preserving herbal medicine trotter soup

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115152982A (en) * 2022-04-06 2022-10-11 湖南神乐生态庄园有限公司 Method and equipment for preparing health-preserving herbal medicine trotter soup
CN115152982B (en) * 2022-04-06 2024-06-11 湖南神乐生态庄园有限公司 Method and equipment for preparing health-preserving herbal medicine pig foot soup

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