Medicinal material infiltrating tank

By using flexible water-absorbing reservoirs and counterweights in the medicinal material infiltration device, the problems of medicinal material floating and sinking are solved, and more efficient medicinal material infiltration and convenient salvage process are achieved.

CN222870959UActive Publication Date: 2025-05-16XIAN TONGCHEN HUINONG TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421394564.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-05-16
Estimated Expiration
2034-06-18

AI Technical Summary

Technical Problem

During the use of existing medicinal materials, due to the lighter quality of the dry medicinal materials, some medicinal materials or medicinal residues will float on the liquid surface, and the floating medicinal materials or medicinal residues will float or sink into the bottom during vibration, which will make it inconvenient to salvage after infiltration.

Method used

The medicinal materials are stored using a flexible and absorbent storage device. The reservoir is placed in the infiltration box and contacts the infiltration liquid quickly absorbs water. The gravity becomes larger to overcome the buoyancy and completely immerse the medicinal materials or medicinal residues avoid escaping. At the same time, the reservoir is repeatedly deformed by lifting and lowering of the counterweight, which accelerates the flow of liquid, shortens the wetting cycle and facilitates salvage.

Benefits of technology

It effectively avoids the problem of medicinal materials or residue floating or sinking during the infiltration process, shortens the infiltration time, improves processing efficiency, and simplifies the salvage process after infiltration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a medicinal material infiltrating tank which comprises an infiltrating box, a storage device used for storing medicinal materials and a balancing weight. Infiltrating liquid is stored in the infiltrating box, a storage device capable of descending into the infiltrating box is arranged in the infiltrating box in a liftable mode, and the storage device comprises a ring body, a cylinder body and an open cover; the medicinal material infiltrating tank is characterized in that ring bodies are coaxially and fixedly arranged at the two open ends of a barrel body made of a sponge material respectively, and each ring body is detachably provided with an open cover capable of covering an opening of the barrel body. After the storage device is put into the infiltration box and makes contact with infiltration liquid, water can be rapidly absorbed, the gravity of the storage device is increased, the storage device can overcome the buoyancy of the infiltration liquid to be completely immersed in the infiltration liquid, medicinal materials or medicine residues can be prevented from escaping into the infiltration box from the storage device, and the storage device can be repeatedly deformed to accelerate the liquidity of liquid in the storage device; therefore, the infiltrating period is shortened, and all infiltrated medicinal materials are fished.
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Description

Technical Field

[0001] The utility model relates to the technical field of medicinal material processing, in particular to a medicinal material infiltration tank. Background Art

[0002] The Chinese medicinal material infiltration device is a device used for the infiltration treatment of Chinese medicinal materials. Infiltration refers to soaking the Chinese medicinal materials in an appropriate solvent to allow them to penetrate and absorb the effective ingredients in the solvent. The type of solvent, temperature and infiltration process parameters should be determined based on the characteristics of the Chinese medicinal materials, the solubility of the ingredients and the required infiltration time.

[0003] After searching: the Chinese patent application number is "CN201921544121.7", which discloses a horizontal Chinese medicinal material infiltration tank for Chinese medicinal material processing, including a bottom plate, the upper end of the bottom plate is fixedly connected to the infiltration tank body through a plurality of connecting blocks, and a vibration mechanism is installed on the outer wall of the infiltration tank body. The output end of the vibration mechanism passes through the infiltration tank body and is connected to a vibration frame. The vibration frame is hollowed out. The utility model makes the medicinal materials more thoroughly soaked, greatly shortens the time required for soaking, improves the processing efficiency, and is stable and reliable.

[0004] In the process of implementing the present invention, the inventor found that the prior art has the following problems:

[0005] During use, dry medicinal materials are placed in a vibration frame located in the main body of the infiltration tank, and liquid is added thereto so that the water surface covers the surface of the medicinal materials. Due to the light weight of the medicinal materials, some of the medicinal materials or medicinal residues float on the liquid surface, and in the process of vibrating them through the vibration mechanism, the medicinal materials or medicinal residues floating on the liquid surface will be suspended or sink to the bottom after infiltration. After infiltration, it is not convenient to salvage the medicinal materials in the vibration frame and the medicinal materials or medicinal residues in the main body of the infiltration tank.

[0006] Therefore, a flexible and water-absorbing storage device is provided for storing medicinal materials during use, so that after the storage device is placed in an infiltration box and contacts with the infiltration liquid, it can quickly absorb water and increase its gravity to overcome the buoyancy of the infiltration liquid and be completely immersed in the infiltration liquid, thereby preventing medicinal materials or medicinal residues from escaping from the storage device into the infiltration box. During the infiltration process, the storage device can be repeatedly deformed to accelerate the fluidity of the liquid inside it, thereby shortening the infiltration cycle. Moreover, a medicinal material infiltration tank that is convenient for salvaging all the infiltrated medicinal materials at one time is a problem that urgently needs to be solved by the utility model. Utility Model Content

[0007] In view of the above technical problems, the purpose of the utility model is to overcome the problem in the prior art that during use, the dried medicinal materials are placed in a vibration frame located in the main body of the infiltration tank, and liquid is added thereto so that the water surface covers the surface of the medicinal materials. Due to the light weight of the medicinal materials, some of the medicinal materials or medicinal residues will float on the liquid surface, and in the process of vibrating them by the vibration mechanism, the medicinal materials or medicinal residues floating on the liquid surface will be suspended or sink to the bottom after infiltration, and after infiltration, it is not convenient to salvage the medicinal materials in the vibration frame and the medicinal materials or medicinal residues in the main body of the infiltration tank. , thus providing a flexible and water-absorbing storage device for storing medicinal materials during use, so that after the storage device is placed in the infiltration box and contacts with the infiltration liquid, it can quickly absorb water and increase its gravity to overcome the buoyancy of the infiltration liquid and be completely immersed in the infiltration liquid, which can prevent the medicinal materials or medicinal residues from escaping from the storage device into the infiltration box. During the infiltration process, the storage device can be repeatedly deformed to accelerate the fluidity of the liquid inside it, thereby shortening the infiltration cycle, and it is convenient to salvage all the infiltrated medicinal materials at one time.

[0008] In order to achieve the above-mentioned object, the utility model provides a medicinal material infiltration tank, which comprises: an infiltration box, a storage device for storing medicinal materials and a counterweight block;

[0009] The infiltration box with an opening facing upward stores the infiltration liquid, and a storage device that can be lowered from the opening to the inside of the infiltration box and immersed in the wetting liquid is arranged in a liftable manner inside the infiltration box, and the storage device includes: a ring body, a cylinder body and an open cover; wherein,

[0010] Ring bodies are coaxially fixed on the two open ends of the sponge material cylinder, and each of the ring bodies is detachably provided with an open cover that can cover the open openings of the cylinder respectively. A counterweight block that can squeeze the storage container in the vertical direction to cause it to deform is liftably provided above the infiltration box.

[0011] Preferably, a plurality of No. 1 longitudinal guide rods are vertically fixedly arranged at equal intervals along the circumferential direction on the ring body located at the bottom of the reservoir, and through holes corresponding to the plurality of No. 1 longitudinal guide rods and passing through them are evenly penetrated on the ring body located at the top of the reservoir, and a return spring is sleeved on each No. 1 longitudinal guide rod located between the two ring bodies.

[0012] Preferably, each of the ring bodies is provided with a plurality of stop blocks which are equidistantly spaced along the circumferential direction thereof and which can rotate horizontally and abut against the open cover.

[0013] Preferably, the medicinal material infiltration tank further comprises a lifting mechanism for driving the storage device to rise and fall in a vertical direction, wherein the lifting mechanism comprises: a lifting shaft, a lifting wheel and a traction rope; wherein,

[0014] A gantry is vertically fixed above the infiltration box, a lifting shaft is horizontally and rotatably arranged inside the gantry, and at least two lifting wheels are spaced apart and coaxially rotatably arranged on the lifting shaft, and a traction rope that can be wound thereon is fixedly arranged on each of the lifting wheels, and the free end of each traction rope is fixed on the storage container.

[0015] Preferably, a fixing plate is symmetrically and horizontally fixedly arranged on the ring body located at the bottom end of the storage device, and the free ends of the two traction ropes are respectively fixed on the fixing plate.

[0016] Preferably, the infiltration box is internally spaced and vertically fixed with second longitudinal guide rods that are compatible with the two fixed plates, each of the fixed plates is vertically penetrated with a guide hole that is compatible with the corresponding second longitudinal guide rod, and each of the fixed plates can be slidably assembled on the second longitudinal guide rod through the guide hole.

[0017] Preferably, the gantry is also provided with a power assembly for driving the counterweight block to rise and fall in the vertical direction, and the power assembly includes: a winding shaft, a winding wheel, a driving motor and a rope; wherein,

[0018] A vertical plate is vertically fixed inside the gantry located above the lifting shaft, and a winding shaft is horizontally and rotatably arranged between the two vertical plates. The winding shafts located on both sides of the lifting shaft are coaxially fixed with at least two winding wheels, and each winding wheel is fixed with a rope, and the free end of each rope is respectively fixed to the counterweight block, and a driving motor is horizontally fixed on any of the vertical plates, and the driving motor is coaxially connected to the winding shaft through a coupling.

[0019] Preferably, a lifting motor for driving the lifting shaft to rotate is horizontally fixedly arranged on the gantry, and the lifting motor is coaxially connected to the lifting shaft through a coupling.

[0020] According to the above technical solution, the beneficial effects of the medicinal material infiltration tank provided by the utility model when in use are as follows:

[0021] (1) Before use, the open cover on the ring body at the top of the reservoir is opened, and after the medicinal materials are placed in the reservoir, the open cover is closed on the ring body, and the reservoir storing the medicinal materials is placed in the infiltration box so that the reservoir is completely immersed in the infiltration liquid. Since the cylinder of the reservoir is made of sponge material, when the reservoir enters the infiltration box and contacts the infiltration liquid, it can quickly absorb the infiltration liquid. The gravity of the reservoir that absorbs the infiltration liquid becomes larger and can sink in the infiltration liquid. When the reservoir immersed in the infiltration liquid reaches its liquid absorption capacity, the infiltration liquid can pass through the cylinder of sponge material into the reservoir and contact the medicinal materials, so that the medicinal materials are immersed in the infiltration liquid. During the entire soaking process, the medicinal materials and the scum of the medicinal materials will not escape from the reservoir and float on the liquid surface, so that there is no medicinal scum in the infiltration liquid in the infiltration box.

[0022] (2) During the soaking period, the counterweight is raised and lowered to make it free fall in the vertical direction, so that it can fall on the storage during the descent. Under the action of the counterweight, the storage is deformed in the vertical direction, and the infiltration liquid in the storage and the infiltration liquid absorbed in the sponge in the cylinder of the storage are squeezed out. After the counterweight leaves the storage, the cylinder of the storage can continue to absorb the infiltration liquid to restore it to its original state. In the process of restoring its original state, the infiltration liquid in the storage can flow. Therefore, by repeatedly raising and lowering the counterweight to make the storage repeatedly deform and recover after deformation, the flow of liquid in the storage is accelerated, thereby accelerating the infiltration speed of the medicinal materials in the storage. In addition, during the deformation of the storage, the medicinal materials stored in it will not escape into the infiltration box.

[0023] (3) After the infiltration is completed, the storage device can be salvaged from the infiltration box by the lifting mechanism. After the storage device leaves the infiltration liquid in the infiltration box, the counterweight block can be lowered in the vertical direction to squeeze the storage device, so that the infiltration liquid stored in the cylinder of the storage device and the excess infiltration liquid on the surface of the medicinal material can be squeezed out and dripped into the infiltration box for recycling, thereby preventing the waste of the infiltration liquid. Moreover, during the squeezing of the storage device, the residue of the medicinal material will not come out of the storage device. This avoids the need to salvage the medicinal residue in the infiltration liquid after the infiltration is completed.

[0024] (4) After the infiltration is completed, the open cover at the bottom of the storage container can be opened to discharge the infiltrated medicinal materials in the storage container from the bottom of the storage container. At this time, it is only necessary to use a receiving plate or other receiving equipment to receive the materials directly at the bottom opening of the storage container.

[0025] Therefore, the utility model uses a flexible and water-absorbing storage device to store medicinal materials, so that after the storage device is placed in the infiltration box and contacts with the infiltration liquid, it can quickly absorb water and increase its gravity to overcome the buoyancy of the infiltration liquid and be completely immersed in the infiltration liquid, which can prevent medicinal materials or medicinal residues from escaping from the storage device into the infiltration box. During the infiltration process, through the use of a counterweight block, the storage device can be repeatedly deformed to accelerate the fluidity of the liquid inside it, thereby shortening the infiltration cycle and facilitating the one-time salvage of all the infiltrated medicinal materials.

[0026] Other features and advantages of the utility model will be described in detail in the subsequent specific implementation mode; and the parts not involved in the utility model are the same as the prior art or can be implemented by using the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the following specific embodiments, they are used to explain the present invention, but do not constitute a limitation to the present invention. In the accompanying drawings:

[0028] Figure 1 It is a structural schematic diagram of a medicinal material infiltration tank provided in a preferred embodiment of the utility model;

[0029] Figure 2 It is a schematic diagram of the internal structure of a medicinal material infiltration tank provided in a preferred embodiment of the utility model;

[0030] Figure 3 It is a structural schematic diagram of a storage device of a medicinal material infiltration tank provided in a preferred embodiment of the utility model;

[0031] Figure 4 yes Figure 3 Assembly diagram of the middle ring body and the water absorption cylinder body.

[0032] Description of Reference Numerals

[0033] 1. Infiltration box; 201. Ring body; 202. Cylinder body; 203. Open cover; 3. Gantry; 4. No. 1 longitudinal guide rod; 5. Reset spring; 6. Lifting mechanism; 601. Lifting shaft; 602. Winding wheel; 603. Traction rope; 7. Counterweight block; 8. Power assembly; 9. Stop block; 10. No. 2 longitudinal guide rod. DETAILED DESCRIPTION

[0034] The specific implementation of the present invention is described in detail below in conjunction with the accompanying drawings. It should be understood that the specific implementation described here is only used to illustrate and explain the present invention, and is not used to limit the present invention.

[0035] like Figure 1-4As shown, the utility model provides a medicinal material infiltration tank, which comprises: an infiltration box 1, a storage container for storing medicinal materials and a counterweight block 7;

[0036] The infiltration box 1 with the opening facing upward stores the infiltration liquid. The infiltration box 1 is provided with a storage device which can be lowered from the opening to the inside and immersed in the wetting liquid. The storage device includes: a ring body 201, a cylinder body 202 and an open cover 203; wherein,

[0037] Ring bodies 201 are coaxially fixedly arranged at the two open ends of the sponge material cylinder 202, and each of the ring bodies 201 is detachably provided with an open cover 203 which can respectively cover the open parts of the cylinder 302. A counterweight block 7 which can squeeze the storage container in the vertical direction to cause it to deform is arranged in a liftable manner above the infiltration box 1.

[0038] In the above scheme, before use, the open cover 203 on the ring body 201 at the top of the storage is opened, and after the medicinal materials are placed in the storage, the open cover 203 is covered on the ring body 201, and the storage storing the medicinal materials is placed in the infiltration box 1 to completely immerse the storage in the infiltration liquid. Since the cylinder 202 of the storage is made of sponge material, when the storage enters the infiltration box 1 and is in contact with the infiltration liquid, the storage is completely immersed in the infiltration liquid. When in contact with the liquid, the infiltration liquid can be quickly absorbed. The gravity of the storage device that absorbs the infiltration liquid becomes larger and can sink in the infiltration liquid. When the storage device immersed in the infiltration liquid has a saturated capacity to absorb the liquid, the infiltration liquid can pass through the cylinder 202 made of sponge material into the storage device and contact with the medicinal materials, so that the medicinal materials are immersed in the infiltration liquid. During the entire soaking process, the medicinal materials and the scum of the medicinal materials will not escape from the storage device but float on the liquid surface, so that there is no medicinal scum in the infiltration liquid in the infiltration box 1.

[0039] During the soaking period, the counterweight block 7 is lifted and lowered to make it free fall in the vertical direction, so that it can fall on the storage during the descent. Under the force of the counterweight block 7, the storage is deformed in the vertical direction, and the infiltration liquid in the storage and the infiltration liquid absorbed in the sponge in the cylinder 202 of the storage are squeezed out. When the counterweight block 7 leaves the storage, the cylinder 202 of the storage can continue to absorb the infiltration liquid to restore it to its initial state, and in the process of restoring its initial state, the infiltration liquid inside the storage can flow. Therefore, by repeatedly lifting and lowering the counterweight block 7 to make the storage repeatedly deform and recover after deformation, the liquid flow in the storage is accelerated, so that the infiltration speed of the medicinal materials in the storage can be accelerated. In addition, during the deformation of the storage, the medicinal materials stored in it will not escape into the infiltration box 1.

[0040] After the infiltration is completed, the storage device can be salvaged from the infiltration box 1 by the lifting mechanism 6. After the storage device leaves the infiltration liquid in the infiltration box 1, the counterweight block 7 can be lowered in the vertical direction to squeeze the storage device, so as to squeeze out the infiltration liquid stored in the cylinder 302 of the storage device and the excess infiltration liquid on the surface of the medicinal material and drip them into the infiltration box 1 for recycling, thereby preventing the waste of the infiltration liquid. Moreover, during the squeezing of the storage device, the residue of the medicinal material will not come out of the storage device. This avoids the need to salvage the medicinal residue in the infiltration liquid after the infiltration is completed.

[0041] After the infiltration is completed, the open cover 203 at the bottom of the storage container can be opened to discharge the infiltrated medicinal materials in the storage container from the bottom of the storage container. At this time, the material receiving plate or other material receiving equipment can be used to receive the material directly at the bottom opening of the storage container.

[0042] In a preferred embodiment of the utility model, a plurality of No. 1 longitudinal guide rods 4 are vertically fixedly arranged at equal intervals along the circumferential direction on the ring body 201 located at the bottom of the storage container, and through holes corresponding to the plurality of No. 1 longitudinal guide rods 4 and passing through them are evenly penetrated on the ring body 201 located at the top of the storage container, and a return spring 5 is sleeved on each No. 1 longitudinal guide rod 4 located between two ring bodies 201.

[0043] In the above scheme, the function of the No. 1 longitudinal guide rod 4 is to play a guiding role, so that when the assembly block 7 is in free fall in the vertical direction, the reservoir can be squeezed in the vertical direction to squeeze out the infiltration liquid entering the reservoir and the infiltration liquid stored in the cylinder 202 made of sponge material. When the counterweight block 7 rises and leaves the reservoir, the reset spring 5 can reset the reservoir.

[0044] In a preferred embodiment of the present invention, each of the ring bodies 201 is provided with a plurality of stop blocks 9 equidistantly spaced along its circumferential direction and capable of horizontally rotating and abutting against the open cover 203 .

[0045] In the above scheme, if Figure 2 and Figure 3 As shown, the stop block 8 is horizontally and rotatably assembled on the ring body 201 through a damping shaft.

[0046] The stop block 8 is rotated so that the free end of the stop block 8 that is longer than the damping shaft leaves the opening of the cylinder 202, and then the open cover 203 is horizontally placed on the ring body 201 to cover the opening of the cylinder 202, and then the stop block 8 is rotated in the opposite direction so that the free end of the stop block 8 that is longer than the damping shaft abuts against the open cover 203 to lock the open cover 203.

[0047] The ring body 201 and the open cover 203 can be made of magnetic materials with opposite magnetic properties respectively, so that the ring body 201 and the open cover 203 are attracted to each other, further enhancing the stability and reliability of the connection between the ring body 201 and the open cover 203.

[0048] In a preferred embodiment of the present invention, the medicinal material infiltration tank further includes a lifting mechanism 6 for driving the storage device to lift in a vertical direction, and the lifting mechanism 6 includes: a lifting shaft 601, a lifting wheel 602 and a traction rope 603; wherein,

[0049] A gantry 3 is vertically fixed above the infiltration box 1, and a lifting shaft 601 is horizontally and rotatably arranged inside the gantry 3. At least two lifting wheels 602 are rotatably arranged at intervals and coaxially on the lifting shaft 601, and each of the lifting wheels 602 is fixed with a traction rope 603 that can be wound thereon, and the free end of each traction rope 603 is fixed on the storage container.

[0050] In the above scheme, the lifting shaft 601 is driven to rotate, and the lifting wheel 602 fixed on the shaft body is driven to rotate during the rotation, so that the lifting wheel 602 can reel in or unreel the traction rope 603 fixed on the lifting wheel 602 during the rotation, so that the traction rope 603 can pull the storage device to be lifted and lowered in the vertical direction during the reeling or unreeling process. Before use, the medicinal materials can be placed in the storage device, and then the storage device storing the medicinal materials is placed in the infiltration box 1 through the lifting mechanism 6, so that the storage device is completely immersed in the infiltration liquid. After the infiltration is completed, the storage device can be salvaged from the infiltration box 1 through the lifting mechanism 6.

[0051] When the reservoir leaves the infiltration liquid in the infiltration box 1, the counterweight block 7 can be lowered in the vertical direction to squeeze the reservoir, so that the infiltration liquid stored in the cylinder 302 of the reservoir and the excess infiltration liquid on the surface of the medicinal material are squeezed out and dripped into the infiltration box 1 for recycling, thereby preventing the waste of infiltration liquid. In addition, during the squeezing of the reservoir, the residue of the medicinal material will not come out of the reservoir.

[0052] In a preferred embodiment of the present invention, a fixing plate is symmetrically and horizontally fixedly arranged on the ring body 201 located at the bottom end of the storage container, and the free ends of the two traction ropes 603 are respectively fixed on the fixing plate.

[0053] In a preferred embodiment of the utility model, the infiltration box 1 is internally spaced and vertically fixed with a second longitudinal guide rod 10 adapted to the two fixed plates, each of the fixed plates is vertically penetrated with a guide hole adapted to the corresponding second longitudinal guide rod 10, and each of the fixed plates can be slidably assembled on the second longitudinal guide rod 10 through the guide hole.

[0054] In the above scheme, if Figure 2 As shown, through the cooperation of the second guide rod 10 and the guide hole on the fixing plate, it can be ensured that the storage can be lifted and lowered in a straight line in a stable and reliable manner in the vertical direction, thereby playing a guiding role.

[0055] In a preferred embodiment of the present invention, the gantry 3 is further provided with a power assembly 8 for driving the counterweight block 7 to rise and fall in the vertical direction, and the power assembly 8 includes: a winding shaft, a winding wheel, a driving motor and a rope; wherein,

[0056] A vertical plate is fixedly installed inside the gantry 3 located above the lifting shaft 601, and a winding shaft is horizontally and rotatably installed between the two vertical plates. The winding shafts located on both sides of the lifting shaft 601 are coaxially fixed with at least two winding wheels, and each winding wheel is fixed with a rope, and the free end of each rope is fixed to the counterweight block 7, respectively. A driving motor is horizontally fixedly installed on any of the vertical plates, and the driving motor is coaxially connected to the winding shaft through a coupling.

[0057] In the above scheme, when in use, the drive motor is started to drive the winding shaft to rotate, so that during the rotation, it can drive the winding wheel fixed on its shaft body to rotate together, and during the rotation of the winding wheel, the rope can be wound and unwound, so that the counterweight block 7 performs free fall motion in the vertical direction, so that the assembly block 7 enters the infiltration box 1 and falls on the storage device during the descent, so that the storage device is deformed in the longitudinal direction by the gravity force of the counterweight block 7.

[0058] In a preferred embodiment of the present utility model, a lifting motor for driving the lifting shaft 601 to rotate is horizontally fixedly arranged on the gantry 3, and the lifting motor is coaxially connected to the lifting shaft 601 through a coupling.

[0059] In the above scheme, the lifting shaft 601 is driven to rotate by starting the lifting motor, and the lifting wheel 602 fixed on the shaft body is driven to rotate during the rotation, so that the lifting wheel 602 can reel in or unreel the traction rope 603 fixed on the lifting wheel 602 during the rotation, so that the traction rope 603 can pull the storage device to be lifted and lowered in the vertical direction during the reeling or unreeling process.

[0060] In summary, the medicinal material infiltration tank provided by the utility model overcomes the problem in the prior art that during use, dry medicinal materials are placed in a vibration frame located in the main body of the infiltration tank, and liquid is added thereto so that the water surface covers the surface of the medicinal materials. Due to the light weight of the medicinal materials, some of the medicinal materials or medicinal residues will float on the liquid surface, and in the process of vibrating them through the vibration mechanism, the medicinal materials or medicinal residues floating on the liquid surface will be suspended or sink to the bottom after infiltration, and after infiltration, it is inconvenient to salvage the medicinal materials in the vibration frame and the medicinal materials or medicinal residues in the main body of the infiltration tank.

[0061] The preferred embodiments of the present invention are described in detail above in conjunction with the accompanying drawings. However, the present invention is not limited to the specific details in the above embodiments. Within the technical concept of the present invention, the technical solution of the present invention can be subjected to a variety of simple modifications, and these simple modifications all belong to the protection scope of the present invention.

[0062] It should also be noted that the various specific technical features described in the above specific embodiments can be combined in any suitable manner without contradiction. In order to avoid unnecessary repetition, the present utility model will not further describe various possible combinations.

[0063] In addition, various embodiments of the present invention may be arbitrarily combined, and as long as they do not violate the concept of the present invention, they should also be regarded as the contents disclosed by the present invention.

Claims

1. A medicinal material infiltration tank, characterized in that: The medicinal material infiltration tank comprises: an infiltration box (1), a storage container for storing medicinal materials, and a counterweight block (7); The infiltration box (1) with an opening facing upward stores infiltration liquid, and a storage device capable of descending from its opening to its interior and being immersed in the wetting liquid is provided in a liftable manner inside the infiltration box (1), and the storage device comprises: a ring body (201), a cylinder body (202) and an open cover (203); wherein: Ring bodies (201) are coaxially fixedly arranged at the two open ends of a cylinder (202) made of a sponge material, and each of the ring bodies (201) is detachably provided with an open cover (203) capable of covering the open parts of the cylinder (202), and a counterweight block (7) capable of squeezing the storage container in a vertical direction to cause it to deform is liftably arranged above the infiltration box (1).

2. The medicinal material infiltration tank according to claim 1, characterized in that: A plurality of first longitudinal guide rods (4) are vertically fixedly arranged at equal intervals along the circumferential direction on the ring body (201) located at the bottom of the storage container, and through holes corresponding to the plurality of first longitudinal guide rods (4) and allowing them to pass through are evenly penetrated on the ring body (201) located at the top of the storage container, and a return spring (5) is sleeved on each of the first longitudinal guide rods (4) located between the two ring bodies (201).

3. The medicinal material infiltration tank according to claim 1, characterized in that: Each of the ring bodies (201) is provided with a plurality of stop blocks (9) at equal intervals along its circumferential direction, which are capable of horizontal rotation and abutting against the open cover (203).

4. The medicinal material infiltration tank according to claim 1, characterized in that: The medicinal material infiltration tank also includes a lifting mechanism (6) for driving the storage container to rise and fall in a vertical direction, wherein the lifting mechanism (6) includes: a lifting shaft (601), a lifting wheel (602) and a traction rope (603); wherein: A gantry (3) is vertically fixed above the infiltration box (1), a lifting shaft (601) is horizontally and rotatably arranged inside the gantry (3), and at least two lifting wheels (602) are spaced apart and coaxially rotatably arranged on the lifting shaft (601), and each of the lifting wheels (602) is fixedly provided with a traction rope (603) that can be wound thereon, and the free end of each traction rope (603) is fixed on the storage container.

5. The medicinal material infiltration tank according to claim 4, characterized in that: A fixing plate is symmetrically and horizontally fixedly arranged on the ring body (201) at the bottom end of the storage container, and the free ends of the two traction ropes (603) are respectively fixed on the fixing plate.

6. The medicinal material infiltration tank according to claim 5, characterized in that: The infiltration box (1) is internally spaced and vertically fixed with second longitudinal guide rods (10) adapted to the two fixed plates, each of the fixed plates is vertically penetrated with a guide hole adapted to the corresponding second longitudinal guide rod (10), and each of the fixed plates can be slidably assembled on the second longitudinal guide rod (10) through the guide hole.

7. The medicinal material infiltration tank according to claim 4, characterized in that: The gantry (3) is also provided with a power assembly (8) for driving the counterweight (7) to rise and fall in a vertical direction, and the power assembly (8) comprises: a winding shaft, a winding wheel, a driving motor and a rope; wherein: A vertical plate is fixedly arranged inside the gantry (3) above the lifting shaft (601), and a winding shaft is horizontally and rotatably arranged between the two vertical plates. The winding shafts located on both sides of the lifting shaft (601) are coaxially fixed with at least two winding wheels, and each winding wheel is fixed with a rope, and the free end of each rope is fixed to the counterweight block (7). A driving motor is horizontally fixedly arranged on any of the vertical plates, and the driving motor is coaxially connected to the winding shaft through a coupling.

8. The medicinal material infiltration tank according to claim 4, characterized in that: A lifting motor for driving the lifting shaft (601) to rotate is fixedly arranged horizontally on the gantry (3), and the lifting motor is coaxially connected to the lifting shaft (601) via a coupling.

Citation Information

Patent Citations

  • Horizontal traditional Chinese medicinal material infiltration tank for traditional Chinese medicinal material processing

    CN211535667U