Algal traditional Chinese medicine fermentation culture tank

By designing a light-adjusting mechanism in the algae-based traditional Chinese medicine fermentation tank, and using rotary and linear drive components to adjust the flexible light filter, the problem of the inability to flexibly adjust the light in existing light-based fermenters was solved, thus improving fermentation efficiency and adaptability.

CN120699742BActive Publication Date: 2026-03-24QINGZHOU JINGCHENG MEDICINE EQUIP MFG
View PDF 1 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-01
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

Existing light-based fermenters cannot flexibly adjust the specific color of sunlight according to the type and growth stage of algae, resulting in poor fermentation efficiency.

Method used

An algae-based traditional Chinese medicine fermentation tank was designed. A flexible filter can be unwound and rewound through a filter adjustment mechanism. Different colors of light can be switched according to the type and growth stage of the algae. The tank includes a filter unwinding component, a toggle winding component, and a switching drive component. The flexible filter can be precisely adjusted by using a rotary drive and a linear drive to work together.

Benefits of technology

It achieves specific light requirements based on algae species and growth stages, improving fermentation efficiency and effectiveness, and enhancing the adaptability and flexibility of the fermenter.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120699742B_ABST
    Figure CN120699742B_ABST
Patent Text Reader

Abstract

The application provides an algae traditional Chinese medicine fermentation culture tank, which comprises a support and a tank body installed on the support, and is characterized in that one side of the tank body is provided with a light filtering adjusting mechanism; the light filtering adjusting mechanism comprises a light filtering unwinding assembly, which unwinds a plurality of groups of light filters; and a dialing surrounding assembly, which pulls out the flexible light filter on the light filtering unwinding assembly. When it is needed to switch to the unwinding part of other specifications (for example, a green light filter), a first rotary drive member drives a swing rod to swing, a sliding rod slides along a second section to a first section, a second rotary drive member drives an unwinding shaft to rotate to wind the flexible light filter, after winding is completed, a telescopic rod is driven to retract away from a positioning rod; a second rotary drive member drives a rotating rod to rotate, and drives the unwinding part of the green light filter specification to be located at an unwinding position; and specific colors in sunlight can be screened out and irradiated in the tank body according to the types of algae and different growth stages of algae.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of algal traditional Chinese medicine fermentation technology, and in particular to an algal traditional Chinese medicine fermentation culture tank. Background Technology

[0002] Algae-based Chinese medicines are a type of medicinal material in traditional Chinese medicine that uses aquatic plants such as seaweed and kelp. They have the effects of resolving phlegm and dissipating nodules, promoting diuresis and reducing swelling, and are often used to treat diseases such as goiter, scrofula, and edema.

[0003] Chinese Patent Application No. 2013201570501 discloses a light-illuminated fermenter, comprising a base with a stirring motor and a light-transmitting cylinder with a stirring shaft, the light-transmitting cylinder being disposed on the base, the stirring shaft being connected to the stirring motor, and a movable light source device disposed above the base, the light source device comprising a cylindrical light source cover and at least two sets of light-emitting tubes, the light-emitting tubes being evenly distributed longitudinally on the inner wall of the light source cover; the light source cover is composed of two semi-circular outer covers, two sides of the two semi-circular outer covers being connected by hinges, and the other two sides being respectively provided with locking switches.

[0004] Sunlight can be divided into red light (wavelength 620-750 nm), orange light (wavelength 590-620 nm), yellow light (wavelength 570-590 nm), green light (wavelength 505-570 nm), cyan light (wavelength 495-505 nm), blue light (wavelength 450-495 nm), and violet light (wavelength 400-450 nm). Different types of algae respond differently to the spectrum; for example, Chlorella prefers blue and red light, while Haematococcus pluvialis prefers green light. Even the same type of algae has different light requirements at different growth stages.

[0005] The aforementioned photo-fermentation tank can ferment algae under light, but it is not convenient to select specific colors of sunlight to irradiate the fermentation tank according to the type of algae and different growth stages of algae. Therefore, we propose a photo-fermentation tank for algae-based traditional Chinese medicine. Summary of the Invention

[0006] The purpose of this invention is to address the shortcomings of existing technologies by providing an algae-based traditional Chinese medicine fermentation culture tank. When switching to a different specification (e.g., a green light filter) unwinding section, a first rotary drive unit drives a swinging rod to swing, and a sliding rod slides along the second section to the first section. Simultaneously, a second rotary drive unit drives an unwinding shaft to rotate and wind up the flexible filter. After winding, a telescopic rod is driven to retract away from the positioning rod. The second rotary drive unit drives a rotating rod to rotate, driving the unwinding section of the green light filter specification to the unwinding position. This facilitates the selection of specific colors from sunlight to irradiate the tank body according to the type of algae and its different growth stages.

[0007] To achieve the above objectives, the present invention provides the following technical solution:

[0008] A fermentation culture tank for algae-based traditional Chinese medicine includes a support frame and a tank body mounted on the support frame, characterized in that a light filtering adjustment mechanism is provided on one side of the tank body;

[0009] The filter adjustment mechanism includes: a filter unwinding assembly, which selects a single specification of flexible filter for unwinding; and a toggle winding assembly, which pulls out the single specification of flexible filter selected by the filter unwinding assembly, so that the flexible filter is wound in a ring around the outside of the tank.

[0010] The filter unwinding assembly includes: a work stand, which is disposed above one side of the tank; a switching drive assembly, which is mounted on the work stand; a turntable, which is mounted on the output end of the switching drive assembly; an unwinding section, which is disposed on the turntable; an arc-shaped block, which is disposed on one side of the tank and has a guide groove inside; and a ring, which is mounted on the arc-shaped block and has a clamping groove inside, the guide groove communicating with the clamping groove, and the ring being disposed on the outside of the tank.

[0011] The unwinding section includes: an unwinding shaft rotatably mounted on the turntable; a flexible filter wound around the unwinding shaft; a positioning rod installed at the end of the flexible filter; and a limiting block provided inside the turntable, with multiple limiting grooves formed inside the limiting block.

[0012] The actuating surround assembly includes: a first rotary drive member mounted above the tank; a swing rod mounted at the output end of the first rotary drive member; a sliding block slidably disposed within the swing rod; and a telescopic rod mounted at the end of the sliding block.

[0013] A sliding rod is installed on the sliding block, and a fixing plate is provided on the tank body. A sliding groove is opened in the fixing plate. The sliding groove includes a first section and a second section. The first section corresponds to the position of the guide groove, and the second section corresponds to the position of the clamping groove.

[0014] The switching drive assembly includes a second rotary drive component mounted on the work frame, with an output shaft mounted at the output end of the second rotary drive component; a linear drive component is mounted on the work frame, with a lifting frame mounted at the output end of the linear drive component, a rotating sleeve rotatably disposed inside the lifting frame, a protrusion installed inside the rotating sleeve, and a groove formed inside the output shaft, with the protrusion sliding within the groove.

[0015] A drive rod is installed at the bottom of the rotating sleeve, a tooth block a is installed at the bottom of the drive rod, a rotating rod is installed on the turntable, a circular groove is opened in the rotating rod, and a ring tooth is provided in the circular groove. The rotating rod is rotatably mounted on the work frame.

[0016] The lifting frame is equipped with a rotating sleeve, a transmission rod is installed at the bottom of the rotating sleeve, a toothed block b is installed at the bottom of the transmission rod, and a toothed ring is installed inside the unwinding shaft. The rotating sleeve and the rotating sleeve are connected by belt drive.

[0017] The tank is equipped with a stirring mechanism, which stirs the contents of the tank.

[0018] The stirring mechanism includes a third rotary drive component installed at the bottom of the tank, and a stirring block is installed at the output end of the third rotary drive component.

[0019] The beneficial effects of this invention are as follows:

[0020] (1) In this invention, when it is necessary to switch to the unwinding section of other specifications (e.g., green light filter), the first rotary drive drives the swing rod to swing, the sliding rod slides along the second section to the first section, and at the same time the second rotary drive drives the unwinding shaft to rotate to wind up the flexible filter. After winding, the telescopic rod is driven to retract away from the positioning rod; the second rotary drive drives the rotating rod to rotate, driving the unwinding section of the green light filter specification to be in the unwinding position; so as to facilitate the sieving out of the specific color in the sunlight and irradiate the tank according to the type of algae and the different growth stages of the algae.

[0021] (2) In this invention, the first rotary drive unit drives the swing rod to swing, the sliding rod slides in the groove, and drives the telescopic rod to move to the position above the unwinding position positioning rod. The telescopic rod extends and inserts into the positioning rod. The first rotary drive unit drives the swing rod to swing, and the sliding rod slides along the first section to the second section, so that the positioning rod slides along the guide groove to the close-fitting groove. At the same time, the second rotary drive unit drives the unwinding shaft to rotate to unwind the flexible filter, so that the flexible filter also slides along the guide groove to the close-fitting groove. At this time, the flexible filter covers the outside of the light-transmitting area in the middle of the tank and is illuminated by sunlight. Red light can pass through the flexible filter and enter the tank to irradiate the algae.

[0022] (3) In this invention, the second rotary drive can drive the turntable to rotate, and the linear drive can drive the lifting frame to move downward, so that the tooth block a at the bottom of the drive rod meshes with the ring tooth. At this time, the tooth block b is located above the tooth ring and the two do not mesh. The second rotary drive can drive the output shaft to rotate, and drive the rotating rod and the turntable to rotate through the rotating sleeve, drive rod, tooth block a, and ring tooth. The second rotary drive can drive the unwinding shaft of the unwinding part at the unwinding position to rotate, so as to realize the unwinding and rewinding of the flexible filter. The linear drive can drive the lifting frame to move downward, so that the tooth block a at the bottom of the drive rod continues to move downward into the circular groove. At this time, the tooth block a does not mesh with the ring tooth. The tooth block b moves downward and meshes with the tooth ring. The second rotary drive can drive the output shaft to rotate, and drive the unwinding shaft to rotate through the rotating sleeve, belt, rotating sleeve, transmission rod, tooth block b, and tooth ring, so as to realize the unwinding and rewinding of the flexible filter. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0024] Figure 2 This is a schematic diagram of the filter adjustment mechanism of the present invention;

[0025] Figure 3 This is a schematic diagram of the rotating component structure of the present invention;

[0026] Figure 4 For the present invention Figure 3 Enlarged view of point A in the middle;

[0027] Figure 5 This is a schematic diagram of the first angle of the switching drive component of the present invention;

[0028] Figure 6 This is a schematic diagram of the second angle of the switching drive component of the present invention;

[0029] Figure 7 This is a schematic diagram of the unwinding section structure of the present invention;

[0030] Figure 8 This is a cross-sectional schematic diagram of the filter unwinding assembly of the present invention;

[0031] Figure 9 This is a cross-sectional schematic diagram of the unwinding section of the present invention;

[0032] Figure 10 This is a schematic diagram of the slide groove, guide groove, and clamping groove of the present invention;

[0033] Figure 11 This is a schematic diagram of the stirring mechanism of the present invention.

[0034] The reference numerals in the accompanying drawings of this application are as follows: 100, bracket; 101, tank; 2, filter adjustment mechanism; 200, protective cover; 21, filter unwinding assembly; 211, work frame; 212, turntable; 213, unwinding section; 2131, unwinding shaft; 2132, flexible filter; 2133, positioning rod; 214, arc-shaped block; 2141, guide groove; 215, ring; 2151, clamping groove; 216, limiting block; 2161, limiting groove; 22, actuating surround assembly; 221, first rotary drive component; 222, swing rod; 223, sliding block; 224, telescopic rod; 225, sliding rod. 226. Fixed plate; 2261. Slide groove; 22611. First section; 22612. Second section; 23. Switching drive assembly; 231. Second rotary drive component; 232. Output shaft; 2321. Groove; 233. Linear drive component; 234. Lifting frame; 235. Rotating sleeve; 2351. Protrusion; 236. Drive rod; 2361. Tooth block a; 237. Rotating rod; 2371. Circular groove; 238. Ring tooth; 239. Rotating sleeve; 240. Transmission rod; 2401. Tooth block b; 241. Tooth ring; 3. Stirring mechanism; 301. Third rotary drive component; 302. Stirring block. Detailed Implementation

[0035] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0036] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0037] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means two or more, unless otherwise explicitly specified.

[0038] Example 1: As Figures 1-10 As shown, this embodiment provides an algae-based traditional Chinese medicine fermentation culture tank, including a support 100 and a tank body 101 mounted on the support 100. The tank body 101 is characterized by having a filter adjustment mechanism 2 on one side. It should be noted that the flexible filter 2132 in this embodiment is an optical filter device that can be bent, rolled, and fitted to curved surfaces, and is mainly used to control the wavelength range of transmitted light.

[0039] The filter adjustment mechanism 2 includes: a filter unwinding assembly 21, which selects a single-specification flexible filter 2132 for unwinding; and a toggle winding assembly 22, which pulls out the single-specification flexible filter 2132 selected by the filter unwinding assembly 21, so that the flexible filter 2132 is wrapped in a ring around the outside of the tank body 101.

[0040] The filter unwinding assembly 21 includes: a work frame 211, which is located above one side of the tank body 101; a switching drive assembly 23, which is mounted on the work frame 211; a turntable 212, which is mounted on the output end of the switching drive assembly 23; an unwinding section 213, which has multiple unwinding sections 213 on the turntable 212; an arc-shaped block 214, which is located on one side of the tank body 101 and has a guide groove 2141 inside; and a ring 215, which is mounted on the arc-shaped block 214 and has a clamping groove 2151 inside. The guide groove 2141 communicates with the clamping groove 2151, and the ring 215 is located on the outside of the tank body 101.

[0041] The unwinding section 213 includes: an unwinding shaft 2131, which is rotatably mounted on a turntable 212; a flexible filter 2132, which is wound around the unwinding shaft 2131; and a positioning rod 2133, which is installed at the end of the flexible filter 2132. A limiting block 216 is provided in the turntable 212, and multiple limiting grooves 2161 are provided in the limiting block 216. A positioning hole is provided in the positioning rod 2133. The unwinding shaft 2131 is a damping shaft, meaning that the unwinding shaft 2131 does not rotate with the turntable 212 when no external force is applied.

[0042] The actuating surround assembly 22 includes: a first rotary drive 221, which is mounted above the tank 101; a swing rod 222, which is mounted at the output end of the first rotary drive 221; a sliding block 223, which is slidably disposed within the swing rod 222; and a telescopic rod 224, which is mounted at the end of the sliding block 223. It should be noted that the telescopic rod 224 is existing technology and will not be described in detail here. A miniature electric push rod is preferred. The sliding block 223 is a square block.

[0043] A sliding rod 225 is installed on the sliding block 223, and a fixing plate 226 is provided on the tank body 101. A sliding groove 2261 is opened in the fixing plate 226. The sliding groove 2261 includes a first section 22611 and a second section 22612. The first section 22611 corresponds to the guide groove 2141, and the second section 22612 corresponds to the abutment groove 2151. Specifically: Figure 10 As shown, when the sliding rod 225 slides in the first section 22611, the telescopic rod 224 drives the positioning rod 2133 to slide in the guide groove 2141. When the sliding rod 225 slides in the second section 22612, the telescopic rod 224 drives the positioning rod 2133 to slide in the clamping groove 2151.

[0044] In this embodiment, the unwinding section 213 consists of multiple groups, and the flexible filters 2132 in different groups have different specifications. Specifically, the flexible filters 2132 in different groups control different wavelength ranges of transmitted light. The middle of the can 101 is a light-transmitting area made of glass. The second rotary drive 231 drives the rotating rod 237 to rotate, so that the unwinding section 213 of a specific specification (e.g., a red light filter) is located in the unwinding position. Figure 2 (Point a in the diagram) awaits unwinding;

[0045] The switching drive assembly 23 includes a second rotary drive 231 mounted on the work frame 211, and an output shaft 232 mounted on the output end of the second rotary drive 231; a linear drive 233 is mounted on the work frame 211, and a lifting frame 234 is mounted on the output end of the linear drive 233; a rotating sleeve 235 is rotatably provided inside the lifting frame 234; a protrusion 2351 is installed inside the rotating sleeve 235; a groove 2321 is opened inside the output shaft 232; and the protrusion 2351 slides in the groove 2321.

[0046] The first rotary drive 221 drives the swing rod 222 to swing, the sliding rod 225 slides in the slide groove 2261, drives the telescopic rod 224 to move to the unwinding position above the positioning rod 2133, the telescopic rod 224 extends and inserts into the positioning rod 2133, the first rotary drive 221 drives the swing rod 222 to swing, the sliding rod 225 slides along the first section 22611 to the second section 22612, so that the positioning rod 2133 slides along the guide groove 2141 to the tight groove 2151;

[0047] At the same time, the second rotary drive 231 drives the unwinding shaft 2131 to rotate and unwind the flexible filter 2132, so that the flexible filter 2132 also slides along the guide groove 2141 to the sticking groove 2151. At this time, the flexible filter 2132 covers the outside of the light-transmitting area in the middle of the tank 101 and is illuminated by sunlight. Red light can pass through the flexible filter 2132 and enter the tank 101 to irradiate the algae.

[0048] When it is necessary to switch to the unwinding section 213 of other specifications (such as green light filter), the first rotary drive 221 drives the swing rod 222 to swing, and the sliding rod 225 slides along the second section 22612 to the first section 22611. At the same time, the second rotary drive 231 drives the unwinding shaft 2131 to rotate to wind up the flexible filter 2132. After the winding is completed, the drive telescopic rod 224 retracts away from the positioning rod 2133.

[0049] The second rotary drive 231 drives the rotating rod 237 to rotate, driving the unwinding section 213 of the green light filter specification to the unwinding position. Figure 2 (Point a in the middle); to facilitate the sifting of specific colors in sunlight onto the tank 101 according to the type of algae and different growth stages of algae.

[0050] A drive rod 236 is installed at the bottom of the rotating sleeve 235, and a toothed block a2361 is installed at the bottom of the drive rod 236. A rotating rod 237 is installed on the turntable 212. The rotating rod 237 is rotatably mounted on the work frame 211. A circular groove 2371 is opened in the rotating rod 237, and a ring tooth 238 is provided in the circular groove 2371. A rotating sleeve 239 is rotatably mounted in the lifting frame 234. A transmission rod 240 is installed at the bottom of the rotating sleeve 239, and a toothed block b2401 is installed at the bottom of the transmission rod 240. A toothed ring 241 is provided in the unwinding shaft 2131. The rotating sleeve 235 and the rotating sleeve 239 are connected by belt drive. The rotating rod 237 is a damping rotating shaft, that is, the rotating rod 237 does not rotate with the work frame 211 when no external force is applied.

[0051] In this embodiment, the second rotary drive 231 can drive only the turntable 212 to rotate, and the linear drive 233 drives the lifting frame 234 to move downward, so that the tooth block a2361 at the bottom of the drive rod 236 meshes with the ring tooth 238. At this time, the tooth block b2401 is located above the tooth ring 241, and the two do not mesh. The second rotary drive 231 drives the output shaft 232 to rotate, and drives the rotating rod 237 and the turntable 212 to rotate through the rotating sleeve 235, the drive rod 236, the tooth block a2361, and the ring tooth 238.

[0052] The second rotary drive 231 can drive only the unwinding position. Figure 2 The unwinding shaft 2131 of the unwinding section 213 (at position a) rotates to unwind and rewind the flexible filter 2132, as detailed below:

[0053] The linear drive unit 233 drives the lifting frame 234 to move downward, causing the tooth block a2361 at the bottom of the drive rod 236 to continue moving downward into the circular groove 2371. At this time, the tooth block a2361 does not mesh with the ring tooth 238.

[0054] The toothed block b2401 moves downward and engages with the toothed ring 241. The second rotary drive component 231 drives the output shaft 232 to rotate, which in turn drives the unwinding shaft 2131 to rotate via the rotating sleeve 235, belt, rotating sleeve 239, transmission rod 240, toothed block b2401, and toothed ring 241, thereby realizing the unwinding and rewinding of the flexible filter 2132. A protective cover 200 is provided on one side of the tank body 101, and the protective cover 200 can be connected to the work frame 211.

[0055] Example 2: Figure 11 As shown, components that are the same as or corresponding to those in Embodiment 1 are referred to using the same reference numerals as in Embodiment 1. For simplicity, only the differences from Embodiment 1 are described below. The difference between Embodiment 2 and Embodiment 1 is as follows:

[0056] In this embodiment, a stirring mechanism 3 is provided inside the tank 101, which stirs the contents of the tank 101. The stirring mechanism 3 includes a third rotary drive 301 installed at the bottom of the tank 101, and a stirring block 302 installed at the output end of the third rotary drive 301. The third rotary drive 301 drives the stirring block 302 to stir the algae and culture medium inside the tank 101, thereby enhancing the fermentation effect.

[0057] Work steps:

[0058] Preparation process: The unwinding section 213 consists of multiple sets, and the flexible filters 2132 in different sets have different specifications. Specifically, the flexible filters 2132 in different sets control the wavelength range of transmitted light differently. The middle of the can body 101 is a light-transmitting area made of glass. The second rotary drive 231 drives the rotating rod 237 to rotate, so that the unwinding section 213 of a specific specification (e.g., a red light filter) is in the unwinding position. Figure 2 (Point a in the diagram) awaits unwinding;

[0059] Specific specification light irradiation process: The first rotary drive 221 drives the swing rod 222 to swing, the sliding rod 225 slides in the slide groove 2261, drives the telescopic rod 224 to move to the unwinding position above the positioning rod 2133, the telescopic rod 224 extends and inserts into the positioning rod 2133, the first rotary drive 221 drives the swing rod 222 to swing, the sliding rod 225 slides along the first section 22611 to the second section 22612, so that the positioning rod 2133 slides along the guide groove 2141 to the tight groove 2151;

[0060] At the same time, the second rotary drive 231 drives the unwinding shaft 2131 to rotate and unwind the flexible filter 2132, so that the flexible filter 2132 also slides along the guide groove 2141 to the sticking groove 2151. At this time, the flexible filter 2132 covers the outside of the light-transmitting area in the middle of the tank 101 and is illuminated by sunlight. Red light can pass through the flexible filter 2132 and enter the tank 101 to irradiate the algae.

[0061] Specification switching process: When it is necessary to switch to the unwinding section 213 of other specifications (such as green light filter), the first rotary drive 221 drives the swing rod 222 to swing, and the sliding rod 225 slides along the second section 22612 to the first section 22611. At the same time, the second rotary drive 231 drives the unwinding shaft 2131 to rotate to wind up the flexible filter 2132. After the winding is completed, the drive telescopic rod 224 retracts away from the positioning rod 2133.

[0062] The second rotary drive 231 drives the rotating rod 237 to rotate, driving the unwinding section 213 of the green light filter specification to the unwinding position. Figure 2 (Point a in the text); This facilitates the sifting of specific colors from sunlight onto the tank 101 based on the type of algae and its different growth stages.

[0063] Drive switching process: The second rotary drive 231 can drive only the turntable 212 to rotate, and the linear drive 233 drives the lifting frame 234 to move downward, so that the tooth block a2361 at the bottom of the drive rod 236 meshes with the ring tooth 238. At this time, the tooth block b2401 is located above the tooth ring 241 and the two do not mesh. The second rotary drive 231 drives the output shaft 232 to rotate, and drives the rotating rod 237 and the turntable 212 to rotate through the rotating sleeve 235, drive rod 236, tooth block a2361, and ring tooth 238.

[0064] The second rotary drive 231 can drive only the unwinding position. Figure 2 The unwinding shaft 2131 of the unwinding section 213 (at position a) rotates to unwind and rewind the flexible filter 2132, as detailed below:

[0065] The linear drive unit 233 drives the lifting frame 234 to move downward, causing the tooth block a2361 at the bottom of the drive rod 236 to continue moving downward into the circular groove 2371. At this time, the tooth block a2361 does not mesh with the ring tooth 238.

[0066] The toothed block b2401 moves downward and meshes with the toothed ring 241. The second rotary drive 231 drives the output shaft 232 to rotate. Through the rotating sleeve 235, belt, rotating sleeve 239, transmission rod 240, toothed block b2401, and toothed ring 241, the unwinding shaft 2131 is rotated, thereby realizing the unwinding and rewinding of the flexible filter 2132.

[0067] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. An algal traditional Chinese medicine fermentation culture tank, comprising a support (100) and a tank body (101) mounted on the support (100), characterized in that, The filter adjusting mechanism (2) is arranged on one side of the tank body (101); The filter adjusting mechanism (2) comprises: The filter unwinding assembly (21) selects a single specification of flexible filter (2132) to unwind; the dialing and winding assembly (22) pulls out the single specification of flexible filter (2132) selected by the filter unwinding assembly (21), so that the flexible filter (2132) is wound in a ring shape outside the tank body (101); The filter unwinding assembly (21) comprises: a working frame (211) arranged above one side of the tank body (101); a switching drive assembly (23) installed on the working frame (211); a turntable (212) installed on the output end of the switching drive assembly (23); a plurality of unwinding parts (213) arranged on the turntable (212); an arc-shaped block (214) arranged on one side of the tank body (101), and a guide groove (2141) formed in the arc-shaped block (214); and a circular ring (215) installed on the arc-shaped block (214), wherein a close-fitting groove (2151) is formed in the circular ring (215), the guide groove (2141) and the close-fitting groove (2151) are in communication, and the circular ring (215) is arranged outside the tank body (101); The dialing and winding assembly (22) comprises: a first rotary drive (221) installed above the tank body (101); a swing rod (222) installed on the output end of the first rotary drive (221); a sliding block (223) slidingly arranged in the swing rod (222); and a telescopic rod (224) installed at the end of the sliding block (223).

2. The algae traditional Chinese medicine fermentation culture tank according to claim 1, characterized in that, The unwinding part (213) comprises: An unwinding shaft (2131) rotatably arranged on the turntable (212); A flexible filter (2132) wound on the unwinding shaft (2131); A positioning rod (2133) installed at the end of the flexible filter (2132), and a limiting block (216) arranged in the turntable (212), wherein a plurality of limiting grooves (2161) are formed in the limiting block (216).

3. The algae traditional Chinese medicine fermentation culture tank according to claim 2, characterized in that, A sliding rod (225) is installed on the sliding block (223), a fixed plate (226) is arranged on the tank body (101), a sliding groove (2261) is formed in the fixed plate (226), and the sliding groove (2261) comprises a first section (22611) and a second section (22612), the first section (22611) corresponds in position to the guide groove (2141), and the second section (22612) corresponds in position to the close-fitting groove (2151).

4. The algae traditional Chinese medicine fermentation culture tank according to claim 3, characterized in that, The switching drive assembly (23) includes a second rotary drive (231) mounted on the work frame (211), and an output shaft (232) is mounted on the output end of the second rotary drive (231). A linear drive unit (233) is installed on the work frame (211). A lifting frame (234) is installed at the output end of the linear drive unit (233). A rotating sleeve (235) is rotatably provided inside the lifting frame (234). A protrusion (2351) is installed inside the rotating sleeve (235). A groove (2321) is opened inside the output shaft (232). The protrusion (2351) slides in the groove (2321).

5. The algae traditional Chinese medicine fermentation culture tank according to claim 4, characterized in that, A drive rod (236) is installed at the bottom of the rotating sleeve (235), and a tooth block a (2361) is installed at the bottom of the drive rod (236). A rotating rod (237) is installed on the turntable (212), and the rotating rod (237) is rotatably mounted on the work frame (211). A circular groove (2371) is opened in the rotating rod (237), and a ring tooth (238) is provided in the circular groove (2371). The lifting frame (234) is provided with a rotating sleeve (239) that rotates inside. A transmission rod (240) is installed at the bottom of the rotating sleeve (239). A toothed block b (2401) is installed at the bottom of the transmission rod (240). A toothed ring (241) is provided inside the unwinding shaft (2131). The rotating sleeve (235) and the rotating sleeve (239) are connected by belt drive.

6. The algae traditional Chinese medicine fermentation culture tank according to claim 5, characterized in that, The tank (101) is equipped with a stirring mechanism (3), which stirs the contents of the tank (101).

7. The algae traditional Chinese medicine fermentation culture tank according to claim 6, characterized in that, The stirring mechanism (3) includes a third rotary drive (301) installed at the bottom of the tank (101), and a stirring block (302) is installed at the output end of the third rotary drive (301).

Citation Information

Patent Citations

  • Light-filling device for liquid fermentation of light-loving bacteria

    CN111893025A