Preparation equipment and preparation method of a medicine for treating gynecological inflammation

Through innovative design of drug preparation equipment, the problem of low efficiency in the industrial production of traditional Chinese medicine decoctions has been solved. It achieves efficient stirring and rapid cooling, reduces preparation costs, and is suitable for the industrial production of gynecological inflammation drugs.

CN116831915BActive Publication Date: 2026-05-12JIAN CHANGJIANG PHARM CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIAN CHANGJIANG PHARM CO LTD
Filing Date
2023-07-07
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

In existing technologies, the industrial production efficiency of traditional Chinese medicine decoctions is low, resulting in high preparation costs and failing to meet the needs of mass production.

Method used

The drug preparation equipment includes a driving mechanism, a sealing mechanism, a separation and slag discharge mechanism, a filtration triggering mechanism, an internal treatment mechanism, and a homogenizing mechanism. The driving mechanism synchronously drives the sealing mechanism and the homogenizing mechanism to achieve efficient stirring and cooling of materials in the upper and lower chambers. The filtration triggering mechanism is used to achieve rapid filtration and mixing.

Benefits of technology

It improves the automation level of the preparation process, shortens the decoction transfer time, accelerates the cooling rate of the mixture, and reduces the preparation cost, making it suitable for the industrial production of gynecological inflammation drugs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a preparation method of a medicine for treating gynecological inflammation and relates to the technical field of medicine preparation. The preparation method of the medicine for treating gynecological inflammation is realized by a medicine preparation device. The medicine preparation device comprises an outer treatment kettle. A driving mechanism is arranged in the outer treatment kettle. A sealing mechanism, a separation and residue discharging mechanism, a filtering triggering mechanism, an inner treatment mechanism and a homogenizing mechanism are sequentially and telescopically arranged on the outer side of the driving mechanism from top to bottom. The separation and residue discharging mechanism divides the inner cavity of the outer treatment kettle into an upper chamber and a lower chamber. The inner treatment mechanism is internally provided with an inner chamber. The application has high automation degree, can effectively shorten the time required for decoction transfer, accelerate the cooling speed of mixed materials, avoid the increase of preparation cost caused by the decrease of preparation efficiency and is more suitable for the industrialized production of the medicine for treating gynecological inflammation.
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Description

Technical Field

[0001] This invention relates to the field of drug preparation technology, and in particular to a method for preparing a drug for treating gynecological inflammation. Background Technology

[0002] Gynecological inflammation refers to diseases caused by infection of the female reproductive system. Common gynecological inflammations in clinical practice include vaginitis, cervicitis, pelvic inflammatory disease, endometritis, and adnexitis. Due to the special nature of the female reproductive organs, gynecological inflammation is a common and frequently occurring disease in adult women. Its clinical manifestations are diverse, its causes are complex, and it is often accompanied by multiple serious complications, which greatly affects women's lives and work.

[0003] Patent CN103623182B discloses a drug for treating gynecological diseases and its preparation method. It is composed of the following medicinal materials in parts by weight: 5-20 parts dragon bone, 5-20 parts fox nut, 3-10 parts honeysuckle, 5-20 parts dandelion, 3-10 parts menthol, 3-10 parts ginkgo, 5-20 parts oyster shell, 5-20 parts patrinia, 3-15 parts wolfberry, 3-15 parts white peony root, 3-15 parts scutellaria, 5-20 parts safflower, 3-15 parts motherwort, 3-10 parts chicken blood vine, 3-10 parts rose root, 3-10 parts forsythia, 3-10 parts aloe vera, 3-15 parts chuanxiong, and 5-20 parts angelica. This invention uses herbal plants, has low toxicity and side effects, and is in powder form. It dissolves and is quickly absorbed when applied externally, exhibiting good anti-inflammatory and antibacterial effects with rapid results.

[0004] The above-mentioned scheme also discloses the preparation method of the drug. However, after practical application by those skilled in the art, it was found that the preparation method still has some drawbacks. The most obvious one is that after the preparation of the traditional Chinese medicine decoction is completed, because the amount of traditional Chinese medicine decoction required for a single batch in the industrial production process is large, it often takes a long time to input the traditional Chinese medicine decoction into the decoction prepared in the previous step. This will have a significant impact on the preparation efficiency of the finished drug. The reduction in preparation efficiency will lead to a significant increase in preparation cost.

[0005] Therefore, it is necessary to invent a method for preparing a drug to treat gynecological inflammation in order to solve the above problems. Summary of the Invention

[0006] The purpose of this invention is to provide a method for preparing a drug for treating gynecological inflammation, so as to solve the problems mentioned in the background art.

[0007] To achieve the above objectives, the present invention provides the following technical solution: a method for preparing a drug for treating gynecological inflammation, wherein the method for preparing the drug for treating gynecological inflammation is implemented by a drug preparation device, the drug preparation device including an external processing vessel, a driving mechanism being provided inside the external processing vessel, and a sealing mechanism, a slag-discharging mechanism, a filtration triggering mechanism, an internal processing mechanism, and a homogenizing mechanism being sequentially sleeved on the outside of the driving mechanism from top to bottom; the slag-discharging mechanism divides the inner cavity of the external processing vessel into an upper chamber and a lower chamber, and the internal processing mechanism is provided with an inner chamber;

[0008] The drive mechanism includes a drive shaft, a drive motor, an active air supply pipe, an air hole, an upper sliding groove, and a lower sliding groove;

[0009] The drive shaft passes through the external treatment vessel and is rotatably connected to the external treatment vessel through a bearing. The drive motor is fixedly installed on the top of the external treatment vessel and is connected to the drive shaft for transmission. The active air supply pipe is connected to the top of the drive shaft through a rotary joint. The air hole is opened on the top front of the drive shaft. The upper sliding groove and the lower sliding groove are sequentially installed through the side of the drive shaft from top to bottom.

[0010] The sealing mechanism includes a sealing plate, a sealing sleeve, a clearance groove, and a sealing cover;

[0011] The sealing plate is sleeved on the outside of the drive shaft and is connected to the drive shaft via a reciprocating thread. The sealing plate is slidably nested inside the external treatment vessel in the vertical direction. The sealing sleeve is slidably nested on the outside of the drive shaft in the vertical direction and is rotatably nested at the bottom of the sealing plate via a bearing. The clearance groove is opened on the front of the sealing sleeve. The sealing cover is slidably sleeved on the outside of the drive shaft and is fixedly connected to the sealing cover.

[0012] The slag discharge mechanism includes a partition plate, a sliding rod, and a slag discharge plate;

[0013] The partition plate is fixedly installed at the top of the inner cavity of the external treatment vessel, the sliding rod slides through the sealing cover and fits against the top of the partition plate, and the slag discharge plate is fixedly installed at the bottom of the outer side of the sliding rod.

[0014] Preferably, the filter triggering mechanism includes a cylindrical filter screen, a sealing platform, a spring, a limiting ring, and an I-shaped rod.

[0015] Preferably, the cylindrical filter screen slides vertically through the partition plate, and the sealing platform, spring, and limiting ring are sequentially sleeved on the outside of the drive shaft from top to bottom. The cylindrical filter screen is fixedly connected to the sealing platform, one end of the spring is fixedly connected to the sealing platform, and the other end is fixedly connected to the limiting ring. The limiting ring is rotatably connected to the drive shaft through a bearing. The I-shaped rod slides vertically inside the upper and lower sliding grooves, and the top end of the I-shaped rod is fixedly connected to the sealing platform.

[0016] Preferably, the internal treatment mechanism includes an internal treatment vessel, a sealing tube, and a fixing rod.

[0017] Preferably, the inner treatment vessel is located below the limiting ring and is slidably sleeved on the outside of the sealing tube. The sealing tube is slidably sleeved on the outside of the drive shaft in the vertical direction and is fixedly connected to the I-shaped rod. The fixing rod is fixedly installed between the inner wall of the inner treatment vessel and the inner wall of the outer treatment vessel.

[0018] Preferably, the homogenization mechanism includes a fixing ring, a draining scraper, and a stirring rod.

[0019] Preferably, the fixing ring is fixedly sleeved on the outside of the drive shaft, and multiple drainage scrapers and stirring rods are provided. Multiple drainage scrapers are evenly fixed on the outside of the fixing ring, and multiple stirring rods are evenly fixed on the top of multiple drainage scrapers.

[0020] Preferably, the preparation method of the drug for treating gynecological inflammation specifically includes the following steps:

[0021] S1. Add the Chinese herbal raw materials to the upper chamber and add sufficient water. Add water, glycerin and xanthan gum to the lower chamber. Add emulsifier, cetearyl alcohol, squalane, isooctyl palmitate and caprylic / capric triglyceride to the inner chamber through the feed port on the back of the outer processing vessel. Use the heating resistors embedded in the outer and inner processing vessels to heat the materials in the three chambers respectively, and start the drive motor at the same time.

[0022] S2. After the drive motor starts, it drives the drive shaft to rotate. When the drive shaft rotates, it drives the slag discharge plate to rotate through the sealing sleeve, sealing cover and sliding rod. It drives the liquid discharge scraper and stirring rod to rotate through the fixed ring, thereby stirring the materials in the upper chamber and lower chamber respectively. When the drive shaft rotates, it drives the sealing plate to continue to descend. When the sealing plate descends, it drives the sealing sleeve, sealing cover, cylindrical filter screen and sealing platform to descend. When the sealing platform descends, it compresses the spring and drives the sealing pipe to descend through the I-shaped rod.

[0023] S3. When the sealing plate descends to the first threshold, the sealing tube moves out from the inside of the inner treatment vessel, thereby releasing the seal on the inner treatment vessel. At this time, the sterilized mixture inside the inner treatment vessel falls into the material in the lower chamber under the action of gravity.

[0024] S4. When the sealing plate descends to the second threshold, the horizontal height of the sealing plate is lower than the height of the feed hopper on the left side of the outer treatment vessel. At this time, a sealed space is formed inside the upper chamber. Subsequently, as the sealing plate continues to descend, the air pressure inside the upper chamber continues to increase.

[0025] S5. When the sealing plate descends to the third threshold, the sealing sleeve moves the clearance groove to the outside of the air hole. At this time, the cold air flow input into the drive shaft through the active air supply pipe continuously passes through the air hole and clearance groove into the upper sealing chamber, thereby increasing the pressure in the upper sealing chamber and cooling the decoction.

[0026] S6. When the sealing plate descends to the fourth threshold, the sealing platform moves out from the inside of the partition plate, thereby releasing the blockage of the partition plate. At this time, the decoction inside the upper chamber quickly passes through the cylindrical filter under pressure and enters the inside of the cylindrical filter, and then enters the lower chamber for mixing.

[0027] S7. When the sealing plate descends to the fourth threshold, the mixed decoction is cooled and the finished drug product is obtained. At the same time, the sealing plate moves to the lowest end of the reciprocating thread on the outside of the drive shaft. Subsequently, as the drive shaft continues to rotate, the sealing plate rises and resets.

[0028] S8. During the resetting process of the sealing plate, the Chinese medicine residue and finished medicine are discharged through the discharge gate and discharge pipe on the right side of the external treatment vessel, respectively. During the output of the Chinese medicine residue, the slag discharge plate continuously pushes the Chinese medicine residue on the top of the partition plate.

[0029] The technical effects and advantages of this invention are as follows:

[0030] This invention incorporates a driving mechanism, a sealing mechanism, a separating slag discharge mechanism, a filtering triggering mechanism, an internal treatment mechanism, and a homogenizing mechanism. The driving mechanism synchronously drives the sealing and homogenizing mechanisms, thereby achieving stirring of materials in the upper and lower chambers. Furthermore, during the driving process, the sealing mechanism continuously pushes the filtering triggering mechanism, causing it to descend and simultaneously trigger the internal treatment mechanism. This sequentially completes the first mixing, sealing of the upper chamber, input of cold air, and the second mixing operation. Compared to similar devices or methods in the prior art, this invention has a high degree of automation, effectively shortens the time required for decoction transfer, and accelerates the cooling rate of the mixed materials, avoiding increased preparation costs due to reduced preparation efficiency. It is more suitable for the industrial production of drugs for treating gynecological inflammation. Attached Figure Description

[0031] Figure 1 This is a schematic diagram of the overall front cross-sectional structure of the present invention.

[0032] Figure 2 This is a schematic diagram of the drive mechanism structure of the present invention.

[0033] Figure 3 This is a front view cross-sectional structural diagram of the sealing mechanism, the slag discharge mechanism, and the filter triggering mechanism of the present invention.

[0034] Figure 4This is a frontal cross-sectional view of the internal processing mechanism of the present invention.

[0035] Figure 5 This is a frontal cross-sectional view of the homogeneous mechanism of the present invention.

[0036] In the diagram: 1. External treatment vessel; 2. Drive mechanism; 21. Drive shaft; 22. Drive motor; 23. Active air supply pipe; 24. Air hole; 25. Upper sliding groove; 26. Lower sliding groove; 3. Sealing mechanism; 31. Sealing plate; 32. Sealing sleeve; 33. Clearance groove; 34. Sealing cover; 4. Separating and slag discharge mechanism; 41. Separating plate; 42. Sliding rod; 43. Slag discharge plate; 5. Filter triggering mechanism; 51. Cylindrical filter screen; 52. Sealing platform; 53. Spring; 54. Limiting ring; 55. I-shaped rod; 6. Internal treatment mechanism; 61. Internal treatment vessel; 62. Sealing pipe; 63. Fixing rod; 7. Homogenizing mechanism; 71. Fixing ring; 72. Drainage scraper; 73. Stirring rod. Detailed Implementation

[0037] 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.

[0038] Example 1

[0039] This invention provides, for example Figure 1-5 The present invention discloses a method for preparing a drug for treating gynecological inflammation. The method for preparing the drug for treating gynecological inflammation is realized by a drug preparation device. The drug preparation device includes an external processing vessel 1. The external processing vessel 1 is provided with a driving mechanism 2. The driving mechanism 2 is provided with a sealing mechanism 3, a slag-discharging mechanism 4, a filter triggering mechanism 5, an internal processing mechanism 6, and a homogenizing mechanism 7 arranged sequentially from top to bottom on the outside of the driving mechanism 2. The slag-discharging mechanism 4 divides the inner cavity of the external processing vessel 1 into an upper chamber and a lower chamber. The internal processing mechanism 6 is provided with an inner chamber.

[0040] like Figure 2 As shown, the drive mechanism 2 includes a drive shaft 21, a drive motor 22, an active air supply pipe 23, an air hole 24, an upper sliding groove 25, and a lower sliding groove 26. The drive shaft 21 passes through the external treatment vessel 1 and is rotatably connected to the external treatment vessel 1 through a bearing. The drive motor 22 is fixedly installed on the top of the external treatment vessel 1 and is drive-connected to the drive shaft 21. The active air supply pipe 23 is connected to the top of the drive shaft 21 through a rotary joint. The air hole 24 is opened on the top front of the drive shaft 21. The upper sliding groove 25 and the lower sliding groove 26 are sequentially installed through the side of the drive shaft 21 from top to bottom.

[0041] like Figure 3 As shown, the sealing mechanism 3 includes a sealing plate 31, a sealing sleeve 32, a clearance groove 33, and a sealing cover 34. The sealing plate 31 is sleeved on the outside of the drive shaft 21 and is connected to the drive shaft 21 via a reciprocating thread. The sealing plate 31 is slidably nested inside the external treatment vessel 1 in the vertical direction. The sealing sleeve 32 is slidably nested on the outside of the drive shaft 21 in the vertical direction and is rotatably nested at the bottom of the sealing plate 31 via a bearing. The clearance groove 33 is formed on the front of the sealing sleeve 32. The sealing cover 34 is slidably sleeved on the outside of the drive shaft 21 and is fixedly connected to the sealing cover 34.

[0042] By setting the above structure, the sealing plate 31 is continuously lowered when the drive shaft 21 rotates. When the horizontal height of the sealing plate 31 is lower than the height of the feed hopper on the left side of the outer processing vessel 1, a sealed space is formed inside the upper chamber. As the sealing plate 31 continues to descend, the air pressure inside the upper chamber continuously increases. When the sealing sleeve 32 moves the clearance groove 33 to the outside of the air hole 24, the cold airflow input into the drive shaft 21 by the active air supply pipe 23 continuously passes through the air hole 24 and the clearance groove 33 and enters the sealed upper chamber, thereby increasing the pressure in the sealed upper chamber again and cooling the decoction.

[0043] like Figure 3 As shown, the slag discharge mechanism 4 includes a partition plate 41, a sliding rod 42, and a slag discharge plate 43. The partition plate 41 is fixedly installed at the top of the inner cavity of the external treatment vessel 1. The sliding rod 42 slides through the sealing cover 34 and is fitted to the top of the partition plate 41. The slag discharge plate 43 is fixedly installed at the bottom of the outer side of the sliding rod 42.

[0044] By setting the above structure, the drive motor 22 can drive the drive shaft 21 to rotate after starting. When the drive shaft 21 rotates, it drives the slag discharge plate 43 to rotate through the sealing sleeve 32, the sealing cover 34 and the sliding rod 42, thereby stirring the material in the upper chamber. In addition, during the output of Chinese medicine slag, the slag discharge plate 43 continuously pushes the Chinese medicine slag on the top of the partition plate 41.

[0045] like Figure 3As shown, the filter triggering mechanism 5 includes a cylindrical filter screen 51, a sealing platform 52, a spring 53, a limiting ring 54, and an I-shaped rod 55. The cylindrical filter screen 51 slides vertically through the partition plate 41. The sealing platform 52, spring 53, and limiting ring 54 are sequentially sleeved on the outside of the drive shaft 21 from top to bottom. The cylindrical filter screen 51 is fixedly connected to the sealing platform 52. One end of the spring 53 is fixedly connected to the sealing platform 52, and the other end is fixedly connected to the limiting ring 54. The limiting ring 54 is rotatably connected to the drive shaft 21 through a bearing. The I-shaped rod 55 slides vertically inside the upper sliding groove 25 and the lower sliding groove 26. The top end of the I-shaped rod 55 is fixedly connected to the sealing platform 52.

[0046] By setting up the above structure, the sealing plate 31 is continuously lowered when the drive shaft 21 rotates. When the sealing plate 31 lowers, the sealing sleeve 32, sealing cover 34, cylindrical filter screen 51 and sealing platform 52 are lowered. When the sealing platform 52 lowers, it compresses the spring 53 until the sealing platform 52 moves out from the inside of the partition plate 41, thereby releasing the blockage of the partition plate 41. At this time, the soup inside the upper chamber quickly passes through the cylindrical filter screen 51 under pressure and enters the interior of the cylindrical filter screen 51. Then it enters the lower chamber for mixing through the cylindrical filter screen 51.

[0047] like Figure 4 As shown, the internal processing mechanism 6 includes an internal processing vessel 61, a sealing tube 62, and a fixing rod 63. The internal processing vessel 61 is located below the limiting ring 54 and is slidably sleeved on the outside of the sealing tube 62. The sealing tube 62 is slidably sleeved on the outside of the drive shaft 21 in the vertical direction and is fixedly connected to the I-shaped rod 55. The fixing rod 63 is fixedly disposed between the inner processing vessel 61 and the inner wall of the outer processing vessel 1.

[0048] By setting up the above structure, emulsifier, cetearyl alcohol, squalane, isooctyl palmitate and caprylic / capric triglyceride are added to the inner chamber through the feed port on the back of the outer processing vessel 1. Then, the heating resistor embedded in the inner processing vessel 61 is used to heat the material in the inner chamber. In addition, during the descent of the I-shaped rod 55, it continuously drives the sealing tube 62 to descend until the sealing tube 62 is removed from the inside of the inner processing vessel 61, thereby releasing the seal on the inner processing vessel 61. At this time, the sterilized mixture inside the inner processing vessel 61 falls into the material in the lower chamber under the action of gravity.

[0049] like Figure 5As shown, the homogenizing mechanism 7 includes a fixing ring 71, a drain scraper 72, and a stirring rod 73. The fixing ring 71 is fixedly sleeved on the outside of the drive shaft 21. Multiple drain scrapers 72 and stirring rods 73 are provided. Multiple drain scrapers 72 are evenly fixed on the outside of the fixing ring 71, and multiple stirring rods 73 are evenly fixed on the top of multiple drain scrapers 72.

[0050] By setting the above structure, the drive motor 22 can drive the drive shaft 21 to rotate after starting. When the drive shaft 21 rotates, it drives the drain scraper 72 and the stirring rod 73 to rotate through the fixing ring 71, thereby stirring and mixing the material in the lower chamber.

[0051] Example 2

[0052] The preparation method of the drug for treating gynecological inflammation specifically includes the following steps:

[0053] S1. Add the Chinese herbal raw materials to the upper chamber and add sufficient water. Add water, glycerin and xanthan gum to the lower chamber. Add emulsifier, cetearyl alcohol, squalane, isooctyl palmitate and caprylic / capric triglyceride to the inner chamber through the feed port on the back of the outer processing vessel 1. Heat the materials in the three chambers using the heating resistors embedded in the outer processing vessel 1 and the inner processing vessel 61 respectively. At the same time, start the drive motor 22.

[0054] S2. After the drive motor 22 starts, it drives the drive shaft 21 to rotate. When the drive shaft 21 rotates, it drives the slag discharge plate 43 to rotate through the sealing sleeve 32, the sealing cover 34 and the sliding rod 42. It drives the liquid discharge scraper 72 and the stirring rod 73 to rotate through the fixing ring 71, thereby stirring the materials in the upper chamber and the lower chamber respectively. When the drive shaft 21 rotates, it drives the sealing plate 31 to continue to descend. When the sealing plate 31 descends, it drives the sealing sleeve 32, the sealing cover 34, the cylindrical filter screen 51 and the sealing platform 52 to descend. When the sealing platform 52 descends, it compresses the spring 53. At the same time, it drives the sealing pipe 62 to descend through the I-shaped rod 55.

[0055] S3. When the sealing plate 31 descends to the first threshold, the sealing tube 62 moves out from the inside of the inner processing vessel 61, thereby releasing the seal on the inner processing vessel 61. At this time, the sterilized mixture inside the inner processing vessel 61 falls into the material in the lower chamber under the action of gravity.

[0056] S4. When the sealing plate 31 descends to the second threshold, the horizontal height of the sealing plate 31 is lower than the height of the feed hopper on the left side of the outer treatment vessel 1. At this time, a closed space is formed inside the upper chamber. Subsequently, as the sealing plate 31 continues to descend, the air pressure inside the upper chamber continues to increase.

[0057] S5. When the sealing plate 31 descends to the third threshold, the sealing sleeve 32 drives the clearance groove 33 to move to the outside of the air hole 24. At this time, the cold air flow input from the active air supply pipe 23 into the drive shaft 21 continuously passes through the air hole 24 and the clearance groove 33 and enters the upper sealed chamber, thereby increasing the pressure in the upper sealed chamber and cooling the decoction.

[0058] S6. When the sealing plate 31 descends to the fourth threshold, the sealing platform 52 moves out from the inside of the partition plate 41, thereby releasing the blockage of the partition plate 41. At this time, the decoction inside the upper chamber quickly passes through the cylindrical filter 51 under pressure and enters the interior of the cylindrical filter 51, and then enters the lower chamber for mixing.

[0059] S7. When the sealing plate 31 descends to the fourth threshold, the mixed decoction is cooled and the finished drug product is obtained. At the same time, the sealing plate 31 moves to the lowest end of the reciprocating thread on the outside of the drive shaft 21. Subsequently, as the drive shaft 21 continues to rotate, the sealing plate 31 rises and resets.

[0060] During the resetting process of the sealing plate 31, the Chinese medicine residue and finished medicine are discharged through the discharge gate and discharge pipe on the right side of the external treatment vessel 1, respectively. During the output of the Chinese medicine residue, the slag discharge plate 43 continuously pushes the Chinese medicine residue on the top of the partition plate 41.

[0061] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A device for preparing a drug for treating gynecological inflammation, characterized in that: The device includes an external treatment vessel (1), which is equipped with a drive mechanism (2). The drive mechanism (2) is fitted with a sealing mechanism (3), a slag discharge mechanism (4), a filter triggering mechanism (5), an internal treatment mechanism (6), and a homogenizing mechanism (7) in sequence from top to bottom. The slag discharge mechanism (4) divides the inner cavity of the external treatment vessel (1) into an upper chamber and a lower chamber. The internal treatment mechanism (6) is equipped with an inner chamber. The drive mechanism (2) includes a drive shaft (21), a drive motor (22), an active air supply pipe (23), an air hole (24), an upper sliding groove (25), and a lower sliding groove (26). The drive shaft (21) passes through the external treatment vessel (1) and is rotatably connected to the external treatment vessel (1) through a bearing. The drive motor (22) is fixedly installed on the top of the external treatment vessel (1) and is connected to the drive shaft (21) for transmission. The active air supply pipe (23) is connected to the top of the drive shaft (21) through a rotary joint. The air hole (24) is opened on the top front of the drive shaft (21). The upper sliding groove (25) and the lower sliding groove (26) are sequentially installed on the side of the drive shaft (21) from top to bottom. The sealing mechanism (3) includes a sealing plate (31), a sealing sleeve (32), a clearance groove (33), and a sealing cover (34). The sealing plate (31) is sleeved on the outside of the drive shaft (21) and is connected to the drive shaft (21) via a reciprocating thread. The sealing plate (31) is slidably nested inside the external treatment vessel (1) in the vertical direction. The sealing sleeve (32) is slidably nested on the outside of the drive shaft (21) in the vertical direction and is rotatably nested on the bottom of the sealing plate (31) via a bearing. The clearance groove (33) is opened on the front of the sealing sleeve (32). The sealing cover (34) is slidably sleeved on the outside of the drive shaft (21) and is fixedly connected to the sealing sleeve (32). The slag discharge mechanism (4) includes a partition plate (41), a sliding rod (42), and a slag discharge plate (43). The partition plate (41) is fixedly installed at the top of the inner cavity of the external treatment vessel (1), the sliding rod (42) slides through the sealing cover (34) and is fitted to the top of the partition plate (41), and the slag discharge plate (43) is fixedly installed at the bottom of the outer side of the sliding rod (42). The filter triggering mechanism (5) includes a cylindrical filter screen (51), a sealing platform (52), a spring (53), a limiting ring (54), and an I-shaped rod (55). The cylindrical filter screen (51) slides vertically through the partition plate (41). The sealing platform (52), spring (53) and limiting ring (54) are sequentially sleeved on the outside of the drive shaft (21) from top to bottom. The cylindrical filter screen (51) is fixedly connected to the sealing platform (52). One end of the spring (53) is fixedly connected to the sealing platform (52) and the other end is fixedly connected to the limiting ring (54). The limiting ring (54) is rotatably connected to the drive shaft (21) through a bearing. The I-shaped rod (55) slides vertically inside the upper sliding groove (25) and the lower sliding groove (26). The top end of the I-shaped rod (55) is fixedly connected to the sealing platform (52).

2. The apparatus for preparing a drug for treating gynecological inflammation according to claim 1, characterized in that: The internal processing mechanism (6) includes an internal processing vessel (61), a sealing tube (62), and a fixing rod (63).

3. The equipment for preparing a drug for treating gynecological inflammation according to claim 2, characterized in that: The inner treatment vessel (61) is located below the limiting ring (54) and is slidably sleeved on the outside of the sealing tube (62). The sealing tube (62) is slidably sleeved on the outside of the drive shaft (21) in the vertical direction and is fixedly connected to the I-shaped rod (55). The fixing rod (63) is fixedly installed between the inner treatment vessel (61) and the inner wall of the outer treatment vessel (1).

4. The apparatus for preparing a drug for treating gynecological inflammation according to claim 3, characterized in that: The homogenizing mechanism (7) includes a fixing ring (71), a drain scraper (72), and a stirring rod (73).

5. The apparatus for preparing a drug for treating gynecological inflammation according to claim 4, characterized in that: The fixing ring (71) is fixedly sleeved on the outside of the drive shaft (21). Multiple drainage scrapers (72) and stirring rods (73) are provided. Multiple drainage scrapers (72) are evenly fixed on the outside of the fixing ring (71), and multiple stirring rods (73) are evenly fixed on the top of multiple drainage scrapers (72).

6. A method for preparing a drug for treating gynecological inflammation, characterized in that, This is achieved using a medicament preparation apparatus for treating gynecological inflammation as described in any one of claims 1-5, specifically including the following steps: S1. Add the Chinese herbal raw materials to the upper chamber and add enough water. Add water, glycerin and xanthan gum to the lower chamber. Add emulsifier, cetearyl alcohol, squalane, isooctyl palmitate and caprylic / capric triglyceride to the inner chamber through the feed port on the back of the outer processing vessel (1). Use the heating resistors embedded in the outer processing vessel (1) and the inner processing vessel (61) to heat the materials in the three chambers respectively. At the same time, start the drive motor (22). S2. After the drive motor (22) starts, it drives the drive shaft (21) to rotate. When the drive shaft (21) rotates, it drives the slag discharge plate (43) to rotate through the sealing sleeve (32), sealing cover (34) and sliding rod (42). It drives the liquid discharge scraper (72) and stirring rod (73) to rotate through the fixing ring (71), thereby stirring the materials in the upper chamber and lower chamber respectively. When the drive shaft (21) rotates, it drives the sealing plate (31) to continue to descend. When the sealing plate (31) descends, it drives the sealing sleeve (32), sealing cover (34), cylindrical filter screen (51) and sealing platform (52) to descend. When the sealing platform (52) descends, it compresses the spring (53) and drives the sealing tube (62) to descend through the I-shaped rod (55). S3. When the sealing plate (31) descends to the first threshold, the sealing tube (62) moves out from the inside of the inner processing vessel (61), thereby releasing the seal on the inner processing vessel (61). At this time, the sterilized mixture inside the inner processing vessel (61) falls into the material in the lower chamber under the action of gravity. S4. When the sealing plate (31) descends to the second threshold, the horizontal height of the sealing plate (31) is lower than the height of the feed hopper on the left side of the outer processing vessel (1). At this time, a closed space is formed inside the upper chamber. Subsequently, as the sealing plate (31) continues to descend, the air pressure inside the upper chamber continues to increase. S5. When the sealing plate (31) descends to the third threshold, the sealing sleeve (32) moves the clearance groove (33) to the outside of the air hole (24). At this time, the cold air flow input from the active air supply pipe (23) into the drive shaft (21) continuously passes through the air hole (24) and clearance groove (33) into the upper sealed chamber, thereby increasing the pressure in the upper sealed chamber and cooling the decoction. S6. When the sealing plate (31) descends to the fourth threshold, the sealing platform (52) moves out from the inside of the partition plate (41), thereby releasing the blockage of the partition plate (41). At this time, the decoction inside the upper chamber quickly passes through the cylindrical filter (51) under pressure and enters the interior of the cylindrical filter (51), and then enters the lower chamber for mixing through the cylindrical filter (51). S7. Subsequently, after the mixed decoction is cooled, the finished drug product is obtained. At the same time, the sealing plate (31) moves to the lowest end of the reciprocating thread on the outside of the drive shaft (21). As the drive shaft (21) continues to rotate, the sealing plate (31) rises and resets. S8. During the resetting process of the sealing plate (31), the Chinese medicine residue and finished drug product are discharged through the discharge gate and discharge pipe on the right side of the external treatment vessel (1). During the output of the Chinese medicine residue, the slag discharge plate (43) continuously pushes the Chinese medicine residue on the top of the partition plate (41).