Preparation device and preparation method of nine-ingredient cinnamomum camphora pills

By designing a Jiuweixiang Camphor Bone Preparation Device including a diversion arc groove, a conical bump, a rolling roller and a circulating drainage belt, the problems of drying and overheating of the traditional stirring technology of traditional Chinese medicine liquid are solved, and the uniform mixing and stirring of the medicine liquid are achieved, and the preparation efficiency and finished product quality are improved.

CN120227282APending Publication Date: 2025-07-01CHENGDU WUHOU GANLU HAIZANG HOSPITAL CO LTD
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Patent Information

Application Number
CN202510371307.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

In the prior art, during the mixing process, the traditional stirring blades cannot effectively divert the top layer of the medicine liquid, causing the top layer of the medicine liquid to dry up and the bottom layer of the medicine liquid to overheat, which in turn affects the viscosity and thorough stirring of the medicine liquid.

Method used

A Jiuwei Xiang Cang Bone Preparation Device is designed, including a Xiang Cang Bone mixing box, a screening box, a rolling roller and a circulating drainage belt. The two sets of motors drive the transmission track and the rolling roller to rotate in the same direction, and the combination of the diversion arc groove and the conical bump is used to achieve effective diversion and vibration cleaning of the material. The auxiliary transmission roller and the pushing inclined plate are combined with the circulating drainage belt to achieve repeated stirring and mixing of materials.

Benefits of technology

It effectively solves the problems of drying and overheating of the medicinal liquid during the mixing process, ensures the uniform mixing and thorough stirring of the medicinal liquid, and improves the preparation efficiency and finished product quality of Jiuweixiang Camphor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of nine-ingredient cinnamomum camphora pills, in particular to a nine-ingredient cinnamomum camphora pill preparation device and method.The nine-ingredient cinnamomum camphora pill preparation device comprises a supporting table, a cinnamomum camphora pill mixing box fixedly installed on the edge of one side of the supporting table, and a screening box fixedly installed on the supporting table and the surface of the top of the cinnamomum camphora pill mixing box; two groups of motors II are fixedly mounted on the back surface of the cinnamomum camphora ball mixing box, and two groups of auxiliary transmission rollers are arranged on the outer side surface of the cinnamomum camphora ball mixing box and are positioned on the edge positions of one sides of the bottoms of the motors II. After materials completely enter the screening box, a first motor is matched to rotate a rotating disc, then one end of a pulling strip is close to the center position of the rotating disc, the pulling strip is pulled every time the rotating disc rotates by one circle, one end of the screening box is vibrated through pulling, and in the vibration process of the screening box, the screening efficiency is improved. And materials accumulated on the top layer of the vibration chute can resonate along with vibration of the screening box, so that material powder continuously moves downwards and slides from a high position to a low position.
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Description

Technical Field

[0001] The present invention belongs to the technical field of Jiuwei Zhangzhang Pills, and specifically relates to a preparation device and a preparation method for Jiuwei Zhangzhang Pills. Background Art

[0002] Pills refer to spherical or quasi-spherical tablets prepared from fine powder of medicinal materials or extracts of medicinal materials with appropriate adhesive auxiliary materials, and are divided into honey pills, water pills, water-honey pills, paste pills, concentrated pills, wax pills and micropills. They are one of the main dosage forms of traditional Chinese medicine.

[0003] A patent with the publication number CN202263187U discloses a preparation device for traditional Chinese medicine pills, which can effectively solve the problems that pills are not easy to slide out of the mold, pills are not easy to roll into the discharge port, the production efficiency is low, the forming quality is poor and the labor intensity is large. The technical solution it adopts is that the base is installed on the fixed frame, the upper part of the base is equipped with a rotating platform through a rotating shaft, and steel molds are evenly distributed on the rotating platform in the circumferential direction of the rotating shaft. The lower part of the steel mold is equipped with a lower punch head that penetrates into the steel mold hole on the base. The upper part of the lower punch head is equipped with an upper punch head through a stamping body. The corresponding heads of the upper punch head and the lower punch head are in the shape of an inward concave semi-circle to form a forming cavity for the pills. There is a discharge port at the edge of the rotating platform, and a downward-sloping discharge hopper is installed on the discharge port. A toughness baffle made of a polymer material is installed on the side of the discharge port. The structure of the present invention is novel and unique, with good use effect, high degree of mechanization, high production efficiency and good forming quality. It can be effectively used for the preparation of various traditional Chinese medicine pills and is beneficial to the production and development of traditional Chinese medicine pills.

[0004] In the current prior art, when the existing Jiuwei Zhangzhang Pills are being mixed, generally a rotating blade is used for stirring and mixing. However, in order to maintain the subsequent plasticity, the powder raw materials of Jiuwei Zhangzhang Pills are relatively viscous. When the traditional stirring blade is stirring, it cannot guide the liquid medicine on the top layer into the bottom layer. This leads to the liquid medicine on the top layer gradually drying up over time, while the liquid medicine at the bottom layer has been in a high-temperature state and the internal moisture gradually evaporates, resulting in the liquid medicine becoming viscous and the problem of insufficient stirring.

[0005] Therefore, the present invention provides a preparation device and a preparation method for Jiuwei Zhangzhang Pills. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve at least one of the technical problems proposed in the background art.

[0007] First aspect, the technical solution adopted by the present invention to solve its technical problems is: A preparation device for Jiwei Zhangzhang Pills of the present invention includes a support table and a Zhangzhang Pills mixing box fixedly installed at one side edge position of the support table, and a screening box fixedly installed on the top surfaces of the support table and the Zhangzhang Pills mixing box. Two groups of motors two are fixedly installed on the back surface of the Zhangzhang Pills mixing box. Two groups of auxiliary drive rollers are located on the outer surface of the Zhangzhang Pills mixing box and at one side edge position at the bottom of the motor two. Two groups of diversion arc-shaped grooves are fixedly connected to the inner wall surfaces on both sides of the top of the Zhangzhang Pills mixing box. A rolling roller is movably sleeved on the outer surface of the Zhangzhang Pills mixing box and at the middle position between the two groups of diversion arc-shaped grooves. A drive track two that movably overlaps on the outer surface of the rolling roller is movably sleeved on the outer surface of the output end of the motor two. A limiting isolation plate is fixedly connected to the middle position on the inner side of the bottom of the Zhangzhang Pills mixing box. A pushing inclined plate is fixedly connected to the outer surface of the auxiliary drive roller. A circulating drainage belt is movably sleeved on the outer surface of the auxiliary drive roller.

[0008] Preferably, the outer surface of the circulating drainage belt movably overlaps on the outer surface of the limiting isolation plate. A drive disk that movably overlaps on the outer surface of the auxiliary drive roller is fixedly connected to the output end of one group of motors two. A notch is formed on the bottom surface of the Zhangzhang Pills mixing box and at the bottom edge position of the circulating drainage belt.

[0009] Preferably, a lifter is fixedly installed on the bottom surface of the Zhangzhang Pills mixing box and at the edge position of the notch. A closing plate that movably overlaps on the top edge position of the notch is fixedly connected to the output end of the lifter.

[0010] Preferably, a hollow sleeve is formed inside the rolling roller. Groove holes are formed on the outer surface of the rolling roller. A conical convex block is fixedly connected to the outer surface of the rolling roller and at one side edge position of the groove hole. The outer surface of the conical convex block movably overlaps on the outer surface of the diversion arc-shaped groove.

[0011] Preferably, a vibrating inclined groove is provided on the inner wall surface of the bottom of the screening box. A filtering and splash-proof housing is movably sleeved on the inner wall surface of the bottom end of the screening box. A filtering screen is provided on the bottom surface of the filtering and splash-proof housing.

[0012] Preferably, a motor one is fixedly installed on the top surface of the support table and at the middle position. A drive roller one is fixedly connected to the output end of the motor one. A rotating disk is fixedly connected to one end of the drive roller one. A pull bar is movably sleeved on the outer surface of the rotating disk and near the middle position. The other end of the pull bar is fixedly connected to the outer surface of one end of the screening box.

[0013] Preferably, a support frame is fixedly connected to the top surface of the support platform, and the outer surface of the screening box is movably sleeved on the inner wall surface of the support frame. A blower is fixedly installed on the outer surface of the support frame. A sealing cylinder is detachably installed on the top surface of the support frame. A second transmission roller is movably sleeved on the outer surface of the sealing cylinder. A first transmission track is movably sleeved on the outer surfaces of the first transmission roller and the second transmission roller.

[0014] Preferably, a closing cover is swingably connected to the top surface of the sealing cylinder, and a discharge cover is swingably connected to the bottom surface of the sealing cylinder. One end of the second transmission roller is fixedly connected to a rotating cylinder movably sleeved on the inner wall surface of the sealing cylinder. A cavity is provided inside the rotating cylinder. A heating rod is fixedly installed on the inner wall surface of the cavity. A grinding layer is provided on the outer surface of the rotating cylinder.

[0015] Second aspect, a preparation method of Jiuweixiangzhang Pills, comprising the following steps:

[0016] S1. Perform weight ratio processing on different raw materials of Jiuwei Zuota Pills, separate them according to particle size, hardness, and shape size, and sequentially put the mixed raw materials into the sealing cylinder to perform pulverization and grinding on the raw materials;

[0017] S2. Perform screening on the ground materials through the sealing cylinder, divert the screened raw material powder into the camphor pill mixing box, and add clear water to the raw materials to mix them together;

[0018] S3. Use the track to repeatedly move the raw materials and perform mixing and stirring on the raw materials;

[0019] S4. Perform pill making on the stirred and mixed raw materials, dry the made pills, and conduct semi-finished product inspection and random sampling on the dried pills;

[0020] S5. After the detection, perform sterilization on the pills, perform packaging on the pills, then conduct a second random inspection on the packaged finished products, and conduct centralized warehousing on the inspected finished products.

[0021] Preferably, it is composed of camphor, meconopsis horridula, nutmeg, choerospondias axillaris, Vladimiria souliei, safflower, clove, rabbit heart, and sandalwood:

[0022] The proportion of camphor is 20%;

[0023] The proportion of meconopsis horridula is 12%;

[0024] The proportion of nutmeg is 12%;

[0025] The proportion of choerospondias axillaris is 12%;

[0026] The proportion of Vladimiria souliei is 12%;

[0027] The proportion of Carthamus tinctorius is 12%;

[0028] The proportion of Syzygium aromaticum is 6%;

[0029] The proportion of rabbit heart is 6%;

[0030] The proportion of Santalum album is 8%.

[0031] The beneficial effects of the present invention are as follows:

[0032] 1. For the preparation device and preparation method of the nine - flavor camphor pill described in the present invention, two sets of motor two drive the transmission track two and the rolling roller to rotate in the same direction. At this time, with the cooperation of the slot holes on the outer surface of the rolling roller and the gap between the two rolling rollers, the material powder can effectively enter the camphor pill mixing box. When the two rolling rollers rotate in the same direction, the surface of the conical protrusion will penetrate into the slot holes and extrude the residual material powder in the slot holes. At the same time, when the rolling roller rotates, the conical protrusion on the outer surface will squeeze the surface of one end of the diversion arc groove and cause the diversion arc groove to vibrate. During the vibration of the diversion arc groove, the residual material powder on the surface of the diversion arc groove can be vibrated and shaken off, avoiding the situation that the surface of the diversion arc groove cannot be effectively cleaned due to some relatively light material powder remaining on the top surface of the diversion arc groove;

[0033] 2. For the preparation device and preparation method of the nine - flavor camphor pill described in the present invention, when the motor two rotates, one set of motor two drives the transmission disc at the output end to rotate, and makes the auxiliary transmission roller on the outer surface of the camphor pill mixing box rotate. At this time, with the cooperation of the pushing inclined plate on the output end surface of the auxiliary transmission roller, the raw material powder and clear water inside the camphor pill mixing box are mixed. During the rotation of the inclined surface of the pushing inclined plate, the powder material is stirred and pushed towards the direction of the limiting isolation plate. When the auxiliary transmission roller rotates, it drives the circulating drainage belt to rotate clockwise from right to left. At this time, the wet material on the surface of the circulating drainage belt scrapes off the material when passing through the surface of the limiting isolation plate. The sliding of the circulating drainage belt can transfer the material at one side to the other side. At the same time, when scraping the material on the surface of the circulating drainage belt, the material on the surface of the circulating drainage belt is cleaned, and the scraped - off material is effectively mixed with the material at other positions. The circulating drainage belt at the left - hand position moves quickly from bottom to right, thereby transferring the material at the bottom layer on the right side to the top position, achieving the effect of repeatedly stirring and mixing the material from bottom to top;

[0034] 3. For a preparation device and preparation method of Jiwei Xiangzhang Pills according to the present invention, after the materials completely enter the inside of the screening box, the motor 1 drives the rotating disk to rotate. Then, one end of the pulling bar is close to the center position of the rotating disk, so that each rotation of the rotating disk will pull the pulling bar, and the pulling force generates vibration on one end of the screening box. During the vibration of the screening box, the materials piled up on the top layer of the vibrating chute will resonate with the vibration of the screening box. Then, due to the slope of the screening box, the material powder will continuously slide down from a high place to a low place. Under the continuous vibration of the screening box, the large and small particles inside the material powder will gradually separate under their own gravity;

[0035] 4. For a preparation device and preparation method of Jiwei Xiangzhang Pills according to the present invention, the 9 raw materials are separated according to the proportion, and the 9 raw materials are separated according to the particle size and shape size. Then, the mixed raw materials are put into the inside of the sealed cylinder batch by batch. At this time, the motor 1 drives the driving roller 1 and the driving track 1, so that the driving roller 2 on the inner wall surface of the driving track 1 on the outer surface rotates on the surface of the sealed cylinder. With the gradually decreasing gap between the surface of the rotating cylinder and the inner wall surface of the bottom of the sealed cylinder, when the rotating cylinder rotates, the materials piled up between the rotating cylinder and the sealed cylinder will be continuously squeezed and broken. The smaller materials will pile up together and be continuously compacted. At the same time, the grinding layer on the outer surface of the rotating cylinder is used to grind and crush the compacted materials; BRIEF DESCRIPTION OF THE DRAWINGS

[0036] The present invention will be further described below with reference to the accompanying drawings.

[0037] Figure 1 is the three-dimensional view of the present invention;

[0038] Figure 2 is the three-dimensional view of the support platform in the present invention;

[0039] Figure 3 is the sectional three-dimensional view of the sealed cylinder in the present invention;

[0040] Figure 4 is the developed sectional three-dimensional view of the sealed cylinder in the present invention;

[0041] Figure 5 is the sectional three-dimensional view of the Xiangzhang Pills mixing box in the present invention;

[0042] Figure 6 is the sectional rear three-dimensional view of the Xiangzhang Pills mixing box in the present invention;

[0043] Figure 7 is the sectional three-dimensional view of the rolling roller in the present invention;

[0044] Figure 8It is a sectional perspective view of the screening box in the present invention;

[0045] Figure 9 It is a process schematic diagram of the present invention.

[0046] In the figure: 11, support platform; 111, first motor; 112, first driving roller; 113, first driving track; 114, second driving roller; 115, rotating disk; 116, pulling bar; 117, fan; 118, support frame; 119, sealed cylinder; a1, closing cover; a2, discharge cover; a3, rotating cylinder; a4, cavity; a5, grinding layer;

[0047] a6, heating rod; 12, camphor pill mixing box; 121, guiding arc-shaped groove; 122, second motor; 123, second driving track; 124, rolling roller; c1, hollow sleeve; c2, slot hole; c3, conical convex block; 125, auxiliary driving roller; 126, driving disk; 127, limiting isolation plate; 128, pushing inclined plate; 129, circulating drainage belt; 1210, lifter; 1211, closing plate; 13, screening box; 131, vibrating inclined groove; 132, filtering and splash-proof housing; 133, filtering screen. Specific embodiments

[0048] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0049] Embodiment 1

[0050] As Figures 1 to 8 shown, a nine-flavor camphor pill preparation device according to an embodiment of the present invention includes a support platform 11 and a camphor pill mixing box 12 fixedly installed on one side edge position of the support platform 11, and a screening box 13 fixedly installed on the top surfaces of the support platform 11 and the camphor pill mixing box 12. It is characterized in that: two groups of second motors 122 are fixedly installed on the back surface of the camphor pill mixing box 12, two groups of auxiliary driving rollers 125 are located on the outer surface of the camphor pill mixing box 12 and at one side edge position of the bottom of the second motor 122, two groups of guiding arc-shaped grooves 121 are fixedly connected to the inner wall surfaces of the two sides of the top of the camphor pill mixing box 12, a rolling roller 124 is movably sleeved on the outer surface of the camphor pill mixing box 12 and at the middle position between the two groups of guiding arc-shaped grooves 121, a driving track 123 is movably sleeved on the outer surface of the output end of the second motor 122 and is movably lapped on the outer surface of the rolling roller 124, a limiting isolation plate 127 is fixedly connected to the middle position of the inner bottom of the camphor pill mixing box 12, a pushing inclined plate 128 is fixedly connected to the outer surface of the auxiliary driving roller 125, and a circulating drainage belt 129 is movably sleeved on the outer surface of the auxiliary driving roller 125;

[0051] The outer surface of the circulating drainage belt 129 is movably lapped on the outer surface of the limit isolation plate 127. A transmission disc 126 that is movably lapped on the outer surface of the auxiliary transmission roller 125 is fixedly connected to the output end of a group of motors two 122. A notch is formed on the bottom surface of the camphor ball mixing box 12 and at the bottom edge position of the circulating drainage belt 129.

[0052] A lifter 1210 is fixedly installed on the bottom surface of the camphor ball mixing box 12 and at the edge position of the notch. A closing plate 1211 that is movably lapped on the top edge position of the notch is fixedly connected to the output end of the lifter 1210; A hollow sleeve c1 is formed inside the rolling roller 124, a slot hole c2 is formed on the outer surface of the rolling roller 124, and a conical convex block c3 is fixedly connected to the outer surface of the rolling roller 124 and at the side edge position of the slot hole c2. The outer surface of the conical convex block c3 is movably lapped on the outer surface of the diversion arc-shaped groove 121.

[0053] When the powder enters the inside of the camphor ball mixing box 12, the arc surface on the surface of the diversion arc-shaped groove 121 is used to divert the falling material. At this time, two groups of motors two 122 drive the transmission track two 123 and the rolling roller 124 to rotate in the same direction. At this time, with the slot hole c2 on the outer surface of the rolling roller 124 and the gap between the two rolling rollers 124, the material powder can effectively enter the inside of the camphor ball mixing box 12. When the two rolling rollers 124 rotate in the same direction, the surface of the conical convex block c3 will penetrate into the inside of the slot hole c2 and squeeze out the residual material powder inside the slot hole c2. At the same time, while the rolling roller 124 is rotating, the conical convex block c3 on the outer surface will squeeze the surface of one end of the diversion arc-shaped groove 121 and cause the diversion arc-shaped groove 121 to vibrate. During the vibration process of the diversion arc-shaped groove 121, the residual material powder on the surface of the diversion arc-shaped groove 121 can be vibrated and shaken off, avoiding the situation that the surface of the diversion arc-shaped groove 121 cannot be effectively cleaned due to some relatively light material powder remaining on the top surface of the diversion arc-shaped groove 121.

[0054] When the second motor 122 is rotating, a set of second motors 122 cooperate to rotate the transmission disc 126 on the output end, and cause the auxiliary transmission roller 125 on the outer surface of the camphor ball mixing box 12 to rotate. At this time, the pushing inclined plate 128 on the surface of the output end of the auxiliary transmission roller 125 is used to mix the raw material powder and clear water inside the camphor ball mixing box 12. During the rotation of the inclined surface of the pushing inclined plate 128, the powder material is stirred, and the material is pushed in the direction of the limiting isolation plate 127. During the rotation of the auxiliary transmission roller 125, the circulating drainage belt 129 is driven to rotate clockwise from right to left. At this time, the wet material on the surface of the circulating drainage belt 129 scrapes off the material when passing through the surface of the limiting isolation plate 127. The sliding of the circulating drainage belt 129 can transfer the material at one side to the other side. At the same time, when scraping the material on the surface of the circulating drainage belt 129, the material on the surface of the circulating drainage belt 129 is cleaned, and the scraped material is effectively mixed with the material at other positions. The circulating drainage belt 129 at the left position quickly moves from bottom to right, thereby transferring the material at the bottom layer on the right to the top position, so that the material is repeatedly stirred and mixed from bottom to top.

[0055] As Figures 1 to 4 shown, a vibration chute 131 is provided on the inner bottom wall surface of the screening box 13. A filtering and splash-proof sleeve 132 is movably sleeved on the inner bottom wall surface of the screening box 13. A filtering screen 133 is provided on the bottom surface of the filtering and splash-proof sleeve 132. A first motor 111 is fixedly installed on the top surface of the support table 11 and located at the middle position. A first transmission roller 112 is fixedly connected to the output end of the first motor 111. A rotating disc 115 is fixedly connected to one end of the first transmission roller 112. A pull bar 116 is movably sleeved on the outer surface of the rotating disc 115 and near the middle position. The other end of the pull bar 116 is fixedly connected to the outer surface of one end of the screening box 13.

[0056] After the material completely enters the inside of the screening box 13, cooperate with the first motor 111 to rotate the rotating disk 115, and then use one end of the pulling bar 116 to approach the center position of the rotating disk 115, so that the rotating disk 115 will pull the pulling bar 116 every time it rotates one circle. Use the pulling to generate vibration on one end of the screening box 13. During the vibration of the screening box 13, the material accumulated on the top layer of the vibrating chute 131 will resonate with the vibration of the screening box 13. Then, through the slope of the screening box 13, the material powder will continuously move downward from high to low. Under the continuous vibration of the screening box 13, the large and small particles inside the material powder are gradually separated under their own gravity. And as the material enters the inside of the filtering and splash-proof housing 132, cooperate with the filtering screen 133 at the lower part of the filtering and splash-proof housing 132 to screen the material. The material powder passing through the filtering screen 133 will fall into the inside of the camphor ball mixing box 12, and the filtered material powder will stay inside the filtering and splash-proof housing 132. Later, take the filtering and splash-proof housing 132 to recycle the remaining material powder.

[0057] As Figures 1 to 4 shown, a support frame 118 is fixedly connected to the top surface of the support platform 11, and the outer surface of the screening box 13 is movably sleeved on the inner wall surface of the support frame 118. A blower 117 is fixedly installed on the outer surface of the support frame 118. A sealing cylinder 119 is detachably installed on the top surface of the support frame 118. A second transmission roller 114 is movably sleeved on the outer surface of the sealing cylinder 119. A first transmission track 113 is movably sleeved on the outer surfaces of the first transmission roller 112 and the second transmission roller 114. A closing cover a1 is swingably connected to the top surface of the sealing cylinder 119, and a discharge cover a2 is swingably connected to the bottom surface of the sealing cylinder 119. One end of the second transmission roller 114 is fixedly connected to a rotating cylinder a3 movably sleeved on the inner wall surface of the sealing cylinder 119. A cavity a4 is arranged inside the rotating cylinder a3. A heating rod a6 is fixedly installed on the inner wall surface of the cavity a4. A grinding layer a5 is arranged on the outer surface of the rotating cylinder a3.

[0058] Separate the nine raw materials according to the proportion, separate the nine raw materials according to the particle size and shape size, and put the mixed raw materials into the interior of the sealed cylinder 119 batch by batch. At this time, cooperate with the first motor 111 to drive the first driving roller 112 and the first driving track 113, and make the second driving roller 114 on the inner wall surface of the first driving track 113 on the outer surface rotate on the surface of the sealed cylinder 119. Cooperate with the gradually decreasing gap between the surface of the rotating cylinder a3 and the inner wall surface of the bottom of the sealed cylinder 119, so that when the rotating cylinder a3 rotates, it continuously squeezes and crushes the materials accumulated between the rotating cylinder a3 and the sealed cylinder 119. The smaller materials will accumulate together and be continuously compacted. At the same time, cooperate with the grinding layer a5 on the outer surface of the rotating cylinder a3 to grind and crush the compacted materials;

[0059] At the same time, cooperate with the rotating cylinder a3 to rotate clockwise and counterclockwise continuously to finely grind the materials on both sides of the rotating cylinder a3. When the rotating cylinder a3 is continuously grinding, cooperate with the heating rod a6 inside the cavity a4 to continuously heat the surface of the rotating cylinder a3 to dry some relatively wet materials. Under the continuous rotation of the rotating cylinder a3, the bottom layer of materials can be continuously maintained at a high temperature state, which can greatly reduce the moisture inside the materials and make the ground materials always remain in an extremely dry state, avoiding the moisture inside the materials from adsorbing the powder materials and then causing the powder materials to stick together and cause blockage;

[0060] At the same time, cooperate with the blower 117 to quickly blow air into the interior of the sealed cylinder 119. The high-speed blowing gas will impact on the outer surface of the rotating cylinder a3. The flowing air source will blow down some materials adhering to the outer surface of the rotating cylinder a3. At the same time, under the blowing of the air source, some easily powdered materials will be blown to the interior space of the sealed cylinder 119. After the powder is blown up, some larger particle materials will accumulate at the bottom layer of the sealed cylinder 119, and the rotating cylinder a3 rotates to perform a secondary grinding treatment on some larger particle materials;

[0061] When the materials inside the sealed cylinder 119 are ground, after the materials inside the sealed cylinder 119 naturally settle, open the discharge cover a2 so that the materials accumulated at the bottom layer can pass through the sealed cylinder 119 and be discharged into the interior of the screening box 13 through the guide, and rotate the rotating cylinder a3 slowly. Use the vibration force generated between the rotating cylinder a3 and the sealed cylinder 119 when the rotating cylinder a3 rotates to shake off some residual materials adhering to the inner wall surface of the sealed cylinder 119.

[0062] Example 2

[0063] As Figure 9 shown, a preparation method of nine-flavor camphor pills includes the following steps:

[0064] S1. Perform weight ratio processing on different raw materials of Jiuwei Zuota Pills, separate them according to particle size, hardness, and shape size, and sequentially put the mixed raw materials into the sealed cylinder 119 to perform pulverization and grinding on the raw materials;

[0065] S2. Perform screening on the ground materials through the sealed cylinder 119, divert the screened raw material powder into the camphor pill mixing box 12, and add clear water to the raw materials to mix them together;

[0066] S3. Use the crawler to repeatedly move the raw materials and perform mixing and stirring on the raw materials;

[0067] S4. Perform pill making on the stirred and mixed raw materials, dry the made pills, and conduct semi-finished product inspection and spot checks on the dried pills;

[0068] S5. After the detection, perform sterilization on the pills, perform packaging on the pills, then conduct a second random inspection on the packaged finished products, and conduct centralized warehousing on the inspected finished products.

[0069] It is composed of camphor, meconopsis horridula, nutmeg, choerospondias axillaris, Vladimiria souliei, safflower, clove, rabbit heart, and sandalwood:

[0070] The proportion of camphor is 20%;

[0071] The proportion of meconopsis horridula is 12%;

[0072] The proportion of nutmeg is 12%;

[0073] The proportion of choerospondias axillaris is 12%;

[0074] The proportion of Vladimiria souliei is 12%;

[0075] The proportion of safflower is 12%;

[0076] The proportion of clove is 6%;

[0077] The proportion of rabbit heart is 6%;

[0078] The proportion of sandalwood is 8%.

[0079] Working principle: Separate the nine raw materials according to proportion, and separate them according to particle size and shape size. Then put the mixed raw materials into the interior of the sealed cylinder 119 in batches. At this time, cooperate with the first motor 111 to drive the first driving roller 112 and the first driving track 113, so that the second driving roller 114 on the inner wall surface of the first driving track 113 on the outer surface rotates on the surface of the sealed cylinder 119. Cooperate with the gradually decreasing gap between the surface of the rotating cylinder a3 and the inner wall surface of the bottom of the sealed cylinder 119, so that when the rotating cylinder a3 rotates, it continuously squeezes and crushes the materials piled up between the rotating cylinder a3 and the sealed cylinder 119. The smaller materials will pile up together and then be continuously compacted. At the same time, cooperate with the grinding layer a5 on the outer surface of the rotating cylinder a3 to grind and crush the compacted materials;

[0080] At the same time, cooperate with the rotating cylinder a3 to rotate clockwise and counterclockwise continuously to finely grind the materials on both sides of the rotating cylinder a3. When the rotating cylinder a3 is continuously grinding, cooperate with the heating rod a6 in the cavity a4 to continuously heat the surface of the rotating cylinder a3 to dry some relatively wet materials. Under the continuous rotation of the rotating cylinder a3, the bottom materials can be continuously kept in a high-temperature state, which can greatly reduce the moisture inside the materials, so that the ground materials can always be kept in an extremely dry state, avoiding the moisture inside the materials from adsorbing the powder materials and then causing the powder materials to stick together and cause blockage;

[0081] At the same time, cooperate with the blower 117 to quickly blow air into the interior of the sealed cylinder 119. The high-speed blown gas will impact on the outer surface of the rotating cylinder a3. The flowing air source will blow down some materials adhering to the outer surface of the rotating cylinder a3. At the same time, under the blowing of the air source, some light powders will be blown to the interior space of the sealed cylinder 119. After the powder is blown up, some larger particle materials will pile up at the bottom layer of the sealed cylinder 119, and the rotating cylinder a3 rotates to perform a secondary grinding treatment on some larger particle materials;

[0082] After the material completely enters the inside of the screening box 13, the rotating disk 115 is rotated in cooperation with the first motor 111. Then, one end of the pulling bar 116 is close to the center position of the rotating disk 115, so that the rotating disk 115 will pull the pulling bar 116 every time it rotates one circle. The pulling generates vibration on one end of the screening box 13. During the vibration of the screening box 13, the material accumulated on the top layer of the vibrating chute 131 will resonate with the vibration of the screening box 13. Then, through the slope of the screening box 13, the material powder moves downward continuously from high to low. Under the continuous vibration of the screening box 13, the large and small particles inside the material powder are gradually separated under their own gravity. After the material enters the inside of the filtering and splash-proof housing 132, the material is screened in cooperation with the filtering screen 133 at the lower part of the filtering and splash-proof housing 132. The material powder passing through the filtering screen 133 will fall into the inside of the camphor ball mixing box 12, and the filtered material powder will stay inside the filtering and splash-proof housing 132. Later, the filtering and splash-proof housing 132 is taken to recycle the remaining material powder;

[0083] When the powder enters the inside of the camphor ball mixing box 12, the arc surface on the surface of the diversion arc-shaped groove 121 is used to divert the falling material. At this time, the two second motors 122 drive the second transmission track 123 and the rolling roller 124 to rotate in the same direction. At this time, in cooperation with the groove c2 on the outer surface of the rolling roller 124 and the gap between the two sets of rolling rollers 124, so that the material powder can effectively enter the camphor ball mixing box 12. When the two sets of rolling rollers 124 rotate in the same direction, the surface of the conical bump c3 will penetrate into the inside of the slot c2 and squeeze out the residual material powder inside the slot c2. At the same When the rolling roller 124 rotates, the conical protrusion c3 on the outer surface will squeeze the surface of one end of the diversion arc-shaped groove 121 and cause the diversion arc-shaped groove 121 to vibrate. The diversion arc-shaped groove 121 is in the process of time during the vibration, the material powder remaining on the surface of the diversion arc shaped groove 121 can be vibrated and shaken off, avoiding the situation that the surface of the diversion arc shaped groove 121 will be left with some relatively light material powder on the top surface of the diversion arc shaped groove 121 and unable to be effectively cleaned up;

[0084] When the second motor 122 rotates, one of the second motors 122 rotates the transmission disk 126 at the output end, and makes the auxiliary transmission roller 125 on the outer surface of the camphor ball mixing box 12 rotate. At this time, in cooperation with the pushing inclined plate 128 on the surface of the output end of the auxiliary transmission roller 125, the camphor ball The raw material powder and water inside the mixing box 12 are mixed and processed. During the rotation of the inclined surface of the pushing inclined plate 128, the powder material is stirred, and the material is pushed towards the limiting isolation plate 127 is pushed. During the rotation of the auxiliary transmission roller 125, the circulating diversion belt 129 rotates clockwise from right to left. At this time, the wet material on the surface of the circulating diversion belt 129 scrapes the material off when passing through the surface of the limit isolation plate 127. The sliding of the circulating diversion belt 129 can transfer the material at one side to the other side. At the same time, when scraping the material on the surface of the circulating diversion belt 129 At the same time, the material on the surface of the circulating drainage belt 129 will be cleaned up, and the scraped material will be effectively mixed with the material at other positions. The circulating drainage belt 129 at the left position will come fromThe bottom moves quickly to the right, thereby transferring the materials at the bottom layer on the right from the bottom to the top position, achieving the effect of repeatedly stirring and mixing the materials from bottom to top.

[0085] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A nine-flavor camphor ball preparation device, comprising a support platform (11) and a camphor ball mixing box (12) fixedly mounted on an edge of one side of the support platform (11), and a screening box (13) fixedly mounted on the top surface of the support platform (11) and the camphor ball mixing box (12), characterized in that: Two groups of motors (122) are fixedly mounted on the back of the camphor ball mixing box (12); two groups of auxiliary transmission rollers (125) are located on the outer surface of the camphor ball mixing box (12) and at the bottom edge of the motor (122); two groups of guide arc grooves (121) are fixedly connected on the inner wall surfaces on both sides of the top of the camphor ball mixing box (12); and a roller is movably sleeved on the outer surface of the camphor ball mixing box (12) and at the middle position of the two groups of guide arc grooves (121). A pressure roller (124), a transmission track (123) movably connected to the outer surface of the output end of the second motor (122) and movably overlapped on the outer surface of the rolling roller (124), a limited isolation plate (127) is fixedly connected to the middle position of the bottom inner side of the camphor ball mixing box (12), a pushing inclined plate (128) is fixedly connected to the outer surface of the auxiliary transmission roller (125), and a circulating drainage belt (129) is movably connected to the outer surface of the auxiliary transmission roller (125).

2. A method for preparing nine-flavor camphor pills according to claim 1, characterized in that: The outer surface of the circulating drainage belt (129) is movably overlapped on the outer surface of the limiting isolation plate (127); a transmission plate (126) movably overlapped on the outer surface of the auxiliary transmission roller (125) is fixedly connected to the output end of the second motor (122); and a notch is provided on the bottom surface of the camphor ball mixing box (12) and at the bottom edge of the circulating drainage belt (129).

3. A method for preparing nine-flavor camphor pills according to claim 2, characterized in that: A lifter (1210) is fixedly installed on the bottom surface of the camphor ball mixing box (12) and at the edge of the notch, and a closing plate (1211) movably overlapped at the top edge of the notch is fixedly connected to the output end of the lifter (1210).

4. A method for preparing nine-flavor camphor pills according to claim 3, characterized in that: A hollow sleeve (c1) is provided inside the rolling roller (124), a slot hole (c2) is provided on the outer surface of the rolling roller (124), a conical protrusion (c3) is fixedly connected to the outer surface of the rolling roller (124) and located at a side edge of the slot hole (c2), and the outer surface of the conical protrusion (c3) is movably overlapped on the outer surface of the guide arc groove (121).

5. A method for preparing nine-flavor camphor pills according to claim 1, characterized in that: A vibrating chute (131) is provided on the inner wall surface of the bottom of the screening box (13), a filter splash-proof casing (132) is movably sleeved on the inner wall surface of the bottom end of the screening box (13), and a filter screen (133) is provided on the bottom surface of the filter splash-proof casing (132).

6. A device for preparing nine-flavor camphor balls according to claim 5, characterized in that: A motor (111) is fixedly mounted on the top surface of the support platform (11) and located in the middle position; a transmission roller (112) is fixedly connected to the output end of the motor (111); a rotating disk (115) is fixedly connected to one end of the transmission roller (112); a pull-out strip (116) is movably sleeved on the outer surface of the rotating disk (115) and near the middle position; the other end of the pull-out strip (116) is fixedly connected to the outer surface of one end of the screening box (13).

7. A device for preparing nine-flavor camphor balls according to claim 6, characterized in that: A support frame (118) is fixedly connected to the top surface of the support platform (11), and the outer surface of the screening box (13) is movably sleeved on the inner wall of the support frame (118), a fan (117) is fixedly installed on the outer surface of the support frame (118), a sealing cylinder (119) is detachably installed on the top surface of the support frame (118), a transmission roller 2 (114) is movably sleeved on the outer surface of the sealing cylinder (119), and a transmission track 1 (113) is movably sleeved on the outer surfaces of the transmission roller 1 (112) and the transmission roller 2 (114).

8. A device for preparing nine-flavor camphor balls according to claim 7, characterized in that: A closing cover (a1) is swingably connected to the top surface of the sealing cylinder (119), a discharge cover (a2) is swingably connected to the bottom surface of the sealing cylinder (119), one end of the second transmission roller (114) is fixedly connected to a rotating cylinder (a3) ​​movably sleeved on the inner wall surface of the sealing cylinder (119), a cavity (a4) is provided inside the rotating cylinder (a3), a heating rod (a6) is fixedly installed on the inner wall surface of the cavity (a4), and a grinding layer (a5) is provided on the outer surface of the rotating cylinder (a3).

9. A method for preparing nine-flavor camphor pills, applicable to a device for preparing nine-flavor camphor pills according to any one of claims 1 to 8, characterized in that: The following steps are involved: S1, different raw materials of Jiuwei Zuota Pills are processed by weight ratio, and separated according to particle size, hardness, and shape, and the mixed raw materials are placed in a sealed cylinder (119) in turn to pulverize and grind the raw materials; S2, screening the ground material through a sealed cylinder (119), directing the screened raw material powder into the camphor ball mixing box (12), and adding clean water into the raw material to mix the raw materials together; S3, using crawlers to repeatedly move the raw materials and mix and stir the raw materials; S4, pelletizing the mixed raw materials, drying the pills after pelletizing, and inspecting the semi-finished products after drying; S5. After the test, the pills are sterilized and packaged. The packaged finished products are then randomly inspected for the second time, and the inspected finished products are put into storage for centralized processing.

10. The method for preparing nine-flavor camphor pills according to claim 9, characterized in that: The camphor, meconopsis thornii, nutmeg, jujube, Sichuan costusroot, safflower, clove, rabbit heart and sandalwood are composed of: The camphor tree accounts for 20%; The said Meconopsis spinulosa accounted for 12%; The proportion of said nutmeg is 12%; The proportion of the said jujube is 12%; The proportion of Sichuan wood fragrance is 12%; The proportion of safflower is 12%; The proportion of said cloves is 6%; The rabbit heart accounts for 6%; The proportion of sandalwood is 8%.

Citation Information

Patent Citations

  • Preparation device for Chinese medicine pills

    CN202263187U