Preparation equipment and preparation method of blood-nourishing oral liquid

By designing special preparation equipment to correct, clean and fill the bottle, the contamination problem in the oral liquid filling process is solved, the preparation quality and efficiency are improved, and the efficiency and sterile environment of the filling process are ensured.

CN119954083BActive Publication Date: 2025-09-26BEIJING ACTING PHARMA BIOTECH
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Patent Information

Application Number
CN202510201797.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-09-26
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

In the prior art, oral liquid is easily contaminated by impurities in the bottle during the filling process, and the filling process may cause a decrease in taste or affect the effect, and the preparation efficiency is low.

Method used

A preparation equipment including a first loading mechanism, a cleaning mechanism, a unloading mechanism and a filling mechanism is designed. Bottles of different specifications are corrected by a correction component. The cleaning mechanism disinfects, rinses and dries the bottles. The filling mechanism realizes liquid filling and capping to ensure the cleanliness of the bottles and improve efficiency.

Benefits of technology

It effectively prevents impurities in the bottle from contaminating the oral liquid, improves the preparation quality and efficiency of the oral liquid, and ensures an efficient and sterile environment during the filling process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present disclosure provides a preparation device and method for nourishing blood oral liquid, belonging to the technical field of oral liquid preparation. The device comprises a first loading mechanism, a cleaning mechanism, a discharge mechanism, a filling mechanism, and a second loading mechanism. The first loading mechanism comprises a first loading bracket, a loading turntable, an arc block, a correction component, and a toggle component. The loading turntable is rotatably connected to the first loading bracket. The arc block is provided on the loading turntable. The correction component cooperates with the first loading bracket to correct the trajectory of bottles of different specifications. The cleaning mechanism is used to clean bottles delivered from the discharge end. The toggle component is used to deliver bottles at the discharge end into the cleaning mechanism. The discharge mechanism is connected to the cleaning mechanism to deliver the cleaned bottles. The filling mechanism is used to fill and seal the bottles delivered by the discharge mechanism. The second loading mechanism is used to transport bottle caps. This preparation device has the effect of improving preparation efficiency and preparation quality.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of oral liquid preparation, and in particular to a preparation device and a preparation method of a blood-nourishing oral liquid. Background Art

[0002] With the improvement of living standards, people have a higher pursuit of physical conditioning, and products that nourish blood and replenish qi have emerged. Some products that nourish blood and replenish qi are often presented to consumers in the form of oral liquids. The general processing method of this product is: first, the different processing raw materials are weighed according to the configuration ratio of the product, and the weighed processing raw materials are decocted to produce a decoction liquid; then the prepared decoction liquid is concentrated, filtered, and cold-precipitated to produce a concentrated extract. Finally, the concentrated extract is prepared in a filling mechanism according to a certain ratio to form an oral liquid, and the oral liquid is poured into the bottle to complete the processing of the product. With the above-mentioned related technologies, when the oral liquid is poured into the bottle, some impurities may be present in the bottle. Such pouring will reduce the taste of the oral liquid and may even affect the effectiveness of the oral liquid. Furthermore, when preparing the oral liquid, in the related technologies, a certain amount of time passes between pouring the oral liquid and sealing the bottle. Even if the processing site is in a sterile environment, it may cause certain contamination to the oral liquid.

[0003] It should be noted that the information disclosed in the above background technology section is only used to enhance the understanding of the background of the present disclosure, and therefore may include information that does not constitute prior art known to ordinary technicians in the field. Summary of the Invention

[0004] The purpose of the present invention is to overcome the deficiencies of the prior art and provide a preparation device and a preparation method for a blood-nourishing oral liquid, so as to improve the preparation quality and preparation efficiency of the oral liquid.

[0005] According to a first aspect of the present disclosure, a preparation device for nourishing blood oral liquid is provided, comprising a first loading mechanism, a cleaning mechanism, a discharge mechanism, a filling mechanism and a second loading mechanism; the first loading mechanism comprises a first loading bracket, a loading turntable, an arc block, a correction component and a toggle component; the first loading bracket has a loading end and a discharge end; the loading turntable is rotatably connected to the first loading bracket; the arc block is installed on the first loading bracket, wherein the arc block and the first loading bracket form a bottle channel; the correction component is arranged on the loading turntable, and the correction component cooperates with the first loading bracket to correct bottles of different specifications Trajectory correction; the cleaning mechanism is connected to the discharge end through the toggle assembly, and the cleaning mechanism is used to clean the bottle body sent out from the discharge end; the toggle assembly is used to send the bottle body at the discharge end into the cleaning mechanism; the discharge mechanism is connected to the cleaning mechanism, and is used to send out the cleaned bottle body, wherein the movement trajectory of the bottle body in the cleaning mechanism is perpendicular to the movement trajectory of the bottle body in the discharge mechanism; the filling mechanism is arranged on one side of the discharge mechanism, and is used to fill the bottle body sent out by the discharge mechanism with liquid and to seal the bottle body; the second loading mechanism is arranged on one side of the filling mechanism, and is used to transport the bottle caps.

[0006] By adopting the above technical solution, when the prepared oral liquid needs to be packaged, the bottle is first placed at the feeding end of the first feeding bracket, and the bottle is transported to the feeding turntable through the feeding end. The correction component is adjusted according to the specifications of the bottle to correct the movement trajectory of the bottle on the feeding turntable. The feeding turntable is turned on, and the rotation of the feeding turntable drives the bottle on it to move. The bottle passes through the bottle channel formed by the arc block and the first feeding bracket. The bottle with the corrected trajectory moves to the toggle component, which is turned on and the toggle component is turned on. The bottle is transported to the cleaning mechanism, the cleaning mechanism is turned on, and the cleaning mechanism cleans the bottle. After the bottle is cleaned, the bottle is sent out of the cleaning mechanism through the unloading mechanism. When the bottle moves to the filling position, the filling mechanism is turned on and the oral liquid is injected into the bottle. At the same time, the bottle cap is transported to the second feeding mechanism, the filling mechanism is adjusted, the filling mechanism clamps the bottle cap transported on the second feeding mechanism, and the bottle cap knob is screwed onto the bottle containing the oral liquid to package the processed oral liquid. The first feeding mechanism can realize the orderly loading operation of bottles of different specifications; the cleaning mechanism can realize the cleaning operation of the bottle and prevent impurities in the bottle from contaminating the oral liquid; the unloading mechanism can transport the cleaned bottle to the filling mechanism to prepare the oral liquid; the filling mechanism can realize the operation of filling the oral liquid into the bottle and sealing the oral liquid after filling. In this way, the preparation equipment can improve the quality of oral liquid preparation while also improving the efficiency of oral liquid preparation.

[0007] Optionally, the correction assembly includes a correction bracket, a correction rod, a correction block and a fixed handle; the correction bracket is arranged on the first feeding bracket, and the correction bracket has a sliding groove; the correction rod can slide along the length direction of the sliding groove and can rotate in the sliding groove; the fixed handle is threadedly connected to the correction rod, and the fixed handle is used to fix the correction rod and the correction bracket; the correction block is arranged on the correction rod, and one side of the correction block and the side wall of the first feeding bracket form a bottle body channel.

[0008] Through the above technical solution, when it is necessary to correct the movement trajectory of the bottle body according to bottles of different specifications, the fixed handle is rotated to disengage the correction rod and the correction bracket, and the correction rod is moved. The movement of the correction rod drives the movement of the correction block. The movement of the correction block causes the bottle channel formed by it and the side wall of the first feeding bracket to change, thereby realizing the correction of bottles of different specifications. After adjusting the relative position of the correction block and the first feeding bracket, the fixed handle is rotated to fix the correction rod and the correction bracket.

[0009] Optionally, the toggle assembly includes a toggle bracket, at least two toggle blocks and at least two limit blocks; the toggle bracket is arranged at the unloading end; multiple limit blocks are arranged on the toggle bracket, and the relatively arranged limit blocks form a movement channel for the bottle body; the limit block has a toggle groove, and multiple toggle blocks are respectively rotatably connected to both sides of the limit block, and some of the toggle blocks extend into the toggle groove, and the toggle block has a driving groove, and the relatively arranged driving grooves form a toggle space for the bottle body.

[0010] Through the above technical solution, after the bottle body is sent out from the unloading end of the first feeding bracket, the bottle body enters the motion channel formed by the relatively set limit blocks. Under the action of the rotating disk, the bottle body moves in the motion channel, the toggle block rotates on the toggle bracket, the bottle body enters the driving groove, and the toggle block continues to rotate. Under the rotation of the toggle block, the bottle body is continuously pushed in the motion channel, thereby achieving the purpose of pushing the bottle body into the cleaning mechanism.

[0011] Optionally, the cleaning mechanism includes a cleaning frame, a rotating rod and a plurality of rotating disks; the cleaning frame is arranged on a side of the toggle bracket away from the first loading bracket, and along the length direction of the cleaning frame, the cleaning frame has a disinfection area, a rinsing area and a drying area; the rotating rod is rotatably connected to the cleaning frame; the plurality of rotating disks are coaxially arranged on the rotating rod, and the plurality of rotating disks are correspondingly arranged in the disinfection area, the rinsing area and the drying area, and the rotating disk has a carrier assembly evenly arranged along its circumference; the carrier assembly includes a carrier bracket and a driving member; wherein, the carrier bracket includes a horizontal section and vertical sections arranged on both sides of the horizontal section; the horizontal section is arranged on the rotating disk; the vertical section is slidably connected to the horizontal section, and the vertical sections arranged on both sides of the horizontal section form a clamping space for the bottle body; the driving member is used to drive the vertical sections to approach or move away from each other.

[0012] The bottle body enters the cleaning frame (first located in the disinfection area, then in the rinsing area, and finally into the drying area) under the action of the toggle assembly. At this time, the bottle body is located on the horizontal section, the driving member is turned on, and the driving member moves to drive the relatively arranged vertical sections to move. The relatively arranged vertical sections approach each other and clamp and fix the bottle body on the horizontal section. The rotating rod is adjusted and rotated in the cleaning frame. The rotation of the rotating rod drives the rotating disk to move. The rotation of the rotating disk drives the fixed bottle body (the bottle body opening is downward to facilitate cleaning its interior) to move to disinfect the bottle body. After the bottle body is disinfected, the rotating rod is adjusted to rotate, and the rotation of the rotating rod drives the rotating disk to move. The rotating disk drives the disinfected bottle body to move. The bottle body moves to the initial position, and the bottle body (located in the disinfection area) is driven forward under the action of the toggle assembly (the bottle body is sent to the rinsing area for The rotation of the rotating rod drives the rotating disk to move, and the rotating disk drives the bottle to move, and the rinsing area rinses the bottle. The rotating rod is adjusted to continue to move, and the rotating rod moves to drive the rotating disk to move, and the rotation of the rotating disk drives the rinsed bottle to move. When the bottle moves to the initial position, the toggle assembly drives the bottle (now in the rinsing area) to move forward. When the bottle moves to the drying area, the rotating rod continues to rotate, and the rotation of the rotating rod drives the rotating disk to move, and the rotating disk drives the bottle to move, and the drying area dries the bottle. The rotating rod is continued to be adjusted to rotate, and the rotating rod drives the rotating disk to move, and the rotating disk drives the rinsed bottle to move. When the bottle moves to the initial position, the toggle assembly drives the bottle to move forward. At this time, the bottle is sent to the unloading mechanism for subsequent filling and capping operations on the bottle.

[0013] Optionally, the unloading mechanism includes a unloading bracket, an unloading inclined plate, a conveying assembly and a bottle blocking assembly; the unloading bracket is arranged on one side of the cleaning frame, and the length direction of the unloading bracket is perpendicular to the length direction of the cleaning frame; the conveying assembly is arranged on the unloading bracket, and is used to convey the bottle body on the unloading bracket; the unloading inclined plate includes a horizontal part and an inclined part; the horizontal part is arranged on the unloading bracket, and the length direction of the horizontal part is the same as the length direction of the unloading bracket; the inclined part is connected to the horizontal part, wherein the horizontal part and the inclined part form a reversing space for the bottle body; the bottle blocking assembly is arranged on the unloading bracket, and is used to block the bottle body.

[0014] With the above technical solution, after the bottle is dried, the toggle assembly moves the bottle forward until it reaches the unloading bracket, where it contacts the unloading ramp. The ramp changes the bottle's direction, and the conveyor assembly drives the bottle on the unloading bracket. The bottle continues its movement on the unloading bracket until it reaches the filling mechanism, which then fills the bottle with oral liquid and caps the filled bottle. Furthermore, when a large number of bottles are near the filling mechanism (continuing the conveyor could cause the production line to crash), the bottle blocking assembly can be adjusted to block the bottles on the unloading bracket.

[0015] Optionally, the second loading mechanism includes a reversing component and a conveying component; the conveying component is arranged on one side of the unloading bracket, and is used to convey the bottle caps falling from the reversing component; the reversing component includes a reversing bracket, a reversing frame, a steering turntable and an air supply component; the reversing bracket is arranged on one side of the unloading bracket; the reversing frame is tilted on the unloading bracket, wherein one side of the reversing frame has an outlet; the steering turntable is rotatably connected to the reversing frame, and the steering turntable has a reversing groove; the air supply component is used to blow air into the reversing frame so that the bottle caps delivered from the outlet are in a first state; the conveying component is connected to the outlet, wherein the conveying component can change the state of the bottle caps so that the bottle caps are delivered to the filling mechanism in the second state.

[0016] Through the above technical solution, when the bottle cap needs to be transported, the bottle cap is first placed in the reversing frame, the air supply part is turned on, and the air supply part blows air into the reversing frame. Under the action of the air supply part, the bottle cap is in the first state and is located in the reversing groove. The steering turntable is adjusted and the steering turntable rotates in the reversing frame. The rotation of the steering turntable drives the bottle cap to move in the reversing frame. The bottle cap is sent out from the outlet in the first state, and the bottle cap sent out from the outlet is transported to the filling mechanism position through the conveying assembly. The bottle cap changes to the second state under the action of the conveying assembly, so that the filling mechanism can directly turn the bottle cap in the second state onto the bottle body for filling oral liquid, so as to further improve the processing efficiency of the manufacturing equipment.

[0017] Optionally, the filling mechanism includes a filling bracket, a filling cylinder, and a liquid filling and capping assembly; the filling bracket is rotatably and movably arranged between the conveying assembly and the unloading mechanism; the filling cylinder is arranged on the filling bracket; the liquid filling and capping assembly is symmetrically arranged along the length direction of the filling bracket, and there are multiple liquid filling and capping assemblies arranged along the length direction of the filling bracket, and the liquid filling and capping assembly is used to inject liquid into the bottle body and can seal the bottle body.

[0018] According to the above technical solution, when oral liquid needs to be poured into the bottle and capped, the bottle moves to the filling position, the filling bracket is adjusted, the filling bracket moves downward, and the downward movement of the filling bracket drives the liquid filling and capping assembly to move. The liquid filling and capping assembly approaches the bottle, and the liquid filling and capping assembly is adjusted. The oral liquid is poured into the bottle under the action of the liquid filling and capping assembly. When the oral liquid is completely poured into the bottle, the filling bracket is adjusted to rotate, and the rotation of the filling bracket drives the liquid filling and capping assembly (the liquid filling and capping assembly that fills the bottle) to move onto the conveying assembly. At this time, the liquid filling and capping assembly on the side opposite to the liquid filling and capping assembly that has completed the filling of the bottle moves above the bottle (the oral liquid has been filled and the liquid filling and cap is on the liquid filling and capping assembly). The liquid filling and capping assembly is adjusted, and the liquid filling and capping assembly screws the bottle cap knob onto the bottle.

[0019] Optionally, the liquid filling and sealing assembly includes a lifting cylinder, a rotating motor, a liquid filling tube, a clamping spring, a pressure piece, a first clamping piece and a second clamping piece; the lifting cylinder is arranged on one side of the blanking mechanism, and the lifting cylinder is connected to the filling bracket for driving the filling bracket to move up and down; the rotating motor is arranged on the filling bracket; the first clamping piece is connected to the output shaft of the rotating motor, and the rotating motor is used to drive the first clamping piece to rotate; the clamping spring is sleeved on the output shaft of the rotating motor for providing a clamping force to the first clamping piece; the liquid filling tube is connected to the filling barrel; the pressure piece is arranged on the liquid filling tube; the second clamping piece is arranged on the blanking mechanism for clamping the bottle body on the blanking mechanism.

[0020] When the bottle on the feeding mechanism is filled with oral liquid by the liquid filling and capping assembly, the lifting cylinder is turned on, the lifting cylinder drives the filling bracket to move downward, and the filling bracket drives the liquid filling tube close to the bottle body (at this time, the first clamping member and the liquid filling tube do not interfere with each other), the pressure member is turned on, and the pressure member sends the oral liquid in the filling cylinder into the bottle body, completing the operation of filling the bottle body with oral liquid; when the bottle on the feeding mechanism is filled with oral liquid, the filling bracket is adjusted and the filling bracket is rotated to make the liquid filling and capping assembly above the conveying assembly (at this time, the liquid filling and capping assembly) The liquid sealing cap assembly has completed clamping the bottle cap) moves to the top of the bottle body that has been filled. At this time, the lifting cylinder is adjusted, and the lifting cylinder drives the filling bracket to move downward. The filling bracket drives the first clamping piece (at this time, the first clamping piece clamps the bottle cap) to move downward. At this time, the bottle cap is placed on the bottle body, and the filling bracket continues to descend. The bottle cap is buckled on the bottle body, and the second clamping piece is opened. The second clamping piece fixes the bottle body on the unloading mechanism, and the rotating motor is turned on. The rotating motor rotates to drive the first clamping piece to move, and the bottle body is sealed on the bottle body under the action of the rotating motor.

[0021] Optionally, the first clamping member includes a first clamping cylinder, a clamping block, a clamping rack, a clamping gear and a plurality of clamping claws; the first clamping cylinder is arranged at the output end of the rotating motor; the clamping block is connected to the clamping cylinder; the clamping rack is arranged at the output end of the clamping cylinder and is slidingly connected to the clamping block; the clamping gear is rotatably connected to the clamping block, and the clamping gear is meshed with the clamping rack; the clamping claw is connected to the clamping gear, and the clamping block arranged relative to the movement direction of the clamping rack forms a clamping space for the bottle cap.

[0022] Through the above technical solution, when it is necessary to clamp the bottle cap on the conveying assembly, the first clamping cylinder is turned on, the first clamping cylinder drives the clamping rack to move, the movement of the clamping rack drives the movement of the clamping gear, the clamping gear drives the clamping claw to move, and at this time the relatively arranged clamping claws are in an open state, which is convenient for the unloading of the injection tube; similarly, when it is necessary to grab the bottle cap, the first clamping cylinder is turned on, the first clamping cylinder drives the clamping rack to move, the movement of the clamping rack drives the movement of the clamping gear, the clamping gear drives the clamping claw to move, and at this time the relatively arranged clamping claws are close to each other to achieve clamping of the bottle cap.

[0023] According to another aspect of the present disclosure, a method for preparing a blood-nourishing oral liquid is provided, comprising:

[0024] Weigh the raw materials in proportion;

[0025] The raw materials are decocted to extract the decoction liquid, and the decoction liquid is processed to form an oral liquid, and the oral liquid is passed into the filling mechanism;

[0026] The first feeding mechanism transports the bottle body to the cleaning mechanism, which cleans the bottle body and then sends the bottle body to the unloading mechanism, which then transports the bottle body to the filling mechanism.

[0027] The second feeding mechanism feeds the bottle caps, the filling mechanism injects liquid into the bottle bodies on the feeding mechanism, and caps the liquid-injected bottles.

[0028] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. Beneficial effects

[0029] 1. The first loading mechanism is provided to realize the orderly loading operation of bottles of different specifications; the cleaning mechanism is provided to realize the cleaning operation of the bottles to prevent impurities in the bottles from contaminating the oral liquid; the unloading mechanism is provided to transport the cleaned bottles to the filling mechanism to realize the preparation of oral liquid; the filling mechanism is provided to realize the filling of oral liquid into the bottles and the sealing of the oral liquid after filling. In this way, the preparation equipment can improve the preparation quality of oral liquid while also improving the preparation efficiency of oral liquid.

[0030] 2. By turning the fixed handle, the correction rod and the correction bracket are separated from each other, and the correction rod is moved. The movement of the correction rod drives the movement of the correction block. The movement of the correction block causes the bottle channel formed by it and the side wall of the first feeding bracket to change, thereby realizing the correction of bottles of different specifications. After adjusting the relative position of the correction block and the first feeding bracket, turn the fixed handle to fix the correction rod and the correction bracket.

[0031] 3. Under the action of the toggle assembly, the bottle body continues to move forward and moves to the discharge bracket. The bottle body contacts the discharge inclined plate. Under the action of the discharge inclined plate, the bottle body is changed in direction. The movement of the conveyor assembly drives the bottle body on the discharge bracket to move. The bottle body continues to move on the discharge bracket and moves to the position of the filling mechanism. The filling mechanism fills the bottle body on the discharge bracket with oral liquid and caps the bottle body after filling with oral liquid. In addition, when there are many bottles near the filling mechanism (if continuing to transport bottles, it may cause the production line to crash), the bottle blocking assembly can be adjusted to block the bottles on the discharge bracket.

[0032] 4. Adjust the filling bracket and lower it. This downward movement drives the liquid filling and capping assembly to move, bringing it closer to the bottle. Adjust the liquid filling and capping assembly, and the oral liquid is poured into the bottle under the action of the liquid filling and capping assembly. When the oral liquid is completely poured into the bottle, adjust the filling bracket to rotate. The rotation of the filling bracket drives the liquid filling and capping assembly (the liquid filling and capping assembly that fills the bottle) to move onto the conveying assembly. At this point, the liquid filling and capping assembly on the opposite side of the liquid filling and capping assembly that has completed filling the bottle moves above the bottle (the oral liquid has been filled and the liquid filling and cap is on this liquid filling and capping assembly). Adjust the liquid filling and capping assembly, and the liquid filling and capping assembly screws the bottle cap knob onto the bottle. BRIEF DESCRIPTION OF THE DRAWINGS

[0033] The accompanying drawings are incorporated into and constitute a part of the specification, illustrate embodiments consistent with the present disclosure, and together with the specification, are used to explain the principles of the present disclosure. Obviously, the drawings described below are only some embodiments of the present disclosure, and those skilled in the art can derive other drawings based on these drawings without inventive effort.

[0034] Figure 1 The figure is a schematic diagram of the overall structure of a preparation device for nourishing blood oral liquid in one embodiment of the present disclosure.

[0035] Figure 2 This is a partial structural diagram of a preparation device for nourishing blood oral liquid in one embodiment of the present disclosure.

[0036] Figure 3 for Figure 2 Magnified view of part A.

[0037] Figure 4 for Figure 2 Enlarged view of part B.

[0038] Figure 5 A schematic diagram of the structure of the cleaning mechanism hiding the cleaning frame.

[0039] Figure 6 for Figure 5 Enlarged view of part C.

[0040] Figure 7 It is a structural diagram of the filling mechanism, the unloading mechanism and the second loading mechanism.

[0041] Figure 8 It is a structural diagram of the second feeding mechanism.

[0042] Figure 9 It is a partial structural diagram of the filling mechanism.

[0043] Figure 10It is a structural schematic diagram of the liquid injection capping assembly.

[0044] Figure 11 for Figure 10 Enlarged view of part D.

[0045] Description of reference numerals:

[0046] 1. First feeding mechanism; 11. First feeding bracket; 111. Feeding end; 112. Unloading end; 12. Feeding turntable; 13. Arc block; 14. Correction assembly; 141. Correction bracket; 1411. Sliding slot; 142. Correction rod; 143. Correction block; 144. Fixed handle; 15. Toggle assembly; 151. Toggle bracket; 152. Toggle block; 1521. Driving slot; 153. Limit block; 1531. Toggle slot; 2. Cleaning mechanism ; 21. Cleaning frame; 211. Disinfection area; 212. Rinse area; 213. Drying area; 22. Rotating rod; 23. Rotating disk; 131. Loading assembly; 1311. Loading bracket; 13111. Horizontal section; 13112. Vertical section; 1312. Driving member; 13121. Driving motor; 13122. Driving screw; 13123. Driving gear; 13124. Driven gear; 3. Unloading mechanism; 31. Unloading bracket; 32 , unloading inclined plate; 321, horizontal part; 322, inclined part; 33, conveying assembly; 34, bottle blocking assembly; 341, bottle blocking cylinder; 342, bottle blocking block; 3421, horizontal rod; 3422, vertical rod; 4, filling mechanism; 41, filling bracket; 42, filling barrel; 43, liquid filling and capping assembly; 431, lifting cylinder; 432, rotating motor; 433, liquid filling pipe; 434, holding spring; 435, pressure member; 436, first clamping member; 4361. First clamping cylinder; 4362. Clamping block; 4363. Clamping rack; 4364. Clamping gear; 4365. Clamping claw; 437. Second clamping member; 4371. Second clamping cylinder; 4372. Clamping plate; 5. Second feeding mechanism; 51. Reversing assembly; 511. Reversing bracket; 512. Reversing frame; 5121. Outlet; 513. Steering turntable; 514. Air supply member; 52. Conveying assembly; 521. Arc-shaped conveying pipe. DETAILED DESCRIPTION

[0047] Example embodiments will now be described more fully with reference to the accompanying drawings. However, the example embodiments can be implemented in many forms and should not be construed as limited to the embodiments set forth herein; rather, these embodiments are provided so that this disclosure will be thorough and complete and will fully convey the concepts of the example embodiments to those skilled in the art. Like reference numerals in the figures represent identical or similar structures, and thus their detailed descriptions will be omitted. Furthermore, the figures are merely schematic illustrations of the present disclosure and are not necessarily drawn to scale.

[0048] A first aspect of the present disclosure provides a preparation device for a blood-nourishing oral liquid.

[0049] The following is combined with Figure 1-11 This application is described in further detail.

[0050] See also Figure 1 、 Figure 8 The preparation equipment includes a first loading mechanism 1, a cleaning mechanism 2, a discharge mechanism 3, a filling mechanism 4 and a second loading mechanism 5; the first loading mechanism 1 is connected to the cleaning mechanism 2, the first loading mechanism 1 is used to load the bottle body, and the cleaning mechanism 2 is used to clean the bottle body loaded by the first loading mechanism 1 to ensure the cleanliness of the bottle body; the discharge mechanism 3 is connected to the cleaning mechanism 2, and is used to transport the bottle body cleaned by the cleaning mechanism 2; the filling mechanism 4 is arranged on one side of the discharge mechanism 3, and is used to fill the bottle body sent by the discharge mechanism 3 with liquid and seal the bottle body; the second loading mechanism 5 is arranged on one side of the filling mechanism 4, and is used to load the bottle cap.

[0051] See also Figure 2 、 Figure 3 as well as Figure 4 In some embodiments of the present disclosure, the first loading mechanism 1 includes a first loading bracket 11, a loading turntable 12, an arc block 13, a correction component 14 and a toggle component 15; the first loading bracket 11 has a loading end 111 and a unloading end 112; wherein the loading end 111 is used for loading the bottle body, and the unloading end 112 is used for unloading the bottle body; the loading turntable 12 is rotatably connected to the first loading bracket 11. It can be understood that in some embodiments, part of the first loading bracket 11 can be set to a shape that cooperates with the loading turntable 12, but the embodiment of the present disclosure is not limited to this; the arc block 13 is installed on the first loading bracket 11, wherein the arc block 13 and the The first loading bracket 11 forms a bottle channel. Furthermore, in this embodiment, in order to prevent interference between the arc block 13 and the loading turntable 12, there is a gap between the arc block 13 and the loading turntable 12; the correction component 14 is installed on the loading turntable 12, and the correction component 14 cooperates with the first loading bracket 11 to correct the trajectory of bottles of different specifications; the cleaning mechanism 2 is connected to the discharge end 112 through the toggle component 15, and the cleaning mechanism 2 is used to clean the bottles sent out from the discharge end 112; the toggle component 15 is used to send the bottles at the discharge end 112 into the cleaning mechanism 2; the movement trajectory of the bottle in the cleaning mechanism 2 is perpendicular to the movement trajectory of the bottle in the discharge mechanism 3.

[0052] In this embodiment, the correction assembly 14 includes a correction bracket 141, a correction rod 142, a correction block 143 and a fixed handle 144; the correction bracket 141 is arranged on the first loading bracket 11, and the correction bracket 141 has a sliding groove 1411; the correction rod 142 can slide along the length direction of the sliding groove 1411, and can rotate in the sliding groove 1411; the fixed handle 144 is threadedly connected to the correction rod 142, and the fixed handle 144 is used to fix the correction rod 142 and the correction bracket 141; the correction block 143 is arranged on the correction rod 142, and one side of the correction block 143 forms a bottle body channel with the side wall of the first loading bracket 11.

[0053] Specifically, when it is necessary to correct different bottle bodies, the fixed handle 144 is rotated, and the fixed handle 144 separates the correction rod 142 from the correction bracket 141. At this time, the correction rod 142 is moved, and the correction rod 142 moves in the sliding groove 1411. Furthermore, the correction rod 142 can also be rotated, and the correction rod 142 drives the correction block 143 to move. When the correction block 143 is adjusted to the appropriate position, the fixed handle 144 is rotated, and the fixed handle 144 fixes the correction rod 142 to the correction bracket 141, so as to achieve trajectory correction of bottles of different specifications.

[0054] In this embodiment, the toggle assembly 15 includes a toggle bracket 151, at least two toggle blocks 152 and at least two limit blocks 153; the toggle bracket 151 is installed at the unloading end 112; multiple limit blocks 153 are arranged on the toggle bracket 151, and the relatively arranged limit blocks 153 form a movement channel for the bottle body; the limit block 153 has a toggle groove 1531, and the multiple toggle blocks 152 are respectively rotatably connected to both sides of the limit block 153, and some of the toggle blocks 152 extend into the toggle groove 1531. The toggle block 152 has a driving groove 1521, and the relatively arranged driving grooves 1521 form a toggle space for the bottle body.

[0055] As an example, the toggle assembly 15 may include a toggle bracket 151, two toggle blocks 152 and two limit blocks 153; the two limit blocks 153 are arranged on the toggle bracket 151, wherein the two limit blocks 153 are symmetrically arranged about the length direction of the toggle bracket 151, and the two limit blocks 153 form a movement channel for the bottle body; the two toggle blocks 152 are rotatably connected to the toggle bracket 151, and are located on the side where the two limit blocks 153 are away from each other, and part of the toggle block 152 extends into the toggle groove 1531, and the toggle block 152 has a driving groove 1521, and the driving grooves 1521 on the two oppositely arranged toggle blocks 152 form a toggle space for the bottle body.

[0056] Specifically, the bottle body enters the toggle bracket 151, and under the action of the rotating disk 23, the bottle body continues to move on the toggle bracket 151, and the bottle body moves to the toggle space formed relative to the toggle block 152. The toggle block 152 rotates on the toggle bracket 151, and the rotation of the toggle block 152 drives the bottle body to continue to toggle, so that the bottle body enters the cleaning mechanism 2.

[0057] See also Figure 1 、 Figure 2 、 Figure 5 as well as Figure 6 In some embodiments of the present disclosure, the cleaning mechanism 2 includes a cleaning frame 21, a rotating rod 22 and a plurality of rotating disks 23; the cleaning frame 21 is installed on the side of the toggle bracket 151 away from the first loading bracket 11, and along the length direction of the cleaning frame 21, the cleaning frame 21 has a disinfection area 211, a rinsing area 212 and a drying area 213, wherein the area close to the toggle bracket 151 is set as the disinfection area 211; the rotating rod 22 is rotatably connected to the cleaning frame 21; the plurality of rotating disks 23 are coaxially arranged on the rotating rod 22, and the plurality of rotating disks 23 are correspondingly arranged in the disinfection area 211, the rinsing area 21 2 and in the drying area 213 (it can be understood that, in some examples, three rotating disks 23 can be provided, and the three rotating disks 23 are all provided on the rotating rod 22, and the three rotating disks 23 are located in different areas of the corresponding settings; of course, multiple rotating disks 23 can also be provided, and the embodiments of the present disclosure are not limited to this), the rotating disk 23 has a carrier assembly 131 uniformly arranged along its circumference; the carrier assembly 131 is used to fix the bottle body, and the carrier assemblies 131 on adjacent rotating disks 23 can be connected in a specific state, so that the bottle body can move forward while being cleaned in the cleaning frame 21.

[0058] As an example, the loading assembly 131 includes a loading bracket 1311 and a driving member 1312; wherein, the loading bracket 1311 includes a horizontal section 13111 and vertical sections 13112 arranged on both sides of the horizontal section 13111; the horizontal section 13111 is arranged on the rotating disk 23; the vertical section 13112 is slidably connected to the horizontal section 13111, and the vertical sections 13112 arranged on both sides of the horizontal section 13111 form a clamping space for the bottle body; the driving member 1312 is used to drive the vertical sections 13112 to approach or move away from each other.

[0059] Specifically, when the bottle body moves to the horizontal section 13111 (the horizontal section 13111 corresponding to the object carrier 1311 in the disinfection area 211), the driving member 1312 is turned on, and the driving member 1312 drives the vertical sections 13112 to approach each other, and the vertical section 13112 contacts the bottle body on the horizontal section 13111, and the bottle body is fixed on the horizontal section 13111. At this time, the rotating rod 22 is adjusted, and the rotating rod 22 rotates in the cleaning frame 21. The rotation of the rotating rod 22 drives the rotating disk 23 to rotate, and the rotation of the rotating disk 23 drives the fixed bottle body to rotate. When the opening of the fixed bottle body faces downward and is close to the bottom of the cleaning frame 21, the bottle body is disinfected in the disinfection area 211. At this time, the remaining object carrier components 131 on the rotating disk 23 are under the action of the toggle component 15. A new bottle body is pushed in, and multiple bottles can be disinfected by rotating the rotating disk 23; when the bottle body is disinfected and needs to be transported to the rinsing area 212, the rotating rod 22 is continued to be adjusted, and the rotating rod 22 rotates in the cleaning frame 21. The rotation of the rotating rod 22 drives the rotating disk 23 to rotate, and the rotation of the rotating disk 23 drives the fixed bottle body (which has been disinfected) to rotate. When the fixed bottle body moves to its initial position, at this time, the horizontal section 13111 of the disinfection area 211 and the horizontal section 13111 of the rinsing area 212 are located in the same horizontal plane, and the driving member 1312 is adjusted. The driving member 1312 drives the vertical sections 13112 away from each other, and the bottle body is pushed to the horizontal section 13111 of the rinsing area 212 under the action of the toggle assembly 15. When the bottle body is pushed to the horizontal section 13111 corresponding to the washing area 212, the driving member 1312 is turned on, and the driving member 1312 drives the vertical sections 13112 to approach each other, and the vertical section 13112 contacts the bottle body on the horizontal section 13111, and the bottle body is fixed on the horizontal section 13111. At this time, the rotating rod 22 is adjusted, and the rotating rod 22 rotates in the washing frame 21. The rotation of the rotating rod 22 drives the rotating disk 23 to rotate, and the rotation of the rotating disk 23 drives the fixed bottle body to rotate. When the opening of the fixed bottle body faces downward and approaches the bottom of the washing frame 21, the bottle body is washed in the washing area 212. Similarly, the rotating disk 23 in the washing area 212 rotates. At this time, the bottles in the disinfection area 211 are continuously transported to the washing area 212 under the action of the toggle assembly 15, and the loading assembly 131 corresponding to the washing area 212 is fixed, thereby achieving cleaning of multiple bottles.When the bottle body is rinsed, it is necessary to transport the bottle body to the drying area 213, and the rotating rod 22 is adjusted. The rotating rod 22 rotates in the washing frame 21, and the rotation of the rotating rod 22 drives the rotating disk 23 to rotate, and the rotation of the rotating disk 23 drives the fixed bottle body to rotate. When the fixed bottle body moves to its initial position, the horizontal section 13111 of the rinsing area 212 and the horizontal section 13111 of the drying area 213 are in the same horizontal plane, and the driving member 1312 is adjusted. The driving member 1312 drives the vertical sections 13112 to move away from each other, and the bottle body is pushed to the horizontal section 13111 of the drying area 213 under the action of the toggle assembly 15. Similarly, the driving member 1312 is turned on, and the driving member 1312 drives the vertical sections 13112 to move closer to each other, and the vertical section 13112 and the horizontal section 13112 are moved closer to each other. 111, the bottle body contacts and is fixed on the horizontal section 13111. At this time, the rotating rod 22 is adjusted, and the rotating rod 22 rotates in the cleaning frame 21. The rotation of the rotating rod 22 drives the rotating disk 23 to rotate, and the rotation of the rotating disk 23 drives the fixed bottle body to rotate. When the opening of the fixed bottle body faces downward and is close to the bottom of the cleaning frame 21, the bottle body is dried in the drying area 213. After the bottle body is dried, the rotating rod 22 is adjusted again to rotate, and the rotation of the rotating rod 22 drives the rotating disk 23 to rotate. The rotation of the rotating disk 23 drives the fixed bottle body to rotate. When the fixed bottle body moves to its initial position, the bottle body is pushed out of the cleaning frame 21 under the action of the toggle assembly 15. The bottle body after being pushed out of the cleaning frame 21 enters the unloading mechanism 3 for subsequent operation.

[0060] See also Figure 7 In some embodiments of the present disclosure, the unloading mechanism 3 includes a unloading bracket 31, a unloading inclined plate 32, a conveying assembly 33 and a bottle blocking assembly 34; the unloading bracket 31 is installed on one side of the cleaning frame 21, and the length direction of the unloading bracket 31 is perpendicular to the length direction of the cleaning frame 21 (such an arrangement can make the layout of the manufacturing equipment relatively reasonable and reduce its footprint), and the height of the unloading bracket 31 is at the same level as the height of the horizontal section 13111 of the initial position when the bottle body is in the drying area 213, that is, when the bottle body is in the initial position of the drying area 213, it can be sent to the unloading bracket 31 in the cleaning frame 21 under the action of the toggle assembly 15, thereby achieving the purpose of sending the cleaned bottle body to the unloading bracket 31. The conveying assembly 33 is arranged on the unloading bracket 31, and is used to convey the bottle bodies on the unloading bracket 31; the unloading inclined plate 32 includes a horizontal portion 321 and an inclined portion 322; the horizontal portion 321 is arranged on the unloading bracket 31, and the length direction of the horizontal portion 321 is the same as the length direction of the unloading bracket 31; the inclined portion 322 is connected to the horizontal portion 321, wherein the horizontal portion 321 and the inclined portion 322 form a reversing space for the bottle body; the bottle blocking assembly 34 is arranged on the unloading bracket 31, and is used to block the bottle body.

[0061] As an example, the conveying assembly 33 may be a plate conveyor, which is not described in detail in this application. Further, in the embodiment of the present disclosure, the bottle blocking assembly 34 may include a bottle blocking cylinder 341 and a bottle blocking block 342; the bottle blocking block 342 includes a horizontal rod 3421 and a vertical rod 3422; the horizontal rod 3421 is connected to the vertical rod 3422, wherein the length direction of the horizontal rod 3421 is the same as the length direction of the unloading bracket 31, and the length direction of the vertical rod 3422 is perpendicular to the length direction of the unloading bracket 31; the horizontal rod 3421 is connected to the unloading bracket 31 via the bottle blocking cylinder 341, and the movement direction of the unloading cylinder is perpendicular to the movement direction of the unloading bracket 31. Specifically, when it is necessary to block the bottle body, the bottle blocking cylinder 341 can be turned on, and the bottle blocking cylinder 341 drives the horizontal rod 3421 to move, and the horizontal rod 3421 drives the vertical rod 3422 to move. The vertical rod 3422 is located on the unloading bracket 31 to block the bottle body.

[0062] It should be noted that when the unloading bracket 31 is transported normally, the bottle blocking block 342 is located on one side of the unloading bracket 31 and does not interfere with the transportation of the bottles.

[0063] See also Figure 8 In some embodiments of the present disclosure, the second loading mechanism 5 includes a reversing component 51 and a conveying component 52; the conveying component 52 is arranged on one side of the unloading bracket 31, and is used to convey the bottle caps falling from the reversing component 51; as an example, the reversing component 51 includes a reversing bracket 511, a reversing frame 512, a steering turntable 513 and an air supply component 514; the reversing bracket 511 is installed on one side of the unloading bracket 31; the reversing frame 512 is tilted and arranged on the unloading bracket 31, wherein one side of the reversing frame 512 has an outlet 5121; the steering turntable 513 is rotatably connected to the reversing frame 512, and the steering turntable 513 has a reversing groove; the air supply component 514 is used to blow air into the reversing frame 512, so that the bottle caps delivered at the outlet 5121 are in a first state; the conveying component 52 is connected to the outlet 5121, wherein the conveying component 52 can change the state of the bottle caps so that the bottle caps are delivered to the filling mechanism 4 in the second state.

[0064] As an example, the air supply component 514 includes an air source, a vent tube, and a control valve (not specifically shown in the drawings of this application); the air source is used to provide gas, and the vent tube is connected to the air source and is used to inject air into the reversing frame 512; the control valve is mounted on the vent tube and is used to control the air pressure in the vent tube. It should be noted that in the embodiment of the present disclosure, when the bottle cap is set to be in the first state, the opening of the bottle cap is upward, and when the bottle cap is set to be in the second state, the opening of the bottle cap is downward.

[0065] Specifically, when the bottle caps are loaded into the reversing frame 512, the rotating disk 23 is turned on, and part of the bottle caps extend into the reversing grooves. Air is blown into the reversing frame 512 through the air supply member 514. Under the action of the air supply member 514, the bottle caps in the reversing frame 512 are in the first state (the principle is: if the bottle caps in the reversing frame 512 are in the second state, due to the action of the air supply member 514, the bottle caps in the second state are subjected to a larger air pressure, causing the bottle caps to be flipped over, and then driving the bottle caps to be in the first state). Driven by the rotating disk 23, the bottle caps in the first state are sent out at the opening and enter the conveying assembly 52.

[0066] As an example, the conveying assembly 52 includes multiple curved conveying tubes 521; the multiple curved conveying tubes 521 form a conveying channel for the bottle caps, wherein the curved conveying tubes 521 have a reversing portion. When the bottle caps in the first state are sent out through the outlet 5121 of the reversing frame 512, the bottle caps enter the conveying channel. Under the action of the reversing portion, the bottle caps are flipped over, and the bottle caps are in the second state, so as to facilitate the taking of the filling mechanism 4, thereby improving the preparation efficiency of the preparation equipment.

[0067] See also Figure 7 、 Figure 8 as well as Figure 9 In some embodiments of the present disclosure, the filling mechanism 4 includes a filling bracket 41, a filling cylinder 42, and a liquid filling and capping assembly 43; the filling bracket 41 is movably arranged between the conveying assembly 52 and the unloading mechanism 3 (in the embodiment of the present disclosure, the canned bracket can rotate between the conveying assembly 52 and the unloading, and can move up and down between the conveying assembly 52 and the unloading bracket 31); the filling cylinder 42 is arranged on the filling bracket 41; the liquid filling and capping assembly 43 is symmetrically arranged along the length direction of the filling bracket 41, and there are multiple liquid filling and capping assemblies 43 arranged along the length direction of the filling bracket 41. The liquid filling and capping assembly 43 is used to inject liquid into the bottle body and can seal the bottle body.

[0068] Specifically, when the oral liquid is poured into the bottle on the unloading mechanism 3, the canning bracket is first caused to move downward. At this time, the liquid filling and sealing assembly 43 on one side is close to the unloading mechanism 3, and the liquid filling and sealing assembly 43 on the other side is close to the conveying assembly 52. ​​The liquid filling and sealing assembly 43 close to the unloading mechanism 3 fills the bottle on the unloading mechanism 3 with oral liquid, and the liquid filling and sealing assembly 43 close to the conveying assembly 52 clamps the bottle cap on the conveying assembly 52. ​​When the liquid filling and sealing assembly 43 completes the filling of the bottle with oral liquid, the filling bracket 41 is driven to move upward, and the filling bracket 41 rises to an appropriate position. After the filling bracket 41 is placed, the filling bracket 41 is driven to rotate so that the liquid injection and sealing assembly 43 holding the bottle cap moves to the top of the oral liquid bottle that has been filled. At this time, the canning bracket is driven to move downward to complete the sealing of the bottle cap; and the liquid injection and sealing assembly 43 on the other side moves to the top of the conveying assembly 52 to complete the clamping of the bottle cap on the conveying assembly 52, thereby realizing uninterrupted filling and sealing of the oral liquid, improving the preparation efficiency of the oral liquid, and the filling and sealing are carried out in a shorter time, which can effectively reduce the contamination of the oral liquid in the bottle, so as to further improve the quality of the oral liquid.

[0069] See also Figure 10 、 Figure 11 As an example, the liquid filling and sealing assembly 43 includes a lifting cylinder 431, a rotating motor 432, a liquid filling tube 433, a pressing spring 434, a pressure member 435, a first clamping member 436 and a second clamping member 437; the lifting cylinder 431 is arranged on one side of the unloading mechanism 3, and the lifting cylinder 431 is connected to the filling bracket 41 to drive the filling bracket 41 to move up and down; the rotating motor 432 is installed on the filling bracket 41, and the axial direction of the output shaft of the rotating motor 432 is the same as the lifting direction of the filling bracket 41 ; The first clamping member 436 is connected to the output shaft of the rotating motor 432, and the rotating motor 432 is used to drive the first clamping member 436 to rotate; the tightening spring 434 is sleeved on the output shaft of the rotating motor 432, and is used to provide a tightening force to the first clamping member 436; the injection tube 433 is connected to the filling cylinder 42; the pressure member 435 is provided on the injection tube 433; the second clamping member 437 is provided on the unloading mechanism 3, and is used to clamp the bottle body on the unloading mechanism 3, so as to facilitate the capping of the bottle cap on the unloading mechanism 3.

[0070] As an example, the pressurizing member 435 can be a pressurizing pump, through which the oral liquid in the filling cylinder 42 can be delivered to the injection tube 433. Of course, the pressurizing member 435 can be configured as other structures, which will not be described in detail in this application.

[0071] In this example, the first clamping member 436 includes a first clamping cylinder 4361, a clamping block 4362, a clamping rack 4363, a clamping gear 4364 and a plurality of clamping claws 4365; the first clamping cylinder 4361 is arranged at the output end of the rotating motor 432; the clamping block 4362 is connected to the first clamping cylinder 4361, and the movement direction of the first clamping cylinder 4361 is the same as the lifting direction of the filling bracket 41; the clamping rack 4363 is installed at the output end of the clamping cylinder, and the clamping rack 4363 is slidingly connected to the clamping block 4362; the clamping gear 4364 is rotatably connected to the clamping block 4362, and the clamping gear 4364 is engaged with the clamping rack 4363; the clamping claw 4365 is connected to the clamping gear 4364, and the clamping block 4362 arranged relative to the movement direction of the clamping rack 4363 forms a clamping space for the bottle cap.

[0072] As an example, the second clamping member 437 includes a second clamping cylinder 4371 and a clamping plate 4372; the second clamping cylinder 4371 is disposed on the blanking bracket 31, and the clamping plate 4372 is disposed at the output end of the second clamping cylinder 4371, wherein the movement direction of the second clamping cylinder 4371 is the same as the length direction of the blanking bracket 31. Specifically, when the bottle cap knob needs to be tightened on the bottle body, the second clamping cylinder 4371 is turned on, and the second clamping cylinder 4371 drives the clamping plate 4372 to move. The clamping plate 4372 approaches the bottle body to fix the bottle body on the blanking bracket 31, thereby facilitating the tightening of the bottle cap knob on the bottle body.

[0073] According to a second aspect of the present disclosure, a method for preparing a blood-nourishing oral liquid is provided, comprising:

[0074] S1: Weigh the raw materials according to the proportion.

[0075] Specifically, as an example, the proportion of the blood-nourishing oral liquid can be 2 to 8 parts of alum; 180 to 220 parts of sea buckthorn; 80 to 120 parts of hawthorn; and 80 to 120 parts of jujube.

[0076] S2: decocting the raw materials, extracting the decocting liquid, and processing the decocting liquid to form an oral liquid, which is then passed into the filling mechanism 4.

[0077] Specifically, the raw materials are weighed according to a specific ratio and placed together in a gauze bag. The gauze bag containing the medicinal materials is then placed in a decoction container and soaked in a certain amount of water. The gauze bag containing the medicinal materials is decocted multiple times to extract a decoction liquid. The decoction liquid is transferred to a concentrator, heated at low temperature, and filtered through a filter to produce a concentrated extract. Then, 0.15 to 0.3 times the amount of purified water is added to the concentrated extract, the mixture is continuously stirred, and the mixture is allowed to stand at low temperature for a period of time to produce a mixed extract. The mixed extract is heated and stirred with a crystal sugar solution, and then sterilized to form an oral liquid. The resulting oral liquid is then passed into a filling mechanism.

[0078] S3: The first loading mechanism 1 conveys the bottle to the cleaning mechanism 2, which cleans the bottle. The cleaning mechanism 2 then conveys the bottle to the unloading mechanism 3, which conveys the bottle to the filling mechanism 4.

[0079] S4: the second loading mechanism 5 loads the bottle caps, the filling mechanism 4 injects liquid into the bottle bodies on the unloading mechanism 3, and caps the liquid-injected bottles.

[0080] Those skilled in the art will readily appreciate other embodiments of the present disclosure after considering the specification and practicing the invention disclosed herein. This application is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, with the true scope and spirit of the present disclosure being indicated by the appended claims.

Claims

1. A preparation device for nourishing blood oral liquid, characterized in that: The invention comprises a first loading mechanism, a cleaning mechanism, a discharge mechanism, a filling mechanism and a second loading mechanism; the first loading mechanism comprises a first loading bracket, a loading turntable, an arc block, a correction component and a toggle component; the first loading bracket has a loading end and a discharge end; the loading turntable is rotatably connected to the first loading bracket; the arc block is installed on the first loading bracket, wherein the arc block and the first loading bracket form a bottle channel; the correction component is provided on the loading turntable, and the correction component cooperates with the first loading bracket to correct the trajectories of bottles of different specifications; the cleaning mechanism is connected to the discharge end through the toggle component, and the cleaning mechanism is used to clean the bottles sent out from the discharge end; The toggle assembly includes a toggle bracket, at least two toggle blocks and at least two limit blocks; the toggle bracket is arranged at the unloading end; a plurality of limit blocks are arranged on the toggle bracket, and the limit blocks arranged opposite to each other form a movement channel for the bottle body; the limit block has a toggle groove, and the plurality of toggle blocks are rotatably connected to both sides of the limit block, and some of the toggle blocks extend into the toggle groove; the toggle block has a driving groove, and the driving grooves arranged opposite to each other form a toggle space for the bottle body; wherein the cleaning mechanism comprises a cleaning frame, a rotating rod and a plurality of rotating disks; the cleaning frame is arranged on a side of the toggle bracket away from the first loading bracket, and along the length direction of the cleaning frame, the cleaning frame has a disinfection area, a rinsing area and a drying area; the rotating rod is rotatably connected to the cleaning frame; the plurality of rotating disks are coaxially arranged on the rotating rod, and the plurality of rotating disks are correspondingly arranged in the disinfection area, the rinsing area and the drying area, and the rotating disk has a loading assembly evenly arranged along its circumference; the loading assembly comprises a loading bracket and a driving member; wherein the loading bracket comprises a horizontal section and vertical sections arranged on both sides of the horizontal section; the horizontal section is arranged on the rotating disk; the vertical section is slidably connected to the horizontal section, and the vertical sections arranged on both sides of the horizontal section form a clamping space for the bottle body; the driving member is used to drive the vertical sections to approach or move away from each other; The toggle assembly is used to deliver the bottle body at the unloading end to the cleaning mechanism; the unloading mechanism is connected to the cleaning mechanism for delivering the cleaned bottle body, wherein the movement trajectory of the bottle body in the cleaning mechanism is perpendicular to the movement trajectory of the bottle body in the unloading mechanism; the unloading mechanism includes a unloading bracket, an unloading inclined plate, a conveying assembly and a bottle blocking assembly; the unloading bracket is arranged on one side of the cleaning frame, and the length direction of the unloading bracket is perpendicular to the length direction of the cleaning frame; the conveying assembly is arranged on the unloading bracket for conveying the bottle body on the unloading bracket; the unloading inclined plate includes a horizontal part and an inclined part; the horizontal part is arranged on the unloading bracket On the material bracket, the length direction of the horizontal part is the same as the length direction of the blanking bracket; the inclined part is connected to the horizontal part, wherein the horizontal part and the inclined part form a reversing space for the bottle body; the bottle blocking assembly is provided on the blanking bracket for blocking the bottle body; wherein the bottle blocking assembly includes a bottle blocking cylinder and a bottle blocking block; the bottle blocking block includes a horizontal rod and a vertical rod; the horizontal rod is connected to the vertical rod, the length direction of the horizontal rod is the same as the length direction of the blanking bracket, the length direction of the vertical rod is perpendicular to the length direction of the blanking bracket, the horizontal rod is connected to the blanking bracket through the bottle blocking cylinder, and the movement direction of the bottle blocking cylinder is perpendicular to the movement direction of the blanking bracket; The second loading mechanism includes a reversing assembly and a conveying assembly; the conveying assembly is arranged on one side of the unloading bracket, and is used to convey the bottle caps falling from the reversing assembly; the reversing assembly includes a reversing bracket, a reversing frame, a steering turntable and an air supply component; the reversing bracket is arranged on one side of the unloading bracket; the reversing frame is tilted on the unloading bracket, wherein one side of the reversing frame has an outlet; the steering turntable is rotatably connected to the reversing frame, and the steering turntable has a reversing groove; the air supply component is used to blow air into the reversing frame so that the bottle caps delivered at the outlet are in a first state; the conveying assembly is connected to the outlet, wherein the conveying assembly can change the state of the bottle caps so that the bottle caps are delivered to the filling mechanism in the second state; The filling mechanism is arranged on one side of the feeding mechanism, and is used for filling the bottles delivered by the feeding mechanism with liquid and sealing the bottles; the filling mechanism includes a filling bracket, a filling cylinder, and a liquid filling and capping assembly; the filling bracket is movably arranged between the conveying assembly and the feeding mechanism; the filling cylinder is arranged on the filling bracket; the liquid filling and capping assemblies are symmetrically arranged along the length direction of the filling bracket, and there are multiple liquid filling and capping assemblies arranged along the length direction of the filling bracket, and the liquid filling and capping assemblies are used for filling liquid into the bottles and sealing the bottles; The second feeding mechanism is arranged on one side of the filling mechanism and is used for conveying bottle caps.

2. The preparation equipment for the blood-nourishing oral liquid according to claim 1, characterized in that: The correction assembly includes a correction bracket, a correction rod, a correction block and a fixed handle; the correction bracket is arranged on the first feeding bracket, and the correction bracket has a sliding groove; the correction rod can slide along the length direction of the sliding groove and can rotate in the sliding groove; the fixed handle is threadedly connected to the correction rod, and the fixed handle is used to fix the correction rod and the correction bracket; the correction block is arranged on the correction rod, and one side of the correction block and the side wall of the first feeding bracket form a bottle body channel.

3. The preparation equipment of the blood-nourishing oral liquid according to claim 1, characterized in that: The liquid filling and sealing assembly includes a lifting cylinder, a rotating motor, a liquid filling tube, a pressing spring, a pressure member, a first clamping member, and a second clamping member; the lifting cylinder is arranged on one side of the unloading mechanism, and the lifting cylinder is connected to the filling bracket to drive the filling bracket to move up and down; The rotating motor is arranged on the filling bracket; the first clamping member is connected to the output shaft of the rotating motor, and the rotating motor is used to drive the first clamping member to rotate; the tightening spring is sleeved on the output shaft of the rotating motor, and is used to provide a tightening force to the first clamping member; the injection tube is connected to the filling barrel; the pressure member is arranged on the injection tube; the second clamping member is arranged on the discharge mechanism, and is used to clamp the bottle body on the discharge mechanism.

4. The preparation equipment for the blood-nourishing oral liquid according to claim 3, characterized in that: The first clamping member includes a first clamping cylinder, a clamping block, a clamping rack, a clamping gear and a plurality of clamping claws; the first clamping cylinder is arranged at the output end of the rotating motor; the clamping block is connected to the clamping cylinder; the clamping rack is arranged at the output end of the clamping cylinder and is slidably connected to the clamping block; the clamping gear is rotatably connected to the clamping block, and the clamping gear is meshed with the clamping rack; the clamping claw is connected to the clamping gear, and the clamping blocks arranged relative to the movement direction of the clamping rack form a clamping space for the bottle cap.

5. A method for preparing a blood-nourishing oral liquid, applied to the blood-nourishing oral liquid preparation device according to any one of claims 1 to 4, characterized in that: include: Weigh the raw materials in proportion; The raw materials are decocted to extract the decoction liquid, and the decoction liquid is processed to form an oral liquid, and the oral liquid is passed into the filling mechanism; The first feeding mechanism transports the bottle body to the cleaning mechanism, which cleans the bottle body and then sends the bottle body to the unloading mechanism, which then transports the bottle body to the filling mechanism. The second feeding mechanism feeds the bottle caps, the filling mechanism injects liquid into the bottle bodies on the feeding mechanism, and caps the liquid-injected bottles.

Citation Information

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