Gleditsia sinensis and fleece-flower root shampoo preparation process and filling device
By designing a filling device with the transmission belt device and the lifting platform, the precise control of the mixed liquid during the filling process of Polygonatum shampoo is ensured, and the problems of difficult and poor accuracy of the liquid pump output control are solved, and the precise filling of the mixed liquid is achieved and product quality is improved.
Patent Information
- Application Number
- CN202510488665.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2025-07-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the prior art, the liquid pump output control during the filling process of the mouth filling machine is difficult and has poor accuracy, resulting in a large error in the mixed liquid in the packaging bottle, affecting product quality and reputation.
A Polygonum multiflorum shampoo filling device is adopted, including a transmission belt device and a lifting platform. Through the coordination of the dosing barrel and the piston rod, the amount of mixed liquid is ensured to be the same at each inhalation and discharge, and the airflow is used to clean the liquid retained in the discharge nozzle to reduce errors.
It effectively reduces the error of the mixed liquid in the packaging bottle and improves product quality and consistency.
Smart Images

Figure CN120246910A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of preparation of Gleditsia sinensis and Polygonum multiflorum shampoo, and specifically relates to a preparation process and filling device for Gleditsia sinensis and Polygonum multiflorum shampoo. Background Art
[0002] The Gleditsia sinensis and Polygonum multiflorum shampoo is made by boiling a variety of natural plant ingredients, without preservatives and silicone oil, without adding any chemical components, non-toxic and harmless, different from other commercially available chemical shampoos. Persistent use can repair damaged hair quality and restore healthy hair quality, making the Gleditsia sinensis and Polygonum multiflorum shampoo one of the daily preferred shampoos for people.
[0003] The patent with publication number CN110974760A discloses an environmentally friendly shampoo and its preparation method. The shampoo is composed of raw materials such as tea seeds, Gleditsia sinensis, Sapindus mukorossi, ginger, pomelo peel, Polygonum multiflorum, angelica, ginseng, mulberry leaves, astragalus membranaceus, mint extract, mugwort, avocado, honeysuckle, rice, etc. The components in parts by weight are: 90 - 110 parts of tea seeds; 75 - 85 parts of Gleditsia sinensis; 55 - 65 parts of Sapindus mukorossi; 18 - 22 parts of ginger; 10 - 20 parts of pomelo peel; 18 - 22 parts of Polygonum multiflorum; 18 - 22 parts of angelica; 18 - 22 parts of ginseng; 16 - 22 parts of mulberry leaves. The shampoo of this invention not only does not contain chemical synthetic substances and is biodegradable, improving its environmental friendliness, but also the selected raw materials are easy to obtain, low in price, and the production process is simple, thus reducing the manufacturing cost of this shampoo, which is in line with the interests of the enterprise itself.
[0004] In the above solution, the filtered mixed liquid is filled into the packaging bottle through a filling machine. When the filling machine is in use, the mixed liquid stored in the filling machine is pumped into the packaging bottle through a liquid pump. The amount of the mixed liquid pumped into the packaging bottle is mainly controlled by controlling the output of the liquid pump. However, it is difficult to control the output of the liquid pump and the accuracy is poor, resulting in a large error in the amount of the mixed liquid filled into the packaging bottle. After the product is put on the market, the large deviation in the amount of the mixed liquid in the packaging can affects the product's reputation. Therefore, the present invention provides a preparation process and filling device for Gleditsia sinensis and Polygonum multiflorum shampoo. Summary of the Invention
[0005] In order to make up for the deficiencies of the prior art and solve at least one technical problem proposed in the background art.
[0006] The technical solution adopted by the present invention to solve its technical problems is: A preparation process for Gleditsia sinensis and Polygonum multiflorum shampoo described in the present invention includes the following steps: Step 1: Select raw materials composed of Gleditsia sinensis, Sapindus mukorossi, ginger, pomelo peel, Polygonum multiflorum, angelica, ginseng, mulberry leaves, astragalus membranaceus, mugwort, avocado, honeysuckle, and aloe vera; Step 2: Put all the raw materials into the impurity removal box for impurity removal treatment; Step 3: Put the raw materials after impurity removal into a washing machine respectively for washing treatment; Step 4: Put the raw materials after impurity removal, tea seeds, rice and black sesame into a drying oven respectively for drying treatment; Step 5: Put the dried raw materials into a crusher respectively for crushing treatment; Step 6: Add the crushed raw materials, mint extract, brown sugar and distilled water into a blender for stirring treatment; Step 7: Filter the mixed liquid with a filter bag; Step 8: Inject the mixed liquid into a filling device, and fill a quantitative mixed liquid into a packaging bottle through the filling device; Step 9: Package and store in the warehouse after passing the inspection.
[0007] Preferably, a filling device for the Zaojiao Shouwu shampoo, which is applicable to the above-mentioned preparation process of the Zaojiao Shouwu shampoo, includes a conveyor belt device. Above the conveyor belt device, there is a lifting platform, and on one side of the conveyor belt device, there is a first cylinder for driving the lifting platform. On the lifting platform, there is a liquid storage tank. On one side of the liquid storage tank, there is a filling mechanism. The filling mechanism includes a metering barrel, the metering barrel is fixedly installed on the lifting platform, and the feed inlet of the metering barrel is connected to the discharge end of the liquid storage tank. A piston rod movably installed in the metering barrel, a connecting plate fixedly connected to the upper end of the piston rod, a second cylinder installed on one side of the metering barrel for driving the connecting plate, a feed plug for blocking the feed inlet of the metering barrel, a guide post movably inserted into the feed plug, the guide post is fixedly installed in the feed inlet of the metering barrel, a first spring sleeved on the guide post, a discharge nozzle fixedly installed at the discharge port of the metering barrel, a discharge plug for blocking the discharge port of the metering barrel, the discharge plug includes a plug main body, the plug main body is inserted into a guide post, a second spring is sleeved on the guide post, and the guide post is rotatably installed in the discharge nozzle; Since the up and down strokes of the piston rod are equal, and during the up and down movement of the piston rod, the feed plug and the plug main body can be automatically opened and closed, so that the amount of the mixed liquid inhaled and discharged in the metering barrel each time is the same, thereby greatly reducing the error of the amount of the mixed liquid filled into the packaging bottle and improving the overall quality of the product.
[0008] Preferably, four groups of slide bars are fixedly installed on the lower end surface of the lifting platform, and two groups of guide tubes are respectively installed on both sides of the conveyor belt device, and the slide bars are movably inserted into the guide tubes.
[0009] The cooperation between the slide bars and the guide tubes plays a guiding role in the movement of the lifting platform.
[0010] Preferably, the piston rod includes a pull rod, the upper end of the pull rod is fixedly connected to a connecting plate, a piston head fixedly connected to the lower end of the pull rod, a rubber sleeve fixedly sleeved on the piston head, a ventilation hole opened at the bottom of the piston head, a transmission shaft movably inserted into the ventilation hole, a rectangular shaft movably inserted into the transmission shaft, a movable plate, the upper end of the transmission shaft is rotatably connected to the movable plate, a screw rod screwed to the movable plate, and both the screw rod and the rectangular shaft are rotatably installed in the piston head. The piston head together with the rubber sleeve is slidably connected to the inner cavity of the metering barrel. A docking shaft is arranged inside the lower end of the transmission shaft, a docking groove for inserting the docking shaft is opened at the upper end of the guide post, and six groups of fan blades are inserted at equal angles on the outer ring of the plug body; As the fan blades rotate, air flows through the ventilation hole into the discharge nozzle, and the mixed liquid remaining in the discharge nozzle is blown into the packaging bottle by the rapidly flowing air, realizing the cleaning of the mixed liquid remaining in the discharge nozzle, thereby greatly reducing the amount of mixed liquid remaining in the discharge nozzle each time, and further reducing the error of the amount of mixed liquid filled into the packaging bottle.
[0011] Preferably, the discharge plug further includes a rotating sleeve rotatably installed in the plug body, six groups of receiving shafts fixedly connected to the fan blades, six groups of inclined chutes opened on the rotating sleeve, driving the receiving shafts along the inclined chutes to move the fan blades into the plug body, and two groups of guiding grooves are further opened on the rotating sleeve, the guiding grooves are composed of a straight groove and a spiral groove, two groups of pin shafts are symmetrically installed on the guide post, driving the pin shafts along the spiral groove to rotate the rotating sleeve, and two groups of rectangular grooves for avoiding the pin shafts are opened in the plug body; As the rotating sleeve rotates, the receiving shafts will slide along the inclined chutes on the rotating sleeve. Under the guidance of the inclined chutes, the receiving shafts drive the fan blades to move towards the inside of the plug body, not only avoiding the obstruction of the fan blades to the passage of the mixed liquid through the inside of the discharge nozzle, but also avoiding the pressure of the mixed liquid on the fan blades.
[0012] The beneficial effects of the present invention are as follows: 1. Since the up and down strokes of the piston rod are equal, and during the up and down movement of the piston rod, the feeding plug and the plug body can be automatically opened and closed, so that the amount of mixed liquid inhaled and discharged in the metering barrel each time is the same, thereby greatly reducing the error of the amount of mixed liquid filled into the packaging bottle and improving the overall quality of the product.
[0013] 2. Drive a screw rod to rotate through a set of motors. As the screw rod rotates, the movable plate drives the transmission shaft to move downward along the ventilation hole until the docking shaft inside the lower end of the transmission shaft is inserted into the docking groove at the upper end of the guide post, and the lower end of the docking shaft presses against the bottom of the docking groove. During this process, the transmission shaft pushes the plug body, releasing the plug body's blockage of the quantitative barrel's discharge port and simultaneously releasing the transmission shaft's blockage of the ventilation hole. Then, drive a rectangular shaft to rotate through another set of motors. The rectangular shaft drives the guide post to rotate through the transmission shaft, and the guide post drives the plug body together with the fan blade to rotate. As the fan blade rotates, air flows through the ventilation hole into the discharge nozzle, and the rapidly flowing air blows the mixed liquid remaining in the discharge nozzle into the packaging bottle, realizing the cleaning of the mixed liquid remaining in the discharge nozzle, thereby greatly reducing the mixed liquid remaining in the discharge nozzle each time and further reducing the error in the amount of mixed liquid filled into the packaging bottle.
[0014] 3. During the process of the mixed liquid passing through the discharge nozzle, the mixed liquid pushes the plug body to move downward along the guide post. At the same time, the pin shaft on the guide post first moves along the straight groove, and then the pin shaft enters the spiral groove from the straight groove. Under the guidance of the spiral groove, the rotating sleeve rotates by itself. As the rotating sleeve rotates, the receiving shaft will slide along the inclined chute on the rotating sleeve. Under the guidance of the inclined chute, the receiving shaft drives the fan blade to move towards the inside of the plug body, not only avoiding the obstruction of the fan blade to the passage of the mixed liquid through the inside of the discharge nozzle, but also avoiding the fan blade from being pressured by the mixed liquid. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] The present invention will be further described below with reference to the accompanying drawings.
[0016] Figure 1 It is a schematic structural diagram of the present invention.
[0017] Figure 2 It is a schematic cross-sectional view of the filling mechanism of the present invention.
[0018] Figure 3 It is Figure 2 the enlarged view at A in
[0019] Figure 4 It is Figure 2 the enlarged view at B in
[0020] Figure 5 It is a schematic cross-sectional view of the combination of the quantitative barrel, piston rod, connecting plate, discharge plug, and discharge nozzle of the present invention.
[0021] Figure 6 It is Figure 5 the enlarged view at C in
[0022] Figure 7 It is a schematic cross-sectional view of the discharge plug of the present invention.
[0023] Figure 8Schematic diagram of the combined guide post, fan blade, rotating sleeve, and receiving shaft of the present invention.
[0024] In the figure: 1. Belt drive device; 101. Guide tube; 2. Lifting platform; 201. Slide bar; 3. Liquid storage tank; 4. Filling mechanism; 5. First cylinder; 401. Measuring bucket; 402. Piston rod; 403. Connecting plate; 404. Second cylinder; 405. Feed plug; 406. Guide post; 407. First spring; 408. Discharge plug; 409. Discharge nozzle; 4081. Plug main body; 11. Rectangular groove; 4082. Guide post; 821. Docking groove; 21. Pin shaft; 4083. Second spring; 4084. Fan blade; 4085. Rotating sleeve; 51. Oblique chute; 52. Guide groove; 521. Linear groove; 522. Spiral groove; 4086. Receiving shaft; 4021. Pull rod; 4022. Piston head; 4023. Rubber sleeve; 4024. Vent hole; 4025. Transmission shaft; 4026. Docking shaft; 4027. Rectangular shaft; 4028. Movable plate; 4029. Screw. Detailed implementation manners
[0025] 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 implementation manners.
[0026] Embodiment 1 A preparation process of a sophora japonica and polygonum multiflorum shampoo according to an embodiment of the present invention includes the following steps: Step 1: Select raw materials composed of sophora japonica, sapindus mukorossi, ginger, pomelo peel, polygonum multiflorum, angelica sinensis, ginseng, mulberry leaves, astragalus membranaceus, mugwort, avocado, honeysuckle, and aloe vera. Step 2: Put all the raw materials into a impurity removal box for impurity removal treatment respectively. Step 3: Put the impurity-removed raw materials into a cleaning machine for cleaning treatment respectively. Step 4: Put the impurity-removed raw materials, tea seeds, rice, and black sesame into a drying box for drying treatment respectively. Step 5: Put the dried raw materials into a pulverizer for pulverization treatment respectively. Step 6: Add the pulverized raw materials, mint extract, brown sugar, and distilled water into a blender for stirring treatment. Step 7: Filter the mixed liquid with a filter bag. Step 8: Inject the mixed liquid into a filling device, and fill a quantitative mixed liquid into a packaging bottle through the filling device. Step 9: Package and store in the warehouse after passing the inspection.
[0027] Further, in order to optimize the preparation process of the Gleditsia officinalis and Polygonum multiflorum shampoo, the embodiment of the present invention improves the filling device, and reduces the error of the amount of the mixed liquid filled into the packaging bottle by controlling the same amount of the mixed liquid inhaled and discharged by the filling device each time.
[0028] Embodiment 2 As Figures 1 to 4 shown, a filling device for Gleditsia officinalis and Polygonum multiflorum shampoo is applicable to the above-mentioned preparation process of Gleditsia officinalis and Polygonum multiflorum shampoo, and includes a conveyor belt device 1. A lifting platform 2 is arranged above the conveyor belt device 1, and a first cylinder 5 for driving the lifting platform 2 is arranged on one side of the conveyor belt device 1. A liquid storage tank 3 is arranged on the lifting platform 2, and a filling mechanism 4 is arranged on one side of the liquid storage tank 3. The filling mechanism 4 includes a metering barrel 401, the metering barrel 401 is fixedly installed on the lifting platform 2, and the feed inlet of the metering barrel 401 is connected to the discharge end of the liquid storage tank 3. A piston rod 402 is movably installed in the metering barrel 401, a connecting plate 403 is fixedly connected to the upper end of the piston rod 402, a second cylinder 404 for driving the connecting plate 403 is installed on one side of the metering barrel 401, a feed plug 405 for blocking the feed inlet of the metering barrel 401, a guide post 406 movably inserted into the feed plug 405, the guide post 406 is fixedly installed in the feed inlet of the metering barrel 401, a first spring 407 sleeved on the guide post 406, a discharge nozzle 409 fixedly installed at the discharge outlet of the metering barrel 401, a discharge plug 408 for blocking the discharge outlet of the metering barrel 401, the discharge plug 408 includes a plug main body 4081, the plug main body 4081 is inserted with a guide post 4082, a second spring 4083 is sleeved on the guide post 4082, and the guide post 4082 is rotatably installed in the discharge nozzle 409.
[0029] Specifically, a mixed liquid is stored in the liquid storage tank 3. In the initial state, the lower end of the piston rod 402 closely adheres to the bottom of the metering barrel 401. When it is necessary to fill the mixed liquid into the packaging bottle, the packaging bottle is placed on the conveyor belt device 1, and the packaging bottle is conveyed to directly below the discharge nozzle 409 through the conveyor belt device 1. Then, the first cylinder 5 is started, and the first cylinder 5 pulls the lifting table 2 together with the liquid storage tank 3 and the filling mechanism 4 to move downward, so that the discharge nozzle 409 on the filling mechanism 4 is inserted into the bottle mouth of the packaging bottle. Then, the connecting plate 403 is pushed by the second cylinder 404 to drive the piston rod 402 to move upward, and the piston rod 402 will slide along the inner cavity of the metering barrel 401. As the piston rod 402 moves, the mixed liquid in the liquid storage tank 3 will be sucked into the feed port of the metering barrel 401, so that the feed plug 405 is pushed open by the incoming mixed liquid, and the feed plug 405 moves along the guide post 406 towards the inside of the metering barrel 401. At the same time, the first spring 407 is compressed, and under the influence of the external air pressure, the plug body 4081 tightly blocks the discharge port of the metering barrel 401 until the piston rod 402 can no longer move upward, realizing the injection of the mixed liquid into the metering barrel 401. At this time, the mixed liquid in the liquid storage tank 3 will stop entering the feed port of the metering barrel 401. Under the rebounding force of the first spring 407, the feed plug 405 re-blocks the feed port of the metering barrel 401. Then, the connecting plate 403 is pulled by the second cylinder 404 to drive the piston rod 402 to move downward. As the piston rod 402 moves downward, the piston rod 402 presses the mixed liquid in the metering barrel 401. Under the action of the hydraulic pressure, the feed plug 405 will tightly block the feed port, while the plug body 4081 is pushed open by the mixed liquid, and the plug body 4081 slides downward along the guide post 4082. At the same time, the second spring 4083 is compressed by the plug body 4081, so that the mixed liquid is injected into the packaging bottle through the discharge nozzle 409 until the lower end of the piston rod 402 closely adheres to the bottom of the metering barrel 401. Under the rebounding force of the second spring 4083, the plug body 4081 re-blocks the discharge port, realizing the filling of the mixed liquid into the packaging bottle. Replace the next group of packaging bottles and repeat the above operations. Compared with the prior art, since the up and down strokes of the piston rod 402 are equal, and during the up and down movement of the piston rod 402, the feed plug 405 and the plug body 4081 can be automatically opened and closed, the amount of the mixed liquid sucked and discharged in the metering barrel 401 each time is the same, so that the error of the amount of the mixed liquid filled into the packaging bottle is greatly reduced, improving the overall quality of the product.
[0030] As Figure 1 shown, four groups of slide bars 201 are fixedly installed on the lower end surface of the lifting table 2, and two groups of guide tubes 101 are respectively installed on both sides of the conveyor belt device 1, and the slide bars 201 are movably inserted into the guide tubes 101.
[0031] Specifically, during the downward movement of the lifting platform 2, the lifting platform 2 drives the sliding rod 201 to slide downward along the guide tube 101. The cooperation between the sliding rod 201 and the guide tube 101 guides the movement of the lifting platform 2.
[0032] As Figure 5 shown in Figure 6 the piston rod 402 includes a pull rod 4021, the upper end of the pull rod 4021 is fixedly connected to the connecting plate 403, the piston head 4022 fixedly connected to the lower end of the pull rod 4021, the rubber sleeve 4023 fixedly sleeved on the piston head 4022, the vent hole 4024 opened at the bottom of the piston head 4022, the transmission shaft 4025 movably inserted into the vent hole 4024, the rectangular shaft 4027 movably inserted into the transmission shaft 4025, the movable plate 4028, the upper end of the transmission shaft 4025 is rotatably connected to the movable plate 4028, the screw rod 4029 screwed to the movable plate 4028, the screw rod 4029 and the rectangular shaft 4027 are both rotatably installed in the piston head 4022, the piston head 4022 together with the rubber sleeve 4023 is slidably connected to the inner cavity of the metering barrel 401, a docking shaft 4026 is arranged inside the lower end of the transmission shaft 4025, a docking groove 821 for inserting the docking shaft 4026 is opened at the upper end of the guide post 4082, and six groups of fan blades 4084 are equiangularly inserted on the outer ring of the plug body 4081.
[0033] Specifically, the above-mentioned mixed liquid is injected into the packaging bottle through the discharge nozzle 409. Due to the strong adhesiveness of the mixed liquid, when the piston rod 402 moves to the bottom of the metering barrel 401, the replenishment of the mixed liquid in the discharge nozzle 409 will be interrupted, causing the residual mixed liquid in the discharge nozzle 409 to lose the thrust, resulting in the residual mixed liquid remaining in the discharge nozzle 409. And each time when injecting the mixed liquid into the packaging bottle, the amount of the mixed liquid remaining in the discharge nozzle 409 is uncontrollable, leading to a slight error in the amount of the mixed liquid filled into the packaging bottle. Therefore, when the piston rod 402 moves upward along the inner cavity of the metering barrel 401, the connecting plate 403 makes the piston head 4022 together with the rubber sleeve 4023 slide upward along the inner cavity of the metering barrel 401 through the pull rod 4021, so that the mixed liquid is injected into the metering barrel 401. When the piston rod 402 moves downward along the inner cavity of the metering barrel 401, the piston head 4022 together with the rubber sleeve 4023 presses down the mixed liquid in the metering barrel 401, so that the mixed liquid is injected into the packaging bottle. When the piston head 4022 together with the rubber sleeve 4023 moves to the bottom of the metering barrel 401, at this time, the plug main body 4081 plugs the discharge port again under the rebounding force of the second spring 4083, and the transmission shaft 4025 at the bottom of the piston head 4022 is inserted into the upper end of the guide post 4082, and the lower end of the transmission shaft 4025 abuts against the plug main body 4081. By driving the screw 4029 to rotate through a set of motors, as the screw 4029 rotates, the movable plate 4028 drives the transmission shaft 4025 to move downward along the vent hole 4024 until the docking shaft 4026 in the lower end of the transmission shaft 4025 is inserted into the docking groove 821 at the upper end of the guide post 4082, and the lower end of the docking shaft 4026 presses against the bottom of the docking groove 821. In this process, the transmission shaft 4025 pushes the plug main body 4081, releasing the plugging of the discharge port of the metering barrel 401 by the plug main body 4081, and at the same time releasing the plugging of the vent hole 4024 by the transmission shaft 4025. Then, by driving the rectangular shaft 4027 to rotate through another set of motors, the rectangular shaft 4027 drives the guide post 4082 to rotate through the transmission shaft 4025, and the guide post 4082 drives the plug main body 4081 together with the six groups of fan blades 4084 to rotate. As the fan blades 4084 rotate, the air flow enters the discharge nozzle 409 through the vent hole 4024, and the mixed liquid remaining in the discharge nozzle 409 is blown into the packaging bottle through the fast-flowing air flow, realizing the cleaning of the mixed liquid remaining in the discharge nozzle 409, thereby greatly reducing the amount of the mixed liquid remaining in the discharge nozzle 409 each time, and further reducing the error of the amount of the mixed liquid filled into the packaging bottle.
[0034] Such as Figure 7 And Figure 8As shown in the figure, the discharge plug 408 further includes a rotating sleeve 4085 which is rotatably installed in the plug body 4081, six sets of receiving shafts 4086, the receiving shafts 4086 are fixedly connected to the fan blades 4084, six sets of inclined chutes 51 are formed on the rotating sleeve 4085, and the receiving shafts 4086 are driven along the inclined chutes 51 to move the fan blades 4084 into the plug body 4081. Two sets of guiding grooves 52 are also formed on the rotating sleeve 4085, and the guiding grooves 52 are composed of a straight groove 521 and a spiral groove 522. Two sets of pin shafts 21 are symmetrically installed on the guide post 4082, and the rotating sleeve 4085 is rotated by driving the pin shafts 21 along the spiral groove 522. Two rectangular grooves 11 for avoiding the pin shafts 21 are formed in the plug body 4081.
[0035] Specifically, since six sets of fan blades 4084 are installed on the plug body 4081, the plug body 4081 together with the six sets of fan blades 4084 occupies a large space in the discharge nozzle 409, which not only hinders the passage of the mixed liquid through the inside of the discharge nozzle 409, but also the fan blades 4084 are subjected to a large pressure of the mixed liquid. After long-term use, the fan blades 4084 are likely to be deformed. Therefore, during the process of the mixed liquid passing through the discharge nozzle 409, the mixed liquid pushes the plug body 4081 to move downward along the guide post 4082. At the same time, the pin shafts 21 on the guide post 4082 first move along the straight groove 521, and then the pin shafts 21 enter the spiral groove 522 from the straight groove 521. Under the guidance of the spiral groove 522, the rotating sleeve 4085 rotates itself. As the rotating sleeve 4085 rotates, the receiving shafts 4086 will slide along the inclined chutes 51 on the rotating sleeve 4085. Under the guidance of the inclined chutes 51, the receiving shafts 4086 drive the fan blades 4084 to move towards the inside of the plug body 4081, which not only avoids the obstruction of the fan blades 4084 to the passage of the mixed liquid through the inside of the discharge nozzle 409, but also avoids the pressure of the mixed liquid on the fan blades 4084. Secondly, when cleaning the retained mixed liquid in the discharge nozzle 409, the docking shaft 4026 at the lower end of the transmission shaft 4025 is inserted into the docking groove 821 at the upper end of the guide post 4082. When the lower end of the docking shaft 4026 presses the bottom of the docking groove 821, the pin shafts 21 move to the intersection of the straight groove 521 and the spiral groove 522. At this time, the fan blades 4084 will not be retracted into the plug body 4081.
[0036] Working principle: Place the packaging bottle on the conveyor belt device 1. The conveyor belt device 1 conveys the packaging bottle to directly below the discharge nozzle 409. Then, start the first cylinder 5. The first cylinder 5 pulls the lifting table 2 together with the liquid storage tank 3 and the filling mechanism 4 downward, so that the discharge nozzle 409 on the filling mechanism 4 is inserted into the bottle mouth of the packaging bottle. Next, the second cylinder 404 pushes the connecting plate 403 to drive the piston rod 402 to move upward, and the piston rod 402 will slide along the inner cavity of the metering barrel 401. As the piston rod 402 moves, the mixed liquid in the liquid storage tank 3 will be sucked into the feed port of the metering barrel 401, causing the feed plug 405 to be pushed open by the incoming mixed liquid, and the feed plug 405 moves along the guide post 406 towards the inside of the metering barrel 401. At the same time, the first spring 407 is compressed. Under the influence of the external air pressure, the plug main body 4081 tightly blocks the discharge port of the metering barrel 401 until the piston rod 402 can no longer move upward, realizing the injection of the mixed liquid into the metering barrel 401. At this time, the mixed liquid in the liquid storage tank 3 will stop entering the feed port of the metering barrel 401. Under the rebounding force of the first spring 407, the feed plug 405 re-blocks the feed port of the metering barrel 401. Then, the second cylinder 404 pulls the connecting plate 403 to drive the piston rod 402 to move downward. As the piston rod 402 moves downward, the piston rod 402 presses the mixed liquid in the metering barrel 401. Under the action of the hydraulic pressure, the feed plug 405 will tightly block the feed port, while the plug main body 4081 is pushed open by the mixed liquid, and the plug main body 4081 slides downward along the guide post 4082. At the same time, the second spring 4083 is compressed by the plug main body 4081, so that the mixed liquid is injected into the packaging bottle through the discharge nozzle 409 until the lower end of the piston rod 402 closely adheres to the bottom of the metering barrel 401. Under the rebounding force of the second spring 4083, the plug main body 4081 re-blocks the discharge port, realizing the loading of the mixed liquid into the packaging bottle. Replace the next group of packaging bottles and repeat the above operations; When the piston rod 402 moves downward along the inner cavity of the metering barrel 401, the piston head 4022 together with the rubber sleeve 4023 presses down the mixed liquid in the metering barrel 401, causing the mixed liquid to be injected into the packaging bottle. When the piston head 4022 together with the rubber sleeve 4023 moves to the bottom of the metering barrel 401, at this time, the plug main body 4081 re-blocks the discharge port under the rebounding force of the second spring 4083, and the transmission shaft 4025 at the bottom of the piston head 4022 is inserted into the upper end of the guide post 4082, and the lower end of the transmission shaft 4025 abuts against the plug main body 4081. A set of motors drives the screw 4029 to rotate. As the screw 4029 rotates, the movable plate 4028 drives the transmission shaft 4025 to move downward along the vent hole 4024 until the docking shaft 4026 in the lower end of the transmission shaft 4025 is inserted into the docking groove 821 at the upper end of the guide post 4082, and the lower end of the docking shaft 4026 presses against the bottom of the docking groove 821. During this process, the transmission shaft 4025 pushes the plug main body 4081, releasing the blockage of the discharge port of the metering barrel 401 by the plug main body 4081, and at the same time releasing the blockage of the vent hole 4024 by the transmission shaft 4025. Then, another set of motors drives the rectangular shaft 4027 to rotate. The rectangular shaft 4027 drives the guide post 4082 to rotate through the transmission shaft 4025. The guide post 4082 drives the plug main body 4081 together with the six groups of fan blades 4084 to rotate. As the fan blades 4084 rotate, air flows into the discharge nozzle 409 through the vent hole 4024, and the mixed liquid remaining in the discharge nozzle 409 is blown into the packaging bottle by the rapidly flowing air; During the process of the mixed liquid passing through the discharge nozzle 409, the mixed liquid pushes the plug main body 4081 to move downward along the guide post 4082. At the same time, the pin shaft 21 on the guide post 4082 first moves along the straight groove 521, and then the pin shaft 21 enters the spiral groove 522 from the straight groove 521. Under the guidance of the spiral groove 522, the rotating sleeve 4085 rotates itself. As the rotating sleeve 4085 rotates, the receiving shaft 4086 will move along the inclined chute 51 on the rotating sleeve 4085. Under the guidance of the inclined chute 51, the receiving shaft 4086 drives the fan blade 4084 to move towards the inside of the plug main body 4081.
[0037] 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. What is described in the above embodiments and the specification only illustrates 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 protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A preparation process of a Chinese honey locust and polygonum multiflorum shampoo, characterized in that It includes the following steps: Step 1: Select raw materials composed of Chinese honey locust, soapberry, ginger, pomelo peel, polygonum multiflorum, angelica, ginseng, mulberry leaves, astragalus membranaceus, mugwort, avocado, honeysuckle, and aloe vera; Step 2: Put all the raw materials into the impurity removal box respectively for impurity removal treatment; Step 3: Put the impurity-removed raw materials into the cleaning machine respectively for cleaning treatment; Step 4: Put the impurity-removed raw materials, tea seeds, rice, and black sesame into the drying box respectively for drying treatment; Step 5: Put the dried raw materials into the crusher respectively for crushing treatment; Step 6: Add the crushed raw materials, mint extract, brown sugar, and distilled water into the blender for stirring treatment; Step 7: Filter the mixed liquid with a filter bag; Step 8: Inject the mixed liquid into the filling device, and quantitatively fill the mixed liquid into the packaging bottles through the filling device; Step 9: After passing the inspection, package and store in the warehouse.
2. A filling device for Gleditsia sinensis and Polygonum multiflorum shampoo, which is applicable to the preparation process of the Gleditsia sinensis and Polygonum multiflorum shampoo described in claim 1, including a conveyor belt device (1), characterized in that: Above the conveyor belt device (1), there is a lifting platform (2), and on one side of the conveyor belt device (1), there is a first cylinder (5) for driving the lifting platform (2). On the lifting platform (2), there is a liquid storage tank (3), and on one side of the liquid storage tank (3), there is a filling mechanism (4); The filling mechanism (4) includes: A metering barrel (401), which is fixedly installed on the lifting platform (2), and the feed inlet of the metering barrel (401) is connected to the discharge end of the liquid storage tank (3); A piston rod (402) movably installed in the metering barrel (401); A connecting plate (403) fixedly connected to the upper end of the piston rod (402); A second cylinder (404) installed on one side of the metering barrel (401) for driving the connecting plate (403); A feed plug (405) for blocking the feed inlet of the metering barrel (401); A guide post (406) through which the feed plug (405) is movably inserted, and the guide post (406) is fixedly installed in the feed inlet of the metering barrel (401); A first spring (407) sleeved on the guide post (406); A discharge nozzle (409) fixedly installed at the discharge outlet of the metering barrel (401); A discharge plug (408) for blocking the discharge outlet of the metering barrel (401), the discharge plug (408) includes a plug main body (4081), the plug main body (4081) is inserted with a guide post (4082), a second spring (4083) is sleeved on the guide post (4082), and the guide post (4082) is rotatably installed in the discharge nozzle (409).
3. The filling device for the Gleditsia sinensis and Polygonum multiflorum shampoo according to claim 2, wherein: Four groups of sliding rods (201) are fixedly installed on the lower end surface of the lifting platform (2), and two groups of guide tubes (101) are respectively installed on both sides of the conveyor belt device (1), and the sliding rods (201) are movably inserted into the guide tubes (101).
4. The filling device for the soap pod and polygonum multiflorum shampoo according to claim 3, characterized in that: The piston rod (402) includes: A pull rod (4021), the upper end of the pull rod (4021) is fixedly connected to the connecting plate (403); A piston head (4022) fixedly connected to the lower end of the pull rod (4021); A rubber sleeve (4023) fixedly sleeved on the piston head (4022); Vent holes (4024) opened at the bottom of the piston head (4022); A drive shaft (4025) movably inserted into the vent holes (4024); A rectangular shaft (4027) movably inserted into the drive shaft (4025); A movable plate (4028), with the upper end of the drive shaft (4025) rotatably connected to the movable plate (4028); A screw (4029) screwed to the movable plate (4028).
5. The filling device for the soap pod and polygonum multiflorum shampoo according to claim 4, characterized in that: Both the screw (4029) and the rectangular shaft (4027) are rotatably installed in the piston head (4022), and the piston head (4022) together with the rubber sleeve (4023) is slidably connected to the inner cavity of the metering barrel (401).
6. The filling device for Sapindus and Polygonum multiflorum shampoo according to claim 5, characterized in that: A docking shaft (4026) is provided at the lower end of the drive shaft (4025), and a docking groove (821) for inserting the docking shaft (4026) is opened at the upper end of the guide post (4082).
7. The filling device for the sapindus and polygonum multiflorum shampoo according to claim 6, characterized in that: Six groups of fan blades (4084) are equiangularly inserted on the outer circle of the plug body (4081).
8. The filling device for the Gleditsia officinalis and Polygonum multiflorum shampoo according to claim 7, characterized in that: The discharge plug (408) further includes: A rotating sleeve (4085) rotatably installed in the plug body (4081); Six groups of receiving shafts (4086), the receiving shafts (4086) are fixedly connected to the fan blades (4084), and six groups of inclined chutes (51) are opened on the rotating sleeve (4085), and the fan blades (4084) are driven into the plug body (4081) by driving the receiving shafts (4086) along the inclined chutes (51).
9. The filling device for the Chinese honey locust and polygonum multiflorum shampoo according to claim 8, characterized in that: Two groups of guiding grooves (52) are further opened on the rotating sleeve (4085), the guiding grooves (52) are composed of a straight groove (521) and a spiral groove (522), and two groups of pin shafts (21) are symmetrically installed on the guide post (4082), and the rotating sleeve (4085) is rotated by driving the pin shafts (21) along the spiral groove (522).
10. A filling device for Gleditsia sinensis and Polygonum multiflorum shampoo, characterized in that: Two rectangular grooves (11) for avoiding the pin shafts (21) are opened in the plug body (4081).
Citation Information
Patent Citations
Environment-friendly shampoo and preparation method thereof
CN110974760A