Intelligent control system of ginseng extract processing equipment
By designing an intelligent control system, the problem of difficult to use the controller of the ginseng extract processing equipment is solved, which achieves higher flexibility and work efficiency in use, and provides grip function to prevent slipping through the design of the plug-in board.
Patent Information
- Application Number
- CN202510345006.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2025-06-27
- Estimated Expiration
- 2045-03-24
AI Technical Summary
The controllers of existing ginseng extract processing equipment are difficult to use in some cases, resulting in the inability to operate normally.
An intelligent control system is designed, including a control mechanism, a fixing mechanism, an adjustment mechanism and a plug-in mechanism. Through the use of the plug-in mechanism and the fixing mechanism, the control mechanism can be installed at the required position in a fixed position, allowing quick connection and adjustment.
It improves the flexibility and working efficiency of the control mechanism, avoids the problem of the equipment being unable to be used fixedly due to inconvenient handheld operation, and provides grip function through the design of the plug-in board to prevent slipping.
Smart Images

Figure CN120215360A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of ginseng extract processing equipment. Specifically, it relates to an intelligent control system for ginseng extract processing equipment. Background Art
[0002] Ginseng extract is refined from the roots, stems and leaves of the Araliaceae plant Panax ginseng. It is rich in 18 ginsenosides, soluble in water at 80°C and easily soluble in ethanol. It is mainly applicable to symptoms such as coronary heart disease, angina pectoris, bradycardia, tachycardia, premature ventricular contractions, blood pressure disorders, neurasthenia, menopausal syndrome, over-fatigue, weakness after illness, postpartum, and postoperative. Long-term use can prolong life, enhance physical strength, and treat immune function deficiency in cancer patients caused by radiotherapy and chemotherapy; it has the effect of resisting cold and heat stress. At the same time, it can enhance the vitality of human surface cells and inhibit aging.
[0003] During the processing of ginseng extract, it is often necessary to use extraction and other methods to purify its active ingredients to obtain a higher-purity extract. The extraction process is generally carried out in a reaction kettle, and temperature and pressure control are required during extraction. Therefore, the intelligent control system is one of the important devices for temperature and pressure control.
[0004] The patent document with the publication number CN215067774U discloses a high-strength anti-drop controller. The controller body is clamped and fixed by a splint. When the controller body falls, the impact force generated causes the first spring at the bottom to compress and absorb shock, and the first spring at the top to stretch and absorb shock, so that the sliding plate slides along the chute, minimizing the impact force received by the controller body and better protecting the components inside the controller body from damage; by pressing the button, the pressing plate is driven to slide along the spring groove, squeezing the second spring to compress and store energy, so that the button presses the button of the controller body. After releasing the button, the second spring resets, causing the button to reset and release the button of the controller body, improving the practicality of the protective housing and the convenience of use for the staff.
[0005] Although the above high-strength anti-drop controller can solve the corresponding technical problems, it usually needs to be held and manipulated by the staff in hand during use. However, in some cases, when the staff is difficult to free their hands to hold and manipulate, it is difficult to be used normally because it cannot be fixed. For this reason, we propose an intelligent control system for ginseng extract processing equipment. Summary of the Invention
[0006] The technical task of the present invention is to provide an intelligent control system for ginseng extract processing equipment to solve the above-mentioned problems.
[0007] To achieve the above object, the present invention provides the following technical solutions:
[0008] An intelligent control system for a processing device of ginseng extract, comprising a control mechanism electrically connected to the processing device of ginseng extract, a fixing mechanism connected to the mounting surface is provided at the rear side thereof, an adjusting mechanism for adjusting the position of the control mechanism is provided between the fixing mechanism and the control mechanism, and a plugging mechanism for realizing quick connection is provided between the control mechanism and the adjusting mechanism;
[0009] Among them, the control mechanism includes a controller and a plugging board, and the plugging board is fixedly connected to the back surface of the controller;
[0010] The plugging mechanism includes a limiting component, a positioning component, an unlocking component and a pulling component. The plugging board is in plugging cooperation with the limiting component to realize the preliminary limitation of the controller. Two positioning components are symmetrically arranged on the top of the limiting component and are used to realize the locking and positioning of the controller. An unlocking component is provided on both sides of the surface of the limiting component, and the unlocking component is arranged in one-to-one correspondence with the positioning component and is used to perform unlocking operations on the positioning component. A pulling component for conveniently driving the two unlocking components to move synchronously is further provided on the surface of the limiting component.
[0011] Preferably, the limiting component includes a support shell connected to the adjusting mechanism. The top of the support shell is of an open structure. The plugging board is plugged into the inner cavity of the support shell. A groove communicating with the inner cavity of the support shell is opened at the top of the support shell facing the controller. The upper part of the plugging board is clamped into the inner cavity of the groove. A convex block is fixedly connected to the bottom of the support shell facing the controller. A rubber pad is glued to the side of the convex block away from the support shell, and the rubber pad contacts the back surface of the controller.
[0012] Preferably, the positioning component includes a baffle plate movably connected to the top of the support shell. One side ear connected to the unlocking component is integrally formed on each of the opposite sides of the two baffle plates. The top of the support shell and the plugging board both contact the bottom of the baffle plate.
[0013] Preferably, a second inclined surface is provided on the top of the baffle plate. A first inclined surface is provided on each of the two sides of the bottom of the plugging board. The two first inclined surfaces are symmetrically arranged and are in one-to-one correspondence with the second inclined surface, and the inclination angles of the first inclined surface and the corresponding second inclined surface are the same.
[0014] Preferably, a second chute opposite to the second inclined surface is opened at the bottom of the baffle plate. A first slider is fixedly connected to each of the two sides of the top of the support shell. The first slider is in one-to-one correspondence with the second chute, and the top of the first slider penetrates into the inner cavity of the corresponding second chute and is slidably connected to the inner wall surface of the second chute.
[0015] Preferably, the unlocking component includes a movable plate movably connected to the side surface of the support shell and perpendicular to the second sliding groove. A sloping plate is fixedly connected to the top of the movable plate. A sloping hole for the sloping plate to pass through is formed in the side ear. The inner wall surface of the sloping hole is slidably connected to the corresponding sloping plate. A reset member is provided between the movable plate and the support shell.
[0016] Among them, the reset member includes a support block located below the movable plate. One side of the support block is fixedly connected to the support shell. A spring is detachably connected between the support block and the corresponding movable plate.
[0017] Preferably, the pulling component includes a sleeve shell slidably sleeved on the surface of the support shell. The surfaces of the movable plate and the support block are both slidably connected to the inner wall surface of the sleeve shell. The spring is located in the inner cavity of the sleeve shell. The sleeve shell is movably connected to the movable plate. A plurality of convex strips are integrally formed on both sides of the surface of the sleeve shell and are equally spaced up and down.
[0018] Preferably, a first sliding groove is formed on one side of the support shell facing the sleeve shell. A second slider is fixedly connected to the inner wall surface of the sleeve shell. One side of the second slider penetrates into the inner cavity of the first sliding groove and is slidably connected to the inner wall surface of the first sliding groove. A third sliding groove parallel to the first sliding groove is formed on the surface of the movable plate. Third sliders are fixedly connected to both sides of the inner wall surface of the sleeve shell. The third sliders are arranged in one-to-one correspondence with the third sliding grooves. One side of each third slider penetrates into the inner cavity of the corresponding third sliding groove and is slidably connected to the inner wall surface of the third sliding groove.
[0019] Preferably, the fixing mechanism includes a mounting plate located on the side of the support shell and opposite to the sleeve shell. Mounting holes are respectively formed at the four corners of the mounting plate.
[0020] Preferably, the adjusting mechanism includes a folding arm rotatably connected to the surface of the mounting plate. A support is installed at one end of the folding arm far from the mounting plate. The support is rotatably connected to the support shell.
[0021] Compared with the prior art, the advantages and positive effects of the present invention are as follows:
[0022] 1. In the present invention, through the combined use of the plugging mechanism and the fixing mechanism, the control mechanism can be fixedly installed at the required position. This not only avoids the situation where it is difficult for the staff to free their hands to hold and operate the control mechanism in some cases, but also allows for both fixed use and handheld use, improving the flexibility of use. Moreover, it can prevent the control mechanism from being affected by the uncertain placement position after being used by multiple people, which in turn affects the work efficiency. Additionally, the plugging board can serve as a grip. When holding the controller, the fingers can pass through the inner cavity of the plugging board, achieving an anti-slip effect. At the same time, the plugging mechanism is composed of a limiting component, a positioning component, an unlocking component, and a pulling component, which can achieve the rapid assembly effect of the control mechanism, helping to improve the picking and placing efficiency of the control mechanism and further enhancing the work efficiency.
[0023] 2. In the present invention, through the setting of the adjusting mechanism, the support position and angle of the control mechanism can be quickly adjusted to suit the staff with different heights and usage habits, thereby improving the applicable range of the control mechanism during fixed use. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0025] Figure 1 It is a schematic structural diagram of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 1 ;
[0026] Figure 2 It is a schematic structural diagram of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 2 ;
[0027] Figure 3 It is an exploded schematic structural diagram of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention;
[0028] Figure 4 It is a schematic structural diagram of the plugging mechanism of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention;
[0029] Figure 5 It is an exploded schematic structural diagram of the plugging mechanism of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 1 ;
[0030] Figure 6 It is an exploded schematic structural diagram of the plugging mechanism of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present inventionFigure 2 ;
[0031] Figure 7 This is an exploded view of the structure of the plug-in board, limit component and unlocking component of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention;
[0032] Figure 8 This is a schematic view of the structure of the fixing mechanism and the adjusting mechanism of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention.
[0033] In the figure: 100, control mechanism; 110, controller; 120, plug-in board; 121, first inclined surface;
[0034] 200, plugging mechanism; 210, limit component; 211, support shell; 2111, first slider; 2112, first chute; 212, groove; 213, convex block; 214, rubber pad; 220, positioning component; 221, baffle; 2211, second inclined surface; 2212, second chute; 222, side ear; 2221, inclined hole; 230, unlocking component; 231, movable plate; 2311, third chute; 2312, iron block; 232, inclined plate; 233, support block; 234, spring; 240, pulling component; 241, sleeve shell; 2411, second slider; 2412, third slider; 242, convex strip;
[0035] 300, fixing mechanism; 310, mounting plate; 320, mounting hole;
[0036] 400, adjusting mechanism; 410, folding arm; 420, support. Detailed implementation manners
[0037] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention will be further described below with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments may be combined with each other.
[0038] The present invention will be further described below with reference to the drawings and specific embodiments.
[0039] Embodiment 1
[0040] As Figures 1 - 8As shown in the figure, an intelligent control system for a ginseng extract processing device according to an embodiment of the present invention includes a control mechanism 100 electrically connected to the ginseng extract processing device. A fixing mechanism 300 connected to the installation surface is provided at the rear side thereof. An adjusting mechanism 400 for adjusting the position of the control mechanism 100 is provided between the fixing mechanism 300 and the control mechanism 100. A plugging mechanism 200 for realizing quick connection is provided between the control mechanism 100 and the adjusting mechanism 400. The control mechanism 100 includes a controller 110 and a plugging board 120. The plugging board 120 has an inverted L-shaped structure and is fixedly connected to the back surface of the controller 110. The plugging mechanism 200 includes a limiting component 210, a positioning component 220, an unlocking component 230, and a pulling component 240. The plugging board 120 is in plugging cooperation with the limiting component 210 to realize the preliminary limitation of the controller 110. Two positioning components 220 are symmetrically arranged on the top of the limiting component 210 and are used to realize the locking and positioning of the controller 110. An unlocking component 230 is provided on both sides of the surface of the limiting component 210. The unlocking component 230 and the positioning component 220 are arranged in one-to-one correspondence and are used to perform an unlocking operation on the positioning component 220. A pulling component 240 for conveniently driving the two unlocking components 230 to move synchronously is further provided on the surface of the limiting component 210.
[0041] Embodiment 2
[0042] As Figures 1 - 8 shown, a difference between the intelligent control system for a ginseng extract processing device provided in this embodiment and that in Embodiment 1 lies in:
[0043] Among them, the limit component 210 includes a support shell 211 connected to the adjustment mechanism 400. The top of the support shell 211 is of an open structure so that the plug-in board 120 can be inserted into the inner cavity of the support shell 211 from top to bottom. The plug-in board 120 is inserted into the inner cavity of the support shell 211. A groove 212 communicating with the inner cavity of the support shell 211 is formed at the top of the support shell 211 on the side facing the controller 110. The upper part of the plug-in board 120 is clamped into the inner cavity of the groove 212 so that after the plug-in board 120 is inserted into the inner cavity of the support shell 211, the top of the plug-in board 120 and the top of the support shell 211 can be on the same horizontal plane, facilitating the subsequent locking and positioning operation of the positioning component 220. When the plug-in board 120 is inserted into the inner cavity of the support shell 211, it can limit the horizontal position of the controller 110 on the plug-in mechanism 200 to achieve the preliminary limiting effect on the controller 110. A convex block 213 is fixedly connected to the bottom of the support shell 211 on the side facing the controller 110, which can play an auxiliary supporting role in the lower part of the back surface of the control mechanism 100, avoiding the phenomenon of shaking after the controller 110 is installed and fixed due to the gap between the controller 110 and the limit component 210, and helping to ensure the installation stability of the controller 110. A rubber pad 214 is glued to the side of the convex block 213 away from the support shell 211, and the rubber pad 214 contacts the back surface of the controller 110, avoiding the phenomenon of wear caused by the direct contact between the convex block 213 and the back surface of the controller 110, and helping to extend the service life of the controller 110.
[0044] Among them, the positioning component 220 includes a baffle 221 movably connected to the top of the support housing 211. On the opposite sides of the two baffles 221, side ears 222 connected to the unlocking component 230 are integrally formed respectively. The tops of the support housing 211 and the plug-in board 120 are both in contact with the bottom of the baffle 221. When the baffle 221 blocks the top of the plug-in board 120 in the support housing 211, it can limit the vertical position of the controller 110 on the plug-in mechanism 200 to achieve the locking and positioning effect on the controller 110. A second inclined surface 2211 is provided at the top of the baffle 221. On both sides of the bottom of the plug-in board 120, a first inclined surface 121 is provided. The two first inclined surfaces 121 are symmetrically arranged. The first inclined surface 121 and the second inclined surface 2211 are arranged in one-to-one correspondence, and the inclination angles of the first inclined surface 121 and the corresponding second inclined surface 2211 are the same. When inserting the plug-in board 120 into the inner cavity of the support housing 211, only need to align the first inclined surface 121 with the second inclined surface 2211 and contact them, and then move downward forcefully, then the force direction can be changed by the inclined surface structure, so that the two second inclined surfaces 2211 can move away from each other automatically without manually controlling the positioning component 220, which helps to improve the assembly efficiency of the control mechanism 100. A second sliding groove 2212 opposite to the second inclined surface 2211 is formed at the bottom of the baffle 221. On both sides of the top of the support housing 211, a first sliding block 2111 is fixedly connected respectively. The first sliding block 2111 and the second sliding groove 2212 are arranged in one-to-one correspondence, and the top of the first sliding block 2111 penetrates into the inner cavity of the corresponding second sliding groove 2212 and is slidably connected to the inner wall surface of the second sliding groove 2212. When the baffle 221 moves on the top of the support housing 211, it can drive the second sliding groove 2212 to move synchronously, so that the first sliding block 2111 slides in the inner cavity of the second sliding groove 2212, which can guide the baffle 221 and make the baffle 221 move horizontally stably.
[0045] Among them, the unlocking component 230 includes a movable plate 231 movably connected to the side surface of the support shell 211 and arranged perpendicular to the second sliding groove 2212. A sloping plate 232 is fixedly connected to the top of the movable plate 231. An inclined hole 2221 for the sloping plate 232 to pass through is formed in the side ear 222. The inner wall surface of the inclined hole 2221 is slidably connected to the corresponding sloping plate 232. A reset member is provided between the movable plate 231 and the support shell 211. By pulling the movable plate 231 downward or pushing it upward, the force application direction can be changed through the inclined surface structure of the sloping plate 232 and the inclined hole 2221, so that the two baffles 221 can move away from or towards each other, and further the opening or closing of the two baffles 221 can be realized to unlock or lock the plug-in plate 120; the reset member includes a support block 233 located below the movable plate 231. One side of the support block 233 is fixedly connected to the support shell 211. A spring 234 is detachably connected between the support block 233 and the corresponding movable plate 231 through the cooperation of a hook and a hanging ring. When the movable plate 231 moves downward, the spring 234 can be compressed, and the elastic force of the spring 234 can play a role in resetting the movable plate 231.
[0046] Among them, the pulling component 240 includes a sleeve 241 that is slidably sleeved on the surface of the support shell 211 and has a U-shaped structure. The surfaces of the movable plate 231 and the support block 233 are both slidably connected to the inner wall surface of the sleeve 241. The spring 234 is located in the inner cavity of the sleeve 241. The sleeve 241 is movably connected to the movable plate 231. By pulling the sleeve 241 downward, the two unlocking components 230 can be driven to move downward synchronously, achieving the purpose of operating the two unlocking components 230 in one step. This can not only reduce the operation steps but also facilitate the operation of pulling the pulling component 240 with one hand and inserting the plug-in board 120 with the other hand, which is convenient for one person to operate and assemble. A plurality of convex strips 242 that are evenly distributed up and down are integrally formed on both sides of the surface of the sleeve 241, which can increase the friction between the fingers and the sleeve 241 and play an anti-slip role. A first chute 2112 is opened on one side of the support shell 211 facing the sleeve 241. A second slider 2411 is fixedly connected to the inner wall surface of the sleeve 241. One side of the second slider 2411 penetrates into the inner cavity of the first chute 2112 and is slidably connected to the inner wall surface of the first chute 2112. When the sleeve 241 moves up and down, it can drive the second slider 2411 to slide in the inner cavity of the first chute 2112 to achieve the limiting effect on the sleeve 241 and improve the stability of the sleeve 241 when moving up and down. A third chute 2311 parallel to the first chute 2112 is opened on the surface of the movable plate 231. Third sliders 2412 are fixedly connected to both sides of the inner wall surface of the sleeve 241. The third sliders 2412 and the third chute 2311 are arranged in one-to-one correspondence, and one side of the third slider 2412 penetrates into the inner cavity of the corresponding third chute 2311 and is slidably connected to the inner wall surface of the third chute 2311. Through the cooperation of the third chute 2311 and the third slider 2412, the movable connection between the sleeve 241 and the movable plate 231 can be realized. When the sleeve 241 moves downward or the movable plate 231 moves upward, the third chute 2311 and the third slider 2412 can play a linkage role;Meanwhile, when the housing 241 moves upward, it can drive the third slider 2412 to slide in the inner cavity of the third chute 2311, so that the housing 241 gradually moves away from the support block 233. After reaching the maximum limit, the spring 234 can be exposed, and at this time, the spring 234 can be maintained or replaced regularly. Iron blocks 2312 are fixedly connected to both the top and bottom of the inner cavity of the movable plate 231. The third slider 2412 is an iron attracting block, and the third slider 2412 is magnetically adsorbed on one side of one of the iron blocks 2312. When the housing 241 covers the spring 234, the third slider 2412 is magnetically adsorbed on the lower iron block 2312, which can improve the connection stability between the movable plate 231 and the housing 241 and ensure the synchronization between the subsequent housing 241 and the movable plate 231. When the spring 234 needs to be disassembled, maintained or replaced, the third slider 2412 can be magnetically adsorbed on the upper iron block 2312, so that the housing 241 can be stably maintained in the elevated state without manual support, which is convenient for the staff to disassemble and assemble the spring 234.;
[0047] Among them, the fixing mechanism 300 includes a mounting plate 310 located on the side of the support shell 211 and arranged opposite to the housing 241. Mounting holes 320 are respectively opened at the four corners of the mounting plate 310, and the mounting plate 310 can be fixed at the required position by screws.
[0048] Among them, the adjusting mechanism 400 includes a folding arm 410 rotatably connected to the surface of the mounting plate 310 through a rotating shaft. A support 420 is installed at the end of the folding arm 410 far from the mounting plate 310. The support 420 is rotatably connected to the support shell 211 through a universal shaft. Through the adjusting mechanism 400, the movable connection function between the plugging mechanism 200 and the fixing mechanism 300 can be realized, so that the staff can adjust the position and angle of the control mechanism 100 according to their own use requirements, which is convenient for the staff to perform fixed-point control.
[0049] Among them, the intelligent control system of the ginseng extract processing equipment further includes a sensing module and an execution module. Both the sensing module and the execution module are communicatively connected to the controller 110, where:
[0050] The sensing module is used to collect the temperature T(t), pressure, solvent flow rate F(t) in the extraction tank in real time, and the ginsenoside concentration C(t) monitored online by a near-infrared spectrometer;
[0051] The controller 110 is built-in with a dynamic extraction rate equation model, which is used to generate an optimized parameter combination of temperature, flow rate and time;
[0052] The execution module adjusts the heater power, solvent valve opening degree and stirring frequency according to the optimized parameters;
[0053] During the extraction stage, the system predicts the change in saponin concentration through a dynamic extraction rate equation model. When dC / dt is detected to be lower than the threshold, it drives the execution module to adjust parameters, enabling improved extraction efficiency, reduced energy consumption, adapting to different raw material batches, and reducing the frequency of manual intervention.
[0054] Among them, the dynamic extraction rate equation model is:
[0055]
[0056] Parameter description:
[0057]
[0058]
[0059] Technical effects:
[0060] k(t) incorporates the temperature-flow synergistic effect, breaking through the traditional single-temperature-dependent model; λ(T,F) introduces the flow inverse term (F)t) -0.5) , indicating that high flow can partially offset the risk of high-temperature degradation.
[0061] When the temperature T(t) exceeds 75 °C, the compensation term λ(T,F) automatically increases, inhibiting the destruction of saponins by high temperature, being able to solve the problem that the traditional first-order kinetic model cannot adapt to time-varying working conditions, and reducing the degradation of active ingredients caused by high temperature.
[0062] The working principle is as follows:
[0063] 1. Forward extraction term:
[0064] The dynamic rate constant k(t) is jointly regulated by the temperature T(t) and the solvent flow rate F(t):
[0065]
[0066] Temperature effect: Through the Arrhenius equation It reflects that the increase in temperature accelerates molecular movement and promotes the dissolution of saponins;
[0067] Flow effect: Characterizes the non-linear enhancement of the diffusion rate with the increase in solvent flow velocity (such as high flow flushing the cell wall pores);
[0068] Concentration gradient drive: (C max -C(t)) n Simulates the difference between the saponin concentration and the solvent concentration inside the raw material to drive the diffusion process, and n is determined by the particle size distribution of the raw material (n → 1 for small particle sizes, n → 0.5 for large particle sizes).
[0069] 2. Thermal degradation compensation term:
[0070] When the temperature exceeds the degradation threshold T degrad , the compensation term λ(T,F) increases significantly:
[0071] λ(T,F) = β·(T(t) - T degrad )·F(t) -0.5 ;
[0072] Temperature penalty: T(t) - T degrad Linearly amplifies the destructive effect of high temperature on saponins;
[0073] Flow buffering: F(t) -0.5 Indicates that high flow rate can dilute the local high temperature area and slow down the degradation rate.
[0074] For example, when the sensor detects T(t) = 78°C (connected to T degrad = 80°C):
[0075] λ(T,F) increases, and the system automatically reduces the heating power;
[0076] At the same time, increase F(t) to utilize the flow buffering effect and maintain the extraction rate;
[0077] The controller 110 predicts the change trend of C(t) through the dynamic equation to avoid the decrease of extraction efficiency caused by excessive cooling.
[0078] Working principle:
[0079] Handheld operation: Use the convex strip 242 to move the sleeve 241 downward, so that the sleeve 241 drives the second slider 2411 and the third slider 2412 to move downward. The second slider 2411 slides in the inner cavity of the first chute 2112. The third slider 2412 drives the iron block 2312, the movable plate 231 and the inclined plate 232 to move downward synchronously. The movable plate 231 squeezes the spring 234, causing the spring 234 to contract under force. The inclined plate 232 slides in the inner cavity of the inclined hole 2221, causing the side ear 222 to drive the baffle 221 to move. The baffle 221 drives the second inclined surface 2211 to move. The first slider 2111 slides in the inner cavity of the second inclined surface 2211, causing the two baffles 221 to gradually move away from each other until the sleeve 241 moves to the maximum extent. At this time, the two baffles 221 open to the maximum extent, exposing the top of the plug-in board 120. Then, the unlocking operation of the plug-in board 120 is completed. Then, move the controller 110 upward, so that the controller 110 drives the plug-in board 120 to move in the inner cavity of the support shell 211 until the plug-in board 120 disengages from the inner cavity of the support shell 211, thus completing the disassembly operation of the control mechanism 100. The staff can then hold the controller 110 to perform handheld operation on the ginseng extract processing equipment;
[0080] Fixed-point control: Align the first inclined surface 121 at the bottom of the plug-in board 120 with and contact the corresponding second inclined surface 2211, and move the controller 110 downward forcefully, so that the controller 110 drives the plug-in board 120 to move downward. The plug-in board 120 squeezes the baffle 221, causing the two baffles 221 to move away from each other under force. The baffle 221 drives the side ear 222 to move, and the side ear 222 drives the unlocking component 230 and the pulling component 240 to move downward, causing the spring 234 to contract under force. Then continue to move the controller 110 downward until the plug-in board 120 is completely inserted into the inner cavity of the support shell 211. Through the elastic restoring force of the spring 234, the baffle 221 moves to its original state, that is, the two plug-in boards 120 are in a closed state, thus completing the locking operation of the plug-in board 120, and then completing the assembly operation of the control mechanism 100. Then rotate the controller 110 to adjust the use angle of the controller 110, and adjust the posture of the boom of the folding arm 410 to adjust the use position of the controller 110. The staff can then perform fixed-point control operations on the ginseng extract processing equipment.
[0081] Through the above specific embodiments, those skilled in the art of the described technical field can easily implement the present invention. However, it should be understood that the present invention is not limited to the above specific embodiments. Based on the disclosed embodiments, those skilled in the art of the described technical field can arbitrarily combine different technical features to achieve different technical solutions.
Claims
1. An intelligent control system for ginseng extract processing equipment, characterized in that: The invention comprises a control mechanism (100) electrically connected to ginseng extract processing equipment, a fixing mechanism (300) connected to a mounting surface is provided on the rear side of the control mechanism (100), an adjusting mechanism (400) for adjusting the position of the control mechanism (100) is provided between the fixing mechanism (300) and the control mechanism (100), and a plug-in mechanism (200) for realizing a quick connection is provided between the control mechanism (100) and the adjusting mechanism (400); The control mechanism (100) comprises a controller (110) and a plug board (120), and the plug board (120) is fixedly connected to the back surface of the controller (110).
2. The intelligent control system of ginseng extract processing equipment according to claim 1, characterized in that: The plug-in mechanism (200) comprises a limit assembly (210), a positioning assembly (220), an unlocking assembly (230) and a pulling assembly (240); the plug-in board (120) and the limit assembly (210) are plugged together to realize the initial limit of the controller (110); two positioning assemblies (220) are symmetrically arranged on the top of the limit assembly (210) and are used to realize the locking and positioning of the controller (110); an unlocking assembly (230) is arranged on both sides of the surface of the limit assembly (210); the unlocking assembly (230) and the positioning assembly (220) are arranged in a one-to-one correspondence and are used to unlock the positioning assembly (220); the surface of the limit assembly (210) is also provided with a pulling assembly (240) for facilitating the synchronous movement of the two unlocking assemblies (230); The limit assembly (210) comprises a support shell (211) connected to the adjustment mechanism (400); the top of the support shell (211) is an open structure; the plug board (120) is plugged into the inner cavity of the support shell (211); the top of the support shell (211) facing the controller (110) is provided with a groove (212) which is connected to the inner cavity of the support shell (211); the upper part of the plug board (120) is clamped into the inner cavity of the groove (212); the bottom of the support shell (211) facing the controller (110) is fixedly connected with a protrusion (213); a rubber pad (214) is glued to the side of the protrusion (213) away from the support shell (211); and the rubber pad (214) is in contact with the back surface of the controller (110).
3. The intelligent control system of the ginseng extract processing equipment according to claim 2, characterized in that: The positioning assembly (220) comprises a baffle (221) movably connected to the top of the support shell (211), and side ears (222) connected to the unlocking assembly (230) are integrally formed on opposite sides of the two baffles (221), and the tops of the support shell (211) and the plug board (120) are in contact with the bottoms of the baffles (221).
4. The intelligent control system of the ginseng extract processing equipment according to claim 3, characterized in that: A second inclined surface (2211) is provided at the top of the baffle (221), and a first inclined surface (121) is provided on both sides of the bottom of the plug board (120), the two first inclined surfaces (121) are symmetrically arranged, the first inclined surfaces (121) and the second inclined surfaces (2211) are arranged in a one-to-one correspondence, and the first inclined surfaces (121) and the corresponding second inclined surfaces (2211) have the same inclination angle.
5. The intelligent control system of ginseng extract processing equipment according to claim 4, characterized in that: The bottom of the baffle (221) is provided with a second slide groove (2212) arranged opposite to the second inclined surface (2211), and both sides of the top of the support shell (211) are respectively fixedly connected with a first slider (2111), the first slider (2111) and the second slide groove (2212) are arranged in a one-to-one correspondence, and the top of the first slider (2111) penetrates into the inner cavity of the corresponding second slide groove (2212) and is slidably connected with the inner wall surface of the second slide groove (2212).
6. The intelligent control system of ginseng extract processing equipment according to claim 5, characterized in that: The unlocking assembly (230) comprises a movable plate (231) movably connected to the side of the support shell (211) and arranged perpendicularly to the second slide groove (2212); a slanted plate (232) is fixedly connected to the top of the movable plate (231); an inclined hole (2221) for the inclined plate (232) to pass through is formed on the side ear (222); an inner wall surface of the inclined hole (2221) is slidably connected to the corresponding inclined plate (232); and a reset member is provided between the movable plate (231) and the support shell (211); The reset member comprises a support block (233) located below the movable plate (231), one side of the support block (233) is fixedly connected to the support shell (211), and a detachably connected spring (234) is provided between the support block (233) and the corresponding movable plate (231).
7. The intelligent control system of ginseng extract processing equipment according to claim 6, characterized in that: The pulling assembly (240) comprises a sleeve (241) slidably mounted on the surface of the support shell (211); the surfaces of the movable plate (231) and the support block (233) are both slidably connected to the inner wall surface of the sleeve (241); the spring (234) is located in the inner cavity of the sleeve (241); the sleeve (241) and the movable plate (231) are movably connected; and a plurality of convex strips (242) equidistantly distributed vertically are integrally formed on both sides of the surface of the sleeve (241).
8. The intelligent control system of ginseng extract processing equipment according to claim 7, characterized in that: The support shell (211) is provided with a first slide groove (2112) on one side facing the sleeve shell (241); a second slider (2411) is fixedly connected to the inner wall surface of the sleeve shell (241); one side of the second slider (2411) penetrates into the inner cavity of the first slide groove (2112) and is slidably connected to the inner wall surface of the first slide groove (2112); a third slide groove (2311) parallel to the first slide groove (2112) is provided on the surface of the movable plate (231); both sides of the inner wall surface of the sleeve shell (241) are fixedly connected with the third slider (2412); the third slider (2412) and the third slide groove (2311) are arranged in a one-to-one correspondence; one side of the third slider (2412) penetrates into the inner cavity of the corresponding third slide groove (2311) and is slidably connected to the inner wall surface of the third slide groove (2311).
9. The intelligent control system of ginseng extract processing equipment according to claim 7, characterized in that: The fixing mechanism (300) comprises a mounting plate (310) located on the side of the support shell (211) and arranged opposite to the sleeve shell (241), and mounting holes (320) are respectively provided at the four corners of the mounting plate (310).
10. The intelligent control system of ginseng extract processing equipment according to claim 9, characterized in that: The adjustment mechanism (400) comprises a folding arm (410) rotatably connected to the surface of the mounting plate (310), a support (420) being installed at one end of the folding arm (410) away from the mounting plate (310), and the support (420) is rotatably connected to the support housing (211).
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