Intelligent control system of ginseng extract processing equipment

Through the design of an intelligent control system, the problem of difficult controller fixation is solved, and flexible installation and efficient use are achieved. It is suitable for different usage scenarios and personnel, and improves the operating convenience and efficiency of ginseng extract processing equipment.

CN120215360BActive Publication Date: 2025-10-21HANGUAN TECH SANHE CO LTD
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Patent Information

Application Number
CN202510345006.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-10-21
Estimated Expiration
2045-03-24

AI Technical Summary

Technical Problem

The controllers of existing ginseng extract processing equipment are difficult to fix in some cases, which makes it impossible for workers to free their hands to operate them, affecting the convenience and efficiency of use.

Method used

An intelligent control system is designed, including a control mechanism, a fixing mechanism, an adjustment mechanism and a plug-in mechanism. Through the cooperation of a limit component, a positioning component, an unlocking component and a pulling component, the controller can be quickly installed and disassembled. It is suitable for workers of different heights and usage habits.

Benefits of technology

The controller's flexibility and work efficiency are improved, the use effect is avoided due to position uncertainty, the controller's stability and anti-slip performance are enhanced, and the scope of application is wider.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of ginseng extract processing equipment intelligent control system, including the control mechanism electrically connected with ginseng extract processing equipment, its rear side is equipped with the fixed mechanism connected with mounting surface, adjusting mechanism for adjusting the position of control mechanism is equipped between fixed mechanism and control mechanism, plug-in mechanism for realizing quick connection is equipped between control mechanism and adjusting mechanism;The application is used in cooperation with fixed mechanism by plug-in mechanism, control mechanism can be installed in the required position, avoid the situation that staff is difficult to free hand and control mechanism in some cases, it can be fixed, it can be hand-held, improve the use flexibility;And can avoid multiple use, control mechanism is influenced next time use due to the uncertain influence of placement position, in turn, affect work efficiency;And plug-in board can be used as a handle, when holding the controller, finger can be inserted through the inner cavity of plug-in board, to prevent slipping effect.
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Description

Technical Field

[0001] The present invention relates to the technical field of ginseng extract processing equipment, and in particular to an intelligent control system for ginseng extract processing equipment. Background Art

[0002] Ginseng extract is extracted and refined from the roots, stems, and leaves of Panax ginseng (Araliaceae). It is rich in 18 ginsenoside monomers, soluble in water at 80°C and readily soluble in ethanol. It is primarily used to treat symptoms such as coronary heart disease, angina pectoris, bradycardia, tachycardia, premature ventricular contractions, blood pressure disorders, neurasthenia, menopausal syndrome, excessive fatigue, and post-illness, postpartum, and post-operative weakness. Long-term use can prolong life and enhance physical strength, and it can treat immune deficiency caused by radiotherapy and chemotherapy in cancer patients. It also has anti-cold and heat stress effects. It also enhances the vitality of human surface cells and inhibits 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 extracts with higher purity. The extraction process is generally carried out in a reactor, and temperature and pressure control are required during extraction. Therefore, the intelligent control system is one of the important equipment for temperature and pressure control.

[0004] The existing patent document with the announcement number CN215067774U discloses a high-strength anti-fall controller, which clamps and fixes the controller body with a splint. When the controller body falls, the impact force generated is compressed and shock-absorbing by the first spring on the bottom, and the first spring on the top is stretched and shock-absorbing, so that the slide plate slides along the slide groove, minimizing the impact force on the controller body and better protecting the components inside the controller body from damage; by pressing the button, the pressure plate is driven to slide along the spring groove, squeezing the second spring to compress and store force, so that the button squeezes the button of the controller body. After releasing the button, the second spring resets, so that the button resets and releases the button of the controller body, thereby improving the practicality of the protective shell and the convenience of use for the staff.

[0005] Although the above-mentioned high-strength anti-fall controller can solve the corresponding technical problems, it usually requires the staff to hold it in their hands for operation when in use. However, in some cases, it is difficult for the staff to free their hands to hold and operate it, and it is difficult to use 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 address the above shortcomings and provide an intelligent control system for ginseng extract processing equipment to solve the above problems.

[0007] To achieve the above object, the present invention provides the following technical solutions:

[0008] An intelligent control system for ginseng extract processing equipment includes a control mechanism electrically connected to the ginseng extract processing equipment, a fixing mechanism connected to a mounting surface provided on the rear side of the control mechanism, an adjustment mechanism for adjusting the position of the control mechanism provided between the fixing mechanism and the control mechanism, and a plug-in mechanism for achieving quick connection provided between the control mechanism and the adjustment mechanism;

[0009] Wherein, the control mechanism includes a controller and a plug-in board, and the plug-in board is fixedly connected to the back surface of the controller;

[0010] The plug-in mechanism includes a limit assembly, a positioning assembly, an unlocking assembly and a pulling assembly. The plug-in plate is plugged into the limit assembly to achieve the initial limit of the controller. Two positioning assemblies are symmetrically arranged on the top of the limit assembly and are used to achieve the locking positioning of the controller. An unlocking assembly is provided on both sides of the surface of the limit assembly. The unlocking assembly and the positioning assembly are arranged in a one-to-one correspondence and are used to unlock the positioning assembly. The surface of the limit assembly is also provided with a pulling assembly for facilitating the synchronous movement of the two unlocking assemblies.

[0011] Preferably, the limit assembly includes a support shell connected to the adjustment mechanism, the top of the support shell is an open structure, the plug-in board is plugged into the inner cavity of the support shell, the top of the support shell facing the controller is provided with a groove connected to the inner cavity of the support shell, the upper part of the plug-in board is stuck to the inner cavity of the groove, the bottom of the support shell facing the controller is fixedly connected with a protrusion, the side of the protrusion away from the support shell is glued with a rubber pad, and the rubber pad is in contact with the back surface of the controller.

[0012] Preferably, the positioning assembly includes a baffle movably connected to the top of the support shell, and the two opposite sides of the baffles are respectively integrally formed with side ears connected to the unlocking assembly, and the top of the support shell and the plug-in board are in contact with the bottom of the baffle.

[0013] Preferably, a second inclined surface is provided on the top of the baffle, and a first inclined surface is provided on both sides of the bottom of the plug-in board. The two first inclined surfaces are symmetrically arranged, the first inclined surface and the second inclined surface are arranged in a one-to-one correspondence, and the inclination angles of the first inclined surface and the corresponding second inclined surface are the same.

[0014] Preferably, a second slide groove is provided at the bottom of the baffle and is arranged opposite to the second inclined surface. A first slider is fixedly connected to both sides of the top of the support shell. The first slider and the second slide groove are arranged in a one-to-one correspondence, and the top of the first slider passes through the inner cavity of the corresponding second slide groove and is slidably connected to the inner wall surface of the second slide groove.

[0015] Preferably, the unlocking assembly includes a movable plate movably connected to the side surface of the support housing and arranged perpendicularly to the second slide groove, the top of the movable plate is fixedly connected to an inclined plate, the side ears are provided with inclined holes for the inclined plates to pass through, the inner wall surface of the inclined holes is slidably connected to the corresponding inclined plates, and a reset member is provided between the movable plate and the support housing;

[0016] Wherein, 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, and a detachable spring is provided between the support block and the corresponding movable plate.

[0017] Preferably, the pulling assembly includes a sleeve that is slidably mounted on the surface of the support shell, the surfaces of the movable plate and the support block are slidably connected to the inner wall surface of the sleeve, the spring is located in the inner cavity of the sleeve, the sleeve and the movable plate are movably connected, and both sides of the sleeve surface are integrally formed with a number of convex strips that are equidistantly distributed up and down.

[0018] Preferably, the support shell is provided with a first slide groove on the side facing the sleeve shell, and the inner wall surface of the sleeve shell is fixedly connected to a second slider, one side of the second slider penetrates into the inner cavity of the first slide groove and is slidably connected to the inner wall surface of the first slide groove, and the surface of the movable plate is provided with a third slide groove parallel to the first slide groove, and both sides of the inner wall surface of the sleeve shell are fixedly connected with third sliders, the third sliders and the third slide grooves are arranged in a one-to-one correspondence, and one side of the third slider penetrates into the inner cavity of the corresponding third slide groove and is slidably connected to the inner wall surface of the third slide groove.

[0019] Preferably, the fixing mechanism includes a mounting plate located on the side of the support shell and arranged opposite to the sleeve shell, and mounting holes are respectively provided at the four corners of the mounting plate.

[0020] Preferably, the adjustment mechanism comprises a folding arm rotatably connected to the surface of the mounting plate, a support is mounted on one end of the folding arm away from the mounting plate, and the support is rotatably connected to the support housing.

[0021] Compared with the prior art, the advantages and positive effects of the present invention are:

[0022] 1. The present invention, through the coordinated use of the plug-in mechanism and the fixing mechanism, can fix the control mechanism in the desired position, which not only avoids the situation in which the staff has difficulty in freeing their hands to hold and operate the control mechanism in certain situations, but also can be used in a fixed manner or by hand, thereby improving the flexibility of use; it can also avoid the control mechanism being affected by the uncertainty of the placement position after being used by multiple people, which affects the next use and thus affects the work efficiency; and the plug-in board can be used as a handle, and when holding the controller, the fingers can be passed through the inner cavity of the plug-in board to prevent it from slipping; at the same time, the plug-in mechanism is composed of a limit assembly, a positioning assembly, an unlocking assembly and a pulling assembly, which can achieve a quick assembly effect of the control mechanism, help improve the efficiency of taking and placing the control mechanism, and further improve the work efficiency;

[0023] 2. The present invention, through the setting of the adjustment mechanism, can quickly adjust the support position and angle of the control mechanism to be suitable for workers of different heights and usage habits, thereby improving the applicability of the control mechanism when it is fixed. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0025] Figure 1 Schematic diagram of the structure of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 1 ;

[0026] Figure 2 Schematic diagram of the structure of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 2 ;

[0027] Figure 3 This is an exploded schematic diagram of the structure of the intelligent control system of the ginseng extract processing equipment according to an embodiment of the present invention;

[0028] Figure 4 This is a structural diagram of the plug-in mechanism of the intelligent control system of the ginseng extract processing equipment according to an embodiment of the present invention;

[0029] Figure 5 Schematic diagram of the structure of the plug-in 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 Schematic diagram of the structure of the plug-in mechanism of the intelligent control system of the ginseng extract processing equipment according to the embodiment of the present invention Figure 2 ;

[0031] Figure 7 This is an exploded schematic diagram of the structure of the plug-in board, the limit assembly, and the unlocking assembly of the intelligent control system of the ginseng extract processing equipment according to an embodiment of the present invention;

[0032] Figure 8 This is a structural diagram of the fixing mechanism and the adjusting mechanism of the intelligent control system of the ginseng extract processing equipment according to an embodiment of the present invention.

[0033] In the figure: 100, control mechanism; 110, controller; 120, plug board; 121, first inclined surface;

[0034] 200, plug-in mechanism; 210, limit assembly; 211, support housing; 2111, first slider; 2112, first chute; 212, groove; 213, protrusion; 214, rubber pad; 220, positioning assembly; 221, baffle; 2211, second inclined surface; 2212, second chute; 222, side ear; 2221, oblique hole; 230, unlocking assembly; 231, movable plate; 2311, third chute; 2312, iron block; 232, inclined plate; 233, support block; 234, spring; 240, pulling assembly; 241, housing; 2411, second slider; 2412, third slider; 242, protrusion;

[0035] 300, fixing mechanism; 310, mounting plate; 320, mounting hole;

[0036] 400. Adjustment mechanism; 410. Folding arm; 420. Support. DETAILED DESCRIPTION

[0037] In order to more clearly understand the above-mentioned objects, features and advantages of the present invention, the present invention is further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, in the absence of conflict, the embodiments of the present application and the features therein can be combined with each other.

[0038] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.

[0039] Example 1

[0040] like Figures 1-8As shown, an intelligent control system for ginseng extract processing equipment according to an embodiment of the present invention includes a control mechanism 100 electrically connected to the ginseng extract processing equipment, a fixing mechanism 300 connected to the mounting surface is provided on the rear side of the control mechanism 100, an adjustment 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 achieving quick connection is provided between the control mechanism 100 and the adjustment mechanism 400; the control mechanism 100 includes a controller 110 and a plug-in board 120, the plug-in board 120 is an inverted L-shaped structure and is fixedly connected to the back surface of the controller 110; the plug-in mechanism 200 includes a It includes a limit component 210, a positioning component 220, an unlocking component 230 and a pulling component 240. The plug-in board 120 is plugged into the limit component 210 to achieve the initial limit of the controller 110. Two positioning components 220 are symmetrically arranged on the top of the limit component 210 and are used to achieve the locking positioning of the controller 110. An unlocking component 230 is provided on both sides of the surface of the limit component 210. The unlocking component 230 and the positioning component 220 are arranged in a one-to-one correspondence and are used to unlock the positioning component 220. The surface of the limit component 210 is also provided with a pulling component 240 for facilitating the synchronous movement of the two unlocking components 230.

[0041] Example 2

[0042] like Figures 1-8 As shown, the intelligent control system of the ginseng extract processing equipment provided in this embodiment is different from that in Example 1 in that:

[0043] The limiting assembly 210 includes a support shell 211 connected to the adjustment mechanism 400. The top of the support shell 211 is an open structure so that the plug-in board 120 can be plugged into the inner cavity of the support shell 211 from top to bottom. The plug-in 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 connected to the inner cavity of the support shell 211. The upper part of the plug-in board 120 is stuck to 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, which facilitates the subsequent locking and positioning operation of the positioning assembly 220. When the plug-in board 120 is plugged into the inner cavity of the support shell 211, the controller 110 can be limited. In the horizontal position on the plug-in mechanism 200, in order to achieve a preliminary limiting effect on the controller 110, a protrusion 213 is fixedly connected to the bottom of the support shell 211 facing the controller 110, which can provide auxiliary support for the lower part of the back surface of the control mechanism 100, avoiding the shaking of the controller 110 after installation and fixation due to the gap between the controller 110 and the limiting component 210, which helps to ensure the installation stability of the controller 110. A rubber pad 214 is glued to the side of the protrusion 213 away from the support shell 211. The rubber pad 214 contacts the back surface of the controller 110, avoiding the protrusion 213 directly contacting the back surface of the controller 110 and causing wear, which helps to extend the service life of the controller 110.

[0044] The positioning assembly 220 includes a baffle 221 movably connected to the top of the support housing 211. The two baffles 221 are integrally formed with side ears 222 connected to the unlocking assembly 230 on the opposite sides. The top of the support housing 211 and the plug board 120 are in contact with the bottom of the baffle 221. When the baffle 221 blocks the top of the plug board 120 in the support housing 211, it can limit the vertical position of the controller 110 on the plug mechanism 200 to achieve the controller. The locking and positioning function of 110 is provided; the top of the baffle 221 is provided with a second inclined surface 2211, and both sides of the bottom of the plug-in board 120 are provided with a first inclined surface 121. The two first inclined surfaces 121 are symmetrically arranged, and the first inclined surface 121 and the second inclined surface 2211 are arranged in a one-to-one correspondence. The inclination angle of the first inclined surface 121 and the corresponding second inclined surface 2211 are the same. When the plug-in board 120 is inserted into the inner cavity of the support shell 211, it is only necessary to align the first inclined surface 121 with the second inclined surface 2211. 11 is aligned with each other and moved downward with force, the inclined surface structure can be used to change the force direction, so that the two second inclined surfaces 2211 can move away from each other by themselves, without the need for manual operation of the positioning assembly 220, thereby helping to improve the assembly efficiency of the control mechanism 100; a second sliding groove 2212 is provided at the bottom of the baffle 221 and is arranged opposite to the second inclined surface 2211, and a first slider 2111 is fixedly connected to both sides of the top of the support shell 211. The first slider 2111 and the second sliding groove 2212 are arranged in a one-to-one correspondence, and the top of the first slider 2111 passes through 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 shell 211, it can drive the second sliding groove 2212 to move synchronously, so that the first slider 2111 slides in the inner cavity of the second sliding groove 2212, thereby guiding the baffle 221, so that the baffle 221 can move stably horizontally.

[0045] The unlocking assembly 230 includes a movable plate 231 movably connected to the side of the support housing 211 and perpendicular to the second slide groove 2212. The top of the movable plate 231 is fixedly connected to the inclined plate 232. The side ear 222 is provided with an inclined hole 2221 for the inclined plate 232 to pass through. The inner wall surface of the inclined hole 2221 is slidably connected to the corresponding inclined plate 232. A reset member is provided between the movable plate 231 and the support housing 211. By pulling down or pushing up the movable plate 231, the force direction can be changed through the inclined surface structure of the inclined plate 232 and the inclined hole 2221, so that the two The baffles 221 can move away from or towards each other, thereby opening or closing the two baffles 221 to achieve unlocking or locking of the plug board 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, and a spring 234 is detachably connected between the support block 233 and the corresponding movable plate 231 through 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 reset the movable plate 231.

[0046] The pulling assembly 240 includes a sleeve 241 that is slidably mounted 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 slidably connected to the inner wall 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. By pulling the sleeve 241 downward, the two unlocking assemblies 230 can be driven to move downward synchronously, achieving the purpose of operating the two unlocking assemblies 230 in one step, which can reduce the number of operating steps and improve the safety of the user. The second slider 2411 is fixedly connected to the inner wall of the housing 241, and the ... The inner cavity of the slide groove 2112 is slidably connected to the inner wall surface of the first slide groove 2112. When the shell 241 moves up and down, it can drive the second slider 2411 to slide in the inner cavity of the first slide groove 2112 to achieve a limiting effect on the shell 241, which can improve the stability of the shell 241 when it moves up and down. The surface of the movable plate 231 is provided with a third slide groove 2311 parallel to the first slide groove 2112. Both sides of the inner wall surface of the shell 241 are fixedly connected to the third slider 2412. The third slider 2311 is fixedly connected to the inner wall surface of the shell 241. 412 is provided in a one-to-one correspondence with the third slide groove 2311, and one side of the third slider 2412 penetrates 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. The third slide groove 2311 and the third slider 2412 cooperate with each other to realize the movable connection between the housing 241 and the movable plate 231. When the housing 241 moves downward or the movable plate 231 moves upward, the third slide groove 2311 and the third slider 2412 can play a linkage role.At the same time, when the housing 241 moves upward, it can drive the third slider 2412 to slide in the inner cavity of the third slide groove 2311, so that the housing 241 gradually moves away from the support block 233 until it reaches its maximum limit, and the spring 234 can be exposed to the outside. At this time, the spring 234 can be regularly maintained or replaced. The top and bottom of the inner cavity of the movable plate 231 are fixedly connected to the iron block 2312. The third slider 2412 is an iron-absorbing block. The third slider 2412 is magnetically adsorbed on one side of one of the iron blocks 2312. When the housing 241 is covered on the spring When the spring 234 is raised, the third slider 2412 is magnetically attached to the iron block 2312 located below, thereby improving the stability of the connection between the movable plate 231 and the sleeve 241 and ensuring subsequent synchronization between the sleeve 241 and the movable plate 231. When the spring 234 needs to be disassembled, maintained, or replaced, the third slider 2412 can be magnetically attached to the iron block 2312 located above, thereby stably maintaining the sleeve 241 in the raised position. This eliminates the need for manual support and facilitates the disassembly and assembly of the spring 234.

[0047] The fixing mechanism 300 includes a mounting plate 310 located on the side of the support housing 211 and opposite to the sleeve 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 a desired position by screws.

[0048] Among them, the adjustment mechanism 400 includes a folding arm 410 rotatably connected to the surface of the mounting plate 310 via a rotating shaft. A support 420 is installed at the end of the folding arm 410 away from the mounting plate 310. The support 420 is rotatably connected to the support shell 211 via a universal joint. The adjustment mechanism 400 can realize the movable connection between the plug-in mechanism 200 and the fixing mechanism 300, so that the staff can adjust the position and angle of the control mechanism 100 according to their own usage needs, which is convenient for the staff to perform fixed-point operation.

[0049] The intelligent control system of the ginseng extract processing equipment further includes a sensing module and an execution module, both of which are in communication with the controller 110.

[0050] The sensor module is used to collect the temperature T(t), pressure, solvent flow F(t) in the extraction tank in real time, as well as the ginsenoside concentration C(t) monitored online by a near-infrared spectrometer;

[0051] The controller 110 has a built-in dynamic extraction rate equation model for generating an optimized parameter combination of temperature, flow rate, and time;

[0052] The execution module adjusts the heater power, solvent valve opening 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 it detects that dC / dt is lower than the threshold, it drives the execution module to adjust the parameters, which can improve extraction efficiency, reduce energy consumption, adapt to different raw material batches, and reduce 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) integrates the temperature-flow synergy effect, breaking through the traditional single temperature-dependent model; λ(T,F) introduces the inverse flow term (F)t) -0.5) , indicating that high flow rate 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. This can solve the problem that the traditional first-order kinetic model cannot adapt to time-varying working conditions and reduce the degradation of active ingredients caused by high temperature.

[0062] Here’s how it works:

[0063] 1. Forward extraction items:

[0064] The dynamic rate constant k(t) is jointly controlled by temperature T(t) and solvent flow rate F(t):

[0065]

[0066] Temperature effect: via the Arrhenius equation It reflects that the increase in temperature accelerates the molecular motion and promotes the dissolution of saponins;

[0067] Traffic effect: Characterize the nonlinear enhancement of diffusion rate due to increasing solvent flow rate (e.g., high flow rate flushing cell wall pores);

[0068] Concentration gradient drive: (C max -C(t)) n The diffusion process is driven by the difference between the saponin concentration inside the simulated raw material and the solvent concentration, and n is determined by the particle size distribution of the raw material (n→1 for small particles and n→0.5 for large particles).

[0069] 2. Thermal degradation compensation item:

[0070] When the temperature exceeds the degradation threshold T degrad When , 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 amplify the destructive effect of high temperature on saponins;

[0073] Flow buffer: F(t) -0.5 This indicates that high flow rate can dilute local high-temperature areas and slow down the degradation rate.

[0074] For example, when the sensor detects T(t) = 78°C (connect T degrad =80℃):

[0075] As λ(T,F) increases, the system automatically reduces the heating power;

[0076] At the same time, F(t) is increased to take advantage of the flow buffering effect and maintain the extraction rate;

[0077] The controller 110 predicts the changing trend of C(t) through a dynamic equation to avoid excessive cooling that causes a decrease in extraction efficiency.

[0078] Working principle:

[0079] Handheld operation: Use the convex strip 242 to move the housing 241 downward, so that the housing 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 slide groove 2112, and 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, so that the spring 234 is forced to contract, and the inclined plate 232 slides in the inner cavity of the inclined hole 2221, so that the side ear 222 is forced to drive the baffle 221 to move, and the baffle 221 drives the second inclined surface 2211 to move, and the first slider 2111 The two baffles 221 are gradually moved away from each other by sliding in the inner cavity of the second inclined surface 2211 until the sleeve 241 moves to its maximum extent. At this time, the two baffles 221 are opened to their maximum extent, exposing the top of the plug-in board 120 to the outside, thereby completing the unlocking operation of the plug-in board 120. The controller 110 is then moved upward, so that the controller 110 drives the plug-in board 120 to move in the inner cavity of the support housing 211 until the plug-in board 120 is separated from the inner cavity of the support housing 211, thereby completing the disassembly operation of the control mechanism 100. The staff can then hold the controller 110 to operate the ginseng extract processing equipment.

[0080] Fixed-point control: Align the first inclined surface 121 at the bottom of the plug board 120 with the corresponding second inclined surface 2211, and forcefully move the controller 110 downward, so that the controller 110 drives the plug board 120 to move downward, and the plug board 120 squeezes the baffle 221, so that the two baffles 221 are forced to move in opposite directions, and the baffle 221 drives the side ears 222 to move, and the side ears 222 drive the unlocking component 230 and the pulling component 240 to move downward, so that the spring 234 is forced to contract, and then continue to move the controller 110 downward until The plug-in board 120 is fully inserted into the inner cavity of the support shell 211, and the elastic restoring force of the spring 234 causes the baffle 221 to move to its original state, that is, the two plug-in boards 120 are in a closed state, thereby completing the locking operation of the plug-in boards 120, thereby completing the assembly operation of the control mechanism 100, and then rotating the controller 110 to adjust the use angle of the controller 110, and adjusting the position of the folding arm 410 to adjust the use position of the controller 110, so that the staff can perform fixed-point control operations on the ginseng extract processing equipment.

[0081] The above specific embodiments will allow those skilled in the art to 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 can arbitrarily combine different technical features to implement different technical solutions.

Claims

1. An intelligent control system for ginseng extract processing equipment, characterized in that: The invention relates to a control mechanism (100) electrically connected to a ginseng extract processing device, wherein 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 achieving 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-in board (120), and the plug-in board (120) is fixedly connected to the back surface of the controller (110); The plug-in mechanism (200) comprises a limiting component (210), a positioning component (220), an unlocking component (230) and a pulling component (240); the plug-in board (120) and the limiting component (210) are plugged together to realize the initial limiting 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 a one-to-one correspondence and are used to unlock the positioning component (220); the surface of the limiting component (210) is also provided with a pulling component (240) for conveniently driving the two unlocking components (230) to move synchronously; The limiting assembly (210) includes a support shell (211) connected to the adjustment mechanism (400), the top of the support shell (211) is an open structure, the plug-in 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) connected to the inner cavity of the support shell (211), the upper part of the plug-in board (120) is clamped to 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), the side of the protrusion (213) away from the support shell (211) is glued with a rubber pad (214), and the rubber pad (214) contacts the back surface of the controller (110); The fixing mechanism (300) comprises a mounting plate (310) located on the side of the support housing (211) and arranged opposite to the sleeve housing (241), and mounting holes (320) are respectively provided at the four corners of the mounting plate (310); the adjusting mechanism (400) comprises a folding arm (410) rotatably connected to the surface of the mounting plate (310), and a support (420) is 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).

2. The intelligent control system for ginseng extract processing equipment according to claim 1, characterized in that: The positioning assembly (220) comprises a baffle (221) movably connected to the top of the support housing (211); side ears (222) connected to the unlocking assembly (230) are integrally formed on opposite sides of the two baffles (221); the tops of the support housing (211) and the plug board (120) are in contact with the bottoms of the baffles (221).

3. The intelligent control system of the ginseng extract processing equipment according to claim 2, characterized in that: A second inclined surface (2211) is provided on 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 surface (121) and the second inclined surface (2211) are arranged in a one-to-one correspondence, and the first inclined surface (121) and the corresponding second inclined surface (2211) have the same inclination angle.

4. The intelligent control system for ginseng extract processing equipment according to claim 3, characterized in that: A second sliding groove (2212) is provided at the bottom of the baffle (221) and is arranged opposite to the second inclined surface (2211). A first sliding block (2111) is fixedly connected to both sides of the top of the support shell (211). The first sliding block (2111) and the second sliding groove (2212) are arranged in a one-to-one correspondence, and the top of the first sliding block (2111) passes through 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).

5. The intelligent control system for ginseng extract processing equipment according to claim 4, characterized in that: The unlocking assembly (230) includes a movable plate (231) movably connected to the side of the support housing (211) and arranged perpendicularly to the second slide groove (2212); the top of the movable plate (231) is fixedly connected to an inclined plate (232); the side ears (222) are provided with an inclined hole (2221) for the inclined plate (232) to pass through; the 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 housing (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).

6. The intelligent control system for ginseng extract processing equipment according to claim 5, characterized in that: The pulling assembly (240) includes 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 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).

7. The intelligent control system for ginseng extract processing equipment according to claim 6, characterized in that: The support shell (211) is provided with a first sliding groove (2112) on one side facing the sleeve shell (241), and the inner wall surface of the sleeve shell (241) is fixedly connected with a second slider (2411), and one side of the second slider (2411) penetrates into the inner cavity of the first sliding groove (2112) and is slidably connected to the inner wall surface of the first sliding groove (2112). The surface of the movable plate (231) is provided with a third sliding groove (2311) parallel to the first sliding groove (2112), and both sides of the inner wall surface of the sleeve shell (241) are fixedly connected with a third slider (2412), and the third slider (2412) and the third sliding groove (2311) are arranged in a one-to-one correspondence, and one side of the third slider (2412) penetrates into the inner cavity of the corresponding third sliding groove (2311) and is slidably connected to the inner wall surface of the third sliding groove (2311).

Citation Information

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