Online reaction system for compound gum of carrageenan and konjac gum
Through the integrated equipment online reaction system, carrageenan and konjac glue are dissolved and mixed with carrageenan and konjac glue, the cooling process is optimized, and the problems of long production time and difficult mold removal in the existing technology are solved, and the production efficiency and quality of compound glue are improved.
Patent Information
- Application Number
- CN202510280763.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2025-07-25
AI Technical Summary
In the prior art, the composite glue production of carrageenan and konjac glue is made by independent equipment and then mixed separately, resulting in increased production time, unstable quality, inconsistent texture and performance, and it is difficult to remove from the mold after cooling and molding, affecting the yield and appearance quality.
The integrated equipment online reaction system is adopted, and the carrageenan and konjac collagen are dissolved and mixed into a compound glue solution through the preparation mechanism. The molding mechanism is used for cooling and molding, and the unloading parts are conveniently demolded, reducing intermediate links and optimizing the cooling process.
The production efficiency and quality of carrageenan and konjac glue compound glue is improved, the temperature uniformity of the mold is ensured, and the mold release is facilitated, which enhances the market competitiveness of the product.
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Figure CN120361841A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of carrageenan processing, and particularly to an online reaction system for a compound gum of carrageenan and konjac gum. Background Art
[0002] Carrageenan is a natural polysaccharide extracted from red algae (such as Chondrus ocellatus, Eucheuma muricatum, etc.), and is widely used in the fields of food, medicine, cosmetics, etc. It has good gelling property, thickening property and stability, and is one of the important additives in the food industry. Konjac gum is a natural polysaccharide extracted from konjac tubers, and its main component is glucomannan. Konjac gum has high viscosity, water absorption and swelling property, and gelling property. These two common food colloids, carrageenan and konjac gum, can play their synergistic effects through compounding. With the increasing demand for natural additives in the food industry, the application prospect of the compound gum of carrageenan and konjac gum is broad. By reasonably designing and selecting the optimized compounding ratio, the compound gum of carrageenan and konjac gum can meet various high-precision and high-efficiency food processing requirements; In the prior art, the compound gum of carrageenan and konjac gum is prepared by separately manufacturing carrageenan and konjac gum with independent equipment and then mixing them, which increases the production time, resulting in unstable quality of the compound gum, inconsistent texture, taste and performance, and it is not easy to take out the cooled and formed compound gum of carrageenan and konjac gum from the mold, resulting in product breakage, affecting the finished product rate and appearance quality, and weakening the market advantage of the product. Summary of the Invention
[0003] The purpose of the present invention is to provide an online reaction system for a compound gum of carrageenan and konjac gum to at least solve the existing technical problems.
[0004] To achieve the above purpose, the present invention provides the following technical solution: An online reaction system for a compound gum of carrageenan and konjac gum, comprising: A control console; A storage tank, arranged at the outer rear side of the control console; A preparation mechanism, arranged at the outer right side of the control console, and the preparation mechanism can prepare carrageenan and konjac gum raw materials into solutions and mix them into a compound gum solution; A forming mechanism, arranged at the outer right side of the preparation mechanism, and the forming mechanism can cool the compound gum solution into a formed solid product; A refrigerant storage tank, arranged at the outer right rear side of the forming mechanism; A first pump body, arranged at the outer rear side of the forming mechanism, the first pump body is connected to the refrigerant storage tank through a pipeline, and the first pump body is electrically connected to the control console; A refrigerating machine is arranged at the outer rear side of the first pump body. The refrigerating machine and the first pump body are connected through a pipeline, and the refrigerating machine is electrically connected to the console. A heat exchanger is arranged above the refrigerating machine. The heat exchanger and the first pump body are connected through a pipeline, and the heat exchanger is electrically connected to the console.
[0005] Preferably, the preparation mechanism includes: a box body shell, a second pump body, a partition board, a liquid discharge pipeline, a liquid inlet pipeline, a third pump body, a first motor and a first stirring rod. The box body shell is arranged on the outer right side of the console in the left - right direction. The second pump body is installed on the outer left side of the box body shell through a bracket. The second pump body and the storage tank are connected through a pipeline, and the second pump body is electrically connected to the console. The number of the partition boards is two, and the two partition boards are respectively installed on the left and right sides in the middle of the inner cavity of the box body shell. The two partition boards divide the inner cavity of the box body shell into three chambers: left, middle and right. The number of the liquid discharge pipelines is two groups, and the number of each liquid discharge pipeline is two. The two groups of liquid discharge pipelines are respectively embedded in the front and rear sides of the tops of the left and right partition boards. The liquid inlet pipeline is installed on the top of the front side of the outer wall of the box body shell. The liquid inlet of the liquid inlet pipeline is connected to the second pump body, and the liquid outlet on the left and right sides of the liquid inlet pipeline respectively extends into the top of the front side of the inner cavity of the box body shell and is located above the front sides of the left and right chambers inside the box body shell. The third pump body is arranged on the outer front side of the box body shell. The liquid inlet pipe of the third pump body extends into the bottom of the front side of the inner cavity of the box body shell and is located below the front side of the middle chamber inside the box body shell. The third pump body is electrically connected to the console. The first motor is installed on the top of the box body shell. The rotating end of the first motor extends into the upper part of the inner cavity of the box body shell and is located at the top of the middle chamber inside the box body shell. The first motor is electrically connected to the console. The first stirring rod is fixedly installed at the bottom of the rotating end of the first motor.
[0006] Preferably, the preparation mechanism further includes: a lifter, a bottom plate, a liquid level sensor, a feeding pipe, a conveyor, a blanking machine, a jack, and a cooperating stirring member; there are two lifters, and the two lifters are respectively installed in the inner cavity of the box body shell and are located at the bottoms of the left and right compartments inside the box body shell, and the lifters are electrically connected to the console; there are two bottom plates, and the two bottom plates are respectively installed on the top of the lifting ends of the two lifters; there are three liquid level sensors, and the three liquid level sensors are respectively embedded in the top of the box body shell and are located above the left, middle, and right compartments inside the box body shell, and the liquid level sensors are electrically connected to the console; there are two feeding pipes, and the two feeding pipes are respectively installed at the top openings of the box body shell and are located at the upper rear sides of the left and right compartments inside the box body shell; there are two conveyors, and the two conveyors are respectively installed on the left and right sides at the top rear of the outer wall of the box body shell through brackets, and the discharge ports of the left and right conveyors extend above the inner cavities of the left and right feeding pipes, and the conveyors are electrically connected to the console; there are two blanking machines, and the two blanking machines are arranged above the feeding ports of the left and right conveyors, and the blanking machines are electrically connected to the console; there are two jacks, and the two jacks are respectively opened at the top of the box body shell and are located in the middle above the left and right compartments inside the box body shell; there are two cooperating stirring members, and the two cooperating stirring members are respectively arranged at the top of the box body shell and are located above the left and right jacks.
[0007] Preferably, the cooperating stirring member includes: a guide rail frame, a roller seat, a mounting frame, a second motor, a second stirring rod, a lead screw assembly, a driven sprocket, a sprocket seat, a third motor, and a transmission chain; the guide rail frame is installed along the vertical direction at the rear side of the top of the outer wall of the box body shell; the roller seat is clamped inside the guide rail frame; the mounting frame is installed at the rear side of the roller seat; the second motor is arranged at the top inside the mounting frame, and the second motor is electrically connected to the console; the second stirring rod is inserted into the inner cavity of the jack, and the top of the second stirring rod is connected to the rotating end of the second motor; there are two lead screw assemblies, and the two lead screw assemblies are respectively rotatably connected to the left and right sides at the bottom inside the guide rail frame through bearings, and the outer parts of the lead screw nuts of the two lead screw assemblies are connected to the inside of the roller seat; there are two driven sprockets, and the two driven sprockets are respectively installed at the bottom of the lead screw shafts of the left and right lead screw assemblies; the sprocket seat is installed at the front side of the bottom inside the guide rail frame; the third motor is arranged above the sprocket seat, and the rotating end of the third motor is connected to the sprocket axis of the sprocket seat, and the third motor is electrically connected to the console; the transmission chain is meshed and connected to the outer sides of the left and right driven sprockets and the sprocket of the sprocket seat.
[0008] Preferably, the forming mechanism includes: a base frame, a top frame, a first diverter, a second diverter, a tank frame, a die component, a discharging component, a hopper, and a material cart; the base frame is installed on the outer right side of the box housing along the front-rear direction; the top frame is installed on the top of the base frame along the front-rear direction; the first diverter is arranged at the front end inside the top frame, the first diverter is connected to the liquid outlet pipe of the third pump body, and the first diverter is electrically connected to the console; the second diverter is arranged at the rear end inside the top frame, the second diverter is connected to the refrigerator through a pipeline, and the second diverter is electrically connected to the console; the number of the tank frames is two, and the two tank frames are respectively installed at the left and right ends inside the roller seat along the front-rear direction; the number of the die components is several, and the several die components are arranged at intervals along the front-rear direction inside the left and right tank frames; the discharging component is installed above the top frame; the hopper is arranged at the bottom inside the top frame along the front-rear direction; the material cart is detachably placed inside the base frame and below the hopper.
[0009] Preferably, the die component includes: a die housing, a pressure relief valve, a first electric telescopic rod, a heat-conducting housing, and a heat-conducting pipe; the die housing is fixedly installed inside the left and right tank frames, and the die housing is connected to the first diverter through a flexible pipeline; the pressure relief valve is arranged outside the opening at the top of the inner cavity of the die housing, and the pressure relief valve is electrically connected to the console; the number of the first electric telescopic rods is two, and the two first electric telescopic rods are respectively installed inside the inner cavities of the left and right tank frames, and the first electric telescopic rods are electrically connected to the console; the heat-conducting housing is arranged inside the telescopic ends of the left and right first electric telescopic rods; the heat-conducting pipe is arranged inside the heat-conducting housing, and the heat-conducting pipe is connected to the second diverter through a flexible pipeline.
[0010] Preferably, the discharging component includes: a mounting frame, a limiting component, a rack, a top plate, a double-end motor, a gear, a first slot seat, a first plug, a cutting unit, a ball nut, a ball screw, a fourth motor, and a transmission belt assembly; the mounting frame is mounted on the top of the top frame in the front-rear direction; the number of the limiting components is two, and the two limiting components are respectively mounted on the left and right sides of the top of the mounting frame in the front-rear direction; the number of the racks is two, and the two racks are respectively mounted on the top of the mounting frame in the front-rear direction and located inside the left and right limiting components; the top plate is arranged on the top of the limiting ends of the left and right limiting components; the double-end motor is mounted on the front side of the top of the top plate, and the double-end motor is electrically connected to the console; the number of the gears is two, and the two gears are respectively mounted on the left and right sides of the rotating ends of the double-end motor and respectively mesh with the left and right racks; the number of the first slot seats is two, and the two first slot seats are respectively embedded in the left and right sides of the top end of the top plate; the first plug is inserted into the inside of the left and right first slot seats in the up-down direction; the cutting unit is arranged at the bottom ends of the left and right first plugs; the ball nut is rotatably connected to the inside of the circular groove opened on the top plate through a bearing; the ball screw is screwed inside the ball nut, and the top of the ball screw is rotatably connected to the inner top of the first plug through a bearing; the fourth motor is mounted on the rear side of the top of the top plate, and the fourth motor is electrically connected to the console; one end of the transmission belt assembly is key-connected to the outside of the ball nut, and the other end pulley of the transmission belt assembly is mounted on the bottom of the rotating end of the fourth motor.
[0011] Preferably, the cutting unit includes: a mounting plate, a rotating motor, a rotating seat, a mounting seat, a second slot seat, a second plug, a second electric telescopic rod, and a tool; the mounting plate is mounted on the bottom of the first plug in the left-right direction, and the top end of the mounting plate is rotatably connected to the bottom end of the ball screw through a bearing; the number of the rotating motors is two, and the two rotating motors are respectively mounted on the left and right sides of the bottom end of the mounting plate, and the rotating motors are electrically connected to the console; the number of the rotating seats is two, and the two rotating seats are respectively mounted on the outside of the rotating ends of the left and right rotating motors; the number of the mounting seats is two, and the two mounting seats are respectively mounted on the bottom of the left and right rotating seats; the number of the second slot seats is two, and the two second slot seats are respectively mounted on the rear sides of the bottoms of the left and right mounting seats; the second plug is inserted into the inside of the left and right second slot seats; the number of the second electric telescopic rods is two, and the two second electric telescopic rods are respectively mounted on the front sides of the bottoms of the left and right mounting seats, and the telescopic ends of the two second electric telescopic rods are respectively connected to the front ends of the left and right sides of the second plug, and the second electric telescopic rods are electrically connected to the console; the tool is mounted on the rear side of the second plug in the left-right direction.
[0012] Compared with the prior art, the beneficial effects of the present invention are: 1. The second motors in the mixing components on the left and right sides drive the second stirring rods respectively in the inner cavities of the left and right compartments inside the box housing to dissolve the raw materials in an appropriate amount of water to form a uniform carrageenan solution and konjac gum solution. After the preparation of the carrageenan solution and konjac gum solution is completed, the third motors in the mixing components on the left and right sides drive the sprockets inside the sprocket seats at the corresponding positions to rotate. Then, driven by the transmission chain, the driven sprockets on both sides rotate synchronously. The driven sprockets on the left and right sides drive the lead screw rods in the lead screw assemblies on their inner sides to rotate, so that the lead screw nuts in the lead screw assemblies on both sides drive the roller seats to move upward along the inner side of the guide rail frame. Furthermore, the roller seats drive the second motor to drive the second stirring rod to move upward from the inner cavity of the jack under the cooperation of the mounting frame. The elevators in the left and right compartments inside the box housing drive the bottom plate to move upward to a specified height position. Thus, the carrageenan solution and konjac gum solution in the inner cavities of the left and right compartments inside the box housing enter the inner cavity of the middle compartment inside the box housing through the drain pipes on the left and right sides respectively. The height to which the elevator rises controls the mixing ratio of the two solutions. The first motor drives the first stirring rod to rotate and stir in the middle compartment inside the box housing. The third pump body pumps the compounded gum solution after mixing into the first diverter.
[0013] 2. The first diverter distributes the compounded gum solution inside itself into the inner part of the mold housing through the corresponding pipelines, so that the compounded gum in the inner part of the mold housing condenses and forms a shape. After the forming is completed, the first electric telescopic rod drives the heat-conducting housing to move forward. The double-end motor drives the gear to rotate along the rack, so that the top plate moves back and forth to a specified position above the mold component. The fourth motor drives the ball nut to rotate under the drive of the transmission belt assembly. Under the rotational force of the ball nut, the ball screw drives the first plug-in frame to move up and down to a specified position. The first plug-in frame drives the cutting unit to move to the front side position inside the inner cavity of the mold housing. The second electric telescopic rod drives the second plug-in frame to move backward inside the second slot seat, so that the second plug-in frame inserts the cutter into the compounded gum inside the mold housing. The rotating motor drives the rotating seat to drive the mounting seat to rotate downward, so that after the compounded gum is pried forward from the inner cavity of the mold housing in cooperation with the second slot seat, the second plug-in frame and the cutter, the compounded gum is peeled off from the inner part of the mold housing and dropped into the material trolley through the downward movement of the first plug-in frame for collection.
[0014] Therefore, the integrated equipment is adopted to dissolve carrageenan and konjac gum simultaneously, and then the two colloid solutions are mixed evenly in proportion, reducing intermediate links and improving production efficiency. Moreover, a cooling device with a new structure is adopted to optimize the cooling process, ensuring that the temperature of each part of the mold is uniform and facilitating demolding, effectively solving the problems in the existing process and improving the production efficiency and quality of the compounded gum of carrageenan and konjac gum. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic structural diagram of the present invention; Figure 2 Explosion diagram of the preparation mechanism for Figure 1 ; Figure 3 Enlarged view of the mating stirring component at location A for Figure 2 ; Figure 4 Explosion diagram of the forming mechanism for Figure 1 ; Figure 5 Enlarged view of the mold component at location B for Figure 4 ; Figure 6 Enlarged view of the discharging component at location C for Figure 4 ; Figure 7 Explosion diagram of the cutting unit for Figure 6 ;
[0016] In the figure: 1, control console; 2, storage tank; 3, preparation mechanism; 31, box body shell; 32, second pump body; 33, partition board; 34, liquid discharge pipeline; 35, liquid inlet pipeline; 36, third pump body; 37, first motor; 38, first stirring rod; 39, elevator; 310, bottom plate; 311, liquid level sensor; 312, feeding pipe; 313, conveyor; 314, blanking machine; 315, jack; 4, mating stirring component; 41, guide rail frame; 42, roller seat; 43, mounting frame; 44, second motor; 45, second stirring rod; 46, lead screw assembly; 47, driven sprocket; 48, sprocket seat; 49, third motor; 410, drive chain; 5, forming mechanism; 51, base frame; 52, top frame; 53, first diverter; 54, second diverter; 55, tank frame; 56, hopper; 57, material trolley; 6, mold component; 61, mold shell; 62, pressure relief valve; 63, first electric telescopic rod; 64, heat conducting shell; 65, heat conducting pipe; 7, discharging component; 71, mounting frame; 72, limiting component; 73, rack; 74, top plate; 75, double-end motor; 76, gear; 77, first slot seat; 78, first plug-in frame; 79, ball nut; 710, ball screw; 711, fourth motor; 712, drive belt assembly; 8, cutting unit; 81, mounting plate; 82, rotating motor; 83, rotating seat; 84, mounting seat; 85, second slot seat; 86, second plug-in frame; 87, second electric telescopic rod; 88, cutter; 9, refrigerant storage tank; 10, first pump body; 11, refrigerator; 12, heat exchanger. Specific implementation method
[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0018] Please refer to Figures 1-7 , the present invention provides a technical solution: an online reaction system for a compound gum of carrageenan and konjac gum, including: a control console 1, a storage tank 2, a preparation mechanism 3, a forming mechanism 5, a refrigerant storage tank 9, a first pump body 10, a refrigerator 11, and a heat exchanger 12. A preset program is set inside the control console 1 to automatically control the electrical components inside the device; the storage tank 2 is arranged at the rear side outside the control console 1; the preparation mechanism 3 is arranged on the right side outside the control console 1, and the preparation mechanism 3 can make the carrageenan and konjac gum raw materials into solutions and mix them into a compound gum solution; the forming mechanism 5 is arranged on the right side outside the preparation mechanism 3, and the forming mechanism 5 can cool the compound gum solution into a formed solid product; the refrigerant storage tank 9 is arranged at the rear right side outside the forming mechanism 5, and a fixed amount of refrigerant is stored inside the refrigerant storage tank 9; the first pump body 10 is arranged at the rear side outside the forming mechanism 5, the first pump body 10 and the refrigerant storage tank 9 are connected by a pipeline, the first pump body 10 and the control console 1 are electrically connected, the first pump body 10 is controlled by the control console 1, and the first pump body 10 can pump the refrigerant inside the refrigerant storage tank 9 into the refrigerator 11; the refrigerator 11 is arranged at the rear side outside the first pump body 10, the refrigerator 11 and the first pump body 10 are connected by a pipeline, the refrigerator 11 and the control console 1 are electrically connected, the refrigerator 11 is controlled by the control console 1, and the refrigerator 11 can compress the refrigerant inside into a high-temperature and high-pressure refrigerant gas; the heat exchanger 12 is arranged above the refrigerator 11, the heat exchanger 12 and the first pump body 10 are connected by a pipeline, the heat exchanger 12 and the control console 1 are electrically connected, the heat exchanger 12 is controlled by the control console 1, and the heat exchanger 12 can perform heat exchange and throttling pressure reduction on the high-temperature and high-pressure refrigerant gas entering from the refrigerator 11, so that it releases heat and pressure and gradually condenses into a low-temperature and low-pressure liquid and then flows back into the refrigerator 11.
[0019] As a preferred solution, further, as Figure 2As shown in the figure, the preparation mechanism 3 includes: a box housing 31, a second pump body 32, a partition plate 33, a liquid discharge pipe 34, a liquid inlet pipe 35, a third pump body 36, a first motor 37, a first stirring rod 38, a lifter 39, a bottom plate 310, a liquid level sensor 311, a feeding pipe 312, a conveyor 313, a blanking machine 314, a jack 315 and a cooperating stirring component 4; the box housing 31 is arranged on the outer right side of the console 1 in the left-right direction; the second pump body 32 is installed on the outer left side of the box housing 31 through a bracket, the second pump body 32 is connected to the storage tank 2 through a pipeline, the second pump body 32 is electrically connected to the console 1, the second pump body 32 is controlled by the console 1, and the second pump body 32 can pump the water stored in the storage tank 2 into the inner cavities of the left and right compartments on the left side of the box housing 31 through the liquid inlet pipe 35 respectively; the number of partition plates 33 is two, and the two partition plates 33 are respectively installed on the left and right sides in the middle of the inner cavity of the box housing 31, and the two partition plates 33 divide the inner cavity of the box housing 31 into three compartments: left, middle and right; the number of groups of liquid discharge pipes 34 is two, and the number of each group of liquid discharge pipes 34 is two. The two groups of liquid discharge pipes 34 are respectively embedded in the front and rear sides of the tops of the left and right partition plates 33; the liquid inlet pipe 35 is installed on the top of the front side of the outer wall of the box housing 31, the liquid inlet of the liquid inlet pipe 35 is connected to the second pump body 32, and the left and right liquid outlets of the liquid inlet pipe 35 respectively extend into the top of the front side of the inner cavity of the box housing 31 and are located above the front sides of the left and right compartments inside the box housing 31; the third pump body 36 is arranged on the front side of the outer part of the box housing 31, the liquid inlet pipe of the third pump body 36 extends into the bottom of the front side of the inner cavity of the box housing 31 and is located below the front side of the middle compartment inside the box housing 31, the third pump body 36 is electrically connected to the console 1, the third pump body 36 is controlled by the console 1, and the third pump body 36 can pump the compounded glue solution after mixing into the first diverter 53; the first motor 37 is installed on the top of the box housing 31, the rotating end of the first motor 37 extends into the upper part of the inner cavity of the box housing 31 and is located on the top of the middle compartment inside the box housing 31, the first motor 37 is electrically connected to the console 1, the first motor 37 is controlled by the console 1, and the first motor 37 can drive the first stirring rod 38 to rotate; the first stirring rod 38 is fixedly installed at the bottom of the rotating end of the first motor 37; the number of lifters 39 is two, and the two lifters 39 are respectively installed in the inner cavity of the box housing 31 and are located at the bottoms of the left and right compartments inside the box housing 31, the lifters 39 are electrically connected to the console 1, the lifters 39 are controlled by the console 1, and the lifters 39 can drive the bottom plate 310 to move up or down; the number of bottom plates 310 is two, and the two bottom plates 310 are respectively installed on the lifting ends of the two lifters 39, and the bottom plates 310 are adapted to the inner cavities of the left and right compartments inside the box housing 31 and are waterproof themselves;There are three liquid level sensors 311, which are respectively embedded in the top of the box housing 31 and are located above the left, middle, and right compartments inside the box housing 31. The liquid level sensors 311 are electrically connected to the console 1 and are controlled by the console 1. The liquid level sensors 311 can monitor the liquid level heights in the left, middle, and right compartments inside the box housing 31. There are two feeding pipes 312, which are respectively installed at the top openings of the box housing 31 and are located at the upper rear sides of the left and right compartments inside the box housing 31. There are two conveyors 313, which are respectively installed on the left and right sides at the top rear of the outer wall of the box housing 31 through brackets. The discharge ports of the left and right conveyors 313 extend above the inner cavities of the left and right feeding pipes 312. The conveyors 313 are electrically connected to the console 1 and are controlled by the console 1. The conveyors 313 can convey quantitative materials into the feeding pipes 312. There are two blanking machines 314, which are arranged above the feeding ports of the left and right conveyors 313. The blanking machines 314 are controlled by the console 1. The blanking machines 314 can quantitatively discharge the raw materials stored inside them into the lower conveyors 313. There are two jacks 315, which are respectively opened at the top of the box housing 31 and are located in the middle above the left and right compartments inside the box housing 31. There are two cooperating stirring components 4, which are respectively arranged at the top of the box housing 31 and are located above the left and right jacks 315.;
[0020] As a preferred solution, furthermore, as Figure 3As shown in the figure, the cooperating stirring component 4 includes: a guide rail frame 41, a roller seat 42, a mounting frame 43, a second motor 44, a second stirring rod 45, a lead screw assembly 46, a driven sprocket 47, a sprocket seat 48, a third motor 49 and a transmission chain 410; the guide rail frame 41 is installed at the rear side of the top end of the outer wall of the box body shell 31 in the up and down direction; the roller seat 42 is clamped inside the guide rail frame 41; the mounting frame 43 is installed at the rear side of the roller seat 42; the second motor 44 is arranged at the inner top of the mounting frame 43, the second motor 44 is electrically connected to the console 1, the second motor 44 is controlled by the console 1, and the second motor 44 can drive the second stirring rod 45 to rotate; the second stirring rod 45 is inserted into the inner cavity of the jack 315, and the top end of the second stirring rod 45 is connected to the rotating end of the second motor 44; the number of the lead screw assemblies 46 is two, the two lead screw assemblies 46 are respectively rotatably connected to the left and right sides of the inner bottom end of the guide rail frame 41 through bearings, the outer parts of the lead screw nuts of the two lead screw assemblies 46 are connected to the inner side of the roller seat 42, the lead screw of the lead screw assembly 46 is rotatably connected to the inner bottom end of the guide rail frame 41 in the up and down direction through a bearing and a lead screw nut is screwed on the outer part of the lead screw; the number of the driven sprockets 47 is two, the two driven sprockets 47 are respectively installed at the bottom ends of the central axes of the lead screws of the left and right two lead screw assemblies 46; the sprocket seat 48 is installed at the front side of the inner bottom end of the guide rail frame 41; the third motor 49 is arranged above the sprocket seat 48, the rotating end of the third motor 49 is connected to the sprocket axis of the sprocket seat 48, the third motor 49 is electrically connected to the console 1, the third motor 49 is controlled by the console 1, and the third motor 49 can drive the sprocket of the sprocket seat 48 to rotate; the transmission chain 410 is meshed and connected to the outer sides of the left and right two driven sprockets 47 and the sprocket of the sprocket seat 48, and the transmission chain 410 can play a role in transmitting between the driven sprockets 47 and the sprocket of the sprocket seat 48.
[0021] As a preferred solution, furthermore, as Figure 4As shown in the figure, the molding mechanism 5 includes: a base frame 51, a top frame 52, a first diverter 53, a second diverter 54, a tank frame 55, a mold component 6, a discharging component 7, a hopper 56, and a material trolley 57; the base frame 51 is installed on the outer right side of the box housing 31 in the front-rear direction; the top frame 52 is installed on the top of the base frame 51 in the front-rear direction; the first diverter 53 is arranged at the front end inside the top frame 52, the first diverter 53 is connected to the liquid outlet pipe of the third pump body 36, the first diverter 53 is electrically connected to the control console 1, and the first diverter 53 is controlled by the control console 1. The first diverter 53 can play a role in diverting the compounded glue solution pumped into the third pump body 36 after mixing; the second diverter 54 is arranged at the rear end inside the top frame 52, the second diverter 54 is connected to the refrigerator 11 through a pipeline, the second diverter 54 is electrically connected to the control console 1, and the second diverter 54 is controlled by the control console 1. The second diverter 54 can play a role in diverting the low-temperature and low-pressure liquid inside the refrigerator 11; the number of tank frames 55 is two, and the two tank frames 55 are respectively installed at the left and right ends inside the roller seat 42 in the front-rear direction; the number of mold components 6 is several, and the several mold components 6 are arranged at intervals in the front-rear direction inside the left and right two tank frames 55; the discharging component 7 is installed above the top frame 52; the hopper 56 is arranged at the bottom inside the top frame 52 in the front-rear direction; the material trolley 57 is detachably placed inside the base frame 51 and is located below the hopper 56.
[0022] As a preferred solution, further, as Figure 5 shown, the mold component 6 includes: a mold outer shell 61, a pressure relief valve 62, a first electric telescopic rod 63, a heat-conducting outer shell 64, and a heat-conducting pipe 65; the mold outer shell 61 is fixedly installed inside the left and right two tank frames 55, and the mold outer shell 61 is connected to the first diverter 53 through a flexible pipeline; the pressure relief valve 62 is arranged outside the opening at the top of the inner cavity of the mold outer shell 61, the pressure relief valve 62 is electrically connected to the control console 1, and the pressure relief valve 62 is controlled by the control console 1. The pressure relief valve 62 can control the pressure inside the inner cavity of the mold outer shell 61; the number of the first electric telescopic rods 63 is two, and the two first electric telescopic rods 63 are respectively installed inside the inner cavities of the left and right two tank frames 55, the first electric telescopic rods 63 are electrically connected to the control console 1, and the first electric telescopic rods 63 are controlled by the control console 1. The first electric telescopic rods 63 drive the heat-conducting outer shell 64 to move back and forth through their own elongation and shortening; the heat-conducting outer shell 64 is arranged inside the telescopic ends of the left and right two first electric telescopic rods 63, the heat-conducting outer shell 64 is made of a heat-conducting material, and the heat-conducting outer shell 64 can completely seal the front side of the inner cavity of the mold outer shell 61; the heat-conducting pipe 65 is arranged inside the heat-conducting outer shell 64, the heat-conducting pipe 65 is connected to the second diverter 54 through a flexible pipeline, and the heat-conducting pipe 65 is arranged in a serpentine shape.
[0023] As a preferred solution, further, asFigure 6 As shown, the discharging component 7 includes: a mounting frame 71, a limiting component 72, a rack 73, a top plate 74, a double-end motor 75, a gear 76, a first slot seat 77, a first plug-in frame 78, a cutting unit 8, a ball nut 79, a ball screw 710, a fourth motor 711, and a transmission belt assembly 712; the mounting frame 71 is mounted on the top of the top frame 52 in the front-rear direction; the number of the limiting components 72 is two, and the two limiting components 72 are respectively mounted on the left and right sides of the top of the mounting frame 71 in the front-rear direction; the number of the racks 73 is two, and the two racks 73 are respectively mounted on the top of the mounting frame 71 in the front-rear direction and located inside the left and right limiting components 72; the top plate 74 is arranged on the top of the limiting ends of the left and right limiting components 72; the double-end motor 75 is mounted on the front side of the top of the top plate 74, the double-end motor 75 is electrically connected to the console 1, the double-end motor 75 is controlled by the console 1, and the double-end motor 75 can drive the gears 76 on both sides to rotate synchronously in the clockwise or counterclockwise direction; the number of the gears 76 is two, and the two gears 76 are respectively mounted on the left and right sides of the rotating ends of the double-end motor 75 and respectively mesh with the racks 73 on the left and right sides; the number of the first slot seats 77 is two, and the two first slot seats 77 are respectively embedded in the left and right sides of the top end of the top plate 74; the first plug-in frame 78 is inserted in the inner sides of the left and right first slot seats 77 in the up-down direction, and the first plug-in frame 78 can move up and down inside the first slot seat 77; the cutting unit 8 is arranged at the bottom ends of the left and right first plug-in frames 78; the ball nut 79 is rotationally connected to the inner side of the circular groove opened on the top plate 74 through a bearing; the ball screw 710 is screwed inside the ball nut 79, the top of the ball screw 710 is rotationally connected to the inner top of the first plug-in frame 78 through a bearing, and the ball screw 710 can move up and down under the action of the rotational force of the ball nut 79; the fourth motor 711 is mounted on the rear side of the top of the top plate 74, the fourth motor 711 is electrically connected to the console 1, the fourth motor 711 is controlled by the console 1, and the fourth motor 711 can drive one end of the transmission belt assembly 712 to rotate the pulley in the clockwise or counterclockwise direction; one end of the transmission belt assembly 712 is key-connected to the outside of the ball nut 79, the other end of the transmission belt assembly 712 is mounted at the bottom of the rotating end of the fourth motor 711, and the transmission belt assembly 712 plays a role in transmitting between the fourth motor 711 and the ball nut 79.
[0024] As a preferred solution, further, as Figure 7As shown in the figure, the cutting unit 8 includes: a mounting plate 81, a rotating motor 82, a rotating seat 83, a mounting seat 84, a second slot seat 85, a second plug-in frame 86, a second electric telescopic rod 87, and a cutting tool 88; the mounting plate 81 is mounted on the bottom of the first plug-in frame 78 in the left-right direction, and the top end of the mounting plate 81 is rotatably connected to the bottom end of the ball screw 710 through a bearing; the number of the rotating motors 82 is two, and the two rotating motors 82 are respectively mounted on the left and right sides of the bottom end of the mounting plate 81. The rotating motor 82 is electrically connected to the control console 1 and is controlled by the control console 1. The rotating motor 82 can drive the rotating seat 83 to rotate clockwise or counterclockwise; the number of the rotating seats 83 is two, and the two rotating seats 83 are respectively mounted outside the rotating ends of the left and right rotating motors 82; the number of the mounting seats 84 is two, and the two mounting seats 84 are respectively mounted on the bottoms of the left and right rotating seats 83; the number of the second slot seats 85 is two, and the two second slot seats 85 are respectively mounted on the rear sides of the bottoms of the left and right mounting seats 84; the second plug-in frame 86 is inserted into the inner sides of the left and right second slot seats 85; the number of the second electric telescopic rods 87 is two, and the two second electric telescopic rods 87 are respectively mounted on the front sides of the bottoms of the left and right mounting seats 84. The telescopic ends of the left and right second electric telescopic rods 87 are respectively connected to the front ends of the left and right sides of the second plug-in frame 86. The second electric telescopic rod 87 is electrically connected to the control console 1 and is controlled by the control console 1. The second electric telescopic rod 87 drives the second plug-in frame 86 to move back and forth through its own extension and contraction; the cutting tool 88 is mounted on the rear side of the second plug-in frame 86 in the left-right direction.
[0025] The working principle is as follows: Step 1: The staff separately pour the carrageenan and konjac glucomannan raw materials into the left and right feeding machines 314 for storage. The staff control the console 1 to start the feeding machine 314, conveyor 313, second pump body 32, second motor 44, third motor 49, elevator 39, liquid level sensor 311, first motor 37 and third pump body 36. The raw materials stored in the left and right feeding machines 314 are quantitatively fed into the lower conveyor 313. The left and right conveyors 313 feed the raw materials inside them into the left and right chamber cavities of the inner side of the box body shell 31 through the feeding pipes 312 on both sides respectively. The second pump body 32 pumps the water stored in the storage tank 2 into the left and right chamber cavities of the inner side of the box body shell 31 through the liquid inlet pipe 35. The second motor 44 of the stirring components 4 on the left and right sides drives the second stirring rods 45 in the left and right chamber cavities of the inner side of the box body shell 31 respectively to dissolve the raw materials in an appropriate amount of water to form a uniform carrageenan solution and konjac glucomannan solution. After the carrageenan solution and konjac glucomannan solution are prepared, the third motor 49 of the stirring components 4 on the left and right sides drives the sprockets inside the sprocket seats 48 at the corresponding positions to rotate. Then, driven by the transmission chain 410, the driven sprockets 47 on both sides rotate synchronously. The driven sprockets 47 on both sides drive the lead screw rods in the lead screw assemblies 46 inside their inner sides to rotate, so that the lead screw nuts in the lead screw assemblies 46 on both sides drive the roller seats 42 to move upward along the inner side of the guide rail frame 41. Then, the roller seats 42 drive the second motor 44 to drive the second stirring rod 45 to move upward from the inner cavity of the jack 315 under the cooperation of the mounting frame 43. The elevators 39 in the left and right chamber cavities of the box body shell 31 drive the bottom plate 310 to move upward to a specified height position. Then, the carrageenan solution and konjac glucomannan solution in the left and right chamber cavities of the box body shell 31 enter the inner cavity of the middle chamber of the box body shell 31 through the drain pipes 34 on the left and right sides respectively. The liquid level sensors 311 on the left and right sides monitor the liquid level heights of the carrageenan solution and konjac glucomannan solution in the left and right chamber cavities of the box body shell 31, and then control the mixing ratio of the two solutions by the height of the elevator 39 rising. The first motor 37 drives the first stirring rod 38 to rotate and stir in the middle chamber of the box body shell 31. The third pump body 36 pumps the compounded glue solution after mixing into the first diverter 53; Step 2: The staff controls the console 1 to start the first diverter 53, the first electric telescopic rod 63, the first pump body 10, the refrigerator 11, the heat exchanger 12, the pressure relief valve 62, the first electric telescopic rod 63, the double-end motor 75, the ball nut 79, the second electric telescopic rod 87 and the rotating motor 82. The first diverter 53 respectively sends the compound glue solution inside itself into the mold shell 61 through the corresponding pipelines. The pressure relief valve 62 controls the pressure inside the mold shell 61 to fill the mold shell 61 with the compound glue solution. The first pump body 10 pumps the refrigerant stored in the refrigerant storage tank 9 into the refrigerator 11. The refrigerator 11 compresses the refrigerant inside into a high-temperature and high-pressure refrigerant gas. The high-temperature and high-pressure refrigerant gas inside the refrigerator 11 enters the heat exchanger 12 for heat exchange and throttling pressure reduction, releases heat and pressure and gradually condenses into a low-temperature and low-pressure liquid and then returns to the refrigerator 11. The refrigerator 11 distributes the low-temperature and low-pressure liquid under the diversion of the second diverter 54 and respectively enters the heat conduction tubes 65 inside the mold components 6 at the corresponding positions for circulation. After circulation, it returns to the refrigerator 11 and takes away the heat in the inner cavity of the mold shell 61 through the heat conduction shell 64, so that the compound glue inside the mold shell 61 condenses and forms. After the forming is completed, the first electric telescopic rod 63 extends to drive the heat conduction shell 64 to move forward. The double-end motor 75 drives the gear 76 to rotate along the rack 73, so that the top plate 74 moves back and forth above the mold component 6 at the specified position along the top of the mounting frame 71 under the limiting action of the limiting component 72. The fourth motor 711 drives the ball nut 79 to rotate under the drive of the transmission belt assembly 712. The ball screw 710 drives the first plug 78 to move up and down to the specified position under the rotational force of the ball nut 79. The first plug 78 drives the cutting unit 8 to move to the front side position inside the mold shell 61. The second electric telescopic rod 87 extends to drive the second plug 86 to move backward inside the second slot seat 85, so that the second plug 86 inserts the cutter 88 into the compound glue inside the mold shell 61. The rotating motor 82 drives the rotating seat 83 to drive the mounting seat 84 to rotate downward, so as to lift the compound glue from the inner cavity of the mold shell 61 to the front side after cooperation of the second slot seat 85, the second plug 86 and the cutter 88, and then peel off the compound glue from the mold shell 61 through the downward movement of the first plug 78 and drop it into the material trolley 57 for collection.
[0026] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An online reaction system for a compound gum of carrageenan and konjac gum, characterized in that, Comprising: Console (1); Storage tank (2), arranged at the outer rear side of the console (1); Preparation mechanism (3), arranged at the outer right side of the console (1), and the preparation mechanism (3) can make carrageenan and konjac gum raw materials into a solution and mix them into a compound gum solution; Forming mechanism (5), arranged at the outer right side of the preparation mechanism (3), and the forming mechanism (5) can cool the compound gum solution into a formed solid product; Refrigerant storage tank (9), arranged at the outer right rear side of the forming mechanism (5); First pump body (10), arranged at the outer rear side of the forming mechanism (5), the first pump body (10) is connected to the refrigerant storage tank (9) through a pipeline, and the first pump body (10) is electrically connected to the console (1); Refrigerator (11), arranged at the outer rear side of the first pump body (10), the refrigerator (11) is connected to the first pump body (10) through a pipeline, and the refrigerator (11) is electrically connected to the console (1); Heat exchanger (12), arranged at the outer upper side of the refrigerator (11), the heat exchanger (12) is connected to the first pump body (10) through a pipeline, and the heat exchanger (12) is electrically connected to the console (1).
2. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 1, wherein: The preparation mechanism (3) includes: Box body shell (31), arranged at the outer right side of the console (1) along the left - right direction; Second pump body (32), installed on the outer left side of the box body shell (31) through a bracket, the second pump body (32) is connected to the storage tank (2) through a pipeline, and the second pump body (32) is electrically connected to the console (1); Partition plates (33), the number of the partition plates (33) is two, the two partition plates (33) are respectively installed on the left and right sides of the middle part of the inner cavity of the box body shell (31), and the two partition plates (33) divide the inner cavity of the box body shell (31) into three compartments: left, middle, and right; Drainage pipelines (34), the number of the drainage pipelines (34) is two groups, the number of each group of drainage pipelines (34) is two, and the two groups of drainage pipelines (34) are respectively embedded in the front and rear sides of the tops of the left and right partition plates (33); Liquid inlet pipeline (35), installed on the top of the front side of the outer wall of the box body shell (31), the liquid inlet of the liquid inlet pipeline (35) is connected to the second pump body (32), and the left and right liquid outlets of the liquid inlet pipeline (35) respectively extend into the top of the front side of the inner cavity of the box body shell (31), and are located above the front sides of the left and right compartments inside the box body shell (31); Third pump body (36), arranged at the outer front side of the box body shell (31), the liquid inlet pipe of the third pump body (36) extends into the bottom of the front side of the inner cavity of the box body shell (31), and is located below the front side of the middle compartment inside the box body shell (31), and the third pump body (36) is electrically connected to the console (1); The first motor (37) is installed on the top of the box housing (31). The rotating end of the first motor (37) extends into the inner cavity above the box housing (31) and is located at the top of the middle compartment inside the box housing (31). The first motor (37) is electrically connected to the control console (1). The first stirring rod (38) is fixedly installed at the bottom of the rotating end of the first motor (37).
3. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 2, wherein: The preparation mechanism (3) further includes: Lift machines (39). The number of the lift machines (39) is two. The two lift machines (39) are respectively installed in the inner cavity of the box housing (31) and are located at the bottoms of the left and right compartments inside the box housing (31). The lift machines (39) are electrically connected to the control console (1). Bottom plates (310). The number of the bottom plates (310) is two. The two bottom plates (310) are respectively installed at the top of the lifting ends of the two lift machines (39). Liquid level sensors (311). The number of the liquid level sensors (311) is three. The three liquid level sensors (311) are respectively embedded in the top of the box housing (31) and are located above the left, middle and right compartments inside the box housing (31). The liquid level sensors (311) are electrically connected to the control console (1). Feeding pipes (312). The number of the feeding pipes (312) is two. The two feeding pipes (312) are respectively installed at the top openings of the box housing (31) and are located at the upper rear sides of the left and right compartments inside the box housing (31). Conveyors (313). The number of the conveyors (313) is two. The two conveyors (313) are respectively installed on the left and right sides at the top rear of the outer wall of the box housing (31) through brackets. The discharge ports of the left and right conveyors (313) extend above the inner cavities of the left and right feeding pipes (312). The conveyors (313) are electrically connected to the control console (1). Discharging machines (314). The number of the discharging machines (314) is two. The two discharging machines (314) are arranged above the feeding ports of the left and right conveyors (313). The discharging machines (314) are electrically connected to the control console (1). Jack holes (315). The number of the jack holes (315) is two. The two jack holes (315) are respectively opened at the top of the box housing (31) and are located in the middle above the left and right compartments inside the box housing (31). Cooperating stirring components (4). The number of the cooperating stirring components (4) is two. The two cooperating stirring components (4) are respectively arranged at the top of the box housing (31) and are located above the left and right jack holes (315).
4. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 3, wherein: The cooperating stirring component (4) includes: A guide rail frame (41) installed along the vertical direction at the rear side of the top of the outer wall of the box housing (31). A roller seat (42) clamped inside the guide rail frame (41). A mounting frame (43) installed at the rear side of the roller seat (42). The second motor (44) is arranged at the inner top of the mounting frame (43), and the second motor (44) is electrically connected to the console (1); The second stirring rod (45) is inserted into the inner cavity of the jack (315), and the top end of the second stirring rod (45) is connected to the rotating end of the second motor (44); The lead screw assemblies (46), the number of the lead screw assemblies (46) is two, and the two lead screw assemblies (46) are respectively rotatably connected to the left and right sides of the inner bottom end of the guide rail frame (41) through bearings, and the outer sides of the lead screw nuts of the two lead screw assemblies (46) are connected to the inner side of the roller seat (42); The driven sprockets (47), the number of the driven sprockets (47) is two, and the two driven sprockets (47) are respectively installed at the bottom ends of the lead screw shafts of the left and right lead screw assemblies (46); The sprocket seat (48) is installed at the front side of the inner bottom end of the guide rail frame (41); The third motor (49) is arranged above the sprocket seat (48), the rotating end of the third motor (49) is connected to the sprocket axis of the sprocket seat (48), and the third motor (49) is electrically connected to the console (1); The drive chain (410) is meshed and connected to the outer sides of the sprockets of the left and right driven sprockets (47) and the sprocket seat (48).
5. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 4, wherein: The shaping mechanism (5) includes: The base frame (51) is installed on the outer right side of the box shell (31) along the front-back direction; The top frame (52) is installed on the top of the base frame (51) along the front-back direction; The first diverter (53) is arranged at the front end inside the top frame (52), the first diverter (53) is connected to the liquid outlet pipe of the third pump body (36), and the first diverter (53) is electrically connected to the console (1); The second diverter (54) is arranged at the rear end inside the top frame (52), the second diverter (54) is connected to the refrigerator (11) through a pipeline, and the second diverter (54) is electrically connected to the console (1); The tank frames (55), the number of the tank frames (55) is two, and the two tank frames (55) are respectively installed on the left and right ends inside the roller seat (42) along the front-back direction; The die components (6), the number of the die components (6) is several, and the several die components (6) are arranged at intervals along the front-back direction inside the left and right tank frames (55); The unloading component (7) is installed above the top frame (52); The hopper (56) is arranged at the inner bottom of the top frame (52) along the front-back direction; The material cart (57) is detachably placed inside the base frame (51) and below the hopper (56).
6. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 5, characterized in that: The die component (6) includes: The die shell (61) is fixedly installed inside the left and right tank frames (55), and the die shell (61) is connected to the first diverter (53) through a flexible pipeline; The pressure relief valve (62) is arranged outside the opening at the top inner cavity of the die shell (61), and the pressure relief valve (62) is electrically connected to the console (1); The first electric telescopic rod (63), the number of the first electric telescopic rods (63) is two, and the two first electric telescopic rods (63) are respectively installed in the inner cavities of the left and right trough frames (55), and the first electric telescopic rod (63) is electrically connected to the control console (1); The heat-conducting shell (64) is arranged inside the telescopic ends of the left and right first electric telescopic rods (63); The heat-conducting pipe (65) is arranged in the inner cavity of the heat-conducting shell (64), and the heat-conducting pipe (65) is connected to the second diverter (54) through a flexible pipeline.
7. The online reaction system for the compound gum of carrageenan and konjac gum according to claim 6, characterized in that: The discharging component (7) includes: The mounting frame (71) is mounted on the top of the top frame (52) in the front-rear direction; The limiting components (72), the number of the limiting components (72) is two, and the two limiting components (72) are respectively mounted on the left and right sides of the top of the mounting frame (71) in the front-rear direction; The racks (73), the number of the racks (73) is two, and the two racks (73) are respectively mounted on the top of the mounting frame (71) in the front-rear direction and are located inside the left and right limiting components (72); The top plate (74) is arranged on the top of the limiting ends of the left and right limiting components (72); The double-end motor (75) is mounted on the front side of the top of the top plate (74), and the double-end motor (75) is electrically connected to the control console (1); The gears (76), the number of the gears (76) is two, and the two gears (76) are respectively mounted on the left and right sides of the rotating end of the double-end motor (75) and are respectively meshed with the left and right racks (73); The first socket seats (77), the number of the first socket seats (77) is two, and the two first socket seats (77) are respectively embedded in the left and right sides of the top end of the top plate (74); The first plug racks (78) are inserted in the inner sides of the left and right first socket seats (77) in the up-down direction; The cutting unit (8) is arranged at the bottom ends of the left and right first plug racks (78); The ball nut (79) is rotatably connected through a bearing inside the circular groove opened on the top plate (74); The ball screw (710) is screwed inside the ball nut (79), and the top of the ball screw (710) is rotatably connected to the inner top of the first plug rack (78) through a bearing; The fourth motor (711) is mounted on the rear side of the top of the top plate (74), and the fourth motor (711) is electrically connected to the control console (1); The transmission belt assembly (712), one end of which is key-connected to the outside of the ball nut (79), and the other end pulley of the transmission belt assembly (712) is mounted on the bottom of the rotating end of the fourth motor (711).
8. An online reaction system for a compound gum of carrageenan and konjac gum according to claim 7, characterized in that: The cutting unit (8) includes: The mounting plate (81) is mounted on the bottom of the first plug rack (78) in the left-right direction, and the top end of the mounting plate (81) is rotatably connected to the bottom end of the ball screw (710) through a bearing; Rotate the motors (82). There are two such motors (82), and the two motors (82) are respectively installed on the left and right sides of the bottom end of the mounting plate (81). The motors (82) are electrically connected to the console (1). Rotating seats (83). There are two such rotating seats (83), and the two rotating seats (83) are respectively installed outside the rotating ends of the left and right motors (82). Mounting seats (84). There are two such mounting seats (84), and the two mounting seats (84) are respectively installed at the bottoms of the left and right rotating seats (83). Second slot seats (85). There are two such second slot seats (85), and the two second slot seats (85) are respectively installed at the rear sides of the bottoms of the left and right mounting seats (84). Second plug racks (86), which are inserted inside the left and right second slot seats (85). Second electric telescopic rods (87). There are two such second electric telescopic rods (87), and the two second electric telescopic rods (87) are respectively installed at the front sides of the bottoms of the left and right mounting seats (84). The telescopic ends of the left and right second electric telescopic rods (87) are respectively connected to the front ends of the left and right sides of the second plug rack (86). The second electric telescopic rods (87) are electrically connected to the console (1). Cutting tools (88), which are installed at the rear side of the second plug rack (86) in the left - right direction.