Production line for processing aquatic small peptide products
By designing a production line for processing aquatic small peptide products, the problem of lacking a complete production line in traditional processing has been solved, realizing efficient crushing, mixing, cooling, dehumidification and packaging of raw materials, and improving production efficiency.
Patent Information
- Application Number
- CN202422144238.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2034-09-02
AI Technical Summary
Traditional small peptide product processing lacks complete production lines, resulting in low work efficiency and production efficiency.
A production line for processing aquatic small peptide products has been designed, including a crushing and stirring component, a processing and cooling component, a cold air dehumidification component, a weighing component, a sealing component, and a conveying component. Through the coordinated work of these components, the crushing, stirring, cooling, dehumidification, weighing, and packaging of raw materials are realized, forming a complete production process.
This improved the efficiency of aquatic peptide product processing, enabling efficient crushing, mixing, cooling, dehumidification, and packaging of raw materials, thus forming a highly efficient production line.
Smart Images

Figure CN223788421U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to aquatic small peptide product processing technical field, specifically a kind of aquatic small peptide product processing production line. BACKGROUND
[0002] "Aquatic small peptide product" generally refers to high-quality small molecular protein from aquatic products. Aquatic products include fish, shellfish, shrimp, crab, etc., which are rich in protein, and the amino acid pattern is similar to that of the human body, easy to be digested and absorbed by the human body.
[0003] Traditional small peptide product processing is to crush, stir, cool, dehumidify, package and transport the raw materials, which requires operating the equipment step by step, grading processing, and cannot form a complete production line, so the work efficiency and production efficiency cannot be improved. Therefore, we provide a kind of aquatic small peptide product processing production line, which crushes and stirs the raw materials through the crushing and stirring assembly, mixes them fully, directly transports them to the processing cooling assembly, cools the crushed and stirred raw materials through the processing cooling assembly, and directly removes the moisture in the cold air through the cold air dehumidifying assembly. Secondly, the processing cooling assembly weighs and stores the cooled materials in the weighing assembly, and seals the bag through the sealing assembly. Through the transmission assembly, the complete production line is formed, which can effectively improve the work efficiency and solve the above problems. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims to provide a kind of aquatic small peptide product processing production line to solve the problems raised in the background art.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0006] A kind of aquatic small peptide product processing production line, including crushing and stirring assembly;The crushing and stirring assembly is connected with processing cooling assembly, the processing cooling assembly is respectively connected with cold air dehumidifying assembly and weighing assembly, and weighing assembly side is provided with sealing assembly, and sealing assembly side is provided with transmission assembly;The crushing and stirring assembly includes crushing box, two crushing rollers are arranged in the inside of the crushing box, and the two crushing rollers are connected with the bearing with seat mounted on the inner wall of the crushing box, and the two crushing rollers are connected with gear at one end;Two gears are meshed and connected, and one of the gears is connected with the driving shaft of the crushing motor, and the crushing motor is fixed on the crushing box by bolts;Rectangular port is welded on the side of the crushing box away from the crushing motor, and the bottom of the crushing box is open, and the stirring box is welded.
[0007] As a further technical scheme of the utility model, the inside of the stirring box is provided with multiple stirring paddles, and the multiple stirring paddles are arranged in a ring along the central axis of the stirring shaft, the stirring shaft is connected with the bearing with seat installed on the inner wall of the stirring box, the bottom of the stirring box is provided with a connecting port, the other end of the connecting port is connected with the discharge pipe, the discharge pipe is provided with the discharge roller, the stirring shaft is provided with the first pulley, the first pulley is connected with the second pulley installed on the discharge roller through the first belt, the second pulley is further connected with the third pulley installed on the driving shaft of the total motor through the second belt, the total motor is fixed on the stirring box support through bolts, the stirring box support is fixed on the stirring box through bolts, and one end of the discharge pipe is connected with the processing and cooling assembly.
[0008] As a further technical scheme of the utility model, the processing and cooling assembly comprises a conveying pipe, the conveying pipe is connected with the discharge pipe, the other end of the conveying pipe is connected with the feeding pipe, the feeding pipe is open on one side, and the feeding pipe is welded with the cooling box, the inside of the feeding pipe is provided with the feeding roller, the two ends of the feeding roller are connected with the bearings installed on the inner wall of the feeding pipe and the cooling box, one end of the feeding roller is connected with the output shaft of the speed reducer, the speed reducer is connected with the feeding motor, the feeding motor and the speed reducer are fixed on the feeding pipe through bolts, the top of the cooling box is connected with the cold air inlet pipe, and the cold air inlet pipe is connected with the cold air dehumidification assembly.
[0009] As a further technical scheme of the utility model, the bottom of the cooling box is provided with an opening for bolt connection of the discharging hopper, the discharging hopper is provided with a rectangular opening on one side, and the discharging hopper is embedded with a mesh plate, the outer side of the mesh plate is sleeved with a blowing cover, the blowing cover is connected with the air supply pipe, the other end of the air supply pipe is connected with the fan, the discharging hopper is fixed with the vibration motor through bolts, the bottom of the discharging hopper is connected with the spiral discharging machine, the spiral discharging machine is connected with the weighing assembly, and the feeding pipe and the cooling box are fixed on the cooling rack through bolts.
[0010] As a further technical scheme of the utility model, the cold air dehumidification assembly comprises a cold air conveying pipe, the cold air conveying pipe is connected with the cold air inlet pipe, the other end of the cold air conveying pipe is connected with the output end of the booster fan, the input end of the booster fan is connected with the cold air outlet pipe, the cold air outlet pipe is connected with the water-gas separation tank, the inside of the water-gas separation tank is welded with a partition plate, the two sides of the partition plate are fixed with the water capturing net through bolts, the water capturing net and the cold air conveying pipe are arranged above the water capturing net on the two sides, the cold air conveying pipe is connected with the water-gas separation tank, and the other end of the cold air conveying pipe is connected with the cold air machine.
[0011] As a further technical scheme of the utility model, the water gas separation tank top is matched with a booster pipe, the booster pipe is located on one side of the baffle close to the cold gas conveying pipe, and the other side of the booster pipe is matched with a booster pump; the water gas separation tank inside is fixed with a liquid level monitor through bolts, the liquid level monitor is located below the baffle, and the liquid level monitor is electrically connected with a solenoid valve; the solenoid valve is matched and connected on a sewer pipe, and the sewer pipe is matched and installed on the bottom of the water gas separation tank; the water gas separation tank is fixed on a tank body support frame through bolts, and the tank body support frame is fixed on the ground through bolts.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The utility model discloses, the raw material is broken and mixes fully in the smashing and stirring assembly, directly transports to the processing cooling assembly, and the raw material of smashing and stirring is cooled through the processing cooling assembly, and the moisture in the cold gas is removed directly through the cold gas dehumidification assembly, and then, the cooled material is weighed and accomodated to the weighing assembly through the processing cooling assembly and is sealed through the sealing assembly, and is completed conveying through the transmission assembly, forms the complete production line, can effectively improve work efficiency, the raw material enters the smashing box through the feeding plate, and the driving shaft of the smashing motor drives the rotation of the connected gear, and under the meshing connection of two gears, two smashing rollers smash the raw material and enter the stirring box below, and the driving shaft of the general motor drives the rotation of the connected third pulley, and under the cooperation of the second belt and the first belt, the second pulley and the first pulley rotate in turn, so as to drive the rotation of the stirring shaft and stirring paddle and provide power for the rotation of the discharging roller, and the material in the stirring box is mixed and stirred through the connecting port into the discharge pipe, so that the material is continuously pushed out by the discharging roller, and enters the feeding pipe through the feeding pipe.
[0014] The utility model discloses, the feeding motor is matched with the reduction gear and drives the rotation of the feeding roller, so as to push the material into the feeding pipe, after entering the cooling box, the fan below blows the cooling box through the air supply pipe and the blow cover, so as to blow the material into the cooling box, the cold gas enters the cooling box through the cold gas inlet pipe, and the blown material collides with the cold gas and is cooled, and after cooling, falls into the drop hopper, the mesh plate plays the blocking effect, the vibration motor vibrates, speeds up the discharge and enters the spiral discharging machine, and the spiral discharging machine continues to push the material into the weighing assembly in the packaging bag, and completes the weighing.
[0015] The utility model discloses, cold air needs to remove moisture before entering cold air into pipe, prevents moisture from entering and influences product, the cold air produced by air conditioner enters water gas separation jar through cold air delivery pipe, and the baffle of inside creates passageway for gas flow, and the pressure pump enters water gas separation jar through the pressure pipe through the pressure produced, thereby blowing the cold air of entering must pass through two moisture capture net, guarantees the effect of removing moisture, and the moisture of filtration will be accumulated in the inside of water gas separation jar, when liquid level is higher, liquid level monitor monitors, opens solenoid valve, and the water of accumulation is discharged through the sewer, and the booster fan of one side can play the role of extracting cold air, and the conduction of cold air is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.
[0017] Figure 2 It is the three-dimensional structure schematic diagram of the utility model's smashing stirring subassembly.
[0018] Figure 3 It is the left view of the utility model. Figure 2
[0019] Figure 4 It is the A-A section view of the utility model. Figure 3
[0020] Figure 5 It is the three-dimensional structure schematic diagram of the utility model's processing cooling subassembly.
[0021] Figure 6 It is the left view of the utility model. Figure 5
[0022] Figure 7 It is the B-B section view of the utility model. Figure 6
[0023] Figure 8 It is the three-dimensional structure schematic diagram of the utility model's cold air dehumidification subassembly.
[0024] Figure 9 It is the left view of the utility model. Figure 8
[0025] Figure 10 It is the C-C section view of the utility model. Figure 9
[0026] In the figure: 1-pulverizing stirring assembly, 2-processing cooling assembly, 3-cold air dehumidification assembly, 4-weighing assembly, 5-sealing assembly, 6-transporting assembly, 101-stirring box support, 102-pulverizing box, 103-gear, 104-pulverizing motor, 105-pulverizing roller, 106-feeding plate, 107-stirring box, 108-discharge pipe, 109-stirring shaft, 110-stirring paddle, 111-connection port, 112-first pulley, 113-first belt, 114-second pulley, 115-second belt, 116-third pulley, 117-general motor, 118-discharge screw roller, 201-feeding pipe, 202-feeding pipe, 203-reducer, 204-feeding motor, 205-feeding screw roller, 206-cooling box, 207-cold air inlet pipe, 208-discharge hopper, 209-spiral discharge machine, 210-mesh plate, 211-blowing cover, 212-air supply pipe, 213-vibration motor, 214-cooling rack, 301-cold air transmission pipe, 302-air compressor, 303-cold air output pipe, 304-water-gas separation tank, 305-pressurizing pipe, 306-cold air conveying pipe, 307-tank body support frame, 308-drain pipe, 309-solenoid valve, 310-baffle, 311-moisture capturing net, 312-liquid level monitor. DETAILED DESCRIPTION
[0027] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0028] Please refer to Figures 1-10The utility model discloses an aquatic small peptide product processing production line, including the smashing stirring subassembly 1, the smashing stirring subassembly 1 cooperation and connection have processing cooling subassembly 2, this processing cooling subassembly 2 respectively cooperation and connection have cold gas dehumidification subassembly 3 and weighing assembly 4, and weighing assembly 4 one side is provided with sealing assembly 5, second, sealing assembly 5 one side is provided with transmission assembly 6, the smashing stirring subassembly 1 including the smashing box 102, the smashing box 102 inside is provided with two smashing rollers 105, and two smashing rollers 105 are connected with the bearing with seat that installs on the inner wall of smashing box 102 cooperation, second, two smashing rollers 105 one end cooperation and connection have gear 103, two the gear 103 meshing connection is connected, and one of gear 103 is connected with the drive shaft of smashing motor 104 cooperation, this smashing motor 104 is fixed on the smashing box 102 through bolt, the smashing box 102 is provided with the rectangular mouth of welding of facilitating inlet plate 106 on the side away from smashing motor 104, and the bottom of smashing box 102 is open, and cooperation is welded in stirring box 107.
[0029] Further, the stirring box 107 inside is provided with a plurality of stirring paddles 110, and a plurality of stirring paddles 110 are arranged along the central axis of the stirring shaft 109 in a ring array, the stirring shaft 109 is connected with the bearing with seat installed on the inner wall of the stirring box 107; The bottom of the stirring box 107 is provided with a connecting port 111, and the other end of the connecting port 111 is connected with the discharge pipe 108, and the discharge pipe 108 is connected with the discharge roller 118; The stirring shaft 109 is connected with the first pulley 112, and the first pulley 112 is connected with the second pulley 114 installed on the discharge roller 118 through the first belt 113, and the second pulley 114 is further connected with the third pulley 116 installed on the drive shaft of the total motor 117 through the second belt 115; The total motor 117 is fixed on the stirring box support 101 by bolts, and the stirring box support 101 is fixed on the stirring box 107 by bolts; One end of the discharge pipe 108 is connected with the processing cooling assembly 2.
[0030] Through the above technical scheme, the crushing and stirring assembly 1 crushes and stirs the raw materials, fully mixes them, directly delivers them to the processing and cooling assembly 2, cools the crushed and stirred raw materials through the processing and cooling assembly 2, and directly removes the water in the cold air through the cold air dehumidification assembly 3. Secondly, the processing and cooling assembly 3 weighs and stores the cooled materials through the weighing assembly 4, seals the bags through the sealing assembly 5, and completes the delivery through the conveying assembly 6, forming a complete production line, which can effectively improve the work efficiency. The raw materials enter the crushing box 102 through the feeding plate 106, the driving shaft of the crushing motor 104 drives the connected gear 103 to rotate, the two crushing rollers 105 crush the raw materials under the meshing connection of the two gears 103, and the crushed raw materials enter the stirring box 107 below. The driving shaft of the total motor 117 drives the connected third pulley 116 to rotate, the second pulley 114 and the first pulley 112 are sequentially rotated under the cooperation of the second belt 115 and the first belt 113, thereby providing power for the rotation of the stirring shaft 109, the stirring paddle 110, the discharge roller 118, and the like. The mixed materials in the stirring box 107 enter the discharge pipe 108 through the connecting port 111, are continuously pushed out of the discharge pipe 108 by the discharge roller 118, and enter the feeding pipe 201.
[0031] In the embodiment, the processing and cooling assembly 2 comprises a feeding pipe 201 which is connected with the discharge pipe 108, and the other end of the feeding pipe 201 is connected with a feeding pipe 202. The feeding pipe 202 is open on one side and is welded with a cooling box 206. The inside of the feeding pipe 202 is provided with a feeding roller 205 which is connected with seat bearings installed on the inner walls of the feeding pipe 202 and the cooling box 206 at both ends, and one end of the feeding roller 205 is connected with an output shaft of a speed reducer 203. The speed reducer 203 is connected with a feeding motor 204, and the feeding motor 204 and the speed reducer 203 are fixed on the feeding pipe 202 by bolts. The top of the cooling box 206 is connected with a cold air inlet pipe 207 which is connected with the cold air dehumidification assembly 3.
[0032] Further, the bottom of the cooling box 206 is provided with an opening for bolt connection of a discharging hopper 208. The discharging hopper 208 is provided with a rectangular opening on one side, and a mesh plate 210 is embedded on the discharging hopper 208. The outside of the mesh plate 210 is sleeved with a blowing cover 211. The blowing cover 211 is connected with a air supply pipe 212 at the other end of which a fan is connected. The discharging hopper 208 is fixed with a vibration motor 213 by bolts, and the bottom of the discharging hopper 208 is connected with a spiral discharging machine 209 which is connected with the weighing assembly 4. The feeding pipe 202 and the cooling box 206 are fixed on a cooling rack 214 by bolts.
[0033] By adopting the above technical scheme, the feeding motor 204 drives the connected feeding roller 205 to rotate in cooperation with the speed reducer 203, so as to push the material into the feeding pipe 202. After entering the cooling box 206, the fan below blows air to the cooling box 206 through the air supply pipe 212 and the air blowing cover 211, so as to blow up the material entering the cooling box 206. The cold air enters the cooling box 206 through the cold air inlet pipe 207, and the blown-up material collides with the cold air to complete cooling. After cooling, the material falls into the material hopper 208. The mesh plate 210 plays a blocking role, the vibration motor 213 vibrates to accelerate the discharge and enter the spiral discharging machine 209. The spiral discharging machine 209 continues to push the material into the packaging bag in the weighing assembly 4 to complete the weighing.
[0034] In the embodiment, the cold air dehumidification assembly 3 comprises a cold air transmission pipe 301 which is connected with the cold air inlet pipe 207, and the other end of the cold air transmission pipe 301 is connected with the output end of the booster fan 302. In addition, the input end of the booster fan 302 is connected with the cold air output pipe 303. The cold air output pipe 303 is connected with the water-air separation tank 304. The water-air separation tank 304 is welded with a partition plate 310 on the inner side, and the two sides of the partition plate 310 are fixed with water capturing nets 311 by bolts. In addition, the water capturing nets 311 and the cold air conveying pipe 306 are arranged above the water capturing nets 311 on the two sides respectively. The cold air conveying pipe 306 is connected with the water-air separation tank 304, and the other end of the cold air conveying pipe 306 is connected with the cold air machine.
[0035] Further, the water-air separation tank 304 is connected with the booster pipe 305 on the top, and the booster pipe 305 is located on the side of the partition plate 310 close to the cold air conveying pipe 306. In addition, the other side of the booster pipe 305 is connected with the booster pump. The water-air separation tank 304 is fixed with a liquid level monitor 312 on the inner side by bolts, and the liquid level monitor 312 is located below the partition plate 310. In addition, the liquid level monitor 312 is connected with the electromagnetic valve 309 by electricity. The electromagnetic valve 309 is connected with the drain pipe 308, and the drain pipe 308 is installed at the bottom of the water-air separation tank 304. The water-air separation tank 304 is fixed on the tank body support frame 307 by bolts, and the tank body support frame 307 is fixed on the ground by bolts.
[0036] By adopting the above technical scheme, the cold air needs to remove moisture before entering the cold air inlet pipe 207 to prevent moisture from entering and affecting the product. The cold air generated by the air conditioner enters the water-air separation tank 304 through the cold air conveying pipe 306. The inner partition plate 310 creates a channel for gas flow. The booster pump enters the water-air separation tank 304 through the booster pipe 305 by generating pressure, thereby blowing the incoming cold air to pass through two moisture capture nets 311 to ensure the effect of removing moisture. The filtered moisture will accumulate inside the water-air separation tank 304. When the liquid level is high, the liquid level monitor 312 monitors and opens the electromagnetic valve 309 to discharge the accumulated water through the drain pipe 308. The booster fan 302 on one side can play a role in extracting cold air, facilitating the conduction of cold air.
[0037] The working principle of the utility model is: the raw material is crushed and stirred by the crushing and stirring assembly 1, is mixed fully, is directly conveyed to the processing and cooling assembly 2, is cooled by the processing and cooling assembly 2 to the crushed and stirred raw material, and the moisture in the cold air is directly removed by the cold air dehumidification assembly 3, secondly, the processing and cooling assembly 3 weighs and stores the cooled material to the weighing assembly 4, and seals the bag by the sealing assembly 5, completes the conveying by the transmission assembly 6, forms the complete production line, can effectively improve the work efficiency; the raw material enters the crushing box 102 through the feeding plate 106, the driving shaft of the crushing motor 104 drives the connected gear 103 to rotate, under the meshing connection of two gears 103, two crushing rollers 105 crush the raw material, and enter the stirring box 107 below, the driving shaft of the total motor 117 drives the connected third pulley 116 to rotate, under the cooperation of the second belt 115 and the first belt 113, the second pulley 114 and the first pulley 112 rotate in turn, thereby driving the stirring shaft 109 to drive the stirring paddle 110 to rotate and stirring and providing power for the discharge roller 118 to rotate and push material, the material mixed in the stirring box 107 is connected to the discharge pipe 108 through the connecting port 111, thereby being continuously pushed out of the discharge roller 118 and entering the feeding pipe 201 through the feeding pipe 201; the feeding motor 204 cooperates with the speed reducer 203 to drive the connected feeding roller 205 to rotate, thereby pushing the material entering the feeding pipe 202, after entering the cooling box 206, the fan below blows air to the cooling box 206 through the air supply pipe 212 and the air blowing cover 211, thereby blowing up the material entering the cooling box 206, the cold air enters the cooling box 206 through the cold air inlet pipe 207, the blown-up material collides with the cold air to complete cooling, after cooling, falls into the discharge hopper 208, the mesh plate 210 plays a blocking role, the vibration motor 213 vibrates, speeds up the discharge and enters the spiral discharge machine 209, the spiral discharge machine 209 continues to push the material in the weighing assembly 4 into the packaging bag, completes the weighing; the cold air needs to remove the moisture before entering the cold air inlet pipe 207, prevents the moisture from entering to affect the product, the cold air generated by the air conditioner enters the water-gas separation tank 304 through the cold air conveying pipe 306, the inside partition plate 310 creates a channel for gas flow, the booster pump enters the water-gas separation tank 304 through the booster pipe 305 by the generated pressure, thereby blowing the entering cold air to pass through two moisture capture nets 311, guarantees the effect of removing moisture, the filtered moisture is stored inside the water-gas separation tank 304, when the liquid level is high, the liquid level monitor 312 monitors, opens the electromagnetic valve 309, and the stored water is discharged through the drain pipe 308, the booster fan 302 on one side can play the role of extracting the cold air, facilitates the conduction of the cold air.
[0038] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but that it can be implemented in other concrete forms without departing from the spirit or the essential characteristics of the present application. Therefore, the embodiments should be considered as exemplary and non-limiting, the scope of the present application being defined by the claims appended hereto rather than by the above description, and all the changes which fall within the meaning and the scope of the equivalent elements of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0039] Furthermore, it should be understood that although the present specification is described in terms of embodiments, not every embodiment according to the present specification needs to exhibit each and every characteristic specified in the present specification. The specification can also be described in terms of a single preferred embodiment, it being understood that this single preferred embodiment can exhibit not every aspect or feature of the present specification. The specification can also be described in terms of a generic statement that the disclosure can include one, some, or all of a list of features. It is further understood that the specification is to be considered as a whole and not with reference to a single feature or design element alone.
Claims
1. A production line for processing aquatic small peptide products, characterized in that: Including the comminution stirring assembly (1), the comminution stirring assembly (1) is connected with the processing cooling assembly (2), the processing cooling assembly (2) is connected with the cold gas dehumidification assembly (3) and the weighing assembly (4) respectively, and the weighing assembly (4) side is provided with the sealing assembly (5), second, the sealing assembly (5) side is provided with the transmission assembly (6);The comminution stirring assembly (1) includes the comminution box (102), the comminution box (102) inside is provided with two comminution rollers (105), and two comminution rollers (105) are connected with the bearing with seat installed on the inner wall of comminution box (102), second, two comminution rollers (105) one end is connected with gear (103);Two the gear (103) is engagedly connected, and one of the gear (103) is connected with the drive shaft of comminution motor (104), the comminution motor (104) is bolted on the comminution box (102);The comminution box (102) is provided with the rectangular mouth of the feeding plate (106) welding on the side away from the comminution motor (104), and the comminution box (102) bottom is open, and the stirring box (107) is welded.
2. The production line for processing aquatic small peptide product according to claim 1, characterized in that: The stirring box (107) inside is provided with a plurality of stirring paddles (110), and a plurality of stirring paddles (110) are arranged along the central axis of stirring shaft (109) annular array, the stirring shaft (109) is connected with the bearing with seat installed on the inner wall of stirring box (107);The stirring box (107) bottom is provided with the connecting port (111), the other end of the connecting port (111) is connected with the discharge pipe (108), and the discharge pipe (108) is connected with the discharge roller (118);The stirring shaft (109) is connected with the first pulley (112), and the first pulley (112) is connected with the second pulley (114) installed on the discharge roller (118) through the first belt (113), second, the second pulley (114) is also connected with the third pulley (116) installed on the drive shaft of total motor (117) through the second belt (115);The total motor (117) is bolted on the stirring box support (101), and the stirring box support (101) is bolted on the stirring box (107);The discharge pipe (108) one end is connected with the processing cooling assembly (2).
3. The production line for processing aquatic small peptide product according to claim 1, characterized in that: The processing cooling assembly (2) comprises a feeding pipe (201) which is connected with the discharge pipe (108) and the other end of which is connected with the feeding pipe (202), the feeding pipe (202) is open on one side and is welded with the cooling box (206), the feeding pipe (202) is internally provided with a feeding roller (205) which is connected with the bearing seat installed on the inner wall of the feeding pipe (202) and the cooling box (206) and the output shaft of the speed reducer (203) on one end, the speed reducer (203) is connected with the feeding motor (204) and is fixed on the feeding pipe (202) by bolts, the cooling box (206) is connected with the cold air inlet pipe (207) on the top, and the cold air inlet pipe (207) is connected with the cold air dehumidification assembly (3).
4. The production line for processing aquatic small peptide product according to claim 3, characterized in that: The bottom of the cooling box (206) is provided with an opening for bolt connection of the discharging hopper (208), the discharging hopper (208) is provided with a rectangular opening on one side, the discharging hopper (208) is embedded with a mesh plate (210), the outer side of the mesh plate (210) is sleeved with a blowing cover (211), the blowing cover (211) is connected with the air supply pipe (212), the other end of the air supply pipe (212) is connected with the fan, the discharging hopper (208) is fixed with the vibration motor (213) by bolts, the bottom of the discharging hopper (208) is connected with the spiral discharging machine (209), the spiral discharging machine (209) is connected with the weighing assembly (4), and the feeding pipe (202) and the cooling box (206) are fixed on the cooling rack (214) by bolts.
5. The production line for processing aquatic small peptide product according to claim 1, characterized in that: The cold air dehumidification assembly (3) comprises a cold air transmission pipe (301) which is connected with the cold air inlet pipe (207) and the output end of the booster fan (302) on the other end, the input end of the booster fan (302) is connected with the cold air output pipe (303), the cold air output pipe (303) is connected with the water-gas separation tank (304), the water-gas separation tank (304) is internally welded with the partition plate (310), the water moisture capturing nets (311) are fixed on both sides of the partition plate (310) by bolts, the water moisture capturing nets (311) and the cold air conveying pipe (306) are arranged above the water moisture capturing nets (311) on both sides, the cold air conveying pipe (306) is connected with the water-gas separation tank (304), and the other end of the cold air conveying pipe (306) is connected with the cold air machine.
6. The production line for processing aquatic small peptide product according to claim 5, characterized in that: The water gas separation tank (304) top cooperation has the booster pipe (305), this booster pipe (305) is located the baffle (310) near the cold gas delivery pipe (306) one side, and the other side of booster pipe (305) and booster pump cooperation connects;The water gas separation tank (304) inside through bolt fixed has liquid level monitor (312), this liquid level monitor (312) is located the baffle (310) below, and liquid level monitor (312) passes through electrically connected solenoid valve (309);The solenoid valve (309) cooperation connects on the sewer pipe (308), this sewer pipe (308) cooperation installs in the water gas separation tank (304) bottom;The water gas separation tank (304) passes through bolt fixed in the tank body support frame (307), and the tank body support frame (307) passes through bolt fixed on the ground.