An energy-saving air dryer that preserves the flavor of seaweed.
By designing a laver air dryer that combines a feeding mechanism and a rotating mechanism, the problem of uneven drying was solved, achieving uniform drying and automatic cleaning of laver, thus improving the yield and practicality of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-03
- Publication Date
- 2026-03-13
AI Technical Summary
Existing seaweed drying machines suffer from uneven drying during the drying process, resulting in some seaweed becoming over-dried and breaking, while others remain undried, moldy, and spoiled, affecting flavor consistency and yield.
An energy-saving air dryer was designed, comprising a feeding mechanism, a rotating mechanism, a cleaning mechanism, an air-drying mechanism, and an impurity collection mechanism. The feeding mechanism and the rotating mechanism work together to achieve rotation of the seaweed filling tank and uniform hot air intake. Combined with the automatic cleaning function of the cleaning mechanism, uneven drying is avoided, and the impurity collection mechanism achieves automatic cleaning.
This method achieves uniform air drying of seaweed, avoids over-drying or under-drying, maintains consistent flavor, increases yield, and improves the efficiency and practicality of automated cleaning of the equipment.
Smart Images

Figure CN121242249B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of drying equipment technology, specifically to an energy-saving air dryer that preserves the flavor of seaweed. Background Technology
[0002] This energy-efficient seaweed dryer is designed to preserve the original flavor of seaweed. Equipped with an energy-saving air-source heat pump, it boasts low power consumption and high drying efficiency, quickly removing excess moisture from seaweed. Its compact size saves space, and it's easy to operate without complicated adjustments. Suitable for homes and small seafood processing workshops, it reduces energy consumption while maximizing the preservation of seaweed's natural flavor and nutrients, making it an efficient and energy-saving solution for seaweed processing.
[0003] In existing energy-saving air dryers that preserve the flavor of seaweed, the internal seaweed rack typically consists of a support frame and trays for layering the seaweed. Generally, when adding seaweed, the trays are removed from the support frame, the seaweed is placed in the trays, and the trays are then placed back onto the support frame one by one. Since the trays cannot be moved, even with a uniform airflow channel, the layered arrangement of the seaweed leads to uneven drying. This results in some seaweed becoming over-dried and cracking, while other seaweed becomes moldy and spoiled, affecting flavor consistency and reducing the yield. Summary of the Invention
[0004] To address the shortcomings of existing technologies, this invention provides an energy-saving air dryer that preserves the flavor of seaweed. This solves the problem that existing energy-saving air dryers for preserving seaweed flavor involve placing layers inside the device, which leads to uneven drying of the seaweed. This results in some seaweed becoming over-dried and cracking, while other seaweed becomes moldy and spoiled, affecting flavor consistency and product appearance, and reducing yield and market acceptance.
[0005] To achieve the above objectives, the present invention provides the following technical solution: an energy-saving air dryer that preserves the flavor of seaweed, comprising a base, an outer cylinder fixedly connected to the top of the base, a feeding mechanism inside the outer cylinder for convenient addition of seaweed, a cleaning mechanism outside the feeding mechanism for cleaning the inner wall of the outer cylinder, an air-blowing drying mechanism outside the outer cylinder for introducing hot air, an impurity collection mechanism outside the outer cylinder for collecting impurities, and a rotating mechanism inside the outer cylinder for driving the feeding mechanism to rotate.
[0006] Preferably, the feeding mechanism includes a sealing cover, one end of which is disposed at one end of the outer cylinder. Two support columns are fixedly connected to the outside of the sealing cover. A limiting plate is fixedly connected to the end of each support column away from the sealing cover. Two storage slots are formed inside the base. The limiting plate is slidably connected inside the storage slots. A movable wheel frame is fixedly connected between the two support columns. Two assembly frames are provided inside the outer cylinder. One end of one assembly frame is rotatably connected to the inside of the sealing cover. Multiple slots are formed inside the assembly frame. An intermediate frame is provided in the middle of the outer cylinder. Multiple sliding grooves are formed inside the intermediate frame. Multiple return springs are provided inside the intermediate frame. Two limiting circular plates are slidably connected inside the intermediate frame. A clamp is fixedly connected to the end of each limiting circular plate away from the return spring. Multiple connecting... The connecting rod has its two ends fixedly connected to one end of each of the two assembly frames. Multiple material containers are arranged between the assembly frames and the intermediate frame. One end of each material container is rotatably connected to a rotating connector. One end of the rotating connector is fixedly connected to a rotating cover. A fixing block is fixedly connected to the outside of the rotating cover. A push spring is installed inside the fixing block. A limit plate is slidably connected inside the push spring. A locking block is fixedly connected to the end of the limit plate away from the material container. A fixing seat is fixedly connected to the end of the material container away from the rotating cover. A locking groove is opened inside the fixing seat, and the locking groove engages with the locking head. The locking block engages with the locking groove. The two ends of the return spring are fixedly connected to one end of each of the two limit circular plates. The fixing seat is slidably connected inside the sliding groove. Multiple latches are fixedly connected between the sealing cover and the outside of the outer cylinder.
[0007] Preferably, the cleaning mechanism includes multiple connecting plates, with both ends of the connecting plates fixedly connected to the outside of two assembly frames. Multiple mounting cylinders are fixedly connected to the outside of the connecting plates. A retaining spring is provided inside the mounting cylinder. A sliding limit ring is slidably connected inside the mounting cylinder. A moving rod is fixedly connected to the middle of the sliding limit ring. Cleaning brushes are fixedly connected between the multiple moving rods. Both ends of the moving rods pass through both ends of the mounting cylinder. The retaining spring is sleeved on the outside of the moving rod.
[0008] Preferably, the air-drying mechanism includes a venting ring, the inner side of which is fixedly connected to one end of the outer cylinder, a jet pipe fixedly connected to one end of the venting ring, the outer side of which is fixedly connected to the outer cylinder, an air-source heat pump is provided on the outside of the base, an air outlet pipe is fixedly connected to the output end of the air-source heat pump, an automatic control valve is fixedly connected to the end of the air outlet pipe away from the air-source heat pump, the end of the automatic control valve away from the air outlet pipe is fixedly connected to the outside of the venting ring, and a water inlet valve is fixedly connected to the outside of the venting ring.
[0009] Preferably, the impurity collection mechanism includes a mounting box, with a fixed column fixedly connected inside the mounting box, a rotating fan blade rotatably connected to the outside of the fixed column, multiple fixed plates fixedly connected to the outside of the rotating fan blade, multiple pushing springs disposed inside the fixed plates, a limit strip slidably connected inside the fixed plates, a cleaning plate fixedly connected to the end of the limit strip away from the pushing springs, a stabilizing frame rotatably connected to the bottom of the fixed column, an air inlet pipe fixedly connected to the outside of the mounting box, an air inlet pipe fixedly connected to the bottom of one end of the outer cylinder at the end of the mounting box away from the air inlet pipe, an exhaust pipe fixedly connected to the outside of the mounting box away from the air inlet pipe, a limit frame disposed inside the exhaust pipe, a connecting column fixedly connected to the end of the limit frame near the mounting box, a sieve plate fixedly connected to the end of the connecting column away from the limit frame, and a sieve plate fixedly connected to the outside of the exhaust pipe. The device is equipped with a sliding sleeve, a blocking mounting bracket is fixedly connected to the inner side of the sliding sleeve, a receiving cylinder is fixedly connected to the middle of the blocking mounting bracket, a pressure spring is installed inside the receiving cylinder, a limiting cylinder is slidably connected inside the receiving cylinder, a clamping rod is fixedly connected to the end of the limiting cylinder away from the pressure spring, a rotating cylinder is rotatably connected to the outside of the exhaust pipe, a tension spring is installed inside the rotating cylinder, a sliding block is slidably connected inside the rotating cylinder, a movable column is fixedly connected to the end of the sliding block away from the tension spring, a hook is fixedly connected to the end of the movable column away from the sliding block, two hanging ears are fixedly connected to the outside of the sliding sleeve, the inner side of the hook engages with the hanging ears, a collecting cylinder is threaded to the bottom of the mounting box, one end of the tension spring is fixedly connected to the inside of the rotating cylinder, and the other end of the tension spring is fixedly connected to one side of the sliding block.
[0010] Preferably, the rotating mechanism includes an electric motor, one end of which is fixedly connected to the middle of the outer cylinder, and the output end of the electric motor is fixedly connected to a hexagonal column. A sliding frame is provided inside the outer cylinder, and multiple limiting wheels are rotatably connected to the outside of the sliding frame. One end of another assembly frame is rotatably connected to the inner side of the sliding frame, and a hexagonal groove is opened inside the other end of the assembly frame. Multiple limiting grooves are opened inside the outer cylinder, and the limiting wheels are disposed inside the limiting grooves. The hexagonal column is disposed inside the hexagonal grooves.
[0011] Preferably, one end of the push spring is fixedly connected to the inside of the fixed block, and the other end of the push spring is fixedly connected to the inside of the limiting plate.
[0012] Preferably, one end of the clamping spring is fixedly connected to the inside of the mounting cylinder, and the other end of the clamping spring is fixedly connected to one end of the sliding limit ring.
[0013] Preferably, one end of the push spring is fixedly connected to the inside of the fixed plate, and the other end of the push spring is fixedly connected to one end of the limiting strip.
[0014] Preferably, one end of the pressure spring is fixedly connected to one end of the housing cylinder, and the other end of the pressure spring is fixedly connected to one side of the limiting cylinder.
[0015] This invention provides an energy-saving air dryer that preserves the flavor of seaweed. It has the following beneficial effects:
[0016] 1. This invention, through the cooperation of the feeding mechanism and the rotating mechanism, enables the loading bucket containing the seaweed to rotate while hot air is being evenly introduced. This not only ensures uniform ventilation but also causes the seaweed to shake during the rotation of the loading bucket, thus preventing uneven drying. Consequently, it avoids the situation where some seaweed becomes too dry and breaks, while others become moldy and spoiled, maintaining consistent flavor and improving the yield.
[0017] 2. This invention uses the rotation of the feeding mechanism to drive the cleaning mechanism to clean the inner wall of the device. It can also be used in conjunction with the sprayed gas or the introduction of liquid for cleaning, thus realizing automatic cleaning of the device. Furthermore, it can use the flow of air to clean impurities from the seaweed during the drying process, thereby improving the efficiency of the device while cleaning the seaweed, increasing the functionality and practicality of the device. Attached Figure Description
[0018] Figure 1 The three-dimensional representation of the present invention Figure 1 ;
[0019] Figure 2 The three-dimensional representation of the present invention Figure 2 ;
[0020] Figure 3 This is a schematic diagram of the internal structure of the base in this invention;
[0021] Figure 4 This is a schematic diagram of the assembly frame in this invention;
[0022] Figure 5This is a schematic diagram of the hexagonal prism structure in this invention;
[0023] Figure 6 This is a schematic diagram of the connecting rod in this invention;
[0024] Figure 7 This is a schematic diagram of the interior of the mounting cylinder in this invention;
[0025] Figure 8 This is a schematic diagram of the sliding groove in this invention;
[0026] Figure 9 This is a schematic diagram of the internal structure of the intermediate frame in this invention;
[0027] Figure 10 This is a schematic diagram of the internal structure of the fixing block in this invention;
[0028] Figure 11 This is a schematic diagram of the structure of the fixing base in this invention;
[0029] Figure 12 This is a schematic diagram of the internal structure of the mounting box in this invention;
[0030] Figure 13 This is a schematic diagram of the internal structure of the fixing plate in this invention;
[0031] Figure 14 This is a schematic diagram of the internal structure of the exhaust pipe in this invention;
[0032] Figure 15 This is a schematic diagram of the internal structure of the container tube in this invention.
[0033] The components include: 1. Base; 2. Outer cylinder; 3. Feeding mechanism; 301. Sealing cover; 302. Support column; 303. Limiting plate; 304. Storage slot; 305. Moving wheel frame; 306. Assembly frame; 307. Slot; 308. Intermediate frame; 309. Sliding groove; 310. Return spring; 311. Limiting circular plate; 312. Clamp head; 313. Connecting rod; 314. Filling bucket; 315. Rotating connecting piece; 316. Rotating... 317. Cover; 318. Fixing block; 319. Push spring; 320. Limiting plate; 321. Engaging block; 322. Fixing seat; 323. Engaging groove; 4. Cleaning mechanism; 401. Connecting plate; 402. Mounting cylinder; 403. Pressing spring; 404. Sliding limit ring; 405. Moving rod; 406. Cleaning brush; 5. Air supply and drying mechanism; 501. Ventilation ring; 502. Jet pipe; 503. Air source heat pump; 504. Air outlet Pipe; 505, Automatic control valve; 506, Inlet valve; 6, Impurity collection mechanism; 601, Mounting box; 602, Fixing column; 603, Rotating fan blade; 604, Fixing plate; 605, Push spring; 606, Limiting strip; 607, Cleaning plate; 608, Stabilizer; 609, Inlet duct; 610, Exhaust duct; 611, Limiting frame; 612, Connecting column; 613, Screen plate; 614, Sliding sleeve; 615, Blocking device 616. Mounting rack; 617. Loading cylinder; 618. Compression spring; 619. Limiting cylinder; 620. Holding rod; 621. Rotating cylinder; 622. Tension spring; 623. Sliding block; 624. Movable column; 625. Hook; 626. Hanging lug; 627. Collection cylinder; 701. Rotating mechanism; 702. Electric motor; 703. Hexagonal column; 704. Sliding frame; 705. Limiting wheel; 706. Hexagonal groove; 707. Limiting groove; 8. Lock. Detailed Implementation
[0034] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] Please see the appendix Figure 1 -Appendix Figure 15This invention provides an energy-saving air dryer that preserves the flavor of seaweed, including a base 1, an outer cylinder 2 fixedly connected to the top of the base 1, a feeding mechanism 3 inside the outer cylinder 2 for convenient addition of seaweed, a cleaning mechanism 4 outside the feeding mechanism 3 for cleaning the inner wall of the outer cylinder 2, an air-blowing drying mechanism 5 outside the outer cylinder 2 for introducing hot air, an impurity collection mechanism 6 outside the outer cylinder 2 for collecting impurities, and a rotating mechanism 7 inside the outer cylinder 2 for driving the feeding mechanism 3 to rotate.
[0036] The feeding mechanism 3 includes a sealing cover 301, which covers one end of the outer cylinder 2 to maintain the airtightness of the outer cylinder 2. One end of the sealing cover 301 is located at one end of the outer cylinder 2. Two support columns 302 are fixedly connected to the outside of the sealing cover 301. The support columns 302 can support the sealing cover 301 and the assembly frame 306. A limiting plate 303 is fixedly connected to the end of the support column 302 away from the sealing cover 301. The limiting plate 303 can limit movement. Two storage slots 304 are opened inside the base 1. The storage slots 304 can provide sliding space. The limiting plate 303 is slidably connected inside the storage slots 304. A movable wheel frame 305 is fixedly connected between the two support columns 302. The movable wheel frame 305 can allow the support column 302 to slide out of the base. 1. For internal stability, the outer cylinder 2 has two mounting brackets 306 inside, providing installation positions. One end of one mounting bracket 306 is rotatably connected to the inner side of the sealing cover 301. Multiple slots 307 are provided inside the mounting bracket 306. An intermediate bracket 308 is provided in the middle of the outer cylinder 2. Multiple sliding grooves 309 are provided inside the intermediate bracket 308. Multiple return springs 310 are provided inside the intermediate bracket 308. Two limiting circular plates 311 are slidably connected inside the intermediate bracket 308. The return springs 310 provide a reaction force to push the limiting circular plates 311 back to their original positions. A clamp 312 is fixedly connected to the end of the limiting circular plate 311 away from the return spring 310. Multiple connecting rods 313 are fixedly connected inside the intermediate bracket 308. The connecting rod 313 connects two assembly frames 306 and an intermediate frame 308. Both ends of the connecting rod 313 are fixedly connected to one end of each of the two assembly frames 306. Multiple material containers 314 are provided between the assembly frames 306 and the intermediate frame 308. Each material container 314 can hold seaweed. A rotating connector 315 is rotatably connected to one end of each material container 314. A rotating cover 316 is fixedly connected to one end of the rotating connector 315. The rotating connector 315 connects to the rotating cover 316. A fixing block 317 is fixedly connected to the outside of the rotating cover 316. The fixing block 317 can slide into the interior of the assembly frame 306. A push spring 318 is provided inside the fixing block 317. A limit plate 319 is slidably connected inside the push spring 318. The limit plate 319 can lift... For limiting function, a locking block 320 is fixedly connected to the end of the limiting plate 319 away from the loading barrel 314. The locking block 320 can be locked inside the locking groove 307. A fixing seat 321 is fixedly connected to the end of the loading barrel 314 away from the rotating cover 316. The fixing seat 321 can slide into the groove 309. The fixing seat 321 has a locking groove 322 inside, and the locking head 312 can be locked inside the locking groove 322. The locking groove 322 and the locking head 312 are locked together. The locking block 320 is locked into the groove 307. The two ends of the return spring 310 are fixedly connected to one end of the two limiting circular plates 311 respectively. The fixing seat 321 is slidably connected inside the sliding groove 309. Multiple latches 8 are fixedly connected between the sealing cover 301 and the outside of the outer cylinder 2.One end of the push spring 318 is fixedly connected to the inside of the fixed block 317, and the other end of the push spring 318 is fixedly connected to the inside of the limiting plate 319;
[0037] When placing the seaweed into the device, first open the latch 8 and pull the support column 302, which will pull the sealing cover 301 away from the outer cylinder 2, thereby pulling the two assembly frames 306 into the inner part of the outer cylinder 2. At this time, press the locking block 320, which will compress the push spring 318 using the limiting plate 319. After the locking block 320 moves out of the slot 307, pull the filling barrel 314 out of the assembly frame 306. At this time, under the pressure of the inner wall of the locking groove 322, the locking head 312 will push the limiting round plate 311 into the middle frame 308 and compress the reset spring 310, thereby pulling the filling barrel 314 out of the inner side of the assembly frame 306 and the middle frame 308. After the filling barrel 314 is pulled out of the assembly frame 306 and the middle frame 308, the rotating cover 316 can be rotated. Open the container. At this time, seaweed can be placed into the filling tank 314, and the rotating cover 316 can be rotated to close. Press the locking block 320 again and place the filling tank 314 between the assembly frame 306 and the intermediate frame 308. At this time, under the reaction force of the push spring 318, the locking block 320 pushes the limiting plate 319 and the locking block 320 to move away from the fixed block 317, and locks the locking block 320 into the slot 307. At this time, under the pressure of the assembly frame 306, the rotating cover 316 can be prevented from rotating and opening. At the same time, when the locking slot 322 moves to the locking head 312, under the reaction force of the return spring 310, the locking head 312 is pushed towards the filling tank 314, and the locking head 312 is locked into the slot 322, thus completing the installation of the filling tank 314.
[0038] The cleaning mechanism 4 includes multiple connecting plates 401, which provide installation positions. Both ends of the connecting plates 401 are fixedly connected to the outside of two assembly frames 306. Multiple mounting cylinders 402 are fixedly connected to the outside of the connecting plates 401, providing installation space. A retaining spring 403 is installed inside each mounting cylinder 402. A sliding limit ring 404 is slidably connected inside the mounting cylinder 402, providing a limiting function. A moving rod 405 is fixedly connected to the middle of the sliding limit ring 404. Cleaning brushes 406 are fixedly connected between the multiple moving rods 405, allowing the moving rods 405 to connect to the cleaning brushes 406. Both ends of the moving rods 405 pass through both ends of the mounting cylinder 402. A retaining spring 403 is sleeved on the outside of the moving rod 405, and one end of the retaining spring 403 is fixedly connected to the mounting cylinder. Inside the cylinder 402, the other end of the clamping spring 403 is fixedly connected to one end of the sliding limit ring 404. When the assembly frame 306 is rotated under the action of the rotating mechanism 7, the connecting plate 401 can be rotated. After the connecting plate 401 rotates, the mounting cylinder 402 can be rotated. The rotation of the mounting cylinder 402 drives the moving rod 405 to rotate. The rotation of the moving rod 405 drives the cleaning brush 406 to rotate. The cleaning brush 406 scrapes off the impurities inside the outer cylinder 2 and blows out the impurities with the airflow under the action of the air drying mechanism 5. At the same time, under the reaction force of the clamping spring 403, a force is given to the sliding limit ring 404 towards the outer cylinder 2, which in turn gives a force to the moving rod 405 towards the outer cylinder 2, so that the cleaning brush 406 can be pressed tightly against the inner wall of the outer cylinder 2.
[0039] The air-supply drying mechanism 5 includes a ventilation ring 501, which provides ventilation space. The inner side of the ventilation ring 501 is fixedly connected to one end of the outer cylinder 2. One end of the ventilation ring 501 is fixedly connected to a jet pipe 502, which provides ventilation. The outer side of the jet pipe 502 is fixedly connected to the outer cylinder 2. An air-source heat pump 503 is installed outside the base 1. The air-source heat pump 503 can generate hot air. The output end of the air-source heat pump 503 is fixedly connected to an air outlet pipe 504, which provides ventilation. An automatic control valve 505 is fixedly connected to the end of the air outlet pipe 504 away from the air-source heat pump 503. The automatic control valve 505 can control the airflow. The end of the automatic control valve 505 away from the air outlet pipe 504 is fixedly connected to the outside of the ventilation ring 501. A water inlet valve is fixedly connected to the outside of the ventilation ring 501. Door 506 is opened, and air source heat pump 503 is started. The output end of air source heat pump 503 discharges gas, which can be introduced into the automatic control valve 505 through air outlet pipe 504. The automatic control valve 505 is opened, which allows hot air to be introduced into the ventilation ring 501 and into the jet pipe 502. The jet pipe 502 then introduces the gas into the outer cylinder 2, thus providing drying gas for the feeding mechanism 3. At the same time, a water pump can be connected to the water inlet valve 506 to pump water into the outer cylinder 2. The water flow can then be introduced into the outer cylinder 2 through the ventilation ring 501 and jet pipe 502, cleaning the inside of the outer cylinder 2 and the loading hopper 314. Automatic cleaning is also achieved. When the water inlet valve 506 is opened, the automatic control valve 505 needs to be closed, and the water flow should be discharged using the impurity collection mechanism 6.
[0040] The impurity collection mechanism 6 includes a mounting box 601, which provides an installation position. A fixing column 602 is fixedly connected inside the mounting box 601, providing the installation position. A rotating fan blade 603 is rotatably connected to the outside of the fixing column 602. Multiple fixing plates 604 are fixedly connected to the outside of the rotating fan blade 603, providing the installation position. Multiple push springs 605 are installed inside the fixing plates 604. A limit strip 606 is slidably connected inside the fixing plates 604, serving a limiting function. A cleaning plate 607 is fixedly connected to the end of the limit strip 606 away from the push springs 605, serving a brushing function. A stabilizing frame 608 is rotatably connected to the bottom of the fixing column 602. 08 provides a stable fixing column 602. An air inlet pipe 609 is fixedly connected to the outside of the mounting box 601, providing air intake. The end of the air inlet pipe 609 away from the mounting box 601 is fixedly connected to the bottom of one end of the outer cylinder 2. An exhaust pipe 610 is fixedly connected to the outside of the mounting box 601 away from the air inlet pipe 609, providing air outlet. A limit bracket 611 is installed inside the exhaust pipe 610, providing installation. A connecting column 612 is fixedly connected to the end of the limit bracket 611 near the mounting box 601, providing connection. A sieve plate 613 is fixedly connected to the end of the connecting column 612 away from the limit bracket 611, providing filtration. The exhaust pipe 610... The external sliding connection is a sliding sleeve 614, which serves to install the screen plate 613. A blocking mounting bracket 615 is fixedly connected to the inner side of the sliding sleeve 614, providing an installation position. A receiving cylinder 616 is fixedly connected to the middle of the blocking mounting bracket 615, providing installation space. A pressure spring 617 is installed inside the receiving cylinder 616. A limiting cylinder 618 is slidably connected inside the receiving cylinder 616, providing a limiting function. A pressing rod 619 is fixedly connected to the end of the limiting cylinder 618 away from the pressure spring 617. The pressing rod 619 can abut against the outside of the limiting bracket 611, thereby allowing the screen plate 613 to be installed inside the exhaust pipe 610. The external rotation of the exhaust pipe 610... A rotating cylinder 620 is connected, providing installation space. A tension spring 621 is installed inside the rotating cylinder 620. A sliding block 622 is slidably connected inside the rotating cylinder 620, serving a limiting function. A movable column 623 is fixedly connected to the end of the sliding block 622 away from the tension spring 621, serving a connecting function. A hook 624 is fixedly connected to the end of the movable column 623 away from the sliding block 622. Two hanging ears 625 are fixedly connected to the outside of the sliding sleeve 614. The hook 624 can engage with the outside of the hanging ears 625, thus allowing the sliding sleeve 614 to be installed on the outside of the exhaust pipe 610. The inside of the hook 624 engages with the hanging ears 625. A collection cylinder 626 is threadedly connected to the bottom of the mounting box 601.The collecting cylinder 626 provides impurity collection. One end of the tension spring 621 is fixedly connected to the inside of the rotating cylinder 620, and the other end is fixedly connected to one side of the sliding block 622. One end of the pushing spring 605 is fixedly connected to the inside of the fixed plate 604, and the other end is fixedly connected to one end of the limiting strip 606. One end of the pressure spring 617 is fixedly connected to one end of the receiving cylinder 616, and the other end is fixedly connected to one side of the limiting cylinder 618.
[0041] After the gas enters the outer cylinder 2, it enters the mounting box 601 through the air inlet pipe 609. The gas flow drives the rotating fan 603 to rotate, which in turn drives the fixing plate 604 to rotate. The rotation of the fixing plate 604 drives the limiting strip 606 and the cleaning plate 607 to rotate. The rotation of the cleaning plate 607 scrapes off the impurities attached to the screen plate 613. Since the airflow enters the exhaust pipe 610 from the air inlet pipe 609, a negative pressure is generated at the bottom of the mounting box 601, which then draws the impurities into the collection cylinder 626 for further processing. When replacing the sieve plate 613, first rotate the hook 624, which will drive the movable column 623 and the rotating cylinder 620 to rotate. When the hook 624 rotates away from the hanging ear 625, release the hook 624. Under the action of the tension spring 621, the sliding block 622, the movable column 623, and the hook 624 will be pulled towards the rotating cylinder 620. At this time, the sliding sleeve 614 can be pulled out from the outside of the exhaust pipe 610. Then, the limit frame 611, the connecting column 612, and the sieve plate 613 can be pulled out from the inside of the exhaust pipe 610. When installing the sieve plate 613, the limit frame 611 can be pulled out. The sliding sleeve 614 is then slid into the exhaust duct 610, allowing the limiting frame 611, connecting column 612, and sieve plate 613 to be placed inside. The sliding sleeve 614 is then slid into the outside of the exhaust duct 610, where the clamping rod 619 rests against the outside of the limiting frame 611. The limiting cylinder 618 then slides into the housing cylinder 616, and the reaction force of the pressure spring 617 applies force to the limiting cylinder 618, clamping rod 619, and limiting frame 611, thus installing the sieve plate 613 inside the exhaust duct 610. At this point, the blocking mounting bracket 615 contacts the exhaust duct 610. Pull the hook 624 outward from the end away from the mounting box 601, and pull the movable column 623 and the sliding block 622. At this time, the tension spring 621 will be stretched. Then rotate the hook 624 so that the hook 624 is engaged with the outside of the hanging ear 625. The reaction force of the tension spring 621 can be used to pull the sliding block 622, the movable column 623 and the hook 624, which can give a force to the hanging ear 625, and thus give a force to the sliding sleeve 614 towards the mounting box 601. With the blocking of the blocking mounting bracket 615, the sliding sleeve 614 can be installed on the outside of the exhaust pipe 610.
[0042] The rotating mechanism 7 includes a motor 701, which provides power. One end of the motor 701 is fixedly connected to the middle of the outer cylinder 2. A hexagonal column 702 is fixedly connected to the output end of the motor 701. A sliding frame 703 is provided inside the outer cylinder 2. Multiple limiting wheels 704 are rotatably connected to the outside of the sliding frame 703. One end of another assembly frame 306 is rotatably connected to the inside of the sliding frame 703. A hexagonal groove 705 is opened inside one end of the other assembly frame 306. After the hexagonal column 702 is inserted into the hexagonal groove 705, it can drive the assembly frame 306 to rotate. Multiple limiting grooves 706 are opened inside the outer cylinder 2. After the limiting wheels 704 are placed inside the limiting grooves 706, they can keep the sliding frame 703 stationary when the assembly frame 306 rotates. The limiting wheels 704 are set as follows: Inside the limiting groove 706, the hexagonal column 702 is located inside the hexagonal groove 705. When the rotating mechanism 7 is activated, the output end of the rotating mechanism 7 rotates, thereby driving the hexagonal column 702 to rotate. After the hexagonal column 702 rotates, it can drive one of the assembly racks 306 to rotate, and then drive the intermediate rack 308 and another assembly rack 306 to rotate through the connecting rod 313. This can then drive multiple loading barrels 314 to rotate, and the exhaust air of the air-blowing drying mechanism 5 can evenly rotate and dry the loading barrels 314. At the same time, the sliding frame 703 can maintain the stability of the assembly rack 306 and enable the limiting groove 706 and the limiting wheel 704 to cooperate, thereby maintaining the stability of the assembly rack 306 and not delaying the rotation of the assembly rack 306.
[0043] Working principle: When seaweed is placed inside the device, firstly, the latch 8 is opened, and the support column 302 is pulled, thereby pulling the sealing cover 301 away from the outer cylinder 2. This pulls the two assembly frames 306 into the outer cylinder 2. At this time, the locking block 320 is pressed, thereby using the limiting plate 319 to compress the pushing spring 318. After the locking block 320 moves out of the slot 307, the filling barrel 314 is pulled out of the assembly frame 306. At this time, under the pressure of the inner wall of the locking groove 322, the locking head 312 pushes the limiting circular plate 311 into the middle frame 308 and compresses the reset spring 310, thereby pulling the filling barrel 314 out of the inner side of the assembly frame 306 and the middle frame 308. After the filling barrel 314 is pulled out of the assembly frame 306 and the middle frame 308, the rotating cover 31 can be opened. 6. Rotate to open. At this time, seaweed can be placed into the filling barrel 314. Rotate the rotating cover 316 to close. Press the locking block 320 again and place the filling barrel 314 between the assembly frame 306 and the intermediate frame 308. At this time, under the reaction force of the pushing spring 318, the locking block 320 pushes the limiting plate 319 and the locking block 320 to move away from the fixed block 317 and locks the locking block 320 into the slot 307. At this time, under the pressure of the assembly frame 306, the rotating cover 316 can be prevented from rotating open. At the same time, when the locking slot 322 moves to the locking head 312, under the reaction force of the return spring 310, the locking head 312 is pushed towards the filling barrel 314 and locks into the locking slot 322, thus completing the installation of the filling barrel 314.
[0044] When the assembly frame 306 is rotated by the rotating mechanism 7, the connecting plate 401 is rotated. After the connecting plate 401 rotates, the mounting cylinder 402 is rotated. The rotation of the mounting cylinder 402 causes the moving rod 405 to rotate. The rotation of the moving rod 405 causes the cleaning brush 406 to rotate. The cleaning brush 406 scrapes off the impurities inside the outer cylinder 2 and blows out the impurities with the airflow under the action of the air-drying mechanism 5. At the same time, under the reaction force of the clamping spring 403, a force is given to the sliding limit ring 404 towards the outer cylinder 2, which in turn gives a force to the moving rod 405 towards the outer cylinder 2, so that the cleaning brush 406 can be pressed tightly against the inner wall of the outer cylinder 2.
[0045] When the air source heat pump 503 is started, the output end of the air source heat pump 503 discharges gas, which can be introduced into the automatic control valve 505 through the air outlet pipe 504. The automatic control valve 505 is opened, which allows hot air to be introduced into the ventilation ring 501 and the jet pipe 502. The jet pipe 502 then introduces the gas into the outer cylinder 2, thus providing drying gas for the feeding mechanism 3. At the same time, a water pump can be connected to the water inlet valve 506 to pump water into the outer cylinder 2. The water flow can then be introduced into the outer cylinder 2 through the ventilation ring 501 and the jet pipe 502, cleaning the inside of the outer cylinder 2 and the loading hopper 314. Automatic cleaning is also achieved. When the water inlet valve 506 is opened, the automatic control valve 505 needs to be closed, and the water flow is discharged using the impurity collection mechanism 6.
[0046] After the gas enters the outer cylinder 2, it enters the mounting box 601 through the air inlet pipe 609. The gas flow drives the rotating fan 603 to rotate, which in turn drives the fixing plate 604 to rotate. The rotation of the fixing plate 604 drives the limiting strip 606 and the cleaning plate 607 to rotate. The rotation of the cleaning plate 607 scrapes off the impurities attached to the screen plate 613. Since the airflow enters the exhaust pipe 610 from the air inlet pipe 609, a negative pressure is generated at the bottom of the mounting box 601, which then draws the impurities into the collection cylinder 626 for further processing. When replacing the sieve plate 613, first rotate the hook 624, which will drive the movable column 623 and the rotating cylinder 620 to rotate. When the hook 624 rotates away from the hanging ear 625, release the hook 624. Under the action of the tension spring 621, the sliding block 622, the movable column 623, and the hook 624 will be pulled towards the rotating cylinder 620. At this time, the sliding sleeve 614 can be pulled out from the outside of the exhaust pipe 610. Then, the limit frame 611, the connecting column 612, and the sieve plate 613 can be pulled out from the inside of the exhaust pipe 610. When installing the sieve plate 613, the limit frame 611 can be pulled out. The sliding sleeve 614 is then slid into the exhaust duct 610, allowing the limiting frame 611, connecting column 612, and sieve plate 613 to be placed inside. The sliding sleeve 614 is then slid into the outside of the exhaust duct 610, where the clamping rod 619 rests against the outside of the limiting frame 611. The limiting cylinder 618 then slides into the housing cylinder 616, and the reaction force of the pressure spring 617 applies force to the limiting cylinder 618, clamping rod 619, and limiting frame 611, thus installing the sieve plate 613 inside the exhaust duct 610. At this point, the blocking mounting bracket 615 contacts the exhaust duct 610. 0. Move the hook 624 outward from the end away from the mounting box 601, and pull the movable column 623 and the sliding block 622. At this time, the tension spring 621 will be stretched. Then rotate the hook 624 so that the hook 624 is engaged with the outside of the hanging ear 625. The reaction force of the tension spring 621 can be used to pull the sliding block 622, the movable column 623 and the hook 624, which can give a force to the hanging ear 625, and thus give a force to the sliding sleeve 614 towards the mounting box 601. With the blocking of the blocking mounting bracket 615, the sliding sleeve 614 can be installed on the outside of the exhaust pipe 610.
[0047] When the rotating mechanism 7 is activated, its output end rotates, which in turn drives the hexagonal column 702 to rotate. The rotation of the hexagonal column 702 drives one of the assembly racks 306 to rotate, which in turn drives the intermediate frame 308 and another assembly rack 306 to rotate via the connecting rod 313. This, in turn, drives multiple loading bins 314 to rotate. The exhaust air from the air-drying mechanism 5 ensures that the loading bins 314 rotate and dry evenly. At the same time, the sliding frame 703 maintains the stability of the assembly rack 306 and ensures the cooperation between the limiting groove 706 and the limiting wheel 704, thereby maintaining the stability of the assembly rack 306 and ensuring that the rotation of the assembly rack 306 is not delayed.
[0048] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An energy-saving type air-drying machine that preserves the flavor of seaweed, comprising a base (1), characterized in that, The top of the base (1) is fixedly connected with an outer cylinder (2), the inside of the outer cylinder (2) is provided with a feeding mechanism (3), the feeding mechanism (3) is convenient to add laver, the outside of the feeding mechanism (3) is provided with a cleaning mechanism (4), the cleaning mechanism (4) is used for cleaning the inner wall of the outer cylinder (2), the outside of the outer cylinder (2) is provided with a air supply drying mechanism (5), the air supply drying mechanism (5) is used for hot air, the outside of the outer cylinder (2) is provided with an impurity collecting mechanism (6), the impurity collecting mechanism (6) is used for collecting impurities, the inside of the outer cylinder (2) is provided with a rotating mechanism (7), the rotating mechanism (7) is used for driving the feeding mechanism (3) to rotate, the feeding mechanism (3) comprises a blocking cover (301), one end of the blocking cover (301) is arranged at one end of the outer cylinder (2), the outside of the blocking cover (301) is fixedly connected with two support columns (302), the end, away from the blocking cover (301), of the support column (302) is fixedly connected with a limiting disc (303), the inside of the base (1) is provided with two receiving grooves (304), the limiting disc (303) is slidably connected in the inside of the receiving groove (304), the two support columns (302) are fixedly connected with a moving wheel frame (305), the inside of the outer cylinder (2) is provided with two assembly frames (306), one end of one of the assembly frames (306) is rotatably connected to the inside of the blocking cover (301), a plurality of clamping grooves (307) are arranged in the inside of the assembly frame (306), a middle frame (308) is arranged in the middle of the outer cylinder (2), a plurality of sliding grooves (309) are arranged in the inside of the middle frame (308), a plurality of return springs (310) are arranged in the inside of the middle frame (308), two limiting round plates (311) are slidably connected in the inside of the middle frame (308), the end, away from the return spring (310), of the limiting round plate (311) is fixedly connected with a clamping head (312), a plurality of connecting rods (313) are fixedly connected in the inside of the middle frame (308), the two ends of the connecting rod (313) are fixedly connected to one end of the two assembly frames (306), a plurality of feeding barrels (314) are arranged between the assembly frame (306) and the middle frame (308), a rotating connecting piece (315) is rotatably connected to one end of the feeding barrel (314), a rotating cover (316) is fixedly connected to one end of the rotating connecting piece (315), a fixed block (317) is fixedly connected to the outside of the rotating cover (316), a pushing spring (318) is arranged in the inside of the fixed block (317), a limiting plate (319) is slidably connected in the inside of the pushing spring (318), the end, away from the feeding barrel (314), of the limiting plate (319) is fixedly connected with a clamping block (320), a fixed seat (321) is fixedly connected to the end, away from the rotating cover (316), of the feeding barrel (314), a clamping groove (322) is arranged in the inside of the fixed seat (321),The clamping groove (322) is clamped with the clamping head (312), the clamping block (320) is clamped with the clamping groove (307), both ends of the reset spring (310) are fixedly connected with one end of two limiting round plates (311), the fixed seat (321) is slidingly connected in the sliding groove (309), a plurality of lock buckles (8) are fixedly connected between the blocking cover (301) and the outside of the outer cylinder (2).
2. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 1, wherein The cleaning mechanism (4) comprises a plurality of connecting plates (401), both ends of the connecting plate (401) are fixedly connected outside the two assembling frames (306), a plurality of mounting barrels (402) are fixedly connected outside the connecting plate (401), a pressing spring (403) is arranged in the mounting barrel (402), a sliding limiting ring (404) is slidably connected in the mounting barrel (402), a moving rod (405) is fixedly connected to the middle of the sliding limiting ring (404), a plurality of moving rods (405) are fixedly connected with a cleaning brush (406), both ends of the moving rod (405) penetrate both ends of the mounting barrel (402), and the pressing spring (403) is sleeved outside the moving rod (405).
3. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 1, wherein The air supply drying mechanism (5) comprises a ventilation ring (501), the inner side of the ventilation ring (501) is fixedly connected to one end outside the outer cylinder (2), one end of the ventilation ring (501) is fixedly connected with a gas injection pipe (502), the outer side of the gas injection pipe (502) is fixedly connected outside the outer cylinder (2), the outer side of the base (1) is provided with an air energy heat pump (503), the output end of the air energy heat pump (503) is fixedly connected with an air outlet pipe (504), one end of the air outlet pipe (504) away from the air energy heat pump (503) is fixedly connected with an automatic control valve (505), one end of the automatic control valve (505) away from the air outlet pipe (504) is fixedly connected outside the ventilation ring (501), and the outer side of the ventilation ring (501) is fixedly connected with a water inlet valve (506).
4. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 1, wherein The impurity collecting mechanism (6) includes a mounting box (601), a fixed column (602) is fixedly connected inside the mounting box (601), a rotating fan blade (603) is rotatably connected outside the fixed column (602), a plurality of fixed plates (604) are fixedly connected outside the rotating fan blade (603), a plurality of pushing springs (605) are arranged inside the fixed plates (604), a limiting strip (606) is slidably connected inside the fixed plates (604), a cleaning plate (607) is fixedly connected to one end of the limiting strip (606) away from the pushing spring (605), a stabilizing frame (608) is rotatably connected to the bottom end outside the fixed column (602), an air inlet pipe (609) is fixedly connected outside the mounting box (601), one end of the air inlet pipe (609) away from the mounting box (601) is fixedly connected to the bottom of one end of the outer cylinder (2), an air outlet pipe (610) is fixedly connected to one end of the mounting box (601) away from the air inlet pipe (609), a limiting frame (611) is arranged inside the air outlet pipe (610), a connecting column (612) is fixedly connected to one end of the limiting frame (611) close to the mounting box (601), a sieve plate (613) is fixedly connected to one end of the connecting column (612) away from the limiting frame (611), a sliding sleeve (614) is slidably connected outside the air outlet pipe (610), a blocking mounting frame (615) is fixedly connected to the inner side of the sliding sleeve (614), a containing cylinder (616) is fixedly connected to the middle of the blocking mounting frame (615), a pressure spring (617) is arranged inside the containing cylinder (616), a limiting cylinder (618) is slidably connected inside the containing cylinder (616), a pressing rod (619) is fixedly connected to one end of the limiting cylinder (618) away from the pressure spring (617), a rotating cylinder (620) is rotatably connected outside the air outlet pipe (610), a tension spring (621) is arranged inside the rotating cylinder (620), a sliding block (622) is slidably connected inside the rotating cylinder (620), an active column (623) is fixedly connected to one end of the sliding block (622) away from the tension spring (621), a hook (624) is fixedly connected to one end of the active column (623) away from the sliding block (622), two hanging ears (625) are fixedly connected outside the sliding sleeve (614), the inner side of the hook (624) is clamped with the hanging ears (625), a collecting cylinder (626) is threadedly connected to the bottom of the mounting box (601), one end of the tension spring (621) is fixedly connected inside the rotating cylinder (620), and the other end of the tension spring (621) is fixedly connected to one side of the sliding block (622).
5. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 1, wherein The rotating mechanism (7) comprises a motor (701), one end of the motor (701) is fixedly connected in the middle of the outer cylinder (2), the output end of the motor (701) is fixedly connected with a hexagonal column (702), the inside of the outer cylinder (2) is provided with a sliding frame (703), a plurality of limiting wheels (704) are rotatably connected outside the sliding frame (703), one end of the other assembly frame (306) is rotatably connected to the inside of the sliding frame (703), a hexagonal groove (705) is formed in the inside of one end of the other assembly frame (306), a plurality of limiting grooves (706) are formed in the inside of the outer cylinder (2), the limiting wheels (704) are arranged in the inside of the limiting grooves (706), and the hexagonal column (702) is arranged in the inside of the hexagonal groove (705).
6. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 1, wherein One end of the pushing spring (318) is fixedly connected in the inside of the fixed block (317), and the other end of the pushing spring (318) is fixedly connected to the inside of the limiting plate (319).
7. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 2, wherein One end of the abutting spring (403) is fixedly connected in the inside of the mounting cylinder (402), and the other end of the abutting spring (403) is fixedly connected to one end of the sliding limiting ring (404).
8. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 4, wherein One end of the pushing spring (605) is fixedly connected in the inside of the fixed plate (604), and the other end of the pushing spring (605) is fixedly connected to one end of the limiting strip (606).
9. The energy saving type of a dryer for reserving the flavor of seaweed according to claim 4, wherein One end of the pressure spring (617) is fixedly connected to one end of the containing cylinder (616), and the other end of the pressure spring (617) is fixedly connected to one side of the limiting cylinder (618).
Citation Information
Patent Citations
Medicinal and edible food processing device
CN113786341A
Drying box for shiitake mushroom processing
CN212566631U