Automatic equipment for frying salted semen cuscutae
By designing automated stir-frying equipment for salt dodder, the problems of uneven stir-frying and easy destruction of medicinal materials in the existing technology have been solved, uniform stir-frying and automated production of medicinal materials have been achieved, and the quality and production efficiency of finished products have been improved.
Patent Information
- Application Number
- CN202510183270.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-05-27
AI Technical Summary
In the prior art, the dodder in the wok is not stir-fried enough and evenly, which easily destroys the medicinal materials, resulting in low quality of the finished product and inconvenient for automated production.
An automated device for salt dodder is designed, including connecting components, loading and unloading components, heating components, rotating components, adjustment components and stir-frying components. The equipment achieves uniform stir-frying and dynamic adjustment of medicinal materials through components such as stir-frying cylinder, turbo reducer, flip bar, frying plate and adjustment plate.
This equipment can achieve uniform stir-frying of medicinal materials, prevent damage to medicinal materials, improve the quality of finished products, and support automated production, improving production efficiency and production capacity.
Smart Images

Figure CN120037125A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of dodder stir-frying, and specifically to an automated device for stir-frying salt dodder. Background Technique
[0002] When dodder is used in medicine processing, it needs to be first dissolved in boiling water with coarse salt, the salt water and dodder are evenly mixed, and then slowly stir-fried over a low fire until it bulges slightly, makes a slight popping sound, emits an aroma, and is taken out, and finally cooled.
[0003] In the existing stir-frying technical solutions, the dodder in the frying pan is not stir-fried evenly enough, and it is easy to damage the medicinal materials during stir-frying, resulting in low quality of the finished product and inconvenience for automated production. Therefore, there is an urgent need to invent an automated device for stir-frying salt dodder to solve the above problems. Summary of the Invention
[0004] (1) Technical Problems to be Solved
[0005] In view of the problems in the prior art that the dodder in the frying pan is not stir-fried evenly enough, it is easy to damage the medicinal materials during stir-frying, resulting in low quality of the finished product and inconvenience for automated production, the present invention provides an automated device for stir-frying salt dodder.
[0006] (2) Technical Solutions
[0007] To achieve the above solution purpose, the present invention provides the following technical solutions: An automated device for stir-frying salt dodder, including a connection component, a loading and unloading component, a heating component, a rotating component, an adjusting component and a stir-frying component. The connection component is used to connect each component. The loading and unloading component is used to load and unload the stir-fried medicinal materials. The heating component is used to heat the medicinal materials. The rotating component is used to stir-fry the medicinal materials. The adjusting component and the stir-frying component are used to promote the stir-frying of the medicinal materials. The connection component includes a top plate, on which a smoke exhaust hood is fixedly installed. On both sides below the smoke exhaust hood, a first partition board and a second partition board are respectively fixedly connected. On both sides below the top plate, a sealing board is respectively fixedly installed. The first partition board and the second partition board are respectively fixedly connected to the sealing board. The sealing board is evenly provided with air inlets in the lower part between the first partition board and the second partition board. A third partition board is fixedly installed on the first partition board. On one side below the top plate, a blanking partition board is fixedly installed, and two symmetrically distributed first connection holes are provided on the blanking partition board.
[0008] Preferably, the rotating assembly includes a frying barrel and a turbo reducer. One side of the frying barrel is fixedly installed with a frying barrel shaft, and the other side of the frying barrel is fixedly installed with a limit card slot. The frying barrel shaft is movably connected to the first partition board. The limit card slot is located between the second partition board and the feeding partition board. A roller is movably connected below the limit card slot. The roller fits with the limit card slot. A first rotating shaft is fixedly installed in the middle of the roller. The two ends of the first rotating shaft are respectively movably connected to the second partition board and the feeding partition board. Uniformly distributed turning bars are arranged in the frying barrel. One side of the turning bar facing the center of the frying barrel is an arc-shaped surface. The turbo reducer is fixedly installed on the third partition board.
[0009] Preferably, the adjusting assembly and the frying assembly are located in the frying barrel. The adjusting assembly includes a second rotating shaft. The second rotating shaft is located at the center of the frying barrel and is fixedly connected to the frying barrel. Two mirror-symmetrical second connecting rods are respectively fixedly installed on both sides of the second rotating shaft. A third connecting shaft is fixedly installed between the two second connecting rods on each side. A connecting cylinder is movably connected to the third connecting shaft. Two symmetrically distributed frying plates are arranged on the connecting cylinder.
[0010] Preferably, one end of each of the two sides of the upper part of the smoke exhaust hood is fixedly installed with a first connecting rod. A first connecting ring is fixedly installed above the first connecting rod. A first connecting shaft is movably installed between the two first connecting rings. The first connecting shaft is fixedly connected to a cover plate. The cover plate is located above the smoke exhaust hood.
[0011] Preferably, the loading and unloading assembly includes a movable door. The lower part of the movable door is semi-circular, and the upper part of the movable door is rectangular. A handle is fixedly installed at the middle position of the movable door. A second connecting shaft is fixedly installed on each of the two sides of the upper part of the movable door. The second connecting shaft is movably installed in the first connecting hole. A discharge hopper is fixedly installed below the movable door. The discharge hopper is fixedly installed on the feeding partition board. A sealing limit plate is arranged on each side of the movable door. The sealing limit plate is movably installed on the feeding partition board. A first limit block is arranged below the sealing limit plate. The first limit block is fixedly installed on the feeding partition board.
[0012] Preferably, the heating assembly includes a ventilation plate. The ventilation plate is located at the middle position between the first partition board and the second partition board. Uniformly distributed ventilation openings are formed on the ventilation plate. A burner is fixedly installed above the ventilation plate. The burner is located below the frying barrel. The middle position of the burner is an arc-shaped concave surface. Uniformly distributed burner nozzles are arranged on the concave surface of the burner. Combustion assisting openings are uniformly arranged between the burner nozzles.
[0013] Preferably, a coupling is arranged between the turbo reducer and the frying barrel shaft. One end of the coupling is fixedly connected to the turbo reducer, and the other end of the coupling is fixedly connected to the frying barrel shaft. A turbo reducer pulley is movably connected to one side of the turbo reducer. The turbo reducer pulley is movably connected to a transmission belt. A speed regulating motor is movably connected below the transmission belt. The speed regulating motor is movably connected to a speed regulating motor pulley.
[0014] Preferably, a first sealing plate is fixedly connected to each side of the second connecting rod. The side of the first sealing plate close to the stir-frying plate is arc-shaped. A second connecting plate is fixedly connected to the outside of the first sealing plate. A uniformly distributed second connecting hole is formed in the second connecting plate. A second sealing plate is arranged outside the second connecting plate. A fifth sealing plate is fixedly installed between the two sides of the second connecting plate and the second sealing plate respectively.
[0015] Preferably, a third sealing plate is arranged above the side of the first sealing plate close to the stir-frying plate. The connection cylinder is movably connected between the two third sealing plates. The two ends of the third sealing plate are fixedly connected to the first sealing plate respectively. A fourth sealing plate is fixedly installed above the second connecting plate and the second sealing plate. The fourth sealing plate is fixedly connected to the third sealing plate. First connecting plates are arranged at the bottoms of the second connecting plate and the second sealing plate on both sides of the second rotating shaft. The first connecting plates are fixedly connected to the second connecting plate and the second sealing plate on both sides of the second rotating shaft respectively.
[0016] Preferably, an adjusting plate is fixedly installed below the connection cylinder. Uniformly distributed adjusting shafts are fixedly installed on both sides of the adjusting plate. The adjusting shafts are movably installed in the second connecting holes. A second limiting block is fixedly installed at the outer end of the outer side of the adjusting shaft. Uniformly distributed spring limiters are fixedly installed on the side of the second connecting plate close to the adjusting plate. The spring limiters are located outside the second connecting holes. Uniformly distributed springs are arranged between the adjusting plate and the second connecting plate. The springs are sleeved on the outer sides of the adjusting shafts and one side of the springs is located between the adjusting shafts and the spring limiters.
[0017] (III) Beneficial effects
[0018] Compared with the prior art, the present invention provides an automatic device for stir-frying Cuscuta chinensis with salt, which has the following beneficial effects:
[0019] 1. When the speed-regulating motor of the automatic device for stir-frying Cuscuta chinensis with salt starts, it will drive the speed-regulating motor pulley to rotate. When the speed-regulating motor pulley rotates, it will drive the driving belt to rotate. When the driving belt rotates, it will drive the turbine reducer pulley to rotate. When the turbine reducer pulley rotates, it will drive the turbine reducer to rotate. When the turbine reducer rotates, it will drive the stir-frying barrel shaft to rotate through the coupling. When the stir-frying barrel shaft rotates, it will drive the stir-frying barrel to rotate. The speed-regulating motor can perform stepless speed regulation to adapt to the stir-frying needs of different drugs and the needs at different stages of drug stir-frying, which is convenient for improving the quality of medicinal material stir-frying and the product quality.
[0020] 2. When the stir-frying barrel of the automatic device for stir-frying Cuscuta chinensis with salt rotates, it will drive the limit card slots to rotate. The limit card slots will drive the rollers to rotate. When the rollers rotate, they will drive the first rotating shaft to rotate between the second partition plate and the feeding partition plate, thereby maintaining the stability of the stir-frying barrel during rotation and being convenient for improving the product quality.
[0021] 3. The automated equipment for stir-frying Cuscuta chinensis with salt has an arc-shaped concave surface at the middle position of the burner. The concave surface of the burner is provided with evenly distributed burner nozzles, and evenly distributed combustion-aiding ports are arranged between the burner nozzles. Air enters between the first partition plate and the second partition plate through the air inlet on the sealing plate and reaches the burner. The combustion-aiding ports facilitate the full contact and complete combustion of the gas and air at the burner nozzles, thereby improving the thermal efficiency, saving resources, promoting the heating effect on the frying barrel, increasing the stir-frying efficiency, and thus improving the production efficiency and production capacity.
[0022] 4. When stir-frying with the automated equipment for stir-frying Cuscuta chinensis with salt, the rotation of the frying barrel will drive the turning bars inside the frying barrel to rotate along with the frying barrel. Since one side of the turning bar facing the center of the frying barrel is an arc-shaped surface, the turning bar can turn the medicinal materials at the bottom of the frying barrel when rotating along with the frying barrel, thereby preventing the medicinal materials at the bottom from accumulating and being stir-fried until they are burnt, facilitating more uniform stir-frying of the medicinal materials, and improving the product quality.
[0023] 5. When the frying barrel rotates, it will drive the second rotating shaft to rotate. When the second rotating shaft rotates, it will drive the second rotating shaft to rotate around the second rotating shaft. The second connecting rod will drive the third connecting shaft to rotate around the second rotating shaft. The third connecting shaft will drive the connecting cylinder to rotate around the second rotating shaft. The connecting cylinder will drive the stir-frying plate to rotate around the connecting cylinder. When the connecting cylinder rotates, it will turn the medicinal materials in the middle and at the edge of the frying barrel, thereby facilitating the uniform heating of the medicinal materials.
[0024] 6. When the stir-frying plate turns the medicinal materials, the medicinal materials will give a resistance to the stir-frying plate. Depending on the quantity of the medicinal materials, it will cause the stir-frying plate to drive the connecting cylinder to deflect around the third connecting shaft. When the connecting cylinder deflects on the third connecting shaft, the connecting cylinder will drive the adjusting plate to rotate. The adjusting plate will drive the adjusting shaft to move in the second connecting hole and compress the spring between one side of the adjusting plate and the second connecting plate, thereby providing a reaction force to the adjusting plate, causing the adjusting plate to drive the connecting cylinder to return to its original state and tend to be stable, realizing the dynamic adjustment of the stir-frying, thereby preventing the medicinal materials from being damaged during stir-frying and improving the product quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 It is a schematic diagram of the main structure of the present invention;
[0026] Figure 2 It is a schematic diagram of the internal structure of the main body of the present invention;
[0027] Figure 3 It is a schematic diagram of the structure of the loading and unloading assembly of the present invention;
[0028] Figure 4 It is a schematic diagram of the structure of the heating assembly of the present invention;
[0029] Figure 5Schematic structural diagram of the rotating component of the present invention;
[0030] Figure 6 Schematic structural diagram of the frying barrel of the present invention;
[0031] Figure 7 Schematic connection diagram of the adjustment component and the frying component of the present invention;
[0032] Figure 8 Schematic structural diagram of the adjustment component of the present invention;
[0033] Figure 9 Schematic structural diagram of the second connecting plate of the present invention;
[0034] Figure 10 Schematic structural diagram of the frying component of the present invention.
[0035] In the figure: 100, connecting component; 101, top plate; 102, smoke exhaust hood; 103, first partition board; 104, second partition board; 105, third partition board; 106, blanking partition board; 107, first connection hole; 108, sealing plate; 109, air inlet; 110, first connecting rod; 111, first connection ring; 112, first connection shaft; 113, cover plate; 200, loading and unloading component; 201, movable door; 202, second connection shaft; 203, handle; 204, discharge hopper; 205, sealing and limiting plate; 206, first limiting block; 300, heating component; 301, ventilation plate; 302, ventilation opening; 303, burner; 304, burner nozzle; 305, combustion support opening; 400, rotating component; 401, frying barrel; 402, limiting card slot; 403, roller; 404, first rotating shaft; 405, turning bar; 406, frying barrel shaft; 407, coupling; 408, turbine reducer; 409, turbine reducer belt pulley; 410, transmission belt; 411, speed regulating motor; 412, speed regulating motor belt pulley; 500, adjustment component; 501, second rotating shaft; 502, second connecting rod; 503, third connection shaft; 504, first sealing plate; 505, first connecting plate; 506, second connecting plate; 507, second sealing plate; 508, third sealing plate; 509, fourth sealing plate; 510, second connection hole; 511, fifth sealing plate; 600, frying component; 601, connecting cylinder; 602, frying plate; 603, adjustment plate; 604, adjustment shaft; 605, second limiting block; 606, spring; 607, spring limiter. Detailed implementation manners
[0036] 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.
[0037] Please refer to Figures 1 to 10 , an automated device for stir-frying Cuscuta chinensis, comprising a connection component 100, a loading and unloading component 200, a heating component 300, a rotating component 400, an adjusting component 500 and a stir-frying component 600. The connection component 100 is used to connect each component. The loading and unloading component 200 is used for loading and unloading the stir-fried medicinal materials. The heating component 300 is used to heat the medicinal materials. The rotating component 400 is used to stir-fry the medicinal materials. The adjusting component 500 and the stir-frying component 600 are used to promote the stir-frying of the medicinal materials. The connection component 100 includes a top plate 101, on which a smoke exhaust hood 102 is fixedly installed. On both sides below the smoke exhaust hood 102, a first partition plate 103 and a second partition plate 104 are respectively fixedly connected. On both sides below the top plate 101, a sealing plate 108 is respectively fixedly installed. The first partition plate 103 and the second partition plate 104 are respectively fixedly connected to the sealing plate 108. The sealing plate 108 is evenly provided with air inlets 109 at the lower part between the first partition plate 103 and the second partition plate 104. A third partition plate 105 is fixedly installed on the first partition plate 103. On one side below the top plate 101, a blanking partition plate 106 is fixedly installed. The blanking partition plate 106 is provided with two symmetrically distributed first connection holes 107.
[0038] The rotating component 400 includes a frying barrel 401 and a turbo reducer 408. On one side of the frying barrel 401, a frying barrel shaft 406 is fixedly installed. On the other side of the frying barrel 401, a limit card slot 402 is fixedly installed. The frying barrel shaft 406 is movably connected to the first partition plate 103. The limit card slot 402 is located between the second partition plate 104 and the blanking partition plate 106. Below the limit card slot 402, a roller 403 is movably connected. The roller 403 fits with the limit card slot 402. In the middle of the roller 403, a first rotating shaft 404 is fixedly installed. The two ends of the first rotating shaft 404 are respectively movably connected to the second partition plate 104 and the blanking partition plate 106. Inside the frying barrel 401, uniformly distributed turning strips 405 are provided. The side of the turning strip 405 facing the center of the frying barrel 401 is an arc surface. The turbo reducer 408 is fixedly installed on the third partition plate 105.
[0039] The adjusting assembly 500 and the stir-frying assembly 600 are located in the frying barrel 401. The adjusting assembly 500 includes a second rotating shaft 501. The second rotating shaft 501 is located at the center of the frying barrel 401 and is fixedly connected to the frying barrel 401. Two mirror-symmetrical second connecting rods 502 are fixedly installed on both sides of the second rotating shaft 501. A third connecting shaft 503 is fixedly installed between the two second connecting rods 502 on each side. A connecting cylinder 601 is movably connected to the third connecting shaft 503. Two symmetrically distributed frying plates 602 are provided on the connecting cylinder 601.
[0040] One first connecting rod 110 is fixedly installed at each end of one side of the upper part of the smoke exhaust hood 102. A first connecting ring 111 is fixedly installed above the first connecting rod 110. A first connecting shaft 112 is movably installed between the two first connecting rings 111. The first connecting shaft 112 is fixedly connected to a cover plate 113. The cover plate 113 is located above the smoke exhaust hood 102.
[0041] The loading and unloading assembly 200 includes a movable door 201. The lower part of the movable door 201 is semi-circular, and the upper part of the movable door 201 is rectangular. A handle 203 is fixedly installed at the middle position of the movable door 201. Two second connecting shafts 202 are fixedly installed on both sides of the upper part of the movable door 201. The second connecting shafts 202 are movably installed in the first connecting holes 107. A discharge hopper 204 is fixedly provided below the movable door 201. The discharge hopper 204 is fixedly installed on the lower material partition plate 106. A sealing and limiting plate 205 is provided on each side of the movable door 201. The sealing and limiting plate 205 is movably installed on the lower material partition plate 106. A first limiting block 206 is provided below the sealing and limiting plate 205. The first limiting block 206 is fixedly installed on the lower material partition plate 106.
[0042] The heating assembly 300 includes a ventilation plate 301. The ventilation plate 301 is located at the middle position between the first partition plate 103 and the second partition plate 104. Uniformly distributed ventilation openings 302 are formed on the ventilation plate 301. A burner 303 is fixedly installed above the ventilation plate 301. The burner 303 is located below the frying barrel 401. The middle position of the burner 303 is an arc-shaped concave surface. Uniformly distributed burner nozzles 304 are provided on the concave surface of the burner 303. Uniformly distributed combustion-aiding openings 305 are provided between the burner nozzles 304.
[0043] A coupling 407 is provided between the turbine reducer 408 and the frying barrel shaft 406. One end of the coupling 407 is fixedly connected to the turbine reducer 408, and the other end of the coupling 407 is fixedly connected to the frying barrel shaft 406. A turbine reducer pulley 409 is movably connected to one side of the turbine reducer 408. The turbine reducer pulley 409 is movably connected to a transmission belt 410. A speed-regulating motor 411 is movably connected below the transmission belt 410. The speed-regulating motor 411 is movably connected to a speed-regulating motor pulley 412.
[0044] On both sides of the second connecting rod 502, a first sealing plate 504 is fixedly connected respectively. The side of the first sealing plate 504 close to the stir-frying plate 602 is arc-shaped. On the outer side of the first sealing plate 504, a second connecting plate 506 is fixedly connected. Uniformly distributed second connecting holes 510 are formed in the second connecting plate 506. A second sealing plate 507 is arranged on the outer side of the second connecting plate 506. A fifth sealing plate 511 is fixedly installed respectively between both sides of the second connecting plate 506 and the second sealing plate 507.
[0045] Above the side of the first sealing plate 504 close to the stir-frying plate 602, a third sealing plate 508 is arranged. Between the two third sealing plates 508, it is movably connected with the connecting cylinder 601. Both ends of the third sealing plate 508 are fixedly connected with the first sealing plate 504. Above the second connecting plate 506 and the second sealing plate 507, a fourth sealing plate 509 is fixedly installed. The fourth sealing plate 509 is fixedly connected with the third sealing plate 508. At the bottom of the second connecting plate 506 and the second sealing plate 507 on both sides of the second rotating shaft 501, a first connecting plate 505 is arranged. The first connecting plate 505 is fixedly connected with the second connecting plate 506 and the second sealing plate 507 on both sides of the second rotating shaft 501 respectively.
[0046] Below the connecting cylinder 601, an adjusting plate 603 is fixedly installed. On both sides of the adjusting plate 603, uniformly distributed adjusting shafts 604 are fixedly installed respectively. The adjusting shafts 604 are movably installed in the second connecting holes 510. At the outer end of the outer side of the adjusting shaft 604, a second limiting block 605 is fixedly installed. On the side of the second connecting plate 506 close to the adjusting plate 603, uniformly distributed spring limiters 607 are fixedly installed. The spring limiters 607 are located outside the second connecting holes 510. Between the adjusting plate 603 and the second connecting plate 506, uniformly distributed springs 606 are arranged. The springs 606 are sleeved on the outer side of the adjusting shafts 604 and one side of the springs 606 is located between the adjusting shafts 604 and the spring limiters 607.
[0047] In use, first put the medicinal materials into the frying cylinder 401 from the blanking partition plate 106 for feeding. Specifically, first tilt the blanking partition plate 106 upward, rotate the two sealing limit plates 205 on the blanking partition plate 106 to the two sides of the movable door 201 without contacting the movable door 201, drive the movable door 201 to rotate around the second connecting shaft 202 by pulling the handle 203, so as to open the movable door 201, pour the dodder medicinal materials into the frying cylinder 401 from the blanking partition plate 106, pull the handle 203 again to drive the movable door 201 to rotate around the second connecting shaft 202, so as to close the movable door 201, and then rotate the sealing limit plates 205 on both sides of the movable door 201, so that the sealing limit plates 205 fix both sides of the movable door 201 and the sealing limit plates 205 are located above the first limit block 206, and restore the equipment to its original position state. At this time, the movable door 201 seals the blanking partition plate 106 and the frying cylinder 401 to complete the feeding.
[0048] Then rotate the cover plate 113 above the smoke exhaust hood 102 around the first connecting shaft 112, so that the upper part of the smoke exhaust hood 102 is opened. At this time, start the speed regulating motor 411. When the speed regulating motor 411 starts, it will drive the speed regulating motor pulley 412 to rotate. When the speed regulating motor pulley 412 rotates, it will drive the transmission belt 410 to rotate. When the transmission belt 410 rotates, it will drive the turbine reducer pulley 409 to rotate. When the turbine reducer pulley 409 rotates, it will drive the turbine reducer 408 to rotate. When the turbine reducer 408 rotates, it will drive the frying cylinder shaft 406 to rotate through the coupling 407. When the frying cylinder shaft 406 rotates, it will drive the frying cylinder 401 to rotate. The speed regulating motor 411 can perform stepless speed regulation to adapt to the frying needs of different drugs and the needs of different periods during the frying of drugs, which is convenient for improving the frying quality of medicinal materials and the product quality.
[0049] When the frying cylinder 401 rotates, it will drive the limit card slot 402 to rotate. The limit card slot 402 will drive the roller 403 to rotate. When the roller 403 rotates, it will drive the first rotating shaft 404 to rotate between the second partition plate 104 and the blanking partition plate 106, so as to maintain the stability of the frying cylinder 401 during rotation and facilitate improving the product quality.
[0050] After the frying barrel 401 rotates, the burner 303 is turned on, so that the burner nozzles 304 on the burner 303 burn to heat the frying barrel 401 above the burner 303. Since the middle position of the burner 303 is an arc-shaped concave surface, the burner nozzles 304 are evenly distributed on the concave surface of the burner 303, and the combustion-aiding ports 305 are evenly distributed between the burner nozzles 304. Air enters between the first partition 103 and the second partition 104 from the air inlet 109 on the sealing plate 108 and reaches the burner 303. The combustion-aiding ports 305 facilitate the full contact and full combustion of the gas and air at the burner nozzles 304, thereby improving the thermal efficiency, saving resources, promoting the heating effect of the frying barrel 401, improving the frying efficiency, thus improving the production efficiency and increasing the production capacity.
[0051] During frying, the rotation of the frying barrel 401 will drive the turning bars 405 inside the frying barrel 401 to rotate along with the frying barrel 401. Since the side of the turning bar 405 facing the center of the frying barrel 401 is an arc-shaped surface, the turning bar 405 can turn the medicinal materials at the bottom of the frying barrel 401 when rotating along with the frying barrel 401, thereby preventing the medicinal materials at the bottom from accumulating and being overcooked, facilitating more uniform frying of the medicinal materials, and improving the product quality.
[0052] When the frying barrel 401 rotates, it will drive the second rotating shaft 501 to rotate. When the second rotating shaft 501 rotates, it will drive the second rotating shaft 501 to rotate around the second rotating shaft 501. The second connecting rod 502 will drive the third connecting shaft 503 to rotate around the second rotating shaft 501. The third connecting shaft 503 will drive the connecting cylinder 601 to rotate around the second rotating shaft 501. The connecting cylinder 601 will drive the frying plate 602 to rotate around the connecting cylinder 601. When the connecting cylinder 601 rotates, it will turn the medicinal materials in the middle and at the edge of the frying barrel 401, thereby facilitating the uniform heating of the medicinal materials.
[0053] When the frying plate 602 turns the medicinal materials, the medicinal materials will give a resistance to the frying plate 602. Depending on the quantity of the medicinal materials, it will cause the frying plate 602 to drive the connecting cylinder 601 to deflect around the third connecting shaft 503. When the connecting cylinder 601 deflects on the third connecting shaft 503, the connecting cylinder 601 will drive the adjusting plate 603 to rotate. The adjusting plate 603 will drive the adjusting shaft 604 to move in the second connecting hole 510 and compress the spring 606 between one side of the adjusting plate 603 and the second connecting plate 506, thereby providing a reaction force to the adjusting plate 603, causing the adjusting plate 603 to drive the connecting cylinder 601 to return to its original state and tend to be stable, realizing the dynamic adjustment of frying, thereby preventing the medicinal materials from being damaged during frying and improving the product quality.
[0054] The first sealing plate 504, the first connecting plate 505, the second sealing plate 507, the third sealing plate 508, the fourth sealing plate 509 and the fifth sealing plate 511 can prevent the medicinal materials from entering the adjusting assembly 500 and the frying assembly 600 during frying, affecting the adjusting effect of the frying of the adjusting assembly 500 and the frying assembly 600.
[0055] When the frying of the medicinal materials is completed, first turn off the burner 303, then stop the speed regulating motor 411 from working. After the frying barrel 401 cools down, pull the handle 203 to drive the movable door 201 to rotate around the second connecting shaft 202, so as to open the movable door 201, and the medicinal materials can be taken out from the discharge hopper 204 to complete the blanking.
[0056] 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 automated device for frying salt dodder seeds, comprising a connecting component (100), a loading and unloading component (200), a heating component (300), a rotating component (400), an adjusting component (500) and a stir-frying component (600), wherein the connecting component (100) is used to connect the various components, the loading and unloading component (200) is used to load and unload the stir-fried medicinal materials, the heating component (300) is used to heat the medicinal materials, the rotating component (400) is used to stir-fry the medicinal materials, and the adjusting component (500) and the stir-frying component (600) are used to promote the frying of the medicinal materials, characterized in that: The connecting assembly (100) comprises a top plate (101), a smoke exhaust hood (102) is fixedly mounted on the top plate (101), a first partition plate (103) and a second partition plate (104) are fixedly connected to the two sides below the smoke exhaust hood (102), a sealing plate (108) is fixedly mounted on the two sides below the top plate (101), the first partition plate (103) and the second partition plate (104) are fixedly connected to the sealing plate (108), the sealing plate (108) is located between the first partition plate (103) and the second partition plate (104), and air inlets (109) are evenly provided at the lower part, a third partition plate (105) is fixedly mounted on the first partition plate (103), a material discharge partition plate (106) is fixedly mounted on one side below the top plate (101), and two symmetrically distributed first connecting holes (107) are provided on the material discharge partition plate (106); The rotating assembly (400) includes a stir-frying tube (401) and a turbine reducer (408). A stir-frying tube shaft (406) is fixedly installed on one side of the stir-frying tube (401). A limit slot (402) is fixedly installed on the other side of the stir-frying tube (401). The stir-frying tube shaft (406) is movably connected to the first partition (103). The limit slot (402) is located between the second partition (104) and the unloading partition (106). A roller (403) is movably connected below the limit slot (402). The roller (403) is matched with the limit slot (402), a first rotating shaft (404) is fixedly installed in the middle of the roller (403), two ends of the first rotating shaft (404) are respectively movably connected to the second partition (104) and the unloading partition (106), and evenly distributed flipping strips (405) are provided in the stir-frying tube (401), and the flipping strips (405) are arc-shaped on one side facing the center of the stir-frying tube (401), and the turbine reducer (408) is fixedly installed on the third partition (105); The adjusting component (500) and the stir-frying component (600) are located in the stir-frying tube (401), and the adjusting component (500) includes a second rotating shaft (501), and the second rotating shaft (501) is located at the center of the stir-frying tube (401) and is fixedly connected to the stir-frying tube (401), and two mirror-symmetrical second connecting rods (502) are fixedly installed on both sides of the second rotating shaft (501), and a third connecting shaft (503) is fixedly installed between the two second connecting rods (502) on each side, and a connecting tube (601) is movably connected to the third connecting shaft (503), and two symmetrically distributed stir-frying plates (602) are arranged on the connecting tube (601).
2. The automated equipment for frying salt dodder seeds according to claim 1, characterized in that: A first connecting rod (110) is fixedly installed at both ends of one side of the upper part of the smoke exhaust hood (102), a first connecting ring (111) is fixedly installed above the first connecting rod (110), a first connecting shaft (112) is movably installed between the two first connecting rings (111), the first connecting shaft (112) is fixedly connected to a cover plate (113), and the cover plate (113) is located above the smoke exhaust hood (102).
3. The automated equipment for frying salt dodder seeds according to claim 1, characterized in that: The loading and unloading assembly (200) comprises a movable door (201), the lower part of the movable door (201) is semicircular, the upper part of the movable door (201) is rectangular, a handle (203) is fixedly installed in the middle position of the movable door (201), a second connecting shaft (202) is fixedly installed on both sides of the upper part of the movable door (201), and the second connecting shaft (202) is movably installed in the first connecting hole (107), a discharge hopper (204) is fixedly provided below the movable door (201), and the discharge hopper (204) is fixedly installed on the unloading baffle (106), a sealing limit plate (205) is provided on both sides of the movable door (201), and the sealing limit plate (205) is movably installed on the unloading baffle (106), and a first limit block (206) is provided below the sealing limit plate (205), and the first limit block (206) is fixedly installed on the unloading baffle (106).
4. The automated equipment for frying salt dodder seeds according to claim 1, characterized in that: The heating assembly (300) comprises a ventilation plate (301), the ventilation plate (301) being located at a middle position between the first partition plate (103) and the second partition plate (104), the ventilation plate (301) being provided with evenly distributed ventilation openings (302), a burner (303) being fixedly mounted above the ventilation plate (301), the burner (303) being located below the stir-frying tube (401), the middle position of the burner (303) being an arc-shaped concave surface, the concave surface of the burner (303) being provided with evenly distributed burner nozzles (304), and evenly distributed combustion-supporting openings (305) being provided between the burner nozzles (304).
5. The automated equipment for frying salt dodder seeds according to claim 1, characterized in that: A coupling (407) is provided between the turbine reducer (408) and the stir-fried tube shaft (406); one end of the coupling (407) is fixedly connected to the turbine reducer (408), and the other end of the coupling (407) is fixedly connected to the stir-fried tube shaft (406); one side of the turbine reducer (408) is movably connected to a turbine reducer pulley (409); the turbine reducer pulley (409) is movably connected to a transmission belt (410); a speed regulating motor (411) is movably connected below the transmission belt (410); and the speed regulating motor (411) is movably connected to a speed regulating motor pulley (412).
6. The automated equipment for frying salt dodder seeds according to claim 1, characterized in that: A first sealing plate (504) is fixedly connected to both sides of the second connecting rod (502), and the first sealing plate (504) is arc-shaped on one side close to the stir-frying plate (602). A second connecting plate (506) is fixedly connected to the outer side of the first sealing plate (504), and the second connecting plate (506) is provided with evenly distributed second connecting holes (510). A second sealing plate (507) is provided on the outer side of the second connecting plate (506), and a fifth sealing plate (511) is fixedly installed between the second connecting plate (506) and both sides of the second sealing plate (507).
7. The automated equipment for frying salt dodder seeds according to claim 6, characterized in that: A third sealing plate (508) is provided above the first sealing plate (504) near the stir-frying plate (602), and the two third sealing plates (508) are movably connected to the connecting tube (601), and the two ends of the third sealing plate (508) are respectively fixedly connected to the first sealing plate (504), and a fourth sealing plate (509) is fixedly installed above the second connecting plate (506) and the second sealing plate (507), and the fourth sealing plate (509) is fixedly connected to the third sealing plate (508), and a first connecting plate (505) is provided at the bottom of the second connecting plate (506) and the second sealing plate (507) on both sides of the second rotating shaft (501), and the first connecting plate (505) is respectively fixedly connected to the second connecting plate (506) and the second sealing plate (507) on both sides of the second rotating shaft (501).
8. The automated equipment for frying salt dodder seeds according to claim 7, characterized in that: An adjustment plate (603) is fixedly installed below the connecting tube (601), and evenly distributed adjustment shafts (604) are fixedly installed on both sides of the adjustment plate (603), and the adjustment shaft (604) is movably installed in the second connecting hole (510). A second limit block (605) is fixedly installed on the outer end of the adjustment shaft (604), and an evenly distributed spring stopper (607) is fixedly installed on the side of the second connecting plate (506) close to the adjustment plate (603), and the spring stopper (607) is located on the outer side of the second connecting hole (510). An evenly distributed spring (606) is provided between the adjustment plate (603) and the second connecting plate (506), and the spring (606) is sleeved on the outer side of the adjustment shaft (604), and one side of the spring (606) is located between the adjustment shaft (604) and the spring stopper (607).