Bread fixed-area hemp sprinkling and recycling conveying equipment
By designing a bread-making equipment for targeted sesame application and recycling, and utilizing a motor-driven synchronous belt and slider system, targeted sesame application and efficient recycling were achieved, solving the problems of sesame bouncing and splashing, and improving production efficiency and hygiene.
Patent Information
- Application Number
- CN202511456172.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-13
- Publication Date
- 2025-11-28
AI Technical Summary
In existing technologies, sesame seeds tend to bounce and splatter during the sprinkling process, leading to waste, hygiene problems, and low production efficiency.
A bread-making equipment for targeted sesame application and recycling was designed, including a sesame-spreading component and a scraping component. It utilizes a motor-driven synchronous belt and slider system to achieve targeted sesame application and efficient recycling.
It effectively reduces sesame waste and splashing, improves production efficiency, and enhances hygiene.
Smart Images

Figure CN121014698A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of food conveying devices, and particularly relates to a bread region-specific sesame sprinkling and recycling conveying device. BACKGROUND
[0002] In the automatic production line of bread, cakes and other foods, it is a common process to sprinkle granular auxiliary materials such as sesame seeds and melon seeds. At present, the industry mostly adopts the method of setting a vibrating distributor or a rotating distributor plate above the conveying belt to sprinkle sesame on the moving bread. Since the sesame sprinkling area can use a corresponding receiving plate to receive the falling sesame, but the commonly used vibrating screen type or rotating drum type method is to "shake" or "throw" the sesame out by mechanical force. These sesame has a certain initial speed when falling. When it hits the surface of the bread, especially the bread that has been sprinkled with a layer of sesame, or directly hits the smooth surface of the conveying belt, it will bounce and splash obviously, randomly jumping in all directions, and is extremely easy to be left on the conveying belt and stick to it during the circulation. The residual sesame not only causes serious waste of raw materials. In addition, the scattered sesame will eventually fall into the equipment or the ground, breed pests, deteriorate the sanitary environment, and need to be cleaned frequently, affecting the overall production efficiency. SUMMARY
[0003] The main purpose of the present application is to provide a bread region-specific sesame sprinkling and recycling conveying device, which can effectively solve the problems in the background art.
[0004] To achieve the above-mentioned purpose, the technical scheme adopted by the present application is: The utility model provides a kind of bread area region is sprinkled sesame and recycling conveying equipment, including conveyor, the conveyor one side is equipped with sesame scattering component, the conveyor other side is equipped with material scraping component, driving assembly is installed on the material scraping component, the conveyor shell lower side is fixedly installed with guide box, the material scraping component includes fixedly installed between the conveyor shell fixed frame, fixedly installed with guide shell in the middle position of fixed frame, the installation seat is fixedly installed with second motor in the guide shell rear side lower end, the fixed shaft is fixedly provided with in the guide shell front side lower end, the second synchronous wheel is fixedly provided with in the fixed shaft and the second motor rotating shaft outer side, the second synchronous belt is sleeved in the second synchronous wheel outer side, the guide shell inner side is slidably provided with sliding block, the clamping sleeve is fixedly provided with in the sliding block lower end, the movable mouth is set in the guide shell lower side corresponding clamping sleeve position, the four groups of gyro wheel are rotatably provided with in the sliding block lower side, the sliding slot is set in the guide shell front and rear side inner wall corresponding sliding block upper side position, the movable rod is rotatably provided with in the sliding block front and rear side, the round stick frame is fixedly provided with in the two groups of movable rod opposite side, the round ring is fixedly provided with in the two groups of movable rod lower end and sliding block front and rear end, double-hook spring is sleeved between the round ring on the movable rod and corresponding sliding block one side round ring, the guide slot is set in the guide shell two sides inner wall corresponding two groups of round stick frame position, the square groove is set in the guide shell two sides inner wall corresponding two groups of guide slot one side inclined portion, the limit block is slidably provided with in the square groove inner side, reset spring is fixedly provided with between the limit block and the square groove.
[0005] Preferably, the movable rod is rotatably provided with on the side of the two groups of movable rods, the scraping plate is fixedly provided with at one end of the rotating rod, the convex strip is fixedly provided with at the lower end of the rotating rod, the elastic sheet is attached to the upper end of the connection between the movable rod and the convex strip, two groups of fixed pegs are formed in the side of the elastic sheet close to the rotating rod, and the positioning port is fixedly provided with at the upper end of the rotating rod corresponding to the two groups of fixed pegs.
[0006] Preferably, the driving assembly includes two groups of shaft cylinders fixedly provided on the fixed frame, the transmission roller is rotatably provided in the inner side of the two groups of shaft cylinders, the fixed roller is fixedly provided on the front and rear sides of the conveyor shell, the transmission belt is sleeved on the outer side of the two groups of fixed rollers corresponding to the two groups of fixed rollers, the third synchronous wheel is fixedly provided on one side of one of the two groups of transmission rollers and one side of the conveyor rotating shaft, and the third synchronous belt is sleeved on the outer side of the two groups of third synchronous wheels.
[0007] Preferably, the sesame scattering assembly comprises two groups of side plates fixedly arranged on the conveyor shell, a sesame falling box is arranged between the two groups of side plates, a recessed roller is arranged on the inner side of the sesame falling box close to the corresponding rotating arrangement, a sliding opening is arranged on the inner side of each of the two groups of side plates, a sesame falling frame is slidingly arranged on the inner side of the two groups of sliding openings, a transmission rod is rotatably arranged between the two groups of side plates close to the two sides, a first synchronous wheel is fixedly arranged on the outer side of each of the two groups of transmission rods, a first synchronous belt is sleeved on the outer side of the two groups of first synchronous wheels, a push plate is fixedly arranged on one side of the sesame falling frame, a connecting plate is fixedly arranged between the two groups of side plates close to the lower side of the sesame falling frame, a discharging chute is fixedly arranged on one end of the two groups of side plates corresponding to the side of the connecting plate, a bread tray is placed on the conveyor belt, and two groups of first motors are fixedly arranged on one side of the two groups of side plates.
[0008] Preferably, the contact positions of the two sides of the guide shell with the movable rods are arranged in an arc shape, the rotating shaft of the second motor is connected with the second synchronous wheel through the mounting seat, the sliding block is slidingly arranged with the guide shell and the sliding groove, the sleeve is fixedly connected with the second synchronous belt through the movable opening, one group of the two groups of movable rods is arranged in an inclined manner, the two groups of round rod frames are arranged in opposite directions on the two groups of movable rods, the two groups of round rod frames are respectively inserted into the two groups of guide grooves, one group of the two groups of double-hook springs is in a stretched state, the two ends of the two groups of guide grooves are arranged in an inclined manner, and the two groups of limiting blocks are respectively arranged at the inclined positions away from the guide grooves.
[0009] Preferably, the rotating rod rotates in one direction along the movable rod, the elastic sheet is fixedly connected with the movable rod through bolts, and the elastic sheet is sleeved on the positioning opening on one side.
[0010] Preferably, one group of the two groups of transmission rollers connected with the third synchronous wheel penetrates through the conveyor shell, and the middle position of the transmission belt is higher than the conveyor belt.
[0011] Preferably, the recessed roller is attached to the inner wall of the sesame falling box, the push plate of the sesame falling frame is designed as an opening, the sesame falling frame is fixedly connected with the two groups of first synchronous belts respectively on the front side and the rear side, the push plate is attached to the connecting plate, and the rotating shafts of the two groups of first motors are fixedly connected with the recessed roller and the transmission rod respectively.
[0012] Compared with the prior art, the present application has the following beneficial effects: 1、The bread tray is placed on the conveyor belt, when the bread tray moves to the lower side of the sesame scattering assembly, start two groups of first motor, a group of drive groove roller rotation, make the sesame in the sesame falling box fall into the groove of the groove roller, the sesame falling into the groove of the groove roller falls into the falling sesame frame, the falling sesame falls into the bread in the bread tray through the round mouth, while the other group of first motor drives the transmission rod and the first synchronous wheel to rotate, cooperates with the other group of first synchronous wheel to drive the first synchronous belt to rotate forward and backward, makes the falling sesame frame move to the next group of work after moving back to the corresponding bread tray, while the falling sesame frame is working back and forth, the sesame caught in the falling sesame frame falls from the opening on one side to the receiving plate under the inertia of the falling sesame frame quickly returning, while the next falling sesame frame moves with the bread tray, the push plate pushes the sesame to the discharge chute to discharge, to carry out the preliminary collection work, reduce waste.
[0013] 2、When the conveyor works, the rotating shaft of the conveyor drives another group of third synchronous wheel and transmission roller through the connected third synchronous wheel and third synchronous belt, the rotating transmission roller drives two groups of transmission belt to rotate along two groups of transmission roller and two groups of fixed roller, when the bread tray moves to the position of two groups of transmission belt, the bread tray is conveyed to the upper side of two groups of transmission belt, so that the bread tray and the conveyor belt have a certain height difference, which is convenient for subsequent cleaning work of the conveyor belt.
[0014] 3、The second motor drives the connected second synchronous wheel to rotate, cooperates with another group of second synchronous wheel to drive the second synchronous belt to rotate forward and backward, so that the connected sleeve and the slider move back and forth in the guide shell, the slider pushes two groups of movable rods and round rod frame, when the inclined group of movable rods moves to the edge away from the limit block, the movable rod and the round rod frame fall to the lower side of the guide groove under the pull of the double hook spring, the movable rod is lowered to the edge of the conveyor belt, and then is pulled back by the reciprocating slider to move to the other edge position, because the edge position of the guide groove is inclined, the limit block is pulled upward to retract into the square groove, the reset spring is extruded, until the round rod frame moves to the upper side of the guide groove, the movable rod is tilted again, realizes that the scraper falls on the conveyor belt when scraping, then moves past, realizes that the sesame falls into the guide box on the same side, avoids that the sesame is pushed away, collects the sesame sticking on the conveyor belt and reduces unnecessary waste caused by splashing.
[0015] 4、When the slider moves, the movable rod and the scraper are pulled to scrape the sesame on the conveyor, until the convex strip at the lower end of the rotating rod contacts the side of the guide shell, under the elastic action of the rotating rod, the scraper and the spring piece, the scraper rotates along the movable rod to shake off the sesame sticking on the surface when the scraper is scraped. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 This is a schematic diagram of the overall structure of a bread-making equipment for regional application of hemp fiber and recycling according to the present invention. Figure 2 This is a partial cross-sectional view of the sesame seed collection box of a bread-feeding and recycling conveying device according to the present invention. Figure 3 This is a schematic diagram of the sesame-sprinkling component structure of a bread-sprinkling and recycling conveying device according to the present invention. Figure 4 This is a schematic diagram of the scraping component and drive component of a bread-making area-specific linseed coating and recycling conveying device according to the present invention; Figure 5 This is a partial structural diagram of the scraping component and the drive component of a bread-making, fixed-area linseed-drenching and recycling conveying device according to the present invention. Figure 6 This invention relates to a bread-making equipment for targeted application of hemp fiber and its recycling and reuse. Figure 5 Enlarged structural diagram of section A in the middle; Figure 7 This is a schematic diagram of the bottom structure of the scraping component of a bread-making, fixed-area linseed-drenching and recycling conveying device according to the present invention; Figure 8 This is a schematic diagram of the internal structure of the scraping component of a bread-making, fixed-area linseed-drenching and recycling conveying device according to the present invention; Figure 9 This invention relates to a bread-making equipment for targeted application of hemp fiber and its recycling and reuse. Figure 8 Enlarged structural diagram of section B; Figure 10 This is a partial structural diagram of the scraping component of a bread-making, fixed-area linseed coating and recycling conveying device according to the present invention.
[0017] In the diagram: 1. Conveyor; 2. Sesame spreading assembly; 21. Side plate; 22. Sesame dropping box; 23. Grooved roller; 24. Slide opening; 25. Sesame dropping frame; 26. Transmission rod; 27. First synchronous pulley; 28. First synchronous belt; 29. Push plate; 210. Receiving plate; 211. Discharge chute; 212. Bread tray; 213. First motor; 3. Scraper assembly; 31. Fixing frame; 32. Guide shell; 33. Mounting base; 34. Second motor; 35. Fixed shaft; 36. Second synchronous pulley; 37. Second synchronous belt; 38. Slider; 39. Compression sleeve; 310. Movable opening; 311. Roller; 312. Slide groove; 313. Movable rod; 314. Round bar frame; 315. Ring; 316. Double hook spring; 317. Guide groove; 318. Square groove; 319. Limiting block; 320. Return spring; 321. Rotating rod; 322. Scraper; 323. Protruding strip; 324. Spring piece; 325. Fixing bolt; 326. Positioning opening; 4. Drive assembly; 41. Shaft cylinder; 42. Transmission roller; 43. Fixed roller; 44. Transmission belt; 45. Third synchronous pulley; 46. Third synchronous belt; 5. Guide box. Detailed Implementation
[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.
[0019] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship as a relative relationship of orientation or position, and are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.
[0020] Please see Figures 1-10An embodiment of the present invention provides a bread-making equipment for targeted sesame application and recycling, comprising a conveyor 1, a sesame-spreading component 2 installed on one side of the conveyor 1, a scraping component 3 installed on the other side of the conveyor 1, a drive component 4 installed on the scraping component 3, a guide box 5 fixedly installed on the lower side of the outer shell of the conveyor 1, the scraping component 3 including a fixed frame 31 fixedly installed between the outer shells of the conveyor 1, a guide shell 32 fixedly installed in the middle of the fixed frame 31, a mounting base 33 fixedly installed at the lower rear end of the guide shell 32, a second motor 34 fixedly installed at the lower end of the mounting base 33, a fixed shaft 35 fixedly installed at the lower front end of the guide shell 32, second synchronous pulleys 36 fixedly installed on the outer sides of both the fixed shaft 35 and the rotating shaft of the second motor 34, a second synchronous belt 37 sleeved on the outer sides of the two sets of second synchronous pulleys 36, a slider 38 slidably installed on the inner side of the guide shell 32, a retaining sleeve 39 fixedly installed at the lower end of the slider 38, and the guide shell... A movable opening 310 is provided on the lower side of the guide shell 32 corresponding to the position of the sleeve 39. Four sets of rollers 311 are rotatably arranged on the lower side of the slider 38. Slide grooves 312 are provided on the front and rear inner walls of the guide shell 32 corresponding to the upper position of the slider 38. Movable rods 313 are rotatably arranged on the front and rear sides of the slider 38. Round rod frames 314 are fixedly arranged on opposite sides of the two sets of movable rods 313. Rings 315 are fixedly arranged at the lower ends of the two sets of movable rods 313 and the front and rear ends of the slider 38. A double hook spring 316 is sleeved between the ring 315 on the movable rod 313 and the ring 315 on the corresponding side of the slider 38. Guide grooves 317 are provided on both sides of the inner walls of the guide shell 32 corresponding to the positions of the two sets of round rod frames 314. Square grooves 318 are provided on the inclined side of both sides of the inner walls of the guide shell 32 corresponding to the two sets of guide grooves 317. Limit blocks 319 are slidably arranged inside the square grooves 318. A return spring 320 is fixedly arranged between the limit blocks 319 and the square grooves 318.
[0021] The guide shell 32 has arc-shaped contact positions with the movable rod 313 on both sides. The rotating shaft of the second motor 34 passes through the mounting base 33 and is connected to the second synchronous wheel 36. The slider 38 is slidably arranged with the guide shell 32 and the slide groove 312. The ferrule 39 passes through the movable opening 310 and is fixedly connected to the second synchronous belt 37. One of the two sets of movable rods 313 is inclined. The two sets of round rod frames 314 are arranged in opposite directions on the two sets of movable rods 313. The two sets of round rod frames 314 are respectively inserted into the two sets of guide grooves 317. One of the two sets of double hook springs 316 is in a stretched state. Both ends of the two sets of guide grooves 317 are inclined. The two sets of limit blocks 319 are respectively arranged at the inclined positions of the two sets of guide grooves 317 that are far apart.
[0022] The second motor 34 drives the connected second synchronous pulley 36 to rotate, which in turn drives the second synchronous belt 37 to rotate in both directions. This causes the connected sleeve 39 and slider 38 to move back and forth in the guide shell 32. The slider 38 pushes the two sets of movable rods 313 and the round bar frame 314. When the inclined set of movable rods 313 moves to the edge away from the limit block 319, the movable rods 313 and the round bar frame 314 fall to the lower side of the guide groove 317 under the pull of the double hook spring 316. The movable rods 313 are then lowered to the edge of the conveyor belt of the conveyor 1 and are then reciprocated by the slider. When block 38 is pulled back and moved to the other edge, since the edge of guide groove 317 is inclined, it will be pulled upward to push limit block 319 back into square groove 318, squeezing reset spring 320 until round bar frame 314 moves to the upper position of guide groove 317, and movable rod 313 tilts up again, so that scraper 322 scrapes the material and it falls onto conveyor belt of conveyor 1. When scraper 322 is sent, it will tilt up and move over, so that sesame seeds fall into guide box 5 on the same side, avoiding sesame seeds being pushed away, collecting sesame seeds stuck on conveyor belt and reducing splashing that causes unnecessary waste.
[0023] Each of the two sets of movable rods 313 has a rotating rod 321 rotatably mounted on one side. A scraper 322 is fixedly mounted on one end of the rotating rod 321, and a protrusion 323 is fixedly mounted on the lower end of the rotating rod 321. A spring piece 324 is attached to the upper end of the connection between the movable rod 313 and the protrusion 323. Two sets of fixing bolts 325 are opened on the side of the spring piece 324 near the rotating rod 321. A positioning port 326 is fixedly mounted on the upper end of the rotating rod 321 at the position corresponding to the two sets of fixing bolts 325.
[0024] The rotating rod 321 rotates unidirectionally along the movable rod 313. The spring piece 324 is fixedly connected to the movable rod 313 by bolts. The fixing bolt 325 on one side of the spring piece 324 is fitted into the positioning port 326.
[0025] When the slider 38 moves, it pulls the movable rod 313 and the scraper 322 to scrape the sesame seeds on the conveyor 1. When the scraper 322 moves outside the conveyor belt, the protrusion 323 at the lower end of the rotating rod 321 contacts one side of the guide shell 32. Under the elastic action of the pulled rotating rod 321, scraper 322 and spring sheet 324, the scraper 322 rotates along the movable rod 313 and shakes, shaking off the sesame seeds stuck to the surface when the scraper 322 is scraped.
[0026] The drive assembly 4 includes two sets of shaft cylinders 41 fixedly mounted on the fixed frame 31. A drive roller 42 is rotatably mounted inside each set of shaft cylinders 41. Two sets of fixed rollers 43 are fixedly mounted on the front and rear sides of the outer shell of the conveyor 1. A drive belt 44 is sleeved on one side of each set of drive rollers 42 and on the outer side of the corresponding two sets of fixed rollers 43. A third synchronous pulley 45 is fixedly mounted on one side of one set of drive rollers 42 and on one side of the rotating shaft of the conveyor 1. A third synchronous belt 46 is sleeved on the outer side of the two sets of third synchronous pulleys 45.
[0027] One of the two sets of drive rollers 42, which is connected to the third synchronous pulley 45, passes through the outer casing of the conveyor 1, and the middle position of the drive belt 44 is higher than the conveyor belt of the conveyor 1.
[0028] When the conveyor 1 is working, the rotating shaft of the conveyor 1 drives another set of third synchronous pulleys 45 and transmission rollers 42 to rotate through the third synchronous pulley 45 and the third synchronous belt 46. The rotating transmission rollers 42 drive two sets of transmission belts 44 to rotate along the two sets of transmission rollers 42 and the two sets of fixed rollers 43. When the bread tray 212 moves to the position of the two sets of transmission belts 44, the bread tray 212 is transported to the upper position of the two sets of transmission belts 44, so that the bread tray 212 and the conveyor belt of the conveyor 1 have a certain height difference, which facilitates the subsequent cleaning of the conveyor belt of the conveyor 1.
[0029] The sesame-spreading component 2 includes two sets of side plates 21 fixedly mounted on the outer shell of the conveyor 1. A sesame drop box 22 is installed between the two sets of side plates 21. A grooved roller 23 is rotatably mounted on the inner side of the sesame drop box 22. A sliding opening 24 is opened on the inner side of each of the two sets of side plates 21. A sesame drop frame 25 is slidably mounted on the inner side of each of the two sets of sliding openings 24. A transmission rod 26 is rotatably mounted between the two sets of side plates 21 near both sides. A first synchronous wheel 27 is fixedly mounted on the outer side of each of the two sets of transmission rods 26. A first synchronous belt 28 is sleeved on the outer side of each of the two sets of first synchronous wheels 27. A push plate 29 is fixedly mounted on one side of the sesame drop frame 25. A receiving plate 210 is fixedly mounted between the two sets of side plates 21 near the lower side of the sesame drop frame 25. A feeding slide 211 is fixedly mounted on one end of each of the two sets of side plates 21 at the position corresponding to the receiving plate 210. A bread tray 212 is placed on the conveyor belt of the conveyor 1. Two sets of first motors 213 are fixedly mounted on one side of each of the two sets of side plates 21.
[0030] The grooved roller 23 fits against the inner wall of the sesame dropping box 22. The sesame dropping frame 25 is designed with an opening corresponding to the push plate 29. The front and rear sides of the sesame dropping frame 25 are fixedly connected to two sets of first synchronous belts 28 respectively. The push plate 29 is fitted with the receiving plate 210. The rotating shafts of the two sets of first motors 213 are fixedly connected to the grooved roller 23 and the transmission rod 26 respectively.
[0031] The bread tray 212 is placed on the conveyor belt of the conveyor 1. When the bread tray 212 moves to the underside of the sesame sprinkler assembly 2, two sets of first motors 213 are started. One set drives the grooved roller 23 to rotate, causing the sesame seeds in the sesame drop box 22 to fall into the sesame drop frame 25 as the grooved roller 23 rotates. The fallen sesame seeds fall onto the bread in the bread tray 212 through the round opening. Meanwhile, the other set of first motors 213 drives the transmission rod 26 and the first synchronous pulley 27 to rotate, coordinating with the other set of first synchronous pulleys 2... 7 drives the first synchronous belt 28 to rotate back and forth, causing the sesame seed box 25 to move in relation to the bread tray 212 and then move back to cooperate with the next set of work. When the sesame seed box 25 is working back and forth, the sesame seeds caught in the sesame seed box 25 fall from the opening on one side and the push plate 29 onto the receiving plate 210 due to the inertia of the sesame seed box 25 returning quickly. When the sesame seed box 25 moves with the bread tray 212 the next time, the push plate 29 will push the sesame seeds into the discharge chute 211 for discharge, and perform preliminary collection work to reduce waste.
[0032] Working principle: In use, the bread tray 212 is placed on the conveyor belt of the conveyor 1. When the bread tray 212 moves to the underside of the sesame sprinkler assembly 2, two sets of first motors 213 are started. One set drives the grooved roller 23 to rotate, causing the sesame seeds in the sesame drop box 22 to fall into the sesame drop frame 25 as the grooved roller 23 rotates. The fallen sesame seeds fall onto the bread in the bread tray 212 through the round opening. Meanwhile, the other set of first motors 213 drives the transmission rod 26 and the first synchronous pulley 27 to rotate. In conjunction with the other set of first synchronous pulleys 27, the first synchronous belt 28 rotates back and forth, causing the sesame drop frame 25 to move relative to the bread tray 212 and then move back to cooperate with the next set of motors. When the sesame seed basket 25 reciprocates, the sesame seeds caught in the basket fall from the opening on one side and onto the receiving plate 210 due to the inertia of the basket's rapid return. The next time the basket moves with the bread tray 212, the pusher 29 pushes the sesame seeds into the discharge chute 211 for initial collection, reducing waste. Additionally, when the conveyor 1 is working, its rotating shaft drives another set of third synchronous pulleys 45 and drive rollers 42 to rotate via a connected third synchronous pulley 45 and third synchronous belt 46. The rotating drive rollers 42 drive two sets of drive belts 44 to rotate along the two sets of drive rollers 42 and two sets of fixed rollers 43. When the bread tray 212 moves to the two sets of drive belts 44... At position 4, the bread tray 212 is conveyed to the upper position of the two sets of transmission belts 44, creating a certain height difference between the bread tray 212 and the conveyor belt of conveyor 1, facilitating subsequent cleaning of the conveyor belt of conveyor 1. At the same time, the second motor 34 drives the connected second synchronous pulley 36 to rotate, cooperating with another set of second synchronous pulleys 36 to drive the second synchronous belt 37 to rotate forward and backward, causing the connected sleeve 39 and slider 38 to move back and forth in the guide shell 32. The slider 38 pushes the two sets of movable rods 313 and round bar frame 314. When the inclined set of movable rods 313 moves to the edge away from the limit block 319, the movable rods 313 and round bar frame 314 fall into the guide shell 32 under the pull of the double hook spring 316. The movable rod 313 is lowered to the edge of the conveyor belt of the conveyor 1 and then pulled back by the reciprocating slider 38 to the other edge. Since the edge of the guide groove 317 is inclined, it will be pulled upward to push the limit block 319 back into the square groove 318, squeezing the reset spring 320 until the round bar frame 314 moves to the upper side of the guide groove 317. The movable rod 313 tilts up again, so that when the scraper 322 scrapes the material, it falls onto the conveyor belt of the conveyor 1. When the scraper 322 is sent, it will tilt up and move over, so that the sesame seeds fall into the guide box 5 on the same side, avoiding the sesame seeds being pushed away, collecting the sesame seeds stuck on the conveyor belt and reducing splashing that causes unnecessary waste.Secondly, when the slider 38 moves, it pulls the movable rod 313 and the scraper 322 to scrape the sesame seeds on the conveyor 1. Until the scraper 322 moves outside the conveyor belt, the protrusion 323 at the lower end of the rotating rod 321 contacts one side of the guide shell 32. Under the elastic action of the pulled rotating rod 321, the scraper 322, and the spring sheet 324, the scraper 322 rotates along the movable rod 313 and vibrates, shaking off the sesame seeds stuck to the surface.
[0033] In this invention, the first motor 213 works in conjunction with an infrared sensor to start the incoming bread tray 212. The electrical components and connecting parts of the conveyor 1, the first motor 213, and the second motor 34 are common knowledge in the field, and their working principles are well-known technologies. The appropriate model is selected based on actual use, so they will not be explained in detail.
[0034] 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. A bread-making equipment for targeted application and recycling, comprising a conveyor (1), characterized in that: A sesame-spreading assembly (2) is installed on one side of the conveyor (1), and a scraping assembly (3) is installed on the other side of the conveyor (1). A drive assembly (4) is installed on the scraping assembly (3). A guide box (5) is fixedly installed on the lower side of the outer shell of the conveyor (1). The scraping assembly (3) includes a fixing frame (31) fixedly installed between the outer shells of the conveyor (1). A guide shell (32) is fixedly installed in the middle of the fixing frame (31). A mounting base (33) is fixedly installed at the lower rear end of the guide shell (32). (33) A second motor (34) is fixedly installed at the lower end. A fixed shaft (35) is fixedly installed at the lower front side of the guide shell (32). A second synchronous pulley (36) is fixedly installed on the outer side of both the fixed shaft (35) and the rotating shaft of the second motor (34). A second synchronous belt (37) is sleeved on the outer side of the two sets of second synchronous pulleys (36). A slider (38) is slidably installed on the inner side of the guide shell (32). A retainer (39) is fixedly installed at the lower end of the slider (38). A corresponding opening is provided on the lower side of the guide shell (32) at the position of the retainer (39). The sliding block (38) has four sets of rollers (311) rotatably mounted on its lower side. The guide shell (32) has grooves (312) on its front and rear inner walls corresponding to the upper side of the sliding block (38). The sliding block (38) has movable rods (313) rotatably mounted on its front and rear sides. The two sets of movable rods (313) have round rod frames (314) fixedly mounted on opposite sides. The lower ends of the two sets of movable rods (313) and the front and rear ends of the sliding block (38) are fixedly mounted with rings (315). The rings on the movable rods (313) are... (315) A double hook spring (316) is fitted between the ring (315) on one side of the corresponding slider (38). The inner walls on both sides of the guide shell (32) are provided with guide grooves (317) corresponding to the positions of the two sets of round rod frames (314). The inner walls on both sides of the guide shell (32) are provided with square grooves (318) on one side of the inclined part corresponding to the two sets of guide grooves (317). A limit block (319) is slidably arranged inside the square groove (318). A reset spring (320) is fixedly arranged between the limit block (319) and the square groove (318).
2. The bread-making equipment for designated area application and recycling as described in claim 1, characterized in that: Both sets of movable rods (313) are rotatably provided with a rotating rod (321) on one side. A scraper (322) is fixedly provided at one end of the rotating rod (321). A protrusion (323) is fixedly provided at the lower end of the rotating rod (321). A spring piece (324) is attached to the upper end of the connection between the movable rod (313) and the protrusion (323). Two sets of fixing bolts (325) are provided on the side of the spring piece (324) near the rotating rod (321). A positioning port (326) is fixedly provided at the upper end of the rotating rod (321) corresponding to the positions of the two sets of fixing bolts (325).
3. The bread-making equipment for designated area application and recycling as described in claim 1, characterized in that: The drive assembly (4) includes two sets of shaft cylinders (41) fixedly mounted on a fixed frame (31). A transmission roller (42) is rotatably mounted on the inner side of each of the two sets of shaft cylinders (41). Two sets of fixed rollers (43) are fixedly mounted on the front and rear sides of the outer shell of the conveyor (1). A transmission belt (44) is sleeved on one side of each of the two sets of transmission rollers (42) and the outer side of the corresponding two sets of fixed rollers (43). A third synchronous pulley (45) is fixedly mounted on one side of one of the two sets of transmission rollers (42) and the side of the rotating shaft of the conveyor (1). A third synchronous belt (46) is sleeved on the outer side of each of the two sets of third synchronous pulleys (45).
4. The bread-making equipment for designated area application and recycling as described in claim 1, characterized in that: The sesame-spreading assembly (2) includes two sets of side plates (21) fixedly mounted on the outer shell of the conveyor (1). A sesame drop box (22) is installed between the two sets of side plates (21). A grooved roller (23) is rotatably mounted on the inner side of the sesame drop box (22) close to the corresponding side plate. A sliding opening (24) is provided on the inner side of each of the two sets of side plates (21). A sesame-dropping frame (25) is slidably mounted on the inner side of each of the two sets of sliding openings (24). A transmission rod (26) is rotatably mounted on both sides of each of the two sets of side plates (21). A first [missing information] is fixedly mounted on the outer side of each of the two sets of transmission rods (26). Synchronous pulley (27), two sets of first synchronous pulleys (27) are fitted with first synchronous belts (28), a push plate (29) is fixedly installed on one side of the sesame seed frame (25), a receiving plate (210) is fixedly installed between the two sets of side plates (21) near the lower side of the sesame seed frame (25), a feeding slide (211) is fixedly installed at one end of the two sets of side plates (21) corresponding to the side of the receiving plate (210), a bread tray (212) is placed on the conveyor belt of the conveyor (1), and two sets of first motors (213) are fixedly installed on one side of the two sets of side plates (21).
5. The bread-making equipment for designated area application and recycling as described in claim 1, characterized in that: The guide shell (32) is arranged in an arc shape at the contact positions with the movable rod (313) on both sides. The rotating shaft of the second motor (34) passes through the mounting base (33) and is connected to the second synchronous wheel (36). The slider (38) is slidably arranged with the guide shell (32) and the slide groove (312). The sleeve (39) passes through the movable opening (310) and is fixedly connected to the second synchronous belt (37). One of the two sets of movable rods (313) is inclined. The two sets of round rod frames (314) are arranged in opposite directions on the two sets of movable rods (313). The two sets of round rod frames (314) are respectively inserted into the two sets of guide grooves (317). One of the two sets of double hook springs (316) is in a stretched state. Both ends of the two sets of guide grooves (317) are inclined. The two sets of limit blocks (319) are respectively arranged at the inclined positions away from the two sets of guide grooves (317) to restrict.
6. The bread-making equipment for targeted application and recycling according to claim 2, characterized in that: The rotating rod (321) rotates unidirectionally along the movable rod (313), and the spring piece (324) is fixedly connected to the movable rod (313) by bolts. The fixing bolt (325) on one side of the spring piece (324) is fitted into the positioning port (326).
7. The bread-making equipment for designated area application and recycling as described in claim 3, characterized in that: One of the two sets of drive rollers (42) connected to the third synchronous pulley (45) passes through the housing of the conveyor (1), and the middle position of the drive belt (44) is higher than the conveyor belt of the conveyor (1).
8. A bread-making area-specific rinsing and recycling conveying device according to claim 4, characterized in that: The grooved roller (23) fits against the inner wall of the sesame dropping box (22). The sesame dropping frame (25) has an open design corresponding to the push plate (29). The front and rear sides of the sesame dropping frame (25) are fixedly connected to two sets of first synchronous belts (28). The push plate (29) is fitted with the receiving plate (210). The rotating shafts of the two sets of first motors (213) are fixedly connected to the grooved roller (23) and the transmission rod (26) respectively.
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Intelligent automatic conveying device for pastry processing
CN121587305A