A high-efficiency continuous marshmallow calender forming device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGDONG SWEET BEST FOOD CO LTD
- Filing Date
- 2026-05-25
- Publication Date
- 2026-08-07
AI Technical Summary
[0003]传统的高效连续式棉花糖压延成型设备在对棉花糖进行压延成型时,棉花糖经出糖器排出后呈蓬松发散状态,其形态松散、宽窄不均且易偏移,由于没有对应的聚拢导向装置,蓬松的棉花糖从出糖器排出后,无法得到有效居中规整,极易出现进料偏斜、左右偏移的情况,导致棉花糖进入压延机的压辊时受力不均,进而产生压延厚度不一致、边缘挤裂、溢边起毛等问题,严重影响压延成品的规整度和一致性
本发明提供一种高效连续式棉花糖压延成型设备,通过导料组件和调节组件相配合,能够实现对不同蓬松度的棉花糖进行柔性居中聚拢,避免硬性挤压造成棉花糖边缘破损、变形,并且通过第一螺杆、U 型升降架、第一齿条和第一齿轮与导料组件联动,可灵活调节导流板的间距和第一弹簧的弹性预紧力度,适配不同规格棉花糖的加工需求,导流板靠近出糖器一端的第一倾斜面能够引导棉花糖顺畅进入导流区域,避免进料卡顿、偏斜,移动面板上的导向栓对限位板起到精准滑动限位作用,保障限位板和导流板调节过程平稳无偏移,整体结构协同工作,实现棉花糖的精准居中聚拢和灵活尺寸调节,确保棉花糖平稳送入压延机进行连续压延成型,有效提升压延成品的规整度和一致性,降低设备卡料、物料损耗的概率,减轻工作人员的操作强度,提高设备连续运行的稳定性和高效性;
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Figure CN122515367A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of food processing machinery technology, and in particular to a high-efficiency continuous cotton candy calendering and forming equipment. Background Technology
[0002] The high-efficiency continuous cotton candy calendering equipment is the core forming unit of the industrial-grade fully automatic cotton candy production line. After the cotton candy material has been boiled and aerated, it is continuously rolled, stretched and shaped by multiple sets of precision rollers to make cotton candy with uniform thickness and stable texture in sheet or strip shape. Then, it is continuously cut, cooled and de-sticked, realizing continuous, large-scale and standardized production from raw materials to finished products.
[0003] Traditional high-efficiency continuous cotton candy calendering equipment produces cotton candy that is fluffy and dispersed after being discharged from the candy outlet. This fluffy cotton candy is loose, uneven in width, and prone to deviation. Due to the lack of a corresponding gathering and guiding device, the fluffy cotton candy cannot be effectively centered and shaped after being discharged from the candy outlet. This easily leads to feeding deviation and lateral deviation, resulting in uneven force on the pressure rollers of the calender when the cotton candy enters the calender. Consequently, problems such as inconsistent calendering thickness, edge cracking, and edge overflow and fuzzing occur, seriously affecting the regularity and consistency of the calendered product.
[0004] Therefore, it is necessary to provide an efficient continuous cotton candy calendering and molding equipment to solve the above-mentioned technical problems. Summary of the Invention
[0005] The technical problem solved by this invention is to provide a highly efficient continuous cotton candy calendering and forming equipment that can centrally gather and guide cotton candy, adjust the gathering spacing and elasticity to adapt to different fluffy cotton candies, and automatically clean the guide plate.
[0006] To solve the above-mentioned technical problems, the present invention provides a high-efficiency continuous cotton candy calendering and forming equipment, comprising: a conveyor seat, a calender, and a sugar outlet. The calender is fixedly installed on the top of the conveyor seat, and the sugar outlet is fixedly installed on the top of the conveyor seat. A mounting frame is provided on the top of the conveyor seat, and the mounting frame is located between the calender and the sugar outlet. A material gathering and guiding mechanism is provided inside the mounting frame. The material gathering and guiding mechanism includes a material guiding component and an adjusting component. The material guiding component is used to centrally gather cotton candies of different fluffiness, and the adjusting component is used to adjust the spacing of the material guiding component.
[0007] Preferably, the material guiding assembly includes a first motor, multiple movable panels, and multiple guide plates. The first motor is fixedly mounted on the top of the mounting frame. A connecting main cylinder is fixedly mounted on the output shaft of the first motor. A connecting secondary cylinder is rotatably mounted on the top of the mounting frame. Three double-ended lead screws are provided at the ends of the connecting main cylinder and the connecting secondary cylinder that are close to each other. A rectangular slot is opened at the end of the double-ended lead screw near the first motor, and a rectangular insert is fixedly mounted at the end of the double-ended lead screw away from the first motor. The multiple movable panels are slidably mounted in the mounting frame, and a connecting plate is fixedly mounted on one outer wall of each of the multiple movable panels. The top of the device extends out of the mounting bracket and is threadedly connected to the double-ended lead screw. The connecting plate is slidably connected to the mounting bracket. Limiting plates are slidably installed on one outer wall of each of the multiple movable panels, and second screws are rotatably installed on one outer wall of each of the multiple movable panels. The limiting plates are threadedly connected to the second screws. First guide rods are slidably installed through each of the multiple movable panels and the multiple limiting plates. Multiple guide plates are respectively fixedly installed on the ends of the multiple first guide rods that are close to each other. A first spring is sleeved on the outside of the first guide rod, and the two ends of the first spring are respectively fixedly connected to the guide plate and the movable panel.
[0008] Preferably, each adjustment component includes multiple first screws, multiple U-shaped lifting frames, multiple first racks, and multiple first gears. The multiple U-shaped lifting frames are all disposed within the mounting frame. A first connecting arm is fixedly mounted on the top of each of the multiple U-shaped lifting frames, with the top end of the first connecting arm extending outside the mounting frame. The multiple first screws are rotatably mounted on the top of the mounting frame. The top ends of the multiple first connecting arms are threadedly connected to the multiple first screws, and a knob is fixedly mounted on the top end of each of the multiple first screws. The first connecting arms are slidably connected to the mounting frame. The multiple first racks are fixedly mounted on one outer wall of each of the multiple U-shaped lifting frames. The multiple first gears are fixedly mounted on the outer wall of each of the multiple second screws, and the first racks mesh with the first gears.
[0009] Furthermore, each of the multiple guide plates has a first inclined surface at one end near the sugar dispenser.
[0010] Furthermore, multiple guide bolts are fixedly installed on one outer wall of each of the multiple movable panels, and multiple limiting plates are slidably installed on the outside of the multiple guide bolts.
[0011] Furthermore, a support frame is fixedly installed on the top of the conveyor seat, and the mounting frame is slidably installed inside the support frame. The support frame is also provided with a cleaning mechanism for cleaning the cotton candy attached to the inner wall of the guide plate. The cleaning mechanism includes a scraping component and two sets of receiving and discharging components.
[0012] Preferably, the scraping assembly includes a second motor, a lifting slide plate, multiple scrapers, and multiple cylinders. The second motor is fixedly mounted on the top of the support frame. One end of a fourth screw is fixedly mounted on the output shaft of the second motor, and the other end of the fourth screw is rotatably mounted on the top of the support frame. The lifting slide plate is slidably mounted on one outer wall of the support frame. A second connecting arm is fixedly mounted on the top of the lifting slide plate and threadedly connected to the fourth screw. Two third racks are fixedly mounted on one outer wall of the lifting slide plate. Second gears are rotatably mounted on both outer walls of the support frame, and the third racks mesh with the second gears. Second racks are fixedly mounted on both outer walls of the mounting frame. A rack and pinion, the second rack meshing with the second gear, a plurality of fixed plates fixedly installed on the outer wall of the lifting slide near the plurality of guide plates, a plurality of scrapers respectively disposed at the bottom of the plurality of fixed plates, a plurality of cylinders respectively fixedly installed on the top of the plurality of fixed plates, and the telescopic ends of the plurality of cylinders respectively fixedly connected to the plurality of scrapers, a plurality of fixed ears fixedly installed on both sides of the plurality of fixed plates, a second guide rod slidably installed through the plurality of fixed ears, a positioning block fixedly installed at the bottom end of the plurality of second guide rods, and a second spring sleeved on the outer side of the plurality of second guide rods, the two ends of the second spring being fixedly connected to the positioning block and the fixed ears respectively.
[0013] Preferably, any set of the receiving and discharging components includes a receiving plate, a third motor, a conveyor belt, and an inclined plate. The receiving plate is slidably mounted on one outer wall of the support frame. One end of a third screw is rotatably mounted on one outer wall of the support frame. A motor mounting base is fixedly mounted on one outer wall of the support frame. The third motor is fixedly mounted on the top of the motor mounting base. The other end of the third screw is fixedly connected to the output shaft of the third motor. The receiving plate is threadedly connected to the third screw. The top of the receiving plate is provided with a first groove and a second groove, which are connected. The inclined plate is fixedly mounted in the first groove. Two rotating drums are rotatably mounted in the second groove. The conveyor belt is sleeved on the outer wall of the two rotating drums. A fourth motor is fixedly mounted in the receiving plate, and the output shaft of the fourth motor is fixedly connected to one of the rotating drums.
[0014] Furthermore, the plurality of positioning blocks are L-shaped, and the bottom end of each of the plurality of positioning blocks is provided with a second inclined surface.
[0015] Furthermore, the inner wall of the first groove is provided with a third inclined surface, and the inclined plate is in an inclined state.
[0016] Compared with related technologies, the high-efficiency continuous cotton candy calendering equipment provided by this invention has the following beneficial effects: This invention provides a high-efficiency continuous cotton candy calendering and forming equipment. Through the cooperation of the material guiding component and the adjustment component, it can flexibly center and gather cotton candies of different fluffiness, avoiding edge damage and deformation caused by hard extrusion. Furthermore, through the linkage of the first screw, U-shaped lifting frame, first rack and first gear with the material guiding component, the spacing of the guide plate and the elastic preload of the first spring can be flexibly adjusted to adapt to the processing requirements of cotton candies of different specifications. The first inclined surface of the guide plate near the candy outlet can guide the cotton candies smoothly into the guiding area, avoiding feeding jams and deviations. The guide bolts on the moving panel play a precise sliding limit role for the limiting plate, ensuring that the adjustment process of the limiting plate and the guide plate is stable and without deviation. The overall structure works in concert to achieve precise centering and gathering of cotton candies and flexible size adjustment, ensuring that the cotton candies are smoothly fed into the calender for continuous calendering and forming, effectively improving the regularity and consistency of the calendered products, reducing the probability of equipment jamming and material loss, reducing the operating intensity of the workers, and improving the stability and efficiency of continuous equipment operation. By cooperating with the scraping component and the receiving and discharging component, the scraper can adhere to the guide plate to scrape off residual material from the inner wall of the guide plate. With the second guide rod, the second spring, and the L-shaped positioning block with the second inclined surface, the scraper can rely on elastic force to closely adhere to the plate surface for flexible cleaning, ensuring thorough cleaning without scratching the guide plate body. At the same time, the placement of the receiving plate can be flexibly adjusted by the third screw driven by the third motor. The inclined plate quickly gathers the fallen residual material, and then the fourth motor drives the drum to drive the conveyor belt to automatically transport and discharge the residual material. The whole process eliminates the need for manual cleaning of the cotton candy material adhering to the inner wall of the guide plate, effectively avoiding problems such as material accumulation causing feed blockage, material adhesion and deformation, etc., greatly reducing the amount of manual cleaning work, and ensuring the stable and smooth operation of the material gathering and guiding structure for a long time. Attached Figure Description
[0017] Figure 1 A schematic diagram of the structure of the first embodiment of the high-efficiency continuous cotton candy calendering and forming equipment provided by the present invention; Figure 2 for Figure 1 The diagram shows the mounting bracket and the delivery seat separated. Figure 3 for Figure 2 The diagram shows a partial structural representation. Figure 4 for Figure 3 The diagram shows a partial structural representation. Figure 5 for Figure 4 The diagram shows the U-shaped lifting frame and the movable panel separated. Figure 6 for Figure 5 The diagram shows a cross-sectional view of the structure including the guide plate, the movable panel, the limiting plate, and the first gear. Figure 7 for Figure 4 The diagram shown depicts the main connecting cylinder, double-ended lead screw, and connecting auxiliary cylinder in a separated state. Figure 8 for Figure 7 The diagram shows a cross-sectional view of the main connecting cylinder, the double-ended lead screw, and the auxiliary connecting cylinder. Figure 9 A schematic diagram of a second embodiment of the high-efficiency continuous cotton candy calendering and forming equipment provided by the present invention; Figure 10 for Figure 9 The diagram shown illustrates the support frame and conveyor seat being separated. Figure 11 for Figure 10 The diagram shows a partial structural representation. Figure 12 for Figure 11 The diagram shows the support frame and mounting frame separated. Figure 13 for Figure 12 The diagram shows the assembly of the lifting slide, fixing plate, and scraper, among other structural components. Figure 14 for Figure 13 The diagram shows a partial structural assembly. Figure 15 for Figure 10 The diagram shows the support frame and the receiving plate separated. Figure 16 for Figure 15 The diagram shows a cross-sectional view of the receiving plate.
[0018] Labels in the diagram: 1. Conveyor seat; 2. Calender; 3. Sugar dispenser; 4. Mounting frame; 5. Moving panel; 6. Connecting auxiliary cylinder; 7. First motor; 8. Connecting main cylinder; 9. First screw; 10. Double-ended lead screw; 11. Guide plate; 12. U-shaped lifting frame; 13. First gear; 14. First rack; 15. Limiting plate; 16. First spring; 17. First guide rod; 18. Second screw; 19. Lifting slide plate; 20. Second motor; 21. Support frame; 22. Third motor; 23. Receiving plate; 24. Third screw; 25. Second rack; 26. Second gear; 27. Third rack; 28. Fourth screw; 29. Fixing plate; 30. Second guide rod; 31. Second spring; 32. Cylinder; 33. Scraper; 34. Positioning block; 35. Inclined plate; 36. Fourth motor; 37. Conveyor belt. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0020] First embodiment: Please refer to the following: Figures 1-8 In the first embodiment of the present invention, the high-efficiency continuous cotton candy calendering and forming equipment includes: a conveyor seat 1, a calender 2, and a sugar outlet 3. The calender 2 is fixedly installed on the top of the conveyor seat 1, and the sugar outlet 3 is fixedly installed on the top of the conveyor seat 1. The top of the conveyor seat 1 is provided with a mounting frame 4, which is located between the calender 2 and the sugar outlet 3. A gathering and guiding mechanism is provided inside the mounting frame 4. The gathering and guiding mechanism includes a guiding component and an adjusting component. The guiding component is used to centrally gather cotton candies of different fluffiness, and the adjusting component is used to adjust the spacing of the guiding component.
[0021] The material guiding assembly includes a first motor 7, multiple movable panels 5, and multiple guide plates 11. The first motor 7 is fixedly mounted on the top of the mounting frame 4. A connecting main cylinder 8 is fixedly mounted on the output shaft of the first motor 7. A connecting secondary cylinder 6 is rotatably mounted on the top of the mounting frame 4. Three double-ended lead screws 10 are provided at the ends of the connecting main cylinder 8 and the connecting secondary cylinder 6 that are close to each other. A rectangular slot is opened at the end of the double-ended lead screw 10 near the first motor 7, and a rectangular insert is fixedly mounted at the end of the double-ended lead screw 10 away from the first motor 7. The multiple movable panels 5 are slidably mounted inside the mounting frame 4. A connecting plate is fixedly mounted on one outer wall of each of the multiple movable panels 5. The top of the connecting plate extends to the outside of the mounting frame 4 and is threadedly connected to the double-ended lead screw 10. The connecting plate is slidably connected to the mounting frame 4. A limit plate 15 is slidably mounted on one outer wall of each of the multiple movable panels 5. A limit plate 15 is fixedly mounted on one outer wall of each of the multiple movable panels 5. Multiple guide bolts are provided, and multiple limiting plates 15 are slidably installed on the outside of the multiple guide bolts. The guide bolts play a precise sliding limiting role for the limiting plates 15, ensuring that the adjustment process of the limiting plates 15 and the guide plates 11 is smooth and without deviation. A second screw 18 is rotatably installed on one side of the outer wall of multiple movable panels 5. The limiting plates 15 are threadedly connected to the second screw 18. A first guide rod 17 is slidably installed through and on multiple movable panels 5 and multiple limiting plates 15. Multiple guide plates 11 are fixedly installed on the ends of multiple first guide rods 17 that are close to each other. The ends of multiple guide plates 11 that are close to the sugar dispenser 3 are provided with a first inclined surface. The first inclined surface can guide the cotton candy to smoothly enter the guiding area and avoid feeding jamming or deflection. A first spring 16 is sleeved on the outside of the first guide rod 17. The two ends of the first spring 16 are fixedly connected to the guide plate 11 and the movable panel 5, respectively.
[0022] Each adjustment component includes multiple first screws 9, multiple U-shaped lifting frames 12, multiple first racks 14, and multiple first gears 13. The multiple U-shaped lifting frames 12 are all housed within the mounting frame 4. A first connecting arm is fixedly mounted on the top of each U-shaped lifting frame 12, with the top of the first connecting arm extending outside the mounting frame 4. Multiple first screws 9 are rotatably mounted on the top of the mounting frame 4. The tops of the multiple first connecting arms are threadedly connected to the multiple first screws 9, and a knob is fixedly mounted on the top of each of the multiple first screws 9. The first connecting arms are slidably connected to the mounting frame 4. Multiple first racks 14 are fixedly mounted on one side of the outer wall of each of the multiple U-shaped lifting frames 12. Multiple first gears 13 are fixedly mounted on the outer wall of each of the multiple second screws 18. The first racks 14 mesh with the first gears 13. When it is necessary to center, gather, guide, and adjust the size of the cotton candy discharged from the candy dispenser 3, the knob is rotated to drive the first screws 9 to rotate, thus driving the threaded first connecting arms... The connecting arm slides vertically, and the first connecting arm drives the U-shaped lifting frame 12 to move up and down as a whole. The first rack 14 moves up and down accordingly and meshes with the first gear 13 fixed on the outer wall of the second screw 18, thereby synchronously driving the second screw 18 to rotate and achieve precise micro-adjustment of the elastic force of the first spring 16. When the second screw 18 rotates, the second screw 18 drives the limiting plate 15 to move closer to the moving panel 5. During the movement of the limiting plate 15, the elasticity of the first spring 16 drives the first guide rod 17 to slide inward. The first guide rod 17 drives the guide plate 11 fixed at the end to move inward together. At this time, the distance between the guide plate 11 and the moving panel 5 continues to increase. As the distance between the two increases, the first spring 16 is gradually stretched. The stretched first spring 16 returns to its original position and relaxes by its own elasticity. The elasticity of the first spring 16 makes the guide plate 11 form a flexible inward gathering state. When it encounters cotton candy of different widths, it can automatically retreat to avoid squeezing and breaking.
[0023] In this embodiment: When it is necessary to center, gather, guide, and adjust the size of the cotton candy discharged from the candy dispenser 3, the first motor 7 is turned on. The output shaft of the first motor 7 drives the connecting main cylinder 8 to rotate together. Synchronous transmission is achieved by interlocking the rectangular slot at one end of the double-headed screw 10 with the rectangular plug at the other end. The connecting auxiliary cylinder 6 follows and rotates in coordination. The synchronous rotation of multiple double-headed screws 10 drives the connecting plate to move horizontally. The connecting plate drives the moving panel 5 to slide within the mounting frame 4 to complete the coarse adjustment of the left and right spacing. Then, the staff turned the knob to drive the first screw 9 to rotate, which in turn caused the first connecting arm connected by the thread to slide vertically. The first connecting arm drove the U-shaped lifting frame 12 to move up and down as a whole. The first rack 14 moved up and down accordingly and meshed with the first gear 13 fixed on the outer wall of the second screw 18. This synchronously drove the second screw 18 to rotate, so as to achieve precise micro-adjustment of the elastic force of the first spring 16. When the second screw 18 rotated, the second screw 18 drove the limiting plate 15 to move closer to the moving panel 5. During the movement of the limiting plate 15, the elasticity of the first spring 16 drove the first guide rod 17 to slide inward. The first guide rod 17 drove the guide plate 11 fixed at the end to move inward together. At this time, the distance between the guide plate 11 and the moving panel 5 continued to increase. As the distance between the two increased, the first spring 16 was gradually stretched. The stretched first spring 16 returned to its original position and stretched out by its own elasticity. The elasticity of the first spring 16 made the guide plate 11 form a flexible inward gathering state. When it encountered cotton candy of different widths, it could automatically retreat to avoid squeezing and breaking. Subsequently, the fluffy cotton candy ejected by the sugar ejector 3 flows between the two guide plates 11 to complete the centering and sorting. After being gathered and sorted by the guide plates 11, the cotton candy can be smoothly and accurately fed into the calender 2 to smoothly carry out the subsequent continuous calendering and forming processing.
[0024] Second embodiment: The second embodiment of the present invention will be further described below with reference to the accompanying drawings and embodiments.
[0025] Please refer to the following: Figures 9-16 In the efficient continuous cotton candy calendering equipment provided in this embodiment, a support frame 21 is fixedly installed on the top of the conveyor seat 1, and the mounting frame 4 is slidably installed in the support frame 21. The support frame 21 is also provided with a cleaning mechanism for cleaning the cotton candy attached to the inner wall of the guide plate 11. The cleaning mechanism includes a scraping component and two sets of receiving and discharging components.
[0026] The scraping assembly includes a second motor 20, a lifting slide plate 19, multiple scrapers 33, and multiple cylinders 32. The second motor 20 is fixedly mounted on the top of the support frame 21. One end of a fourth screw 28 is fixedly mounted on the output shaft of the second motor 20, and the other end of the fourth screw 28 is rotatably mounted on the top of the support frame 21. The lifting slide plate 19 is slidably mounted on one side of the outer wall of the support frame 21. A second connecting arm is fixedly mounted on the top of the lifting slide plate 19 and is threadedly connected to the fourth screw 28. Two third racks 27 are fixedly mounted on one side of the outer wall of the lifting slide plate 19. Second gears 26 are rotatably mounted on both sides of the outer wall of the support frame 21. The third rack 27 meshes with the second gear 26. Second racks 25 are fixedly installed on both outer walls of the mounting bracket 4, meshing with the second gear 26. Multiple fixed plates 29 are fixedly installed on the outer wall of the lifting slide plate 19 near the multiple guide plates 11. Multiple scrapers 33 are respectively located at the bottom of the multiple fixed plates 29. Multiple cylinders 32 are respectively fixedly installed on the top of the multiple fixed plates 29, and the telescopic ends of the multiple cylinders 32 are respectively fixedly connected to the multiple scrapers 33. Multiple fixed ears are fixedly installed on both outer walls of the multiple fixed plates 29, and second guide rods 30 are slidably installed through and on each of the multiple fixed ears. Each rod 30 has a fixed positioning block 34 at its bottom end. Multiple positioning blocks 34 are L-shaped, and each positioning block 34 has a second inclined surface at its bottom end. Multiple second guide rods 30 have second springs 31 sleeved on their outer sides. The two ends of the second springs 31 are fixedly connected to the positioning blocks 34 and the fixing ears, respectively. When the scraping assembly is started, the second motor 20 is turned on first. The second motor 20 drives the fourth screw 28 to rotate. The fourth screw 28 drives the lifting slide plate 19 to descend along one side of the outer wall of the support frame 21. When the lifting slide plate 19 moves, it drives the third racks 27 fixed on both sides to descend synchronously. The third racks 27 mesh with the second gear 26, thereby driving... The second gear 26 rotates, and then meshes with the second rack 25 to drive the mounting frame 4 and the lifting slide plate 19 to move in opposite directions, raising the mounting frame 4 to a certain height. At this time, the positioning block 34 first contacts the guide plate 11 and is squeezed, which drives the second guide rod 30 to slide upward. The second spring 31 is compressed. Relying on the elastic force of the second spring 31, the scraper 33 is driven to move closer to each other through the second inclined surface. Subsequently, the scraper 33 can closely adhere to the inner wall of the guide plate 11. Then, the cylinder 32 is activated. The telescopic end of the cylinder 32 pushes the scraper 33 to move in the direction of the guide plate 11, and the scraper 33 scrapes off the cotton candy residue on the inner wall of the guide plate 11.
[0027] Each set of receiving and discharging components includes a receiving plate 23, a third motor 22, a conveyor belt 37, and an inclined plate 35. The receiving plate 23 is slidably mounted on one side of the outer wall of the support frame 21. One end of the third screw 24 is rotatably mounted on one side of the outer wall of the support frame 21. A motor mounting base is fixedly mounted on one side of the outer wall of the support frame 21. The third motor 22 is fixedly mounted on the top of the motor mounting base. The other end of the third screw 24 is fixedly connected to the output shaft of the third motor 22. The receiving plate 23 is threadedly connected to the third screw 24. The top of the receiving plate 23 has a first groove and a second groove, which are connected. The inner wall of the first groove has a third inclined surface. The inclined plate 35 is fixedly mounted in the first groove and is in an inclined state. Two rotating drums are installed in the groove. A conveyor belt 37 is fitted onto the outer wall of the two rotating drums. A fourth motor 36 is fixedly installed inside the receiving plate 23. The output shaft of the fourth motor 36 is fixedly connected to one of the rotating drums. When the third motor 22 is started, it drives the third screw 24 to rotate. The third screw 24 is threadedly engaged with the receiving plate 23, causing the receiving plate 23 to slide along one side of the outer wall of the support frame 21 and be adjusted to be directly below the mounting frame 4. The cotton candy residue falls onto the inclined plate 35 and slides into the conveyor belt 37. When the fourth motor 36 is started, it drives one of the rotating drums to rotate. The rotating drum drives the conveyor belt 37 fitted onto the outer wall to rotate, transporting the residue that has slid into the second groove to the outside of the receiving plate 23, thus completing the receiving and discharge of the residue.
[0028] In this embodiment: When the scraping assembly is started, the second motor 20 is turned on first. The second motor 20 drives the fourth screw 28 to rotate. The fourth screw 28 drives the lifting slide plate 19 to descend along one side of the outer wall of the support frame 21. When the lifting slide plate 19 moves, it drives the third rack 27 fixed on both sides to descend synchronously. The third rack 27 meshes with the second gear 26, thereby driving the second gear 26 to rotate. The second gear 26 then meshes with the second rack 25 to achieve reverse movement of the mounting frame 4 and the lifting slide plate 19, so that the mounting frame 4 is raised to a certain height. At this time, the positioning block 34 first contacts the guide plate 11 and is squeezed, which drives the second guide rod 30 to slide upward. The second spring 31 is compressed. Relying on the elastic force of the second spring 31, the scraper 33 is driven to move closer to each other through the second inclined surface. The subsequent scraper 33 can fit tightly against the inner wall of the guide plate 11. Start the third motor 22, which drives the third screw 24 to rotate. The third screw 24 is threadedly engaged with the receiving plate 23, causing the receiving plate 23 to slide along the outer wall of one side of the support frame 21 and be adjusted to be directly below the mounting frame 4. Then start the cylinder 32. The telescopic end of the cylinder 32 pushes the scraper 33 to move in the direction of the guide plate 11. The scraper 33 scrapes off the cotton candy residue on the inner wall of the guide plate 11. The cotton candy residue falls onto the inclined plate 35 and slides into the conveyor belt 37. Start the fourth motor 36, which drives one of the drums to rotate. The drum drives the conveyor belt 37, which is sleeved on the outer wall, to rotate, transporting the residue that has slid into the second groove to the outside of the receiving plate 23, thus completing the receiving and discharge of the residue.
[0029] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.
Claims
1. A high-efficiency continuous cotton candy calendering and forming equipment, comprising: The system comprises a conveyor base, a calender, and a sugar dispenser. The calender is fixedly installed on top of the conveyor base, and the sugar dispenser is fixedly installed on top of the conveyor base. The system is characterized in that a mounting frame is provided on top of the conveyor base, located between the calender and the sugar dispenser. A material-gathering and guiding mechanism is provided within the mounting frame. The material-gathering and guiding mechanism includes a guiding component and an adjusting component. The guiding component is used to centrally gather cotton candies of different fluffiness, and the adjusting component is used to adjust the spacing of the guiding component.
2. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 1, characterized in that, The material guiding assembly includes a first motor, multiple movable panels, and multiple guide plates. The first motor is fixedly mounted on the top of the mounting frame. A connecting main cylinder is fixedly mounted on the output shaft of the first motor. A connecting secondary cylinder is rotatably mounted on the top of the mounting frame. Three double-ended lead screws are provided at the ends of the connecting main cylinder and the connecting secondary cylinder that are close to each other. A rectangular slot is opened at the end of the double-ended lead screw near the first motor, and a rectangular insert is fixedly mounted at the end of the double-ended lead screw away from the first motor. The multiple movable panels are slidably mounted in the mounting frame. A connecting plate is fixedly mounted on one outer wall of each of the multiple movable panels. The top of the connecting plate... The end extends out of the mounting frame and is threadedly connected to the double-ended lead screw. The connecting plate is slidably connected to the mounting frame. Limiting plates are slidably installed on one outer wall of each of the multiple movable panels, and second screws are rotatably installed on one outer wall of each of the multiple movable panels. The limiting plates are threadedly connected to the second screws. First guide rods are slidably installed through each of the multiple movable panels and the multiple limiting plates. Multiple guide plates are respectively fixedly installed on the ends of the multiple first guide rods that are close to each other. A first spring is sleeved on the outside of the first guide rod, and the two ends of the first spring are respectively fixedly connected to the guide plate and the movable panel.
3. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 2, characterized in that, Each adjustment component includes multiple first screws, multiple U-shaped lifting frames, multiple first racks, and multiple first gears. The multiple U-shaped lifting frames are all housed within the mounting frame. A first connecting arm is fixedly mounted on the top of each of the multiple U-shaped lifting frames, with the tip of the first connecting arm extending outside the mounting frame. The multiple first screws are rotatably mounted on the top of the mounting frame. The tips of the multiple first connecting arms are threadedly connected to the multiple first screws, and a knob is fixedly mounted on the tip of each of the multiple first screws. The first connecting arms are slidably connected to the mounting frame. The multiple first racks are fixedly mounted on one outer wall of each of the multiple U-shaped lifting frames. The multiple first gears are fixedly mounted on the outer wall of each of the multiple second screws, and the first racks mesh with the first gears.
4. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 2, characterized in that, Each of the multiple guide plates has a first inclined surface at one end near the sugar dispenser.
5. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 2, characterized in that, Multiple guide bolts are fixedly installed on one outer wall of each of the multiple movable panels, and multiple limiting plates are slidably installed on the outside of the multiple guide bolts.
6. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 3, characterized in that, A support frame is fixedly installed on the top of the conveyor seat, and the mounting frame is slidably installed inside the support frame. The support frame is also provided with a cleaning mechanism for cleaning the cotton candy attached to the inner wall of the guide plate. The cleaning mechanism includes a scraping component and two sets of receiving and discharging components.
7. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 6, characterized in that, The scraping assembly includes a second motor, a lifting slide plate, multiple scrapers, and multiple cylinders. The second motor is fixedly mounted on the top of the support frame. One end of a fourth screw is fixedly mounted on the output shaft of the second motor, and the other end of the fourth screw is rotatably mounted on the top of the support frame. The lifting slide plate is slidably mounted on one outer wall of the support frame. A second connecting arm is fixedly mounted on the top of the lifting slide plate and is threadedly connected to the fourth screw. Two third racks are fixedly mounted on one outer wall of the lifting slide plate. Second gears are rotatably mounted on both outer walls of the support frame, and the third racks mesh with the second gears. Second racks are fixedly mounted on both outer walls of the mounting frame. The second rack meshes with the second gear. Multiple fixing plates are fixedly installed on the outer wall of the lifting slide plate near the multiple guide plates. Multiple scrapers are respectively disposed at the bottom of the multiple fixing plates. Multiple cylinders are respectively fixedly installed on the top of the multiple fixing plates, and the telescopic ends of the multiple cylinders are respectively fixedly connected to the multiple scrapers. Multiple fixing ears are fixedly installed on both outer walls of the multiple fixing plates. A second guide rod is slidably installed through the multiple fixing ears. A positioning block is fixedly installed at the bottom end of the multiple second guide rods. A second spring is sleeved on the outer side of the multiple second guide rods. The two ends of the second spring are respectively fixedly connected to the positioning block and the fixing ear.
8. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 7, characterized in that, Each set of the receiving and discharging components includes a receiving plate, a third motor, a conveyor belt, and an inclined plate. The receiving plate is slidably mounted on one outer wall of the support frame. One end of a third screw is rotatably mounted on one outer wall of the support frame. A motor mounting base is fixedly mounted on one outer wall of the support frame. The third motor is fixedly mounted on the top of the motor mounting base. The other end of the third screw is fixedly connected to the output shaft of the third motor. The receiving plate is threadedly connected to the third screw. The top of the receiving plate has a first groove and a second groove, which are connected. The inclined plate is fixedly mounted in the first groove. Two rotating drums are rotatably mounted in the second groove. The conveyor belt is sleeved on the outer wall of the two rotating drums. A fourth motor is fixedly mounted in the receiving plate, and the output shaft of the fourth motor is fixedly connected to one of the rotating drums.
9. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 7, characterized in that, The plurality of positioning blocks are L-shaped, and each of the plurality of positioning blocks has a second inclined surface at its bottom end.
10. The high-efficiency continuous cotton candy calendering and forming equipment according to claim 8, characterized in that, The inner wall of the first groove is provided with a third inclined surface, and the inclined plate is in an inclined state.