Imitation handmade egg tart skin forming device
By combining the tart cup moving plate and the driving finger holder, the egg tart crust can be formed in multiple stages, which solves the problems of uneven thickness and irregular edges, improves the production efficiency and quality of egg tart crust, and imitates the taste and layering of handmade tarts.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-17
- Publication Date
- 2026-03-13
AI Technical Summary
Existing egg tart crust forming devices have limited functionality, resulting in uneven crust thickness and irregular edges, which affects the forming quality and makes it difficult to meet the demand for high-quality egg tarts.
The tart shell uses a combination of a moving plate, a driving finger holder, and a rotating base. The bottom mold rotating component and the driving finger holder drive the forming finger group to perform multiple processing steps, ensuring that the shape and thickness of the tart shell are consistent, mimicking the handmade method and preserving the taste and texture.
It improves the production efficiency and quality stability of egg tart shells, reduces labor costs, and enables the production of egg tart shells of different shapes and sizes to meet the needs of large-scale production.
Smart Images

Figure CN223987615U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of imitation handmade egg tart crust equipment, specifically relating to an imitation handmade egg tart crust forming device. Background Technology
[0002] With the development of automated production technology, many companies use automated equipment to make egg tart crusts. Typically, the dough is cut into suitable shapes and placed into foil bowls, then repeatedly extruded and pre-shaped. However, some existing egg tart crust forming devices are limited in function and cannot reshape the crusts after pressing, easily leading to uneven crust thickness and irregular edges. This results in poor crust forming quality, severely impacting the appearance and taste of the egg tarts, and failing to meet consumer demand for high-quality egg tarts. Summary of the Invention
[0003] The purpose of this invention is to address the above-mentioned problems by providing a device for forming egg tart crusts in a manner similar to that of handmade tarts.
[0004] To achieve the above objectives, the present invention adopts the following technical solution: a tart shell forming device imitating handmade tart shells, comprising a tart cup moving plate, wherein the tart cup moving plate is provided with a plurality of axially distributed tart cup bottom mold seats, and both ends of the tart cup moving plate are respectively provided with horizontal conveying components. A plurality of driving finger frames are movably arranged above the tart cup moving plate, and the lower end of the driving finger frames is provided with forming finger groups corresponding one-to-one with the tart cup bottom mold seats. The end of the driving finger frames is provided with an axial driving component that enables the forming finger groups to move along the length direction of the driving finger frames. A rotating base plate is provided below the tart cup moving plate, and a bottom mold rotating component that enables the tart cup bottom mold seats to rotate circumferentially is provided inside the rotating base plate. Both the driving finger frames and the rotating base plate are moved toward the tart cup moving plate by a lifting driving component. The bottom mold base of the tart cup is rotated by a bottom mold rotation assembly, which drives the finger holder to move the forming finger assembly towards the bottom mold base, thus realizing the forming and processing of the tart shell. This greatly improves production efficiency, reduces manual operation, and lowers labor costs. At the same time, the shape and thickness of the produced tart shells are basically consistent, ensuring stable product quality. Furthermore, by changing the mold, tart shells of different shapes and sizes can be produced. The tart cup moving plate moves between the driving finger holder and the rotating base plate via a horizontal conveyor assembly. The horizontal conveyor assembly mainly uses chain operation to ensure stability during transportation and also enables mass production.
[0005] In the aforementioned imitation handmade egg tart crust forming device, the inner side of the tart cup moving plate is provided with several bottom mold mounting holes, and the tart cup bottom mold base is movably disposed within the bottom mold mounting holes. The upper end of the tart cup bottom mold base is provided with a tart cup mounting part having a tart cup placement hole, and the lower end of the tart cup bottom mold base is provided with a rotating connecting part. The tart cup placement hole is used to place the egg tart crust material to be processed, and the rotating connecting part is used to connect the bottom mold rotating assembly to drive the rotation of the tart cup bottom mold base.
[0006] In the aforementioned imitation handmade egg tart crust forming device, the driving finger frame has finger frame fixing plates at both ends, and finger frame side plates connected to the fixing plates on both sides. The fixing plates and side plates are rectangular in structure. Finger sliding plates corresponding to the fixing plates are located on the inner sides of both ends of the driving finger frame. Finger lifting seats are located at both ends of the fixing plates away from the sliding plates. This design improves the overall stability of the driving finger frame, and the finger lifting assembly controls the lifting motion of the driving finger frame.
[0007] In the aforementioned imitation handmade egg tart crust forming device, the forming finger assembly includes several single-finger drive rods movably disposed between two finger sliding plates. The lower end of each single-finger drive rod is provided with a single-finger connecting rod having several single-tart crust fingers corresponding one-to-one with the tart cup mounting portion. Both ends of the single-finger drive rods axially penetrate the finger sliding plates to the outside. One end of the driving finger frame is provided with a driving connecting plate located between the finger frame fixing plate and the finger sliding plate, and connected to the same end of the single-finger drive rod. The finger sliding plates support the single-finger drive rods but do not fix them. The same end of each single-finger drive rod is fixedly connected to the driving connecting plate, which can drive the single-finger drive rods to move synchronously. The single-tart crust finger is the first step in the forming process.
[0008] In the aforementioned imitation handmade egg tart crust forming device, the forming finger group further includes several double-finger drive rod groups movably arranged between two finger sliding plates. Each double-finger drive rod group has two double-finger drive rods. The lower end of each double-finger drive rod is provided with a double-finger connecting rod having several double-tart crust half-fingers corresponding one-to-one with the tart cup mounting part. The double-tart crust half-fingers of the two double-finger connecting rods in the same group are arranged alternately. The two ends of each double-finger drive rod axially penetrate the finger sliding plate to the outside. The two ends of each drive finger frame are provided with drive connecting plates, and one drive connecting plate is connected to the same end of one of the double-finger drive rods in the several double-finger drive rod groups, and the other drive connecting plate is connected to the same end of the other double-finger drive rod in the several double-finger drive rod groups. The double-tart crust half-finger is the second forming process. After the single-tart crust half-finger is processed, the double-tart crust half-finger is used for further processing. This multiple processing steps mimic the handmade method, preserving the texture and layers of the egg tart crust and ensuring that the product quality is close to that of handmade products. Each double-finger drive rod is equipped with a double-tart crust half-finger, so that two adjacent double-tart crust half-fingers form a set of double-tart crust fingers. Under the movement of the double-finger drive rod, the two double-tart crust half-fingers begin to separate outward or move inward. One end of one double-finger drive rod in the double-finger drive rod set is fixedly connected to one drive connecting plate, while the other end is movably connected to the remaining drive connecting plate. Similarly, one end of the other double-finger drive rod in the double-finger drive rod set is fixedly connected to another drive connecting plate, while the other end is movably connected to the remaining drive connecting plate. In this way, the two double-finger drive rods in the double-finger drive rod set can achieve staggered synchronous movement.
[0009] In the aforementioned imitation handmade egg tart crust forming device, the axial drive assembly includes a motor connecting plate located on the side of a finger lifting seat away from the finger frame fixing plate at one end of the drive finger frame, or on the side of a finger lifting seat away from the finger frame fixing plate at both ends of the drive finger frame. Both ends of the motor connecting plate are fixedly connected to the lower ends of the finger lifting seats. A finger drive plate is provided between the two finger lifting seats. Each end of the finger drive plate has a transverse sliding shaft that axially penetrates the finger frame fixing plate and is connected to the drive connecting plate. A finger drive motor with a finger ball screw connected to the middle of the finger drive plate is located on the side of the motor connecting plate away from the finger drive plate. The finger drive plate is connected to the drive connecting plate via the transverse sliding shaft, and the finger drive motor is connected to the finger drive plate via the finger ball screw. When the finger drive motor operates and drives the finger drive plate, the drive connecting plate moves accordingly.
[0010] In the aforementioned imitation handmade egg tart crust forming device, the lower end of the rotating base plate is provided with an axially arranged base plate reinforcing strip, and the inner side of the rotating base plate is provided with several hollow rotating bottom mold seats. The rotating bottom mold seats are respectively arranged on both sides of the base plate reinforcing strip. The rotating bottom mold seats are provided with a drive shaft, and the two ends of the drive shaft respectively extend axially to the outer side of the rotating bottom mold seats. The inner sides of the two ends of the rotating bottom mold seats are respectively provided with rotating bearings that contact the drive shaft. The upper end of the rotating bottom mold seats is provided with a lower mold plate connecting shaft that is connected to the outer side of the upper end of the drive shaft. The upper end of the lower mold plate connecting shaft is connected with a lower mold intermediate plate that matches the rotating connection part. The rotating connection part is axially inserted into the inner side of the lower mold intermediate plate, and the upper end of the drive shaft is provided with a rotating bottom support corresponding to the tart cup placement hole.
[0011] In the aforementioned imitation handmade egg tart crust forming device, the bottom mold rotating assembly includes a drive gear disposed at the lower end of the rotating bottom mold base and connected to the lower end of the drive shaft. Several drive gears located on one side of the bottom plate reinforcing strip mesh with each other. A transition bearing seat corresponding to the end of the bottom plate reinforcing strip is provided on the lower side of one end of the rotating bottom plate. An intermediate gear meshes with the drive gear at the lower end of the transition bearing seat of the rotating bottom plate. A synchronous pulley is provided at the lower end of the intermediate gear. A drive gear motor plate is provided at the end of the rotating bottom plate near the transition bearing seat. A rotary drive motor is provided at the lower end of the drive gear motor plate. A drive pulley connected to the rotary drive motor is provided at the upper end of the drive gear motor plate, and a synchronous belt is provided between the drive pulley and the synchronous pulley. The lower mold intermediate plate is connected to the rotating connection part. The upper end of the drive shaft is connected to the lower mold intermediate plate through the lower mold plate connecting shaft. A drive gear is installed at the lower end of the drive shaft. Several drive gears located on one side of the bottom plate reinforcing strip mesh with each other. At the same time, the outermost drive gear meshes with the intermediate gear. The intermediate gear is connected to the synchronous belt pulley. The synchronous belt pulley is connected to the drive pulley of the rotary drive motor through the synchronous belt. In this way, the intermediate gear drives the drive gear, the drive gear drives the drive shaft, the drive shaft drives the lower mold intermediate plate, and the lower mold intermediate plate drives the bottom mold base of the tower cup to rotate.
[0012] In the aforementioned imitation handmade egg tart crust forming device, the lifting drive assembly includes drive mounting plates disposed at both ends of the tart cup moving plate. An upper connector is provided at the upper end of the drive mounting plate, and an upper lifting motor is provided at the upper end of the upper connector. An upper nut plate connected to the upper ball screw of the upper lifting motor is provided at the lower end of the upper connector. The two ends of the upper nut plate away from the upper connector are connected to the upper ends of the finger lifting seats. A lower connector is provided at the lower end of the drive mounting plate, and a lower lifting motor is provided at the lower end of the lower connector. A lower nut plate connected to the lower ball screw of the lower lifting motor is provided at the upper end of the lower connector. Rotary lifting seats are respectively provided at the two ends of the lower nut plate away from the lower connector. A rotary lifting plate connected to the end of the rotary base plate is provided between the rotary lifting seats, and the lower ends of the rotary lifting seats are fixedly connected to the drive gear motor plate.
[0013] In the aforementioned imitation handmade egg tart crust forming device, a sliding rod connector is provided on the inner side of the middle part of the drive mounting plate. The upper connector, the lower connector and the sliding rod connector are provided with a sliding rod at the same end. The sliding rod axially passes through the end of the sliding rod connector. The two ends of the upper nut plate and the finger lifting seat are respectively movably connected to the sliding rod. The two ends of the lower nut plate and the rotating lifting seat are respectively movably connected to the sliding rod.
[0014] Compared with existing technologies, the advantages of this utility model are:
[0015] 1. This device ensures that each tart crust has a consistent thickness and shape through two finger processing steps, avoiding errors that may occur during manual operation, improving the product's appearance, while also preserving the texture and layers of the tart crust, ensuring that the product quality is close to that of handmade products.
[0016] 2. This device can replace a large amount of manual operation, reduce the need for workers, lower labor costs, and compared with manual production, it can process multiple egg tart shells at the same time, significantly shortening the actual production time, improving production efficiency, and meeting the needs of large-scale production. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model.
[0018] Figure 2 This is a schematic diagram of the structure of the single-layer skin finger in this utility model.
[0019] Figure 3 This is a schematic diagram of the structure of the double-tower skin half-finger in this utility model.
[0020] Figure 4 This is a schematic diagram of the rotating base plate in this utility model.
[0021] Figure 5This is a structural schematic diagram of the rotating base plate from another perspective in this utility model.
[0022] Figure 6 This is a schematic diagram of the structure of the middle plate of the lower mold in this utility model.
[0023] Figure 7 This is a schematic diagram of the structure of the tower cup moving plate in this utility model.
[0024] Figure 8 This is a schematic diagram of the structure of the bottom mold base of the tower cup in this utility model.
[0025] Figure 9 This is the utility model Figure 1 Enlarged view of the structure at point A in the middle.
[0026] Figure 10 This is a schematic diagram of the lifting drive assembly in this utility model.
[0027] In the diagram: 1. Tower cup moving plate; 11. Tower cup bottom mold base; 12. Horizontal conveying assembly; 13. Bottom mold mounting hole; 14. Tower cup mounting part; 15. Tower cup placement hole; 16. Rotating connection part; 2. Drive finger frame; 21. Finger frame fixing plate; 22. Finger frame side plate; 23. Finger sliding plate; 24. Finger lifting seat; 3. Forming finger assembly; 31. Single finger drive rod; 32. Single tower skin finger; 33. Single finger connecting rod; 34. Drive connecting plate; 35. Double finger drive rod assembly; 36. Double tower skin half finger; 37. Double finger connecting rod; 38. Axial drive assembly; 41. Motor connecting plate; 42. Finger drive plate; 43. Lateral sliding shaft; 44. Finger ball screw; 45. Finger drive motor; 5. Rotating base plate. 51. Base plate reinforcing strip, 52. Rotary bottom mold base, 53. Drive shaft, 54. Rotary bearing, 55. Lower mold plate connecting shaft, 56. Lower mold intermediate plate, 57. Rotary bottom support, 6. Bottom mold rotating assembly, 61. Drive gear, 62. Transition bearing seat, 63. Intermediate gear, 64. Synchronous belt pulley, 65. Drive gear motor plate, 66. Rotary drive motor, 67. Drive pulley, 68. Synchronous belt, 7. Lifting drive assembly, 71. Drive mounting plate, 72. Upper connector, 73. Upper lifting motor, 74. Upper ball screw, 75. Upper nut plate, 76. Lower connector, 77. Lower lifting motor, 78. Lower ball screw, 79. Lower nut plate, 81. Rotary lifting seat, 82. Rotary lifting plate, 83. Slide rod connector, 84. Slide rod component. Detailed Implementation
[0028] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0029] like Figure 1-10As shown, a tart shell forming device for imitation handmade tarts includes a tart cup moving plate 1, a plurality of tart cup bottom mold seats 11 arranged axially on the tart cup moving plate 1, horizontal conveying components 12 at both ends of the tart cup moving plate 1, a plurality of driving finger frames 2 movably arranged above the tart cup moving plate 1, forming finger groups 3 corresponding one-to-one with the tart cup bottom mold seats 11 at the lower end of the driving finger frames 2, an axial driving component 4 at the end of the driving finger frames 2 that enables the forming finger groups 3 to move along the length direction of the driving finger frames 2, a rotating base plate 5 is provided below the tart cup moving plate 1, a bottom mold rotating component 6 that enables the tart cup bottom mold seats 11 to rotate circumferentially inside the rotating base plate 5, and both the driving finger frames 2 and the rotating base plate 5 move toward the tart cup moving plate 1 through a lifting driving component 7. The bottom mold base 11 of the tart cup is rotated by the bottom mold rotating component 6, which drives the finger holder 2 to move with the forming finger group 3 towards the bottom mold base 11 of the tart cup, thereby realizing the forming and processing of the egg tart crust, which greatly improves production efficiency, reduces manual operation, and lowers labor costs. At the same time, the shape and thickness of the produced egg tart crust are basically consistent, ensuring stable product quality. Furthermore, by changing the mold, egg tart crusts of different shapes and sizes can be produced. The tart cup moving plate 1 moves between the driving finger holder 2 and the rotating base plate 5 through the horizontal conveying component 12. The horizontal conveying component 12 mainly adopts chain operation to ensure stability during transportation and also realize mass production.
[0030] Combination Figure 7 and Figure 8 As shown, the inner side of the tart cup moving plate 1 is provided with several bottom mold mounting holes 13. The tart cup bottom mold base 11 is movably disposed in the bottom mold mounting holes 13. The upper end of the tart cup bottom mold base 11 is provided with a tart cup mounting part 14 having a tart cup placement hole 15, and the lower end of the tart cup bottom mold base 11 is provided with a rotating connecting part 16. The tart cup placement hole 15 is used to place the tart crust material to be processed, and the rotating connecting part 16 is used to connect the bottom mold rotating assembly 6 to drive the rotation of the tart cup bottom mold base 11.
[0031] Combination Figures 1-3 As shown, the driving finger frame 2 has finger frame fixing plates 21 at both ends, and finger frame side plates 22 connected to the finger frame fixing plates 21 on both sides. The finger frame fixing plates 21 and the finger frame side plates 22 have a rectangular structure. Finger sliding plates 23 corresponding to the finger frame fixing plates 21 are provided on the inner sides of both ends of the driving finger frame 2. Finger lifting seats 24 are provided on both ends of the side of the finger frame fixing plates 21 away from the finger sliding plates 23. The design structure of the driving finger frame 2 improves the overall stability, and the finger lifting assembly 24 is used to control the lifting and lowering movements of the driving finger frame 2.
[0032] The forming finger assembly 3 includes several single-finger drive rods 31 movably disposed between two finger sliding plates 23. The lower end of each single-finger drive rod 31 is provided with a single-finger connecting rod 33 having several single-tower skin fingers 32 corresponding one-to-one with the tower cup mounting part 14. Both ends of the single-finger drive rods 31 axially penetrate the finger sliding plates 23 to the outside. One end of the driving finger frame 2 is provided with a driving connecting plate 34 located between the finger frame fixing plate 21 and the finger sliding plate 23 and connected to the same end of the single-finger drive rod 31. The finger sliding plates 23 support the single-finger drive rods 31 but do not fix them. The same end of each single-finger drive rod 31 is fixedly connected to the driving connecting plate 34. The driving connecting plate 34 can drive the single-finger drive rods 31 to move synchronously. The single-tower skin finger 32 is the first step in the forming process.
[0033] Specifically, the forming finger assembly 3 also includes several double-finger drive rod assemblies 35 movably disposed between two finger sliding plates 23. Each double-finger drive rod assembly 35 has two double-finger drive rods 36. The lower end of each double-finger drive rod 36 is provided with a double-finger connecting rod 38 having several double-tower skin half-fingers 37 corresponding one-to-one with the tower cup mounting part 14. The double-tower skin half-fingers 37 of the two double-finger connecting rods 38 in the same group are arranged alternately. The two ends of the double-finger drive rods 36 axially penetrate the finger sliding plates 23 to the outside. The two ends of the driving finger frame 2 are respectively provided with driving connecting plates 34, and one of the driving connecting plates 34 is connected to the same end of one of the double-finger drive rods 36 of the several double-finger drive rod assemblies 35, and the other driving connecting plate 34 is connected to the same end of the other double-finger drive rod 36 of the several double-finger drive rod assemblies 35. The double-tart crust half-finger 37 is the second forming process. After the single-tart crust finger 32 is processed, the double-tart crust half-finger 37 is used for further processing. This multiple processing steps can imitate the handmade method, preserving the texture and layers of the egg tart crust and ensuring that the product quality is close to that of handmade products. Each double-finger drive rod 36 is equipped with a double-tart crust half-finger 37. Thus, two adjacent double-tart crust half-fingers 37 form a set of double-tart crust fingers. Under the movement of the double-finger drive rod 36, the two double-tart crust half-fingers 37 begin to separate outward or move inward. One end of one double-finger drive rod 36 in the double-finger drive rod group 35 is fixedly connected to one of the drive connecting plates 34, while the other end is movably connected to the remaining drive connecting plate 34. Similarly, one end of the other double-finger drive rod 36 in the double-finger drive rod group 35 is fixedly connected to another drive connecting plate 34, while the other end is movably connected to the remaining drive connecting plate 34. In this way, the two double-finger drive rods 36 in the double-finger drive rod group 35 can achieve staggered synchronous movement.
[0034] Furthermore, the axial drive assembly 4 includes a motor connecting plate 41 located on the side of one end of the drive finger frame 2 away from the finger frame fixing plate 21, or on the side of both ends of the drive finger frame 24 away from the finger frame fixing plate 21. Both ends of the motor connecting plate 41 are fixedly connected to the lower ends of the finger lifting seats 24. A finger drive plate 42 is provided between the two finger lifting seats 24. Both ends of the finger drive plate 42 are provided with transverse sliding shafts 43 that axially penetrate the finger frame fixing plate 21 and are connected to the drive connecting plate 34. A finger drive motor 45 with a finger ball screw 44 connected to the middle of the finger drive plate 42 is provided on the side of the motor connecting plate 41 away from the finger drive plate 42. The finger drive plate 42 is connected to the drive connecting plate 34 via the transverse sliding shafts 43, and the finger drive motor 45 is connected to the finger drive plate 42 via the finger ball screw 44. When the finger drive motor 45 operates and drives the finger drive plate 42, the drive connecting plate 34 moves accordingly.
[0035] Combination Figure 1 , Figure 4 , Figure 5 , Figure 6 and Figure 9 As shown, the lower end of the rotating base plate 5 is provided with an axially arranged base plate reinforcing strip 51. The inner side of the rotating base plate 5 is provided with several hollow rotating bottom mold seats 52. The rotating bottom mold seats 52 are respectively arranged on both sides of the base plate reinforcing strip 51. The rotating bottom mold seat 52 is provided with a drive shaft 53. The two ends of the drive shaft 53 are respectively axially extended to the outer side of the rotating bottom mold seat 52. The inner side of the two ends of the rotating bottom mold seat 52 is provided with a rotating bearing 54 that contacts the drive shaft 53. The upper end of the rotating bottom mold seat 52 is provided with a lower mold plate connecting shaft 55 that is connected to the outer side of the upper end of the drive shaft 53. The upper end of the lower mold plate connecting shaft 55 is connected with a lower mold intermediate plate 56 that matches the rotating connecting part 16. The rotating connecting part 16 is axially inserted into the inner side of the lower mold intermediate plate 56. The upper end of the drive shaft 53 is provided with a rotating bottom support 57 that corresponds to the tower cup placement hole 15.
[0036] The bottom mold rotating assembly 6 includes a drive gear 61 located at the lower end of the rotating bottom mold base 52 and connected to the lower end of the drive shaft 53. Several drive gears 61 located on one side of the bottom plate reinforcing strip 51 mesh with each other. A transition bearing seat 62 corresponding to the end of the bottom plate reinforcing strip 51 is provided on the lower side of one end of the rotating bottom plate 5. An intermediate gear 63 is provided at the lower end of the transition bearing seat 62 and meshes with the drive gear 61 at the end of the rotating bottom plate 5 near the transition bearing seat 62. A synchronous pulley 64 is provided at the lower end of the intermediate gear 63. A drive gear motor plate 65 is provided at the end of the rotating bottom plate 5 near the transition bearing seat 62. A rotary drive motor 66 is provided at the lower end of the drive gear motor plate 65. A drive pulley 67 connected to the rotary drive motor 66 is provided at the upper end of the drive gear motor plate 65. A synchronous belt 68 is provided between the drive pulley 67 and the synchronous pulley 64. The lower mold intermediate plate 56 is connected to the rotating connection part 16. The upper end of the drive shaft 53 is connected to the lower mold intermediate plate 56 through the lower mold plate connecting shaft 55. A drive gear 61 is installed at the lower end of the drive shaft 53. Several drive gears 61 located on one side of the bottom plate reinforcing strip 51 mesh with each other. At the same time, the outermost drive gear 61 meshes with the intermediate gear 63. The intermediate gear 63 is connected to the synchronous pulley 64. The synchronous pulley 64 is connected to the drive pulley 67 of the rotary drive motor 66 through the synchronous belt 68. In this way, the intermediate gear 63 drives the drive gear 61, the drive gear 61 drives the drive shaft 53, the drive shaft 53 drives the lower mold intermediate plate 56, and the lower mold intermediate plate 56 drives the bottom mold base 11 of the tower cup to rotate.
[0037] like Figure 10 As shown, the lifting drive assembly 7 includes a drive mounting plate 71 disposed at both ends of the tower cup moving plate 1. The upper end of the drive mounting plate 71 is provided with an upper connector 72, and the upper end of the upper connector 72 is provided with an upper lifting motor 73. The lower end of the upper connector 72 is provided with an upper nut plate 75 connected to the upper ball screw 74 of the upper lifting motor 73. The two ends of the upper nut plate 75 away from the upper connector 72 are connected to the upper end of the finger lifting seat 24. The lower end of the drive mounting plate 71 is provided with a lower connector 76, and the lower end of the lower connector 76 is provided with a lower lifting motor 77. The upper end of the lower connector 76 is provided with a lower nut plate 79 connected to the lower ball screw 78 of the lower lifting motor 77. The two ends of the lower nut plate 79 away from the lower connector 76 are respectively provided with rotating lifting seats 8. A rotating lifting plate 81 connected to the end of the rotating base plate 5 is provided between the rotating lifting seats 8, and the lower ends of the rotating lifting seats 8 are fixedly connected to the drive gear motor plate 65.
[0038] The drive mounting plate 71 has a slide rod connector 82 on the inner side of the middle. The upper connector 72, the lower connector 76 and the slide rod connector 82 have a slide rod 83 at the same end. The slide rod 83 passes through the end of the slide rod connector 82 axially. The two ends of the upper nut plate 75 and the finger lifting seat 24 are movably connected to the slide rod 83 respectively. The two ends of the lower nut plate 79 and the rotating lifting seat 8 are movably connected to the slide rod 83 respectively.
[0039] The principle of this embodiment is as follows:
[0040] Under the control of the lifting drive assembly 7, the drive finger frame 2 moves towards the tower cup moving plate 1. Simultaneously, the rotating base plate 5 also moves towards the tower cup moving plate 1 under the control of the lifting drive assembly 7. The lower mold intermediate plate 56 on the rotating base plate 5 is connected to the rotating connection part 16 of the tower cup bottom mold base 11. The lower mold intermediate plate 56 is connected to the drive gear 61 via the drive shaft 53. The drive gear 61 is connected to the intermediate gear 63. The synchronous pulley 64 on the intermediate gear 63 is connected to the drive pulley 67 of the rotary drive motor 66 via the synchronous belt 68, thereby controlling the rotation of the tower cup bottom mold base 11. The process involves the single-tart crust finger 32 being processed first. The single-tart crust finger 32 is connected to the single-finger drive rod 31, which is connected to the axial drive assembly 4 via the drive connecting plate 34, thereby controlling the lateral movement of the single-tart crust finger 32. Subsequently, the double-tart crust half-finger 37 undergoes secondary processing. The two adjacent double-tart crust fingers 37 move alternately to each other via the double-finger drive rod 36, with the two double-tart crust fingers 37 moving closer or further apart to process the egg tart crust. This improves production efficiency and product quality while preserving the handmade texture and layering.
[0041] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
[0042] Although this paper extensively uses the following components: tower cup moving plate 1, tower cup bottom mold base 11, horizontal conveying assembly 12, bottom mold mounting hole 13, tower cup mounting part 14, tower cup placement hole 15, rotating connection part 16, driving finger frame 2, finger frame fixing plate 21, finger frame side plate 22, finger sliding plate 23, finger lifting seat 24, forming finger assembly 3, single finger driving rod 31, single tower skin finger 32, single finger connecting rod 33, driving connection plate 34, double finger driving rod assembly 35, double finger driving rod 36, double tower skin half finger 37, double finger connecting rod 38, axial driving assembly 4, motor connecting plate 41, finger driving plate 42, transverse sliding shaft 43, finger ball screw 44, finger driving motor 45, rotating base plate 5, base plate reinforcing strip 5 1. The terms used include: rotating bottom mold base 52, drive shaft 53, rotating bearing 54, lower mold plate connecting shaft 55, lower mold intermediate plate 56, rotating bottom support 57, bottom mold rotating assembly 6, drive gear 61, transition bearing seat 62, intermediate gear 63, synchronous belt pulley 64, drive gear motor plate 65, rotating drive motor 66, drive pulley 67, synchronous belt 68, lifting drive assembly 7, drive mounting plate 71, upper connector 72, upper lifting motor 73, upper ball screw 74, upper nut plate 75, lower connector 76, lower lifting motor 77, lower ball screw 78, lower nut plate 79, rotating lifting seat 8, rotating lifting plate 81, slide rod connector 82, slide rod component 83, etc., but the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.
Claims
1. A kind of imitation handmade egg tart crust forming device, including tower cup moving plate (1), the tower cup moving plate (1) is equipped with several axial distribution settings tower cup bottom die seat (11), the tower cup moving plate (1) both ends are equipped with horizontal conveying component (12) respectively, it is characterized in that, The tower cup moving plate (1) is movably provided with a plurality of driving finger frames (2) on the top, the lower end of the driving finger frame (2) is provided with a corresponding forming finger group (3) corresponding to the tower cup bottom die base (11), the end of the driving finger frame (2) is provided with an axial driving assembly (4) capable of moving the forming finger group (3) along the length direction of the driving finger frame (2), the bottom of the tower cup moving plate (1) is provided with a rotating bottom plate (5), the rotating bottom plate (5) is provided with a bottom die rotating assembly (6) capable of rotating the tower cup bottom die base (11) circumferentially, and the driving finger frame (2) and the rotating bottom plate (5) are moved towards the tower cup moving plate (1) through the lifting driving assembly (7).
2. A device for forming a handmade egg tart crust according to claim 1, wherein, The inside of the tower cup moving plate (1) is provided with a plurality of bottom die mounting holes (13), the tower cup bottom die base (11) is movably arranged in the bottom die mounting hole (13), the upper end of the tower cup bottom die base (11) is provided with a tower cup mounting part (14) with a tower cup placing hole (15), and the lower end of the tower cup bottom die base (11) is provided with a rotating connecting part (16).
3. A device for forming a hand-crafted egg tart crust according to claim 2, wherein, The driving finger frame (2) is respectively provided with a finger frame fixed plate (21) at both ends, the driving finger frame (2) is respectively provided with a finger frame edge plate (22) connected with the finger frame fixed plate (21) on both sides, the finger frame fixed plate (21) and the finger frame edge plate (22) are in rectangular structure, the inside of the driving finger frame (2) is provided with a finger sliding plate (23) corresponding to the finger frame fixed plate (21) at both ends, and the side of the finger frame fixed plate (21) away from the finger sliding plate (23) is respectively provided with a finger lifting seat (24) at both ends.
4. A device for forming a hand-crafted egg tart crust according to claim 3, wherein, The forming finger group (3) comprises a plurality of single finger driving rods (31) movably arranged between the two finger sliding plates (23), the lower end of the single finger driving rod (31) is provided with a single finger connecting rod (33) having a plurality of single tower skin fingers (32) corresponding to the tower cup mounting part (14), the single finger driving rod (31) is axially penetrated through the finger sliding plate (23) to the outside at both ends, and one end of the driving finger frame (2) is provided with a driving connecting plate (34) located between the finger frame fixed plate (21) and the finger sliding plate (23) and connected with the same end of the single finger driving rod (31).
5. A device for forming a hand-crafted egg tart crust according to claim 4, wherein, The forming finger group (3) further comprises a plurality of double finger driving rod groups (35) movably arranged between the two finger sliding plates (23), the double finger driving rod group (35) has two double finger driving rods (36), the lower end of the double finger driving rod (36) is provided with a double finger connecting rod (38) having a plurality of double tower leather half fingers (37) corresponding to the tower cup mounting portion (14), the double tower leather half fingers (37) of the two double finger connecting rods (38) of the same group are arranged in turn and staggered with each other, the two ends of the double finger driving rod (36) respectively axially penetrate the finger sliding plate (23) to the outside, and the two ends of the driving finger frame (2) are respectively provided with a driving connecting plate (34), one of the driving connecting plates (34) is connected with one end of one of the double finger driving rod groups (35), and the other driving connecting plate (34) is connected with one end of the other double finger driving rod group (35).
6. A device for forming a hand-crafted egg tart crust according to claim 5, wherein, The axial driving assembly (4) comprises a motor connecting plate (41) arranged on one end of the driving finger frame (2) away from the finger frame fixed plate (21) or arranged on both ends of the driving finger frame (2) away from the finger frame fixed plate (21), the two ends of the motor connecting plate (41) are respectively fixedly connected with the lower end of the finger lifting seat (24), a finger driving plate (42) is arranged between the two finger lifting seats (24), the two ends of the finger driving plate (42) are respectively provided with a transverse sliding shaft (43) axially penetrating the finger frame fixed plate (21) and connected with the driving connecting plate (34), and the side of the motor connecting plate (41) away from the finger driving plate (42) is provided with a finger driving motor (45) having a finger ball screw (44) connected with the middle part of the finger driving plate (42).
7. A device for forming an imitation handmade egg tart crust according to claim 3 or 4 or 5 or 6, wherein, The lower end of the rotating bottom plate (5) is provided with an axially arranged bottom plate reinforcing strip (51), the inner side of the rotating bottom plate (5) is provided with a plurality of hollow rotating bottom mold seats (52), the rotating bottom mold seats (52) are arranged on both sides of the bottom plate reinforcing strip (51), the rotating bottom mold seat (52) is provided with a driving shaft (53), the two ends of the driving shaft (53) are respectively axially penetrated to the outside of the rotating bottom mold seat (52), the inner sides of the two ends of the rotating bottom mold seat (52) are respectively provided with rotating bearings (54) in contact with the driving shaft (53), the upper end of the rotating bottom mold seat (52) is provided with a lower mold disc connecting shaft (55) connected with the outer side of the upper end of the driving shaft (53), the upper end of the lower mold disc connecting shaft (55) is connected with a lower mold intermediate disc (56) matched with the rotating connection portion (16), the rotating connection portion (16) is axially inserted into the inner side of the lower mold intermediate disc (56), and the upper end of the driving shaft (53) is provided with a rotating bottom supporting piece (57) corresponding to the tower cup placing hole (15).
8. A device for forming a hand-crafted egg tart crust according to claim 7, wherein, The bottom die rotating assembly (6) includes a drive gear (61) arranged at the lower end of the rotating bottom die seat (52) and connected with the lower end of the drive shaft (53), a plurality of drive gears (61) located at one side of the bottom plate reinforcing strip (51) are in mesh with each other, one end of the rotating bottom plate (5) is provided with a transition bearing seat (62) corresponding to the end of the bottom plate reinforcing strip (51), the lower end of the transition bearing seat (62) is provided with an intermediate gear (63) in mesh with the drive gear (61) near one end of the rotating bottom plate (5), the lower end of the intermediate gear (63) is provided with a synchronous belt pulley (64), one end of the rotating bottom plate (5) near the transition bearing seat (62) is provided with a drive gear motor plate (65), the lower end of the drive gear motor plate (65) is provided with a rotating drive motor (66), the upper end of the drive gear motor plate (65) is provided with a driving belt pulley (67) connected with the rotating drive motor (66), and the driving belt pulley (67) and the synchronous belt pulley (64) are provided with a synchronous belt (68) therebetween.
9. A device for forming a hand-crafted egg tart crust according to claim 8, wherein, The lifting drive assembly (7) includes drive mounting plates (71) arranged at both ends of the tower cup moving plate (1), the upper ends of the drive mounting plates (71) are provided with upper connecting pieces (72), the upper ends of the upper connecting pieces (72) are provided with upper lifting motors (73), the lower ends of the upper connecting pieces (72) are provided with upper nut plates (75) connected with the upper ball screw rods (74) of the upper lifting motors (73), the upper nut plates (75) are connected with the upper ends of the finger lifting seats (24) at both ends of the side away from the upper connecting pieces (72), the lower ends of the drive mounting plates (71) are provided with lower connecting pieces (76), the lower ends of the lower connecting pieces (76) are provided with lower lifting motors (77), the upper ends of the lower connecting pieces (76) are provided with lower nut plates (79) connected with the lower ball screw rods (78) of the lower lifting motors (77), the lower nut plates (79) are provided with rotating lifting seats (8) at both ends of the side away from the lower connecting pieces (76), respectively, the rotating lifting seats (8) are provided with a rotating lifting plate (81) connected with the end portions of the rotating bottom plate (5) between the lower ends, and the rotating lifting seats (8) are fixedly connected with the drive gear motor plate (65) between the lower ends.
10. A device for forming a hand-crafted egg tart crust according to claim 9, wherein, The middle inner sides of the drive mounting plates (71) are provided with slide rod connecting pieces (82), the upper connecting pieces (72), the lower connecting pieces (76) and the slide rod connecting pieces (82) are provided with slide rod pieces (83) at the same end, the slide rod pieces (83) pass through the end portions of the slide rod connecting pieces (82) in the axial direction, the upper nut plates (75) and the finger lifting seats (24) are movably connected with the slide rod pieces (83) at both ends, respectively, and the lower nut plates (79) and the rotating lifting seats (8) are movably connected with the slide rod pieces (83) at both ends, respectively.