A frozen egg tart pastry roll conveying apparatus
Patent Information
- Application Number
- CN202611080233.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-07-21
- Publication Date
- 2026-08-21
AI Technical Summary
[0005]为了改善现有冷冻蛋挞皮生产设备的输送环节效率较低的缺陷,本申请提供一种冷冻蛋挞酥皮卷输送设备
1.酥皮卷通过下料台落到送料传送带上后,通过滑移架的整体下移带动多个间隔板一同下移,随后通过拨料传送带的移动,使拨料件带动酥皮卷向两个送料传送带之间的位置进行移动,随后间隔板复位,并通过间隔板的弧面带动酥皮卷移动到下一个送料传送带上,进而实现酥皮卷向相邻的送料传送带上的自动移动,在送料传送带上均有酥皮卷时,送料传送带进行转动,将多个酥皮卷一同进行输送,减少了人工摆放环节,提高了酥皮卷的输送效率,进而提高冷冻蛋挞的生产效率;
Smart Images

Figure CN122607755A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of frozen egg tart production equipment, and in particular to a frozen egg tart puff pastry roll conveying device. Background Technology
[0002] Frozen egg tarts are semi-finished products, consisting of an egg tart base and an egg tart crust inside the base. The egg tart is simply made by placing the egg mixture into the egg tart crust and baking it.
[0003] The automated production of frozen egg tart crusts typically involves the production of puff pastry using puff pastry equipment. The puff pastry, which contains butter, is folded and rolled multiple times, then cut into small segments. These segments are then rolled up using a conveyor belt through a rolling screen to form puff pastry rollers.
[0004] Subsequently, there were two methods for the industrial production of egg tart crusts: 1. Using rotary station egg tart crust production equipment (such as CN202421749268.0 - a simulated handmade egg tart crust shaping machine), the puff pastry roller is placed on the feeding table of the automatic puff pastry cutting equipment. The puff pastry roller is cut into small round cakes by the cutter on the feeding table and falls into the egg tart tray on the rotary station, where it is pressed firmly onto the egg tart tray. This method generally requires multiple machines to produce simultaneously, resulting in high overall investment costs. Furthermore, workers are required to replenish the puff pastry rollers to the feeding channel, leading to low replenishment efficiency. 2. Using an integrated egg tart crust production machine, multiple puff pastry rolls are manually arranged neatly on a conveyor belt. The conveyor belt transports these rolls to a feeding device, where they are cut together. The cut small round tarts are then placed onto egg tart trays on a conveyor belt via a row of feeding devices (the cutting process is described in CN202322538802.5 - An Automatic Cutting Device for Imitation Handmade Egg Tart Crusts). The egg tart tray conveyor belt then moves the trays to the next station, where the small round tarts are pressed into shape, thus completing the egg tart crust production. While this method has lower investment costs and higher efficiency, it still requires manual arrangement of the puff pastry rolls on the conveyor belt, indicating room for improvement in automation design. Summary of the Invention
[0005] In order to improve the low efficiency of the conveying process in existing frozen egg tart crust production equipment, this application provides a frozen egg tart crust roll conveying device.
[0006] The frozen egg tart pastry roll conveying equipment provided in this application adopts the following technical solution: A frozen egg tart puff pastry roll conveying device includes: The feeding platform is tilted to allow the puff pastry rolls to fall. The material stop platform is located at the bottom of the unloading platform; Multiple feeding conveyor belts are spaced apart on the stopping platform and are driven by the same motor. Multiple partitions are set on both sides of the feeding conveyor belt. The space between two adjacent partitions and the feeding conveyor belt is used to place a puff pastry roll. The top of the partition has a clearance groove to avoid the drive rod of the feeding conveyor belt. The sliding frame is installed below the partition plate and its top is fixed to multiple partition plates; The first telescopic cylinder is set on the stopping platform. The piston rod is fixed to the sliding frame, which controls the sliding frame to slide to the position where the partition plate is below the upper surface of the feeding conveyor belt. The feeding device is mounted above the stopping platform, which moves the puff pastry rolls away from the unloading platform.
[0007] Optionally, the side of the partition plate away from the unloading platform is an inwardly concave arc surface, and the top cross-sectional width of the partition plate is the smallest.
[0008] Optionally, a mounting frame is provided on the top of the stopping platform, and the material feeding device includes a mounting frame, a belt frame, and a material feeding conveyor belt; The mounting frame is installed on the mounting bracket, the belt frame is installed on the mounting platform, and the feeding conveyor belt is installed on the belt frame. The feeding conveyor belt is driven to rotate by a motor. The feeding conveyor belt is a chain plate type conveyor belt, and feeding components are set on the chain plate. The spacing between adjacent feeding components is the same as the spacing between the spacers. The material feeder will not move above the feeding conveyor belt furthest from the unloading platform; The feeding conveyor belt operates intermittently. Each time it stops moving, the feeding component is located above the partition plate, and the feeding component can come into contact with the puff pastry roll during the movement. When the puff pastry roll moves to a position between two adjacent feeding conveyors, the feeding device can pass over the puff pastry roll.
[0009] Optionally, the feeding components at the bottom of the feeding conveyor belt are inclined from the direction away from the unloading platform to the direction closer to the unloading platform.
[0010] Optionally, a sliding groove is provided on the top of the mounting frame, and the belt frame slides up and down in the sliding groove. A pressure frame is installed on the upper surface of the mounting frame, a pressure spring is provided at the bottom of the pressure frame, and a pressure plate is installed at the bottom of the pressure spring. The pressure plate is pressed against the upper surface of the belt frame. The top two ends of the partition plate are fixed with upper top plates. During the process of the partition plate moving to the top position, the upper top plates will abut against the bottom of the belt frame and drive the belt frame to move upward.
[0011] Optionally, the feeding component includes a main component and a secondary component. The main component is installed on the chain plate of the feeding conveyor belt and is inclined. The secondary component is rotatably connected to the main component. The main component has a limit groove. The secondary component is fixed with a limit block that can abut against the limit groove. When the secondary component rotates to the point where the limit block abuts against the inner wall of the limit groove, the secondary component cannot continue to rotate upward and maintains the same inclination direction as the main component. Both the main component and the accessories have rotating rollers rotatably connected to their bottom ends.
[0012] Optionally, the mounting bracket is equipped with a lower fixing plate, and the mounting frame is placed on the lower fixing plate and fixed by bolts of the mounting bracket against the mounting frame; A pair of inspection rods are provided on the outside of the mounting frame. After the mounting platform is moved above the inspection rods, a support plate is placed on the inspection rods, and the mounting platform is placed on the support plate.
[0013] Optionally, a material stop frame is provided on the unloading platform, and a material stop roller frame is slidably connected to the material stop frame. A material stop roller is rotatably connected to the bottom of the material stop roller frame. A compression spring is installed between the material stop frame and the roller stop frame. The material stop frame is rotatably connected to a cam. The bottom of the roller stop frame abuts against the cam. The cam is driven to rotate by a motor. The cam can move the material stop roller to the position for the pastry roll to pass through.
[0014] Optionally, an inner sink groove is provided on the upper surface of the unloading platform on the side of the baffle away from the stopping platform. Two whole rollers are rotatably connected in the inner sink groove, with the baffle roller located above the whole roller. One of the rollers is driven by a motor.
[0015] Optionally, the motor driving the cam and the entire roller is the same motor, and the unloading table is equipped with a gear set, through which the motor drives the cam and the entire roller respectively.
[0016] In summary, this application includes at least one of the following beneficial technical effects: 1. After the puff pastry rolls fall onto the feeding conveyor belt via the unloading platform, the sliding frame moves down, causing multiple partitions to move down as well. Then, the feeding conveyor belt moves the feeding components, causing the puff pastry rolls to move to a position between two feeding conveyor belts. Afterward, the partitions reset, and the curved surface of the partitions moves the puff pastry rolls to the next feeding conveyor belt, thus realizing the automatic movement of the puff pastry rolls to adjacent feeding conveyor belts. When there are puff pastry rolls on all the feeding conveyor belts, the feeding conveyor belts rotate, transporting multiple puff pastry rolls together. This reduces the manual placement process, improves the conveying efficiency of the puff pastry rolls, and thus improves the production efficiency of frozen egg tarts. 2. Before the partition plate moves down, the top plate will abut against the bottom of the belt frame, causing the belt frame to compress the downward spring. During the movement of the partition plate, the belt frame will also gradually move down to the position where it abuts against the bottom wall of the sliding groove. At this time, the feeding conveyor belt can move and drive the puff pastry roll to roll through the feeding component. It can also allow the feeding component to pass over the puff pastry roll after it rolls. In this way, the stability of the puff pastry roll movement can be effectively improved. The sub-component in the feeding component can effectively move the puff pastry roll without affecting the movement of the puff pastry roll from the position above the partition plate to the next feeding conveyor belt. If the puff pastry roll comes into contact with the sub-component during this process, it will drive the sub-component to rotate and fold to allow the puff pastry roll to pass through, which improves the rationality of the structure. 3. The baffle roller effectively intercepts the falling puff pastry rolls. The intercepted rolls simultaneously come into contact with two whole rollers and one baffle roller. One of the whole rollers rotates actively, causing the puff pastry roll to rotate. This, in turn, causes the other whole roller and the baffle roller to rotate, thus straightening the puff pastry rolls and making them neat. Then, the rotation of the cam pushes the baffle roller open, allowing the complete puff pastry roll to fall onto the feeding conveyor belt, making the puff pastry rolls on the conveyor belt neater and improving the conveying efficiency of the puff pastry rolls. Attached Figure Description
[0017] Figure 1 This is a structural schematic diagram of an embodiment of this application; Figure 2 It is a partial cross-sectional view showing the distribution of the spacers; Figure 3 This is a partial cross-sectional view showing the upward-moving component; Figure 4 This is a partial cross-sectional view showing the motor of the feeding conveyor belt; Figure 5 This is a partial schematic diagram showing the installation status of the mounting frame; Figure 6 This is a partial schematic diagram showing the position of the mounting frame on the support plate; Figure 7 This is a partial sectional view showing the sliding groove; Figure 8 This is a partial schematic diagram showing the state of the limit block and the limit groove being tightly abutted; Figure 9 This is a partial schematic diagram showing the separation state of the limiting block and the limiting groove; Figure 10 This is a partial schematic diagram showing the movement of the puff pastry roll driven by the feeding component; Figure 11 This is a partial schematic diagram showing the position of the puff pastry roll during the resetting process of the top plate; Figure 12 This is a partial schematic diagram showing the entire component; Figure 13 This is a partial cross-sectional view showing the compression spring; In the diagram, 1. Unloading platform; 11. Material stop frame; 12. Roller stop frame; 121. Compression spring; 122. Cam; 13. Inner settling trough; 2. Stopping platform; 21. Mounting frame; 211. Lower fixing plate; 22. Inspection rod; 221. Support plate; 3. Feeding conveyor belt; 4. Partition plate; 41. Clearance groove; 42. Top plate; 5. Upward moving assembly; 51. First telescopic cylinder; 52. Sliding mechanism. 6. Frame; 6. Feeding device; 61. Mounting frame; 611. Sliding groove; 612. Lower pressure frame; 6121. Lower pressure spring; 6122. Lower pressure plate; 62. Belt frame; 63. Feeding conveyor belt; 7. Complete assembly; 71. Material stop roller; 72. Complete roller; 8. Feeding component; 81. Main component; 811. Limiting groove; 82. Sub-component; 821. Limiting block; 822. Rotating roller; Detailed Implementation
[0018] The following is in conjunction with the appendix Figure 1-13 This application will be described in further detail.
[0019] This application discloses a frozen egg tart puff pastry roll conveying device for automated conveying of frozen egg tart puff pastry rolls.
[0020] refer to Figure 1 The frozen egg tart puff pastry roll conveyor equipment includes a feeding platform 1, a stopping platform 2, a feeding conveyor belt 3, a partition plate 4, an upward moving component 5, a feeding device 6, and a complete assembly 7.
[0021] refer to Figure 1 and Figure 2 The feeding platform 1 is inclined so that the puff pastry rolls can roll downwards. The upper end is connected to the conveyor belt of the equipment that rolls the puff pastry rolls into shape, and the lower end is connected to the stopping platform 2. The whole assembly 7 is set on the stopping platform 2 to intercept the falling puff pastry rolls and process them into a whole strip (to straighten the twisted puff pastry rolls into a neat long strip).
[0022] Combined Figure 3 Multiple feeding conveyor belts 3 are installed at equal intervals on the stopping platform 2. The conveying direction of the feeding conveyor belts 3 is perpendicular to the rolling direction of the puff pastry rolls on the unloading platform 1. Multiple feeding conveyor belts 3 are driven together by the same motor via drive rods to maintain the same rotational speed. Multiple drive rods are provided on the feeding conveyor belts 3 to improve their operational stability. The stopping platform 2 is connected to a conveyor belt in the direction of movement of the feeding conveyor belts 3 for continuing to transport the puff pastry rolls.
[0023] A partition plate 4 is positioned between two adjacent feeding conveyor belts 3. A clearance groove 41 is provided on the top of the partition plate 4 directly opposite the drive rod of the feeding conveyor belt 3. An upward-moving assembly 5 is located within the stopping platform 2, used to drive multiple partition plates 4 to slide up and down. The partition plates 4 can move downwards to a position below the upper surface of the feeding conveyor belt 3. The stopping platform 2 has a side baffle on the side of the feeding conveyor belt 3 furthest from the unloading platform 1. The partition plate 4 closest to the stopping platform 2 has a transition groove that connects with the unloading platform 1.
[0024] A mounting frame 21 is fixed on the upper surface of the stopping platform 2. The feeding device 6 is mounted on the mounting frame 21 and located above the feeding conveyor belt 3. It is used to drive the pastry rollers on the feeding conveyor belt 3 to move away from the unloading platform 1, specifically to a position between the frames of two adjacent feeding conveyor belts 3. The side of the partition plate 4 away from the unloading platform 1 is an inwardly concave arc surface, and the top cross-sectional width of the partition plate 4 is the smallest.
[0025] The puff pastry rolls are conveyed to the unloading platform 1 by a conveyor belt, where they are intercepted and aligned by the aligning component 7 before being fed onto the feeding conveyor belt 3. Subsequently, the upward-moving component 5 moves the spacer plate 4 downwards, and then the feeding device 6 moves the puff pastry rolls to a position between two adjacent feeding conveyor belts 3 (above the spacer plate 4). Finally, the spacer plate 4 moves upwards to its original position, and its curved surface moves the puff pastry rolls away from the unloading platform 1 onto the adjacent feeding conveyor belt 3. This method allows the puff pastry rolls to be continuously moved onto adjacent feeding conveyor belts 3 while maintaining a regular shape (without twisting). When all feeding conveyor belts 3 contain puff pastry rolls, the conveyor belts 3 rotate, transporting multiple rolls together, reducing the manual alignment and arrangement process, and improving the efficiency and effectiveness of the puff pastry roll conveying process.
[0026] refer to Figure 3 The upward moving assembly 5 includes a first telescopic cylinder 51 and a sliding frame 52. The first telescopic cylinder 51 is a hydraulic cylinder. The first telescopic cylinder 51 is mounted on the stopping platform 2, with its piston rod pointing upward and fixedly connected to the sliding frame 52. The top of the sliding frame 52 is fixedly connected to the bottom of multiple partition plates 4, thereby driving the multiple partition plates 4 to move together.
[0027] refer to Figure 4 , Figure 5 and Figure 6The material feeding device includes a mounting frame 61, a belt frame 62, and a material feeding conveyor belt 63. Four lower fixing plates 211 are installed on the mounting frame 21, and the lower fixing plates 211 are fastened to the mounting frame 21 by bolts and nuts. The bottom corner of the mounting frame 61 abuts against the upper surface of the lower fixing plates 211. The mounting frame 21 is secured to the mounting frame 61 by its own threaded bolts. A pair of maintenance rods 22 are provided on the outside of the mounting frame 21. After the mounting frame 61 moves above the maintenance rods 22, a support plate 221 is placed on the maintenance rods 22, allowing the mounting frame 61 to be temporarily placed for maintenance. The support plate 221 rests vertically on the mounting frame 21 under normal conditions.
[0028] refer to Figure 4 and Figure 7 The upper surface of the inner wall of the mounting frame 61 is provided with a sliding groove 611, and the belt frame 62 slides up and down in the sliding groove 611. A lower pressure frame 612 is installed on the upper surface of the mounting frame 61, and a lower pressure spring 6121 is installed at the bottom of the lower pressure frame 612. A lower pressure plate 6122 is installed at the bottom of the lower pressure spring 6121 and slides in connection with the lower pressure frame 612. The bottom of the lower pressure plate 6122 is always pressed against the belt frame 62.
[0029] The feeding conveyor belt 63 is mounted on the belt frame 62. The feeding conveyor belt 63 is a chain-plate type conveyor belt, driven by a motor mounted on the belt frame 62. Feeding components 8 are provided on the chain plates of the feeding conveyor belt 63, with the spacing between adjacent feeding components 8 being the same as the spacing between the spacers 4. The feeding conveyor belt 63 operates intermittently. Each time it stops moving, the feeding components 8 are positioned above the spacers 4, and during movement, the feeding components 8 are used to push the puff pastry rolls. When the puff pastry rolls move to a position between two adjacent feeding conveyor belts 3, the feeding components 8 can pass over the puff pastry rolls. The feeding components 8 will not move over the feeding conveyor belt 3 furthest from the unloading platform 1.
[0030] Combination Figure 8 and Figure 9 The feeding component 8 includes a main component 81 and a secondary component 82, both of which are frame structures. The main component 81 is mounted on the chain plate of the feeding conveyor belt 63. When the feeding component 8 moves below the feeding conveyor belt 63, the main component 81 is inclined from top to bottom, moving from the direction away from the unloading platform 1 to the direction closer to the unloading platform 1. The secondary component 82 is rotatably connected to the bottom of the main component 81. The main component 81 has a limiting groove 811, and the secondary component 82 is fixed with a limiting block 821 that can abut against the limiting groove 811. When the secondary component 82 rotates to the point where the limiting block 821 abuts against the inner wall of the limiting groove 811, the secondary component 82 cannot continue to rotate upwards and maintains the same inclination direction as the main component 81. The bottom ends of both the main component 81 and the accessory are rotatably connected to a rotating roller 822.
[0031] refer to Figure 7, Figure 10 and Figure 11 The partition plate 4 has upper top plates 42 fixed at both ends, and the upper top plates 42 are installed by bolts to the top of the partition plate 4. During the process of the partition plate 4 moving to the topmost position, the upper top plates 42 will abut against the bottom of the conveyor belt 62 and drive the conveyor belt 62 upwards. This increases the distance between the feeding component 8 and the puff pastry roll.
[0032] As the partition plate 4 moves downwards, the upper top plate 42 places the belt frame 62 on the inner bottom wall of the sliding groove 611, causing the feeding component 8 to move downwards and better contact the puff pastry roll. Subsequently, as the feeding conveyor belt 63 moves, the feeding component 8 contacts the puff pastry roll and, through the movement of the main component 81 and the auxiliary component 82, moves the puff pastry roll between the two feeding conveyor belts 3. During this process, the auxiliary component 82, upon contact with the puff pastry roll, rotates until the limiting block 821 abuts against the inner wall of the limiting groove 811, allowing the auxiliary component 82 to stably feed the puff pastry roll. When the puff pastry roll moves above the partition plate 4, due to its downward movement, the auxiliary component 82 can stably pass over it. The rotating roller 822 effectively reduces damage to the surface of the puff pastry roll.
[0033] During the resetting process of the partition plate 4, not only will the upper top plate 42 drive the conveyor belt 62 to move upward, but it will also push the puff pastry roll onto the adjacent feeding conveyor belt 3. During this process, if the puff pastry roll comes into contact with the auxiliary part 82, it will cause the auxiliary part 82 to rotate away from the unloading platform 1, preventing the puff pastry roll from being squeezed and deformed. (This is practically impossible; it will only happen in very rare cases where the top of the puff pastry roll protrudes.) refer to Figure 12 and Figure 13 The entire assembly 7 includes a guide roller 71 and a main roller 72. A guide frame 11 is provided on the feeding platform 1, and a guide roller frame 12 is slidably connected to the guide frame 11. The guide roller 71 is rotatably connected to the bottom of the guide roller frame 12. A compression spring 121 is provided between the guide frame 11 and the guide roller frame 12, and the compression spring 121 drives the guide roller frame 12 to press downward. Cams 122 are rotatably connected to the bottom of both sides of the guide frame 11, and the bottom of the guide roller frame 12 abuts against the cams 122. The cams 122 can drive the guide roller 71 to a position below the guide roller 71 for the pastry roll to pass through.
[0034] An inner recess 13 is formed on the upper surface of the unloading platform 1 on the side of the baffle 11 away from the stop platform 2. Two integral rollers 72 are rotatably connected within the inner recess 13, with the baffle roller 71 located above the integral roller 72 closest to the stop platform 2. Both the integral roller 72 closest to the stop platform 2 and the cam 122 are driven by a motor via a gear set. Specifically, a first gear is fixed to the rotating shaft of the cam 122, and a second gear is fixed to the rotating shaft of the drive roller closest to the stop platform 2. Both the first and second gears mesh with a third gear, which is rotatably connected to the unloading platform 1 and directly driven by a motor. The time required for the cam 122 to rotate one revolution is the same as the time required for the spacer plate 4 to move from its lower position to its reset position.
[0035] The puff pastry roll rolls down onto the feeding platform 1 and onto the guide roller 71. As the entire roller 72 rotates, the roll comes into contact with another roller 72 and the guide roller 71, causing them to move and rotate, thus shaping the roll and keeping it elongated. When the cam 122 rotates to its highest point, moving the guide roller 71 upwards, the roll roll rolls down onto the feeding conveyor belt 3 closest to the feeding platform 1 under gravity. This makes the rolls on the feeding conveyor belt 3 more uniform.
[0036] The implementation principle of the frozen egg tart puff pastry roll conveying device in this application embodiment is as follows: The puff pastry roll rolls roll down from the unloading platform 1 onto the whole roller 72, and rotates under the drive of the whole roller 72. Then, the blocking roller 71 moves up and places the whole puff pastry roll onto the feeding conveyor belt 3 closest to the unloading platform 1. The partition plate 4 moves down and drives the belt frame 62 to move down. Then, the feeding conveyor belt 63 rotates, and the feeding component 8 abuts against the puff pastry roll and moves the puff pastry roll to a position above the partition plate 4. Finally, the partition plate 4 resets. During the resetting process, the partition plate 4 pushes the puff pastry roll onto the adjacent feeding conveyor belt 3, realizing the movement of the puff pastry roll between the feeding conveyor belts 3 and keeping the puff pastry roll in a long strip shape, completing one action cycle.
[0037] If the number of feeding conveyor belts 3 is n, after n operation cycles, the feeding conveyor belt 3 will operate, transporting n puff pastry rolls together. This achieves automatic puff pastry roll shaping and conveying, improving the conveying efficiency of frozen egg tart puff pastry.
[0038] The embodiments described in this specific implementation are preferred embodiments of this application and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A frozen egg tart puff pastry roll conveying device, characterized in that: include The feeding table (1) is set at an angle to allow the puff pastry rolls to fall; The stopping platform (2) is located at the bottom of the unloading platform (1); Multiple feeding conveyor belts (3) are spaced apart on the stopping table (2) and driven by the same motor; Multiple partitions (4) are set on both sides of the feeding conveyor belt (3). The space between two adjacent partitions (4) and a feeding conveyor belt (3) is used to place a puff pastry roll. The top of the partition (4) is provided with a clearance groove (41) to avoid the drive rod of the feeding conveyor belt (3). A sliding frame (52) is set below the partition plate (4) and its top is fixed to multiple partition plates (4); The first telescopic cylinder (51) is set on the stop platform (2). The piston rod and the sliding frame (52) are fixed to control the sliding frame (52) to slide to the partition plate (4) located below the upper surface of the feeding conveyor belt (3). The feeding device (6) is mounted above the stopping platform (2) and drives the puff pastry roll to move away from the feeding platform (1).
2. The frozen egg tart pastry roll conveying equipment according to claim 1, characterized in that: The side of the partition plate (4) away from the unloading platform (1) is an inwardly concave arc surface, and the top cross-section of the partition plate (4) has the smallest width.
3. The frozen egg tart puff pastry roll conveying equipment according to claim 2, characterized in that: The top of the stopping platform (2) is equipped with a mounting frame (21), and the material feeding device includes a mounting frame (61), a belt frame (62), and a material feeding conveyor belt (63); The mounting frame (61) is mounted on the mounting frame (21), the belt frame (62) is mounted on the mounting platform, the feeding conveyor belt (63) is mounted on the belt frame (62), the feeding conveyor belt (63) is driven to rotate by a motor, the feeding conveyor belt (63) is a chain plate type conveyor belt, the chain plate is provided with feeding parts (8), the spacing between adjacent feeding parts (8) is the same as the spacing between the spacer plate (4); The feeding component (8) will not move above the feeding conveyor belt (3) that is furthest from the unloading platform (1); The feeding conveyor belt (63) operates intermittently. Each time it stops moving, the feeding component (8) is located above the partition plate (4), and the feeding component (8) can come into contact with the puff pastry roll during the movement. When the puff pastry roll moves to a position between two adjacent feeding conveyors (3), the feeding component (8) can pass over the puff pastry roll.
4. The frozen egg tart puff pastry roll conveying equipment according to claim 3, characterized in that: The feeding component (8) at the bottom of the feeding conveyor belt (63) is inclined from the direction away from the unloading platform (1) to the direction closer to the unloading platform (1).
5. The frozen egg tart puff pastry roll conveying equipment according to claim 3, characterized in that: The top of the mounting frame (61) is provided with a sliding groove (611), and the belt frame (62) slides up and down in the sliding groove (611). A lower pressure frame (612) is installed on the upper surface of the mounting frame (61), and a lower pressure spring (6121) is provided at the bottom of the lower pressure frame (612). A lower pressure plate (6122) is installed at the bottom of the lower pressure spring (6121), and the lower pressure plate (6122) is pressed against the upper surface of the belt frame (62). The top two ends of the partition plate (4) are fixed with an upper top plate (42). During the process of the partition plate (4) moving to the topmost position, the upper top plate (42) will abut against the bottom of the belt frame (62) and drive the belt frame (62) to move upward.
6. The frozen egg tart puff pastry roll conveying equipment according to any one of claims 4 or 5, characterized in that: The feeding component (8) includes a main component (81) and a secondary component (82). The main component (81) is installed on the chain plate of the feeding conveyor belt (63) and is inclined. The secondary component (82) is rotatably connected to the main component (81). The main component (81) has a limiting groove (811). The secondary component (82) is fixed with a limiting block (821) that can abut against the limiting groove (811). When the secondary component (82) rotates to the point where the limiting block (821) abuts against the inner wall of the limiting groove (811), the secondary component (82) cannot continue to rotate upward and maintains the same inclination direction as the main component (81). Both the main component (81) and the accessories are rotatably connected to the bottom of a roller (822).
7. The frozen egg tart puff pastry roll conveying equipment according to claim 3, characterized in that: The mounting bracket (21) is equipped with a lower fixing plate (211), and the mounting frame (61) is placed on the lower fixing plate (211) and fixed by the bolts of the mounting bracket (21) against the mounting frame (61); A pair of inspection rods (22) are provided on the outside of the mounting frame (21). After the mounting platform (61) moves above the inspection rods (22), a support plate (221) is placed on the inspection rods (22), and the mounting platform (61) is placed on the support plate (221).
8. The frozen egg tart puff pastry roll conveying equipment according to claim 1, characterized in that: A baffle frame (11) is mounted on the unloading platform (1). The baffle frame (11) is slidably connected to a baffle roller frame (12). A baffle roller (71) is rotatably connected to the bottom of the baffle roller frame (12). A compression spring (121) is provided between the material stop frame (11) and the roller stop frame (12). The material stop frame (11) is rotatably connected to a cam (122). The bottom of the roller stop frame (12) abuts against the cam (122). The cam (122) is driven to rotate by a motor. The cam (122) can drive the material stop roller (71) to move to the position for the pastry roll to pass through.
9. The frozen egg tart puff pastry roll conveying equipment according to claim 8, characterized in that: An inner sink trough (13) is provided on the upper surface of the unloading platform (1) on the side away from the stopping platform (2) of the baffle (11). Two whole rollers (72) are rotatably connected in the inner sink trough (13), and the baffle roller (71) is located above the whole roller (72). One of the rollers (72) is driven by a motor.
10. The frozen egg tart puff pastry roll conveying equipment according to claim 9, characterized in that: The motors driving the cam (122) and the whole roller (72) are the same motor. The unloading table (1) is equipped with a gear set, and the motor drives the cam (122) and the whole roller (72) respectively through the gear set.
Citation Information
Patent Citations
Automatic cutting device for imitating handmade egg tart crust
CN220987422U
Egg tart kneading machine for imitating handmade egg tart skin
CN222885195U