Full-automatic intelligent egg tart production line
Through the design of the fully automatic intelligent egg tart production line, efficient screening and precise addition of cherries are achieved, and the problems of low cherry screening efficiency and dripping of fluid materials in the existing technology are solved, and the degree of automation and finished product quality of egg tart production is improved.
Patent Information
- Application Number
- CN202510834912.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-20
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the production of cherry egg tarts, the existing intelligent automated egg tart production line has low cherry screening efficiency, inaccurate placement, high work intensity for workers, and fluid materials are prone to residue or dripping, affecting the quality of the finished product.
The fully automatic intelligent egg tart production line is adopted, including components such as feeding machines, conveying lines, pressurization pumps, cylinders, elastic rods and sorting rollers. The intercepting hopper is controlled by the cylinder-driven elastic rods to realize automatic screening and quantitative spraying of cherries, combining sorting rollers and material bearing arc bridges to ensure the precise addition of cherries and the interception of fluid materials.
It improves the efficiency of cherry screening and placement accuracy, reduces manual working strength, prevents fluid material from dripping, and improves the molding quality of egg tarts.
Smart Images

Figure CN120360119A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of egg tart production, and specifically relates to a fully automatic intelligent egg tart production line. Background Art
[0002] Egg tarts are a very popular pastry and are sought after both at home and abroad. However, the production and manufacturing process of egg tarts also requires more intelligent development to meet the demand.
[0003] In the production of cherry egg tarts using existing intelligent automated egg tart production line equipment, after the egg tarts to be processed and formed reach a certain process, workers need to fish them out from the water filtering basket of the equipment for washing cherries, pick out the intact and unbroken qualified cherries one by one and place them on the egg tarts. However, in this process, because there are a large number of egg tarts transported on the conveying production line and the speed is relatively fast, while workers need to sort and place each one, some egg tarts may have cherries left out or missed during placement, and the work intensity is relatively high, resulting in the need for reprocessing later or the appearance of defective products, affecting the after-sales quality problem in the later stage. Moreover, in the production line, during the process of the pressure equipment automatically feeding cream or other materials, the fluid material will remain at the spray outlet, which may cause the residual material to be too long and drag onto the egg tarts to be processed or directly drip, affecting the finished product effect and making it difficult to be widely applied. Summary of the Invention
[0004] In order to solve the deficiencies of the prior art, the present invention provides a fully automatic intelligent egg tart production line, which effectively improves the efficiency of screening cherries and ensures the accuracy of placement when making cherry egg tarts, reduces the work intensity, and can intercept the residual material to prevent the dripping material from affecting the forming quality of the egg tarts.
[0005] The technical solution adopted by the present invention to solve its technical problems is a fully automatic intelligent egg tart production line, including a production body. The material machine is fixedly installed on the upper surface of the production body. The material machine is open. A plurality of chassis are arranged at the bottom end of the material machine. A material cylinder is fixedly installed through the middle parts of the multiple chassis. A feeding nozzle is installed at the bottom end of the material cylinder. Two material intercepting hoppers are rotatably connected to the bottom end of the chassis. The material intercepting hoppers are used in cooperation with the feeding nozzle and there is a cavity between them. A pressure pump is installed on the upper part of the material cylinder. Two air supply pipes are communicated with the outer surface of the pressure pump.
[0006] A conveying line is horizontally installed inside the production body. Two brackets are fixedly installed inside the production body. The conveying line is located below the brackets. A limiting frame is fixedly connected between the two brackets. A limiting through hole is opened in the middle of the limiting frame. A fixed rod is arranged inside the limiting through hole. A sliding head is slidably sleeved on the outer surface of the fixed rod.
[0007] Preferably, a load-bearing plate is connected to the inner side of the feeder. The front end of the load-bearing plate and the inner wall of the feeder are jointly connected to an upper plate. A plurality of cylinders are fixedly installed through the upper plate, and air rods are connected to the upper parts of the plurality of cylinders.
[0008] Preferably, the load-bearing plate and the inner wall of the feeder are jointly connected to a main air pipe, and the main air pipe is connected to a plurality of air rods. A main air pump is fixedly installed at the upper end of the load-bearing plate, and the main air pump is connected to a pressure pump through an air delivery pipe. The plurality of pressure pumps are also connected through an air delivery pipe.
[0009] Preferably, a transverse plate is horizontally connected to the inner wall of the feeder. A plurality of sleeves are fixedly connected through the plurality of transverse plates. An elastic rod is movably arranged through the middle of the sleeve. An elastic piece is welded to one end of the elastic rod located inside the sleeve. A spring is arranged inside the sleeve, and the spring acts on the elastic piece.
[0010] Preferably, the elastic rod passes through the sleeve and extends to the lower part thereof to be fixedly connected to a connecting frame. The bottom end of the connecting frame is rotatably connected to a strip plate. A limiting rod is connected to the outer surface of the sliding head. The limiting rod is movably sleeved through the strip plate, and the limiting through hole is fitted with the strip plate.
[0011] Preferably, a pull rod member is rotatably connected to the outer surface of the sliding head. The material cutting hopper is rotatably connected to the pull rod member and is also rotatably connected to the chassis.
[0012] Preferably, a collection box is installed on the inner wall of one end of the production body, and the collection box is located above the conveyor line.
[0013] Preferably, the present invention also provides a full-automatic intelligent egg tart production line applicable to the above, including a feeding assembly. The feeding assembly includes a rotating shaft rotatably installed inside the production body and a plurality of material-bearing arc bridges annularly connected to the outer surface of the rotating shaft. A plurality of segments are arranged inside each of the plurality of material-bearing arc bridges.
[0014] Preferably, a driving stepping motor is fixedly installed on the inner wall of the production body. The driving stepping motor is connected to the rotating shaft. One end of the rotating shaft passes through the production body and extends to the outside to be sleeved with a first pulley. A second pulley is sleeved on the outside of the worm, and the second pulley is connected to the first pulley through a belt.
[0015] The beneficial effects of the present invention:
[0016] (1) In the present invention, after adding cream and other additives, qualified cherries need to be added one by one. At this time, the washing machine only needs to evenly pour the processed cherries into the hopper. The stacked cherries are gradually shunted and evenly distributed among the partitions, and then gradually slide onto the sorting rollers. As the sorting rollers rotate, the cherries are driven to slide downward step by step. Damaged or smaller-sized cherries are screened and fall into the collection box, which facilitates the screening and addition of cherries and conveniently filters out unqualified products. By driving each sorting roller to rotate, the qualified cherries after screening are guided to slide down, which facilitates the gradual and even shunting of cherries. When the shunted cherries slide to the lowest end, they fall into the dividing end of the segmented plate one by one. Driven by the rotating shaft, the material-bearing arc bridge gradually rotates, so that when the whole of the received cherries is driven to rotate by a certain angle, they are automatically fed into the passing egg tarts in sequence, added orderly, improving production efficiency and reducing the labor intensity.
[0017] (2) In the present invention, under the transportation of the main air pump, pressurized gas is simultaneously input into the air rod through the main air pipe, quickly punching the inside of the air cylinder. After punching, the elastic rod is pushed to quickly descend. After descending, the elastic piece inside the sleeve is driven to press the spring. At the same time, under the movement of the elastic rod, the connecting frame is driven to move, so that the strip plate moves obliquely and pushes the limiting rod to move in the limiting through-hole. At this time, under the drive of the limiting rod, the sliding head pulls the pull rod to slide horizontally outside the fixed rod. Under the movement of the pull rod, the material-cutting hopper is quickly opened, and the material-cutting hopper rotates at an angle on the chassis, which facilitates the cooperation of spraying and intercepting and prevents the dripping of hanging materials. Brief Description of the Drawings
[0018] The present invention will be further described below in conjunction with the drawings and embodiments.
[0019] Figure 1 It is a schematic diagram of the overall connection structure of the intrauterine device of the present invention.
[0020] Figure 2 It is a schematic diagram of the external side view structure of the present invention.
[0021] Figure 3 It is a schematic diagram of the enlarged cross-sectional structure of the material machine of the present invention.
[0022] Figure 4 It is a schematic diagram of the enlarged cross-sectional structure of the material-cutting hopper and the sleeve of the present invention.
[0023] Figure 5 It is a schematic diagram of the enlarged structure of the sorting roller and the hopper of the present invention.
[0024] Figure 6 It is a schematic diagram of the enlarged structure of the feeding assembly of the present invention.
[0025] Figure 7 It is Figure 4 a partial enlarged schematic diagram of
[0026] Figure 8 This is a front view structural schematic diagram of the present invention.
[0027] In the figure: production body 1, conveyor line 110, support 120, feeder 130, material cylinder 131, chassis 132, cutting hopper 133, pressure pump 134, feeding nozzle 135, cutting hopper 133, load-bearing plate 140, sorting assembly 2, sorting roller 210, collection box 211, worm 212, worm gear 213, dividing hopper 220, partition 221, first pulley 222, support arm 230, feeding assembly 3, driving stepper motor 310, rotating shaft 320, material receiving arc bridge 330, dividing plate 340, main air pipe 410, air cylinder 411, air rod 412, upper plate 420, strip plate 421, tension rod member 422, cross plate 430, sleeve 440, spring 441, elastic piece 442, elastic rod 443, connecting frame 444, main air pump 450, air supply pipe 451, limit frame 510, limit through hole 520, fixed rod 530, sliding head 540, limiting rod 550, second pulley 560. Detailed implementation manners
[0028] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific implementation manners.
[0029] An embodiment of the present invention provides a fully automatic intelligent egg tart production line, which effectively improves the efficiency of screening cherries and ensures the accuracy of feeding when making cherry egg tarts, reduces the working intensity, and can intercept residual materials to prevent the dripping materials from affecting the forming quality of egg tarts.
[0030] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, a fully automatic intelligent egg tart production line includes a production body 1, a feeder 130 is fixedly installed on the upper surface of the production body 1, the feeder 130 is open, a plurality of chassis 132 are arranged at the bottom end of the feeder 130, a material cylinder 131 is fixedly installed through the middle parts of the plurality of chassis 132, a feeding nozzle 135 is installed at the bottom end of the material cylinder 131, two cutting hoppers 133 are rotatably connected to the bottom end of the chassis 132, the cutting hoppers 133 are used in cooperation with the feeding nozzle 135, and there is a cavity therebetween, a pressure pump 134 is installed on the upper part of the material cylinder 131, and two air supply pipes 451 are communicated with the outer surface of the pressure pump 134.
[0031] The conveyor line 110 is horizontally installed inside the production body 1. Two brackets 120 are fixedly installed inside the production body 1. The conveyor line 110 is located below the brackets 120. A limit frame 510 is fixedly connected between the two brackets 120. A limit through-hole 520 is opened in the middle of the limit frame 510. A fixed rod 530 is arranged inside the limit through-hole 520. A sliding head 540 is slidably sleeved on the outer surface of the fixed rod 530.
[0032] During operation, after the production body 1 is opened, the conveyor line 110 operates to convey the to-be-processed egg tarts. Whenever an egg tart is about to enter the bottom end of the feeding nozzle 135, the controller automatically turns on the switch of the main air pump 450. The main air pump 450 pressurizes. The pressurized gas quickly enters the pressure pump 134 for supercharging, and the cream or other materials in the material cylinder 131 are quantitatively ejected through the material cutting hopper 133, which is convenient for the quantitative feeding of the materials.
[0033] As Figure 1 、 Figure 2 、 Figure 3 shown, a load-bearing plate 140 is connected to the inside of the material machine 130. The front end of the load-bearing plate 140 and the inner wall of the material machine 130 are jointly connected with an upper plate 420. A plurality of air cylinders 411 are fixedly installed through the upper plate 420. Air rods 412 are communicated with the upper parts of the plurality of air cylinders 411. The load-bearing plate 140 and the inner wall of the material machine 130 are jointly connected with a main air pipe 410, and the main air pipe 410 is communicated with the plurality of air rods 412. A main air pump 450 is fixedly installed at the upper end of the load-bearing plate 140, and the main air pump 450 is communicated with the pressure pump 134 through an air delivery pipe 451. The plurality of pressure pumps 134 are also communicated with each other through the air delivery pipe 451.
[0034] Subsequently, under the delivery of the main air pump 450, the pressurized gas is simultaneously input into the air rods 412 through the main air pipe 410, quickly punching the inside of the air cylinders 411, and after punching, the elastic rod 443 is pushed to quickly descend.
[0035] As Figure 3 、 Figure 4 and Figure 7As shown, a cross plate 430 is horizontally connected to the inner wall of the material machine 130. A plurality of cross plates 430 are fixedly connected with sleeves 440 inserted through them. An elastic rod 443 is movably arranged through the middle of the sleeve 440. An elastic piece 442 is welded to one end of the elastic rod 443 located inside the sleeve 440. A spring 441 is arranged inside the sleeve 440, and the spring 441 acts on the elastic piece 442. The elastic rod 443 passes through the sleeve 440 and extends to its lower part to be fixedly connected with a connecting frame 444. The bottom end of the connecting frame 444 is rotatably connected with a strip plate 421. A limiting rod 550 is connected to the outer surface of the sliding head 540. The limiting rod 550 is movably sleeved through the strip plate 421 in an inserted manner, and the limiting through hole 520 is fitted with the strip plate 421. A pull rod member 422 is rotatably connected to the outer surface of the sliding head 540. The material cutting hopper 133 is rotatably connected to the pull rod member 422 and is also rotatably connected to the chassis 132.
[0036] During operation, after descending, it drives the elastic piece 442 in the sleeve 440 to press the spring 441. At the same time, under the movement of the elastic rod 443, it drives the connecting frame 444 to move, thereby making the strip plate 421 move obliquely and pushing the limiting rod 550 to move in the limiting through hole 520. At this time, driven by the limiting rod 550, the sliding head 540 pulls the pull rod member 422 to slide horizontally outside the fixed rod 530. Under the movement of the pull rod member 422, it drives the material cutting hopper 133 to quickly open. The material cutting hopper 133 rotates at an angle on the chassis 132, which is convenient for the cooperation of spraying and intercepting materials and prevents the hanging materials from dripping.
[0037] As Figure 1 、 Figure 2 and Figure 5 As shown in
[0038] During operation, through the drive of the driving stepper motor 310, the rotating shaft 320 rotates. After the rotating shaft 320 rotates, it drives the first pulley 222 to rotate. The first pulley 222 drives the second pulley 560 to rotate through a belt, so that the worm 212 rotates to drive a plurality of meshing worm wheels 213 to rotate, thereby driving each sorting roller 210 to rotate, guiding the screened qualified cherries to slide down, which is convenient for the gradual and average diversion of the cherries.
[0039] As Figure 1 、 Figure 5 and Figure 8As shown in the figure, a collection box 211 is installed on the inner wall at one end of the production body 1. The collection box 211 is located above the conveyor line 110. Support arms 230 are obliquely connected to both outer walls of the production body 1. A dividing hopper 220 is jointly connected between the two support arms 230. A number of partition plates 221 are provided inside the dividing hopper 220. The feeding assembly 3 includes a rotating shaft 320 rotatably installed inside the production body 1 and a number of material-bearing arc bridges 330 annularly connected to the outer surface of the rotating shaft 320. A number of dividing plates 340 are provided inside each of the number of material-bearing arc bridges 330. A driving stepping motor 310 is fixedly installed on the inner wall of the production body 1. The driving stepping motor 310 is connected to the rotating shaft 320. One end of the rotating shaft 320 passes through the production body 1 and extends to the outside and is sleeved with a first pulley 222. A second pulley 560 is sleeved on the outside of the worm 212. The second pulley 560 is connected to the first pulley 222 by a belt.
[0040] During operation, in the process of making egg tarts, after adding cream and other additives, qualified cherries need to be added one by one. At this time, the cleaning machine only needs to evenly pour the processed cherries into the dividing hopper 220. The stacked cherries are gradually divided and averaged in the partition plates 221 and gradually slide onto the sorting roller 210. As the sorting roller 210 rolls, the cherries are gradually driven to slide down. The damaged or smaller-sized ones are screened and fall into the collection box 211, which is convenient for screening and adding cherries and filtering out unqualified products.
[0041] The specific working process is as follows: First, after opening the production body 1, the conveyor line 110 operates to convey the egg tarts to be processed. Whenever an egg tart pre-enters the bottom end of the feeding nozzle 135, the controller automatically turns on the switch of the main air pump 450. The main air pump 450 pressurizes, and the pressurized gas quickly enters the pressurizing pump 134 for supercharging, and the cream or other materials in the material cylinder 131 are quantitatively ejected through the material intercepting hopper 133, which is convenient for quantitatively feeding the materials; Subsequently, at this time, under the conveyance of the main air pump 450, the pressurized gas is simultaneously input into the air rod 412 through the main air pipe 410, quickly stamping the inside of the air cylinder 411. After stamping, the elastic rod 443 is pushed to quickly descend. After descending, the elastic piece 442 inside the sleeve 440 presses the spring 441. At the same time, under the movement of the elastic rod 443, the connecting frame 444 is driven to move, so that the strip plate 421 moves obliquely and pushes the limiting rod 550 to move in the limit through hole 520. At this time, under the drive of the limiting rod 550, the sliding head 540 pulls the pull rod member 422 to horizontally slide outside the fixed rod 530. Under the movement of the pull rod member 422, the material intercepting hopper 133 is quickly opened, and the material intercepting hopper 133 rotates an angle on the chassis 132, which is convenient for the cooperation of spraying and intercepting materials to prevent dripping of hanging materials; Subsequently, after the spraying of materials, the main air pump 450 stands by, and the spring 441 resets, causing the above operations to move in the specified direction and reset. At this time, the residual hanging materials ejected by the feeding nozzle 135 can be intercepted in the material intercepting hopper 133. After processing a batch of egg tarts, the intercepted materials can be processed, which is convenient for cleaning the hanging materials and convenient for use. During the production of egg tarts, after adding cream and other additives, qualified cherries need to be added one by one. At this time, the cleaning machine only needs to evenly pour the processed cherries into the dividing hopper 220. The piled cherries are gradually divided and averaged by the partition 221 and gradually slide onto the sorting roller 210. As the sorting roller 210 rotates, the cherries gradually slide down. Damaged or smaller-sized cherries are screened and fall into the collection box 211, which is convenient for screening and adding cherries and filtering out unqualified products. By driving the stepping motor 310, the rotating shaft 320 is driven to rotate. After the rotating shaft 320 rotates, the first pulley 222 is driven to rotate. The first pulley 222 drives the second pulley 560 to rotate through a belt, causing the worm 212 to rotate and drive a plurality of meshing worm wheels 213 to rotate, thereby driving each sorting roller 210 to rotate and guiding the screened qualified cherries to slide down, which is convenient for the gradual and even diversion of cherries. When the diverted cherries slide to the lowest end, they fall into the dividing end of the segmented piece 340 in a row. Driven by the rotating shaft 320, the material-bearing arc bridge 330 gradually rotates. When the whole of the received cherries is driven to rotate by a certain angle, they are automatically fed into the passing egg tarts in sequence, which improves the production efficiency and reduces the manual labor intensity.
[0042] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification only illustrate the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.
Claims
1. An automatic intelligent egg tart production line, comprising a production body (1), characterized in that, It further includes: A material feeder (130), which is fixedly installed on the upper surface of the production body (1). The material feeder (130) is open. There are several chassis (132) arranged at the bottom end of the material feeder (130). A material cylinder (131) is fixedly installed through the middle parts of the multiple chassis (132). A feeding nozzle (135) is installed at the bottom end of the material cylinder (131). Two material cutting hoppers (133) are rotatably connected to the bottom end of the chassis (132). The material cutting hoppers (133) are used in cooperation with the feeding nozzle (135), and there is a cavity between them. A pressure pump (134) is installed on the upper part of the material cylinder (131). Two air supply pipes (451) are communicated with the outer surface of the pressure pump (134). A conveyor line (110), which is horizontally installed inside the production body (1). Two brackets (120) are fixedly installed inside the production body (1). The conveyor line (110) is located below the brackets (120). A limiting frame (510) is fixedly connected between the two brackets (120). A limiting through hole (520) is opened in the middle of the limiting frame (510). A fixed rod (530) is arranged inside the limiting through hole (520). A sliding head (540) is slidably sleeved on the outer surface of the fixed rod (530).
2. The fully automatic intelligent egg tart production line according to claim 1, wherein: A bearing plate (140) is connected inside the material feeder (130). The front end of the bearing plate (140) and the inner wall of the material feeder (130) are jointly connected with an upper plate (420). A plurality of air cylinders (411) are fixedly installed through the upper plate (420). Air rods (412) are communicated with the upper parts of the multiple air cylinders (411).
3. The full-automatic intelligent egg tart production line according to claim 2, wherein: The bearing plate (140) and the inner wall of the material feeder (130) are jointly connected with a main air pipe (410), and the main air pipe (410) is communicated with the multiple air rods (412). A main air pump (450) is fixedly installed at the upper end of the bearing plate (140), and the main air pump (450) is communicated with the pressure pump (134) through an air supply pipe (451). The multiple pressure pumps (134) are also communicated with each other through the air supply pipe (451).
4. The full-automatic intelligent egg tart production line according to claim 3, wherein: A cross plate (430) is horizontally connected to the inner wall of the material feeder (130). A sleeve (440) is fixedly installed through the multiple cross plates (430). An elastic rod (443) is movably arranged through the middle of the sleeve (440). An elastic piece (442) is welded to one end of the elastic rod (443) located inside the sleeve (440). A spring (441) is arranged inside the sleeve (440), and the spring (441) acts on the elastic piece (442).
5. The full-automatic intelligent egg tart production line according to claim 4, wherein: The elastic rod (443) passes through the sleeve (440) and extends to the lower part thereof to be fixedly connected with a connecting frame (444). The bottom end of the connecting frame (444) is rotatably connected with a strip plate (421). A limiting rod (550) is connected to the outer surface of the sliding head (540). The limiting rod (550) is movably sleeved through the strip plate (421) in an intersecting manner, and the limiting through hole (520) is fitted with the strip plate (421).
6. The full-automatic intelligent egg tart production line according to claim 5, wherein: A pull rod member (422) is rotatably connected to the outer surface of the sliding head (540). The cutting hopper (133) is rotatably connected to the pull rod member (422) and is also rotatably connected to the chassis (132).
7. The fully automatic intelligent egg tart production line according to claim 1, wherein: A collection box (211) is installed on the inner wall at one end of the production body (1). The collection box (211) is located above the conveyor line (110).
8. A fully automatic intelligent egg tart production line according to claim 4, characterized in that: Support arms (230) are obliquely connected to both outer walls of the production body (1). A sorting hopper (220) is jointly connected between the two support arms (230). A number of partitions (221) are provided inside the sorting hopper (220). A sorting assembly (2) is installed inside the production body (1). The sorting assembly (2) includes a number of sorting rollers (210) rotatably installed inside the production body (1), and worm wheels (213) fixedly sleeved on one end of the sorting rollers (210). A worm (212) is rotatably installed between the two support arms (230). The worm (212) meshes with the worm wheel (213).
9. The full-automatic intelligent egg tart production line according to claim 8, characterized in that: It further includes a feeding assembly (3). The feeding assembly (3) includes a rotating shaft (320) rotatably installed inside the production body (1) and a number of material-bearing arc bridges (330) annularly connected to the outer surface of the rotating shaft (320). A number of partitions (340) are provided inside each of the material-bearing arc bridges (330).
10. The full-automatic intelligent egg tart production line according to claim 9, wherein: A driving stepping motor (310) is fixedly installed on the inner wall of the production body (1). The driving stepping motor (310) is connected to the rotating shaft (320). One end of the rotating shaft (320) passes through the production body (1) and extends to the outside with a first pulley (222) sleeved thereon. A second pulley (560) is sleeved on the outside of the worm (212). The second pulley (560) is connected to the first pulley (222) by a belt.