Automatic fried bread stick arranging and packaging equipment
By designing automatic sorting and packaging equipment for fried dough sticks and adopting components such as material stacking machines and synchronous conveyors, the automatic sorting, transportation, stacking and packaging of fried dough sticks are realized, which solves the problem of low efficiency of manual operation and ensures the consistency of packaging quality.
Patent Information
- Application Number
- CN202422805817.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-18
AI Technical Summary
The existing fried dough stick sorting and packaging process relies on manual operation, resulting in low efficiency and difficulty in ensuring the consistency of packaging quality.
An automatic material sorting and packaging equipment for fried dough sticks is designed, including a material stacking machine, a material pushing baffle and a synchronous conveyor. Through automated sorting, transportation, stacking and packaging processes, efficient and accurate packaging of fried dough sticks is achieved.
The automation of the fried dough stick sorting and packaging process is realized, which improves efficiency, ensures the consistency of packaging quality and simplifies the control system.
Smart Images

Figure CN223443902U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to food packaging machinery field, concretely relates to a fried dough stick automatic material arrangement packaging equipment. BACKGROUND
[0002] After the production and processing of fried dough sticks, it is necessary to first pass through the disc material arrangement machine to preliminarily arrange and arrange, and then package. According to the different packaging specifications, the fried dough sticks are stacked according to specific quantity and specific layer number by manual, and then the stacked fried dough sticks are sent into the packaging machine to complete the packaging of specific specification fried dough sticks.
[0003] Manual stacking is inefficient, and it is difficult to ensure the consistency of packaging quality. With the development of automation technology, the market urgently needs an equipment that can efficiently and accurately complete the material arrangement and packaging of specific specification fried dough sticks. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a fried dough stick automatic material arrangement packaging equipment to solve the technical problem that the fried dough stick material arrangement and packaging process in the prior art relies on manual operation.
[0005] Therefore, a fried dough stick automatic material arrangement packaging equipment of the utility model adopts the following technical scheme:
[0006] A fried dough stick automatic material arrangement packaging equipment, including material layering machine, the material layering machine includes material box, push material baffle one, push material baffle two and push material baffle three, and the material box is used to butt joint the receiving material conveyor to receive the arranged fried dough sticks after preliminary arrangement, and the width of the receiving material conveyor is along the left and right directions, the push material baffle one is located at the left end of the receiving material conveyor and can move reciprocatingly left and right, the material box is located at the right side of the receiving material conveyor and can move reciprocatingly up and down, the left and right sides of the material box are both open to push the arranged fried dough sticks on the left side into the material box and push the stacked fried dough sticks in the material box to the right, and the push material baffle three is located at the right side of the material box to block the right side of the material box, so as to limit the right end position of the fried dough sticks pushed into the material box, the push material baffle two is located between the material box and the receiving material conveyor in the left and right directions, the push material baffle two can move reciprocatingly left and right, the material box has a high position and a low position, when the material box is in the high position state, the upper end surface of the push material baffle two is not higher than the bottom surface of the material box for supporting the fried dough sticks, when the material box is in the low position state, the upper end surface of the push material baffle two corresponds to the height of the uppermost layer of fried dough sticks in the material box, and the lower end surface corresponds to the height of the lowermost layer of fried dough sticks in the material box, so as to push the stacked fried dough sticks in the material box out of the material box.
[0007] Further, the material layering machine includes a layering motor, and the layering motor is used to drive the material box to move reciprocatingly up and down.
[0008] Furthermore, the pushing baffle three can move reciprocatingly up and down. When the pushing baffle three moves up to the highest point, its lower end surface is higher than the uppermost layer of fried dough sticks in the material box in the low position so as not to affect the fried dough sticks in the material box being pushed to the right side of the pushing baffle three. When the pushing baffle three moves down to the lowest point, its position corresponds to the position of the fried dough sticks in the material box in the low position; the pushing baffle three can move reciprocatingly left and right. When the pushing baffle three moves to the right, the fried dough sticks on its right side can be pushed to the right to the synchronous conveyor.
[0009] Furthermore, the material stacking machine also includes a front baffle, which is arranged on the right side of the pushing baffle three. The front baffle can move back and forth up and down. When the front baffle is extended upward, it is used to limit the position of the pile of fried dough sticks pushed to the right by the pushing baffle two. When the front baffle is retracted downward, the pushing baffle three can push the pile of fried dough sticks into the synchronous conveyor on the right.
[0010] Furthermore, it also includes a disc sorter, a grading and stretching conveyor and a receiving conveyor. The disc sorter arranges the fried dough sticks in a consistent direction and sends them to the receiving conveyor via the grading and stretching conveyor. The grading and stretching conveyor is used to increase the distance between the fried dough sticks.
[0011] Furthermore, the receiving conveyor is arranged vertically to the grading pull-distance conveyor, so as to change the fried dough sticks transported in series on the grading pull-distance conveyor to be transported in parallel.
[0012] Furthermore, it also includes a synchronous conveyor, and the disc material sorting machine, the dividing and pulling conveyor and the material receiving conveyor are all provided with multiple groups. A group of the material stacking machine is arranged behind each group of material receiving conveyors, and the multiple groups of material stacking machines are arranged at intervals along the conveying direction of the synchronous conveyor. A reciprocating packaging machine is arranged behind the synchronous conveyor.
[0013] Furthermore, it also includes a belt conveyor 1, a belt force distribution conveying mechanism and a belt conveyor 2. The belt conveyor 2 is provided with multiple groups and is arranged at intervals along the running direction of the belt conveyor 1. The running direction of the belt conveyor 2 is perpendicular to the running direction of the belt conveyor 1. The belt force distribution conveying mechanism is used to send the fried dough sticks transported on the belt conveyor 1 to different belt conveyors 2 respectively. The number of the belt conveyors 2 is consistent with the number of the disc material sorting machines. The end of the belt conveyor 2 is docked with the disc material sorting machine to send the fried dough sticks on it into the disc material sorting machine.
[0014] Compared with the prior art, the advantages and beneficial effects of the present invention are as follows:
[0015] The utility model automatically completes the preliminary arrangement of the orientation of the fried dough sticks, the adjustment of the arrangement direction of the fried dough sticks during transportation, the stacking and packaging of the fried dough sticks in sequence, without the need for human intervention in the whole process, thereby improving the efficiency of the fried dough stick sorting and packaging, and ensuring the consistency of the packaging quality.
[0016] Further, the present application cooperates the pusher baffle one, the pusher baffle two, the pusher baffle three and the front baffle, guarantees the neat arrangement of the fried bread stick after stacking, and is also favorable for simplifying the control system for controlling the operation state of the corresponding executing component.
[0017] The additional aspects and advantages of the present application will be partially given in the following description, and some will become apparent from the following description, or be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS
[0018] The above and / or additional aspects and advantages of the present application will become apparent and more readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings, in which:
[0019] Fig. 1 It is a structural schematic view of one embodiment of the fried bread stick automatic material arranging and packaging equipment of the present application;
[0020] Fig. 2 It is a structural schematic view of the material layering machine;
[0021] Fig. 3 It is a schematic view of the fried bread stick arranging process of the present application.
[0022] 1, belt conveyor one;2, driving force distribution conveying mechanism;3, belt conveyor two;4, centrifugal disc material arranging machine;5, grading and distance conveying machine;6, material receiving conveyor;7, material layering machine;8, synchronous conveyor;9, reciprocating packaging machine;10, fried bread stick;71, material box;72, pusher baffle one;73, pusher baffle two;74, layering motor;75, pusher baffle three;76, front baffle;77, front baffle air cylinder. DETAILED DESCRIPTION
[0023] The embodiments of the present application will be described in detail below, and the embodiments are shown in the accompanying drawings, wherein the same or similar reference signs represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the accompanying drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.
[0024] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting", "fixing" and the like should be understood in a broad sense, for example, can be fixedly connected, or can be detachably connected, or integrally connected;Can be mechanically connected, or electrically connected;Can be directly connected, or indirectly connected through an intermediate medium, or the internal communication of two elements. For ordinary skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0025] An embodiment of the automatic material sorting and packaging equipment for fried dough sticks of the present invention:
[0026] The specific structure of the automatic material sorting and packaging equipment of fried dough sticks of the utility model is as follows Figs. 1-3 As shown, it includes a belt conveyor 1, a belt power distribution conveying mechanism 2, a belt conveyor 3, a centrifugal disc material sorting machine 4, a grading and pulling conveyor 5, a material receiving conveyor 6, a material stacking machine 7, a synchronous conveyor 8 and a reciprocating packaging machine 9.
[0027] Belt conveyor 1 is connected to the dough stick forming equipment and transports the formed dough sticks along the direction of travel of belt conveyor 1. Belt conveyor 2 (3) is arranged perpendicular to the direction of travel of belt conveyor 1 to deliver the dough sticks transported on belt conveyor 1 to the centrifugal disc sorter 4. The belt force distribution conveyor mechanism 2 is used to distribute the dough sticks from belt conveyor 1 to belt conveyor 2 (3), thereby changing the direction of transport of the dough sticks.
[0028] Three groups of powered distribution conveyor mechanisms 2 are spaced apart along the length of belt conveyor 1. Each group of powered distribution conveyor mechanisms 2 connects to a group of belt conveyor 2 3 to divert the fried dough sticks to different centrifugal disc sorters 4. The disorganized fried dough sticks 10 are sorted by the centrifugal disc sorters 4 and then conveyed in a consistent direction. The conveyed fried dough sticks 10, which are in a consistent direction, enter the graded distance conveyor 5. The graded distance conveyor 5 transports the fried dough sticks backward while increasing the distance between each other. In this embodiment, the final product is 20 packaged fried dough sticks. Therefore, the graded distance conveyor 5 is opened a distance after conveying 7 fried dough sticks, then opened a distance after conveying another 7 fried dough sticks, and finally opened a distance after conveying 6 fried dough sticks.
[0029] The receiving conveyor 6 is arranged perpendicularly to the grading and pulling conveyor 5. The vertically serially arranged fried dough sticks 10 transported to the end of the grading and pulling conveyor 5 enter the receiving conveyor 6. As the receiving conveyor 6 steps forward, the dough sticks 10 are arranged in parallel on the receiving conveyor 6. The receiving conveyor 6 then feeds the parallel rows of fried dough sticks 10 into a stacking machine 7, which stacks the dough sticks 10 layer by layer until they reach the specified size. The stacks are then conveyed out of the stacking machine 7 and onto a synchronous conveyor 8, which delivers the stacks of fried dough sticks 10 to a reciprocating packaging machine 9 for packaging.
[0030] The structure of the material stacking machine 7 is as follows: Fig. 2As shown, it comprises a material box 71 and a pushing baffle 72 and a pushing baffle 73. The material receiving conveyor 6 moves in the front-rear direction, the width direction of the material receiving conveyor 6 is in the left-right direction, the material box 71 is located at the right of the material receiving conveyor 6, and the pushing baffle 72 can move reciprocally in the left-right direction. The pushing baffle 72 is normally located at the left end of the material receiving conveyor 6 and does not affect the transportation of the stacked dough sticks 10. When the pushing baffle 72 extends to the right, it can push the stacked dough sticks 10 into the material box 71. When the pushing baffle 72 is reset to the left, it is just in the interval between the two rows of dough sticks 10.
[0031] The material stacking machine 7 further comprises a stacking motor 74, which can drive the material box 71 to move up and down. After the stacked dough sticks 10 fall into the material box 71, the stacking motor 74 drives the material box 71 to lower by the thickness of a layer of dough sticks, and the next row of dough sticks can fall on the previous row of dough sticks. After three layers of dough sticks 10 are stacked, the material box 71 presents a state of 7 dough sticks in the lower layer and the middle layer, 6 dough sticks in the upper layer, and a total of 20 dough sticks stacked into a pile.
[0032] The pushing baffle 73 is located between the material receiving conveyor 6 and the material box 71 in the left-right direction, and the height of the pushing baffle 73 is consistent with the total height of the three layers of dough sticks 10. When the material box 71 is at the lowest point, the upper edge of the pushing baffle 73 corresponds to the height of the uppermost layer of dough sticks in the material box 71; when the material box 71 is at the highest point, the upper edge of the pushing baffle 73 corresponds to the height of the bottom plate of the material box 71 for supporting the dough sticks 10.
[0033] It is emphasized that the left and right sides of the material box 71 are in an open state, so that when the pushing baffle 72 moves from left to right, it can push the stacked dough sticks into the material box 71, and when the material box 71 is lowered layer by layer, the pushing baffle 73 will not block the dough sticks from entering the material box 71. The pushing baffle 73 can move reciprocally in the left-right direction, and when the pushing baffle 73 extends to the right, it can push the 20 stacked dough sticks out of the material box 71. When the pushing baffle 73 is reset to the left, the material box 71 is located above it, so the material box 71 will not affect the left reset of the pushing baffle 73.
[0034] The material stacking machine 7 further comprises a pushing baffle three 75 arranged on the right side of the magazine 71, which can limit the position of the oil sticks to ensure that the right end of the three-layer oil sticks is generally aligned. The pushing baffle three 75 can move up and down and left and right. During the process of the magazine 71 descending layer by layer and the pushing baffle two 73 pushing the 20 oil sticks, the pushing baffle three 75 maintains a high position to limit the position of the right end of the oil sticks. After the 20 oil sticks in the magazine 71 are completely pushed out by the pushing baffle two 73, the pushing baffle three 75 moves right to push the 20 oil sticks into the right synchronous conveyor 8. It is emphasized here that after the 20 oil sticks in the magazine 71 are completely pushed out by the pushing baffle two 73, the stacked oil sticks are supported by the base part of the material stacking machine 7, which is made of food-grade material or covered with a layer of food-grade material.
[0035] In the embodiment, the material stacking machine 7 further comprises a front baffle 77 and a front baffle cylinder 76 for driving the front baffle 77 to move up and down, and the front baffle 77 is located at the rightmost end of the material stacking machine 7. The front baffle 77 is in an extended state in the normal state, which functions to further limit the right end of the oil sticks to make the stacked oil sticks 10 left and right aligned when the pushing baffle two 73 pushes the stacked oil sticks right. After the front baffle 77 is driven by the front baffle cylinder 76 to retract, the pushing baffle three 75 can continue to push the stacked oil sticks right to the synchronous conveyor 8.
Claims
1. An automatic material sorting and packaging equipment for fried dough sticks, characterized by: The material stacking machine includes a material box, a push baffle 1, a push baffle 2 and a push baffle 3. The material box is used to receive the rows of fried dough sticks after preliminary sorting by the receiving conveyor. The width of the receiving conveyor is along the left and right directions. The push baffle 1 is located at the left end of the receiving conveyor and can move back and forth left and right. The material box is located on the right side of the receiving conveyor and can move back and forth up and down. The left and right sides of the material box are open for the rows of fried dough sticks on the left to be pushed in and for the piles of fried dough sticks therein to be pushed out to the right. The push baffle 3 is located on the right side of the material box to The right side of the material box is blocked to limit the right end position of the fried dough sticks pushed into the material box; the second pushing baffle is located between the material box and the material receiving conveyor in the left and right directions, and the second pushing baffle can move back and forth left and right. The material box has a high position and a low position. When the material box is in the high position, the upper end surface of the second pushing baffle is not higher than the bottom surface of the material box for supporting the fried dough sticks; when the material box is in the low position, the upper end surface of the second pushing baffle corresponds to the height of the uppermost layer of fried dough sticks in the material box, and the lower end surface corresponds to the height of the lowermost layer of fried dough sticks in the material box, so as to push the piled fried dough sticks in the material box out of the material box.
2. The automatic material sorting and packaging equipment for fried dough sticks according to claim 1, characterized in that: The material stacking machine includes a stacking motor, and the stacking motor is used to drive the material box to move up and down.
3. The automatic material sorting and packaging equipment for fried dough sticks according to claim 1, characterized in that: The pushing baffle three can move reciprocatingly up and down. When the pushing baffle three moves up to the highest point, its lower end surface is higher than the uppermost layer of fried dough sticks in the material box in the low position so as not to affect the fried dough sticks in the material box being pushed to the right side of the pushing baffle three. When the pushing baffle three moves down to the lowest point, its position corresponds to the position of the fried dough sticks in the material box in the low position; the pushing baffle three can move reciprocatingly left and right. When the pushing baffle three moves to the right, the fried dough sticks on its right side can be pushed to the right to the synchronous conveyor.
4. The automatic material sorting and packaging equipment for fried dough sticks according to claim 3 is characterized in that: The material stacking machine also includes a front baffle, which is arranged on the right side of the pushing baffle three. The front baffle can move back and forth up and down. When the front baffle is extended upward, it is used to limit the position of the pile of fried dough sticks pushed to the right by the pushing baffle two. When the front baffle is retracted downward, the pushing baffle three can push the pile of fried dough sticks into the synchronous conveyor on the right.
5. The automatic fried dough stick packaging equipment according to any one of claims 1 to 4, characterized in that: It also includes a disc sorter, a grading and stretching conveyor and a receiving conveyor. The disc sorter arranges the fried dough sticks in a consistent direction and sends them to the receiving conveyor via the grading and stretching conveyor. The grading and stretching conveyor is used to increase the distance between the fried dough sticks.
6. The automatic fried dough stick packaging equipment according to claim 5, characterized in that: The receiving conveyor is arranged vertically to the grading pull-distance conveyor so as to change the fried dough sticks transported in series on the grading pull-distance conveyor into parallel transportation.
7. The automatic fried dough stick packaging equipment according to claim 5, characterized in that: It also includes a synchronous conveyor, and the disc material sorting machine, the dividing and pulling conveyor and the material receiving conveyor are all provided with multiple groups. A group of the material stacking machine is arranged behind each group of the material receiving conveyor. The multiple groups of material stacking machines are arranged at intervals along the conveying direction of the synchronous conveyor, and a reciprocating packaging machine is arranged behind the synchronous conveyor.
8. The automatic fried dough stick packaging equipment according to claim 7, characterized in that: It also includes a belt conveyor 1, a belt force distribution conveying mechanism and a belt conveyor 2. The belt conveyor 2 is provided with multiple groups and is arranged at intervals along the running direction of the belt conveyor 1. The running direction of the belt conveyor 2 is perpendicular to the running direction of the belt conveyor 1. The belt force distribution conveying mechanism is used to send the fried dough sticks transported on the belt conveyor 1 to different belt conveyors 2 respectively. The number of the belt conveyors 2 is consistent with the number of the disc material processing machines. The end of the belt conveyor 2 is docked with the disc material processing machine to send the fried dough sticks on it into the disc material processing machine.