Sugar-free bread production equipment and production process
By introducing a support frame, limiting components, and adsorption components into the sugar-free bread production equipment, and utilizing the cooperation between the guide plate and the limiting frame, the problem of frequent switching of the adsorption head is solved, ensuring smooth bread delivery and stable adsorption force, and simplifying the operation process.
Patent Information
- Application Number
- CN202311268256.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-09-28
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2043-09-28
AI Technical Summary
In existing sugar-free bread production equipment, the frequent switching of the adsorption head causes operational inconvenience and the accumulation of bread crumbs affects the adsorption force, increasing the cost of use.
The system uses a combination of a first and second conveyor belt, a support frame, a limiting component, and an adsorption component. Through the cooperation of the guide plate and the limiting frame, the adsorption head seat rotates and separates, and the bread naturally falls into the second conveyor belt, avoiding repeated opening and closing operations.
It enables smooth bread delivery, simplifies the operation process, reduces the maintenance requirements of the suction head, and maintains the stability of the suction force.
Smart Images

Figure CN117179012B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of food processing equipment, in particular to a sugar-free bread production equipment and production process. BACKGROUND
[0002] The sugar-free Danish bread is a kind of pastry, the main materials of which are fresh high-gluten flour and low-gluten flour, the ingredients are sugar-free baking sweet modifier and yeast, and the seasonings are appropriate amount of salt and butter, etc.
[0003] In the prior art, CN112167285B discloses a sandwich bread production equipment, and the equipment disclosed in the patent can meet the production of bread. In the patent, it is pointed out that the bread enters the next process after being adsorbed by the adsorption head. In this process, the adsorption head needs to be opened and closed. After the adsorption head is closed, the bread falls down.
[0004] However, the opening and closing of the adsorption head makes the overall operation more troublesome, and the use cost will be higher if a control program is used to open and close the adsorption head. Moreover, the surface of the adsorption head will be covered with bread crumbs after long-term adsorption of the bread. Over a long period of time, the accumulation of bread crumbs will cause the adsorption force of the adsorption head to be insufficient. SUMMARY
[0005] The present application aims to provide a sugar-free bread production equipment and production process to solve the problems in the background.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical scheme: a sugar-free bread production equipment, comprising a first conveying belt, the surface of the first conveying belt is provided with bread, the surface of a support frame is rotatably connected with a mounting assembly, the surface of the mounting assembly is slidably connected with an adsorption assembly, and the adsorption assembly adsorbs the bread; and a second conveying belt is arranged above the first conveying belt, and a limiting assembly is arranged on the surface of the support frame to limit the adsorption assembly.
[0007] Preferably, the support frame is provided with two groups, the side surface of one group of support frames is provided with an electric motor, the rotating end of the electric motor is provided with a driving shaft, the surface of the other group of support frames is provided with a positioning shaft, and the driving shaft and the positioning shaft are both circular column structures.
[0008] Preferably, the mounting assembly comprises a linkage rod, a guide rod, a supporting spring and a sliding plate, the linkage rod is a circular column structure, the two sides of the linkage rod are both provided with mounting openings, the driving shaft is fixed in one group of mounting openings, the positioning shaft is rotatably connected in the other group of mounting openings, the surface of the linkage rod is provided with a sliding groove and a guide groove, the sliding groove is a circular column groove, the guide groove is a square plate-shaped groove structure, the sliding groove is coaxial with the linkage rod, the guide groove penetrates through the linkage rod, and the guide groove is provided with two groups, the two groups of guide grooves are symmetrically distributed about the center of the linkage rod.
[0009] Preferably, the sliding grooves are provided in two groups, the two groups of sliding grooves are symmetrically distributed about the center of the linkage rod, the guide rod is in a circular column structure, the guide rod is fixed to the surface of one group of sliding grooves, one end of the guide rod penetrates through the linkage rod and is fixed to the surface of the other group of sliding grooves, and the sliding plate is in a ring-shaped plate structure, the sliding plate is sleeved outside the guide rod, and the supporting spring is fixed between the sliding groove and the sliding plate.
[0010] Preferably, the adsorption assembly comprises a sliding plate, a guide plate, an adsorption head base, and an adsorption head, the sliding plate is in an arc-shaped plate structure, the sliding plate is slidingly connected in the sliding groove, the inner ring surface of the sliding plate is in contact with the surface of the guide rod, the sliding plate is located between the sliding plate and the supporting spring, the guide plate is fixed to one end of the sliding plate, and the guide plate is slidingly connected to the surface of the guide groove.
[0011] Preferably, the adsorption head base is fixed to one end of the guide plate, the adsorption head base is in an arc-shaped plate structure, the adsorption head is arranged on the surface of the adsorption head base, the adsorption head is provided in multiple groups, and the bread is located directly below the adsorption head, the adsorption head base is provided in two groups, and the two groups of adsorption head bases are symmetrically distributed about the center of the sliding groove.
[0012] Preferably, the limiting assembly comprises a mounting frame, a connecting frame, and a limiting frame, the mounting frame is fixed to the top surface of one group of supporting frames, the mounting frame is in an L-shaped plate structure, the connecting frame is fixed to one end of the mounting frame, and the limiting frame is fixed to the bottom end of the connecting frame, the limiting frame is in an inclined V-shaped plate, and the limiting frame is located at the center of the two groups of adsorption head bases, and the guide plate is in contact with the surface of the limiting frame.
[0013] Preferably, the side surface of the supporting frame is provided with a cleaning plate, the cleaning plate is in an L-shaped plate structure, one end of the cleaning plate is fixed to the side surface of the other group of supporting frames, the surface of the cleaning plate is provided with a cleaning groove, the cleaning groove is in an arc-shaped surface matched with the adsorption head, the arc-shaped surface is provided with bristles, the adsorption head is in contact with the surface of the cleaning groove, and the top surface of the second conveying belt is higher than the top surface of the cleaning plate.
[0014] A sugar-free bread production process, comprising the following steps: driving the shaft to rotate to drive the adsorption head base to rotate, the adsorption head adsorbs the bread, the guide plate passes through the limiting frame to separate the two groups of adsorption head bases, the bread on the surface of the adsorption head falls to the surface of the second conveying belt, and the bread is conveniently fed into the next manufacturing process.
[0015] Compared with the prior art, the beneficial effects of the present application are:
[0016] The sugar-free bread production equipment provided by the application, in the process of rotating the adsorption head base, the guide plate will contact the surface of the limiting frame, when the guide plate contacts the surface of the limiting frame, the guide plate will slide along one side of the limiting frame, at the same time, the guide plate drives the sliding plate to move along the surface of the sliding groove, the two groups of adsorption head bases show a mutual moving away trend, until the two groups of adsorption head bases move away to the point that the bread no longer contacts the surface of the adsorption head, the bread can no longer be adsorbed on the surface of the adsorption head, at this time, the bread just falls on the surface of the second conveying belt and enters the next process, the overall operation is convenient, and the adsorption head does not need to be repeatedly switched on and off. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic view of the application;
[0018] Figure 2 It is a semi-partial structural schematic view of the installation assembly of the application;
[0019] Figure 3 It is a structural schematic view of the adsorption assembly of the application;
[0020] Figure 4 It is a structural schematic view of the connection between the support frame and the limiting assembly of the application;
[0021] Figure 5 It is a partial structural schematic view of the application;
[0022] Figure 6 It is a whole partial sectional schematic view of the application.
[0023] In the figure: the first conveying belt 1, the bread 2, the support frame 3, the motor 4, the driving shaft 5, the linkage rod 6, the installation port 7, the positioning shaft 8, the sliding groove 9, the guide groove 10, the sliding plate 11, the guide plate 12, the guide rod 13, the support spring 14, the adsorption head base 15, the adsorption head 16, the installation frame 17, the connecting frame 18, the limiting frame 19, the cleaning plate 20, the cleaning groove 21, the second conveying belt 22, and the sliding plate 23. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0025] Embodiment one
[0026] Please refer to Figures 1-6The application provides a technical scheme: a sugar-free bread production equipment, which comprises a first conveying belt 1, bread 2 is placed on the surface of the first conveying belt 1, a supporting frame 3 is provided with a mounting assembly rotatably connected to the surface of the supporting frame 3, the surface of the mounting assembly is slidably connected with an adsorption assembly, and the adsorption assembly is used for adsorbing the bread 2; a second conveying belt 22 is arranged above the first conveying belt 1, and the surface of the supporting frame 3 is provided with a limiting assembly, the limiting assembly is used for limiting the adsorption assembly; in the rotating process of the adsorption head base 15, the guide plate 12 is in contact with the surface of the limiting frame 19, when the guide plate 12 is in contact with the surface of the limiting frame 19, the guide plate 12 slides along one side of the limiting frame 19, at the same time, the guide plate 12 drives the sliding plate 11 to move along the surface of the sliding groove 9, two groups of adsorption head bases 15 are away from each other, until the two groups of adsorption head bases 15 are away from each other to the extent that the bread 2 is not in contact with the surface of the adsorption head 16, the bread 2 cannot be adsorbed on the surface of the adsorption head 16 any more, at this time, the bread 2 just falls on the surface of the second conveying belt 22 and enters the next process, the whole operation is convenient, and the adsorption head 16 does not need to be repeatedly switched on and off; when the guide plate 12 moves along the limiting frame 19 to the extent that the guide plate 12 is not in contact with the limiting frame 19, under the supporting effect of the supporting spring 14, the supporting spring 14 supports the sliding plate 23 to drive the sliding plate 11 to reset, that is, the two groups of adsorption head bases 15 are in a mutual approaching state, and the subsequent adsorption head 16 can continue to adsorb the bread 2.
[0027] Example two
[0028] On the basis of example one, reference is made to Figures 1-5, in order to realize the adsorption of bread 2, facilitate the bread 2 into the next production process, support frame 3 is provided with two groups, a group of support frame 3 is provided with motor 4 on the side, the rotating end of motor 4 is provided with drive shaft 5, the surface of another group of support frame 3 is provided with positioning shaft 8, and the positioning shaft 8 and the drive shaft 5 are both circular column structure;The mounting assembly comprises linkage rod 6, guide rod 13, support spring 14, sliding plate 23, linkage rod 6 is circular column structure, both sides of linkage rod 6 are provided with mounting port 7, and drive shaft 5 is fixed in a group of mounting port 7, positioning shaft 8 is rotatably connected in another group of mounting port 7, the surface of linkage rod 6 is provided with sliding groove 9 and guide groove 10, sliding groove 9 is circular column groove, guide groove 10 is square plate slot structure, and sliding groove 9 and linkage rod 6 are coaxial, guide groove 10 penetrates linkage rod 6, guide groove 10 is provided with two groups, and the two groups of guide grooves 10 are symmetrically distributed about the center of linkage rod 6;Sliding groove 9 is provided with two groups, and the two groups of sliding grooves 9 are symmetrically distributed about the center of linkage rod 6, guide rod 13 is circular column structure, guide rod 13 is fixed on the surface of a group of sliding grooves 9, one end of guide rod 13 penetrates linkage rod 6 and is fixed on the surface of another group of sliding grooves 9, and sliding plate 23 is annular plate structure, sliding plate 23 is sleeved outside guide rod 13, and support spring 14 is fixed between sliding groove 9 and sliding plate 23;The adsorption assembly comprises sliding plate 11, guide plate 12, adsorption head base 15 and adsorption head 16, sliding plate 11 is arc plate structure, sliding plate 11 is slidably connected in sliding groove 9, the inner ring surface of sliding plate 11 is in contact with the surface of guide rod 13, and sliding plate 23 is located between sliding plate 11 and support spring 14, guide plate 12 is fixed on one end of sliding plate 11, and guide plate 12 is slidably connected on the surface of guide groove 10;Adsorption head base 15 is fixed on one end of guide plate 12, adsorption head base 15 is arc plate structure, adsorption head 16 is arranged on the surface of adsorption head base 15, adsorption head 16 is provided with multiple groups, and bread 2 is located directly below adsorption head 16, adsorption head base 15 is provided with two groups, and the two groups of adsorption head bases 15 are symmetrically distributed about the center of sliding groove 9;
[0029] Firstly, under the support of support spring 14, support spring 14 will support sliding plate 23 to support sliding plate 11, so that the two groups of sliding plates 11 are close to each other;Secondly, the rotation of motor 4 drives the rotation of drive shaft 5, the rotation of drive shaft 5 drives the rotation of linkage rod 6, and the rotation of linkage rod 6 drives the rotation of adsorption head base 15 in the process;Finally, when the adsorption head 16 is located directly above the bread 2, the adsorption head 16 will adsorb the bread 2 on its surface.
[0030] Example three
[0031] On the basis of example two, refer to Figures 4-6, in order to make the bread 2 after adsorption more convenient for the next production process, the limiting assembly includes a mounting frame 17, a connecting frame 18, and a limiting frame 19. The mounting frame 17 is fixed on the top surface of a group of support frames 3. The mounting frame 17 is in the shape of an "L" plate structure. The connecting frame 18 is fixed on one end of the mounting frame 17. The limiting frame 19 is fixed on the bottom end of the connecting frame 18. The limiting frame 19 is in the shape of an inclined "V" plate (the limiting frame 19 is inclined with reference to the center line of the linkage rod 6). The limiting frame 19 is located at the center of the two groups of adsorption head bases 15. The guide plate 12 is in contact with the surface of the limiting frame 19.
[0032] During the rotation of the adsorption head base 15, the guide plate 12 will be in contact with the surface of the limiting frame 19. When the guide plate 12 is in contact with the surface of the limiting frame 19, the guide plate 12 will slide along one side of the limiting frame 19. At the same time, the guide plate 12 drives the sliding plate 11 to move along the surface of the sliding groove 9. The two groups of adsorption head bases 15 tend to move away from each other. When the two groups of adsorption head bases 15 move away until the bread 2 is no longer in contact with the surface of the adsorption head 16, the bread 2 can no longer be adsorbed on the surface of the adsorption head 16. At this time, the bread 2 just falls on the surface of the second conveying belt 22 to enter the next process. The overall operation is convenient, and the adsorption head 16 does not need to be repeatedly turned on and off.
[0033] When the guide plate 12 moves along the limiting frame 19 until the guide plate 12 is no longer in contact with the limiting frame 19, under the support of the support spring 14, the support spring 14 supports the sliding plate 23 to drive the sliding plate 11 to reset, that is, the two groups of adsorption head bases 15 are in a state of approaching each other, which is convenient for the subsequent adsorption head 16 to continue to adsorb the bread 2.
[0034] Example Four
[0035] Based on example three, with reference to Figures 4-6 In order to keep the adsorption head 16 having sufficient adsorption force to adsorb the bread 2, the side surface of the support frame 3 is provided with a cleaning plate 20. The cleaning plate 20 is in the shape of an "L" plate structure. One end of the cleaning plate 20 is fixed on the side surface of the other group of support frames 3. The surface of the cleaning plate 20 is provided with a cleaning groove 21. The cleaning groove 21 is in the shape of an arc surface matched with the adsorption head 16. The arc surface is provided with bristles. The adsorption head 16 is in contact with the surface of the cleaning groove 21. The top surface of the second conveying belt 22 is higher than the top surface of the cleaning plate 20.
[0036] After the bread 2 on the surface of the adsorption head 16 falls on the surface of the second conveying belt 22, the adsorption head 16 will pass through the cleaning groove 21. At this time, the surface of the cleaning groove 21 is the bristles which just clean the adsorption head 16 just adsorbed the bread. The cleaned adsorption head 16 just adsorbs the next bread 2.
[0037] Example Five
[0038] A sugar-free bread production process, comprising the following steps: driving the rotating shaft to drive the adsorption head seat to rotate, the adsorption head adsorbs the bread, and when the guide plate passes through the limiting frame, the two groups of adsorption head seats are separated, so that the bread on the surface of the adsorption head falls to the surface of the second conveying belt, and the bread is conveniently fed into the next manufacturing process.
[0039] In actual use, the first conveying belt 1 and the second conveying belt 22 are consistent with the conveying belt indicated in the patent "CN112167285B Sandwich bread production equipment", and the specific use mode is also consistent.
[0040] Although embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A sugar-free bread production device, comprising a first conveyor belt (1), on which bread (2) is placed, and on the surface of a support frame (3) are rotatably connected an installation component, and on the surface of the installation component are slidably connected an adsorption component, the adsorption component adsorbing the bread (2); and a second conveyor belt (22) is disposed directly above the first conveyor belt (1), characterized in that: The surface of the support frame (3) is provided with a limiting component, which limits the adsorption component; the adsorption component includes a sliding plate (11), a guide plate (12), an adsorption head seat (15), and an adsorption head (16). The sliding plate (11) has an arc-shaped plate structure. The installation component includes a linkage rod (6), a guide rod (13), a support spring (14), and a sliding plate (23). The surface of the linkage rod (6) is provided with a sliding groove (9) and a guide groove (10). The sliding groove (9) is a circular cylindrical groove, and the guide groove (10) is a circular cylindrical groove. 10) It has a square plate-shaped groove structure, and the sliding groove (9) and the linkage rod (6) are coaxial. The guide groove (10) passes through the linkage rod (6). There are two sets of guide grooves (10), and the two sets of guide grooves (10) are symmetrically distributed about the center of the linkage rod (6). The sliding plate (11) is slidably connected in the sliding groove (9), and the inner ring surface of the sliding plate (11) is in contact with the surface of the guide rod (13). The sliding plate (23) is located between the sliding plate (11) and the support spring (14). The guide plate (12) is fixed in the sliding groove. One end of the plate (11) has a guide plate (12) slidably connected to the surface of the guide groove (10); the adsorption head seat (15) is fixed to one end of the guide plate (12), the adsorption head seat (15) has an arc-shaped plate structure, the adsorption head (16) is located on the surface of the adsorption head seat (15), there are multiple sets of adsorption heads (16), and the bread (2) is located directly below the adsorption head (16). There are two sets of adsorption head seats (15), and the two sets of adsorption head seats (15) are symmetrically distributed about the center of the sliding groove (9); the limiting component includes Mounting bracket (17), connecting bracket (18), limiting bracket (19). Mounting bracket (17) is fixed on the top surface of a set of support brackets (3). Mounting bracket (17) has an "L" shaped plate structure. Connecting bracket (18) is fixed at one end of mounting bracket (17). Limiting bracket (19) is fixed at the bottom end of connecting bracket (18). Limiting bracket (19) has an inclined "V" shaped plate. Limiting bracket (19) is located at the center of two sets of adsorption head seats (15). Guide plate (12) is in contact with the surface of limiting bracket (19).
2. The sugar-free bread production equipment according to claim 1, characterized in that: The support frame (3) is provided in two sets. One set of support frame (3) has a motor (4) on its side and a drive shaft (5) on its rotating end. The other set of support frame (3) has a positioning shaft (8) on its surface. Both the positioning shaft (8) and the drive shaft (5) are cylindrical structures.
3. The sugar-free bread production equipment according to claim 2, characterized in that: The linkage rod (6) has a cylindrical structure. Both sides of the linkage rod (6) are provided with mounting ports (7), and the drive shaft (5) is fixed in the mounting port (7) on one side, while the positioning shaft (8) is rotatably connected in the mounting port (7) on the other side.
4. The sugar-free bread production equipment according to claim 3, characterized in that: The sliding groove (9) is provided in two sets. The two sets of sliding grooves (9) are symmetrically distributed about the center of the linkage rod (6). The guide rod (13) has a circular cylindrical structure. The guide rod (13) is fixed on the surface of one set of sliding grooves (9). One end of the guide rod (13) passes through the linkage rod (6) and is fixed on the surface of the other set of sliding grooves (9). The slide plate (23) has an annular plate structure. The slide plate (23) is sleeved on the outside of the guide rod (13). The support spring (14) is fixed between the sliding groove (9) and the slide plate (23).
5. The sugar-free bread production equipment according to claim 2, characterized in that: The side of the support frame (3) is provided with a cleaning plate (20). The cleaning plate (20) has an "L" shaped plate structure. One end of the cleaning plate (20) is fixed to the side of another set of support frames (3). The surface of the cleaning plate (20) is provided with a cleaning groove (21). The cleaning groove (21) is an arc-shaped surface that cooperates with the suction head (16). The surface of the arc-shaped surface is provided with bristles. The suction head (16) is in contact with the surface of the cleaning groove (21). The top surface of the second conveyor belt (22) is higher than the top surface of the cleaning plate (20).
6. A production process for producing sugar-free bread using the equipment described in any one of claims 1-5, characterized in that: The production process includes the following steps: the drive shaft rotates to drive the adsorption head seat to rotate, the adsorption head adsorbs the bread, and when the guide plate passes the limit frame, it will separate the two sets of adsorption head seats, so that the bread on the surface of the adsorption head falls onto the surface of the second conveyor belt, making it easier for the bread to enter the next production process.
Citation Information
Patent Citations
A sandwich bread production equipment
CN112167285B
Sandwich bread production device
CN112167285A
Feed mechanism capable of pitch-change for automatic machinery
KR1020110073051A