Quantitative feeding assembly and cake slice line feeding device comprising same
By combining the movable plate and piston cylinder in the quantitative feeding assembly, the problem of inaccurate control of cake slurry output due to manual feeding is solved, achieving consistent cake specifications and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-18
- Publication Date
- 2026-03-27
AI Technical Summary
In existing technologies, manual feeding methods cannot accurately control the output of the dough for baking, resulting in inconsistent specifications of the baked dough pieces and reducing the yield of finished products.
By designing a quantitative feeding component, the amount of cake slurry entering the second through hole each time is controlled by the cooperation of a movable plate and a piston cylinder, thus achieving precise quantitative feeding.
This method enables the quantitative output of dough for each batch of baked biscuits, ensuring that the baked biscuits are of consistent size and improving the yield rate.
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Figure CN224038327U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a feeding equipment technical field especially relates to a kind of ration feeding assembly and the biscuit line feeding device containing the component of the component. BACKGROUND
[0002] Biscuit line feeding device is used to deliver biscuit slurry to the flat plate of baking equipment, and the biscuit slurry is baked to obtain formed biscuit;In the existing biscuit production process, biscuit slurry is mostly squeezed out from the storage bag to the flat plate of baking equipment by manual, which cannot accurately control the output of biscuit slurry each time by manual, resulting in inconsistent size of baked biscuit, and reducing the production yield. SUMMARY
[0003] In order to solve the problem that the existing manual feeding cannot accurately quantify, the utility model provides a ration feeding assembly and a biscuit line feeding device containing the component, which accurately controls the amount of biscuit slurry entering the second through hole each time by controlling the distance of the piston cylinder moving in the second through hole, and realizes that the size of baked biscuit is basically consistent.
[0004] In order to achieve the above purpose, the technical scheme of the utility model is as follows:
[0005] A ration feeding assembly comprises a distribution body, a first groove is formed in the side of the distribution body, a movable plate is placed in the first groove, the outer side wall of the movable plate is in contact with the side wall of the first groove, and the movable plate can slide in the first groove; a second groove is formed in the upper end of the distribution body and communicates with the first groove; the movable plate is hollow, a through hole is formed in the upper end of the movable plate and communicates with the inner cavity of the movable plate, and the second groove corresponds to the through hole; the two ends of the movable plate extend out of the first groove.
[0006] A first through hole is formed in one side of the movable plate and communicates with the inner cavity of the movable plate; a communication pipe is fixed in the inner cavity of the movable plate, and the two ends of the communication pipe extend out of the inner cavity of the movable plate and are flush with the side of the movable plate; second through holes are formed in the front and back sides of the distribution body, the second through holes open to the side of the movable plate and cooperate with the first through hole and the communication pipe; a piston cylinder is arranged in the second through hole on the front side of the distribution body, the outer side wall of the piston cylinder is in contact with the side wall of the second through hole, one end of the piston cylinder extends out of the second through hole, and a first power mechanism is fixed to the end of the piston cylinder. The first through hole on the movable plate corresponds to the second through hole on the distribution body first, so that when the piston cylinder moves away from the second through hole, the biscuit slurry in the movable plate can be sucked into the second through hole; after the piston cylinder moves a certain distance in the second through hole, the movable plate slides in the first groove, so that the communication pipe on the movable plate corresponds to the second through hole on the distribution body, forming the communication of the second through hole, the communication pipe and the second through hole from front to back.
[0007] Further, the distribution body comprises a front fixed plate and a rear fixed plate fixedly connected, and the movable plate is located between the front fixed plate and the rear fixed plate.
[0008] Further, an end of the movable plate extends out of the distribution body, and a second power mechanism is fixed to one end of the movable plate.
[0009] Further, a mounting plate is fixed to an upper end of the distribution body, and a feeding pipe is fixed to the mounting plate, and a lower end of the feeding pipe extends out of the mounting plate and communicates with the second groove.
[0010] Further, a plurality of first through holes are uniformly arranged on the movable plate, a plurality of communication pipes are uniformly arranged inside the inner cavity of the movable plate, the first through holes and the communication pipes are arranged at intervals, and a plurality of second through holes are uniformly arranged on the front and rear sides of the distribution body, and a piston cylinder is arranged in each second through hole.
[0011] Further, ends of the plurality of piston cylinders extending out of the second through holes are fixed to a moving plate, and a side of the moving plate away from the piston cylinders is fixedly connected with the first power mechanism.
[0012] Further, an end of the second through hole located on the rear side of the distribution body is fixed with a first feeding connector.
[0013] Through the above technical scheme, the beneficial effects of the present application are as follows: the first through hole on the movable plate of the quantitative feeding assembly is first corresponded to the second through hole on the distribution body, so that when the piston cylinder is driven by the first power mechanism to move outward in the second through hole, the wafer slurry entering the inner cavity of the movable plate through the upper end opening of the movable plate can be sucked into the second through hole, after the piston cylinder moves a certain distance in the second through hole, the movable plate is controlled to slide in the first groove, so that the communication pipe on the movable plate is corresponded to the second through hole on the distribution body, forming the communication of the second through hole, the communication pipe and the second through hole from front to back, the feeding amount of the plurality of second through holes located on the front side of the distribution body is certain, at this time, the piston cylinder is driven by the first power mechanism to move in the second through hole towards the movable plate, and the slurry is squeezed out of the second through hole on the rear side of the distribution body, realizing the quantitative and output of the slurry.
[0014] The present application also provides a wafer line feeding device, which comprises the quantitative feeding assembly and a distribution disc fixed to one side of the distribution body, the distribution disc is fixed with a second feeding connector, the second feeding connector communicates with the second through hole located on the rear side of the distribution body.
[0015] Further, the discharge end of the second feeding joint extends downward and extends out of the distribution disc.
[0016] Through the above technical scheme, the beneficial effects of the utility model are that the pie slice linear feeding device transports the pie slice slurry squeezed out of the second through hole at the rear side of the distribution body to the second feeding joint on the distribution disc, each second feeding joint is connected with one first feeding joint, and it is ensured that the pie slice slurry squeezed out of the second feeding joint is equal when the pie slice slurry is squeezed out of the second through hole at the rear side of the distribution body. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the shaft side view of the pie slice linear feeding device of the utility model;
[0018] Figure 2 It is the plan view of the pie slice linear feeding device of the utility model;
[0019] Figure 3 It is the front view of the pie slice linear feeding device of the utility model;
[0020] Figure 4 It is the structural schematic view of the distribution body of the quantitative feeding assembly of the utility model;
[0021] Figure 5 It is the structural schematic view of the movable plate of the quantitative feeding assembly of the utility model;
[0022] Figure 6 It is the front view of the movable plate of the quantitative feeding assembly of the utility model;
[0023] Figure 7 It is the rear view of the movable plate of the quantitative feeding assembly of the utility model;
[0024] Figure 8 It is the plan view of the movable plate of the quantitative feeding assembly of the utility model;
[0025] Figure 9 It is the structural section view of A-A of the quantitative feeding assembly and the pie slice linear feeding device containing the assembly of the utility model. Figure 8
[0026] Reference signs in the drawings: 1 is movable plate, 2 is through port, 3 is first through hole, 4 is communication pipe, 5 is second through hole, 6 is piston cylinder, 7 is front fixed plate, 8 is rear fixed plate, 9 is mounting plate, 10 is feeding pipe, 11 is moving plate, 12 is first feeding joint, 13 is distribution disc, 14 is second feeding joint, 15 is through slot, 21 is first groove body, 22 is second groove body. DETAILED DESCRIPTION
[0027] The utility model is further described below with reference to the drawings and specific embodiments.
[0028] As Figures 1-9 shown, the embodiment provides a wafer line feeding device, including ration feeding assembly and fixed in the distribution body one side's distribution disc 13, fixed with second feeding connector 14 on distribution disc 13, and the discharge end of second feeding connector 14 extends downward and extends distribution disc 13. The wafer slurry extruded on ration feeding assembly is transported into second feeding connector 14, and then is transported downward to the flat plate of baking equipment by second feeding connector 14.
[0029] A ration feeding assembly, including distribution body, the side of distribution body is provided with first slot body 21, and movable plate 1 is placed in first slot body 21, and the outer side wall of movable plate 1 is in contact with the side wall of first slot body 21, and movable plate 1 can slide in first slot body 21, and the upper end of distribution body is provided with second slot body 22 that is communicated with first slot body 21, and movable plate 1 is hollowly arranged, and the upper end of movable plate 1 is provided with mouth 2 that is communicated with the inner chamber of movable plate 1, and second slot body 22 corresponds with mouth 2.
[0030] Reference Figure 1 With Figure 4 , the distribution body includes fixedly connected front fixed plate 7 and rear fixed plate 8, and movable plate 1 is located between front fixed plate 7 and rear fixed plate 8. The side of front fixed plate 7 and rear fixed plate 8 close to each other is provided with first slot body 21 that accommodates movable plate 1, and the upper end of front fixed plate 7 and rear fixed plate 8 is provided with second slot body 22 that is communicated with first slot body 21.
[0031] The upper end of distribution body is fixed with mounting plate 9, the lower end of feeding pipe 10 is fixed on mounting plate 9 and communicated with second slot body 22 by extending downward mounting plate 9. In the embodiment, mounting plate 9 is fixedly connected with the lower side of front fixed plate 7 and rear fixed plate 8 through bolts; wafer slurry enters the inner chamber of movable plate 1 after passing through second slot body 22 and mouth 2 downward through feeding pipe 10.
[0032] Reference Figures 5-9 As shown, one side of movable plate 1 is provided with circular first through hole 3 that is communicated with the inner chamber of movable plate 1, and cylindrical communication pipe 4 is fixed in the inner chamber of movable plate 1, and both ends of communication pipe 4 extend out of the inner chamber of movable plate 1 and are flush with the side of movable plate 1. In the embodiment, the size of first through hole 3 is consistent with the size of the inner circle of communication pipe 4.
[0033] In the embodiment, a plurality of first through holes 3 are uniformly arranged on movable plate 1, a plurality of communication pipes 4 are uniformly arranged inside the inner chamber of movable plate 1, and first through holes 3 and communication pipes 4 are arranged at intervals; reference Figure 6, a horizontal line, to ensure that the first two adjacent holes 3 set between a pipe 4, a vertical straight line, to ensure that the first two adjacent holes 3 set between a pipe 4.
[0034] The second hole 5 is provided on the front and back of the distribution body, and the side of the distribution body close to the first hole 3 of the movable plate 1 is the front side, that is, the side of the front fixed plate 7. The second hole 5 is opened to the side of the movable plate 1 and is in communication with the first hole 3. The end face of the second hole 5 is flush with the end face of the first hole 3, that is, the side of the movable plate 1 is in contact with the side of the first groove body 21, so that the wafer slurry in the movable plate 1 cannot flow out.
[0035] In this embodiment, a plurality of second holes 5 corresponding to each other are provided on the front and back of the distribution body, and the plurality of second holes 5 are uniformly provided on the distribution body. The second hole 5 on the front side of the distribution body is matched with the first hole 3 and the communication pipe 4. The piston cylinder 6 is arranged in the second hole 5 on the front side of the distribution body. The outer side wall of the piston cylinder 6 is in contact with the side wall of the second hole 5. One end of the piston cylinder 6 extends out of the second hole 5, and the end portion of the piston cylinder 6 is fixed with the first power mechanism. The piston cylinder 6 is a solid body with closed front and back ends.
[0036] Reference Figure 1 The end portion of the movable plate 1 extends out of the distribution body, and one end of the movable plate 1 is fixed with the second power mechanism.
[0037] In this embodiment, the first power mechanism and the second power mechanism both adopt a cylinder to realize the telescopic function. The telescopic function of the first power mechanism mainly controls the movement of the piston cylinder 6 in the second hole 5. When the second hole 5 corresponds to the first hole 3 on the movable plate 1, the movement distance of the piston cylinder 6 in the second hole 5 is controlled by the first power mechanism, so that the wafer feeding amount in the plurality of second holes 5 is equal.
[0038] The second power mechanism drives the movable plate 1 to move in the first groove body 21 after a certain amount of wafer slurry is extracted from the second hole 5, so that the communication pipe 4 on the movable plate 1 corresponds to the second hole 5 on the distribution body. The movement distance of the movable plate 1 in the first groove body 21 is the distance from the center of the first hole 3 to the center of the communication pipe 4, which are adjacent and kept on the same horizontal line. At this time, the communication between the front and back second holes 5, the connecting pipe 4 and the second hole 5 is formed, and the slurry in the movable plate 1 is blocked and cannot flow out.
[0039] The end of the second through hole 5 at the rear side of the distribution body is fixed with a first feeding connector 12, when the first power mechanism drives the piston cylinder 6 to move from front to back in the second through hole 5, the biscuit slurry is fed into the first feeding connector 12 through the second through hole 5, the connecting pipe 4 and the second through hole 5 in sequence. The second feeding connector 14 is communicated with the first feeding connector 12 on the second through hole 5 at the rear side of the distribution body through a pipeline (not shown in the figure).
[0040] When the device is used for quantitative feeding of the biscuit slurry, the biscuit slurry is fed into the inner cavity of the movable plate 1 through the feeding pipe 10, the second slot body 22 and the through hole 2; the second power mechanism drives the movable plate 1 to slide in the first slot body 21, so that the first through hole 3 on the movable plate 1 corresponds to the second through hole 5 on the front fixed plate 7, at this time, the first power mechanism controls the piston cylinder 6 to move a certain distance in the second through hole 5, and the biscuit slurry in the inner cavity of the movable plate 1 is sucked into the second through hole 5 on the front fixed plate 7, at this time, the feeding amount of the biscuit in the plurality of second through holes 5 is equal, and the first power mechanism stops working.
[0041] Then the second power mechanism drives the movable plate 1 to move in the first slot body 21, so that the connecting pipe 4 on the movable plate 1 corresponds to the second through hole 5 on the distribution body, and then stops working, and the first power mechanism is started again to drive the piston cylinder 6 to move from front to back in the second through hole 5, and the biscuit slurry is extruded onto the flat plate of the baking equipment through the second through hole 5 on the front fixed plate 7, the connecting pipe 4, the second through hole 5 on the rear fixed plate 8, the first feeding connector 12, the pipeline (not shown in the figure) and the first feeding connector 12 in sequence, completing the quantitative feeding of the biscuit slurry once, and then the above steps are repeated.
[0042] The above-mentioned embodiments are only preferred embodiments of the present application, and are not intended to limit the scope of the present application, so that equivalent changes or modifications made according to the structure, features and principles described in the patent range of the present application shall be included in the patent range of the present application.
Claims
1. A dosing assembly, characterized in that, The distribution body is provided with a first groove (21) on one side, and a movable plate (1) is arranged in the first groove (21). The outer side wall of the movable plate (1) is in contact with the side wall of the first groove (21), and the movable plate (1) can slide in the first groove (21). The upper end of the distribution body is provided with a second groove (22) communicating with the first groove (21). The movable plate (1) is hollow, and the upper end of the movable plate (1) is provided with a through hole (2) communicating with the inner cavity of the movable plate (1). The second groove (22) corresponds to the through hole (2). A first through hole (3) communicating with the inner cavity of the movable plate (1) is formed on one side of the movable plate (1). A communication pipe (4) is fixed in the inner cavity of the movable plate (1), and both ends of the communication pipe (4) extend out of the inner cavity of the movable plate (1) and are flush with the outer side of the movable plate (1). Second through holes (5) are formed on the front and back sides of the distribution body, and the second through holes (5) are opened to the side of the movable plate (1) and are matched with the first through hole (3) and the communication pipe (4). A piston cylinder (6) is arranged in the second through hole (5) on the front side of the distribution body. The outer side wall of the piston cylinder (6) is in contact with the side wall of the second through hole (5), and one end of the piston cylinder (6) extends out of the second through hole (5) and is fixed with a first power mechanism.
2. A dosing assembly according to claim 1, wherein The distribution body comprises a front fixed plate (7) and a rear fixed plate (8) fixedly connected.
3. A dosing assembly according to claim 1, wherein The end of the movable plate (1) extends out of the distribution body, and a second power mechanism is fixed to one end of the movable plate (1).
4. A dosing assembly according to claim 1, wherein An installation plate (9) is fixed to the upper end of the distribution body, and a feeding pipe (10) is fixed to the installation plate (9). The lower end of the feeding pipe (10) extends downward out of the installation plate (9) and communicates with the second groove (22).
5. A dosing assembly according to claim 1, wherein A plurality of first through holes (3) are uniformly arranged on the movable plate (1), a plurality of communication pipes (4) are uniformly arranged in the inner cavity of the movable plate (1), the first through holes (3) and the communication pipes (4) are arranged at intervals, and a plurality of second through holes (5) are uniformly formed on the front and back sides of the distribution body. Each second through hole (5) is provided with a piston cylinder (6).
6. A dosing assembly according to claim 5, wherein The ends of a plurality of piston cylinders (6) extending out of the second through hole (5) are fixed to a moving plate (11), and the side of the moving plate (11) away from the piston cylinder (6) is fixedly connected with the first power mechanism.
7. A dosing assembly according to claim 1, wherein The end of the second through hole (5) on the rear side of the distribution body is fixed with a first feeding connector (12).
8. A wafer line feed device characterized by, The quantitative feeding assembly of any one of claims 1-7 and a distribution disc (13) fixed to one side of the distribution body are provided. The distribution disc (13) is fixed with a second feeding connector (14) which communicates with the second through hole (5) on the rear side of the distribution body.
9. The wafer in-line feed apparatus of claim 8, wherein, The discharge end of the second feeding connector (14) extends downward and out of the distribution disc (13).