Discharging structure for bagging seasoned dried fish

By designing the combination of feeding tray, L-shaped feeding trough and feeding mechanism, the problem of stickiness during the discharge process of dried fish is solved, and a stable and uniform discharge effect is achieved, avoiding stickiness and blockage of the discharge mechanism.

CN223279368UActive Publication Date: 2025-08-29HUBEI TULAOHAN ECOLOGICAL AGRI TECH CO LTD
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Patent Information

Application Number
CN202422833921.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-08-29
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

In the processing of existing fish products, the dried fish after seasoning is prone to stick to the discharge process, resulting in uneven discharge and easy stick to the discharge mechanism, affecting the discharge process.

Method used

The material is designed with a feeding tray, an L-shaped feeding groove and multiple feeding mechanisms. The material is pushed into the right angle side of the other side of the L-shaped feeding groove through the feeding plate, and the material is intermittently outputted to the discharge pipe using a vertical feeding mechanism to avoid sticking and clogging.

Benefits of technology

The stable and even discharge of dried fish is achieved, preventing sticking to the discharge mechanism, and ensuring the continuity and stability of the discharge process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a blanking structure for bagging seasoned dried fish, which comprises a feeding disc, one side of the feeding disc is provided with a blanking hole, one side of the feeding disc close to the blanking hole is provided with a mounting table, the bottom of the mounting table is provided with an L-shaped receiving groove, the feeding disc is communicated with the L-shaped receiving groove through the blanking hole, and the L-shaped receiving groove is communicated with the feeding disc through the blanking hole. A discharging hole is formed in the bottom of the right-angle position of the L-shaped receiving groove, a discharging pipe is arranged at the discharging hole, a vertical ejecting mechanism is arranged at the top of the mounting table, and the output end of the vertical ejecting mechanism sequentially penetrates through the mounting table and the discharging hole and then is movably embedded in the discharging pipe; a first ejection mechanism and a second ejection mechanism are arranged at the two ends of the L-shaped receiving groove correspondingly, corresponding ejection plates are arranged at the output end of the first ejection mechanism and the output end of the second ejection mechanism correspondingly, and the ejection plates are in sliding fit with corresponding right-angle edge grooves of the L-shaped receiving groove, so that the situation that adhesion affects discharging is prevented, and discharging is facilitated.
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Description

Technical Field

[0001] The utility model relates to the technical field of fish product production and processing equipment, in particular to a feeding structure for bagging seasoned dried small fish. Background Art

[0002] In the existing fish product processing, there is a type of small dried fish product, which needs to be packaged and sealed in small bags after seasoning. The existing bag sealing device uses a rotary vacuum hot air blower to feed the material into each packaging bag through a feeding mechanism, and then vacuum and heat seal it.

[0003] The existing blanking structure has the following problems:

[0004] Usually, a feeding tray is used for unloading. During the unloading process, the dried fish may stick together because of the oil and seasonings on the seasoned dried fish. On the one hand, this may easily lead to the feeding of more or less, and on the other hand, it may easily cause the dried fish to stick to the discharging mechanism, affecting the discharging process. Utility Model Content

[0005] The utility model provides a feeding structure for bagging seasoned dried fish, aiming to solve the problem that the dried fish after seasoning easily sticks during feeding, thereby causing uneven discharge and sticking to the discharge mechanism, affecting the discharge process.

[0006] In order to solve the above technical problems, the technical solution adopted by the present invention is:

[0007] The feeding structure for bagging seasoned dried small fish includes a feeding tray, a feeding hole is provided on one side of the feeding tray, and a mounting platform is provided on one side of the feeding tray near the feeding hole, and an L-shaped feeding trough is provided at the bottom of the mounting platform, and the feeding tray is connected with the L-shaped feeding trough through the feeding hole, and a discharge hole is provided at the bottom at a right angle of the L-shaped feeding trough, and a discharge pipe is provided at the discharge hole, and a vertical feeding mechanism is provided on the top of the mounting platform, and the output end of the vertical feeding mechanism passes through the mounting platform and the discharge hole in sequence and is movably embedded in the discharge pipe, and a first feeding mechanism and a second feeding mechanism are respectively provided at both ends of the L-shaped feeding trough, and the output ends of the first feeding mechanism and the second feeding mechanism are both provided with corresponding feeding plates, and the feeding plates form a sliding fit with the corresponding right-angle side grooves of the L-shaped feeding trough.

[0008] Preferably, the vertical ejecting mechanism includes a vertically arranged vertical cylinder, which forms a detachable fixed fit with the mounting platform through a base and fasteners, the output end of the vertical cylinder is vertically downward, and a ejecting head is provided at the output end of the vertical cylinder.

[0009] As a more preferred embodiment, the ejecting head is coaxially and concentrically with the output end of the vertical cylinder, and the ejecting head is coaxially and concentrically embedded in the discharge pipe from the discharge hole.

[0010] Furthermore, the mounting platform is arranged radially outside the feed tray.

[0011] Furthermore, the first ejecting mechanism includes a first cylinder provided at one end of the L-shaped material receiving trough, and the first cylinder forms a detachable fixed fit with the side wall of the L-shaped material receiving trough port through a base and fasteners, and the output direction of the first cylinder points to the right angle along the corresponding right-angled side of the L-shaped material receiving trough, and a first ejecting plate is linkedly installed on the output end of the first cylinder, and the first ejecting plate is embedded in the corresponding right-angled side of the L-shaped material receiving trough and forms a sliding fit with the corresponding right-angled side of the L-shaped material receiving trough.

[0012] Specifically, the first cylinder is concentric and coaxial with the first ejector plate, and the height of the first ejector plate is consistent with the height of the corresponding right-angled side of the L-shaped material receiving trough, and the length of the first ejector plate is consistent with the inner wall width of the corresponding right-angled side of the L-shaped material receiving trough.

[0013] More specifically, the second ejecting mechanism includes a second cylinder arranged at the other end of the L-shaped material receiving trough, and the second cylinder forms a detachable fixed fit with the side wall of the L-shaped material receiving trough port through a base and fasteners, and the output direction of the second cylinder points to the right angle along the corresponding right-angled side of the L-shaped material receiving trough, and a second ejecting plate is linkedly installed on the output end of the second cylinder, and the second ejecting plate is embedded in the corresponding right-angled side of the L-shaped material receiving trough and forms a sliding fit with the corresponding right-angled side of the L-shaped material receiving trough.

[0014] In detail, the second cylinder is concentric and coaxial with the second ejector plate, and the height of the second ejector plate is consistent with the height of the corresponding right-angled side of the L-shaped material receiving trough, and the length of the second ejector plate is consistent with the inner wall width of the corresponding right-angled side of the L-shaped material receiving trough.

[0015] In more detail, when the first ejector plate is coplanar with the inner edge of the right-angled side on the other side of the L-shaped receiving trough, the first ejector plate and the coplanar right-angled side cooperate to form an independent trough body, and the second ejector plate forms a sliding fit with the independent trough body.

[0016] Beneficial effects of the utility model:

[0017] The utility model feeds the material appropriately into the L-shaped receiving trough through the feeding hole. After the material falls into the L-shaped receiving trough, the ejecting plate of the first ejecting mechanism first pushes the material along the right-angled side on one side and concentrates it in the right-angled side on the other side, and then the second ejecting mechanism gradually pushes the material concentrated in the right-angled side to the discharge hole. At this time, the vertical ejecting mechanism outputs back and forth, and each time the material is ejected, the material at the discharge hole is pushed into the discharge pipe and falls into the bag from the outlet of the discharge pipe. The material is discharged intermittently and automatically, which prevents the dried fish from clogging the discharge pipe and also prevents the dried fish from sticking and affecting the discharge amount. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a three-dimensional schematic diagram of the installation of the utility model on the feed tray;

[0019] Figure 2 This is a three-dimensional schematic diagram of the L-shaped material receiving trough of the present invention;

[0020] Figure 3 This is a three-dimensional schematic diagram of the first ejecting mechanism of the utility model after output;

[0021] Figure 4 It is a three-dimensional schematic diagram of the first ejecting mechanism and the second ejecting mechanism after output of the present invention;

[0022] In the figure: 1. Feed tray; 2. Feeding hole; 3. Mounting table; 4. L-shaped receiving trough;

[0023] 5. Vertical ejection mechanism; 501. Vertical cylinder; 502. Ejection head;

[0024] 6. First ejection mechanism; 601. First cylinder; 602. First ejection plate;

[0025] 7. Second ejecting mechanism; 701. Second cylinder; 702. Second ejecting plate;

[0026] 8. Discharge pipe; 9. Discharge hole. DETAILED DESCRIPTION

[0027] As follows, embodiments are further described with reference to the accompanying drawings.

[0028] like Figures 1 to 4 As shown, as a preferred embodiment 1, a feeding structure for bagging seasoned dried small fish includes a feeding tray 1, a feeding hole 2 is provided on one side of the feeding tray 1, and a mounting platform 3 is provided on one side of the feeding tray 1 near the feeding hole 2, and an L-shaped feeding trough 4 is provided at the bottom of the mounting platform 3, the feeding tray 1 is connected with the L-shaped feeding trough 4 through the feeding hole 2, and a discharge hole 9 is provided at the bottom at a right angle of the L-shaped feeding trough 4, and a discharge pipe 8 is provided at the discharge hole 9, and a vertical feeding mechanism 5 is provided on the top of the mounting platform 3, and the output end of the vertical feeding mechanism 5 passes through the mounting platform 3 and the discharge hole 9 in sequence and is movably embedded in the discharge pipe 8, and a first feeding mechanism 6 and a second feeding mechanism 7 are provided at both ends of the L-shaped feeding trough 4 respectively, and the output ends of the first feeding mechanism 6 and the second feeding mechanism 7 are both provided with corresponding feeding plates, and the feeding plates form a sliding fit with the corresponding right-angle side grooves of the L-shaped feeding trough 4.

[0029] In Example 1, a feeding structure for bagging seasoned dried fish is provided. When feeding, the material is first placed on the feeding plate 1, and the material is appropriately fed to the L-shaped receiving trough 4 through the feeding hole 2. After the material falls into the L-shaped receiving trough 4, the feeding plate of the first feeding mechanism 6 first pushes the material along the right-angled side on one side and concentrates it in the right-angled side on the other side, and then through the second feeding mechanism 7, the material concentrated in the right-angled side is gradually pushed to the discharge hole 9. At this time, the vertical feeding mechanism 5 outputs back and forth, and each time the material at the discharge hole 9 is pushed into the discharge pipe 8 and falls into the bag from the outlet of the discharge pipe 8, which is convenient for discharging and there is no need to worry about sticking problems.

[0030] The vertical ejecting mechanism 5 includes a vertically arranged vertical cylinder 501, which forms a detachable fixed fit with the mounting platform 3 through a base and fasteners. The output end of the vertical cylinder 501 is vertically downward, and the output end of the vertical cylinder 501 is provided with an ejecting head 502. The ejecting head 502 will eject the material concentrated on the right-angled edge out of the discharge pipe 8 to complete the discharge.

[0031] The ejecting head 502 is coaxially and concentrically with the output end of the vertical cylinder 501 , and is coaxially and concentrically embedded in the discharge pipe 8 from the discharge hole 9 to ensure the stability of the discharge.

[0032] The mounting platform 3 is arranged radially outside the feed tray 1 to facilitate the installation of the vertical ejecting mechanism 5 and corresponds to the discharge hole 9.

[0033] The first ejecting mechanism 6 includes a first cylinder 601 provided at one end of the L-shaped receiving trough 4. The first cylinder 601 forms a detachable fixed fit with the side wall of the L-shaped receiving trough 4 port through a base and fasteners, and the output direction of the first cylinder 601 points to a right angle along the corresponding right-angled side of the L-shaped receiving trough 4. A first ejecting plate 602 is installed on the output end of the first cylinder 601. The first ejecting plate 602 is embedded in the corresponding right-angled side of the L-shaped receiving trough 4 and forms a sliding fit with the corresponding right-angled side of the L-shaped receiving trough 4. The driving force provided by the first cylinder 601 pushes the first ejecting plate 602 to move along the right-angled side of the L-shaped receiving trough 4, pushing the material in the right-angled side to be concentrated in the right-angled side on the other side.

[0034] The first cylinder 601 is concentric and coaxial with the first ejector plate 602, and the height of the first ejector plate 602 is consistent with the height of the corresponding right-angled side of the L-shaped material receiving trough 4, and the length of the first ejector plate 602 is consistent with the inner wall width of the corresponding right-angled side of the L-shaped material receiving trough 4, ensuring that the materials can be concentrated to the right-angled side on the other side and will not leak or fall.

[0035] The second ejecting mechanism 7 includes a second cylinder 701 provided at the other end of the L-shaped receiving trough 4. The second cylinder 701 forms a detachable fixed fit with the side wall of the L-shaped receiving trough 4 port through a base and fasteners, and the output direction of the second cylinder 701 points to the right angle along the corresponding right-angled side of the L-shaped receiving trough 4. A second ejecting plate 702 is installed on the output end of the second cylinder 701. The second ejecting plate 702 is embedded in the corresponding right-angled side of the L-shaped receiving trough 4 and forms a sliding fit with the corresponding right-angled side of the L-shaped receiving trough 4. The driving force provided by the second cylinder 701 pushes the second ejecting plate 702 to move along the right-angled side of the L-shaped receiving trough 4, pushing the material at the right-angled side toward the discharge hole 9. The reciprocating motion of the ejecting head 502 allows the material to intermittently enter the discharge pipe 8 to complete the discharge, and the material eventually falls into the packaging bag below.

[0036] The second cylinder 701 is concentric and coaxial with the second ejector plate 702, and the height of the second ejector plate 702 is consistent with the height of the corresponding right-angled side of the L-shaped material receiving trough 4, and the length of the second ejector plate 702 is consistent with the inner wall width of the corresponding right-angled side of the L-shaped material receiving trough 4, ensuring that the material is transported forward along the right-angled side without leaking or falling.

[0037] When the first ejector plate 602 is coplanar with the inner edge of the right-angled side of the other side of the L-shaped receiving trough 4, the first ejector plate 602 cooperates with the coplanar right-angled side to form an independent trough body, and the second ejector plate 702 forms a sliding fit with the independent trough body.

[0038] When the first cylinder 601 is output to the bottom, the first ejector plate 602 is coplanar with the inner edge of the right-angled side on the other side of the L-shaped receiving trough 4, and the first ejector plate 602 cooperates with the coplanar right-angled side to form an independent trough body. At this time, the first ejector plate 602 has pushed the material into the independent trough body, and the material in the independent trough body is concentrated into the discharge hole 9 through the second ejector plate 702.

[0039] When the first cylinder 601 is output to the bottom, the first ejector plate 602 is just tangent to the outside of the discharge hole 9. When the second cylinder 701 is output to the bottom, the second ejector plate 702 is just tangent to the outside of the discharge hole 9, ensuring that there is no interference with the vertical ejector mechanism 5, and the material in the L-shaped receiving trough 4 can be almost completely ejected.

[0040] The working principle of this utility model:

[0041] The utility model provides a feeding structure for bagging seasoned dried small fish. When feeding, the material is first placed on the feeding plate 1, and the material is properly fed to the L-shaped receiving trough 4 through the feeding hole 2. After the material falls into the L-shaped receiving trough 4, the feeding plate of the first feeding mechanism 6 first pushes the material along the right-angled side on one side and concentrates it in the right-angled side on the other side, and then the second feeding mechanism 7 gradually pushes the material concentrated in the right-angled side to the discharge hole 9. At this time, the vertical feeding mechanism 5 outputs back and forth, and each time the material is output, the material at the discharge hole 9 is pushed into the discharge pipe 8 and falls into the bag from the outlet of the discharge pipe 8, which is convenient for discharging and does not need to worry about sticking problems.

Claims

1. A feeding structure for bagging seasoned dried fish, comprising a feeding tray (1), characterized in that: A feeding hole (2) is provided on one side of the feeding tray (1), and a mounting platform (3) is provided on one side of the feeding tray (1) near the feeding hole (2). An L-shaped feeding trough (4) is provided at the bottom of the mounting platform (3). The feeding tray (1) is connected to the L-shaped feeding trough (4) through the feeding hole (2). A discharge hole (9) is provided at the bottom of the right angle of the L-shaped feeding trough (4). A discharge pipe (8) is provided at the discharge hole (9). A vertical ejecting mechanism (5) is provided on the top of the mounting platform (3). The output end of the vertical ejecting mechanism (5) passes through the mounting platform (3) and the discharge hole (9) in sequence and is then movably embedded in the discharge pipe (8). A first ejecting mechanism (6) and a second ejecting mechanism (7) are respectively provided at both ends of the L-shaped feeding trough (4). The output ends of the first ejecting mechanism (6) and the second ejecting mechanism (7) are both provided with corresponding ejecting plates, and the ejecting plates form a sliding fit with the corresponding right-angled side grooves of the L-shaped feeding trough (4).

2. The feeding structure for bagging seasoned dried fish according to claim 1, characterized in that: The vertical ejecting mechanism (5) comprises a vertically arranged vertical cylinder (501), the vertical cylinder (501) being detachably fixedly matched with the mounting platform (3) via a base and fasteners, the output end of the vertical cylinder (501) being vertically downward, and a ejecting head (502) being provided at the output end of the vertical cylinder (501).

3. The feeding structure for bagging seasoned dried fish according to claim 2, characterized in that: The ejecting head (502) is coaxially and concentrically with the output end of the vertical cylinder (501), and the ejecting head (502) is coaxially and concentrically embedded in the discharge pipe (8) from the discharge hole (9).

4. The feeding structure for bagging seasoned dried fish according to claim 3, characterized in that: The mounting platform (3) is arranged radially outside the feed tray (1).

5. The feeding structure for bagging seasoned dried fish according to claim 4, characterized in that: The first ejecting mechanism (6) includes a first cylinder (601) provided at one end of the L-shaped receiving trough (4), the first cylinder (601) forms a detachable fixed fit with the side wall of the port of the L-shaped receiving trough (4) through a base and a fastener, and the output direction of the first cylinder (601) points to a right angle along the right-angled side of the corresponding L-shaped receiving trough (4), and a first ejecting plate (602) is installed on the output end of the first cylinder (601), and the first ejecting plate (602) is embedded in the right-angled side of the corresponding L-shaped receiving trough (4) and forms a sliding fit with the right-angled side of the corresponding L-shaped receiving trough (4).

6. The feeding structure for bagging seasoned dried fish according to claim 5, characterized in that: The first cylinder (601) and the first ejector plate (602) are coaxial and concentric, and the height of the first ejector plate (602) is consistent with the height of the right-angled side of the corresponding L-shaped receiving groove (4), and the length of the first ejector plate (602) is consistent with the width of the inner wall of the right-angled side of the corresponding L-shaped receiving groove (4).

7. The feeding structure for bagging seasoned dried fish according to claim 6, characterized in that: The second ejecting mechanism (7) includes a second cylinder (701) provided at the other end of the L-shaped receiving trough (4), the second cylinder (701) forms a detachable fixed fit with the side wall of the port of the L-shaped receiving trough (4) through a base and a fastener, and the output direction of the second cylinder (701) points to a right angle along the right-angled side of the corresponding L-shaped receiving trough (4), and a second ejecting plate (702) is installed on the output end of the second cylinder (701), and the second ejecting plate (702) is embedded in the right-angled side of the corresponding L-shaped receiving trough (4) and forms a sliding fit with the right-angled side of the corresponding L-shaped receiving trough (4).

8. The feeding structure for bagging seasoned dried fish according to claim 7, characterized in that: The second cylinder (701) is coaxially and concentrically connected to the second ejector plate (702), and the height of the second ejector plate (702) is consistent with the height of the right-angled side of the corresponding L-shaped receiving trough (4), and the length of the second ejector plate (702) is consistent with the width of the inner wall of the right-angled side of the corresponding L-shaped receiving trough (4).

9. The feeding structure for bagging seasoned dried fish according to claim 8, characterized in that: When the first ejector plate (602) is coplanar with the inner edge of the right-angled side of the other side of the L-shaped receiving trough (4), the first ejector plate (602) cooperates with the coplanar right-angled side to form an independent trough body, and the second ejector plate (702) forms a sliding fit with the independent trough body.