Automatic forming equipment for ultra-thin crisp oatmeal

By designing the spreading, transporting, discharging and pressurizing units of ultra-thin crispy cereal automatic forming equipment, the problem of uniform feeding and forming of ultra-thin cereals is solved, and the stability and integrity of the product are achieved.

CN223053869UActive Publication Date: 2025-07-04OZARK (CHUZHOU) FOOD CO LTD +1
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Patent Information

Application Number
CN202422331088.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-04
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

It is difficult for the prior art to evenly feed ultra-thin cereal into the mold cavity of the molding mold, resulting in different thicknesses of the finished product and easy to break.

Method used

An ultra-thin crispy cereal automatic molding equipment is designed, including a spreading unit, a transmission forming unit, a feeding unit and a pressing forming unit. The material is pre-aligned and leveled through the conveying mechanism, and then the feeding unit is gently dialed into the mold cavity of the mold, and finally pressed and molded by the pressing device.

Benefits of technology

The uniform laying and forming of ultra-thin cereals is achieved, which avoids material damage, and the product produced is stable in weight, uniform in thickness and good quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides automatic forming equipment for ultra-thin crisp oatmeal. The automatic forming equipment comprises a material scattering unit, a conveying forming unit, a material stirring unit and a pressure forming unit, the material scattering unit comprises a conveying mechanism I; the conveying forming unit comprises a second conveying mechanism and a plurality of forming molds arranged on the second conveying mechanism. The feeding end of the second conveying mechanism is arranged below the discharging end of the first conveying mechanism. The two material shifting units are suspended above the first conveying mechanism and the second conveying mechanism correspondingly, and the material shifting units can shift materials on the first conveying mechanism to be flat and shift the materials on the second conveying mechanism into a mold cavity of the forming mold; the pressure forming unit comprises a pressure device suspended above the conveying mechanism II; the pressurizing device is used for applying pressure to the forming die located below the pressurizing device, and materials in the die cavity are pressurized and formed. According to the automatic forming equipment for the ultra-thin crisp oatmeal, the ultra-thin oatmeal can be uniformly fed into the die cavity of the forming die, and the integrity of the ultra-thin oatmeal cannot be damaged.
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Description

Technical Field

[0001] The utility model belongs to the technical field of cereal processing equipment, and particularly relates to an automatic forming equipment for ultra-thin and crispy cereal. Background Art

[0002] The block cereal product is obtained by pressing the rolled flaky cereal into a mold. Among them, the block cereal product made by pressing the ultra-thin wheat flakes with a thickness of only 0.3 mm into the mold is loved by consumers for its crispiness, easy-to-eat property and good taste. However, due to the thin and large size of the ultra-thin wheat flakes, it is not easy to enter the mold. The products produced by traditional forming equipment often have uneven thickness of the finished product due to uneven filling of the mold cavity of the forming mold. If you want to fill evenly, you need to push and rake the ultra-thin sheet material forcefully for many times, which will cause damage to the thin sheet and the sensory state of the finished product will be damaged. Therefore, it is necessary to develop a forming equipment for preparing block cereal products from such ultra-thin wheat flakes. Content of the Utility Model

[0003] In view of this, in order to solve the above technical problems, the utility model provides an automatic forming equipment for ultra-thin and crispy cereal with reasonable structural design, which can evenly feed the ultra-thin sheets into the mold cavity of the forming mold without damaging the integrity of the ultra-thin sheets, and is used for preparing block cereal products from ultra-thin wheat flakes.

[0004] To achieve the above object, the technical solution of the utility model is realized as follows:

[0005] An automatic forming equipment for ultra-thin and crispy cereal, comprising:

[0006] A material spreading unit, the material spreading unit includes a first chassis, and a conveying mechanism one installed on the first chassis for horizontally conveying materials; the feeding end of the conveying mechanism one receives materials;

[0007] A transmission and forming unit, the transmission and forming unit includes a second chassis, a conveying mechanism two installed on the second chassis for horizontally conveying materials, and a plurality of forming molds arranged on the conveying mechanism two in sequence along the transportation direction; the feeding end of the conveying mechanism two is arranged below the discharging end of the conveying mechanism one for receiving the materials provided by the conveying mechanism one;

[0008] A material dialing unit, the material dialing unit includes a mounting frame, a dialing arm, and a dialing driving device installed on the mounting frame for driving the dialing arm to make a reciprocating motion in the horizontal direction; there are two material dialing units, which are respectively suspended above the conveying mechanism one and the conveying mechanism two, and the dialing arm corresponding to the conveying mechanism one can level the materials on the conveying mechanism one; the dialing arm corresponding to the conveying mechanism two can dial the materials into the mold cavity of the forming mold;

[0009] A pressure molding unit, which is located downstream of the material-dispensing unit, comprises a base three and a pressure device suspended above the conveying mechanism two; the pressure device is used to apply pressure to the molding die located below it to pressure-mold the material in the mold cavity.

[0010] Ultra-thin wheat flakes are fed in through the feed end of conveying mechanism one, and are flattened by the corresponding material-dispensing unit on conveying mechanism one; the feed end of conveying mechanism two is arranged below the discharge end of conveying mechanism one, and the material transported by conveying mechanism one is evenly spread from a high place onto conveying mechanism two, on which a plurality of forming moulds are arranged, that is, the ultra-thin oat flakes are evenly spread into the mould cavities of each forming mould, and then the corresponding material-dispensing unit gently dispenses the material scattered outside the mould cavity frame into the mould cavity, which not only ensures the uniform spreading of the material, but also avoids the situation in which the integrity of the raw material may be damaged due to excessive force; the material entering the mould cavity is transported to the bottom of the pressurizing moulding unit as conveying mechanism two runs, and the pressurizing device applies pressure to pressurize and mould the material in the mould cavity.

[0011] Furthermore, the conveying mechanism includes a mounting base, a conveyor belt installed in the inner cavity of the mounting base, and a material feeding drive device for driving the conveyor belt to run; the mounting base is fixed to the base frame through a mounting plate; the material shifting arm corresponding to the conveying mechanism can shift and flatten the material on the conveyor belt; the upstream end of the conveyor belt receives the material, and the downstream end of the conveyor belt is the discharging end.

[0012] The feeding drive device drives the conveyor belt to run and transports the materials that fall onto the conveyor belt; the material-pickup arm corresponding to the conveying mechanism pries the materials on the conveyor belt to make them flat and evenly distributed on the conveyor belt.

[0013] Furthermore, a material baffle plate is installed on both side walls of the mounting base in a direction perpendicular to the conveyed material; a material guide plate is provided at the discharge end of the conveyor belt to guide the material to the feed end of the conveying mechanism, and the material guide plate is connected to the base frame through a support plate.

[0014] The baffle plate 1 is used to shield the two sides of the conveyor belt 1 to prevent the material from spilling; the guide plate serves to guide the discharging direction of the conveyor belt 1 so that the material falls accurately into the feeding end of the conveying mechanism 2.

[0015] Furthermore, the conveying mechanism 2 includes a mounting base 2, a conveyor belt 2 mounted in the inner cavity of the mounting base 2, and a feed drive device 2 for driving the conveyor belt 2 to operate; the mounting base 2 is fixed to the base frame 2 through a mounting plate; the molding mold is arranged on the conveyor belt 2; the feed end of the conveyor belt 2 is arranged below the discharge end of the conveying mechanism 1.

[0016] The feeding drive device two drives the conveyor belt two to run, transporting the materials that fall into the molding die; the corresponding material pushing arm of the conveying mechanism two pushes the materials scattered outside the cavity frame of the upper mold of the molding die into the cavity.

[0017] Furthermore, two baffle plates two are installed on both side walls of the mounting base two in the direction perpendicular to the material conveyance.

[0018] The baffle plate two is used to block the two sides of the conveyor belt two to prevent the materials from spilling.

[0019] Furthermore, the head end of the conveyor belt two is the loading station of the molding die, the tail end is the unloading station of the molding die, and the middle section is the feeding end of the cereal.

[0020] An empty molding die is placed at the loading station of the molding die. Driven by the conveyor belt two, the empty molding die moves to the feeding end of the conveying mechanism one. The falling materials are evenly scattered into the cavity of the molding die. As the conveyor belt two runs, it moves to the corresponding material pushing arm. The material pushing arm pushes the materials outside the cavity frame into the cavity. Continuing to move with the operation of the conveyor belt two to the pressure molding unit for pressure molding, and then continuing to move to the unloading station with the operation of the conveyor belt two to take down the molding die loaded with the block products.

[0021] Furthermore, the material pushing drive device includes a material pushing drive motor installed on the mounting frame, an eccentric disk connected to the output end of the material pushing drive motor, a reciprocating arm with one end connected to the eccentric disk, a rotating rod horizontally arranged in the direction perpendicular to the material conveyance and rotatably installed on the mounting frame, and a connecting seat fixed on the rotating rod; the other end of the reciprocating arm is rotatably connected to the connecting seat; the material pushing arm includes two connecting arms and a material pushing rod; the material pushing rod is arranged parallel to the rotating rod; one end of each of the two connecting arms is connected to both ends of the material pushing rod respectively, and the other end of each of the two connecting arms is connected to both ends of the rotating rod respectively; a material pushing piece is arranged along the length direction at the lower end of the material pushing rod, and the lower edge of the material pushing piece is serrated.

[0022] When the material pushing drive motor runs, it can drive the eccentric disk to rotate. The reciprocating arm makes a reciprocating motion driven by the eccentric disk. The reciprocating arm is connected to the rotating rod through the connecting seat. The rotating rod makes a reciprocating rotation within a range under the action of the reciprocating arm, thereby driving the material pushing arm to reciprocally push and cover the materials below; the material pushing piece arranged at the lower end of the material pushing rod is made of rubber material, combined with the serrated shape, which can gently push and cover the materials to ensure the integrity of the ultra-thin sheet.

[0023] Furthermore, the mounting frame is connected to the chassis one and the chassis two through the bracket one.

[0024] Furthermore, the pressurizing device includes a fixed platform, a movable platform, and a hydraulic telescopic cylinder; the movable platform is located below the fixed platform; the fixed part of the hydraulic telescopic cylinder is installed on the fixed platform, and the telescopic end of the hydraulic telescopic cylinder passes through the fixed platform and is connected to the upper end surface of the movable platform; a plurality of mounting rods are provided on the lower end surface of the movable platform, and a pressure block is installed at the lower end of each mounting rod; the molding mold is provided with a plurality of mold cavities, which correspond to a plurality of pressure blocks one by one, and the pressure blocks can be extended into the mold cavities to pressurize the materials in the mold cavities.

[0025] A guide column can be set between the fixed table and the movable table to play a guiding role during connection and movement; when the hydraulic telescopic cylinder is started, its movable end drives the movable table to move downward, thereby moving the pressing block downward and pressing it into the corresponding mold cavity to pressurize the material into shape.

[0026] Furthermore, the fixed platform is connected to the base three through the bracket two; the pressurizing device also includes a calibration plate, which is arranged below the movable platform, and is provided with a plurality of calibration holes for the plurality of pressure blocks to pass through, and the calibration holes are arranged one-to-one correspondingly to the plurality of mold cavities of the molding mold below them, and the calibration plate is connected to the bracket two.

[0027] When pressure is applied, the pressing block extends into the mold cavity through the calibration hole on the calibration plate.

[0028] Compared with the prior art, the ultra-thin crispy oatmeal automatic forming equipment described in the utility model has the following advantages:

[0029] The automatic ultra-thin crispy oatmeal forming equipment described in the utility model has a reasonable structural design. The incoming material is pre-flattened by the corresponding material unit through the conveying mechanism one, and then evenly scattered onto the forming mold on the conveying mechanism two. The corresponding material shifting unit then gently shifts the material scattered outside the mold cavity of the forming mold into the mold cavity, which not only ensures uniform material spreading, but also avoids the situation where the integrity of the raw materials may be damaged due to excessive force. The products produced have more stable gram weight, uniform thickness, high integrity and better appearance. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] The accompanying drawings constituting a part of the present invention are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention. In the accompanying drawings:

[0031] Figure 1 This is a schematic diagram of the structure of the automatic ultra-thin crispy oatmeal forming device according to an embodiment of the utility model;

[0032] Figure 2 for Figure 1 A magnified image of point A;

[0033] Figure 3 Structural schematic diagram of the material feeding unit described in the embodiment of the present utility model;

[0034] Figure 4 Structural schematic diagram of the pressurizing device and the molding die described in the embodiment of the present utility model.

[0035] Explanation of reference numerals:

[0036] 1 - Material spreading unit, 2 - Transmission and molding unit, 3 - Material feeding unit, 4 - Pressurizing and molding unit, 5 - First chassis, 6 - First mounting base, 7 - First conveyor belt, 8 - First baffle, 9 - Material guiding plate, 10 - Second chassis, 11 - Molding die, 12 - Second mounting base, 13 - Second conveyor belt, 14 - Second baffle, 15 - Loading station, 16 - Unloading station, 17 - Mounting frame, 18 - Material feeding arm, 19 - Material feeding driving device, 20 - Material feeding driving motor, 21 - Eccentric disk, 22 - Reciprocating arm, 23 - Rotating rod, 24 - Connecting seat, 25 - Connecting arm, 26 - Material feeding rod, 27 - Material feeding piece, 28 - First bracket, 29 - Mold cavity, 30 - Third base, 31 - Pressurizing device, 32 - Fixed table, 33 - Moving table, 34 - Hydraulic telescopic cylinder, 35 - Calibration plate, 36 - Second bracket, 37 - Pressing block. Detailed implementation manners

[0037] It should be noted that, without conflict, the embodiments in the present utility model and the features in the embodiments can be combined with each other.

[0038] In the description of the present utility model, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "up", "down", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present utility model and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present utility model. In the description of the present utility model, unless otherwise specified, the meaning of "a plurality of" is two or more.

[0039] In the description of the present utility model, it should be noted that, unless otherwise clearly defined and limited, the terms "installation", "connection", and "coupling" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0040] The present utility model will be described in detail below with reference to the accompanying drawings and in conjunction with embodiments.

[0041] As Figures 1 to 4 shown, an automatic forming device for ultra-thin crispy cereal includes a material spreading unit 1, a conveying and forming unit 2, a material pushing unit 3, and a pressing and forming unit 4;

[0042] The material spreading unit 1 includes a first chassis 5 and a conveying mechanism 1 installed on the first chassis 5 for horizontally conveying materials; the conveying mechanism 1 includes a mounting base 6, a first conveyor belt 7 installed in the inner cavity of the mounting base 6, and a material conveying driving device 1 for driving the first conveyor belt 7 to run; the mounting base 6 is fixed to the first chassis 5 through a mounting plate; on both side walls of the mounting base 6 in the direction perpendicular to the conveyed materials, a first material retaining plate 8 is installed; the upstream end of the first conveyor belt 7 is the feeding end, the downstream end of the first conveyor belt 7 is the discharging end, and at the discharging end of the first conveyor belt 7, a guide plate 9 for guiding the materials to the feeding end 2 of the conveying and forming unit is provided, and the guide plate 9 is connected to the first chassis 5 through a support plate;

[0043] The conveying and forming unit 2 includes a second chassis 10, a conveying mechanism 2 installed on the second chassis 10 for horizontally conveying materials, and a plurality of forming molds 11; the conveying mechanism 2 includes a mounting base 12, a second conveyor belt 13 installed in the inner cavity of the mounting base 12, and a material conveying driving device 2 for driving the second conveyor belt 13 to run; the mounting base 12 is fixed to the second chassis 10 through a mounting plate, and on both side walls of the mounting base 12 in the direction perpendicular to the conveyed materials, a second material retaining plate 14 is installed; the forming molds 11 are arranged on the second conveyor belt 13 in sequence along the transportation direction; the head end of the second conveyor belt 13 is the loading station 15 of the forming mold 11, the tail end is the unloading station 16 of the forming mold 11, the middle section is the feeding end of the cereal, and the feeding end of the second conveyor belt 13 is arranged below the discharging end of the first conveyor belt 7 for receiving the materials provided by the first conveyor belt 7;

[0044] The material feeding unit 3 includes a mounting frame 17, a material feeding arm 18, and a material feeding driving device 19 mounted on the mounting frame 17 for driving the material feeding arm 18 to reciprocate horizontally; the material feeding driving device 19 includes a material feeding driving motor 20 mounted on the mounting frame 17, an eccentric disc 21 connected to the output end of the material feeding driving motor 20, a reciprocating arm 22 with one end connected to the eccentric disc 21, a rotating rod 23 horizontally arranged in the vertical direction of the conveyed material and rotatably mounted on the mounting frame 17, and a connecting seat 24 fixed on the rotating rod 23; the other end of the reciprocating arm 22 is rotatably connected to the connecting seat 24; the material feeding arm 18 includes two connecting arms 25 and a material feeding rod 26; the material feeding rod 26 is arranged parallel to the rotating rod 23; one ends of the two connecting arms 25 are respectively connected to the two ends of the material feeding rod 26, and the other ends of the two connecting arms 25 are respectively connected to the two ends of the rotating rod 23; a material feeding piece 27 is arranged along the length direction at the lower end of the material feeding rod 26, and the lower edge of the material feeding piece 27 is serrated; there are two material feeding units 3, which are respectively suspended above the conveying mechanism 1 and the conveying mechanism 2, and the mounting frame 17 of the material feeding unit 3 is connected to the chassis 1 and the chassis 2 through the bracket 1 28; the material feeding arm 18 corresponding to the conveying mechanism 1 can level the materials on the conveyor belt 1 7; the material feeding arm 18 corresponding to the conveying mechanism 2 can feed the materials into the mold cavity 29 of the forming mold 11;

[0045] The compression molding unit 4 is located downstream of the material feeding unit 3 and includes a base 3 30 and a pressing device 31 suspended above the conveying mechanism 2; the pressing device 31 includes a fixed table 32, a moving table 33, a hydraulic telescopic cylinder 34, and a calibration plate 35; the fixed table 32 is connected to the base 3 30 through the bracket 2 36; the moving table 33 is located below the fixed table 32; the fixed part of the hydraulic telescopic cylinder 34 is mounted on the fixed table 32, and the telescopic end of the hydraulic telescopic cylinder 34 passes through the fixed table 32 and is connected to the upper end surface of the moving table 33; a plurality of mounting rods are provided on the lower end surface of the moving table 33, and a pressing block 37 is mounted at the lower end of each mounting rod; the forming mold 11 is provided with a plurality of mold cavities 29, which correspond to the plurality of pressing blocks 37 one by one, and the pressing blocks 37 can extend into the mold cavities 29 to press the materials in the mold cavities 29; the calibration plate 35 is arranged below the moving table 33 and is connected to the bracket 2 36, and a plurality of calibration holes for the plurality of pressing blocks 37 to pass through are provided on the calibration plate 35, and the calibration holes are arranged corresponding to the plurality of mold cavities 29 of the forming mold 11 below it one by one.

[0046] The working process of the automatic forming equipment for ultra-thin crispy cereal of the present utility model is as follows:

[0047] The ultra-thin wheat slices are fed into the feeding end of the first conveyor belt 7 and transported by the first conveyor belt 7. During the transportation process, the corresponding material deflecting unit 3 performs deflecting and leveling treatment. The deflecting driving motor 20 operates to drive the eccentric disk 21 to rotate. The reciprocating arm 22 makes a reciprocating motion driven by the eccentric disk 21, driving the rotating rod 23 to reciprocate within a certain range, and further driving the deflecting arm 18 to deflect and level the material below back and forth; the material transported by the first conveyor belt 7 is evenly scattered from a high place into the mold cavity 29 of the forming mold 11 on the second conveyor belt 13, and then the corresponding deflecting arm 18 gently deflects the material scattered outside the frame of the mold cavity 29 into the mold cavity 29. As the second conveyor belt 13 moves, the forming mold 11 carrying the ultra-thin wheat slices moves to the pressure forming unit 4. The hydraulic telescopic cylinder 34 is activated, and its moving end drives the moving table 33 to move downward, and then the pressing block 37 moves downward and is pressed into the corresponding mold cavity 29 to press and form the material.

[0048] The above are only the preferred embodiments of the present invention, and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An automatic forming device for ultra-thin crispy cereal, characterized in that, Comprising: A material spreading unit, which includes a first chassis, and a first conveying mechanism installed on the first chassis for horizontally conveying materials; the feeding end of the first conveying mechanism receives materials; A transmission and forming unit, which includes a second chassis, a second conveying mechanism installed on the second chassis for horizontally conveying materials, and a plurality of forming molds arranged in sequence on the second conveying mechanism along the transportation direction; the feeding end of the second conveying mechanism is arranged below the discharging end of the first conveying mechanism; A material pushing unit, which includes a mounting frame, a material pushing arm, and a material pushing driving device installed on the mounting frame for driving the material pushing arm to make reciprocating movements in the horizontal direction; there are two material pushing units, which are respectively suspended above the first conveying mechanism and the second conveying mechanism, and the material pushing arm corresponding to the first conveying mechanism can push and level the materials on the first conveying mechanism; the material pushing arm corresponding to the second conveying mechanism can push the materials into the mold cavities of the forming molds; A pressure forming unit, which is located downstream of the material pushing unit, and includes a third chassis and a pressing device suspended above the second conveying mechanism; the pressing device is used to apply pressure to the forming mold below it to press and form the materials in the mold cavity.

2. The automatic forming device for ultra-thin and crispy cereal according to claim 1, wherein: The first conveying mechanism includes a first mounting base, a first conveyor belt installed in the inner cavity of the first mounting base, and a first material conveying driving device for driving the first conveyor belt to run; the first mounting base is fixed on the first chassis through a mounting plate; the material pushing arm corresponding to the first conveying mechanism can push and level the materials on the first conveyor belt; the upstream end of the first conveyor belt receives materials, and the downstream end of the first conveyor belt is the discharging end.

3. The automatic forming device for ultra-thin and crispy cereal according to claim 2, wherein: On both side walls of the first mounting base in the direction perpendicular to the conveyed materials, there are first baffle plates installed; at the discharging end of the first conveyor belt, there is a guiding plate for guiding the materials to the feeding end of the second conveying mechanism, and the guiding plate is connected to the first chassis through a support plate.

4. The automatic forming device for ultra-thin and crispy cereal according to claim 1, wherein: The second conveying mechanism includes a second mounting base, a second conveyor belt installed in the inner cavity of the second mounting base, and a second material conveying driving device for driving the second conveyor belt to run; the second mounting base is fixed on the second chassis through a mounting plate; the forming molds are arranged on the second conveyor belt; the feeding end of the second conveyor belt is arranged below the discharging end of the first conveying mechanism.

5. The automatic forming equipment for ultra-thin crispy cereal according to claim 4, characterized in that: On both side walls of the second mounting base in the direction perpendicular to the conveyed materials, there are second baffle plates installed.

6. The automatic forming device for ultra-thin and crispy cereal according to claim 5, wherein: The head end of the second conveyor belt is the loading station of the forming mold, the tail end is the unloading station of the forming mold, and the middle section is the feeding end of the cereal.

7. The automatic forming equipment for ultra-thin and crispy cereal according to claim 1, characterized in that: The material feeding driving device includes a material feeding driving motor installed on the installation frame, an eccentric disc connected to the output end of the material feeding driving motor, a reciprocating arm with one end connected to the eccentric disc, a rotating rod horizontally arranged in the vertical direction of the conveyed material and rotatably installed on the installation frame, and a connecting seat fixed on the rotating rod; the other end of the reciprocating arm is rotatably connected to the connecting seat; the material feeding arm includes two connecting arms and a material feeding rod; the material feeding rod is arranged parallel to the rotating rod; one ends of the two connecting arms are respectively connected to the two ends of the material feeding rod, and the other ends of the two connecting arms are respectively connected to the two ends of the rotating rod; a material feeding piece is arranged along the length direction at the lower end of the material feeding rod, and the lower edge of the material feeding piece is serrated.

8. The automatic forming device for ultra-thin and crispy cereal according to claim 1, characterized in that: The installation frame is connected to the first base frame and the second base frame through the first bracket.

9. The automatic forming equipment for ultra-thin and crispy cereal according to claim 1, characterized in that: The pressurizing device includes a fixed table, a moving table, and a hydraulic telescopic cylinder; the moving table is located below the fixed table; the fixed part of the hydraulic telescopic cylinder is installed on the fixed table, and the telescopic end of the hydraulic telescopic cylinder passes through the fixed table and is connected to the upper end surface of the moving table; a plurality of mounting rods are arranged on the lower end surface of the moving table, and a pressing block is installed at the lower end of each mounting rod; the forming die is provided with a plurality of die cavities, which correspond to the plurality of pressing blocks one by one, and the pressing blocks can extend into the die cavities to pressurize the materials in the die cavities.

10. The automatic forming equipment for ultra-thin and crispy cereal according to claim 9, characterized in that: The fixed table is connected to the third base through the second bracket; the pressurizing device further includes a calibration plate, the calibration plate is arranged below the moving table, the calibration plate is provided with a plurality of calibration holes for the plurality of pressing blocks to pass through, the calibration holes are arranged in one-to-one correspondence with the plurality of die cavities of the forming die below, and the calibration plate is connected to the second bracket.