Processing device for edible agricultural products
By designing a device including a fixed frame, a stretching frame and a drying component, the automatic spreading and collection of potato agricultural products are realized by using the unloading component and the leveling component, which solves the problems of high labor intensity and low efficiency in the traditional potato agricultural product drying process, and realizes automated processing and efficient material handling.
Patent Information
- Application Number
- CN202510968827.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-15
- Publication Date
- 2025-10-17
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The traditional potato agricultural product drying process is labor-intensive and inefficient, and requires mechanical linkage to achieve uniform laying of the cut materials and automatic collection of the materials after drying, reducing reliance on manual operation.
A processing device is designed, which includes a fixed frame, a stretching frame, a drying unit and a material receiving frame. The material is automatically laid and collected through the material unloading component and the material leveling component. The flexible material drying unit and the rotating shaft are linked together, and the extrusion block and the flip plate are controlled to realize the automatic material laying and leveling functions.
It reduces labor intensity, improves processing efficiency, realizes the automated processing of potato agricultural products, and improves the automation level of equipment and overall processing efficiency.
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Figure CN120799894A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of agricultural product processing, in particular to a processing device for edible agricultural products. BACKGROUND
[0002] Edible agricultural products are obtained directly from agricultural activities without processing, such as plants, animals, microorganisms and their products, such as vegetables, fruits, grains, beans, pigs, cows, chickens, eggs, etc. Physical, chemical or biological treatment of such agricultural products can extend the shelf life, reduce waste, and improve food quality and transportation convenience.
[0003] For the processing needs of potato products, after the picking, cleaning and cutting processes are completed, the potatoes need to be processed into block-shaped or strip-shaped materials of a specific size, and then dried to form dried products or semi-finished products through drying to improve the taste quality and storage stability. In the traditional drying process, the cut potatoes are evenly laid on the drying rack by hand, and then dried to a shriveled state under the action of direct sunlight, and then collected by hand for subsequent deep processing or secondary drying.
[0004] Based on the problems of the traditional drying method, such as complicated process, high labor intensity and low efficiency, a processing device for edible agricultural products is needed to realize uniform laying of the cut materials and automatic collection of the dried materials through mechanical linkage, reducing the dependence on manual operation in the traditional drying process and improving the processing efficiency. SUMMARY
[0005] To solve the problems in the background art, the present application provides a processing device for edible agricultural products, which will be further described below.
[0006] A processing device for edible agricultural products, comprising a fixed frame and a stretching frame, the bottom of both is provided with a universal wheel with self-locking function, the fixed frame and the stretching frame are connected through two groups of symmetrically distributed telescopic pieces, the stretching frame is fixedly connected with a stabilizing frame, the stabilizing frame is connected with a rotating shaft, the rotating shaft is wound with a drying piece of flexible material, the drying piece has a free end and a fixed end, the free end of the drying piece is connected with the rotating shaft, and the fixed end of the drying piece is connected with the fixed frame, the bottom of the stretching frame is detachably connected with a collecting frame, and the stretching frame is provided with a controlled discharging assembly.
[0007] Preferably, the discharging assembly comprises two groups of symmetrically distributed connecting frames fixedly connected with the stabilizing frame, and a discharging frame is commonly fixedly connected between the two groups of connecting frames, and the bottom of the discharging frame is connected with a turnover plate.
[0008] Preferably, a receiving frame is slidably embedded on the discharging frame, and a control plate is slidably embedded on the front side of the receiving frame.
[0009] Preferably, a supporting ear is fixed on each of the left and right side walls of the discharging frame, a supporting rod is slidably penetrated through the supporting ear, the bottom of the two supporting rods is fixedly connected with an extrusion piece, the extrusion piece is tightly pressed on the bottom of the turning plate, and a tension spring is compressed between the supporting ear and the extrusion piece.
[0010] Preferably, an annular guide is key-connected to each of the left and right ends of the rotating shaft, a torsion spring is arranged between the annular guide and the adjacent stabilizing frame, an extrusion block is slidably embedded on each of the upper and lower ends of the annular guide, and the extrusion block is extrusion-fitted with the end of the extrusion piece.
[0011] Preferably, two groups of symmetrically distributed supporting frames are fixed on the front side of the discharging frame, the end of the supporting frame is fixedly connected with an adjusting frame, a connecting plate is fixed on each of the left and right sides of the adjusting frame, a rotating rod is connected to the bottom of the adjusting frame, the ends of the rotating rod are penetrated through the connecting plate and extend outward, and a uniform material piece is key-connected to the rotating rod.
[0012] Preferably, a supporting piece is fixed on the outer wall of the connecting plate, a rotating piece is connected to the supporting piece, the ends of the rotating rod penetrated through the connecting plate are key-connected with the adjacent rotating piece, a sliding piece is slidably penetrated through the connecting frame, a connecting link is hinged between the rotating piece and the adjacent sliding piece, a connecting ring is fixed on the extrusion block, a clamping frame is slidably embedded on the connecting ring, a guide rod is fixed on the inner side of the connecting frame, the clamping frame is slidably connected with the guide rod, and another connecting link is hinged between the sliding piece and the adjacent clamping frame.
[0013] Preferably, a supporting tube is connected to the stretching frame.
[0014] Preferably, a supporting piece is fixed on the outer wall of the connecting plate, a rotating piece is connected to the supporting piece, the ends of the rotating rod penetrated through the connecting plate are key-connected with the adjacent rotating piece, a sliding piece is slidably penetrated through the connecting frame, a connecting link is hinged between the rotating piece and the adjacent sliding piece, a connecting ring is fixed on the extrusion block, a clamping frame is slidably embedded on the connecting ring, a guide rod is fixed on the inner side of the connecting frame, the clamping frame is slidably connected with the guide rod, and another connecting link is hinged between the sliding piece and the adjacent clamping frame.
[0015] Beneficial effects: Compared with the prior art, the device drives the stretching frame to move by the blanking assembly, the drying piece is expanded by the external force, the rotating shaft, the annular guide and the extrusion block are rotated in linkage, the extrusion block is extrusion-fitted with the end of the extrusion piece, the extrusion piece is forced to move downward and cancel the tight pressing constraint on the bottom of the turning plate, the turning plate is automatically turned downward without limitation, the material in the discharging frame falls to the expanded drying piece by gravity, the automatic paving action is realized, the traditional manual paving operation is replaced, the labor intensity is reduced, the degree of automation of the equipment is improved, and the overall processing efficiency is improved.
[0016] The material on the airing piece is gradually stacked, the material uniformizing piece is turned over, thereby the material is dynamically spread, the automatic material uniformizing function is realized, the traditional manual spreading operation is replaced, and the dependence on labor is greatly reduced. Meanwhile, the extrusion block moves to the outside, no longer extrudes the end of the extrusion piece, thereby preventing the material in the discharging frame from continuously falling, and the automatic material uniformizing and material cutting during the material laying process are realized. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 : the three-dimensional structure schematic diagram of the application;
[0018] Figure 2 : the local structure schematic diagram of the application;
[0019] Figure 3 : the structure schematic diagram of the control board, rotating shaft, stabilizing frame and other related components of the application;
[0020] Figure 4 : the structure schematic diagram of the stretching spring, ring-shaped guide, extrusion block and other related components of the application;
[0021] Figure 5 : the structure schematic diagram of the connecting frame, support, adjusting frame and other related components of the application;
[0022] Figure 6 : the structure schematic diagram of the rotating piece, connecting rod one, rotating rod and other related components of the application;
[0023] Figure 7 : the structure schematic diagram of the sliding piece, connecting rod two, clamping frame and other related components of the application;
[0024] Figure 8 : the structure schematic diagram of the supporting piece, telescopic frame, airing piece and other related components of the application;
[0025] In the figure: 1-fixed frame, 10-universal wheel, 11-stretching frame, 12-airing piece, 13-telescopic piece, 14-torsional spring, 15-receiving frame, 151-control board, 16-rotating shaft, 17-stabilizing frame, 2-discharging frame, 21-turning plate, 211-connecting frame, 22-stretching spring, 23-ring-shaped guide, 24-extrusion block, 25-extrusion piece, 26-connecting ring, 27-supporting tube, 28-ear, 29-branch, 3-supporting piece, 31-support, 311-rotating rod, 312-connecting plate, 32-adjusting frame, 33-material uniformizing piece, 34-guiding rod, 35-rotating piece, 36-connecting rod one, 37-sliding piece, 38-connecting rod two, 39-clamping frame, 4-supporting piece, 41-telescopic frame. DETAILED DESCRIPTION
[0026] Next, combined with Figures 1-8A specific embodiment of the present application is described in detail.
[0027] Reference Figure 1 And Figure 2 A processing device for edible agricultural products, comprising a fixed frame 1 and a stretching frame 11, both of which are provided with self-locking universal wheels 10 at the bottom to realize flexible displacement and stable positioning of the device, the fixed frame 1 and the stretching frame 11 are connected by two groups of symmetrically distributed telescopic members 13 to realize stable expansion and contraction of the structure, the stretching frame 11 is fixedly connected with a stabilizing frame 17, the stabilizing frame 17 is connected with a rotating shaft 16, the rotating shaft 16 is wound with a drying member 12 containing flexible material, the drying member 12 has a free end and a fixed end, the free end of the drying member 12 is connected with the rotating shaft 16, and the fixed end of the drying member 12 is connected with the fixed frame 1, the bottom of the stretching frame 11 is detachably connected with a material collecting frame 15, the opening of which is opposite to the free end region of the drying member 12, for receiving the material automatically falling from the drying member 12 after drying, the material collecting frame 15 is detachable and is installed as a discharging frame on the top of the stretching frame 11, and the stretching frame 11 is provided with a controlled discharging assembly.
[0028] Before drying, the material to be dried is loaded into the material collecting frame 15, the material collecting frame 15 is installed on the top of the stretching frame 11, the universal wheels 10 on the fixed frame 1 are locked, and then an external force drives the stretching frame 11 to move away from the fixed frame 1, the drying member 12 is expanded, the material in the material collecting frame 15 is laid on the expanded drying member 12 by controlling the discharging assembly, realizing the automatic material laying function, after drying, the material collecting frame 15 is reinstalled on the bottom of the stretching frame 11, and the stretching frame 11 is driven to move in the opposite direction, the drying member 12 is rolled up, and the dried material on the drying member 12 falls into the material collecting frame 15 automatically, realizing the automatic material collecting function, which significantly reduces the labor intensity and improves the work efficiency.
[0029] Reference Figure 3 And Figure 4 The discharging assembly comprises two groups of symmetrically distributed connecting frames 211 fixedly connected on the stabilizing frame 17, and a discharging frame 2 is fixedly connected between the two groups of connecting frames 211, the bottom of the discharging frame 2 is connected with a turnover plate 21, which realizes the turnover action to control the quantitative discharging of the material from the discharging frame 2 to the surface of the drying member 12.
[0030] Reference Figure 3The receiving frame 15 is embedded and slidably connected to the discharging frame 2, and is used for temporarily storing the agricultural products to be dried. The front side of the receiving frame 15 is embedded and slidably connected with a control plate 151. The bottom of the control plate 151 is in contact with the top of the discharging frame 2, that is, the receiving frame 15 is installed on the discharging frame 2. The control plate 151 is suspended and slidably connected to the front side of the receiving frame 15 due to the contact of the top of the discharging frame 2, and a channel space for the material falling is formed between the control plate 151 and the receiving frame 15, so that the material in the receiving frame 15 can smoothly fall into the discharging frame 2, and the preliminary feeding is completed.
[0031] When the automatic receiving operation is needed, the receiving frame 15 is detached from the discharging frame 2, and at this time, the contact of the discharging frame 2 to the control plate 151 is removed. The control plate 151 slides downward along the front side of the receiving frame 15 under the action of its own gravity, and finally seals the bottom opening, and at the same time, together with the receiving frame 15, forms a box structure with an open top and a closed bottom, which is convenient to use as a material collecting container.
[0032] Reference Figure 4 In order to control the turning of the turning plate 21, the left and right side walls of the discharging frame 2 are fixedly connected with an ear 28, and the ear 28 is throughly and slidably connected with a support rod 29. The bottoms of the two support rods 29 are fixedly connected with a pressing piece 25, which tightly presses the bottom of the turning plate 21 and maintains the stationary state of the turning plate 21.
[0033] Reference Figure 3 The ear 28 and the pressing piece 25 are compressed with a tension spring 22 around the support rod 29, which aims to keep the pressing piece 25 tightly pressing the bottom of the turning plate 21 through the tension spring 22.
[0034] The turning of the turning plate 21 depends on the movement of the pressing piece 25, that is, the pressing piece 25 moves downward, cancels the tight pressing effect on the bottom of the turning plate 21, and makes the turning plate 21 rotate to open the discharging channel and realize the automatic falling of the material. Therefore, the following linkage design is made. The left and right ends of the rotating shaft 16 are key-connected with a ring-shaped guide 23, and the ring-shaped guide 23 and the adjacent stable frame 17 are provided with a torsion spring 14. The upper and lower ends of the ring-shaped guide 23 are embedded and slidably connected with a pressing block 24, and the pressing block 24 is in pressing cooperation with the end of the pressing piece 25, so as to realize the movement of the pressing piece 25.
[0035] Before the device works, first install the material receiving frame 15 on the material discharging frame 2, the control panel 151 is suspended in front of the material receiving frame 15 due to the resistance force of the top of the material discharging frame 2, and a channel space for the material to fall is formed between the two, the material to be dried is added to the material receiving frame 15, then the material slides through the channel space and falls into the material discharging frame 2, at this time, the extrusion piece 25 is tightly pressed on the bottom of the turnover plate 21, so that the turnover plate 21 remains closed, thereby effectively blocking the material in the material discharging frame 2 and retaining it in the frame body, preventing the material from falling prematurely during the drying preparation stage.
[0036] Then, after locking the universal wheel 10 on the fixed frame 1, the external force drives the stretching frame 11 to move away from the fixed frame 1, the drying piece 12 is driven to expand, the rotating shaft 16 is controlled to rotate, the linkage ring guide 23 is driven to rotate, the extrusion block 24 is driven to rotate, the torsional spring 14 is deformed, the extrusion block 24 is extruded with the end of the extrusion piece 25, the extrusion piece 25 is forced to move downward and cancel the tight pressing constraint on the bottom of the turnover plate 21, the stretching spring 22 is deformed, and the turnover plate 21 automatically flips downward without restriction, the material in the material discharging frame 2 falls under its own weight onto the expanded drying piece 12, realizing automatic material paving action, replacing traditional manual paving operation, reducing labor intensity, improving equipment automation level and overall processing efficiency.
[0037] With the continuous movement of the stretching frame 11, the rotating shaft 16 continuously rotates, the extrusion block 24 gradually separates from the end of the extrusion piece 25, and under the action of the torsional spring 14 and the stretching spring 22, the ring guide 23 reverses and resets, and the extrusion piece 25 moves upward and resets, that is, the extrusion piece 25 is tightly pressed on the bottom of the turnover plate 21 again, preventing the material in the material discharging frame 2 from continuing to fall, realizing the pause of the discharging action, and by controlling the stroke and displacement rhythm of the stretching frame 11, a periodic and intermittent extrusion relationship is formed between the extrusion block 24 and the extrusion piece 25, thereby driving the extrusion piece 25 to realize reciprocating upward and downward movement, further controlling the intermittent flipping opening and closing of the turnover plate 21, realizing controllable and segmented adjustment of the material falling process, and improving the equipment automation level.
[0038] Reference Figure 5 And Figure 6 To realize the effect of uniformly laying the material on the drying piece 12, the material leveling assembly is used, the front side of the material discharging frame 2 is fixedly connected with two groups of symmetrically distributed supports 31, the ends of the supports 31 are fixedly connected with an adjusting frame 32, the left and right sides of the adjusting frame 32 are fixedly connected with connecting plates 312, the bottom of the adjusting frame 32 is connected with a rotating rod 311, the two ends of the rotating rod 311 penetrate through the connecting plates 312 and extend outward, the rotating rod 311 is keyed connected with a material leveling piece 33, and the material leveling piece 33 is built in the adjusting frame 32, that is, the material leveling piece 33 is suspended on the top of the drying piece 12, and the purpose of realizing the material leveling action is achieved.
[0039] Reference Figure 6And Figure 7 The outer wall of the connecting plate 312 is fixed with a support 3, the support 3 is connected with a rotating part 35, the rotating rod 311 is connected with the rotating part 35, the connecting frame 211 is slidably connected with a sliding part 37, the rotating part 35 is hingedly connected with the sliding part 37, the extrusion block 24 is fixedly connected with a connecting ring 26, the connecting ring 26 is slidably connected with a clamping frame 39, the inner side of the connecting frame 211 is fixedly connected with a guide rod 34, the clamping frame 39 is slidably connected with the guide rod 34, the sliding part 37 is hingedly connected with the clamping frame 39.
[0040] The material falls to the unfolded drying part 12 by gravity, the material on the drying part 12 gradually accumulates, the material extrudes the uniformizing part 33, the uniformizing part 33 is turned over under pressure, and the uniformizing part 33 continuously pushes the material after turning over, and the material is uniformly laid on the drying part 12.
[0041] With the turning over of the uniformizing part 33, the rotating rod 311 is controlled to rotate, the linkage rotating part 35 rotates, the rotating part 35 rotates the linkage connecting rod one 36 to move in a circle, and then the linkage sliding part 37 moves towards the fixed frame 1, based on the existence of the connecting rod two 38 and the guidance of the guide rod 34, the clamping frame 39 moves outward, and then the linkage connecting ring 26 and the extrusion block 24 move in the same direction, that is, the extrusion block 24 moves outward and no longer extrudes the end of the extrusion part 25, and then the extrusion part 25 is continuously pressed on the bottom of the turning plate 21 under the action of the stretching spring 22, preventing the material in the discharge frame 2 from continuing to fall, and realizing the pause of the discharging action.
[0042] The above steps are realized by the material gradually accumulated on the drying part 12, the turning over of the uniformizing part 33, and the dynamic flattening of the material, realizing the automatic uniformizing function, replacing the traditional manual flattening operation, and greatly reducing the dependence on labor. The linkage control mechanism realizes the automatic uniformizing and cutting of the material during the laying process, and the thickness of the material on the drying part 12 is uniform.
[0043] When the material is evenly laid by the material leveling piece 33, the material cancels the pressure on the material leveling piece 33, and then the material leveling piece 33 is not under pressure and automatically reverses and resets, the linkage rotating rod 311 and the rotating piece 35 reverse, based on the existence of the connecting rod one 36, the sliding piece 37 moves to the direction away from the fixed frame 1 and resets, based on the existence of the connecting rod two 38 and the guidance of the guide rod 34, the clamping seat 39 moves to the inside and resets, the linkage connecting ring 26 and the extrusion block 24 move in the same direction, that is, the extrusion block 24 moves to the inside and resets, that is, it returns to the position where the extrusion between the extrusion block 24 and the end of the extrusion piece 25 occurs, with the continuous movement of the stretching frame 11, the rotating shaft 16 continuously rotates, the extrusion block 24 and the extrusion piece 25 are in extrusion fit, thereby driving the extrusion piece 25 to move downward, further controlling the intermittent turning on of the turnover plate 21, and then the continuous falling of the material in the discharging frame 2.
[0044] Initially, the flexible drying piece 12 is in a wound state and is sleeved on the rotating shaft 16, with the movement of the stretching frame 11, the drying piece 12 is gradually unfolded, the part wound on the rotating shaft 16 gradually decreases, causing the winding thickness of the drying piece 12 at the rotating shaft 16 to continuously decrease, and the middle part of the drying piece 12 between the stretching frame 11 and the fixed frame 1 sinks due to insufficient support, forming a local inclined structure, which is not conducive to the uniform laying and subsequent drying of the material.
[0045] Reference Figure 4 Therefore, the stretching frame 11 is connected with a support pipe 27, the support pipe 27 is always in contact with the bottom surface of the drying piece 12, and plays an auxiliary supporting role, the support pipe 27 applies uniform support force to the drying piece 12, effectively maintains the flat and tension state of the drying piece 12 between the stretching frame 11 and the fixed frame 1, prevents deformation or wrinkles caused by thickness change, and makes the drying piece 12 maintain a stable horizontal posture, thereby realizing the uniformity of material laying.
[0046] Reference Figure 8 In view of the design of the flexible material of the drying piece 12, local sinking may occur due to bearing during material laying, causing uneven distribution or even accumulation of the material, affecting the drying efficiency, therefore, the fixed frame 1 is detachably provided with a supporting piece 4, which is a hollow structure, the supporting piece 4 extends towards the stretching frame 11 and is arranged at the bottom of the drying piece 12, the stretching frame 11 is fixedly connected with an extension frame 41, the free end of the extension frame 41 is embeddedly and slidably connected in the cavity of the supporting piece 4, and the extension frame 41 is also located at the bottom of the drying piece 12.
[0047] With the movement of the stretching frame 11 under the action of external force, the flexible drying piece 12 is gradually unfolded, and the free end of the extension frame 41 is also simultaneously unfolded. During this process, the support structure formed by the extension frame 41 and the supporting piece 4 is always located below the bottom of the drying piece 12, and continuously and stably supports the drying piece 12.
[0048] The supporting effect effectively prevents the local sinking phenomenon of the flexible material of the airing piece 12 under the action of the gravity of the material, avoids the problems of accumulation and uneven distribution of the material during the airing process, and facilitates uniform laying of the material on the entire airing surface.
[0049] To sum up, through the blanking assembly, the stretching frame 11 is driven to move by external force, the airing piece 12 is expanded in follow-up, the linkage rotating shaft 16, the annular guide 23 and the extrusion block 24 are rotated, the extrusion block 24 is extruded with the end of the extrusion piece 25, the extrusion piece 25 is forced to move downward and cancels the tight constraint on the bottom of the turnover plate 21, the turnover plate 21 is automatically turned over downward after being unrestricted, the material in the discharge frame 2 falls to the expanded airing piece 12 under the action of gravity, the automatic material laying action is realized, the traditional manual manual paving operation is replaced, the labor intensity is reduced, the degree of automation of the equipment is improved, and the overall processing efficiency is improved.
[0050] Through the material gradually accumulated on the airing piece 12, the material leveling piece 33 is turned over, so that the material is dynamically leveled, the automatic material leveling function is realized, the traditional manual leveling operation is replaced, and the dependence on labor is greatly reduced. At the same time, the linkage extrusion block 24 moves outward and no longer extrudes the end of the extrusion piece 25, thereby preventing the continuous falling of the material in the discharge frame 2, and the linkage control mechanism realizes the automatic material leveling and cutting during the material laying process.
[0051] The above only describes the preferred embodiments of the present application and is not used to limit the present application. For those skilled in the art, the present application can have various modifications and changes. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A processing device for edible agricultural products, comprising a fixed frame (1) and a stretching frame (11), both of which are provided with a universal wheel (10) with a self-locking function at the bottom, the fixed frame (1) and the stretching frame (11) are connected by two groups of symmetrically distributed telescopic members (13), a stabilizing frame (17) is fixedly connected to the stretching frame (11), a rotating shaft (16) is connected to the stabilizing frame (17), a drying member (12) made of a flexible material is wound on the rotating shaft (16), the drying member (12) has a free end and a fixed end, the free end of the drying member (12) is connected to the rotating shaft (16), and the fixed end of the drying member (12) is connected to the fixed frame (1), characterized in that: The bottom of the stretching frame (11) is detachably connected to a material receiving frame (15), and a controlled material unloading component is provided on the stretching frame (11).
2. The processing device for edible agricultural products according to claim 1, characterized in that: The unloading assembly comprises two groups of symmetrically distributed connecting frames (211) fixed on a stabilizing frame (17); a discharge frame (2) is fixed between the two groups of connecting frames (211); and a flip plate (21) is connected to the bottom of the discharge frame (2).
3. The processing device for edible agricultural products according to claim 2, characterized in that: A receiving frame (15) is embedded and slidably connected to the discharge frame (2), a control panel (151) is embedded and slidably connected to the front side of the receiving frame (15), and the bottom of the control panel (151) contacts the top of the discharge frame (2).
4. The processing device for edible agricultural products according to claim 3, characterized in that: The left and right side walls of the discharge frame (2) are fixedly connected with support ears (28), and the support ears (28) are slidably connected with support rods (29). The bottoms of the two support rods (29) are fixedly connected with an extrusion piece (25), and the extrusion piece (25) is tightly pressed against the bottom of the flip plate (21). A tension spring (22) is compressed between the support ears (28) and the extrusion piece (25).
5. The processing device for edible agricultural products according to claim 1, characterized in that: The left and right ends of the rotating shaft (16) are key-connected with annular guides (23), a torsion spring (14) is provided between the annular guide (23) and the adjacent stabilizing frame (17), and the upper and lower ends of the annular guide (23) are embedded with extrusion blocks (24) for sliding connection, and the extrusion blocks (24) are extruded and matched with the ends of the extrusion members (25).
6. The processing device for edible agricultural products according to claim 4, characterized in that: The front side of the discharging frame (2) is fixed with two groups of symmetrically distributed brackets (31), the ends of which are commonly fixed with an adjustment frame (32), the left and right sides of the adjustment frame (32) are fixed with connecting plates (312), the bottom of the adjustment frame (32) is connected with a rotating rod (311), the two ends of which pass through the connecting plate (312) and extend outwards, and the rotating rod (311) is keyed with a material leveling member (33).
7. The processing device for edible agricultural products according to claim 6, characterized in that: The outer wall of the connecting plate (312) is fixedly connected with a support member (3), and a rotating member (35) is connected to the supporting member (3). The end of the rotating rod (311) passing through the connecting plate (312) is key-connected to the adjacent rotating member (35). The connecting frame (211) is slidably connected with a sliding member (37). A connecting rod 1 (36) is hinged between the rotating member (35) and the adjacent sliding member (37). The extrusion block (24) is fixedly connected with a connecting ring (26). A positioning frame (39) is embedded and slidably connected to the connecting ring (26). The inner side of the connecting frame (211) is fixedly connected with a guide rod (34). The positioning frame (39) is slidably connected to the guide rod (34). A connecting rod 2 (38) is hinged between the sliding member (37) and the adjacent positioning frame (39).
8. The processing device for edible agricultural products according to claim 1, characterized in that: A support tube (27) is connected to the stretching frame (11).
9. The processing device for edible agricultural products according to claim 1, characterized in that: A supporting member (4) is detachably mounted on the fixing frame (1), the interior of which is a hollow structure; a telescopic frame (41) is fixedly connected to the stretching frame (11), the free end of which is embedded and slidably connected in the cavity of the supporting member (4).