A feed processing with goldenrod drying device

By using a U-shaped adjusting frame and alternating load-bearing components to form a wave-shaped load-bearing surface, combined with a tray to collect fallen materials, the problem of uneven drying and compression in existing technologies is solved, achieving a more uniform and efficient drying effect.

CN224534658UActive Publication Date: 2026-07-21JIANGSU POLYTECHNIC COLLEGE OF AGRI & FORESTRY +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGSU POLYTECHNIC COLLEGE OF AGRI & FORESTRY
Filing Date
2025-09-05
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In existing technologies, the load-bearing structure of goldenrod drying devices is mostly of a single horizontal form, which is difficult to adjust according to drying needs, resulting in uneven drying effect and easy material compression damage.

Method used

The system employs a U-shaped adjustment frame and alternating first and second load-bearing components. By adjusting the lifting and angle, a wave-shaped load-bearing surface is formed. Combined with a receiving tray to collect fallen materials, it achieves multi-dimensional adjustment and uniform drying.

Benefits of technology

It increases the contact area between the material and the air and sunlight, avoids compression, improves the uniformity of drying, reduces waste and pollution, and meets the drying needs of feed processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feed processing is with one branch of yellow flower airing device relates to airing device technical field, include: underframe, a plurality of first bearing, interval setting in the upper surface of bottom frame, U type adjusting frame, liftablely be connected in the outside of bottom frame, a plurality of second bearing, interval setting in the lower surface of U type adjusting frame, wherein, second bearing with first bearing is alternately arranged in horizontal direction, and the common constitution is used for supporting the bearing structure of one branch of yellow flower, U type adjusting frame is configured as can through the lifting movement drive second bearing moves with first bearing in vertical direction and generates relative dislocation, to change the airing posture of one branch of yellow flower, the utility model discloses through U type adjusting frame, first bearing, second bearing cooperation height adjustment, form the undulating bearing surface, increase material and air sunlight contact area, avoid extrusion, improve airing evenness.
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Description

Technical Field

[0001] This utility model relates to the technical field of drying devices, specifically a drying device for goldenrod for feed processing. Background Technology

[0002] Fresh goldenrod may contain small amounts of flavonoids and terpenoids. High doses may cause slight irritation to the digestive tract of cattle and sheep. Sun-drying is necessary to reduce this potential irritation and improve palatability. Sun-drying is a crucial step in processing goldenrod to ensure its future value. It's essential to ensure the material is evenly exposed to air and sunlight, avoiding insufficient drying or damage from compression that could affect quality. Currently, most goldenrod sun-drying methods in the industry rely on planar support structures, such as fixed drying racks and nets. These structures typically have a single horizontal surface, making it difficult to adjust the structure to suit different drying needs, resulting in poor drying efficiency. Utility Model Content

[0003] To address the shortcomings of existing technologies, this utility model provides a goldenrod drying device for feed processing.

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

[0005] A goldenrod drying device for feed processing includes:

[0006] Base frame;

[0007] Multiple first load-bearing components are spaced apart on the upper surface of the base frame;

[0008] The U-shaped adjustable frame is vertically and adjustablely connected to the outside of the base frame;

[0009] Multiple second support members are spaced apart on the lower surface of the U-shaped adjustment frame;

[0010] The second support member and the first support member are arranged alternately in the horizontal direction to form a support structure for supporting Goldenrod.

[0011] The U-shaped adjustment frame is configured to move the second carrier member through lifting and lowering movements, causing a relative misalignment between the second carrier member and the first carrier member in the vertical direction, thereby changing the stacking posture of goldenrod.

[0012] Preferably, the height of the bearing surface of the second bearing member gradually increases from the middle to both sides. When the second bearing member rises, it causes the goldenrod to move upward and towards the second bearing member to change its drying posture.

[0013] Preferably, the second carrier is fixedly connected to the U-shaped adjustment frame in the vertical direction and rotatably connected in the horizontal direction, with the rotation angle being ±15° around the connection point with the U-shaped adjustment frame.

[0014] Preferably, the first and second support members are rod-shaped or plate-shaped structures.

[0015] Preferred options also include:

[0016] It receives the pallet, is fixed to the inside of the base frame, and is located below the first load-bearing component.

[0017] Preferably, the U-shaped adjustment frame is connected to the base frame via adjustment holes and fastening bolts, and the adjustment holes are formed on the vertical parts of the base frame and the U-shaped adjustment frame.

[0018] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0019] By adjusting the height using a U-shaped adjustment frame, a first load-bearing component, and a second load-bearing component, a wave-shaped load-bearing surface is formed, increasing the contact area between the material and air and sunlight, avoiding compression, and improving the uniformity of drying. Attached Figure Description

[0020] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0021] Figure 1 This is a three-dimensional structural schematic diagram of the goldenrod drying device for feed processing according to this utility model.

[0022] Figure 2 This is a three-dimensional structural diagram of the U-shaped adjusting frame of the Goldenrod drying device for feed processing according to this utility model.

[0023] Figure 3 This is a three-dimensional structural diagram of the base frame of the Goldenrod drying device for feed processing according to this utility model.

[0024] Figure 4 This is a second-view three-dimensional structural diagram of the U-shaped adjusting frame of the Goldenrod drying device for feed processing according to this utility model.

[0025] Figure 5 This is a second-view three-dimensional structural diagram of the base frame of the Goldenrod drying device for feed processing according to this utility model.

[0026] The diagram shows the following labels: 1. Base frame; 2. First load-bearing component; 3. Receiving pallet; 4. U-shaped adjustment frame; 5. Second load-bearing component; 6. Adjustment hole; 7. Fastening bolt. Detailed Implementation

[0027] It is readily understood that, based on the technical solution of this utility model, those skilled in the art can propose various interchangeable structural methods and implementations without altering the essential spirit of this utility model. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model and should not be considered as the entirety of this utility model or as limitations or restrictions on the technical solution of this utility model.

[0028] Example

[0029] like Figure 1-5 As shown, a goldenrod drying device for feed processing includes:

[0030] Base frame 1: Base frame 1 is the basic support component of the entire device. It is made of high-strength material and has good stability and load-bearing capacity. It can provide a stable support platform for the installation and operation of other components on the device, ensuring that the device is not easy to shake or tip over during the drying operation.

[0031] First Support Component 2: There are multiple first support components 2, spaced apart on the upper surface of the base frame 1. Their main function is to work in conjunction with the second support component 5 to form a support structure for the goldenrod, providing an initial support surface for placement and drying. The first support component 2 can be either rod-shaped or plate-shaped, depending on the actual drying needs and material characteristics. Rod-shaped structures facilitate ventilation, while plate-shaped structures offer a larger support area; users can choose flexibly based on their specific circumstances.

[0032] Receiving Pallet 3: The receiving pallet 3 is fixed to the inside of the base frame 1 and located below the first bearing member 2. During the drying process of goldenrod, some small branches or debris may fall from the bearing structure. The receiving pallet 3 can collect these fallen materials in time, avoiding waste and pollution caused by the materials scattering on the ground. It also facilitates the subsequent unified processing and recycling of the collected materials.

[0033] U-shaped adjustment frame 4: The U-shaped adjustment frame 4 is vertically connected to the outside of the base frame 1 and is the component that realizes the lifting and adjusting of the second bearing member 5. It adopts a U-shaped structure design, which can be stably fitted on the outside of the base frame 1, and through cooperation with the adjustment hole 6 and the fastening bolt 7, the lifting position can be adjusted and fixed, thereby driving the second bearing member 5 to move up and down, changing the drying posture of the goldenrod.

[0034] Second support member 5: There are also multiple second support members 5, which are spaced apart on the lower surface of the U-shaped adjustment frame 4 and are arranged alternately with the first support member 2 in the horizontal direction to form a support structure for supporting goldenrod.

[0035] Special bearing surface design: The bearing surface of the second bearing member 5 gradually increases in height from the middle to both sides. This structural design allows the goldenrod placed on it to move upward and towards the middle of the second bearing member 5 when the second bearing member 5 rises, thereby changing the stacking posture of the goldenrod, changing the thickness of the material, and improving the uniformity of drying.

[0036] Connection method: The second support member 5 is fixedly connected to the U-shaped adjusting frame 4 in the vertical direction, ensuring that the second support member 5 rises and falls synchronously with the U-shaped adjusting frame 4 in the vertical direction; in the horizontal direction, a rotating connection is adopted, and the rotation angle is ±15° around the connection point with the U-shaped adjusting frame 4. This rotatable connection method allows the second support member 5 to flexibly adjust its angle within a certain range according to the stacking and drying requirements of goldenrod, further optimizing the drying state of the material and avoiding insufficient drying due to local material accumulation.

[0037] Structural selection: Similar to the first support member 2, the second support member 5 can also adopt a rod-shaped or plate-shaped structure. Users can choose to use it in combination with the first support member 2 according to the actual drying scene and material characteristics to achieve the best drying effect. The second support member 5 moves upward and forms an undulating wave shape with the first support member 2, which is conducive to the drying of goldenrod.

[0038] Adjustment holes 6: Adjustment holes 6 are respectively opened on the vertical parts of the base frame 1 and the U-shaped adjustment frame 4, and are evenly distributed. The adjustment holes 6 provide adjustment positions for the lifting and lowering of the U-shaped adjustment frame 4. The user can adjust the U-shaped adjustment frame 4 to a suitable height as needed, so that the adjustment holes 6 on the base frame 1 and the U-shaped adjustment frame 4 are aligned, which prepares for the subsequent fixing of the position of the U-shaped adjustment frame 4 by fastening bolts 7. It is an important structure for realizing the height adjustment of the device.

[0039] Fastening bolt 7: Fastening bolt 7 is used in conjunction with adjusting hole 6 to fix the lifting position of U-shaped adjusting frame 4. When U-shaped adjusting frame 4 is adjusted to the required height and the base frame 1 is aligned with the adjusting hole 6 on U-shaped adjusting frame 4, fastening bolt 7 is passed through the aligned adjusting hole 6 and the nut is tightened to firmly fix U-shaped adjusting frame 4 on base frame 1. This prevents U-shaped adjusting frame 4 from lifting or lowering itself during device operation, ensuring that the second bearing 5 can be stably maintained at the set height, and ensuring the smooth progress of drying operations.

[0040] I. Initial Drying Preparation: Constructing the Basic Support Structure

[0041] Before the device is put into operation, the overall load-bearing structure is first constructed by relying on the stable support platform provided by the base frame 1. Multiple first load-bearing components 2 are fixed to the upper surface of the base frame 1 at intervals, while multiple second load-bearing components 5 are installed on the lower surface of the U-shaped adjustment frame 4 at intervals. The second load-bearing components 5 and the first load-bearing components 2 are arranged alternately in the horizontal direction, together forming the basic load-bearing structure for supporting goldenrod.

[0042] Users can flexibly choose the structural types of the first support component 2 and the second support component 5 according to the material characteristics of goldenrod (such as bulkiness and moisture content) and the requirements of the drying scenario: if stronger ventilation is required to accelerate moisture evaporation, a rod-shaped structure can be selected; if improved support stability and prevention of material slippage are required, a plate-shaped structure can be selected. At this time, the receiving tray 3 is fixed inside the base frame 1 and located below the first support component 2, in a state of waiting to be collected, ready for subsequent handling of fallen materials.

[0043] II. Adjusting the drying posture: Achieving even drying

[0044] During the drying process, to prevent the goldenrod from accumulating in certain areas and causing insufficient drying, the device can flexibly adjust the drying posture of the material through the cooperation of the U-shaped adjustment frame 4, adjustment hole 6, and fastening bolt 7, combined with the special design of the second bearing component 5. Specifically, it is divided into two dimensions: height adjustment and angle adjustment.

[0045] (a) Height adjustment: forming a wavy bearing surface

[0046] Adjustment Operation: According to the drying requirements (such as material thickness and sunlight angle), the user loosens the fastening bolts 7 to release their fixation on the U-shaped adjustment frame 4. Then, push the U-shaped adjustment frame 4 up and down along the vertical direction of the base frame 1. At this time, it is necessary to observe the adjustment holes 6 on the vertical part of the base frame 1 and the U-shaped adjustment frame 4. When the U-shaped adjustment frame 4 reaches the target height and the adjustment holes 6 of both are completely aligned, stop the lifting operation.

[0047] Fixing and Posture Adjustment: Pass the fastening bolts 7 through the aligned adjustment holes 6 and tighten the nuts to securely fix the U-shaped adjustment frame 4 to the base frame 1. Since the second support member 5 rises and falls synchronously with the U-shaped adjustment frame 4, the second support member 5 will create a height difference relative to the first support member 2, and together they form an undulating, wave-like support surface. This structure increases the contact area between the goldenrod and air and sunlight, while preventing the materials from being squeezed together and improving the uniformity of drying.

[0048] (ii) Angle adjustment: to adapt to the material stacking state

[0049] The second support component 5 and the U-shaped adjusting frame 4 are rotatably connected in the horizontal direction (rotation angle ±15°). When goldenrod is piled on the support structure, the second support component 5 can automatically or manually adjust the horizontal angle according to the actual thickness and distribution of the material: for areas with thicker piles, the second support component 5 can rotate slightly to one side to disperse the material to both sides; for areas with thinner piles, it can rotate in the opposite direction to avoid excessive dispersion of the material and prolonged exposure in some areas. This angle adjustment capability further optimizes the drying state of the material and prevents problems of "over-drying" or "under-drying" in some areas.

[0050] In addition, the bearing surface of the second bearing component 5 adopts a gradient design of "low in the middle and high on both sides". As it rises with the U-shaped adjustment frame 4, it will exert a slight upward and central force on the goldenrod placed on it, causing the material to automatically adjust its stacking shape, so that the surface of the material that was originally covered can be exposed, further improving the overall drying uniformity.

[0051] III. Material Collection and Recycling: Reducing Waste and Pollution

[0052] During the drying process, some small leaves or debris from the goldenrod may fall through the gap between the first and second support components 2 and 5 due to wind or material movement. At this time, the receiving tray 3, fixed inside the base frame 1, will promptly catch these fallen materials, preventing them from scattering on the ground and causing waste, while also preventing debris from polluting the drying environment. After the drying operation is completed, the user can directly remove the receiving tray 3 to clean and recycle the collected materials, improving the material utilization rate in feed processing.

[0053] In summary, this device, through a collaborative working mechanism of "basic support + flexible adjustment + efficient collection," can provide stable drying support for goldenrod, achieve uniform drying through multi-dimensional adjustment, reduce material waste, and meet the core requirements for goldenrod drying in feed processing.

[0054] Improving drying uniformity: The height adjustment allows the U-shaped adjustment frame 4 to drive the second support member 5 and the first support member 2 to form a wave-shaped support surface, increasing the contact area between goldenrod and air and sunlight, and preventing the materials from squeezing each other; the angle adjustment can be achieved through the rotatable connection between the second support member 5 and the U-shaped adjustment frame 4 (rotation angle ±15°), adjusting the horizontal angle of the second support member 5 according to the thickness and distribution of the material stack, preventing local "over-drying" or "under-drying"; at the same time, the gradual design of the second support member 5, which is "low in the middle and high on both sides", can prompt the materials to automatically adjust their stacking shape, exposing the originally covered surface, ensuring overall drying uniformity from multiple dimensions.

[0055] Adaptable to diverse drying needs: The height can be adjusted according to the thickness of the material and the angle of sunlight. By loosening the fastening bolts 7 and pushing the U-shaped adjustment frame 4 vertically up and down along the base frame 1, the height of the U-shaped adjustment frame 4 can be flexibly adjusted after the base frame 1 is aligned with the adjustment hole 6 of the vertical part of the U-shaped adjustment frame 4. The angle can be adjusted by rotating the second bearing member 5 to adapt to different stacking states of materials (thick area, thin area), so that the device can be flexibly adapted to the actual drying scene and material conditions, improving the flexibility of use.

[0056] Optimize the drying state of materials: The wavy bearing surface (formed by the first bearing component 2, the second bearing component 5, and the U-shaped adjustment frame 4) allows the materials to be in different drying postures. The angle adjustment (achieved through the connection between the second bearing component 5 and the U-shaped adjustment frame 4) prevents drying problems caused by uneven stacking of materials. The gradient bearing surface of the second bearing component 5 helps the materials to automatically adjust their stacking shape. The combined effect of multiple factors reduces drying defects and ensures the drying quality of goldenrod.

[0057] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations should fall within the protection scope of this utility model.

Claims

1. A device for drying goldenrod for feed processing, characterized in that, include: Base frame (1); Multiple first bearing members (2) are spaced apart on the upper surface of the base frame (1); The U-shaped adjustment frame (4) is vertically and flexibly connected to the outside of the base frame (1); Multiple second support members (5) are spaced apart on the lower surface of the U-shaped adjustment frame (4); The second support member (5) and the first support member (2) are arranged alternately in the horizontal direction to form a support structure for supporting goldenrod. The U-shaped adjustment frame (4) is configured to move the second carrier (5) through lifting and lowering movements to create a relative misalignment between it and the first carrier (2) in the vertical direction, thereby changing the drying posture of goldenrod.

2. The goldenrod drying device for feed processing according to claim 1, characterized in that: The height of the bearing surface of the second bearing member (5) gradually increases from the middle to both sides. When the second bearing member (5) rises, it causes the goldenrod to move upward and towards the second bearing member (5) to change its stacking posture.

3. The goldenrod drying device for feed processing according to claim 2, characterized in that: The second bearing member (5) is fixedly connected to the U-shaped adjustment frame (4) in the vertical direction and rotated in the horizontal direction, with the rotation angle being ±15° around the connection point with the U-shaped adjustment frame (4).

4. The goldenrod drying device for feed processing according to claim 3, characterized in that: The first support member (2) and the second support member (5) are rod-shaped or plate-shaped structures.

5. The goldenrod drying device for feed processing according to claim 4, characterized in that, Also includes: The receiving pallet (3) is fixed to the inside of the base frame (1) and located below the first bearing member (2).

6. The goldenrod drying device for feed processing according to claim 5, characterized in that: The U-shaped adjustment frame (4) is connected to the base frame (1) through the adjustment hole (6) and the fastening bolt (7). The adjustment hole (6) is opened on the vertical part of the base frame (1) and the U-shaped adjustment frame (4).