Integrated drying device for bamboo joint ginseng slices
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-13
- Publication Date
- 2026-08-11
AI Technical Summary
[0003]目前,竹节参的切片与烘干多采用分步操作:先通过人工或切片机将竹节参切成薄片,再将切片后的物料收集并转移至烘干设备中进行干燥;但切片与烘干为独立工序,需人工转运物料,不仅增加了劳动强度,还导致加工周期延长,难以适应规模化生产需求
[0031](1)本申请中,通过将投料组件、分切组件、烘干罐集成,实现“投料-切片-烘干”连续作业,首次实现竹节参加工的全流程自动化,解决了传统工艺中工序分散的核心痛点。
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Figure CN224616495U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of bamboo joint ginseng processing technology, and specifically relates to an integrated device for drying bamboo joint ginseng slices. Background Technology
[0002] As a traditional Chinese medicine with both medicinal and edible value, bamboo joint ginseng requires key processing steps such as slicing and drying to ensure the preservation of active ingredients and the stability of the product during storage.
[0003] Currently, the slicing and drying of bamboo joint ginseng are mostly carried out in separate steps: first, the bamboo joint ginseng is cut into thin slices by hand or by a slicer, and then the sliced material is collected and transferred to drying equipment for drying; however, slicing and drying are independent processes, which require manual transfer of materials, which not only increases the labor intensity, but also leads to a longer processing cycle, making it difficult to meet the needs of large-scale production. Utility Model Content
[0004] This utility model addresses the problems of existing technologies by providing an integrated drying device for sliced ginseng, the specific technical solution of which is as follows:
[0005] The integrated drying device for bamboo joint ginseng slices includes:
[0006] Drying tank;
[0007] A feeding assembly, which is located at the top of the drying tank, is used to feed bamboo joint ginseng into the drying tank.
[0008] A slicing component is disposed adjacent to the feeding component and slices the bamboo joint ginseng;
[0009] A tray assembly, installed inside a drying tank, is used to support the slit ginseng slices;
[0010] The feeding component and the cutting component are both mounted on the adjusting component. The adjusting component can drive the feeding component and the cutting component to slide radially so that the bamboo joint ginseng slices are evenly spread on the tray component.
[0011] As a further technical solution of this utility model, the feeding component includes:
[0012] Feeding pipe, the lower edge of which is located inside the drying tank;
[0013] A guide tube is coaxially positioned below the feeding tube to guide the bamboo-joint ginseng slices as they fall.
[0014] A connector that connects the feed pipe and the guide pipe to indirectly connect the two;
[0015] The gap is formed between the feed tube and the guide tube to accommodate the slices.
[0016] As a further technical solution of this utility model, the slitting component includes:
[0017] An output motor is installed outside the drying tank;
[0018] A drive shaft is coaxially connected to the output end of the output motor and extends into the drying tank.
[0019] The cutter is coaxially connected to the bottom of the drive shaft and is located on the same plane as the gap. When the cutter rotates, it can cut bamboo-like sections through the gap.
[0020] As a further technical solution of this utility model, the tray assembly includes:
[0021] A tray, which is rotatably disposed inside the drying tank;
[0022] A drive motor is installed on the outside of the bottom of the drying tank;
[0023] A connecting shaft is coaxially connected between the output end of the drive motor and the tray. The tray is driven by the drive motor to rotate so as to evenly spread the bamboo joint ginseng slices along its circumference.
[0024] As a further technical solution of this utility model, the adjustment component includes:
[0025] A substrate is slidably disposed on the top of the drying tank, and the feeding assembly and the cutting assembly are both mounted on the substrate.
[0026] A drive cylinder is mounted on the drying tank and parallel to the substrate;
[0027] The connecting plate is connected between the base plate and the driving cylinder. The base plate is driven by the driving cylinder to cause the feeding component and the cutting component to slide radially.
[0028] As a further technical solution of this utility model, both ends of the substrate have downwardly extending baffles.
[0029] As a further technical solution of this utility model, the drying tank is equipped with a rotatable and closable tank door.
[0030] The beneficial effects of this utility model are as follows:
[0031] (1) In this application, by integrating the feeding component, the slitting component and the drying tank, the continuous operation of "feeding-slicing-drying" is realized, and the entire process of bamboo joint processing is automated for the first time, solving the core pain point of the dispersed process in the traditional process.
[0032] (2) By combining the radial sliding of the adjustment component with the rotation of the tray component, a two-dimensional uniform distribution of "radial displacement + circumferential rotation" is formed, ensuring that the distribution density of bamboo joint ginseng slices on the tray is consistent, fundamentally solving the technical problem of "local over-drying or under-drying" during the drying process.
[0033] (3) By using the gap between the feeding tube and the guide tube and the plane of the cutter, the bamboo joint ginseng can naturally enter the slicing area during the falling process. Combined with the high-speed rotation of the cutter, it can achieve precise slicing. At the same time, the guide tube avoids the splashing of materials after slicing, thus improving the synergistic efficiency of slicing and feeding. Attached Figure Description
[0034] Figure 1 A schematic diagram of the overall structure of the integrated drying device for bamboo joint ginseng slices is shown;
[0035] Figure 2 A schematic diagram of the internal structure of the integrated drying device for bamboo joint ginseng slices is shown;
[0036] Figure 3 A schematic diagram of the feeding assembly and the cutting assembly is shown;
[0037] Figure 4 A schematic diagram of the tray assembly is shown;
[0038] Figure 5 A schematic diagram of the adjustment component is shown.
[0039] Legend:
[0040] 100. Drying tank; 110. Tank door; 200. Feeding assembly; 210. Feeding pipe; 220. Guide pipe; 230. Connector; 240. Gap; 300. Slitting assembly; 310. Output motor; 320. Drive shaft; 330. Cutter; 400. Tray assembly; 410. Tray; 420. Drive motor; 430. Connecting shaft; 500. Adjustment assembly; 510. Base plate; 511. Baffle; 520. Drive cylinder; 530. Connecting plate. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.
[0042] Figure 1 A schematic diagram of the overall structure of the integrated drying device for bamboo joint ginseng slices is shown; Figure 2 A schematic diagram of the internal structure of the integrated drying device for bamboo joint ginseng slices is shown; Figure 3 A schematic diagram of the feeding assembly 200 and the cutting assembly 300 is shown. Figure 4 A schematic diagram of the structure of the tray assembly 400 is shown; Figure 5 A schematic diagram of the adjustment component 500 is shown.
[0043] Figure 1 and Figure 2 The integrated drying device for bamboo-joint ginseng slices includes:
[0044] Drying tank 100, with a rotatable and closable door 110 installed on it; when the door 110 is opened, the dried bamboo joint ginseng slices can be taken out from the drying tank 100.
[0045] Feeding component 200 is installed at the top of drying tank 100 to feed bamboo joint ginseng into drying tank 100;
[0046] The slicing component 300 is positioned adjacent to the feeding component 200 and slices the bamboo joint ginseng.
[0047] Tray assembly 400 is installed inside drying tank 100 to support the slit ginseng slices;
[0048] The adjusting component 500, feeding component 200, and cutting component 300 are all installed on the adjusting component 500. The adjusting component 500 can drive the feeding component 200 and the cutting component 300 to slide radially so that the bamboo joint ginseng slices are evenly spread on the tray component 400.
[0049] The operator places the ginseng into the feeding component 200, which then enters the drying tank 100. The adjacent slicing component 300 then slices the ginseng. The sliced ginseng pieces fall into the tray component 400 below. At this point, the adjusting component 500 drives the feeding and slicing components to slide radially, and in conjunction with the rotation of the tray component, the ginseng pieces are evenly spread on the tray. The drying tank dries the evenly spread ginseng pieces. After drying, the tank door 110 is opened to remove the finished product. The integrated design eliminates the intermediate step of "manual slicing and transfer to drying equipment" in traditional processes, reducing material loss and labor costs. The coordinated operation of all components ensures a smooth process and significantly improves processing efficiency.
[0050] Figure 3 In the middle, the feeding component 200 includes:
[0051] Feeding pipe 210, the lower edge of feeding pipe 210 is located inside drying tank 100;
[0052] The guide tube 220 is coaxially arranged below the feeding tube 210 to guide the bamboo-joint ginseng slices to fall;
[0053] Connector 230 is connected between feed pipe 210 and guide pipe 220 to indirectly connect the two;
[0054] A gap 240 is formed between the feed tube 210 and the guide tube 220 to accommodate the slices.
[0055] The bamboo-joint ginseng is fed into the feeding pipe 210. Since the lower edge of the feeding pipe is located inside the drying tank 100, the material can directly enter the equipment. The guide pipe 220 below the feeding pipe is coaxially set with the feeding pipe and indirectly connected by the connector 230. The gap 240 formed between the two provides slicing space for the cutter 330 of the slicing component. That is, when the bamboo-joint ginseng falls into the gap, it is cut by the rotating cutter and then falls accurately into the tray below through the guide pipe. The design of the gap 240 ensures that the cutter is under stable force when slicing, reducing the breakage of the bamboo-joint ginseng slices. The guide pipe 220 avoids material splashing after slicing, ensures that the falling path is controllable, and improves the uniformity of subsequent material spreading.
[0056] See also Figure 3 The slitting component 300 includes:
[0057] The output motor 310 is installed outside the drying tank 100;
[0058] Drive shaft 320 is coaxially connected to the output end of output motor 310 and extends into drying tank 100;
[0059] The cutter 330 is coaxially connected to the bottom of the drive shaft 320 and is located on the same plane as the gap 240. When the cutter 330 rotates, it can cut bamboo joints through the gap 240.
[0060] An output motor 310, located outside the drying tank 100, provides power. The drive shaft 320 connected to its output end extends into the drying tank, driving the bottom cutter 330 to rotate at high speed. Since the gap 240 between the cutter and the feeding component is on the same plane, when the ginseng falls through the feeding pipe 210 into the gap, the rotating cutter can quickly cut the material, forming uniform ginseng slices. The stable output of the output motor 310 ensures that the cutter rotates at a consistent speed, resulting in uniform slice thickness. The planar fit between the cutter 330 and the gap 240 avoids "material jamming" or "missed cuts" during slicing, improving the slicing success rate.
[0061] Figure 4 In the middle, the tray assembly 400 includes:
[0062] Tray 410 is rotatably disposed inside drying tank 100;
[0063] Drive motor 420 is installed on the outside of the bottom of drying tank 100;
[0064] The connecting shaft 430 is coaxially connected between the output end of the drive motor 420 and the tray 410. The tray 410 is driven by the drive motor 420 to rotate so as to evenly spread the bamboo joint ginseng slices along its circumference.
[0065] After being cut, the bamboo-joint ginseng slices fall onto the tray 410 through the guide tube 220. At this time, the drive motor 420 on the outside of the bottom of the drying tank drives the tray to rotate through the connecting shaft 430. The rotation of the tray 410 causes the bamboo-joint ginseng slices to be initially evenly spread along the circumference of the tray, reducing material accumulation and avoiding local over-thickness that leads to incomplete drying.
[0066] Figure 5 In the middle, the adjustment component 500 includes:
[0067] The substrate 510 is slidably disposed on the top of the drying tank 100. The feeding component 200 and the cutting component 300 are both mounted on the substrate 510. Both ends of the substrate 510 have downwardly extending baffles 511.
[0068] A drive cylinder 520 is mounted on the drying tank 100 and is parallel to the base plate 510.
[0069] The connecting plate 530 is connected between the base plate 510 and the driving cylinder 520. The base plate 510 is driven by the driving cylinder 520, which can cause the feeding component 200 and the cutting component 300 to slide radially.
[0070] The drive cylinder 520, installed on top of the drying tank 100, drives the substrate 510 to slide via the connecting plate 530. The feeding component 200 and the cutting component 300 are both fixed on the substrate, so they slide radially synchronously with the substrate. This sliding and the rotation of the tray 410 form a "cross" motion, which makes the landing point of the bamboo joint ginseng slices on the tray constantly change, ultimately achieving full and uniform spreading. The baffles 511 at both ends of the substrate can prevent the components from shifting during sliding and ensure the stability of the movement. The synergistic effect of radial sliding and rotation solves the problem of "edge accumulation" that may occur when spreading material in one direction. The stable thrust of the drive cylinder 520 ensures uniform sliding speed, avoids material splashing due to impact, further improves the spreading effect, and ultimately ensures consistent quality of the dried bamboo joint ginseng slices.
[0071] The above embodiments are only used to illustrate the technical solution of this utility model, and are not intended to limit it.
Claims
1. An integrated drying device for sliced ginseng, characterized in that, include: Drying tank (100); Feeding assembly (200), which is disposed at the top of drying tank (100) for feeding bamboo joint ginseng into drying tank (100); A slicing component (300) is disposed adjacent to the feeding component (200) and slices the bamboo joint ginseng; A tray assembly (400) is installed inside a drying tank (100) to support the slit ginseng slices. The feeding component (200) and the cutting component (300) are both mounted on the adjusting component (500). The adjusting component (500) can drive the feeding component (200) and the cutting component (300) to slide radially so that the bamboo joint ginseng slices are evenly spread on the tray component (400).
2. The integrated drying device for bamboo joint ginseng slices according to claim 1, characterized in that, The feeding assembly (200) includes: Feeding pipe (210), the lower edge of which is located inside the drying tank (100); A guide tube (220) is coaxially arranged below the feeding tube (210) to guide the bamboo joint ginseng slices to fall; A connector (230) is connected between the feeding pipe (210) and the guide pipe (220) to indirectly connect the two; A gap (240) is formed between the feed tube (210) and the guide tube (220) to accommodate the slices.
3. The integrated drying device for bamboo joint ginseng slices according to claim 1, characterized in that, The slitting component (300) includes: An output motor (310) is disposed outside the drying tank (100); A drive shaft (320) is coaxially connected to the output end of an output motor (310) and extends into the drying tank (100); The cutter (330) is coaxially connected to the bottom of the drive shaft (320) and is located on the same plane as the gap (240). When the cutter (330) rotates, it can cut bamboo joints through the gap (240).
4. The integrated drying device for bamboo joint ginseng slices according to claim 1, characterized in that, The tray assembly (400) includes: A tray (410) is rotatably disposed inside a drying tank (100); A drive motor (420) is mounted on the outside of the bottom of the drying tank (100); A connecting shaft (430) is coaxially connected between the output end of the drive motor (420) and the tray (410), which is driven by the drive motor (420) to rotate so as to evenly spread the bamboo joint ginseng slices along its circumference.
5. The integrated drying device for bamboo joint ginseng slices according to claim 1, characterized in that: The adjustment component (500) includes: A substrate (510) is slidably disposed on the top of the drying tank (100), and the feeding assembly (200) and the cutting assembly (300) are both mounted on the substrate (510). A drive cylinder (520) is mounted on the drying tank (100) and parallel to the substrate (510); The connecting plate (530) is connected between the base plate (510) and the driving cylinder (520). The base plate (510) is driven by the driving cylinder (520) to cause the feeding assembly (200) and the cutting assembly (300) to slide radially.
6. The integrated drying device for bamboo joint ginseng slices according to claim 5, characterized in that: The substrate (510) has downwardly extending baffles (511) at both ends.
7. The integrated drying device for bamboo joint ginseng slices according to any one of claims 1-6, characterized in that: The drying tank (100) is equipped with a rotatable and closable tank door (110).