Ganoderma lucidum spore powder preparation device
By using a weight sensor and planetary gear transmission structure in the Ganoderma lucidum spore powder preparation device, the problems of inaccurate measurement and uneven mixing in traditional preparation methods have been solved, achieving accuracy and uniformity in the preparation of Ganoderma lucidum spore powder and improving product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANHUI FANGSHI PHARM CO LTD
- Filing Date
- 2025-05-09
- Publication Date
- 2026-05-05
AI Technical Summary
Traditional methods of preparing Ganoderma lucidum spore powder suffer from inaccurate measurement and poor mixing uniformity, resulting in unstable product quality and difficulty in meeting consumers' diverse functional and taste needs.
A Ganoderma lucidum spore powder preparation device is adopted, which uses a weight sensor and planetary gear transmission structure, combined with motor control, to ensure accurate powder feeding, and achieves uniform mixing of powder through the cooperation of stirring rack and auger.
This achieves precision in the formulation ratio and uniformity of Ganoderma lucidum spore powder, improving the stability and efficacy of product quality and meeting market demand for high-quality products.
Smart Images

Figure CN224194627U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of Ganoderma lucidum spore powder production and preparation technology, specifically relating to a Ganoderma lucidum spore powder preparation device. Background Technology
[0002] With increasing public awareness of health and wellness, market demand for Ganoderma lucidum spore powder is growing rapidly. Ganoderma lucidum spore powder is rich in polysaccharides, triterpenoids, and other components with nutritional and medicinal value. However, the proportions and contents of nutrients and active substances in Ganoderma lucidum spore powder vary significantly depending on the origin, growing environment, and harvesting time, resulting in large fluctuations in the content of effective ingredients. Furthermore, Ganoderma lucidum spore powder alone has limitations in terms of function and taste, making it difficult to meet diverse consumer needs: functionally, it cannot specifically address specific health needs such as boosting immunity or improving sleep; and in terms of taste, its unique odor and flavor are unacceptable to some consumers.
[0003] Traditional methods of preparing Ganoderma lucidum spore powder often have several problems. On the one hand, the measurement is not precise enough, relying heavily on manual operation or simple weighing tools, making it difficult to ensure the accurate proportions of Ganoderma lucidum spore powder and added ingredients in each batch, resulting in unstable product quality. On the other hand, the mixing uniformity is poor, as commonly used stirring equipment cannot achieve thorough and uniform mixing of materials, affecting the efficacy and quality of the product. Utility Model Content
[0004] To address the above problems, the purpose of this utility model is to provide a Ganoderma lucidum spore powder preparation device, which solves the problem that traditional preparation methods cannot guarantee the accuracy of the proportion of Ganoderma lucidum spore powder and added ingredients and the poor uniformity of mixing in each preparation.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: a Ganoderma lucidum spore powder preparation device, comprising a protective shell, the bottom surface of which is connected to the top surface of a mounting ring, and the bottom surface of the mounting ring is connected to the top surface of a stirring cylinder. A stirring frame rotatably disposed inside the stirring cylinder is connected to a rotating stirring assembly disposed inside the mounting ring. The rotating stirring assembly includes a gear ring, which is fixed to the inner wall of the mounting ring. A limiting plate is rotatably disposed on the top surface of the gear ring. The bottom center of the limiting plate is rotatably connected to the top surface of a sun gear. The sun gear meshes with a planetary gear, which meshes with the inner side of the gear ring. The planetary gear rotatably connects to the limiting plate. The bottom surface of the planetary gear has a through-hole with an installation window. The limiting rotating plate has a through hole corresponding to the installation window. The installation window connects to a component box, which is connected to a storage component. The storage component includes a storage cylinder. An auger is rotatably installed inside the bottom of the storage cylinder, and the end of the auger is rotatably connected to the top surface of the storage cylinder. A transmission component at the end of the auger connects to a screw. The screw connects to one side of the top surface of a piston plate that is slidably installed inside the storage cylinder. A moving component on the bottom surface of the component box connects to a sliding plate, and a weight sensor is installed in the installation groove at the center of the top surface of the sliding plate. A weighing plate is installed on the top surface of the weight sensor.
[0006] The beneficial effects of this utility model are:
[0007] This device monitors the weight of the powder on the weighing plate in real time through a weight sensor. Combined with the precise control of the motor by the controller, it can accurately control the amount of each powder, ensuring the accuracy of the Ganoderma lucidum spore powder formulation ratio, effectively improving the stability of product quality, and meeting the market demand for high-quality Ganoderma lucidum spore powder products.
[0008] The system employs a planetary gear transmission structure. When the sun gear rotates, it drives multiple planetary gears to rotate around it inside the gear ring, causing the powder to be evenly distributed into the mixing drum. At the same time, the rotation of the mixing frame further mixes the various powders thoroughly, ensuring the uniformity of the material mixture and improving product efficacy.
[0009] The pushing action of the piston plate ensures that the powder in the storage cylinder is always under pressure, avoiding interruption or instability in feeding caused by powder accumulation, bridging, etc., so that the auger can transport powder evenly and stably.
[0010] In order to pour the powder into the storage cylinder through the main feed pipe:
[0011] As a further improvement to the above technical solution: the piston plate is sleeved on the outside of the auger shaft and slidably connected to it, and a dynamic sealing ring is provided at the connection between the piston plate and the auger shaft. A material injection pipe is provided through the other side of the top surface of the piston plate, and a cap is threadedly connected to the end of the main material pipe. A placement window is opened on one side of the top surface of the storage cylinder opposite to the material injection pipe.
[0012] The beneficial effect of this improvement is that when the piston plate slides to the top of the storage cylinder, it is convenient for the user to pour the powder into the storage cylinder through the main material pipe.
[0013] In order to transfer the powder into the dispensing box:
[0014] As a further improvement to the above technical solution: the transmission assembly includes a drive wheel, the end of the auger is equipped with a drive wheel, and a timing belt is sleeved on the outer side of the drive wheel. One end of the timing belt is sleeved on the outer side of the driven wheel and is connected to it for transmission. The driven wheel is rotatably disposed on the top surface of the storage cylinder and is sleeved on the outer side of the internal threaded ring. The screw passes through and is movably connected to the top surface of the storage cylinder, and is movably disposed on the inner side of the internal threaded ring and is threadedly connected to it. The top surface of the drive wheel is connected to the output shaft of motor one, and motor one is limited and disposed on the top surface of the storage cylinder by a fixing plate.
[0015] The beneficial effects of this improvement are as follows: the drive motor can make the drive wheel rotate, and the rotation of the drive wheel drives the driven wheel to rotate through the synchronous belt. As the driven wheel rotates, the internal threaded ring fixed on the inner side rotates, causing the screw to slide up and down. As the screw slides, the piston plate slides in the storage cylinder, pushing the powder stored in the storage cylinder. The piston plate prevents the powder from sticking to the inner wall of the storage cylinder and causing waste. At the same time as the drive wheel rotates, the auger rotates at the bottom of the storage cylinder, and the rotating auger conveys the powder into the dispensing box.
[0016] To guide the flow of powder:
[0017] As a further improvement to the above technical solution: the bottom outer side of the storage cylinder is provided with an external thread that is adapted to connect with the internal thread provided inside the top of the dispensing box, and a frustum-shaped through hole that is wider at the top and narrower at the bottom is provided through the center of the dispensing box.
[0018] The beneficial effect of this improvement is that the frustum-shaped through hole can guide the flow of powder.
[0019] To allow the powder stored in the portioning container to fall into the mixing bowl:
[0020] As a further improvement to the above technical solution: the moving component includes a lead screw, and the bottom end of the component box is provided with a first slide groove and a second slide groove respectively. The lead screw is rotatably installed in the first slide groove, and a guide rod is fixedly installed in the second slide groove. A threaded movable block 1 is sleeved on the outside of the lead screw, and a movable block 2 is slidably sleeved on the outside of the guide rod. Movable blocks 1 and 2 are fixed on opposite sides of the top surface of the slide plate. The end of the lead screw passes through and rotatably connects to one side of the component box, and the output shaft of a micro motor fixed on one side of the component box is connected to the end of the lead screw.
[0021] The beneficial effects of this improvement are as follows: the powder falling into the weight box is guided by the through hole and falls onto the weighing plate. At this time, the weight sensor supports the falling powder. When the falling powder reaches the specified weight, the controller stops the drive of motor one. After the two weights are weighed, the micro motor is driven to drive the lead screw to rotate. The rotating lead screw causes the movable block one connected to it to slide the slide plate to one side. At this time, the powder stored in the weight box can fall into the mixing drum.
[0022] To ensure a uniform mixing of the two powders:
[0023] As a further improvement to the above technical solution: the output shaft of the second motor fixed at the center of the top surface of the protective shell passes through and is rotatably connected to the top surface of the protective shell. The output shaft of the second motor is fixed with a rotating rod. The bottom end of the rotating rod passes through and is movably connected to the insertion hole opened at the center of the limiting rotating plate. The inner diameter of the insertion hole is not less than the inner diameter of the rotating rod. The insertion rod fixed at the bottom end of the rotating rod is fitted and slidably connected to the slot one opened at the top surface of the sun gear. The bottom center of the sun gear is fixed with a connecting rod. The end of the connecting rod away from the sun gear is provided with a slot two that is adapted to connect with the insertion rod one fixed at the top of the stirring rack.
[0024] The beneficial effects of this improvement are as follows: the rotating rod can be driven by the second drive motor to rotate the sun gear. As the sun gear rotates, the planetary gear meshing with it can rotate around the sun gear as the center on the inside of the gear ring. As the planetary gear rotates, the powder falling from the dispensing box can be evenly sprinkled into the mixing drum. At the same time, the mixing rack rotates to evenly mix the two powders.
[0025] In order to unify the control of this device:
[0026] As a further improvement to the above technical solution: a discharge pipe is installed through the bottom of the mixing drum, and the end of the discharge pipe is connected to a valve installed at the bottom of the mixing drum. A mounting frame is fitted on the outside of the mixing drum, and a controller is fixed on one side of the mounting frame. The controller is equipped with a microcontroller, a relay, and a control switch. The controller is electrically connected to motor two, motor one, a micro motor, and a weight sensor.
[0027] The beneficial effect of this improvement is that it enables unified control of the device.
[0028] To improve the sealing between the mounting ring, protective shell, and mixing drum:
[0029] As a further improvement to the above technical solution: sealing rings are provided at the connection points between the mounting ring and the protective shell and the stirring cylinder.
[0030] The beneficial effect of this improvement is that it increases the sealing performance between the mounting ring, the protective shell, and the mixing cylinder.
[0031] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0032] Figure 1 This is a schematic diagram of the structure of this utility model;
[0033] Figure 2 This is a cross-sectional structural diagram of the present invention;
[0034] Figure 3 This is a schematic diagram of the cross-sectional structure of the rotating rod of this utility model;
[0035] Figure 4 This is a schematic cross-sectional view of the storage component of this utility model;
[0036] Figure 5 This is a schematic diagram of the skateboard structure of this utility model;
[0037] Figure 6 This is a schematic cross-sectional view of the component box structure of this utility model;
[0038] In the diagram: 1. Protective shell; 2. Mounting ring; 3. Mixing drum; 301. Mounting bracket; 4. Motor II; 5. Storage assembly; 501. Storage cylinder; 502. Motor I; 503. Piston plate; 504. Screw; 505. Screw; 506. Internal threaded ring; 6. Dispenser box; 601. Slide plate; 7. Rotating mixing assembly; 701. Gear ring; 702. Sun gear; 7021. Connecting rod; 703. Planetary gear; 704. Limiting rotating plate; 8. Mixing rack; 801. Insert rod I; 9. Rotating rod; 901. Insert rod II; 10. Weighing plate; 11. Micro motor; 12. Lead screw; 13. Weight sensor. Detailed Implementation
[0039] To enable those skilled in the art to better understand the technical solution of this utility model, the present utility model will be described in detail below with reference to the accompanying drawings. The description in this part is only exemplary and explanatory, and should not be used to limit the scope of protection of this utility model in any way.
[0040] like Figure 1-6As shown, a Ganoderma lucidum spore powder preparation device includes a protective shell 1. The bottom surface of the protective shell 1 is connected to the top surface of a mounting ring 2, and the bottom surface of the mounting ring 2 is connected to the top surface of a stirring cylinder 3. A stirring frame 8 rotatably disposed inside the stirring cylinder 3 is connected to a rotating stirring assembly 7 disposed inside the mounting ring 2. The rotating stirring assembly 7 includes a gear ring 701, which is fixed to the inner wall of the mounting ring 2. A limiting plate 704 is rotatably disposed on the top surface of the gear ring 701. The bottom center of the limiting plate 704 is rotatably connected to the top surface of a sun gear 702. The sun gear 702 meshes with a planetary gear 703. The planetary gear 703 meshes with the inner side of the gear ring 701. The planetary gear 703 is rotatably connected to the bottom surface of the limiting plate 704. An installation window is provided through the center, and a through hole is provided on the limiting rotating plate 704 corresponding to the installation window. The installation window is connected to the component box 6, and the component box 6 is connected to the storage component 5. The storage component 5 includes a storage cylinder 501. An auger 504 is rotatably installed inside the bottom end of the storage cylinder 501, and the end of the auger 504 is rotatably connected to the top surface of the storage cylinder 501. A transmission component provided at the end of the auger 504 is connected to a screw 505. The screw 505 is connected to one side of the top surface of a piston plate 503 that is slidably disposed inside the storage cylinder 501. A moving component provided on the bottom surface of the component box 6 is connected to a sliding plate 601, and a weight sensor 13 is provided in the installation groove opened in the center of the top surface of the sliding plate 601. A weighing plate 10 is provided on the top surface of the weight sensor 13.
[0041] The piston plate 503 is sleeved on the outside of the shaft of the auger 504 and slidably connected to it. A dynamic sealing ring is provided at the connection between the piston plate 503 and the shaft of the auger 504. A material injection pipe is provided through the other side of the top surface of the piston plate 503, and a cap is threadedly connected to the end of the main material pipe. A placement window is provided on one side of the top surface of the storage cylinder 501 opposite to the material injection pipe. When the piston plate 503 slides to the top of the storage cylinder 501, it is convenient for the user to pour the powder into the storage cylinder 501 through the main material pipe.
[0042] The transmission assembly includes a drive wheel, which is mounted at the end of the auger 504. A timing belt is fitted around the outside of the drive wheel, with one end of the timing belt fitted around the outside of the driven wheel and connected to it. The driven wheel is rotatably mounted on the top surface of the storage cylinder 501 and is fitted around the outside of the internal threaded ring 506. The screw 505 passes through and is movably connected to the top surface of the storage cylinder 501, and is movably mounted inside the internal threaded ring 506 and threadedly connected to it. The top surface of the drive wheel is connected to the output shaft of the motor 502, and the motor 502 is limited and positioned on the top surface of the storage cylinder 501 by a fixing plate. The drive motor 502 can make the drive wheel rotate. At this time, the rotation of the drive wheel drives the driven wheel to rotate through the synchronous belt. As the driven wheel rotates, the internal threaded ring 506 fixed on the inner side rotates, causing the screw 505 to slide up and down. As the screw 505 slides, the piston plate 503 slides in the storage cylinder 501, pushing the powder stored in the storage cylinder 501. The piston plate 503 prevents the powder from sticking to the inner wall of the storage cylinder 501 and causing waste. At the same time as the drive wheel rotates, the auger 504 rotates at the bottom of the storage cylinder 501. The rotating auger 504 conveys the powder into the dispensing box 6.
[0043] The bottom outer side of the storage cylinder 501 is provided with an external thread that is adapted to connect with the internal thread provided inside the top of the dispensing box 6. A frustum-shaped through hole with a wider top and a narrower bottom is provided through the center of the dispensing box 6; the frustum-shaped through hole can guide the powder.
[0044] The moving component includes a lead screw 12. A first groove and a second groove are respectively provided on both sides of the bottom end of the component box 6. The lead screw 12 is rotatably mounted in the first groove, and a guide rod is fixedly mounted in the second groove. A threaded movable block 1 is sleeved on the outer side of the lead screw 12, and a movable block 2 is slidably sleeved on the outer side of the guide rod. Movable blocks 1 and 2 are fixedly mounted opposite each other on one side of the top surface of the slide plate 601. The end of the lead screw 12 passes through and rotatably connects to one side of the component box 6, and the output shaft of a micro motor 11 fixed on one side of the component box 6 is connected to the lead screw. At the end of 12; the powder falling into the weight box 6 is guided through the through hole and falls onto the weighing plate 10. At this time, the weight sensor 13 supports the falling powder. When the falling powder reaches the specified weight, the controller stops the drive of motor 502. After the two weights are weighed, the micro motor 11 is driven to drive the lead screw 12 to rotate. The rotating lead screw 12 causes the movable block connected to it to slide the slide plate 601 to one side. At this time, the powder stored in the weight box 6 can fall into the mixing drum 3.
[0045] The output shaft of the second motor 4, fixed at the center of the top surface of the protective shell 1, passes through and rotatably connects to the top surface of the protective shell 1. A rotating rod 9 is fixedly mounted on the output shaft of the second motor 4. The bottom end of the rotating rod 9 passes through a movably connected insertion hole at the center of the limiting rotating plate 704, and the inner diameter of the insertion hole is not less than the inner diameter of the rotating rod 9. A second insertion rod 901 fixedly mounted at the bottom end of the rotating rod 9 is fitted and slidably connected to a slot 1 on the top surface of the sun gear 702. A connecting rod 7021 is fixedly mounted at the center of the bottom end of the sun gear 702, and the connecting rod 7021 is away from the sun gear. One end of gear 702 has a slot 2 that is adapted to connect with the plug rod 801 fixed at the top of the mixing rack 8; the rotating rod 9 can drive the sun gear 702 to rotate by the drive motor 4. As the sun gear 702 rotates, the planet gear 703 that meshes with it can rotate around the sun gear 702 as the center on the inside of the gear ring 701. As the planet gear 703 rotates, the powder falling from the dispensing box 6 can be evenly sprinkled into the mixing drum 3. At the same time, the mixing rack 8 rotates to evenly mix the two powders.
[0046] A discharge pipe is installed through the bottom of the mixing drum 3, and the end of the discharge pipe is connected to a valve installed at the bottom of the mixing drum 3. A mounting bracket 301 is fitted on the outside of the mixing drum 3, and a controller is fixed on one side of the mounting bracket 301. The controller is equipped with a microcontroller, a relay, and a control switch. The controller is electrically connected to motor 4, motor 502, micro motor 11, and weight sensor 13.
[0047] The mounting ring 2 is equipped with sealing rings at the connection points with the protective shell 1 and the stirring cylinder 3, thereby increasing the sealing performance between the mounting ring 2, the protective shell 1, and the stirring cylinder 3.
[0048] The working principle and usage process of this utility model are as follows: First, open the mounting cover of the injection pipe on the top surface of the piston plate 503, and pour the Ganoderma lucidum spore powder and other required powders into the storage cylinder 501 through the injection pipe. Then, connect the protective shell 1 to the top surface of the mounting ring 2 through the flange. Start the motor 502. The motor 502 drives the drive wheel to rotate. The drive wheel drives the driven wheel to rotate through the synchronous belt. The driven wheel drives the internal thread ring 506 to rotate, causing the screw 505 to slide up and down, thereby driving the piston plate 503 to slide in the storage cylinder 501. At the same time, the auger 504 rotates at the bottom of the storage cylinder 501, conveying the powder into the dispensing box 6. The powder falling into the dispensing box 6 is guided through the frustum-shaped through hole at its center, which is wider at the top and narrower at the bottom, and falls onto the weighing plate 10. The weight sensor 13 weighs the powder in real time. When the weight reaches the specified amount, the controller controls the motor 502 to stop driving. After all the powder is weighed, start the micro motor 11. The micro motor 11 drives the... When the lead screw 12 rotates, the movable block connected to the lead screw 12 drives the slide plate 601 to slide to one side. Since the bottom surface of the slide plate 601 is provided with a guide slope facing the mixing drum 3, the powder stored in the portion box 6 falls quickly into the mixing drum 3 through the guide slope during the sliding of the slide plate 601. The motor 4 at the center of the top surface of the protective shell 1 is started. The output shaft of the motor 4 drives the rotating rod 9 to rotate. The rotating rod 9 drives the sun gear 702 to rotate through the bottom insertion rod 901. When the sun gear 702 rotates, the multiple planetary gears 703 meshing with it rotate around the sun gear 702 as the center, inside the gear ring 701, so that the powder falling from the portion box 6 is evenly sprinkled in the mixing drum 3. At the same time, the sun gear 702 drives the mixing frame 8 to rotate through the connecting rod 7021, so as to fully and evenly mix the various powders in the mixing drum 3. After the mixing is completed, the valve of the discharge pipe at the bottom of the mixing drum 3 is opened, and the prepared Ganoderma lucidum spore powder product is discharged from the device through the discharge pipe.
[0049] It should be noted that, in this document, the terms “comprising,” “including,” or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0050] This article uses specific examples to illustrate the principles and implementation methods of this utility model. The above examples are only for the purpose of helping to understand the method and core ideas of this utility model. The above description is only a preferred embodiment of this utility model. It should be noted that due to the limitations of textual expression, there are objectively infinite specific structures. For those skilled in the art, several improvements, modifications, or changes can be made without departing from the principles of this utility model, and the above technical features can also be combined in an appropriate manner. These improvements, modifications, changes, or combinations, or the direct application of the concept and technical solution of this utility model to other occasions without modification, should all be considered within the protection scope of this utility model.
Claims
1. A device for preparing Ganoderma lucidum spore powder, characterized in that: The system includes a protective shell (1), the bottom surface of which is connected to the top surface of a mounting ring (2), and the bottom surface of the mounting ring (2) is connected to the top surface of a stirring drum (3). A stirring frame (8) rotatably disposed inside the stirring drum (3) is connected to a rotating stirring assembly (7) disposed inside the mounting ring (2). The rotating stirring assembly (7) includes a gear ring (701), which is fixed to the inner wall of the mounting ring (2). A limiting plate (704) is rotatably disposed on the top surface of the gear ring (701). The bottom center of the limiting plate (704) is rotatably connected to the top surface of a sun gear (702). The sun gear (702) meshes with a planetary gear (703). The planetary gear (703) meshes with the inner side of the gear ring (701). The planetary gear (703) is rotatably connected to the bottom surface of the limiting plate (704), and the center of the planetary gear (703) is through-hole. An installation window is provided, and a through hole is provided on the limiting rotating plate (704) corresponding to the installation window. A component box (6) is connected inside the installation window. The component box (6) is connected to a storage component (5). The storage component (5) includes a storage cylinder (501). An auger (504) is rotatably installed inside the bottom end of the storage cylinder (501), and the end of the auger (504) passes through and rotatably connects to the top surface of the storage cylinder (501). A transmission component provided at the end of the auger (504) is connected to a screw (505). The screw (505) is connected to one side of the top surface of a piston plate (503) that is slidably disposed inside the storage cylinder (501). A moving component provided on the bottom surface of the component box (6) is connected to a sliding plate (601), and a weight sensor (13) is provided in the installation groove opened in the center of the top surface of the sliding plate (601). A weighing plate (10) is provided on the top surface of the weight sensor (13).
2. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The piston plate (503) is sleeved on the outside of the shaft of the auger (504) and slidably connected to it. A dynamic sealing ring is provided at the connection between the piston plate (503) and the shaft of the auger (504). A material injection pipe is provided through the other side of the top surface of the piston plate (503), and a cap is threadedly connected to the end of the main material pipe. A placement window is provided on one side of the top surface of the storage cylinder (501) opposite to the material injection pipe.
3. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The transmission assembly includes a drive wheel, the end of the auger (504) is provided with a drive wheel, and a timing belt is sleeved on the outside of the drive wheel. One end of the timing belt is sleeved on the outside of the driven wheel and is connected to it for transmission. The driven wheel is rotatably disposed on the top surface of the storage cylinder (501) and is sleeved on the outside of the internal threaded ring (506). The screw (505) passes through and is movably connected to the top surface of the storage cylinder (501). The screw (505) is movably disposed on the inside of the internal threaded ring (506) and is threadedly connected to it. The top surface of the drive wheel is connected to the output shaft of the first motor (502), and the first motor (502) is limited and disposed on the top surface of the storage cylinder (501) by a fixing plate.
4. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The bottom outer side of the storage cylinder (501) is provided with an external thread that is adapted to connect with the internal thread provided inside the top of the component box (6), and a frustum-shaped through hole with a wider top and a narrower bottom is provided through the center of the component box (6).
5. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The moving component includes a lead screw (12). The bottom end of the component box (6) is provided with a first slide groove and a second slide groove. The lead screw (12) is rotatably installed in the first slide groove, and a guide rod is fixedly installed in the second slide groove. A threaded movable block is sleeved on the outside of the lead screw (12), and a movable block is slidably sleeved on the outside of the guide rod. The movable block and the movable block are fixed on opposite sides of the top surface of the slide plate (601). The end of the lead screw (12) is rotatably connected to one side of the component box (6), and the output shaft of the micro motor (11) fixed on one side of the component box (6) is connected to the end of the lead screw (12).
6. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The output shaft of the motor 2 (4) fixed at the center of the top surface of the protective shell (1) passes through and is rotatably connected to the top surface of the protective shell (1). The output shaft of the motor 2 (4) is fixed with a rotating rod (9). The bottom end of the rotating rod (9) passes through the insertion hole opened at the center of the movable connection limiting rotating plate (704), and the inner diameter of the insertion hole is not less than the inner diameter of the rotating rod (9). The insertion rod 2 (901) fixed at the bottom end of the rotating rod (9) is fitted and slidably connected to the slot 1 opened at the top surface of the sun gear (702). The bottom center of the sun gear (702) is fixed with a connecting rod (7021), and the end of the connecting rod (7021) away from the sun gear (702) is provided with a slot 2 that is adapted to connect with the insertion rod 1 (801) fixed at the top of the stirring rack (8).
7. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: The bottom end of the mixing drum (3) is provided with a discharge pipe, and the end of the discharge pipe is connected to a valve provided at the bottom end of the mixing drum (3). The outside of the mixing drum (3) is provided with a mounting bracket (301), and a controller is fixed on one side of the mounting bracket (301). The controller is equipped with a microcontroller, a relay, and a control switch. The controller is electrically connected to motor two (4), motor one (502), micro motor (11), and weight sensor (13).
8. The Ganoderma lucidum spore powder preparation device according to claim 1, characterized in that: A sealing ring is provided at the connection between the mounting ring (2) and the protective shell (1) and the stirring cylinder (3).