A quick grinding device for processing cordyceps
Patent Information
- Application Number
- CN202511004486.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-21
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2045-07-21
AI Technical Summary
但是现有的冬虫夏草快速研磨设备在清洁时,一般是将清洁水倒入研磨腔内,在盖上盖后通过摇晃将残留的粉末清洗掉,这种方式一般需要多次清洗,不仅麻烦,而且清洗效果不佳
本申请通过在研磨腔底部开设切换孔,并设置封堵块和喷淋管,利用切换组件在第一状态时将封堵块封堵在切换孔内保证对冬虫夏草粉碎工作的正常进行;在需要清洗研磨腔和刀具时,利用切换组件将喷淋管和封堵块进行切换,使得喷淋管深入研磨腔内,并利用第一水泵将清洁水泵入到喷淋管内,经过喷淋管将清洁水喷射到研磨腔和刀具上,从而对研磨腔和刀具进行清洗,整体上不仅清洗效果好,而且提高了对研磨腔和刀具的清洁便捷性、省力性。
Smart Images

Figure CN120618620B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of Cordyceps sinensis processing, and more particularly to a rapid grinding device for Cordyceps sinensis processing. Background Technology
[0002] The usual way to consume Cordyceps sinensis is to grind the dried Cordyceps sinensis into powder, which requires grinding equipment. The traditional method of grinding Cordyceps sinensis involves using a mortar and pestle to crush it, but this method is relatively slow. Currently, there are high-speed grinding devices for processing Cordyceps sinensis on the market. These devices use a high-speed rotating motor to drive the crushing blades, which can quickly crush Cordyceps sinensis.
[0003] For rapid grinding equipment used for Cordyceps sinensis, daily cleaning is crucial. This is not only about hygiene (preventing residual powder from becoming moldy or cross-contaminating), but also about the potential impact on the purity and efficacy of subsequent grinding (e.g., residual other medicinal materials or impurities). However, existing rapid grinding equipment for Cordyceps sinensis typically involves pouring cleaning water into the grinding chamber, closing the lid, and shaking to remove residual powder. This method usually requires multiple cleanings, which is not only cumbersome but also ineffective. Summary of the Invention
[0004] In order to solve at least one of the technical problems mentioned in the background art, the purpose of this application is to provide a rapid grinding device for processing Cordyceps sinensis, which can conveniently clean the cutting tools and grinding chamber, not only with good cleaning effect, but also improve the cleaning labor-saving and convenience of the device.
[0005] To achieve the above objectives, this application provides the following technical solution: A rapid grinding device for processing Cordyceps sinensis includes: Mounting base; The housing is fixed to the mounting base, and the housing has a grinding chamber along a first direction. The bottom of the grinding chamber has a switching hole, and the top of the grinding chamber has a chamber cover. A cutting tool, which is rotatably connected to the grinding chamber in a first direction; A first driving element, which is used to drive the cutting tool to rotate; A blocking block is disposed at the switching hole to block the switching hole; A connecting rod, which is fixed to the bottom of the sealing block; A spray pipe, which is fixed to the peripheral side of the connecting rod; A switching component is used to adjust the spray pipe from a first state to a second state. In the first state, the spray pipe is located below the housing and the blocking block blocks the switching hole. In the second state, the blocking block is separated from the switching hole and the spray pipe is located inside the grinding chamber. A first water pump is used to pump cleaning water into the spray pipe.
[0006] In one possible implementation, the first driving member includes: First motor; The first pulley, there are two first pulleys, and the two first pulleys are respectively fixed to the rotating shaft end of the cutter at the first motor shaft end; A first belt is installed between the two first pulleys.
[0007] In one possible implementation, the switching component includes: A first angle adjustment component is used to adjust the orientation of the spray pipe so that the spray pipe corresponds to the switching hole; A first lifting component is connected to a first adjusting component to control the movement of the first angle adjusting component, the spray pipe, and the sealing block along a first direction.
[0008] In one possible implementation, the first adjusting member includes: A connecting plate is disposed below the grinding chamber and is connected to the first lifting component; A first rotating shaft and a second rotating shaft are rotatably connected to the connecting plate, and the axes of the first rotating shaft and the second rotating shaft are perpendicular to each other. The first rotating shaft is arranged along a first direction. The first bevel gear is coaxially fixed to the first rotating shaft; The second bevel gear is coaxially fixed to the second rotating shaft, and the second bevel gear meshes with the first bevel gear. A second motor is connected to the first rotating shaft via a transmission connection. The second rotating shaft is fixedly connected to the spray pipe.
[0009] In one embodiment, there are a plurality of spray pipes, which are arranged in a circumferential array about the axis of the grinding chamber.
[0010] In one embodiment, the spray pipe includes: The first tube has a first cavity, and a limit ring is provided at one end of the first tube in the first cavity. The outer diameter of the first tube is smaller than the diameter of the switching hole. The second tube is slidably connected to the first cavity. One end of the second tube located in the first cavity has a sealing ring. The outer diameter of the sealing ring is larger than the inner diameter of the limiting ring. The second tube has a second cavity that communicates with the first cavity. A plurality of spray holes are provided on the end of the second tube away from the sealing ring and on the peripheral side of the second tube. Along the axial direction of the spray pipe, starting from the spray hole on the side away from the sealing ring, the angle between the axis of the spray hole and the axis of the spray pipe gradually increases.
[0011] In one embodiment, the angle between the axis of the spray pipe and the axis of the connecting rod is greater than 45 degrees and not greater than 90 degrees.
[0012] In one embodiment, the rapid grinding device for processing Cordyceps sinensis further includes: The third tube is coaxially disposed outside the first tube. The inner diameter of the third tube is equal to the diameter of the switching hole, and the inner diameter of the third tube is greater than the outer diameter of the first tube. In the second state, the third tube abuts against the bottom of the switching hole. Wastewater box, which is detachably installed inside the housing, is located below the grinding chamber when installed inside the housing.
[0013] In one embodiment, the rapid grinding device for processing Cordyceps sinensis further includes: A heating element is installed between a first water pump and a spray pipe to heat the cleaning water supplied by the first water pump to the spray pipe.
[0014] In one possible implementation, The bottom of the mounting base is fixedly connected with multiple locking pins; The rapid grinding device for processing Cordyceps sinensis also includes: A base, wherein the mounting seat is rotatably connected to the base; A locking plate is slidably connected to the top of the base along a first direction. The locking plate has multiple locking holes, and each locking hole corresponds to a locking post. The second lifting component is installed on the top of the base and is connected to the locking plate to control the locking plate to slide in the first direction.
[0015] Compared with the prior art, this application has the following advantages: This application utilizes a switching hole at the bottom of the grinding chamber, along with a sealing block and a spray pipe. In the first state, the switching assembly seals the sealing block within the switching hole, ensuring the normal operation of the Cordyceps sinensis pulverization process. When cleaning the grinding chamber and cutting tools is required, the switching assembly switches the spray pipe and sealing block, allowing the spray pipe to penetrate deeper into the grinding chamber. A first water pump then pumps cleaning water into the spray pipe, which sprays the cleaning water onto the grinding chamber and cutting tools, thus cleaning them. Overall, this not only provides excellent cleaning results but also improves the convenience and labor-saving aspect of cleaning the grinding chamber and cutting tools.
[0016] It should be understood that the description in this section is not intended to identify key or essential features of the embodiments of this application, nor is it intended to limit the scope of this application. Other features of this application will become readily apparent from the following description. Attached Figure Description
[0017] The above and other objects, features, and advantages of exemplary embodiments of this application will become readily apparent from the following detailed description taken in conjunction with the accompanying drawings. Several embodiments of this application are illustrated in the drawings by way of example and not limitation, in which: In the accompanying drawings, the same or corresponding reference numerals indicate the same or corresponding parts.
[0018] Figure 1 A schematic diagram of the overall structure of an embodiment of this application is shown; Figure 2 This paper shows a schematic cross-sectional view of the overall structure in a first state according to an embodiment of this application. Figure 3 This illustration shows a partial structure of an embodiment of the present application without the third pipe installed and in the first state; Figure 4 A schematic diagram of the switching component in an embodiment of this application is shown; Figure 5 A cross-sectional view of the specific structure of the spray pipe according to an embodiment of this application is shown; Figure 6 This diagram shows a partial structure of an embodiment of the present application after the third tube has been installed and is in the second state; Figure 7 It shows Figure 6 Enlarged schematic diagram of the structure at point A in the middle; Figure 8 This illustration shows the overall structure of the embodiment of the present application after the base is installed. Figure 1 ; Figure 9 This illustration shows the overall structure of the embodiment of the present application after the base is installed. Figure 2 .
[0019] Explanation of the labels in the diagram: 100. Mounting base; 200. Housing; 210. Grinding chamber; 211. Switching hole; 212. Chamber cover; 300. Knives; 400. First driving component; 410. First motor; 420. First pulley; 430. First belt; 500, sealing block; 600. Connecting rod; 700. Spray pipe; 710. First pipe body; 711. First cavity; 712. Limiting ring; 720. Second pipe body; 721. Second cavity; 722. Sealing ring; 723. Spray hole; 800. Switching component; 810. First angle adjusting component; 811. Connecting plate; 812. First rotating shaft; 813. Second rotating shaft; 814. First bevel gear; 815. Second bevel gear; 816. Second motor; 820. First lifting component; 900. First water pump; 1000. The third tube body; 2000, wastewater box; 3000, Heating element; 4000, Locking Post; 5000, base; 6000, locking plate; 6100, locking hole; 7000, Second lifting component. Detailed Implementation
[0020] To make the objectives, features, and advantages of this application more apparent and understandable, the technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0021] First, to facilitate understanding of the design intent of this application, a further description of existing rapid grinding devices for processing Cordyceps sinensis is provided: Existing rapid grinding devices for Cordyceps sinensis generally place the Cordyceps sinensis in a grinding chamber and use high-speed rotating blades to quickly pulverize it into powder. However, after each processing cycle, the blades and grinding chamber need to be cleaned to ensure their cleanliness and prevent residual Cordyceps sinensis powder from mixing with the new powder and affecting the quality of the next batch. However, existing Cordyceps sinensis grinding devices typically clean by adding water to the grinding chamber, then closing the lid and shaking it. When the water is poured out, residue in the water may re-adhere to the blades and the chamber walls, requiring multiple cleaning cycles to achieve a thorough cleaning. Furthermore, due to the device's weight, shaking is relatively strenuous, making overall cleaning of the grinding chamber and blades inconvenient.
[0022] Therefore, please refer to Figure 1 - Figure 7This application provides a rapid grinding device for processing Cordyceps sinensis, including a mounting base 100, on which a housing 200 is fixed. A grinding chamber 210 is formed in the housing 200 along a first direction (vertical direction, i.e., the up-down direction of the device). A switching hole 211 is formed at the bottom of the grinding chamber 210, and a chamber cover 212 is provided at the top of the grinding chamber 210 to seal the top of the grinding chamber 210 and prevent powder from flying during Cordyceps sinensis grinding. A blade 300 is rotatably connected inside the grinding chamber 210 along the first direction, and the rotation of the blade 300 is driven by a first driving member 400. Furthermore, the rapid grinding device for processing Cordyceps sinensis of this application also includes a sealing block 500, which is disposed at the switching hole 211 to seal the switching hole 211, ensuring that no powder is lost from the switching hole 211 during the Cordyceps sinensis grinding process. A connecting rod 600 is fixedly connected to the bottom of the sealing block 500, and a spray pipe 700 is fixedly connected to the circumferential side of the connecting rod 600. Furthermore, the rapid grinding device for processing Cordyceps sinensis of this application also includes a switching component 800, which adjusts the spray pipe 700 from a first state to a second state. In the first state, the spray pipe 700 is located below the housing 200, and the sealing block 500 seals the switching hole 211 to ensure that Cordyceps sinensis powder is not lost during the pulverization process. In the second state, the sealing block 500 is separated from the switching hole 211, and the spray pipe 700 is located inside the grinding chamber 210. Further, the grinding device for processing Cordyceps sinensis of this application also includes a first water pump 900, which supplies cleaning water to the spray pipe 700, and the cleaning water is then used to rinse the side walls, bottom walls, top cover, and blades 300 of the grinding chamber 210 for cleaning.
[0023] Here, a small high-pressure water pump is preferably used for the first water pump 900 to ensure the flushing force; furthermore, in order to facilitate water supply, a flexible pipe can be installed at the water inlet of the first water pump 900 to facilitate connection to a clean water source.
[0024] Reference Figure 2 or Figure 3 or Figure 6 The first driving component 400 of this application includes a first motor 410, which is specifically installed on one side of the grinding chamber 210. The axis of the output shaft of the first motor 410 is parallel to the rotation axis of the tool 300. A first pulley 420 is installed at the output shaft end of the first motor 410 and the rotation shaft end of the tool 300. A first belt 430 is installed between the two second pulleys. The transmission between the first motor 410 and the tool 300 is carried out through the first pulley 420 and the first belt 430.
[0025] Reference Figure 2As a specific embodiment of this application, the switching component 800 includes a first angle adjusting member 810 and a first lifting member 820. The first angle adjusting member 810 is used to adjust the orientation of the spray pipe 700 so that the spray pipe 700 corresponds to the switching hole 211. The first lifting member 820 is connected to the first adjusting member to control the first angle adjusting member 810, the spray pipe 700 and the blocking block 500 to move as a whole along a first direction.
[0026] In one embodiment, the first lifting member 820 may be a hydraulic cylinder or a lead screw slide assembly.
[0027] Reference Figure 2 , Figure 3 and Figure 4 The first adjusting member 810 of this application includes a connecting plate 811 disposed below the grinding chamber 210, which is connected to the first lifting member 820. A first rotating shaft 812 and a second rotating shaft 813 are rotatably connected to the connecting plate 811, and the axes of the first rotating shaft 812 and the second rotating shaft 813 are perpendicular to each other. The axis of the first rotating shaft 812 is along a first direction. The second rotating shaft 813 is fixedly connected to the spray pipe 700. A first bevel gear 814 is coaxially fixedly connected to the outer periphery of the first rotating shaft 812, and a second bevel gear 815 is coaxially fixedly connected to the outer periphery of the second rotating shaft 813. The first bevel gear 814 and the second bevel gear 815 are meshed together. The first adjusting member also includes a second motor 816, which is used to drive the first rotating shaft 812 to rotate.
[0028] In one embodiment, the second motor 816 is driven by a synchronous belt and a synchronous pulley to drive the first rotating shaft 812. Furthermore, an angle sensor is provided at the end of the second rotating shaft 813. Thus, the synchronous belt and pulley ensure the accuracy of the transmission between the second motor 816 and the first rotating shaft 812. The angle sensor collects the rotation angle of the second rotating shaft 813, thereby determining the orientation of the spray pipe 700 and the sealing block 500. This ensures more accurate adjustment of the spray pipe 700's orientation and improves the focusing accuracy between the spray pipe 700 and the switching hole 211, as well as between the sealing block 500 and the switching hole 211.
[0029] The following describes a specific application scenario: When pulverizing Cordyceps sinensis, the switching hole 211 is sealed with the sealing block 500. Then, the chamber cover 212 is opened, and the Cordyceps sinensis is placed into the grinding chamber 210. The first motor 410 is then started, driving the blade 300 to rotate at high speed to pulverize the Cordyceps sinensis. After pulverizing, the Cordyceps sinensis powder is poured out. Then, the first water pump 900 is connected to the clean water source. The first lifting component 820 drives the connecting column, the sealing block 500, the spray pipe 700, and the first adjusting component 810 to move downward as a whole, so that the sealing block 500 is separated from the switching hole 211. Then, the second motor 816 drives the first bevel gear 814 to rotate. The meshing of the first bevel gear 814 and the second bevel gear 815 drives the second rotating shaft 813 to rotate, thereby driving the spray pipe 700 and the sealing block 500 to deflect until the spray pipe 700 is coaxially aligned with the switching hole 211. Then, the first lifting component 820 drives the connecting column, the sealing block 500, the spray pipe 700, and the first adjusting component 810 to move upward as a whole, so that the spray pipe 700 extends into the grinding chamber 210. Next, the first water pump 900 is started, and the first water pump 900 pumps the cleaning water into the spray pipe 700. The cleaning water is then sprayed through the spray pipe 700 onto the inner wall, bottom wall, cavity cover 212, and cutting tool 300 of the grinding chamber 210. The sprayed cleaning water washes away the residual powder and flows out from the switching hole 211 in a timely manner, thereby achieving the cleaning work of the grinding chamber 210 and the cutting tool 300, and the cleaning effect is good.
[0030] This application provides a switching hole 211 at the bottom of the grinding chamber 210, along with a sealing block 500 and a spray pipe 700. In the first state, the switching assembly 800 seals the sealing block 500 within the switching hole 211, ensuring the normal operation of the Cordyceps sinensis pulverization process. When cleaning the grinding chamber 210 and the cutting tool 300 is required, the switching assembly 800 switches the spray pipe 700 and the sealing block 500, allowing the spray pipe 700 to penetrate deep into the grinding chamber 210. A first water pump 900 pumps cleaning water into the spray pipe 700, which then sprays the cleaning water onto the grinding chamber 210 and the cutting tool 300, thus cleaning them. Overall, this method not only provides a better cleaning effect but also improves the convenience and labor-saving aspect of cleaning the grinding chamber 210 and the cutting tool 300.
[0031] Reference Figure 2 , Figure 3 , Figure 4 and Figure 6The present application has a plurality of spray pipes 700, which are arranged in a circumferential array about the axis of the grinding chamber 210. In this way, by having multiple spray pipes 700 arranged in a circumferential array simultaneously rinse the grinding chamber 210, the rinsing efficiency and the integrity of cleaning the grinding chamber 210 and the tool 300 can be improved, ensuring a more thorough cleaning.
[0032] Reference Figure 4 and Figure 5 As a specific embodiment of this application, the spray pipe 700 includes a first pipe body 710 and a second pipe body 720. A first cavity 711 is formed inside the first pipe body 710, and a limit ring 712 is provided at one end of the first pipe body 710 located in the first cavity 711. The outer diameter of the first pipe body 710 is smaller than the diameter of the switching hole 211. The second pipe body 720 is slidably connected inside the first cavity 711. The second pipe body 720 has a second cavity 721, and the second cavity 721... 21 is connected to the first cavity 711, and the end of the second tube 720 located in the first cavity 711 has a sealing ring 722. The outer diameter of the sealing ring 722 is larger than the inner diameter of the limiting ring 712. A plurality of spray holes 723 are provided at the end of the second tube 720 away from the sealing ring 722 and on the peripheral side of the second tube 720. Along the axial direction of the spray pipe 700, starting from the spray hole 723 on the side away from the sealing ring 722, the angle between the axis of the spray hole 723 and the axis of the spray pipe 700 gradually increases.
[0033] Furthermore, the angle between the axis of the spray pipe 700 and the axis of the connecting rod 600 is greater than 45 degrees and not greater than 90 degrees.
[0034] The following is a further explanation based on a specific application scenario. First, the spray pipe 700 is designed with the first pipe body 710 and the second pipe body 720 connected together to allow for a greater extension of the spray pipe 700 into the grinding chamber 210, thereby ensuring a more thorough cleaning. Specifically, during cleaning, the spray pipe 700 is in a vertical position, and the second pipe body 720 falls into the first pipe body 710 under gravity. When the first water pump 900 pumps cleaning water into the bottom of the first pipe body 710, the force of the water pushes the second pipe body 720 upward, causing it to extend beyond the first pipe body 710. The second water pump then pumps high-pressure water into the second pipe body 720, which is then sprayed into the grinding chamber 210 through the spray holes 723. Because the angle between the axis of the spray hole 723 and the axis of the spray pipe 700 gradually increases from the spray hole 723 on the side away from the sealing ring 722 along the axial direction of the spray pipe 700, the cleaning water is sprayed in a diffuse manner onto the inner wall, bottom wall and cutter 300 of the grinding chamber 210, which can improve the cleaning effect. The limiting ring 712 and the sealing ring 722 are set to prevent the second pipe body 720 from separating from the first pipe body 710.
[0035] In addition, this application sets the angle between the axis of the spray pipe 700 and the axis of the connecting rod 600 to be greater than 45 degrees and not greater than 90 degrees. This is because if the angle is greater than 90 degrees, the second pipe body 720 will extend out of the first pipe body 710 under the action of gravity. In this way, in the first state, the overall length of the spray pipe 700 will be too long, which makes it inconvenient to adjust the angle of the spray pipe 700 later.
[0036] Reference Figure 2 , Figure 3 , 6 , Figure 7 and Figure 8 As a specific embodiment, the rapid grinding device for processing Cordyceps sinensis of this application further includes a third tube 1000 and a wastewater box 2000. The third tube 1000 is coaxially disposed outside the first tube 710, and the inner diameter of the third tube 1000 is equal to the diameter of the switching hole 211. At the same time, the inner diameter of the third tube 1000 is larger than the outer diameter of the first tube 710. In the second state, the third tube 1000 abuts against the bottom of the switching hole 211. The wastewater box 2000 is detachably installed inside the housing 200. When the wastewater box 2000 is installed inside the housing 200, the wastewater box 2000 is located below the grinding chamber 210.
[0037] Furthermore, to ensure that the wastewater flows more smoothly and in a more concentrated manner into the wastewater box 2000, the connecting plate 811 can be designed to be hollow, so that the wastewater can flow into the wastewater box 2000 after passing through the third pipe 1000.
[0038] Depending on the specific application scenario, when cleaning the grinding chamber 210, the third tube 1000 is abutted against the bottom of the switching hole 211. At this time, the third tube 1000 is in a vertical position. The cleaning wastewater flows from the switching hole 211 through the third tube 1000 to the wastewater box 2000. This ensures that the cleaning wastewater can be collected in the wastewater box 2000. After grinding is completed, the wastewater can be poured out by removing the wastewater box 2000, which is very convenient.
[0039] Reference Figure 2 or Figure 3 As a specific embodiment of this application, the rapid grinding device for processing Cordyceps sinensis further includes a heating element 3000, which is installed between the first water pump 900 and the spray pipe 700 to heat the cleaning water supplied by the first water pump 900 to the spray pipe 700.
[0040] Depending on the specific application scenario, by setting up a heating element 3000, the cleaning water can be heated before entering the spray pipe 700 to increase the temperature of the cleaning water. The high-temperature cleaning water can disinfect the grinding chamber 210 and the cutting tool 300, thereby improving the cleaning effect of the grinding chamber 210 and the cutting tool 300.
[0041] Reference Figure 8 and Figure 9 In one specific embodiment of this application, a plurality of locking pins 4000 are fixedly connected to the bottom of the mounting base 100; the rapid grinding device for processing Cordyceps sinensis also includes a base 5000, the mounting base 100 is rotatably connected to the base 5000, and a locking plate 6000 is slidably connected to the top of the base 5000 in a first direction, and a plurality of locking holes 6100 are provided on the locking plate 6000, each locking hole 6100 corresponding to a locking pin 4000. A second lifting member 7000 is installed on the top of the base 5000, and the second lifting member 7000 is connected to the locking plate 6000 to control the locking plate 6000 to slide in the first direction.
[0042] In one embodiment, the second lifting member 7000 may also be a hydraulic cylinder or a lead screw slide assembly.
[0043] Depending on the specific application scenario, when grinding Cordyceps sinensis, the angle between the mounting base 100 and the base 5000 is adjusted so that the locking pin 4000 is in a vertical position. Then, the locking plate 6000 is raised by the second lifting component 7000, allowing the locking pin 4000 to insert into the locking hole 6100 on the locking plate 6000, thus fixing the mounting base 100. After grinding, the locking plate 6000 is lowered by the second lifting component 7000, causing the locking pin 4000 to separate from the locking hole 6100, thereby releasing the lock on the mounting base 100. Then, the cavity cover 212 can be opened, and the mounting base 100 can be rotated to gradually tilt the grinding cavity 210 so that the opening of the grinding cavity 210 gradually faces downward, making it easier to pour the Cordyceps sinensis powder out of the grinding cavity 210.
[0044] It should be understood that the various forms of processes shown above can be used to rearrange, add, or delete steps. For example, the steps described in this application can be executed in parallel, sequentially, or in different orders, as long as the desired result of the technical solution of this application can be achieved, and this is not limited herein.
[0045] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.
[0046] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A rapid grinding device for processing Cordyceps sinensis, characterized in that, include: Mounting base (100); The housing (200) is fixed to the mounting base (100). The housing (200) has a grinding chamber (210) along a first direction. The bottom of the grinding chamber (210) has a switching hole (211). The top of the grinding chamber (210) is provided with a chamber cover (212). A cutting tool (300) is rotatably connected to the grinding chamber (210) in a first direction; A first driving member (400) is used to drive the cutting tool (300) to rotate; A blocking block (500) is disposed at the switching hole (211) to block the switching hole (211); A connecting rod (600) is fixed to the bottom of the sealing block (500); Spray pipe (700), the spray pipe (700) is fixed to the peripheral side of the connecting rod (600); A switching assembly (800) is used to adjust the spray pipe (700) from a first state to a second state. In the first state, the spray pipe (700) is located below the housing (200), and the blocking block (500) blocks the switching hole (211). In the second state, the blocking block (500) is separated from the switching hole (211), and the spray pipe (700) is located inside the grinding chamber (210). A first water pump (900) is used to pump cleaning water into the spray pipe (700). The switching component (800) includes: The first angle adjustment component (810) is used to adjust the orientation of the spray pipe (700) so that the spray pipe (700) corresponds to the switching hole (211); The first lifting component (820) is connected to the first adjusting component (810) to control the first adjusting component (810), the spray pipe (700) and the sealing block (500) to move along the first direction; The first adjusting member (810) includes: A connecting plate (811) is disposed below the grinding chamber (210) and is connected to the first lifting member (820). A first rotating shaft (812) and a second rotating shaft (813) are rotatably connected to the connecting plate (811), and the axes of the first rotating shaft (812) and the second rotating shaft (813) are perpendicular to each other. The first rotating shaft (812) is arranged along a first direction. The first bevel gear (814) is coaxially fixed to the first rotating shaft (812). The second bevel gear (815) is coaxially fixed to the second rotating shaft (813), and the second bevel gear (815) meshes with the first bevel gear (814); The second motor (816) is connected to the first rotating shaft (812) in a transmission connection; The second rotating shaft (813) is fixedly connected to the spray pipe (700).
2. The rapid grinding device for processing Cordyceps sinensis according to claim 1, characterized in that, The first driving element (400) includes: First motor (410); There are two first pulleys (420), one of which is fixed to the shaft end of the first motor (410) and the other is fixed to the rotating shaft end of the cutter (300). A first belt (430) is installed between two first pulleys (420).
3. The rapid grinding device for processing Cordyceps sinensis according to claim 1, characterized in that, There are several spray pipes (700), and the several spray pipes (700) are arranged in a circular array about the axis of the grinding chamber (210).
4. The rapid grinding device for processing Cordyceps sinensis according to claim 3, characterized in that, The spray pipe (700) includes: The first tube (710) has a first cavity (711) and a limit ring (712) is provided at one end of the first tube (710) located in the first cavity (711). The outer diameter of the first tube (710) is smaller than the diameter of the switching hole (211). The second tube (720) is slidably connected to the first cavity (711). The second tube (720) has a second cavity (721) and the second cavity (721) is connected to the first cavity (711). The end of the second tube (720) located in the first cavity (711) has a sealing ring (722). The outer diameter of the sealing ring (722) is larger than the inner diameter of the limiting ring (712). The end of the second tube (720) away from the sealing ring (722) and the peripheral side of the second tube (720) are provided with a plurality of spray holes (723). Along the axial direction of the spray pipe (700), starting from the spray hole (723) away from the sealing ring (722), the angle between the axis of the spray hole (723) and the axis of the spray pipe (700) gradually increases.
5. The rapid grinding device for processing Cordyceps sinensis according to claim 4, characterized in that, The angle between the axis of the spray pipe (700) and the axis of the connecting rod (600) is greater than 45 degrees and not greater than 90 degrees.
6. The rapid grinding device for processing Cordyceps sinensis according to claim 4, characterized in that, The rapid grinding device for processing Cordyceps sinensis also includes: The third tube (1000) is coaxially disposed outside the first tube (710). The inner diameter of the third tube (1000) is equal to the diameter of the switching hole (211), and the inner diameter of the third tube (1000) is greater than the outer diameter of the first tube (710). In the second state, the third tube (1000) abuts against the bottom of the switching hole (211). Wastewater box (2000) is detachably installed inside the housing (200). When the wastewater box (2000) is installed inside the housing (200), the wastewater box (2000) is located below the grinding chamber (210).
7. The rapid grinding device for processing Cordyceps sinensis according to claim 1, characterized in that, The rapid grinding device for processing Cordyceps sinensis also includes: A heating element (3000) is installed between a first water pump (900) and a spray pipe (700) to heat the cleaning water supplied by the first water pump (900) to the spray pipe (700).
8. The rapid grinding device for processing Cordyceps sinensis according to claim 1, characterized in that, The bottom of the mounting base (100) is fixed with a plurality of locking pins (4000). The rapid grinding device for processing Cordyceps sinensis also includes: Base (5000), the mounting base (100) is rotatably connected to the base (5000); A locking plate (6000) is slidably connected to the top of the base (5000) along a first direction. The locking plate (6000) has a plurality of locking holes (6100), and the locking holes (6100) correspond one-to-one with the locking pins (4000). The second lifting component (7000) is mounted on the top of the base (5000) and is connected to the locking plate (6000) to control the locking plate (6000) to slide in a first direction.
Citation Information
Patent Citations
Superfine crushing and sieving equipment for cordyceps sinensis
CN118357020A
Traditional Chinese medicine grinding equipment convenient to clean
CN212328590U