Pepper powder pounding device and preparation method thereof
Through the trigger component and magnetic switching mechanism of pounding work, the automation and stability of pepper surface processing is achieved, the problems of low efficiency and poor stability of traditional equipment are solved, and the uniformity of pepper surface texture and processing accuracy are improved.
Patent Information
- Application Number
- CN202510724916.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-03
- Publication Date
- 2025-07-25
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing pepper flour pounding equipment lacks automatic start function, has low processing efficiency, and the limiting mechanism is prone to malfunction or the components are loose, which affects stability and accuracy.
The pounding work trigger assembly is adopted, and the limiting plate is driven into the cavity of the fixed cylinder by using the extrusion pressure of the pepper surface in the work box, and the stable operation is ensured through the magnetic switching mechanism, and the rotating plate is controlled by the servo motor for automatic stirring and pounding.
It realizes automatic triggering and stable operation of pepper surface processing, improves processing efficiency and texture uniformity, avoids malfunctions and component offsets, and ensures processing accuracy.
Smart Images

Figure CN120362000A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of chili powder pounding, and specifically relates to a chili powder pounding device and a preparation method thereof. Background Art
[0002] Chili powder is a condiment deeply loved by the public and is made by pounding dried chili peppers with a pounding device. The traditional pounding device is a pounding hammer. When in use, the dried chili peppers are placed in a pounding bowl, and the pounding hammer is repeatedly lifted and pounded downward manually to crush the dried chili peppers.
[0003] In the existing related technologies, traditional pounding devices mostly rely on mechanical or external triggering mechanisms and lack an automatic start function based on the characteristics of the processed materials, resulting in low efficiency in the processing process and difficulty in ensuring operation stability.
[0004] At the same time, in the non-working state, the limit mechanism of the existing device is prone to malfunction due to external factors, affecting the standby stability of the device; in the working state, there is a lack of an effective fixing mechanism, and components loosen or shift during operation, reducing the processing accuracy. Summary of the Invention
[0005] In view of the above situation, to overcome the defects of the existing technology, the present invention provides a chili powder pounding device and a preparation method thereof to at least partially solve the above technical problems.
[0006] The technical solution adopted by the present invention is as follows:
[0007] The present invention provides a chili powder pounding device, comprising:
[0008] A pounding work trigger assembly, the pounding work trigger assembly includes a fixed cylinder, a limit frame plate and a mounting frame plate. The limit frame plate is arranged on the inner wall of the fixed cylinder. There are two groups of the limit frame plates. A moving block is arranged between the two groups of the limit frame plates. The mounting frame plate is arranged on the outer wall of the fixed cylinder. There are two groups of the mounting frame plates. Limit blocks are arranged inside both groups of the mounting frame plates. An L-shaped micro-elastic telescopic rod is connected to the outer wall of the limit block. A through cavity is opened inside the fixed cylinder. A limit circular plate is arranged at the bottom of the fixed cylinder. The diameter size of the limit circular plate is adapted to the size of the through cavity of the fixed cylinder. The other ends of the two L-shaped micro-elastic telescopic rods are jointly arranged at the bottom of the limit circular plate;
[0009] An external working box, the pounding work trigger assembly is arranged inside the external working box. Chili powder is arranged in the inner cavity of the external working box. When the chili powder in the inner cavity of the external working box increases, the chili powder presses the limit circular plate. Under the action of the pressing force, the limit circular plate enters the inner cavity of the fixed cylinder.
[0010] In an embodiment of the present invention, auxiliary sliders are provided inside both groups of the limiting frame plates. Tensile damping members are provided at both the upper and lower ends of the auxiliary sliders. The two auxiliary sliders are respectively connected to the outer walls on both sides of the moving block. A support rod is provided at the bottom of the moving block, and a bottom plate is provided at the bottom end of the support rod. The size of the bottom plate is adapted to the distance between the two groups of limiting frame plates, facilitating the movement of the bottom plate between the two groups of limiting frame plates. A connecting rod is provided at the bottom of the bottom plate, and the bottom end of the connecting rod is provided on the top of the limiting circular plate.
[0011] In an embodiment of the present invention, first positive magnetic blocks are provided at the tops of the two limiting blocks, and first negative magnetic blocks are provided at the tops of the inner walls of the two mounting frame plates. The first positive magnetic blocks and the first negative magnetic blocks cooperate with each other. Second positive magnetic blocks are provided at the bottoms of the two limiting blocks, and second negative magnetic blocks are provided at the bottoms of the inner walls of the two mounting frame plates. The second positive magnetic blocks and the second negative magnetic blocks cooperate with each other.
[0012] In an embodiment of the present invention, in the non-working state, no chili powder is added inside the external working box. The second positive magnetic block and the second negative magnetic block are magnetically attracted and fixed to each other, and the limiting circular plate is at the bottom of the fixed cylinder and does not enter the inner cavity of the fixed cylinder; in the working state, chili powder is added inside the external working box. Under the extrusion force of the chili powder, the limiting circular plate enters the inner cavity of the fixed cylinder, and the magnetic attraction relationship between the second positive magnetic block and the second negative magnetic block is disengaged, and the first positive magnetic block and the first negative magnetic block are magnetically attracted and fixed to each other.
[0013] In an embodiment of the present invention, an electric telescopic device is provided at the top of the external working box. The working end of the electric telescopic device is provided inside the external working box. An internal fixed plate is provided at the working end of the electric telescopic device. A servo motor is provided at the bottom of the internal fixed plate. A rotating circular plate is provided at the working end of the servo motor. The pounding working trigger assembly is provided at the center of the bottom of the rotating circular plate;
[0014] A servo motor control module is provided at the top of the inner cavity of the fixed cylinder. The servo motor control module is electrically controlled and connected to the servo motor through a transmission wire. The moving block moves upward in the inner cavity of the fixed cylinder and touches the servo motor control module, automatically turning on the operation of the servo motor.
[0015] In an embodiment of the present invention, multiple groups of rotating shafts are provided at the bottom of the rotating circular plate. L-shaped pounding stirring plates are provided on the outer walls of the multiple groups of rotating shafts. The multiple groups of L-shaped pounding stirring plates are provided around the pounding working trigger assembly. Bearing bottom plates are provided at the bottoms of the multiple groups of stirring shafts, and the bearing bottom plates only contact the bottom of the inner cavity of the external working box.
[0016] In one embodiment of the present invention, a feeding pump is further provided inside the external working box. The working end of the feeding pump is provided with a feeding pipe, and the other end of the feeding pipe is arranged outside a plurality of L-shaped pounding and stirring plates. A discharging pipe is further provided outside the external working box, and a solenoid valve is arranged outside the discharging pipe.
[0017] In one embodiment of the present invention, a control panel is provided on the top of the external working box. The control panel is electrically connected to the electric telescopic device, the servo motor, the feeding pump and the solenoid valve through transmission wires for electrical control connection.
[0018] In one embodiment of the present invention, a preparation method of a chili powder pounding device includes the following preparation steps:
[0019] Step 1: Set the operating parameters of the electric telescopic device, the feeding pump and the solenoid valve through the control panel, start the feeding pump, and input the pretreated chili raw materials into the inner cavity of the external working box through the feeding pipe;
[0020] Step 2: When the chili raw materials in the inner cavity of the external working box gradually increase, the chili raw materials generate a squeezing force on the limiting circular plate of the pounding working trigger assembly. Under the action of the squeezing force, the limiting circular plate enters the inner cavity of the fixed cylinder, driving the moving block to move upward between the limiting frame plates and touching the servo motor control module to automatically start the servo motor;
[0021] Step 3: The servo motor drives the rotating circular plate to rotate, and the rotating circular plate drives a plurality of L-shaped pounding and stirring plates to rotate at a high speed in the inner cavity of the external working box to uniformly pound and grind the chili raw materials to form delicate chili powder;
[0022] Step 4: Real-time monitor the particle size of the chili powder and the pounding progress in the inner cavity of the external working box through the control panel, and dynamically adjust the rotation speed of the servo motor and the telescopic depth of the electric telescopic device according to the particle size requirements to optimize the pounding effect;
[0023] Step 5: When the chili powder reaches the preset particle size, the control panel controls the solenoid valve to open, and discharges the pounded chili powder through the discharging pipe to complete the preparation process.
[0024] The beneficial effects of the technical solution of the present invention are as follows:
[0025] The present invention uses a pounding work triggering component and the squeezing force of the chili powder in the inner cavity of the working box to drive the limiting circular plate to enter the inner cavity of the fixed cylinder, and then the moving block touches the servo motor control module to automatically start the servo motor and the rotating circular plate, thereby realizing the automatic triggering of the pounding process. The L-shaped pounding stirring plate efficiently stirs and poundes the chili powder under the drive of the rotating circular plate, thereby ensuring the uniform texture of the chili powder and improving the processing efficiency.
[0026] The present invention constructs a switching mechanism between the non-working state and the working state through the magnetic force cooperation of the first positive magnetic block, the first negative magnetic block and the second positive magnetic block, and the second negative magnetic block. In the non-working state, the magnetic attraction and fixation of the second positive magnetic block and the second negative magnetic block ensure that the limiting circular plate is stable at the bottom of the fixed cylinder to avoid false triggering; in the working state, the chili powder squeezes and triggers the limiting circular plate to move, breaking away from the magnetic attraction of the second group of magnetic blocks, and at the same time, the first positive magnetic block and the first negative magnetic block are magnetically fixed to ensure stable operation of the device.
[0027] The present invention arranges multiple groups of L-shaped pounding stirring plates at the bottom of the rotating circular plate, combined with the structure of the rotating shaft and the bearing bottom plate, so that the chili powder can be stirred and compacted at multiple angles and evenly during the pounding process. The L-shaped structure increases the contact area with the chili powder, optimizes the pounding effect, and improves the texture uniformity and fineness of the chili powder.
[0028] Additional aspects and advantages of the present invention will be given in part in the following description and in part will be obvious from the following description, or will be learned through practice of the present invention. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The above and / or additional aspects and advantages of the present invention will become apparent and easily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0030] Figure 1 An exploded view of a pounding work triggering assembly of a chili powder pounding device according to an embodiment of the present invention;
[0031] Figure 2 A schematic diagram of the structure of a pounding work triggering assembly of a chili powder pounding device according to an embodiment of the present invention;
[0032] Figure 3 A schematic diagram of the structure of a chili powder pounding device according to an embodiment of the present invention;
[0033] Figure 4 A front view of a chili powder pounding device according to an embodiment of the present invention;
[0034] Figure 5 A side view of a chili powder pounding device according to an embodiment of the present invention;
[0035] Figure 6 forFigure 4 Cross-sectional view along cutting plane A-A in
[0036] Figure 7 For Figure 5 Cross-sectional view along cutting plane B-B in
[0037] Figure 8 For Figure 4 Cross-sectional view along cutting plane C-C in
[0038] In the figure: 1. Spring-making working trigger assembly; 2. Fixed cylinder; 3. Servo motor control module; 4. Limit frame plate; 5. Auxiliary slider; 6. Tensile damping member; 7. Moving block; 8. Support rod; 9. Bottom plate; 10. Connecting rod; 11. Limit circular plate; 12. Installation frame plate; 13. First positive magnetic block; 14. Second positive magnetic block; 15. First negative magnetic block; 16. Second negative magnetic block; 17. Limit block; 18. L-shaped micro-elastic telescopic rod; 19. External working box; 20. Control panel; 21. Electric telescopic device; 22. Built-in fixed plate; 23. Servo motor; 24. Rotating circular plate; 25. Bearing bottom plate; 26. Rotating shaft; 27. L-shaped spring-making stirring plate; 28. Feeding pump; 29. Feeding pipe; 30. Discharge pipe; 31. Solenoid valve. Detailed implementation manners
[0039] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present invention, and should not be construed as a limitation to the present invention.
[0040] A chili powder spring-making device and its preparation method according to an embodiment of the present invention will be described below with reference to the drawings.
[0041] As Figures 1 to 8 shown, an embodiment of the present invention provides a chili powder spring-making device, including:
[0042] The pounding work trigger assembly 1 comprises a fixed cylinder 2, a limit frame plate 4 and a mounting frame plate 12, the limit frame plate 4 is arranged on the inner wall of the fixed cylinder 2, the limit frame plate 4 is provided with two groups, a moving block 7 is arranged between the two groups of limit frame plates 4, the mounting frame plate 12 is arranged on the outer wall of the fixed cylinder 2, the mounting frame plate 12 is provided with two groups, the insides of the two groups of mounting frame plates 12 are both provided with limit blocks 17, the outer wall of the limit block 17 is connected with an L-shaped micro-elastic telescopic rod 18, the inside of the fixed cylinder 2 is provided with a through cavity, the bottom of the fixed cylinder 2 is provided with a limit circular plate 11, and the diameter size of the limit circular plate 11 is adapted to the fixed cylinder The size of the through cavity of the body 2, the other ends of the two L-shaped micro-elastic telescopic rods 18 are jointly arranged at the bottom of the limiting circular plate 11; the interiors of the two groups of limiting frame plates 4 are provided with auxiliary sliding blocks 5, and the upper and lower ends of the auxiliary sliding blocks 5 are provided with tensile damping members 6, and the two auxiliary sliding blocks 5 are respectively connected to the outer walls on both sides of the moving block 7, and a support rod 8 is provided at the bottom of the moving block 7, and a bottom plate 9 is provided at the bottom end of the support rod 8. The size of the bottom plate 9 is adapted to the distance between the two groups of limiting frame plates 4, so that the bottom plate 9 can move between the two groups of limiting frame plates 4. A connecting rod 10 is provided at the bottom of the bottom plate 9, and the bottom end of the connecting rod 10 is arranged at the top of the limiting circular plate 11.
[0043] The external working box 19 and the mortar working trigger assembly 1 are arranged inside the external working box 19. The inner cavity of the external working box 19 is provided with chili powder. The chili powder increases in the inner cavity of the external working box 19. The chili powder squeezes the limiting circular plate 11. Under the action of the squeezing force, the limiting circular plate 11 enters the inner cavity of the fixed cylinder 2.
[0044] In a specific application of the embodiment of the present invention, two groups of symmetrically arranged limit frame plates 4 are fixed to the inner wall of the fixed cylinder 2, and a limit channel is formed between the limit frame plates 4 to constrain the movement trajectory of the moving block 7. The moving block 7 is located between the two groups of limit frame plates 4, and can move up and down along the axial direction of the fixed cylinder 2 under the guidance of the limit frame plates 4. Auxiliary sliders 5 are respectively connected to the outer walls on both sides of the moving block 7, and tensile damping members 6 are provided at the upper and lower ends of each group of auxiliary sliders 5. The tensile damping members 6 provide buffering and restoring force for the movement of the auxiliary sliders 5 through their elastic damping characteristics, thereby enhancing the stability and accuracy of the moving block 7 when moving between the limit frame plates 4. A support rod 8 is fixedly connected to the bottom of the moving block 7, and a bottom end of the support rod 8 is connected to a bottom plate 9. The size of the bottom plate 9 is adapted to the spacing between the two sets of limit frame plates 4, ensuring that the bottom plate 9 can move freely in the channel defined by the limit frame plates 4 without deviation or jamming. The bottom of the bottom plate 9 is fixedly connected to the top of the limit circular plate 11 through a connecting rod 10, thereby transmitting the movement of the moving block 7 to the limit circular plate 11 through the support rod 8, the bottom plate 9 and the connecting rod 10, forming a complete motion chain.
[0045] The limiting circular plate 11, as the directly stressed component of the pounding action, is located at the bottom of the fixed cylinder 2. Its bottom is connected to the limiting blocks 17 on the mounting frame plate 12 through two groups of L-shaped micro-elastic telescopic rods 18. There are two groups of mounting frame plates 12 arranged on the outer wall of the fixed cylinder 2, and a limiting block 17 is fixed inside each group of mounting frame plates 12. One end of the L-shaped micro-elastic telescopic rod 18 is connected to the outer wall of the limiting block 17, and the other ends of the L-shaped micro-elastic telescopic rods 18 are commonly connected to the bottom of the limiting circular plate 11. The L-shaped micro-elastic telescopic rod 18 has micro-elastic characteristics, can undergo slight deformation when subjected to external forces, and can return to its original state after the external forces disappear, providing elastic support and reset functions for the up and down movement of the limiting circular plate 11.
[0046] The pounding work triggering assembly 1 is integrally installed inside the external work box 19. The limiting circular plate 11 is directly exposed at the bottom of the fixed cylinder 2 and contacts the chili powder. As the chili powder gradually increases in the inner cavity of the external work box 19, the chili powder generates an upward extrusion force on the limiting circular plate 11. When the extrusion force reaches a certain threshold value, the limiting circular plate 11 overcomes the elastic resistance of the L-shaped micro-elastic telescopic rod 18 under the action of the extrusion force and moves upward along the through cavity of the fixed cylinder 2. The upward movement of the limiting circular plate 11 drives the bottom plate 9, the support rod 8, and the moving block 7 to move upward synchronously through the connecting rod 10. The moving block 7 moves stably along the axis under the constraint of the limiting frame plate 4. The auxiliary slider 5 and the stretching damping member 6 slow down the movement impact through the damping effect during this process to ensure the smoothness of the movement. When the chili powder decreases or the extrusion force decreases, the elastic restoring force of the L-shaped micro-elastic telescopic rod 18 causes the limiting circular plate 11 to reset downward, driving the entire movement chain to move in the reverse direction, thereby realizing the cyclic reciprocation of the pounding action.
[0047] In a possible implementation manner, first positive magnetic blocks 13 are provided at the tops of both limiting blocks 17, and first negative magnetic blocks 15 are provided at the tops of the inner walls of both mounting frame plates 12. The first positive magnetic blocks 13 and the first negative magnetic blocks 15 cooperate with each other. Second positive magnetic blocks 14 are provided at the bottoms of both limiting blocks 17, and second negative magnetic blocks 16 are provided at the bottoms of the inner walls of both mounting frame plates 12. The second positive magnetic blocks 14 and the second negative magnetic blocks 16 cooperate with each other.
[0048] In the non-working state, the chili powder does not increase inside the external work box 19. The second positive magnetic blocks 14 and the second negative magnetic blocks 16 are magnetically attracted and fixed to each other, and the limiting circular plate 11 is at the bottom of the fixed cylinder 2 and does not enter the inner cavity of the fixed cylinder 2. In the working state, the chili powder increases inside the external work box 19. Under the action of the extrusion force of the chili powder, the limiting circular plate 11 enters the inner cavity of the fixed cylinder 2, and the magnetic attraction relationship between the second positive magnetic blocks 14 and the second negative magnetic blocks 16 is disengaged, and the first positive magnetic blocks 13 and the first negative magnetic blocks 15 are magnetically attracted and fixed to each other.
[0049] In the specific application of the embodiment of the present invention, an inner cavity for accommodating the limiting circular plate 11 is provided inside the fixed cylinder body 2. The limiting circular plate 11, as a dynamic limiting component, can move inside the inner cavity of the fixed cylinder body 2, and its movement is jointly regulated by the magnetic attraction mechanism and the extrusion force of the chili powder. Two mounting frame plates 12 are fixed to the inner wall of the fixed cylinder body 2, respectively located on both sides of the limiting circular plate 11, for carrying the magnetic blocks and providing a sliding space for the limiting blocks 17. The two limiting blocks 17 are respectively connected to the limiting circular plate 11 and can slide inside the mounting frame plates 12. The magnetic blocks provided thereon form a magnetic attraction cooperation relationship with the magnetic blocks on the mounting frame plates 12.
[0050] At the top of both limiting blocks 17, a first positive magnetic block 13 is fixed, while at the corresponding top of the inner walls of the two mounting frame plates 12, a first negative magnetic block 15 is fixed. The first positive magnetic block 13 and the first negative magnetic block 15 form a magnetic attraction effect through the characteristic of opposite magnetic poles, so as to fix the limiting circular plate 11 at the upper position inside the inner cavity of the fixed cylinder body 2 in the working state. At the same time, at the bottom of both limiting blocks 17, a second positive magnetic block 14 is fixed, and at the corresponding bottom of the inner walls of the two mounting frame plates 12, a second negative magnetic block 16 is fixed. The second positive magnetic block 14 and the second negative magnetic block 16 also form a magnetic attraction effect through the characteristic of opposite magnetic poles, so as to fix the limiting circular plate 11 at the bottom position of the fixed cylinder body 2 in the non - working state to prevent it from entering the inner cavity of the fixed cylinder body 2.
[0051] Non - working state: When no chili powder is added to the external working box 19, the limiting circular plate 11 is not subjected to the extrusion force from the chili powder. At this time, the magnetic attraction force between the second positive magnetic block 14 and the second negative magnetic block 16 plays a dominant role, causing the limiting block 17 to be firmly adsorbed on the second negative magnetic block 16 at the bottom of the mounting frame plate 12, thereby driving the limiting circular plate 11 to stably stay at the bottom position of the fixed cylinder body 2 and not enter the inner cavity of the fixed cylinder body 2. In this state, the limiting circular plate 11 is separated from the inner cavity of the fixed cylinder body 2, ensuring that the device is in a static state when the pounding work is not started, avoiding misoperation or unnecessary mechanical wear. At the same time, due to the relatively large distance between the first positive magnetic block 13 and the first negative magnetic block 15, no effective magnetic attraction effect is formed.
[0052] Working state: When chili powder is added into the external working box 19, the weight of the chili powder and the extrusion force generated by the accumulation act on the limiting circular plate 11, forcing the limiting circular plate 11 to overcome the magnetic attraction force between the second positive magnetic block 14 and the second negative magnetic block 16, and slide upward along the inner wall of the fixed cylinder body 2 and enter the inner cavity of the fixed cylinder body 2. As the limiting circular plate 11 rises, the limiting block 17 moves upward synchronously, making the first positive magnetic block 13 gradually approach the first negative magnetic block 15 arranged at the top of the installation frame plate 12. When the limiting circular plate 11 reaches the upper position of the inner cavity of the fixed cylinder body 2, the magnetic attraction force between the first positive magnetic block 13 and the first negative magnetic block 15 takes effect, forming a new fixed state. At this time, the magnetic attraction relationship between the second positive magnetic block 14 and the second negative magnetic block 16 is disengaged, and the limiting circular plate 11 is stably fixed at the upper position of the inner cavity of the fixed cylinder body 2 under the action of the magnetic attraction force between the first positive magnetic block 13 and the first negative magnetic block 15, thereby providing stable limiting support for the pounding of chili powder.
[0053] In a possible implementation manner, an electric telescopic device 21 is provided at the top of the external working box 19. The working end of the electric telescopic device 21 is arranged inside the external working box 19. An internal fixed plate 22 is provided at the working end of the electric telescopic device 21. A servo motor 23 is provided at the bottom of the internal fixed plate 22. A rotating circular plate 24 is provided at the working end of the servo motor 23. The pounding working trigger assembly 1 is arranged at the bottom center of the rotating circular plate 24. A plurality of rotating shafts 26 are provided at the bottom of the rotating circular plate 24. L-shaped pounding stirring plates 27 are arranged on the outer walls of the plurality of rotating shafts 26. The plurality of L-shaped pounding stirring plates 27 are arranged around the pounding working trigger assembly 1. Bearing bottom plates 25 are provided at the bottoms of the plurality of stirring shafts, and the bearing bottom plates 25 only contact the bottom of the inner cavity of the external working box 19.
[0054] A servo motor control module 3 is provided at the top of the inner cavity of the fixed cylinder body 2. The servo motor control module 3 is electrically controlled and connected to the servo motor 23 through a transmission wire. The moving block 7 moves upward in the inner cavity of the fixed cylinder body 2 and touches the servo motor control module 3, automatically turning on the servo motor 23.
[0055] In the specific application of the embodiment of the present invention, an electric telescopic device 21 is installed on the top of the external working box 19, which is used to drive the vertical movement of the pounding working trigger assembly 1. The working end of the electric telescopic device 21 extends into the internal part of the external working box 19 and is connected to the internal fixed plate 22, serving as the installation base for the servo motor 23 and the rotating circular plate 24. The servo motor 23 is fixed at the bottom of the internal fixed plate 22, and its working end drives the rotating circular plate 24 to rotate, thereby driving the pounding working trigger assembly 1 and multiple groups of L-shaped pounding stirring plates 27 to perform pounding operations; the pounding working trigger assembly 1 arranged at the bottom of the rotating circular plate 24 is located at the central position, surrounded by multiple groups of rotating shafts 26. An L-shaped pounding stirring plate 27 is fixed on the outer wall of each group of rotating shafts 26, which is used to stir and pound the chili powder. The bottom of the rotating shaft 26 is connected to the bearing bottom plate 25, and the bearing bottom plate 25 contacts the bottom of the inner cavity of the external working box 19, reducing the rotational friction and ensuring the stability during the pounding process. The servo motor control module 3 arranged at the top of the inner cavity of the fixed cylinder 2 is electrically connected to the servo motor 23 through a transmission wire, and the automatic start and stop control of the servo motor 23 is realized by the touch of the moving block 7.
[0056] Initial preparation stage: Before the device is started, the limiting circular plate 11 rises from the bottom of the fixed cylinder 2 to the upper part of the inner cavity of the fixed cylinder 2 under the action of the extrusion force of the chili powder, and is fixed by the magnetic attraction force between the first positive magnetic block 13 and the first negative magnetic block 15. At this time, the electric telescopic device 21 is in the initial state, and the pounding working trigger assembly 1 and the L-shaped pounding stirring plate 27 have not contacted the chili powder.
[0057] Pounding start stage: When the device enters the working state, the electric telescopic device 21 starts, and its working end extends downward, pushing the internal fixed plate 22 together with the servo motor 23, the rotating circular plate 24 and the pounding working trigger assembly 1 to move towards the bottom of the inner cavity of the external working box 19. At the same time, the moving block 7 in the inner cavity of the fixed cylinder 2 moves upward along with the movement of the limiting circular plate 11 and touches the servo motor control module 3 arranged at the top of the inner cavity of the fixed cylinder 2. The servo motor control module 3 receives the touch signal and sends a start command to the servo motor 23 through the transmission wire, automatically starting the rotation of the servo motor 23.
[0058] Pounding processing stage: After the servo motor 23 is started, its working end drives the rotating circular plate 24 to rotate at high speed, driving the pounding working trigger assembly 1 and multiple groups of L-shaped pounding stirring plates 27 to move synchronously. The pounding working trigger assembly 1 is located at the center of the bottom of the rotating circular plate 24 and is responsible for the preliminary compaction of the chili powder and triggering the pounding action. Multiple groups of L-shaped pounding stirring plates 27 are evenly distributed around the pounding working trigger assembly 1, and their L-shaped structure can generate multi-directional stirring and extrusion effects on the chili powder during rotation, ensuring uniform force on the chili powder during pounding and avoiding local accumulation or uneven processing. The bearing bottom plate 25 at the bottom of the rotating shaft 26 contacts the bottom of the inner cavity of the external working box 19. Through the low-friction characteristics of the bearing, the rotation resistance is reduced, ensuring the smooth operation of the rotating circular plate 24 and the L-shaped pounding stirring plates 27, and at the same time preventing equipment instability caused by vibration or deviation during pounding.
[0059] State switching and stopping: When the pounding work is completed, the electric telescopic device 21 retracts, driving the built-in fixing plate 22 and the rotating circular plate 24 to reset, and the pounding working trigger assembly 1 and the L-shaped pounding stirring plates 27 are separated from the chili powder; the moving block 7 resets with the limiting circular plate 11 or other mechanisms and disengages from the servo motor control module 3, and the servo motor 23 automatically stops running. At this time, the chili powder in the external working box 19 can be discharged, and the limiting circular plate 11 returns to the bottom of the fixed cylinder 2 under the magnetic suction force of the second positive magnetic block 14 and the second negative magnetic block 16, and the device returns to the non-working state, waiting for the next processing.
[0060] In a possible implementation manner, a feeding pump 28 is further provided inside the external working box 19. The working end of the feeding pump 28 is provided with a feeding pipe 29, and the other end of the feeding pipe 29 is arranged outside multiple groups of L-shaped pounding stirring plates 27. A discharging pipe 30 is further provided outside the external working box 19, and a solenoid valve 31 is provided outside the discharging pipe 30.
[0061] In the specific application of the embodiment of the present invention, the working end of the feeding pump 28 is connected with a feeding pipe 29, and the other end of the feeding pipe 29 is arranged outside multiple groups of L-shaped pounding stirring plates 27, ensuring that the chili raw materials can be transported to the outer area of the L-shaped pounding stirring plates 27 through the suction action of the feeding pump 28 via the feeding pipe 29 before entering the pounding area, so as to realize the uniform distribution and continuous supply of materials. The L-shaped pounding stirring plates 27 adopt an L-shaped structure, and their angles and shapes can efficiently stir and crush the chili raw materials during pounding, ensuring uniform force on the materials during processing, consistent particle sizes, and improving the processing quality and fineness of the chili powder.
[0062] Meanwhile, the discharging pipe 30 serves as the output channel for the processed chili powder. Its inlet is connected to the pounding area inside the external working box 19, and its outlet is controlled by an electromagnetic valve 31. The setting of the electromagnetic valve 31 enables the discharging process to be automatically switched according to actual production requirements, avoiding the inconvenience of manual operation in traditional equipment and effectively preventing the leakage or waste of materials during the discharging process. In addition, the control function of the electromagnetic valve 31 can also adjust the discharging speed according to the pounding progress to ensure that the processed chili powder can be output in a timely and efficient manner, while maintaining the cleanliness inside the device and the continuous processing ability of the materials.
[0063] In a possible implementation manner, a control panel 20 is provided on the top of the external working box 19. The control panel 20 is electrically connected to the electric telescopic device 21, the servo motor 23, the pumping device 28, and the electromagnetic valve 31 through transmission wires for electrical control connection.
[0064] In the specific application of the embodiment of the present invention, the electric telescopic device 21, the servo motor 23, the pumping device 28, and the electromagnetic valve 31 adopted by this device are all mature existing technologies. The working principles of the electric telescopic device 21, the servo motor 23, the pumping device 28, and the electromagnetic valve 31 are also well-known to those skilled in the art, and will not be described in detail here.
[0065] When the present invention is specifically used, a preparation method of a chili powder pounding device includes the following preparation steps:
[0066] Step 1: Set the operating parameters of the electric telescopic device 21, the pumping device 28, and the electromagnetic valve 31 through the control panel 20, start the pumping device 28, and input the pre-treated chili raw materials into the inner cavity of the external working box 19 through the feeding pipe 29.
[0067] Step 2: When the chili raw materials in the inner cavity of the external working box 19 gradually increase, the chili raw materials generate a squeezing force on the limiting circular plate 11 of the pounding working trigger component 1. Under the action of the squeezing force, the limiting circular plate 11 enters the inner cavity of the fixed cylinder 2, driving the moving block 7 to move upward between the limiting frame plates 4 and touching the servo motor control module 3, automatically starting the servo motor 23.
[0068] Step 3: The servo motor 23 drives the rotating circular plate 24 to rotate. The rotating circular plate 24 drives multiple groups of L-shaped pounding stirring plates 27 to rotate at a high speed in the inner cavity of the external working box 19, pounding and grinding the chili raw materials evenly to form delicate chili powder.
[0069] Step 4: Monitor the particle size and pounding progress of the chili powder in the inner cavity of the external working box 19 in real time through the control panel 20, and dynamically adjust the rotation speed of the servo motor 23 and the telescopic depth of the electric telescopic device 21 according to the particle size requirements to optimize the pounding effect.
[0070] Step 5: When the chili powder reaches the preset particle size, the control panel 20 controls the solenoid valve 31 to open, and discharges the chili powder that has been pounded through the discharge pipe 30 to complete the preparation process.
[0071] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.
[0072] The above describes the present invention and its embodiments. This description is not restrictive. What is shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and design similar structural modes and embodiments without creative efforts without departing from the purpose of the present invention, they shall fall within the protection scope of the present invention.
Claims
1. A chili powder pounding device, characterized in that, Comprising: A pounding work triggering component (1), the pounding work triggering component (1) includes a fixed cylinder body (2), a limiting frame plate (4) and a mounting frame plate (12), the limiting frame plate (4) is arranged on the inner wall of the fixed cylinder body (2), there are two groups of the limiting frame plates (4), a moving block (7) is arranged between the two groups of the limiting frame plates (4), the mounting frame plate (12) is arranged on the outer wall of the fixed cylinder body (2), there are two groups of the mounting frame plates (12), limiting blocks (17) are arranged inside both groups of the mounting frame plates (12), an L-shaped micro-elastic telescopic rod (18) is connected to the outer wall of the limiting block (17), a through cavity is opened inside the fixed cylinder body (2), a limiting circular plate (11) is arranged at the bottom of the fixed cylinder body (2), the diameter size of the limiting circular plate (11) is adapted to the size of the through cavity of the fixed cylinder body (2), and the other ends of the two L-shaped micro-elastic telescopic rods (18) are jointly arranged at the bottom of the limiting circular plate (11); An external work box (19), the pounding work triggering component (1) is arranged inside the external work box (19), chili powder is arranged in the inner cavity of the external work box (19), the amount of chili powder in the inner cavity of the external work box (19) increases, the chili powder presses the limiting circular plate (11), and under the action of the pressing force, the limiting circular plate (11) enters the inner cavity of the fixed cylinder body (2).
2. The chili powder pounding device according to claim 1, characterized in that, Auxiliary sliders (5) are arranged inside both groups of the limiting frame plates (4), stretching damping members (6) are arranged at both the upper and lower ends of the auxiliary slider (5), the two auxiliary sliders (5) are respectively connected to the outer walls on both sides of the moving block (7), a support rod (8) is arranged at the bottom of the moving block (7), a bottom plate (9) is arranged at the bottom end of the support rod (8), the size of the bottom plate (9) is adapted to the distance between the two groups of the limiting frame plates (4) to facilitate the movement of the bottom plate (9) between the two groups of the limiting frame plates (4), a connecting rod (10) is arranged at the bottom of the bottom plate (9), and the bottom end of the connecting rod (10) is arranged at the top of the limiting circular plate (11).
3. The chili powder pounding device according to claim 1, characterized in that, First positive magnetic blocks (13) are arranged at the tops of the two limiting blocks (17), first negative magnetic blocks (15) are arranged at the tops of the inner walls of the two mounting frame plates (12), the first positive magnetic blocks (13) and the first negative magnetic blocks (15) cooperate with each other, second positive magnetic blocks (14) are arranged at the bottoms of the two limiting blocks (17), second negative magnetic blocks (16) are arranged at the bottoms of the inner walls of the two mounting frame plates (12), and the second positive magnetic blocks (14) and the second negative magnetic blocks (16) cooperate with each other.
4. The chili powder pounding device according to claim 3, characterized in that, When in the non - working state, the chili powder is not added inside the external working box (19), the second positive magnetic block (14) and the second negative magnetic block (16) are magnetically attracted and fixed to each other, the limiting circular plate (11) is at the bottom of the fixed cylinder (2) and does not enter the inner cavity of the fixed cylinder (2); when in the working state, the chili powder is added inside the external working box (19), under the extrusion force of the chili powder, the limiting circular plate (11) enters the inner cavity of the fixed cylinder (2), the magnetic attraction relationship between the second positive magnetic block (14) and the second negative magnetic block (16) is released, and the first positive magnetic block (13) and the first negative magnetic block (15) are magnetically attracted and fixed to each other.
5. The chili powder pounding device according to claim 1, wherein, An electric telescopic device (21) is provided at the top of the external working box (19), the working end of the electric telescopic device (21) is arranged inside the external working box (19), an internal fixed plate (22) is provided at the working end of the electric telescopic device (21), a servo motor (23) is provided at the bottom of the internal fixed plate (22), a rotating circular plate (24) is provided at the working end of the servo motor (23), and the pounding - making work trigger assembly (1) is arranged at the center of the bottom of the rotating circular plate (24); A servo - motor control module (3) is provided at the top of the inner cavity of the fixed cylinder (2), the servo - motor control module (3) is electrically connected to the servo motor (23) through a conducting wire for electrical control, the moving block (7) moves upward in the inner cavity of the fixed cylinder (2) and touches the servo - motor control module (3), automatically starting the operation of the servo motor (23).
6. The chili powder pounding device according to claim 5, characterized in that, Multiple groups of rotating shafts (26) are provided at the bottom of the rotating circular plate (24), L - shaped pounding - making stirring plates (27) are provided on the outer walls of multiple groups of rotating shafts (26), multiple groups of L - shaped pounding - making stirring plates (27) are arranged around the pounding - making work trigger assembly (1), bearing bottom plates (25) are provided at the bottoms of multiple groups of stirring shafts, and the bearing bottom plates (25) only contact the bottom of the inner cavity of the external working box (19).
7. The chili powder pounding device according to claim 1, characterized in that, A material - pumping pump (28) is further provided inside the external working box (19), a material - conveying pipe (29) is provided at the working end of the material - pumping pump (28), the other end of the material - conveying pipe (29) is arranged outside multiple groups of L - shaped pounding - making stirring plates (27), a discharge pipe (30) is provided outside the external working box (19), and an electromagnetic valve (31) is provided on the outside of the discharge pipe (30).
8. The chili powder pounding device according to claim 1, characterized in that, A control panel (20) is provided at the top of the external working box (19), and the control panel (20) is electrically connected to the electric telescopic device (21), the servo motor (23), the material - pumping pump (28) and the electromagnetic valve (31) through conducting wires for electrical control.
9. A preparation method of a chili powder pounding device, applied to the chili powder pounding device according to any one of claims 1 to 8, characterized in that, It includes the following preparation steps: Step 1: Set the operating parameters of the electric telescopic device (21), the material - pumping pump (28) and the electromagnetic valve (31) through the control panel (20), start the material - pumping pump (28), and input the pretreated chili raw materials into the inner cavity of the external working box (19) through the material - conveying pipe (29); Step 2: As the chili raw materials in the inner cavity of the external working box (19) gradually increase, the chili raw materials exert an extrusion force on the limiting circular plate (11) of the pounding working trigger assembly (1). Under the action of the extrusion force, the limiting circular plate (11) enters the inner cavity of the fixed cylinder (2), driving the moving block (7) to move upward between the limiting frame plates (4) and touching the servo motor control module (3), automatically starting the servo motor (23); Step 3: The servo motor (23) drives the rotating circular plate (24) to rotate. The rotating circular plate (24) drives multiple groups of L-shaped pounding and stirring plates (27) to rotate at high speed in the inner cavity of the external working box (19), uniformly pounding and grinding the chili raw materials to form delicate chili powder; Step 4: The control panel (20) monitors the particle size of the chili powder and the pounding progress in the inner cavity of the external working box (19) in real time, and dynamically adjusts the rotation speed of the servo motor (23) and the telescopic depth of the electric telescopic device (21) according to the particle size requirements to optimize the pounding effect; Step 5: When the chili powder reaches the preset particle size, the control panel (20) controls the solenoid valve (31) to open, and discharges the pounded chili powder through the discharge pipe (30) to complete the preparation process.