Dry chili cut-off machine
By introducing a vertically moving material distribution guide assembly and a vibration motor into the dried chili cutting machine, the blockage problem caused by the fixed guide plate is solved, realizing continuous and efficient cutting and separation of dried chilies, and improving production efficiency and equipment operation stability.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUIZHOU GANJI SPICY XIANWANG FOOD CO LTD
- Filing Date
- 2025-05-29
- Publication Date
- 2026-04-17
AI Technical Summary
The existing dried chili cutting machine has a fixed guide plate position, which causes dried chilies to accumulate during the conveying process, affecting continuous and efficient cutting work, and requiring manual unblocking.
The material distribution and guiding component uses a material distribution plate that moves up and down and a toggle component, combined with a vibrating motor to vibrate the discharge plate, to avoid blockage and improve material flowability.
It effectively reduces the risk of material blockage, improves the efficiency of the production line and processing efficiency, reduces equipment maintenance costs, and facilitates the separation of chili seeds and dried chilies.
Smart Images

Figure CN224129879U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of slitting machines, specifically a dried chili cutting machine. Background Technology
[0002] A dried chili cutting machine is a processing device specifically designed to cut dried chilies into specific lengths or shapes. It is widely used in the chili processing industry. Its principle is generally that dried chilies are fed into the inside of the cutting machine through an external conveyor belt or hopper. The internal reciprocating cutting blades complete the cutting work. After that, the cut chilies are discharged through the external outlet, such as the cutting technology disclosed in a chili cutting machine with application number 202222043507.8.
[0003] However, when the aforementioned cutting machine cuts chilies, the guide plates guide the dried chilies onto the conveying assembly. Because the guide plates, which are set at equal intervals, are fixed in position, the dried chilies will accumulate between adjacent guide plates during batch transmission, making continuous transport impossible. This requires manual clearing by external personnel, affecting the continuous and efficient cutting operation of the entire device. Utility Model Content
[0004] The purpose of this utility model is to provide a dried chili cutting machine to solve the problem mentioned in the background art that when the cutting machine on the market cuts chilies, the guide plates on the conveying assembly guide the dried chilies, and because the positions of the guide plates are fixed due to their equal spacing, the dried chilies will accumulate between adjacent guide plates during batch conveying, making continuous transportation impossible. This requires manual clearing by external personnel, which affects the continuous and efficient cutting work of the entire device.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a dried chili cutting machine, comprising a frame and a device housing installed in the middle therein, wherein a feeding box is fixed to one side of the top of the device housing for feeding operations;
[0006] The conveying component, located slightly above the middle of the device casing, is used to convey the dried chili peppers after they have been fed in.
[0007] The material distribution and guiding component is located above the conveying component and is used to distribute and guide the batch of falling dried chilies. The material distribution and guiding component moves up and down above the conveying component to complete the shaking guidance, ensuring that the dried chilies do not cause serious blockage during the guiding process.
[0008] The cutting component, which is fixed to the top of the other side of the device housing, is used to cut the dried chilies during the conveying process.
[0009] The discharge component is located below the top of the conveying component, and its two sides are connected to the inner wall of the device housing. It is used to guide and discharge the chili peppers after they have been cut by the conveying component.
[0010] A collection component, which is located at the top of the discharge component, is used to collect the cut dried chilies. The collection component includes a first receiving box and a second receiving box, which are respectively located directly below and in front of the top of the discharge component, for collecting chili seeds and dried chilies.
[0011] Preferably, the conveying assembly includes two rotating rollers and a conveyor belt. The two rotating rollers are connected by bearings on both sides inside the device housing. The top of one of the rotating rollers passes through the outer wall of the device housing and is connected to a drive motor.
[0012] Preferably, the material distribution guide assembly includes material distribution plates and connecting rods. The material distribution plates are vertically and evenly spaced above the conveying assembly. The top ends of the equally spaced material distribution plates are connected by horizontally equally spaced connecting rods. The top ends of both sides of the connecting rods pass through pre-reserved slots on the outer wall of the device housing, and a toggle component is provided on one side for toggle operation. From the outside to the inside, the top ends of both sides of the connecting rods are sequentially provided with limit blocks and sliders. The top end of the slider is provided with a compression spring connected to the inner wall of the pre-reserved slot. The bottom of the limit block is provided with a toggle component for toggle operation.
[0013] Preferably, the actuating assembly includes a control motor, a pulley, a rotary cam, and a connecting belt. The rotary cam is located at the bottom of the limiting block, and a connecting shaft is eccentrically arranged on its exterior. A pulley is coaxially connected to the exterior of the connecting shaft. Adjacent pulleys are connected by a connecting belt. A control motor is located at the top of one of the pulleys for driving. A shaft is located on the inner side of the rotary cam and is connected to a bearing on the outer wall of the device housing.
[0014] Preferably, the cutting assembly includes a telescopic cylinder, a fixing frame, and a cutting blade. The fixing frame is fixed to the top of the device housing in a "U" shape, and two telescopic cylinders are symmetrically arranged above it. The cutting blades are installed at the bottom of the two telescopic cylinders.
[0015] Preferably, the discharge assembly includes a vibrating motor, a guide plate, and a connecting assembly. The top of the guide plate is provided with a vibrating motor, and the two sides of the guide plate are provided with connecting assemblies. The connecting assembly is connected to a guide post in a reserved groove in the inner wall of the device housing. The connecting assembly includes a moving block and a connecting spring. The connecting spring is installed at the upper and lower positions of the moving block, and a guide post is provided in the through hole between the connecting spring and the moving block.
[0016] Compared with the prior art, the beneficial effects of this utility model are: the dried chili cutting machine;
[0017] 1. When the material distribution plate is distributing materials on the conveyor assembly, there are toggle components on the bottom of both sides to move it up and down. Therefore, when distributing dried chili peppers, it can effectively reduce the risk of material blockage at the feed inlet or on the conveyor belt and reduce the maintenance cost of the equipment.
[0018] 2. A vibration motor is installed at the top of the guide plate, which can vibrate the cut dried chilies as they fall. Through vibration, the chilies are ensured to flow continuously, reducing downtime caused by material accumulation or blockage, thereby improving the efficiency of the entire production line. At the same time, the vibration can also thoroughly separate the dried chilies from the chili seeds, reducing subsequent separation steps and further improving the processing efficiency of the entire dried chili production line. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the main structure of this utility model;
[0020] Figure 2 This is a side view of the structure of this utility model;
[0021] Figure 3 This is an enlarged structural schematic diagram of the toggle assembly of this utility model;
[0022] Figure 4 This is a schematic diagram of the material discharge assembly structure of this utility model;
[0023] Figure 5 This is a partially enlarged structural diagram of the connecting component of this utility model.
[0024] In the diagram: 1. Frame; 2. Device housing; 21. Reserved slot; 3. Feed box; 4. Conveying assembly; 5. Material distribution guide assembly; 51. Material distribution plate; 52. Connecting rod; 521. Slider; 522. Compression spring; 523. Limit block; 53. Actuating assembly; 531. Control motor; 532. Pulley; 533. Rotary cam; 534. Connecting belt; 6. Cutting assembly; 61. Telescopic cylinder; 62. Fixing frame; 63. Cutting knife; 7. Discharge assembly; 71. Vibrating motor; 72. Guide plate; 73. Connecting assembly; 731. Moving block; 732. Connecting spring; 8. Collection assembly; 81. First collection box; 82. Second collection box; 9. Guide column. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Please see Figure 1-5 This utility model provides a technical solution: a dried chili cutting machine, including a frame 1 and a device housing 2 installed in the middle therein, and a feeding box 3 is fixed on one side of the top of the device housing 2 for feeding.
[0027] The conveying component 4 is located in the upper middle part of the outer casing 2 of the device and is used to convey the dried chili peppers after they have been fed in.
[0028] The material distribution and guiding component 5 is located above the conveying component 4 and is used to distribute and guide the batch of falling dried chilies. The material distribution and guiding component 5 moves up and down above the conveying component 4 to complete the shaking guidance, ensuring that the dried chilies do not cause serious blockage during the guiding process.
[0029] The cutting component 6 is fixed to the top of the other side of the device housing 2 and is used to cut the dried chili peppers during the conveying process.
[0030] The discharge component 7 is located below the top of the conveying component 4, and its two sides are connected to the inner wall of the device housing 2. It is used to guide and discharge the cut chili peppers conveyed by the conveying component 4.
[0031] The collecting component 8 is located at the top of the discharging component 7 and is used to collect the cut dried chilies. The collecting component 8 includes a first receiving box 81 and a second receiving box 82, which are respectively located directly below and in front of the top of the discharging component 7 and are used to collect chili seeds and dried chilies.
[0032] This application provides a dried chili cutting device with a vertically movable material distribution guide component 5. Specifically, in use, the entire device is first fixed in a suitable position by the frame 1. Then, a batch of chilies is fed through the feeding box 3 and falls above the conveying component 4 inside the outer shell 2 of the device. As the conveying component 4 conveys the chilies, the material distribution guide component 5, which moves back and forth, guides the chilies, causing the bottom of the chili conveyor belt cutting component 6 to be cut and fall above the discharge component 7. The chilies then fall into the collection component 8 for collection. During collection, the first receiving box 81 is used to collect the cut chili seeds, while the dried chilies fall into the second receiving box 82 for collection.
[0033] Among them, according to Figure 1 As shown, the conveying assembly 4 includes two rotating rollers and a conveyor belt. The two rotating rollers are connected by bearings on both sides inside the device housing 2. The top of one of the rotating rollers passes through the outer wall of the device housing 2 and is connected to the drive motor.
[0034] Specifically, during the transmission process, the drive motor needs to be started to rotate the rotating roller. When the roller rotates, the conveyor belt moves, which in turn moves the dried chili peppers at the top of the conveyor belt.
[0035] Furthermore, according to Figure 1-3 As shown, the material distribution guide component 5 includes a material distribution plate 51 and a connecting rod 52. The material distribution plates 51 are vertically and equally spaced above the conveying component 4. The top ends of the equally spaced material distribution plates 51 are connected by horizontally equally spaced connecting rods 52. The top ends of both sides of the connecting rod 52 pass through the reserved through slots 21 on the outer wall of the device housing 2, and a toggle component 53 is provided on one side for toggle operation. From the outside to the inside, the top ends of both sides of the connecting rod 52 are sequentially bearing a limit block 523 and a slider 521. The top end of the slider 521 is provided with a compression spring 522 connected to the inner wall of the reserved through slot 21. The bottom of the limit block 523 is provided with a toggle component 53 for toggle operation.
[0036] The actuating assembly 53 includes a control motor 531, a pulley 532, a rotary cam 533, and a connecting belt 534. The rotary cam 533 is located at the bottom of the limiting block 523, and a connecting shaft is eccentrically provided on its exterior. The pulley 532 is coaxially connected to the exterior of the connecting shaft. Adjacent pulleys 532 are connected by the connecting belt 534. The top of one of the pulleys 532 is provided with a control motor 531 for driving. The inner side of the rotary cam 533 is provided with a shaft that is connected to the bearing on the outer wall of the device housing 2.
[0037] When the chili peppers are conveyed by the conveyor assembly, the distribution plates 51, which are evenly spaced vertically above them, can divide the conveyed chili peppers. The divided dried chili peppers are then conveyed by the conveyor assembly, thus completing the distribution and conveying process. During the distribution process, the control motor 531 needs to be started, which drives the pulley 532 at its top to rotate. When the pulley 532 rotates, it drives the rotating cam 533 to rotate eccentrically. When it rotates eccentrically, it pushes the limit block 523 to move. As a result, the limit block 523 drives the connecting rod 52 to move up and down inside the reserved through slot 21, which in turn drives the distribution plates 51 to move up and down. This ensures that no blockage occurs when the dried chili peppers are conveyed in the distribution plates 51.
[0038] When the connecting rod 52 moves up and down, the slider 521 moves up and down inside the reserved slot 21, squeezing the compression spring 522. This allows the rotating cam 533 to descend under the reset action of the compression spring 522 when it is not under force on the connecting rod 52, thus completing the up and down movement.
[0039] Among them, according to Figure 3 As shown, the cutting assembly 6 includes a telescopic cylinder 61, a fixing frame 62, and a cutting blade 63. The fixing frame 62 is fixed to the top of the device housing 2 in a "U" shape, and two telescopic cylinders 61 are symmetrically arranged above it. The cutting blades 63 are installed at the bottom of the two telescopic cylinders 61. When cutting, the telescopic cylinders 61 need to be activated so that they drive the cutting blades 63 at their bottom to move up and down continuously, thereby completing the purpose of continuously cutting the dried chili peppers.
[0040] When cutting materials, according to Figure 5 As shown, the discharge assembly 7 includes a vibrating motor 71, a guide plate 72, and a connecting assembly 73. The top of the guide plate 72 is provided with the vibrating motor 71, and the two sides of the guide plate 72 are provided with the connecting assembly 73. The connecting assembly 73 is connected to the guide post 9 in the reserved groove in the inner wall of the device housing 2. The connecting assembly 73 includes a moving block 731 and a connecting spring 732. The connecting spring 732 is installed at the upper and lower positions of the moving block 731, and the guide post 9 is provided in the through hole between the connecting spring 732 and the moving block 731.
[0041] During feeding, the vibration motor 71 can be started, causing the entire guide plate 72 to vibrate. When the guide plate 72 vibrates, the moving block 731 moves up and down along the guide column 9 in the reserved groove on the inner wall of the device housing 2. This causes the guide plate 72 to continuously vibrate the dried chili peppers above it. As a result, the vibrated chili pepper seeds fall through the mesh on the guide plate 72 into the first receiving box 81, while the dried chili peppers fall through the top of the guide plate 72 into the second receiving box 82 for collection. The contents not described in detail in this specification are existing technologies known to those skilled in the art.
[0042] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A dried chili cutting machine, comprising a frame (1) and a device housing (2) installed in the middle therein, wherein a feeding box (3) is fixed to one side of the top of the device housing (2) for feeding; The conveying component (4) is located in the upper middle part of the device housing (2) and is used to convey the dried chili peppers after they are fed in. characterized in that Also includes; The material distribution guide component (5) is set above the conveying component (4) and is used to distribute and guide the batch of falling dried chili peppers. The material distribution guide component (5) moves up and down above the conveying component (4) to complete the shaking guide and ensure that the dried chili peppers do not cause serious blockage during the guiding process. The cutting component (6) is fixed to the top of the other side of the device housing (2) and is used to cut the dried chili peppers during the conveying process. The discharge component (7) is located below the top of the conveying component (4) and is connected to the inner wall of the device housing (2) on both sides. It is used to guide and discharge the cut chili peppers conveyed by the conveying component (4). The collecting component (8) is set at the top of the discharging component (7) and is used to collect the cut dried chili peppers. The collecting component (8) includes a first receiving box (81) and a second receiving box (82), which are respectively set directly below and in front of the top of the discharging component (7) and are used to collect chili seeds and dried chili peppers.
2. The dried chili cutting machine according to claim 1, characterized in that: The conveying assembly (4) includes two rotating rollers and a conveyor belt. The two rotating rollers are connected by bearings on both sides inside the device housing (2). The top of one of the rotating rollers passes through the outer wall of the device housing (2) and is connected to the drive motor.
3. A machine for cutting dried chillies as claimed in claim 1 wherein: The material distribution guide assembly (5) includes a material distribution plate (51) and a connecting rod (52). The material distribution plate (51) is vertically and equally spaced above the conveying assembly (4). The top ends of the equally spaced material distribution plates (51) are connected by horizontally equally spaced connecting rods (52). The top ends of both sides of the connecting rod (52) pass through the reserved through slot (21) on the outer wall of the device housing (2), and a toggle assembly (53) is provided on one side for toggle operation. The top ends of both sides of the connecting rod (52) are sequentially bearing a limit block (523) and a slider (521) from the outside to the inside. The top end of the slider (521) is provided with a compression spring (522) connected to the inner wall of the reserved through slot (21). The bottom of the limit block (523) is provided with a toggle assembly (53) for toggle operation.
4. A machine for chopping dry chillies as claimed in claim 3, wherein: The actuation assembly (53) includes a control motor (531), a pulley (532), a rotary cam (533), and a connecting belt (534). The rotary cam (533) is located at the bottom of the limiting block (523), and a connecting shaft is eccentrically provided on its exterior. The pulley (532) is coaxially connected to the exterior of the connecting shaft. Adjacent pulleys (532) are connected by the connecting belt (534). The top of one of the pulleys (532) is provided with a control motor (531) for driving. The inner side of the rotary cam (533) is provided with a shaft that is connected to the outer wall bearing of the device housing (2).
5. A machine for cutting dry chilies as claimed in claim 1, wherein: The cutting assembly (6) includes a telescopic cylinder (61), a fixing frame (62), and a cutting blade (63). The fixing frame (62) is fixed to the top of the device housing (2) in a "U" shape, and two telescopic cylinders (61) are symmetrically arranged above it. The cutting blade (63) is installed at the bottom of the two telescopic cylinders (61).
6. A machine for cutting dried red chillies as claimed in claim 1 wherein: The discharge assembly (7) includes a vibrating motor (71), a guide plate (72), and a connecting assembly (73). The top of the guide plate (72) is provided with a vibrating motor (71), and the two sides of the guide plate (72) are provided with connecting assemblies (73). The connecting assembly (73) is connected to the guide post (9) in the reserved groove in the inner wall of the device housing (2). The connecting assembly (73) includes a moving block (731) and a connecting spring (732). The connecting spring (732) is installed at the upper and lower positions of the moving block (731), and the guide post (9) is provided in the through hole between the connecting spring (732) and the moving block (731).
Citation Information
Patent Citations
Pepper cut-off machine
CN218476748U