Pepper curing machine
By setting a driving mechanism and a rotating part in the pepper ripening machine, the pepper fruits are rolled under the oven, which solves the problem of uneven heating of the fresh pepper fruits and achieves a more uniform heating effect and improved space efficiency.
Patent Information
- Application Number
- CN202422809609.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-18
AI Technical Summary
In the existing pepper ripening device, fresh pepper fruits are heated unevenly during transportation, which affects the quality of the pepper.
A pepper ripening machine is designed. By setting a driving mechanism and a rotating part, the pepper fruits are rolled at a certain angle under the oven to improve the uniformity of heating. The driving structure also reduces the external space occupied by the machine, making it easier to install and transport.
It achieves more uniform heating of pepper fruits, improves the quality of pepper, and reduces the space occupied by the equipment, making it easier to use and transport in limited environments.
Smart Images

Figure CN223322936U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of pepper processing, and in particular to a pepper ripening machine. Background Art
[0002] Pepper, the fruit of the Piper genus in the Piperaceae family, is a commonly used spice and seasoning with a unique pungent flavor and aroma that enhances the flavor of food. Freshly harvested pepper berries are ripened, then hand-kneaded to remove the peel and pectin, before being dried naturally in the sun to produce pepper seeds.
[0003] Currently, most pepper ripening devices use conveyor belts and microwave ovens to ripen fresh pepper fruits. However, the fresh pepper fruits are heated unevenly during transportation, which affects the quality of the pepper. Utility Model Content
[0004] The present application provides a pepper ripening machine, which can heat fresh pepper fruits more evenly while reducing the external space occupied by the pepper ripening machine.
[0005] In the first aspect, the present application provides a pepper ripening machine, comprising a machine body, a conveyor belt, an oven, multiple mounting seats and a driving mechanism, a feeding hopper is provided on the top of the machine body, and a discharging hopper is provided on the bottom; the conveyor belt is provided inside the machine body, the input end of the conveyor belt is correspondingly located below the feeding hopper, and the output end of the conveyor belt is correspondingly located above the discharging hopper; the oven is provided inside the machine body and above the conveyor belt; multiple mounting seats are arranged on the outer surface of the conveyor belt, and the multiple mounting seats are all provided with a material receiving assembly, which includes a rotating part, and the rotating part has a receiving surface for receiving the pepper fruit; the driving mechanism is connected to the conveyor belt; wherein, the inner wall of the machine body is provided with a driving structure for connecting to the material receiving assembly that is movable just below the oven, so that the rotating part rotates and the pepper fruit can roll.
[0006] In some embodiments, the rotating part includes two rotating columns arranged side by side, and the parts of the two rotating columns close to each other form a receiving surface; the material receiving assembly also includes a first fixing member, a second fixing member and two sliding rods, the second fixing member is rotatably connected to the two rotating columns, the two ends of the two sliding rods are respectively connected to the first fixing member and the second fixing member, the two sliding rods are slidably connected to a sliding block, the sliding block is provided with a first elastic member connected to the first fixing member, the two rotating columns are provided with a first spiral groove, and the sliding block is provided with an insertion rod inserted into the first spiral groove; the driving structure includes two first avoidance grooves and two first stop members, the two first avoidance grooves are respectively The two first stoppers are arranged on the two opposite inner side walls of the machine body, and the two first avoidance grooves are respectively movably arranged. The two first avoidance grooves are each provided with a second elastic member connected to the first stopper. The end of the first stopper away from the second elastic member is provided with a first inclined surface corresponding to the sliding block. The elastic coefficient of the second elastic member is greater than the elastic coefficient of the first elastic member, so that after the mounting seat moves to the bottom of the oven so that the sliding block abuts the first inclined surface, the sliding block can slide from the end of the sliding rod close to the first fixed member to the end of the sliding rod close to the second fixed member, and the two rotating columns can rotate in the same direction; a ball is provided at the end of the insertion rod inserted into the first spiral groove.
[0007] In some embodiments, the rotating part includes a rotating rod; the material connecting assembly also includes a first mounting piece, a second mounting piece, a fixed rod and two mounting posts, the second mounting piece is rotatably connected to the rotating rod, the two ends of the fixed rod are respectively connected to the first mounting piece and the second mounting piece, the fixed rod is slidably connected to a slide seat, the slide seat is provided with a third elastic piece connected to the first mounting piece, the rotating rod is provided with a second spiral groove, the slide seat is provided with a plug-in post inserted into the second spiral groove, the diameter of the two mounting posts is larger than the diameter of the rotating rod, the two mounting posts are fixedly connected to the second mounting piece, the rotating rod is located between the two mounting posts and is arranged side by side with the two mounting posts, and the two mounting posts and the rotating rod are mutually connected. The close part is formed with a supporting surface; the driving structure also includes a second avoidance groove and a second stop member, the second avoidance groove is provided on the inner wall of the machine body, the second stop member is movably provided in the second avoidance groove, and a fourth elastic member connected to the second stop member is provided in the second avoidance groove, and the second stop member is provided with a second inclined surface corresponding to the slide seat at one end away from the fourth elastic member, and the elastic coefficient of the fourth elastic member is greater than the elastic coefficient of the third elastic member, so that after the mounting seat moves to the bottom of the oven so that the slide seat abuts the second inclined surface, the slide seat can slide from the end of the fixed rod close to the first mounting member to the end of the fixed rod close to the second mounting member, and the rotating rod can rotate.
[0008] In some embodiments, a cleaning mechanism is provided inside the body and is located below the conveyor belt. The cleaning mechanism includes a cleaning part, which abuts the receiving surface; the cleaning mechanism also includes a conveyor belt, which is connected to a driving mechanism so that the movement direction of the conveyor belt is the same as the movement direction of the conveyor belt, and the cleaning part is provided on the outer surface of the conveyor belt; the cleaning mechanism also includes a plurality of cleaning rods, which are arranged on the outer surface of the conveyor belt, and the cleaning part includes a plurality of spherical capsules, which are provided with a plurality of bristles, and the spherical capsules are provided at the end of the cleaning rod away from the conveyor belt.
[0009] Based on the pepper ripening machine of the embodiment of the present application, by providing a driving mechanism and a rotating part, the pepper fruits can be rolled at a certain angle when located under the oven, thereby improving the uniformity of heating of the pepper fruits; the driving mechanism is arranged on the inner wall of the machine body, which can reduce the external space occupied by the pepper ripening machine, facilitate the installation and use of the pepper ripening machine in an environment with limited space, and also facilitate the transportation of the pepper ripening machine. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without paying any creative work.
[0011] Figure 1 This is a schematic diagram of the structure of the pepper ripening machine for this application;
[0012] Figure 2 for Figure 1 A schematic diagram of the enlarged structure of the middle part A;
[0013] Figure 3 for Figure 2 A side view of the connecting component, the rotating part and the driving structure;
[0014] Figure 4 This is a side structural schematic diagram of a material receiving assembly, a rotating portion, and a driving structure in another embodiment of the present application;
[0015] Figure 5 for Figure 1 Schematic diagram of the enlarged structure of part B in the middle.
[0016] Description of reference numerals:
[0017] 1. Machine body; 2. Oven; 3. Feed hopper; 4. Discharge hopper; 5. Pepper fruit; 6. Rotating column; 7. Slide rod; 8. Sliding block; 9. Mounting seat; 10. Conveyor belt; 11. Conveyor belt; 12. Spherical capsule; 121. Bristles; 13. Rotating rod; 14. Mounting column; 15. Second stopper; 16. Second inclined surface; 17. Slide seat; 18. First stopper; 19. First inclined surface; 20. First fixing member; 21. Second fixing member; 22. First mounting member; 23. Second mounting member; 24. Ball bearing.
[0018] The realization of the objectives, functional features and advantages of this application will be further explained in conjunction with embodiments and with reference to the accompanying drawings. DETAILED DESCRIPTION
[0019] In order to make the purpose, technical solutions and advantages of this application more clearly understood, the present application is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this application and are not intended to limit this application.
[0020] See also Figures 1 to 5 The present application proposes a pepper ripening machine, comprising a machine body 1, a conveyor belt 10, an oven 2, a plurality of mounting seats 9 and a driving mechanism, a feeding hopper 3 is provided on the top of the machine body 1, and a discharging hopper 4 is provided on the bottom; the conveyor belt 10 is arranged inside the machine body 1, and the input end of the conveyor belt 10 is correspondingly located below the feeding hopper 3, and the output end of the conveyor belt 10 is correspondingly located above the discharging hopper 4; the oven 2 is arranged inside the machine body 1 and above the conveyor belt 10; a plurality of mounting seats 9 are arranged on the outer surface of the conveyor belt 10, and the plurality of mounting seats 9 are all provided with a material receiving assembly, which includes a rotating part, and the rotating part has a receiving surface for receiving the pepper fruit 5; the driving mechanism is connected to the conveyor belt 10; wherein, the inner wall of the machine body 1 is provided with a driving structure for connecting to the material receiving assembly movable just below the oven 2, so that the rotating part rotates and the pepper fruit 5 can roll.
[0021] In the embodiment provided herein, fresh pepper fruits are poured into the hopper 3 and fall onto the receiving surface of the rotating portion. The drive mechanism may include a drive motor. When the drive motor is activated, it activates the conveyor belt 10, which moves counterclockwise, carrying multiple mounting blocks 9 and multiple material receiving assemblies from below the hopper 3 toward directly below the oven 2. When the material receiving assemblies move completely below the oven 2, they connect to the driving structure, which in turn causes the rotating portion to rotate. This rotation of the rotating portion causes the pepper fruits 5 to tumble a certain angle on the receiving surface, exposing a larger portion of the surface of the pepper fruits 5 directly below the oven 2, thereby ensuring more even heating of the pepper fruits 5. When the mounting blocks 9 and material receiving assemblies move above the discharge hopper 4, the pepper fruits 5 on the receiving surface fall into the discharge hopper 4 as the conveyor belt 10 continues to operate. Among them, the driving structure is arranged on the inner wall of the body 1, which can reduce the external space occupied by the pepper ripening machine, facilitate the installation and use of the pepper ripening machine in an environment with limited space, and also facilitate the transportation of the pepper ripening machine.
[0022] In some embodiments of this application, please refer to Figures 1 to 3 The rotating part includes two rotating columns 6 arranged side by side, and the parts of the two rotating columns 6 close to each other form a receiving surface.
[0023] The material receiving assembly also includes a first fixing member 20, a second fixing member 21 and two sliding rods 7. The second fixing member 21 is rotatably connected to the two rotating columns 6. The two ends of the two sliding rods 7 are respectively connected to the first fixing member 20 and the second fixing member 21. The two sliding rods 7 are both slidably connected to a sliding block 8. The sliding block 8 is provided with a first elastic member connected to the first fixing member 20. The two rotating columns 6 are both provided with a first spiral groove, and the sliding block 8 is provided with an insertion rod inserted into the first spiral groove.
[0024] The driving structure includes two first avoidance grooves and two first low stops 18. The two first avoidance grooves are respectively provided on the two opposite inner walls of the body 1. The two first low stops 18 are respectively movably provided in the two first avoidance grooves. The two first avoidance grooves are each provided with a second elastic member connected to the first low stops 18. The end of the first low stop 18 away from the second elastic member is provided with a first inclined surface corresponding to the sliding block 8. The elastic coefficient of the second elastic member is greater than the elastic coefficient of the first elastic member, so that after the mounting seat 9 moves to the bottom of the oven 2 so that the sliding block 8 abuts the first inclined surface, the sliding block 8 can slide from the end of the slide rod 7 close to the first fixed member 20 to the end of the slide rod 7 close to the second fixed member 21, and the two rotating columns 6 can rotate in the same direction.
[0025] When the mounting seat 9 and the material receiving assembly move directly below the oven 2, the sliding block 8 abuts the first stop member. Due to the larger elastic modulus of the second elastic member, as the conveyor belt 10 continues to operate, the sliding block 8 moves relative to the slide bar 7 and the rotating column 6, sliding from the end of the slide bar 7 closest to the first fixed member 20 to the other end of the slide bar 7. During the movement of the mounting seat 9, the first fixed member 20 first reaches directly below the oven 2. As the sliding block 8 slides on the slide bar 7, the insertion rod on the sliding block 8 remains inserted into the first spiral groove of the rotating column 6, thereby causing the rotating column 6 to rotate. Because the first spiral grooves of the two rotating columns 6 rotate in the same direction, the insertion rod is located below the rotating column 6 and inserted into the first spiral groove from below, allowing the two rotating columns 6 to rotate in the same direction. This allows the pepper fruits 5 on the receiving surfaces of the two rotating columns 6 to roll a certain angle, improving the uniformity of the heating of the pepper fruits 5.
[0026] When the sliding block 8 reaches the end of the slide bar 7 near the second fixing member 21, it remains stationary relative to the slide bar 7 and the rotating column 6. As the conveyor belt 10 continues to operate, the first retaining member enters the first escape groove and disengages the sliding block 8. Under the action of the first elastic member, the sliding block 8 quickly moves to its initial position on the slide bar 7. As the mounting seat 9 and the material receiving assembly move gradually away from the drive mechanism, the first retaining member moves out of the first escape groove, and its first inclined surface aligns with the sliding block 8 on the next mounting seat 9. This allows two rotating columns 6 on multiple mounting seats 9 to rotate in the same direction.
[0027] It is understood that multiple driving structures can be provided, corresponding to the oven 2 and spaced apart on the inner wall of the body 1, with the distance between two adjacent driving structures being greater than the distance between the first fixing member 20 and the second fixing member 21. In this way, the rotating column 6 on each mounting seat 9 can rotate multiple times under the entire bottom of the oven 2, further improving the uniformity of heating of the pepper fruits 5.
[0028] Furthermore, a ball is provided at one end of the rod inserted into the first spiral groove. The provision of the ball can reduce the friction resistance between the rod and the first spiral groove, making it easier for the rod to move in the first spiral groove and for the rotating column 6 to rotate.
[0029] In other embodiments of this application, please refer to Figure 4 , the rotating portion may further include a rotating rod 13;
[0030] The material receiving assembly may further include a first mounting member 22, a second mounting member 23, a fixing rod and two mounting posts 14, the second mounting member 23 being rotatably connected to the rotating rod 13, the two ends of the fixing rod being respectively connected to the first mounting member 22 and the second mounting member 23, the fixing rod being slidably connected to a slide 17, the slide 17 being provided with a third elastic member connected to the first mounting member 22, the rotating rod 13 being provided with a second spiral groove, the slide 17 being provided with a plug inserted into the second spiral groove, the diameter of the two mounting posts 14 being larger than the diameter of the rotating rod 13, the two mounting posts 14 being fixedly connected to the second mounting member 23, the rotating rod 13 being located between the two mounting posts 14 and being arranged side by side with the two mounting posts 14, and the portions of the two mounting posts 14 and the rotating rod 13 close to each other forming a receiving surface;
[0031] The driving structure can also include a second avoidance groove and a second stop member 15. The second avoidance groove is provided on the inner wall of the body 1, and the second stop member 15 is movably provided in the second avoidance groove. A fourth elastic member connected to the second stop member 15 is provided in the second avoidance groove, and the end of the second stop member 15 away from the fourth elastic member is provided with a second inclined surface 16 corresponding to the slide 17. The elastic coefficient of the fourth elastic member is greater than the elastic coefficient of the third elastic member, so that after the mounting seat 9 moves to the bottom of the oven 2 so that the slide 17 abuts the second inclined surface 16, the slide 17 can slide from the end of the fixed rod close to the first mounting member 22 to the end of the fixed rod close to the second mounting member 23, and the rotating rod 13 can rotate.
[0032] When the mounting seat 9 and the material receiving assembly move to the bottom of the oven 2, the slide 17 will abut the second stop member 15. Since the elastic coefficient of the fourth elastic member is relatively large, as the conveyor belt 10 continues to run, the slide 17 will move relative to the fixed rod and the rotary stem, and the slide 17 slides from the end of the fixed rod close to the first mounting member 22 to the other end of the fixed rod. During the movement of the mounting seat 9, the first mounting member 22 first arrives directly below the oven 2. During the sliding of the slide 17 on the fixed rod, the insertion column on the slide 17 is always inserted into the second spiral groove of the rotating rod 13, thereby enabling the rotating rod 13 to rotate. Since the mounting columns 14 on both sides of the rotating rod 13 are fixed and the diameter of the two mounting columns 14 is larger than the diameter of the rotating rod 13, it can be achieved that during the rotation of the rotating rod 13, the pepper fruits 5 on the receiving surface can roll over. The two mounting posts 14 block the pepper fruit 5, which will be located between the two mounting posts 14 and can reduce the probability of the pepper fruit 5 falling off the receiving surface. The arrangement of the two mounting posts and the rotating rod 13 can also increase the area of the receiving surface, thereby being able to receive more pepper fruits 5 and allowing more pepper fruits 5 to roll over.
[0033] When the slide 17 reaches the end of the fixed rod near the second mounting member 23, it remains stationary relative to the fixed rod and the rotating rod 13. As the conveyor belt 10 continues to operate, the second retaining member 15 enters the second escape groove and disengages the slide 17. Under the action of the third elastic member, the slide 17 quickly moves to its initial position on the fixed rod. As the mounting seat 9 and the material receiving assembly gradually move away from the drive mechanism, the second retaining member 15 moves out of the second escape groove, and its second inclined surface 16 aligns with the slide 17 on the next mounting seat 9. This allows the rotating rods 13 on multiple mounting seats 9 to rotate.
[0034] In some embodiments of this application, please refer to Figure 1 A cleaning mechanism is provided inside the machine body 1 and is located below the conveyor belt 10. The cleaning mechanism includes a cleaning portion that abuts against the receiving surface.
[0035] When the conveyor belt 10 is running, multiple mounting seats 9 and rotating parts will continuously pass through the cleaning mechanism in turn. The cleaning part will move on the receiving surface relative to the conveyor belt 10, thereby cleaning the pepper juice on the receiving surface, and also cleaning the dust and impurities on the receiving surface, reducing the possibility of juice or dust impurities adhering to the pepper fruit 5, and improving the cleanliness of the pepper fruit 5.
[0036] Furthermore, the cleaning mechanism also includes a conveyor belt 11 , which is connected to a driving mechanism so that the moving direction of the conveyor belt 11 is the same as the moving direction of the conveyor belt 10 , and the cleaning portion is provided on the outer surface of the conveyor belt 11 .
[0037] The driving mechanism can be connected to the conveyor belt 11 through a transmission structure, and the transmission structure can include a synchronous belt drive. Through the synchronous belt drive, the movement directions of the conveyor belt 10 and the conveyor belt 11 can be made the same, and the surface movement directions of the conveyor belt 10 and the transmission belt below it that are close to each other can be made opposite. In this way, the movement speed of the cleaning part relative to the conveyor belt 10 can be increased, the cleaning effect of the cleaning part on the receiving surface can be improved, and the cleanliness of the pepper fruit 5 can be further improved.
[0038] For further information, see Figure 5 The cleaning mechanism also includes a plurality of cleaning rods, which are arranged on the outer surface of the conveyor belt 11. The cleaning part includes a plurality of spherical capsules 12, on which a plurality of bristles 121 are provided. The spherical capsules 12 are arranged at one end of the cleaning rod away from the conveyor belt 11.
[0039] The spherical capsule 12 is in a filled state. When the spherical capsule 12 cleans the receiving surface, it can stick to the receiving surface and can contact more parts of the receiving surface after being squeezed and deformed, which can more effectively clean the receiving surface and further improve the cleanliness of the pepper fruit 5.
[0040] Working principle: When in use, fresh pepper fruits are poured into the feeding hopper 3, and the fresh pepper fruits will fall onto the receiving surface. The driving mechanism can make the conveyor belt 10 run. The conveyor belt 10 will move in the counterclockwise direction and carry multiple mounting seats 9 and multiple material receiving components to continuously move from the bottom of the feeding hopper 3 to the bottom of the oven 2. When the mounting seats 9 and the material receiving components move to the bottom of the oven 2, the sliding block 8 will abut the first stop member. As the conveyor belt 10 continues to run, the sliding block 8 will move relative to the slide bar 7 and the rotating column 6. The sliding block 8 slides from the end of the slide bar 7 close to the first fixed member 20 to the other end of the slide bar 7. In the process of the sliding block 8 sliding on the slide bar 7, the insertion rod on the sliding block 8 is always inserted into the first spiral groove of the rotating column 6, which can make the two rotating columns 6 rotate in the same direction, and then make the pepper fruits 5 on the receiving surfaces of the two rotating columns 6 roll a certain angle, thereby improving the heating uniformity of the pepper fruits 5.
[0041] The same or similar numbers in the drawings of this embodiment correspond to the same or similar parts; in the description of this application, it should be understood that if the terms "upper", "lower", "left", "right", etc. indicate an orientation or position relationship, they are based on the orientation or position relationship shown in the drawings. This is only for the convenience of describing this application and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operate in a specific orientation. Therefore, the terms describing the position relationship in the drawings are only used for illustrative purposes and cannot be understood as a limitation on this patent. For ordinary technicians in this field, the specific meanings of the above terms can be understood according to specific circumstances.
[0042] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements and improvements made within the spirit and principles of the present application should be included in the scope of protection of the present application.
Claims
1. A pepper ripening machine, characterized in that: include: The machine body (1) is provided with a feeding hopper (3) at the top and a discharging hopper (4) at the bottom; A conveyor belt (10) is provided inside the machine body (1), wherein the input end of the conveyor belt (10) is correspondingly located below the feeding hopper (3), and the output end of the conveyor belt (10) is correspondingly located above the discharging hopper (4); An oven (2) is arranged inside the machine body (1) and above the conveyor belt (10); A plurality of mounting seats (9) are arranged on the outer surface of the conveyor belt (10), and each of the plurality of mounting seats (9) is provided with a material receiving assembly, wherein the material receiving assembly includes a rotating portion, and the rotating portion has a receiving surface for receiving the pepper fruit (5); and A driving mechanism connected to the conveyor belt (10); The inner wall of the machine body (1) is provided with a driving structure for connecting to the material receiving assembly that moves directly below the oven (2) so as to rotate the rotating part and enable the pepper fruit (5) to roll.
2. The pepper ripening machine according to claim 1, characterized in that The rotating part comprises two rotating columns (6) arranged side by side, and the receiving surface is formed at the parts of the two rotating columns (6) close to each other; The material receiving assembly further comprises a first fixing member (20), a second fixing member (21) and two sliding rods (7), wherein the second fixing member (21) is rotatably connected to the two rotating columns (6), and both ends of the two sliding rods (7) are respectively connected to the first fixing member (20) and the second fixing member (21), and the two sliding rods (7) are slidably connected to a sliding block (8), wherein the sliding block (8) is provided with a first elastic member connected to the first fixing member (20), and the two rotating columns (6) are provided with a first spiral groove, and the sliding block (8) is provided with an insertion rod inserted into the first spiral groove; The driving structure includes two first avoidance grooves and two first stoppers (18), the two first avoidance grooves are respectively provided on the two opposite inner side walls of the machine body (1), the two first stoppers (18) are respectively movably provided in the two first avoidance grooves, and the two first avoidance grooves are each provided with a second elastic member connected to the first stopper (18), and the end of the first stopper (18) away from the second elastic member is provided with a first inclined surface corresponding to the sliding block (8), and the elastic coefficient of the second elastic member is greater than the elastic coefficient of the first elastic member, so that after the mounting seat (9) moves to the bottom of the oven (2) so that the sliding block (8) abuts the first inclined surface, the sliding block (8) can slide from the end of the sliding rod (7) close to the first fixed member (20) to the end of the sliding rod (7) close to the second fixed member (21), and the two rotating columns (6) can rotate in the same direction.
3. The pepper ripening machine according to claim 1, characterized in that: The rotating part includes a rotating rod (13); The material receiving assembly also includes a first mounting member (22), a second mounting member (23), a fixed rod and two mounting posts (14), the second mounting member (23) is rotatably connected to the rotating rod (13), the two ends of the fixed rod are respectively connected to the first mounting member (22) and the second mounting member (23), the fixed rod is slidably connected to a slide seat (17), the slide seat (17) is provided with a third elastic member connected to the first mounting member (22), the rotating rod (13) is provided with a second spiral groove, the slide seat (17) is provided with a plug inserted into the second spiral groove, the diameter of the two mounting posts (14) is larger than the diameter of the rotating rod (13), the two mounting posts (14) are fixedly connected to the second mounting member (23), the rotating rod (13) is located between the two mounting posts (14) and is arranged side by side with the two mounting posts (14), and the parts of the two mounting posts (14) and the rotating rod (13) close to each other form the receiving surface; The driving structure also includes a second avoidance groove and a second stopper (15), wherein the second avoidance groove is provided on the inner side wall of the machine body (1), and the second stopper (15) is movably provided in the second avoidance groove, and a fourth elastic member connected to the second stopper (15) is provided in the second avoidance groove, and the second stopper (15) is provided with a second inclined surface (16) corresponding to the slide seat (17) at one end away from the fourth elastic member, and the elastic coefficient of the fourth elastic member is greater than the elastic coefficient of the third elastic member, so that after the mounting seat (9) moves to the bottom of the oven (2) so that the slide seat (17) abuts the second inclined surface (16), the slide seat (17) can slide from the end of the fixed rod close to the first mounting member (22) to the end of the fixed rod close to the second mounting member (23), and the rotating rod (13) can be rotated.
4. The pepper ripening machine according to claim 2, characterized in that: One end of the insertion rod inserted into the first spiral groove is provided with a ball (24).
5. The pepper ripening machine according to claim 1, characterized in that: A cleaning mechanism is provided inside the machine body (1) and is located below the conveyor belt (10). The cleaning mechanism includes a cleaning portion, and the cleaning portion abuts against the receiving surface.
6. The pepper ripening machine according to claim 5, characterized in that: The cleaning mechanism further comprises a conveyor belt (11), wherein the conveyor belt (11) is connected to the driving mechanism so that the moving direction of the conveyor belt (11) is the same as the moving direction of the conveyor belt (10), and the cleaning portion is arranged on the outer surface of the conveyor belt (11).
7. The pepper ripening machine according to claim 6, characterized in that: The cleaning mechanism further comprises a plurality of cleaning rods, which are arranged on the outer surface of the conveyor belt (11); the cleaning portion comprises a plurality of spherical capsules (12), on which a plurality of bristles (121) are arranged; and the spherical capsules (12) are arranged at one end of the cleaning rod away from the conveyor belt (11).