Bean peeling machine
By designing a bean peeling machine, an automated batch peeling of bean curd is achieved by using a motor-driven rolling shaft and a tray groove structure. This solves the problem of time-consuming and labor-intensive manual rolling, improves efficiency, and reduces costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU UNIV OF SCI & TECH
- Filing Date
- 2025-09-04
- Publication Date
- 2026-07-24
AI Technical Summary
The current technology for peeling bean caterpillars is time-consuming, labor-intensive, inefficient, and costly, and the manual rolling method is physically demanding.
Design a bean antler peeling machine, including bean antler discharge, rolling peeling, conveying and cleaning mechanisms. The machine uses a motor to drive the rolling shaft to perform reciprocating linear motion, and combines the groove structure on the pallet to achieve automatic arrangement and rolling peeling.
It has enabled automated batch peeling of bean antlers, reducing labor intensity, improving peeling efficiency, and lowering costs.
Smart Images

Figure CN224539448U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of bean goose processing technology, specifically relating to a bean goose peeling machine. Background Technology
[0002] Soybean caterpillars are the larvae of the soybean hawk moth, commonly known as soybean green caterpillars. Although soybean caterpillars are harmful to soybean plants and are their natural enemies, they are non-toxic and harmless to humans. Moreover, their flesh is rich in high-protein and other nutrients, and when made into delicious dishes, they taste wonderful. They also have special therapeutic effects on treating stomach cold and malnutrition.
[0003] The current method typically involves soaking and suffocating the bean weevils in water before consumption, then washing them clean, and finally using a rolling pin to roll out the flesh from head to tail. This manual method of peeling bean weevils is time-consuming, labor-intensive, costly, and inefficient. Utility Model Content
[0004] The purpose of this invention is to provide a bean peeling machine that can perform small-scale bean peeling, effectively reducing the labor intensity of bean peeling, improving peeling efficiency, and reducing costs.
[0005] The specific technical solution adopted by this utility model is as follows:
[0006] A bean goose peeling machine includes a frame on which a bean goose discharge mechanism, a bean goose rolling peeling mechanism, a bean goose conveying mechanism, a bean goose skin cleaning mechanism, and a meat holding box are installed.
[0007] The bean pod discharge mechanism is used to discharge the bean pods evenly.
[0008] The bean pod discharge mechanism includes a storage box fixedly connected to the front end of the upper side of the frame and a bean pod conveyor belt located below the storage box. A feeding port is provided below the storage box.
[0009] The bean cord conveying mechanism is used to receive the bean cords discharged by the bean cord discharge mechanism and transport the bean cords to the bean cord rolling and peeling mechanism for peeling.
[0010] The bean-shaped conveying mechanism includes a base plate, which is slidably connected to the frame. An electric rotary table is mounted on the base plate, and a tray is mounted on the electric rotary table. The tray has several grooves for placing bean-shaped objects.
[0011] A second motor is fixedly connected to the base plate, a gear is fixedly connected to the output end of the second motor, and a rack that meshes with the gear is fixedly connected to the frame.
[0012] The bean pod rolling and peeling mechanism is used to roll and peel the bean pods discharged from the bean pod discharge mechanism.
[0013] The bean curd rolling peeling mechanism includes a base fixedly connected to the upper rear end of the frame, a crank drive mechanism fixedly connected to the upper rear end of the base, guide rails fixedly connected to both sides of the base, sliders slidably connected to both guide rails, and a rolling shaft rotatably connected between the two sliders.
[0014] The meat container is fixedly connected to the frame.
[0015] Furthermore, a sieve box is provided on the upper side of the storage box for initial screening of the bean pods, and a vibration motor is fixedly connected to the side wall of the sieve box.
[0016] Furthermore, the bean conveyor belt includes a motor three fixedly connected to the upper side of the frame, a slide plate and two side plates. Two pulleys are rotatably connected between the two side plates. A perforated friction belt located below the storage box is driven to the outer side of the two pulleys. A driving sprocket two is fixedly connected to the output end of the motor three. A driven sprocket two is fixedly connected to one end of one of the pulleys. The driven sprocket two and the driving sprocket two are driven to each other by a chain two.
[0017] The rear end of the shaped hole friction strip is inclined upward, and multiple shaped holes are formed on the shaped hole friction strip.
[0018] Furthermore, a sliding plate is fixedly connected to the frame at a position below the rear end of the shaped hole friction strip, and the rear end of the sliding plate is inclined downward.
[0019] Furthermore, a baffle located at the rear of the storage bin is also fixedly connected to the frame.
[0020] Furthermore, the tray includes a main board and multiple movable boards. The main board is fixedly connected to an electric rotary table. The grooves on the multiple movable boards have different widths. An installation groove is provided inside the main board, and the movable boards are detachably fixedly connected inside the installation groove.
[0021] Furthermore, the rolling shaft is provided with a rolling groove that matches the groove of the support plate.
[0022] Furthermore, the bean curd skin cleaning mechanism includes a motor four fixedly connected to the frame and two bearings two with seats. A brush is rotatably connected between the two bearings two, and the output end of the motor four is connected to the brush in a transmission connection.
[0023] The technical effects achieved by this utility model are as follows:
[0024] This utility model discloses a bean peeling machine. A motor drives a rolling shaft in reciprocating linear motion to peel the beans. Multiple grooves are set on the tray, allowing for simultaneous peeling of multiple beans. Compared to manual bean rolling, its design is more reasonable and easier to operate. It can automatically arrange and roll the beans for peeling, enabling batch peeling. It can also be used for small-scale bean peeling, effectively reducing labor intensity, improving peeling efficiency, and lowering costs. Attached Figure Description
[0025] Figure 1 This is a schematic diagram of the structure of this utility model;
[0026] Figure 2 This is a structural schematic diagram from another perspective of this utility model;
[0027] Figure 3 This is a side view of the structure of this utility model;
[0028] Figure 4 This is a top view of the structure of this utility model;
[0029] Figure 5 This is a side view of the structure of the perforated friction belt of this utility model;
[0030] Figure 6 This is a schematic diagram of the improved pallet structure of this utility model;
[0031] Figure 7 This is an exploded view of the improved pallet structure of this utility model.
[0032] The attached diagram lists the components represented by each number as follows:
[0033] 1. Base; 2. Motor 1; 3. Drive sprocket 1; 4. Chain 1; 5. Driven sprocket 1; 6. Output shaft; 7. Coupling; 8. Bearing 1 with mounting plate; 9. Crank body; 10. Connecting rod; 11. Slider 1; 12. Guide rail 1; 13. Roller shaft; 14. Support plate; 15. Electric rotary table; 16. Base plate; 17. Slider 2; 18. Guide rail 2; 19. Gear; 20. Rack; 21. 21. Motor 2; 22. Storage bin; 23. Friction belt with shaped hole; 24. Driven sprocket 2; 25. Chain 2; 26. Drive sprocket 2; 27. Motor 3; 28. Slide plate; 29. Baffle; 30. Meat container; 31. Frame; 32. Pulley; 33. Bearing 2 with seat; 34. Brush; 35. Motor 4; 36. Screen box; 37. Vibrating motor; 38. Main body; 39. Movable plate. Detailed Implementation
[0034] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0035] like Figures 1-7 As shown, a bean antler peeling machine includes a frame 31, on which a bean antler discharge mechanism, a bean antler rolling peeling mechanism, a bean antler conveying mechanism, a bean antler skin cleaning mechanism, and a meat holding box 30 are installed.
[0036] Among them, the bean pod discharge mechanism is used to discharge the bean pods evenly;
[0037] like Figures 1-5 As shown, in some embodiments, the bean pod discharge mechanism includes a storage box 22 fixedly connected to the upper front end of the frame 31 and a bean pod conveyor belt located below the storage box 22. A feeding port is provided below the storage box 22, and a sieve box 36 is provided on the upper side of the storage box 22 for initial screening of the bean pods. A vibration motor 37 is fixedly connected to the side wall of the sieve box 36 for applying vibration force to the sieve box 36. The screened bean pods enter the storage box 22 and are then discharged from the lower end of the storage box 22 onto the bean pod conveyor belt.
[0038] Specifically, such as Figures 1-2 and Figure 5 As shown, the bean conveyor belt includes a motor 27, a slide plate 28, and two side plates fixedly connected to the upper side of the frame 31. Two pulleys 32 are rotatably connected between the two side plates. The outer sides of the two pulleys 32 are connected to a perforated friction belt 23 located below the storage box 22. The area between the feeding port of the storage box 22 and the slider 11 is the filling area. The output end of the motor 27 is fixedly connected to a drive sprocket 26. One end of one of the pulleys 32 is fixedly connected to a driven sprocket 24. The driven sprocket 24 and the drive sprocket 26 are connected by a chain 25. At this time, by starting the motor 27, rotational kinetic energy can be applied to the perforated friction belt 23, causing the perforated friction belt 23 to move and move the bean balls falling on the perforated friction belt 23.
[0039] To ensure the uniformity of the bean pellet discharge to the bean pellet conveying mechanism, the perforated friction belt 23 has a certain inclination angle, that is, the rear end of the perforated friction belt 23 is inclined upward, and multiple perforations are opened on the perforated friction belt 23. The size of the perforations is preferably such that each perforation can be filled with one bean pellet. At this time, under the action of gravity, only the bean pellets that have entered the perforation can be moved backward by the perforated friction belt 23, and the rest of the bean pellets fall back into the filling area below the storage box 22.
[0040] Meanwhile, a slide plate 28 is fixedly connected to the frame 31 at the lower rear end of the hole friction belt 23. The rear end of the slide plate 28 is inclined downward, and the bean balls discharged from the hole friction belt 23 fall onto the slide plate 28 and roll down, thereby reducing the height difference between the bean balls when they are discharged and the bean ball conveying mechanism.
[0041] Meanwhile, a baffle 29 located behind the storage box 22 is fixedly connected to the frame 31. Excess bean pellets fall back into the filling area under the action of gravity and the obstruction of the baffle 29.
[0042] It should be noted that pulley 32 is mounted on the side plate via bearings, driven sprocket 24 is connected to pulley 32 via a key, and driving sprocket 26 is connected to the output end of motor 3 27 via a key.
[0043] Among them, the bean cord conveying mechanism is used to evenly receive the bean cords discharged by the bean cord discharge mechanism and transport the bean cords to the bean cord rolling and peeling mechanism for peeling.
[0044] like Figures 1-3 As shown, the bean conveying mechanism includes a base plate 16, which is slidably connected to the frame 31. Specifically, the sliding method is that guide rails 18 are fixedly connected to both sides of the frame 31, and four sliders 17 are fixedly connected to the lower side of the base plate 16. The sliders 17 are slidably connected to the guide rails 18 to ensure the sliding stability of the base plate 16.
[0045] An electric rotary table 15 is installed on the base plate 16, and a tray 14 is installed on the electric rotary table 15. The tray 14 is provided with several grooves for placing bean curd. The bean curd discharged from the slide plate 28 can fall into the grooves for limiting. The electric rotary table 15 is used to drive the tray 14 to rotate horizontally. When the bean curd is discharged from the slide plate 28, the tray 14 can be rotated so that the groove axis is perpendicular to the length direction of the frame 31. At this time, the multiple grooves are arranged in order from front to back. When the bean curd is rolled and peeled, the tray 14 can be rotated so that the groove axis is parallel to the length direction of the frame 31. At this time, the multiple grooves are arranged in order from left to right.
[0046] In order to move the base plate 16, a second motor 21 is fixedly connected to the base plate 16. A gear 19 is fixedly connected to the output end of the second motor 21. A rack 20 that meshes with the gear 19 is fixedly connected to the frame 31. By starting the second motor 21 to drive the gear 19 to rotate, the base plate 16 can be moved.
[0047] It should be noted that motor 21 is mounted on base plate 16 by bolts, and the output end of motor 21 is connected to gear 19 by key. Electric rotary table 15 is connected to base plate 16 by bolts, and support plate 14 is welded to the table surface of electric rotary table 15.
[0048] like Figures 6-7 As shown, it should be further explained that the structure of the tray 14 can be further improved. Specifically, the tray 14 includes a main body 38 and multiple movable plates 39. The main body 38 is fixedly connected to the electric rotary table 15. Each of the multiple movable plates 39 has several grooves. The difference between the multiple movable plates 39 is that the width of the grooves on the multiple movable plates 39 is different. The main body 38 has an installation groove inside. The movable plates 39 are detachably fixedly connected inside the installation groove, so that the movable plates 39 can be replaced as needed.
[0049] Here, the movable plate 39 can be fixedly connected inside the mounting slot by magnetic attraction, screw connection or snap-fit.
[0050] Among them, the bean ant rolling and peeling mechanism is used to roll and peel the bean ant discharged by the bean ant discharge mechanism, separate the bean ant skin and bean ant meat, and push the bean ant meat into the meat holding box 30.
[0051] like Figures 1-2 and Figure 4 As shown, the bean curd rolling and peeling mechanism includes a base 1 fixedly connected to the upper rear end of the frame 31. A crank drive mechanism is fixedly connected to the upper rear end of the base 1. Guide rails 12 are fixedly connected to both sides of the base 1. Slider 11 is slidably connected to both guide rails 12. A rolling shaft 13 is rotatably connected between the two sliders 11. At this time, the crank drive mechanism drives the slider 11 to reciprocate linearly on the guide rails 12, which in turn drives the rolling shaft 13 to reciprocate linearly with the slider 11, thereby realizing the rolling and peeling of the bean curd.
[0052] The crank drive mechanism includes a motor 2, an output shaft 6, and a bearing 8. The motor 2 is fixedly connected to the upper side of the base 1. The output end of the motor 2 is fixedly connected to a drive sprocket 3. The outer side of the output shaft 6 is fixedly connected to a driven sprocket 5. The drive sprocket 3 and the driven sprocket 5 are connected by a chain 4. The bearing 8 is fixedly connected to the base 1 by screws. The crank body 9 is rotatably connected to the bearing 8. The end of the output shaft 6 is connected to the crank body 9 by a coupling 7. The crank body 9 is rotatably connected to a connecting rod 10. The other end of the connecting rod 10 is rotatably connected to a slider 11. At this time, the slider 11 can be driven to reciprocate linearly by starting the motor 2.
[0053] It should be noted that the driven sprocket 5 and the output shaft 6 are fixedly connected by a key to transmit motion and torque. A shoulder is machined on the output shaft 6 and an elastic retaining ring is installed to prevent the driven sprocket 5 from moving axially.
[0054] Two bearings are provided for each of the following components: bearing 8, crank body 9, connecting rod 10, slider 11, and guide rail 12. They are installed in mirror symmetry to enhance the stability of the machine operation.
[0055] The connecting rod 10 is equipped with rod end spherical bearings at both ends. The small shafts on the crank body 9 and the slider 11 are connected to the connecting rod 10 through the two rod end spherical bearings, thereby realizing transmission and reducing wear.
[0056] Slider 11 is composed of a small slider at the bottom and a large slider at the top. The small slider at the bottom is used in conjunction with guide rail 12 to achieve smooth sliding. The large slider at the top is equipped with a bearing for mounting the rolling shaft 13.
[0057] It should be noted that the rolling roller 13 is provided with a rolling groove that matches the groove of the tray 14. The rolling groove and the groove of the tray 14 can better achieve the peeling of the bean pods.
[0058] The bean peony bark cleaning unit is used to clean the bean peony bark left after the bean peony has shed its skin.
[0059] The bean peony bark cleaning mechanism includes a motor 35 fixedly connected to the frame 31 and two bearings 33 with seats. A brush 34 is rotatably connected between the two bearings 33. The output end of the motor 35 is connected to the brush 34 in a transmission connection.
[0060] It should be noted that the brush 34 includes a shaft rotatably connected between two bearings 33 with seats, and brush bristles are fixedly connected to one side of the shaft.
[0061] The meat container 30 is fixedly connected to the frame 31 and is used to store the bean curd meat.
[0062] The working principle of this technical solution is as follows:
[0063] Untreated bean curd is placed in sieve box 36. Vibration motor 37, which is located on the side wall of sieve box 36, is started, causing sieve box 36 to vibrate. Due to the vibration of sieve box 36, bean curd falls into storage box 22 in the same direction from the strip hole at the bottom of sieve box 36.
[0064] Start the motor of the electric rotary table 15 so that the tray 14 rotates 90° with the table surface of the electric rotary table 15 and then the motor of the electric rotary table 15 is de-energized. At this time, the groove axis and the length direction of the frame 31 are set perpendicularly, and multiple grooves are arranged in sequence from front to back.
[0065] Start motor 21 and motor 3 27. Motor 21 drives gear 19 to rotate. Gear 19 and rack 20 mesh and drive each other, driving the base plate 16 to move towards the bean discharge mechanism until the pallet 14 moves to the underside of the slide plate 28.
[0066] Motor 3 (27) drives drive sprocket 2 (26) to rotate. Drive sprocket 2 (26) drives driven sprocket 2 (24) to rotate via chain 2 (25). Driven sprocket 2 (24) drives pulley 32 to rotate. Pulley 32 engages with the shaped hole friction belt 23. As pulley 32 rotates, the shaped hole friction belt 23 fills the shaped hole of the shaped hole friction belt 23 below the storage box 22, carrying the shaped hole upwards at an angle. Excess shaped hole falls back into the filling area under the action of gravity and the obstruction of baffle 29. The shaped hole in the shaped hole continues to move upwards at an angle. The bean balls fall into the slide plate 28 and slide down. By controlling the rotation speed of motor 21 and motor 37, the bean balls are sequentially placed into the grooves in the tray 14 until all the grooves are filled with bean balls. Then, motor 37 and motor 21 are de-energized and stop rotating. Then, the motor of the electric rotating table 15 is started, causing the tray 14 to rotate 90° with the table surface of the electric rotating table 15. Then, the motor of the electric rotating table 15 is de-energized. At this time, the groove axis and the length direction of the frame 31 are parallel, and multiple grooves are arranged in order from left to right.
[0067] Reverse start motor 21 drives gear 19 to rotate in the opposite direction. Gear 19 meshes with rack 20, driving base plate 16 to move towards the bean rolling and peeling mechanism until it reaches the position of the bean rolling and peeling mechanism. Then motor 21 is de-energized, and motor 2 starts. The output end of motor 2 rotates, driving drive sprocket 3 to rotate. The motion is then transmitted to driven sprocket 5 via chain 4. Output shaft 6 rotates together with driven sprocket 5. The motion and torque are then transmitted to crank body 9 via coupling 7. Body 9 transmits the motion to slider 11 through connecting rod 10. Slider 11 moves linearly on guide rail 12. The two ends of rolling shaft 13 are connected to bearings on slider 11. As slider 11 moves linearly, it rolls linearly. During the forward rolling process, it crushes all the bean curds in the groove. Under the crushing action of rolling shaft 13, the bean curd meat in the groove is squeezed out and pushed into meat box 30. After peeling is completed, rolling shaft 13 continues to move backward with slider 11. When it reaches the limit position, motor 2 is de-energized.
[0068] Start motor 4 35, and brush 34 rotates 180° from its initial upward position to its downward position. Start motor 21, which moves the base plate 16 toward brush 34. The bean skin is pushed onto the base plate 16 by brush 34. Motor 21 is de-energized, and at the same time motor 4 35 starts. Brush 34 rotates 180° to its upward position, thus completing one bean skin peeling process.
[0069] In summary, this technical solution uses a motor as a power source to drive the rolling shaft 13 to perform reciprocating linear motion to achieve the peeling of bean curd. Multiple grooves are set on the tray 14, which can achieve simultaneous peeling of multiple bean curds. Compared with manual rolling of bean curd, its design is reasonable and easy to operate. It can automatically arrange and roll the bean curd for peeling, realize batch peeling of bean curd, and enable small-scale peeling of bean curd. It can effectively reduce the labor intensity of bean curd peeling, improve peeling efficiency, and reduce costs.
[0070] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A bean antler peeling machine, characterized in that: Includes a frame (31), on which a bean pod discharge mechanism, a bean pod rolling and peeling mechanism, a bean pod conveying mechanism, and a bean pod skin cleaning mechanism are installed; The bean pod discharge mechanism is used to discharge the bean pods evenly. The bean pod discharge mechanism includes a storage box (22) fixedly connected to the front end of the upper side of the frame (31) and a bean pod conveyor belt located below the storage box (22). A feeding port is provided below the storage box (22). The bean cord conveying mechanism is used to receive the bean cords discharged by the bean cord discharge mechanism and transport the bean cords to the bean cord rolling and peeling mechanism for peeling. The bean conveying mechanism includes a base plate (16), which is slidably connected to the frame (31). An electric rotary table (15) is installed on the base plate (16), and a tray (14) is installed on the electric rotary table (15). The tray (14) is provided with several grooves. A second motor (21) is fixedly connected to the base plate (16), and a gear (19) is fixedly connected to the output end of the second motor (21). A rack (20) that meshes with the gear (19) is fixedly connected to the frame (31). The bean pod rolling and peeling mechanism is used to roll and peel the bean pods discharged from the bean pod discharge mechanism. The bean rolling peeling mechanism includes a base (1) fixedly connected to the upper rear end of the frame (31). A crank drive mechanism is fixedly connected to the upper rear end of the base (1). Guide rails (12) are fixedly connected to both sides of the base (1). Slider (11) is slidably connected to both guide rails (12). A rolling shaft (13) is rotatably connected between the two sliders (11).
2. The bean peeling machine according to claim 1, characterized in that: A sieve box (36) is provided on the upper side of the storage box (22) for initial screening of the bean pods. A vibration motor (37) is fixedly connected to the side wall of the sieve box (36).
3. The bean peeling machine according to claim 1, characterized in that: The bean conveyor belt includes a motor three (27), a slide plate (28) and two side plates fixedly connected to the upper side of the frame (31). Two pulleys (32) are rotatably connected between the two side plates. A perforated friction belt (23) located on the lower side of the storage box (22) is driven to the outer side of the two pulleys (32). The output end of the motor three (27) is fixedly connected to the driving sprocket two (26). One end of one of the pulleys (32) is fixedly connected to the driven sprocket two (24). The driven sprocket two (24) and the driving sprocket two (26) are driven to be connected by a chain two (25). The rear end of the shaped hole friction strip (23) is inclined upward, and multiple shaped holes are provided on the shaped hole friction strip (23).
4. The bean peeling machine according to claim 3, characterized in that: A slide plate (28) is fixedly connected to the frame (31) at the position below the rear end of the hole friction strip (23), and the rear end of the slide plate (28) is inclined downward.
5. A bean peeling machine according to claim 3, characterized in that: A baffle (29) located behind the storage bin (22) is also fixedly connected to the frame (31).
6. The bean peeling machine according to claim 1, characterized in that: The tray (14) includes a main body (38) and multiple movable plates (39). The main body (38) is fixedly connected to the electric rotary table (15). The grooves on the multiple movable plates (39) have different widths. The main body (38) has an installation groove inside. The movable plates (39) are detachably fixedly connected inside the installation groove.
7. A bean pod peeling machine according to claim 1, characterized in that: The crank drive mechanism includes a motor (2), an output shaft (6), and a bearing (8). The motor (2) is fixedly connected to the upper side of the base (1). The output end of the motor (2) is fixedly connected to a drive sprocket (3). The outer side of the output shaft (6) is fixedly connected to a driven sprocket (5). The drive sprocket (3) and the driven sprocket (5) are connected by a chain (4). The bearing (8) is fixedly connected to the base (1). A crank body (9) is rotatably connected to the bearing (8). The end of the output shaft (6) is connected to the crank body (9) through a coupling (7). A connecting rod (10) is rotatably connected to the crank body (9). The other end of the connecting rod (10) is rotatably connected to a slider (11).
8. A bean pod peeling machine according to claim 1, characterized in that: The rolling shaft (13) is provided with a rolling groove that matches the groove of the support plate (14).
9. A bean peeling machine according to claim 1, characterized in that: The bean curd cleaning mechanism includes a motor four (35) fixedly connected to the frame (31) and two bearing two (33) with seats. A brush (34) is rotatably connected between the two bearing two (33). The output end of the motor four (35) is connected to the brush (34) in a transmission connection.
10. A bean peeling machine according to claim 1, characterized in that: It also includes a meat container (30), which is fixedly connected to the frame (31).