Rapid slicing device for puffed food production
By using a pressure sensor and an electric push rod to adjust the position of the conveyor wheel in the puffed food slicing device, the problems of bacterial growth and uneven thickness of puffed food raw materials during slicing are solved, achieving stable clamping and impurity removal, and improving slicing quality.
Patent Information
- Application Number
- CN202511414002.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-01-06
AI Technical Summary
During the production of puffed food, bacteria easily adhere to the raw materials when slicing, and the slices are uneven in thickness. In particular, potato-based raw materials can breed bacteria on the conveyor belt, leading to uneven slicing.
By employing components such as pressure sensors, springs, and electric push rods, the presence of raw materials on the conveyor belt is detected by the sensors, and the position of the conveyor wheels is adjusted by the electric push rods to ensure stable clamping of the raw materials. Impurities are also removed by the relative displacement of the conveyor belt, resulting in uniform slice thickness.
It effectively prevents bacterial growth, ensures uniform slice thickness, and improves the processing quality of puffed foods.
Smart Images

Figure CN121268005A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of food processing equipment, and in particular to a rapid slicing device for producing puffed food. Background Technology
[0002] Puffed foods are snack foods made primarily from grains, potatoes, or beans, using puffing processes such as baking, frying, microwaving, or extrusion to achieve a significant increase in volume. They are characterized by their crisp texture, fragrant aroma, and diverse flavors. Potato chips and French fries are examples of puffed foods.
[0003] A device for uniformly slicing potatoes in the production of puffed food, Chinese patent application number CN202110574969.X, includes a working platform and pillars fixed at the four corners of the bottom of the working platform. A feeding port is opened at the top of the working platform, and a receiving box is placed below the feeding port. A material-holding component is fixed at the left end of the middle of the top of the working platform. Support frames are fixedly installed at the four corners of the top of the working platform. The top of the four support frames is fixed with the same top plate. A feeding slicing cylinder passes through the right end of the top of the top plate. A cutting component is set at the bottom of the top plate. A drive motor is fixedly installed at the top of the top plate. The output shaft of the drive motor is connected to the cutting component through two pulleys. A slot is opened at the left end of the top of the top plate for the belt on the pulley to swing.
[0004] When transporting raw materials for puffed food production, potato starch will adhere to the first and second conveyor belts when the raw material is potatoes. With long-term use of the equipment, bacteria can easily grow on the first and second conveyor belts, which will affect the processing of puffed food. Furthermore, when the raw materials for puffed food processing are clamped and transported to be sliced by the first and second conveyor belts, the slicing blades move in a circular path, causing the raw materials to move away from the slicing motor during slicing, which can easily result in uneven slice thickness. Summary of the Invention
[0005] To solve the above-mentioned technical problems, the present invention provides a rapid slicing device for puffed food production.
[0006] The present invention provides a rapid slicing device for puffed food production, comprising a mounting frame, on which a slicing component, a conveying component, and a driving component are disposed; an auxiliary component is disposed on the conveying component; and the driving component is connected to the conveying component. The slicing assembly includes a slicing blade for slicing puffed food. The drive component provides power for the operation of the conveying component; The auxiliary component includes a spring and an electric push rod. The spring adjusts the height of the auxiliary component on the side closest to the slicing blade, and the electric push rod adjusts the lateral position of the auxiliary component.
[0007] Preferably, the conveying assembly includes a bracket, which is mounted on a mounting frame. A crossbeam is mounted on the bracket, and two first conveying wheels are rotatably mounted on the two crossbeams. A first conveyor belt is disposed between the two first conveying wheels.
[0008] Preferably, the drive assembly includes a drive motor, a connecting transmission is provided in the mounting bracket, the output end of the drive motor is connected to the connecting transmission, a first driven wheel is provided on the axle side of the first conveying wheel away from the slicing blade, a drive wheel is provided on the output end of the connecting transmission, a first transmission belt is provided between the drive wheel and the first driven wheel, and the diameter ratio between the drive wheel and the first driven wheel is 1:1.
[0009] Preferably, the auxiliary component further includes a mounting plate, which is disposed on the upper end of the crossbeam. An inclined plate is rotatably disposed on each of the two mounting plates. A second conveyor wheel is rotatably disposed between the two mounting plates and between the two inclined plates. A second conveyor belt is disposed between the two second conveyor wheels.
[0010] Preferably, a second driven wheel is provided on the axle side of the second conveying wheel away from the slicing blade, a second transmission belt is provided between the driving wheel and the second driven wheel, the diameter ratio between the driving wheel and the second driven wheel is 1:0.95, and a pressure sensor is provided between the second driven wheel and the second conveying belt.
[0011] Preferably, each of the two inclined plates is provided with a support plate, and a support wheel is rotatably provided on the two support plates, with the second conveyor belt in close contact with the upper end of the support wheel.
[0012] Preferably, the slicing assembly further includes a slicing motor, which is disposed within a mounting frame. A slicing shaft is rotatably mounted on the side of the mounting frame. A first rotating wheel is disposed on the side of the slicing shaft near the slicing motor. A second rotating wheel is disposed at the output end of the slicing motor. A belt is disposed between the first and second rotating wheels. A mounting plate is disposed on the side of the slicing shaft away from the slicing motor. The slicing blade is disposed on the mounting plate. A protective cover is also disposed on the side of the mounting frame. The protective cover is rotatably engaged with the slicing shaft. A feed inlet is disposed on the side of the protective cover near the conveying assembly. A discharge outlet is disposed at the lower end of the protective cover.
[0013] Preferably, a baffle is rotatably mounted on the axle of the second conveying wheel near the slicing blade, and mounting rods are provided on both sides of the axle of the second conveying wheel. The mounting rods are mounted on an inclined plate and have round holes. The axle of the second conveying wheel can slide laterally within the round holes, and the output end of the electric push rod is connected to the baffle.
[0014] Preferably, the mounting bracket is provided with a mounting groove, and a slider is slidably disposed in the mounting groove. The mounting rod on the side away from the electric push rod is disposed on the side end of the slider, and the spring is located between the upper end of the slider and the top of the mounting groove.
[0015] Preferably, the drive wheel is divided into an inner wheel and an outer wheel, the inner wheel corresponds to the first driven wheel, the outer wheel corresponds to the second driven wheel, and the inner wheel and the outer wheel rotate in opposite directions.
[0016] Compared with the prior art, the beneficial effects of the present invention are as follows: By setting components such as pressure sensors, springs, and electric push rods, the pressure sensor assists in detecting whether there are raw materials for puffed food production between the first and second conveyor belts. When the pressure sensor detects the presence of raw materials for puffed food production between the first and second conveyor belts, the equipment controls the electric push rod to move the second conveyor wheel towards the slicing motor. This neutralizes the movement of raw materials for puffed food processing away from the slicing motor during slicing, ensuring uniform slice thickness. When the pressure sensor detects the absence of raw materials for puffed food production between the first and second conveyor belts, the equipment controls the electric push rod to reciprocate the second conveyor wheel near the slicing blade, and in conjunction with the relative displacement between the first and second conveyor belts, cleans impurities adhering to the first and second conveyor belts. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the present invention; Figure 2 This is a schematic diagram of the auxiliary components and conveying components of the present invention; Figure 3 This is a structural schematic diagram from another perspective of the present invention; Figure 4 This is a schematic diagram of the slicing component of the present invention; Figure 5 This is the invention Figure 1 Enlarged structural diagram at point A; Figure 6 This is a schematic diagram of the spring and slider of the present invention; Figure 7 This is a schematic diagram of the structure of the electric push rod and the second conveying wheel of the present invention; Figure 8 This is a schematic diagram of the internal transmission structure of the connecting actuator of the present invention.
[0018] Reference numerals: 1. Slicing assembly; 2. Conveying assembly; 3. Drive assembly; 4. Mounting frame; 5. Auxiliary assembly; 101. Slicing blade; 102. Slicing motor; 103. Slicing shaft; 104. First rotating wheel; 105. Second rotating wheel; 106. Belt; 107. Mounting plate; 108. Protective cover; 109. Feed inlet; 110. Discharge outlet; 201. Support frame; 202. Cross frame; 203. First conveyor wheel; 204. First conveyor belt; 301. 302. Drive motor; 303. Connecting transmission device; 304. First driven wheel; 305. Drive wheel; 306. First transmission belt; 307. Second driven wheel; 308. Second transmission belt; 509. Spring; 500. Electric push rod; 501. Mounting plate; 502. Inclined plate; 503. Second conveyor wheel; 504. Second conveyor belt; 505. Support plate; 506. Support wheel; 507. Mounting groove; 510. Slider; 511. Baffle; 512. Mounting rod. Detailed Implementation
[0019] To facilitate understanding of the present invention, a more complete description will be given below with reference to the accompanying drawings. The present invention can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
[0020] Example 1 like Figures 1 to 8 As shown, this invention discloses a rapid slicing device for puffed food production, including a mounting frame 4. The mounting frame 4 is equipped with a slicing component 1, a conveying component 2, and a driving component 3. The driving component 3 is connected to the conveying component 2 and provides power for the operation of the conveying component 2. An auxiliary component 5 is provided on the conveying component 2. In the production of puffed foods such as potato chips, the raw material slicing process is potato slicing. The potatoes are conveyed with the assistance of the conveying component 2. When the potatoes are conveyed to the slicing component 1, the slicing component 1 slices the potatoes as it operates. The auxiliary component 5 works in conjunction with the conveying component 2 to transport the raw materials for puffed food production.
[0021] The slicing assembly 1 includes a slicing blade 101 and a slicing motor 102. The slicing blade 101 is used for slicing puffed food. The slicing motor 102 is housed within a mounting frame 4. A slicing shaft 103 is rotatably mounted on the side of the mounting frame 4. A first rotating wheel 104 is mounted on the side of the slicing shaft 103 near the slicing motor 102. A second rotating wheel 105 is mounted on the output end of the slicing motor 102. A belt 106 is connected between the first rotating wheel 104 and the second rotating wheel 105. A mounting plate 107 is mounted on the side of the slicing shaft 103 away from the slicing motor 102. The slicing blade 101 is mounted on the mounting plate 107. A protective cover 108 is also mounted on the side of the mounting frame 4. The protective cover 108 rotatably engages with the slicing shaft 103. A safety feature is provided on the side of the protective cover 108 near the conveying assembly 2. The feed inlet 109 and the lower end of the protective cover 108 are provided with a discharge outlet 110. After the slicing motor 102 is started, the output end of the slicing motor 102 drives the rotation of the second rotating wheel 105. The rotation of the second rotating wheel 105 drives the rotation of the first rotating wheel 104 through the belt 106. The rotation of the first rotating wheel 104 will drive the rotation of the slicing shaft 103, which in turn causes the mounting plate 107 to rotate. The rotation of the mounting plate 107 will drive the rotation of the slicing blade 101 mounted on it. The puffed food production raw materials conveyed by the conveying component 2 enter the slicing component 1 through the feed inlet 109. As the slicing blade 101 rotates, the slicing blade 101 slices the puffed food production raw materials. The sliced puffed food production raw materials are discharged downward through the discharge outlet 110.
[0022] The conveying assembly 2 includes a bracket 201, which is mounted on the mounting frame 4. A crossbeam 202 is mounted on the bracket 201. Two first conveying wheels 203 are rotatably mounted on the two crossbeams 202. A first conveyor belt 204 is arranged between the two first conveying wheels 203. The two first conveying wheels 203 work together with the assistance of the first conveyor belt 204. The raw materials for puffed food production are placed on the first conveyor belt 204 for transportation.
[0023] The drive assembly 3 includes a drive motor 301. A connecting transmission device 302 is provided in the mounting bracket 4. The output end of the drive motor 301 is connected to the connecting transmission device 302. A first driven wheel 303 is provided on the axle side of the first conveying wheel 203 away from the slicing blade 101. A drive wheel 304 is provided on the output end of the connecting transmission device 302. A first transmission belt 305 is provided between the drive wheel 304 and the first driven wheel 303. After the drive motor 301 is started, the output end of the drive motor 301 causes the drive wheel 304 to rotate with the assistance of the connecting transmission device 302. The rotation of the drive wheel 304 drives the rotation of the first driven wheel 303 with the assistance of the first transmission belt 305. The rotation of the first driven wheel 303 drives the rotation of the first conveying wheel 203, thereby causing the first conveyor belt 204 to operate and realize the transportation of raw materials for puffed food production.
[0024] The auxiliary component 5 includes a mounting plate 503, which is disposed on the upper end of the crossbeam 202. An inclined plate 504 is rotatably mounted on each of the two mounting plates 503. A second conveyor wheel 505 is rotatably mounted between the two mounting plates 503 and between the two inclined plates 504. A second conveyor belt 506 is disposed between the two second conveyor wheels 505. A second driven wheel 306 is disposed on the axle side of the second conveyor wheel 505 away from the slicing blade 101. A second transmission belt 307 is disposed between the drive wheel 304 and the second driven wheel 306. When the drive wheel 304 rotates, it also drives the second driven wheel 306 to rotate through the second transmission belt 307. The rotation of the second driven wheel 306 drives the rotation of the second conveyor wheel 505, which in turn causes the second conveyor belt 506 to operate. When the raw materials for puffed food production are transported between the first conveyor belt 204 and the second conveyor belt 506 through the first conveyor belt 204, the first conveyor belt 204 and the second conveyor belt 506 will clamp and transport the raw materials for puffed food production to ensure the stability of subsequent slicing of the raw materials for puffed food production.
[0025] Each of the two inclined plates 504 is equipped with a support plate 507, and a support wheel 508 is rotatably mounted on the two support plates 507. The second conveyor belt 506 is in close contact with the upper end of the support wheel 508. With the assistance of the support wheel 508, the second conveyor belt 506 is kept taut, thereby ensuring the stable transportation of raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506.
[0026] like Figure 2 and Figure 8 As shown, the drive wheel 304 is divided into an inner wheel and an outer wheel. The inner wheel corresponds to the first driven wheel 303, and the outer wheel corresponds to the second driven wheel 306. The inner wheel and the outer wheel rotate in opposite directions. Through the cooperation of the bevel gear set inside the transmission 302, the inner wheel and the outer wheel rotate in opposite directions, which in turn makes the first driven wheel 303 and the second driven wheel 306 rotate in opposite directions. This makes the first conveyor belt 204 and the second conveyor belt 506 rotate in opposite directions, ensuring the stable transportation of raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506.
[0027] During use, the device is started to make the drive motor 301 and the slicing motor 102 run.
[0028] After the slicing motor 102 is started, the output end of the slicing motor 102 drives the rotation of the second rotating wheel 105. The rotation of the second rotating wheel 105 drives the rotation of the first rotating wheel 104 through the belt 106. The rotation of the first rotating wheel 104 drives the rotation of the slicing shaft 103, which in turn causes the mounting plate 107 to rotate. The rotation of the mounting plate 107 drives the rotation of the slicing blade 101 mounted on it.
[0029] like Figure 2and Figure 8 As shown, after the drive motor 301 starts, the output end of the drive motor 301 causes the drive wheel 304 to rotate through the auxiliary transmission 302. The inner wheel of the drive wheel 304 rotates in the opposite direction to the outer wheel. The inner wheel drives the first driven wheel 303 to rotate through the first transmission belt 305, which in turn causes the first conveyor belt 204 to rotate counterclockwise. The outer wheel drives the second driven wheel 306 to rotate through the second transmission belt 307, which in turn causes the second conveyor belt 506 to rotate clockwise.
[0030] The raw materials for puffed food processing are placed in an orderly manner on the upper end of the first conveyor belt 204 away from the slicing knife 101 by external equipment. As the first conveyor belt 204 rotates, the raw materials for puffed food processing move towards the slicing knife 101. When the raw materials for puffed food processing enter the lower end of the second conveyor belt 506, the first conveyor belt 204 and the second conveyor belt 506 clamp and transport the raw materials for puffed food processing. The second conveyor belt 506 clamps and stabilizes the raw materials for puffed food processing in cooperation with the first conveyor belt 204 under the action of gravity.
[0031] The raw materials for puffed food production are fed into the slicing assembly 1 through the feed inlet 109. As the slicing blade 101 rotates, it slices the raw materials and discharges them downwards through the discharge outlet 110.
[0032] Example 2 Based on the rapid slicing device for puffed food production described in Embodiment 1 above, when transporting raw materials for puffed food production, potato starch adheres to the first conveyor belt 204 and the second conveyor belt 506 when the raw material is potatoes. With long-term use of the equipment, bacteria easily grow on the first conveyor belt 204 and the second conveyor belt 506, which affects the processing of puffed food. Furthermore, when the raw materials for puffed food processing are clamped and transported for slicing by the first conveyor belt 204 and the second conveyor belt 506, the slicing blade 101 moves away from the slicing motor 102 during slicing due to the circular running trajectory of the blade, easily causing uneven slice thickness. Therefore, the following technical solution is proposed: like Figures 1 to 8As shown, the auxiliary component 5 includes a spring 501 and an electric push rod 502. The spring 501 adjusts the height of the auxiliary component 5 on the side near the slicing blade 101, and the electric push rod 502 adjusts the lateral position of the auxiliary component 5. The spring 501 applies a downward force to the auxiliary component 5, making the clamping and conveying of raw materials for puffed food production by the first conveyor belt 204 and the second conveyor belt 506 more stable. The adjustment of the lateral position of the auxiliary component 5 by the electric push rod 502 reduces the uneven slice thickness caused by the raw materials for puffed food processing moving away from the slicing motor 102 during slicing.
[0033] The diameter ratio between the drive wheel 304 and the first driven wheel 303 is 1:1, and the diameter ratio between the drive wheel 304 and the second driven wheel 306 is 1:0.95. This causes the first conveyor belt 204 and the second conveyor belt 506 to move at different speeds. When the first conveyor belt 204 and the second conveyor belt 506 come into contact, friction is generated through their relative displacement, thereby achieving the effect of cleaning impurities adhering to the first conveyor belt 204 and the second conveyor belt 506. The effect is best when the raw material for puffed food production is potatoes. Furthermore, because the surface of potatoes is irregular, the difference in moving speed between the first conveyor belt 204 and the second conveyor belt 506 will not affect the stable transport of potatoes between them.
[0034] A pressure sensor is installed between the second driven wheel 306 and the second conveyor belt 506. The pressure sensor helps to determine whether there are raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506. The effect is best when the raw material for puffed food production is potatoes.
[0035] A baffle 511 is rotatably mounted on the axle of the second conveyor wheel 505 near the slicing blade 101. Mounting rods 512 are mounted on both sides of the axle of the second conveyor wheel 505 and are mounted on the inclined plate 504. The mounting rods 512 have round holes, allowing the axle of the second conveyor wheel 505 to slide laterally within the round holes. The output end of the electric push rod 502 is connected to the baffle 511. When the electric push rod 502 is activated, its output end will drive the baffle 511 to move, which in turn will drive the second conveyor wheel 505 to move, thereby adjusting the lateral position of the second conveyor wheel 505.
[0036] The mounting bracket 4 is provided with a mounting groove 509. A slider 510 is slidably mounted up and down in the mounting groove 509. A mounting rod 512 on the side away from the electric push rod 502 is located on the side of the slider 510. A spring 501 is located between the upper end of the slider 510 and the top of the mounting groove 509. When the slider 510 moves up and down in the mounting groove 509, it will cause the second conveyor belt 506 near the slicer 101 to move up and down.
[0037] During the use of this invention, as the raw materials for puffed food production are clamped and conveyed between the first conveyor belt 204 and the second conveyor belt 506, the detection value of the pressure sensor will change. When the raw materials for puffed food production enter between the first conveyor belt 204 and the second conveyor belt 506, the detection value of the pressure sensor will fluctuate. This is due to the shape of the raw materials for puffed food production and the slicing process performed by the slicing knife 101. When there are no raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506, the detection value of the pressure sensor will remain constant. Therefore, with the assistance of the pressure sensor, it is possible to detect whether there are raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506.
[0038] When the pressure sensor detects the presence of raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506, to prevent the raw materials from moving away from the slicing motor 102 during slicing and causing uneven slice thickness, the equipment controls the electric push rod 502 to start. The output end of the electric push rod 502 drives the baffle 511 to move, which in turn drives the second conveyor wheel 505 to move. This adjusts the lateral position of the second conveyor wheel 505, causing it to move towards the slicing motor 102. This neutralizes the movement of the raw materials away from the slicing motor 102 during slicing, ensuring uniform slice thickness.
[0039] When the pressure sensor detects that there are no raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506, the slider 510 is positioned at the lowest point with the assistance of the spring 501. At this time, the first conveyor belt 204 and the second conveyor belt 506 are in contact. Since the first conveyor belt 204 and the second conveyor belt 506 move at different speeds, friction is generated through their relative displacement, thereby achieving the effect of cleaning the impurities adhering to the first conveyor belt 204 and the second conveyor belt 506. The effect is best when the raw material for puffed food production is potatoes.
[0040] At the same time, the equipment controls the electric push rod 502 to reciprocate, thereby causing the second conveyor wheel 505 near the slicing blade 101 to reciprocate, thereby enhancing the cleaning effect on the impurities adhering to the first conveyor belt 204 and the second conveyor belt 506.
[0041] The main function of this invention is as follows: By setting up components such as a pressure sensor, spring 501, and electric push rod 502, the pressure sensor assists in detecting whether there are raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506. When the pressure sensor detects the presence of raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506, the device controls the electric push rod 502 to move the second conveyor wheel 505 towards the slicing motor 102. This neutralizes the movement of raw materials for puffed food processing away from the slicing motor 102 during slicing, ensuring uniform slice thickness. When the pressure sensor detects the absence of raw materials for puffed food production between the first conveyor belt 204 and the second conveyor belt 506, the device controls the electric push rod 502 to reciprocate the second conveyor wheel 505 near the slicing blade 101, and in conjunction with the relative displacement between the first conveyor belt 204 and the second conveyor belt 506, cleans impurities adhering to the first conveyor belt 204 and the second conveyor belt 506.
[0042] The present invention provides a rapid slicing device for puffed food production. Its installation method, connection method, or setting method are all common mechanical methods. As long as they can achieve their beneficial effects, they can be implemented.
[0043] All technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein in the specification of this invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0044] The above are merely preferred embodiments of the present invention. It should be noted that, for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. A quick slicing device for puffed food production comprising a mounting frame (4), characterized in that, The mounting frame (4) is provided with a slicing assembly (1), a conveying assembly (2) and a driving assembly (3), the conveying assembly (2) is provided with an auxiliary assembly (5), and the driving assembly (3) is connected with the conveying assembly (2); The slicing assembly (1) comprises a slicing knife (101), and the slicing knife (101) is used for slicing the expanded food; The driving assembly (3) provides power for the operation of the conveying assembly (2); The auxiliary assembly (5) comprises a spring (501) and an electric push rod (502), the spring (501) is used for adjusting the height of one side of the auxiliary assembly (5) close to the slicing knife (101), and the electric push rod (502) is used for adjusting the transverse position of the auxiliary assembly (5).
2. The rapid slicing device for puffed food production according to claim 1, wherein, The conveying assembly (2) comprises a support (201), the support (201) is arranged on the mounting frame (4), the support (201) is provided with a cross frame (202), two first conveying wheels (203) are rotationally arranged on the two cross frames (202), and a first conveying belt (204) is arranged between the two first conveying wheels (203).
3. The rapid slicing device for puffed food production according to claim 2, wherein, The driving assembly (3) comprises a driving motor (301), a connecting transmission (302) is arranged in the mounting frame (4), the output end of the driving motor (301) is connected with the connecting transmission (302), a first driven wheel (303) is arranged at the axle side end of the first conveying wheel (203) away from the slicing knife (101), the output end of the connecting transmission (302) is provided with a driving wheel (304), a first transmission belt (305) is arranged between the driving wheel (304) and the first driven wheel (303), and the diameter ratio between the driving wheel (304) and the first driven wheel (303) is 1:
1.
4. The rapid slicing device for puffed food production according to claim 3, wherein, The auxiliary assembly (5) further comprises a mounting plate (503), the mounting plate (503) is arranged on the upper end of the cross frame (202), an inclined plate (504) is rotationally arranged on each of the two mounting plates (503), a second conveying wheel (505) is rotationally arranged between the two mounting plates (503) and between the two inclined plates (504), and a second conveying belt (506) is arranged between the two second conveying wheels (505).
5. The rapid slicing device for puffed food production according to claim 4, wherein, The axle side end of the second conveying wheel (505) away from the slicing knife (101) is provided with a second driven wheel (306), a second transmission belt (307) is arranged between the driving wheel (304) and the second driven wheel (306), the diameter ratio between the driving wheel (304) and the second driven wheel (306) is 1:0.95, and a pressure sensor is arranged between the second driven wheel (306) and the second conveying belt (506).
6. The rapid slicing device for puffed food production according to claim 4, wherein Support plates (507) are arranged on the two inclined plates (504), support wheels (508) are rotationally arranged on the two support plates (507), and the second conveying belt (506) is tightly attached to the upper ends of the support wheels (508).
7. The rapid slicing device for puffed food production according to claim 1, wherein The slicing assembly (1) further comprises a slicing motor (102) arranged in the mounting frame (4), a slicing shaft (103) rotatably arranged at the side end of the mounting frame (4), a first rotating wheel (104) arranged at the side of the slicing shaft (103) close to the slicing motor (102), a second rotating wheel (105) arranged at the output end of the slicing motor (102), a belt (106) arranged between the first rotating wheel (104) and the second rotating wheel (105), an installation disc (107) arranged at the side of the slicing shaft (103) away from the slicing motor (102), the slicing knife (101) arranged on the installation disc (107), a protective cover (108) further arranged at the side end of the mounting frame (4), the protective cover (108) rotatably matched with the slicing shaft (103), an inlet (109) arranged at the side of the protective cover (108) close to the conveying assembly (2), and an outlet (110) arranged at the lower end of the protective cover (108).
8. The rapid slicing device for puffed food production according to claim 4, wherein A baffle (511) is rotatably arranged on the axle of the second conveying wheel (505) close to the slicing knife (101), installation rods (512) are arranged at the two sides of the axle of the second conveying wheel (505), the installation rods (512) are arranged on the inclined plate (504), the installation rods (512) are provided with circular holes, the axle of the second conveying wheel (505) can slide transversely in the circular holes, and the output end of the electric push rod (502) is connected with the baffle (511).
9. The rapid slicing device for puffed food production according to claim 8, wherein, The mounting frame (4) is provided with a mounting groove (509), a sliding block (510) is slidably arranged in the mounting groove (509), the installation rod (512) away from the electric push rod (502) is arranged at the side end of the sliding block (510), and the spring (501) is located between the upper end of the sliding block (510) and the top of the mounting groove (509).
10. The rapid slicing device for puffed food production according to claim 5, wherein, The driving wheel (304) is divided into an inner wheel and an outer wheel, the inner wheel corresponds to the first driven wheel (303), the outer wheel corresponds to the second driven wheel (306), and the directions of rotation of the inner wheel and the outer wheel are opposite.
Citation Information
Patent Citations
Uniform potato slicing device used in puffed food production
CN113290597A