Automatic feeding device for fried food processing
By designing an automatic loading device, efficient conveying and wrapping of peanuts is achieved, which solves the problems of high equipment costs and many operating steps in the peanuts paste process, and improves production efficiency and wrapping quality.
Patent Information
- Application Number
- CN202510719816.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2045-05-30
AI Technical Summary
In the prior art, there are problems such as high equipment cost, many operating steps and low production efficiency during the peanut paste.
An automatic feeding device for processing fried food is designed to achieve efficient conveying and paste wrapping operation of peanuts by controlling the rotation direction of the feeding roller. Combined with adjustment and tensioning mechanisms, adjust the gap of the feeding roller, adapt to different particle sizes, and set up a sealing mechanism to control the feeding process.
It realizes the efficient conveying of peanuts and smooth transition of paste wrapping, optimizes production processes, improves production efficiency, ensures uniformity and quality of paste wrapping, and reduces operating steps.
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Figure CN120573404A_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the field of fried food processing and feeding, and in particular relates to an automatic feeding device for fried food processing. Background Art
[0002] The introduction of automated production lines has significantly improved production efficiency in the processing of fried foods, particularly nuts like peanuts. Automatic loading devices precisely deliver raw materials to the frying equipment, ensuring even distribution while minimizing human interference and ensuring consistent product quality. To enhance the flavor and texture of peanuts, they are typically coated in batter before frying. This not only increases the crispness and flavor of the peanuts, but also enhances the finished product's appearance, making it more appealing to consumers.
[0003] Currently, in the process of coating and frying peanuts, traditional feeding equipment is only responsible for delivering the peanuts to the coating process. The mixing of peanuts and paste is usually carried out by independent coating equipment. This not only increases the cost of the equipment, but also requires the peanuts to be transported and transferred multiple times, which increases the operation steps and reduces production efficiency. Summary of the Invention
[0004] In view of the above problems, the embodiment of the present application provides an automatic feeding device for fried food processing, which can achieve efficient transportation of peanuts while coating the peanuts with batter, greatly improving production efficiency and providing great convenience for subsequent processing of peanuts.
[0005] In order to achieve the above-mentioned purpose, the embodiments of the present application provide the following technical solutions: The present invention provides an automatic feeding device for processing fried foods, comprising a feeding frame, a first groove is provided on the inner front side of the feeding frame, a second groove is provided on the inner rear side of the feeding frame, guide plates are fixedly arranged in the first groove and the second groove, five mounting plates are arranged on the guide plate, the mounting plate located in the middle is fixedly arranged on the guide plate, and the other four mounting plates are all slidably arranged on the guide plate, and a feeding mechanism is provided between the two corresponding mounting plates at the front and rear.
[0006] The feeding mechanism includes a feeding roller arranged on the inner side of the feeding frame. The five feeding rollers are located on the inner side of the feeding frame with their heights in the vertical direction decreasing from left to right in sequence. Three feeding plates distributed in a circular array are fixedly arranged on the outer side of the feeding roller. The two corresponding front and rear guide plates are each provided with a rotating rod on the side close to each other, and the end of the rotating rod away from the mounting plate is connected to the end of the feeding roller.
[0007] A driving mechanism for use with a feeding mechanism is commonly provided on the five mounting plates located in the first groove. The driving mechanism includes a first motor fixedly provided on the front side wall of the leftmost mounting plate. The output shaft of the first motor is connected to the front end of the leftmost rotating rod. A transmission assembly is provided between two adjacent rotating rods. The transmission assembly includes a pulley provided on the corresponding rotating rod, and a belt is provided to roll between the two pulleys.
[0008] According to a favorable embodiment, an adjustment mechanism for driving the feeding mechanism to move is provided in the second groove, and the adjustment mechanism includes a second electric push rod provided in the second groove, and a connecting plate is fixedly installed on the telescopic shaft of the second electric push rod, and the front side of the connecting plate is connected to the rear side wall of the leftmost mounting plate located in the second groove, and a connecting shaft is rotatably provided on the rear side wall of the mounting plate located in the second groove, and a scissor-type telescopic frame is commonly provided between the five connecting shafts.
[0009] According to a favorable embodiment, a tensioning mechanism used in conjunction with the adjustment mechanism is provided in the first groove, and the tensioning mechanism includes a horizontal plate provided in the first groove, four U-shaped blocks are fixedly provided at the bottom of the horizontal plate, a tensioning wheel is rotatably provided between the front and rear horizontal sections of the U-shaped block, and the tensioning wheel is rollingly connected to the corresponding belt, and a first electric push rod is fixedly provided on the upper front side of the loading frame, and the telescopic shaft of the first electric push rod passes through the first groove and is connected to the upper part of the horizontal plate.
[0010] According to a favorable embodiment, a discharge port is opened on the right side of the loading frame, and a material guide plate is slidably arranged in the discharge port. The side of the material guide plate close to the loading roller is chamfered, and L-shaped plates are fixedly arranged on the front and back sides of the material guide plate. The left side of the L-shaped plate on the front side passes through the first groove and is connected to the corresponding mounting plate, and the left side of the L-shaped plate on the rear side passes through the second groove and is connected to the corresponding mounting plate.
[0011] According to a favorable embodiment, a sealing mechanism is provided on the upper part of the loading frame at the discharge port, and the sealing mechanism includes two mounting blocks arranged on the right side of the upper part of the loading frame and symmetrically distributed front to back, and a connecting rod is rotatably arranged between the two mounting blocks, and a sealing plate is fixedly arranged on the connecting rod, and the sealing plate is located in the discharge port, and the bottom of the sealing plate contacts the upper part of the guide plate, and a second motor is fixedly provided on one side of one of the mounting blocks, and the output shaft of the second motor is connected to one end of the connecting rod.
[0012] According to a favorable embodiment, rectangular openings are provided on the front and rear inner walls of the loading frame, and the two rectangular openings are respectively connected to the first groove and the second groove. A corrugated sealing sleeve is provided in the rectangular opening, and the end of the rotating rod away from the loading roller passes through the corrugated sealing sleeve and is rotatably connected to the corrugated sealing sleeve.
[0013] According to a favorable embodiment, two sliding grooves are opened on the inner front side of the loading frame, and the sliding grooves are connected to the first groove. Two sliding blocks are fixedly provided on the rear side of the horizontal plate, and the side of the sliding block away from the horizontal plate passes through the sliding groove and is slidably connected to the sliding groove.
[0014] According to an advantageous embodiment, vertical plates are fixedly provided around the upper portion of the loading frame, and two supporting plates symmetrically distributed on the front and rear sides of the loading frame are fixedly provided.
[0015] Compared with the prior art, the automatic feeding device for fried food processing provided by the embodiment of the present invention has the following beneficial effects:
[0016] 1. The present invention realizes efficient conveying and battering of peanuts by controlling the rotation direction of the feeding roller, so that the feeding and battering operations can be smoothly transitioned, which greatly optimizes the production process. It not only greatly improves production efficiency, but also ensures the uniformity and quality of battering, providing great convenience for the subsequent processing of peanuts.
[0017] 2. The present invention is provided with a feeding mechanism. During the normal feeding and loading stage, multiple feeding rollers rotate in a clockwise direction, which can effectively transport the peanuts to the next process. When the peanuts need to be coated with paste synchronously, it is only necessary to move the feeding frame smoothly to the upper part of the paste dish, and then adjust the rotation direction of the multiple feeding rollers to counterclockwise, so that the peanuts can be fully contacted and coated with a uniform layer of paste during the rotation process, which greatly reduces the number of operation steps.
[0018] 3. The present invention is provided with an adjustment mechanism and a tensioning mechanism. Through the cooperation of the adjustment mechanism and the tensioning mechanism, the use gap between multiple feeding rollers can be adjusted, so that peanuts of different particle sizes can be conveniently transported and fed. At the same time, impurities and peanuts that do not meet the particle size requirements can be removed during the transportation and feeding process, thereby ensuring the quality of the peanuts during the feeding process. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a structural diagram of the present invention.
[0020] Figure 2 It is a partial cross-sectional structural diagram of the present invention.
[0021] Figure 3 It is a partial cross-sectional view of the connection structure between the loading frame and the driving mechanism in the present invention.
[0022] Figure 4 It is a partial cross-sectional view of the connection structure of the feeding frame and the adjustment mechanism in the present invention.
[0023] Figure 5This is a structural diagram of the connection between the tensioning mechanism and the transmission assembly in the present invention.
[0024] Figure 6 This is a cross-sectional view of the connection structure between the loading frame and the feeding assembly in the present invention.
[0025] Figure 7 It is a partial structural diagram of the loading frame in the present invention.
[0026] Figure 8 It is a partial structural diagram of the blocking mechanism in the present invention.
[0027] Figure 9 This is a diagram showing the positions of the feeding frame and the paste dish during paste coating according to the present invention.
[0028] Reference numerals in the figure: 1, feeding frame; 2, first groove; 3, second groove; 4, guide plate; 5, mounting plate; 6, feeding mechanism; 601, feeding roller; 602, prying plate; 603, rotating rod; 7, driving mechanism; 701, first motor; 702, transmission assembly; 7021, pulley; 7022, belt; 8, adjusting mechanism; 801, second electric push rod; 802, connecting plate; 803, connecting shaft; 804, Scissor-type telescopic frame; 9. Tensioning mechanism; 901. Horizontal plate; 902. U-shaped block; 903. Tensioning pulley; 904. First electric push rod; 10. Discharge port; 11. Guide plate; 12. L-shaped plate; 13. Blocking mechanism; 131. Mounting block; 132. Connecting rod; 133. Blocking plate; 134. Second motor; 14. Rectangular opening; 15. Corrugated sealing sleeve; 16. Slide groove; 17. Slider; 18. Vertical plate; 19. Support plate. DETAILED DESCRIPTION
[0029] The following is combined with Figure 1-9 This application is described in further detail.
[0030] Please refer to Figure 1 、 Figure 2 and Figure 7 An automatic feeding device for processing fried foods includes a feeding frame 1 having a first groove 2 defined in the front of the feeding frame 1 and a second groove 3 defined in the rear of the feeding frame 1. Guide plates 4 are fixedly disposed in both the first and second grooves 2 and 3. Five mounting plates 5 are disposed on the guide plates 4. The central mounting plate 5 is fixedly disposed on the guide plates 4, while the other four mounting plates 5 are slidably disposed on the guide plates 4. A feeding mechanism 6 is disposed between the corresponding front and rear mounting plates 5. When feeding peanuts, the feeding operation can be performed using multiple rotating groups of feeding mechanisms 6.
[0031] See Figure 2 、 Figure 3 and Figure 6The feeding mechanism 6 includes a feeding roller 601 arranged on the inner side of the feeding frame 1. The five feeding rollers 601 are located on the inner side of the feeding frame 1 with their heights in the vertical direction decreasing from left to right. Three feeding plates 602 distributed in a circular array are fixedly arranged on the outer side of the feeding roller 601. The two corresponding front and rear guide plates 4 are both rotatably provided with a rotating rod 603 on the side close to each other. The end of the rotating rod 603 away from the mounting plate 5 is connected to the end of the feeding roller 601.
[0032] See Figure 2 、 Figure 3 and Figure 5 A driving mechanism 7 used in conjunction with the feeding mechanism is commonly provided on the five mounting plates 5 located in the first groove 2. The driving mechanism 7 includes a first motor 701 fixedly provided on the front side wall of the leftmost mounting plate 5. The output shaft of the first motor 701 is connected to the front end of the leftmost rotating rod 603. A transmission assembly 702 is provided between two adjacent rotating rods 603. The transmission assembly 702 includes a pulley 7021 provided on the corresponding rotating rod 603. A belt 7022 is provided to roll between the two pulleys 7021.
[0033] In order to quickly load the peanuts, after the peanuts fall into the loading frame 1, the first motor 701 works to drive the corresponding rotating rod 603 to rotate clockwise. The rotation of the rotating rod 603 can drive the remaining rotating rods 603 to rotate synchronously in the clockwise direction using multiple sets of transmission components 702, so that the five loading rollers 601 can all rotate in the clockwise direction. Moreover, since the five loading rollers 601 are located at the inner side of the loading frame 1 with their vertical heights decreasing from left to right, and the material stripping plates 602 on the loading rollers 601 can facilitate the peanuts to be transported from left to right for loading, and there are gaps between the five loading rollers 601, the peanuts can be screened during the loading process, so that some impurities and peanuts that do not meet the particle size requirements can flow out of the gaps, thereby ensuring the quality of the peanut loading.
[0034] See Figure 1 、 Figure 2 、 Figure 6 and Figure 7 A discharge port 10 is provided on the right side of the loading frame 1, and a guide plate 11 is slidingly arranged in the discharge port 10. The side of the guide plate 11 close to the loading roller 601 is chamfered, and L-shaped plates 12 are fixedly arranged on the front and rear sides of the guide plate 11. The left side of the L-shaped plate 12 on the front side penetrates into the first groove 2 and is connected to the corresponding mounting plate 5, and the left side of the L-shaped plate 12 on the rear side penetrates into the second groove 3 and is connected to the corresponding mounting plate 5.
[0035] See Figure 1 、 Figure 2 and Figure 8A blocking mechanism 13 is provided at the upper part of the loading frame 1 at the discharge port 10. The blocking mechanism 13 includes two mounting blocks 131 arranged on the right side of the upper part of the loading frame 1 and symmetrically distributed front to back. A connecting rod 132 is rotatably provided between the two mounting blocks 131. A blocking plate 133 is fixedly provided on the connecting rod 132. The blocking plate 133 is located in the discharge port 10, and the bottom of the blocking plate 133 contacts the upper part of the guide plate 11. A second motor 134 is fixedly provided on one side of one of the mounting blocks 131, and the output shaft of the second motor 134 is connected to one end of the connecting rod 132.
[0036] In order to ensure that the peanuts in the feeding frame 1 can be fed normally, during the rotation of the feeding roller 601, the second motor 134 drives the connecting rod 132 to rotate, and the rotation of the connecting rod 132 drives the sealing plate 133 to rotate counterclockwise. When the sealing plate 133 is removed from the discharge port 10, the second motor 134 stops working. At this time, the peanuts can fall on the guide plate 11 and be discharged from the discharge port 10, and the peanuts can be fed normally.
[0037] See Figure 1 and Figure 9 , vertical plates 18 are fixedly provided around the upper part of the loading frame 1, and two supporting plates 19 symmetrically distributed on the front and back sides of the loading frame 1 are fixedly provided.
[0038] In order to facilitate the coating of peanuts with paste while feeding them, the staff can use the vertical plate 18 and the external hanger to move the feeding frame 1 to the upper part of the paste dish. At this time, the supporting plate 19 can be used to support and limit the feeding frame 1. At this time, the bottom end of the feeding roller 601 contacts the paste in the paste dish, and then the first motor 701 rotates counterclockwise. The five feeding rollers 601 can be rotated counterclockwise by using the cooperation of the transmission component 702. At this time, the peanuts can be rotated between the two feeding rollers 601 by using the material stripping plate 602, and the feeding rollers 601 can rotate in the process of rotation. The paste is wrapped on its surface, and then the rotating peanuts can evenly contact the paste on the surface of the feeding roller 601, so that the peanuts can be evenly coated with paste. After the peanuts are coated with paste, the second motor 134 works to rotate the blocking plate 133 and no longer blocks the discharge port 10. Then the first motor 701 drives the feeding roller 601 to rotate clockwise, so that the peanuts coated with paste can be discharged through the discharge port 10 for loading, and then the peanuts can be coated with paste while being loaded, which greatly reduces the difficulty of operation and improves the production efficiency of peanuts.
[0039] See Figure 2 and Figure 4An adjusting mechanism 8 for driving the feeding mechanism 6 to move is provided in the second groove 3. The adjusting mechanism 8 includes a second electric push rod 801 provided in the second groove 3. A connecting plate 802 is fixedly installed on the telescopic shaft of the second electric push rod 801. The front side of the connecting plate 802 is connected to the rear side wall of the leftmost mounting plate 5 located in the second groove 3. A connecting shaft 803 is rotatably provided on the rear side wall of the mounting plate 5 located in the second groove 3. A scissor-type telescopic frame 804 is commonly provided between the five connecting shafts 803.
[0040] In order to facilitate the loading of peanuts of different particle sizes, the second electric push rod 801 can be used to push the connecting plate 802 to move, and the movement of the connecting plate 802 drives the corresponding mounting plate 5 to move. At this time, the scissor-type telescopic frame 804 can be used to drive the mounting plates 5 on the left and right sides to move closer to or away from the mounting plate 5 in the middle. The movement of the mounting plate 5 can drive the loading roller 601 to move, so that the use gap between the two adjacent loading rollers 601 can be adjusted, thereby facilitating the loading of peanuts of different particle sizes. When moving, the mounting plate 5 will also drive the guide plate 11 to move synchronously through the L-shaped plate 12, which will not affect the normal loading of peanuts.
[0041] See Figure 1 、 Figure 2 、 Figure 3 and Figure 5 A tensioning mechanism 9 is provided in the first groove 2 for use in conjunction with the adjustment mechanism 8. The tensioning mechanism 9 includes a horizontal plate 901 provided in the first groove 2. Four U-shaped blocks 902 are fixedly provided at the bottom of the horizontal plate 901. A tensioning wheel 903 is rotatably provided between the front and rear horizontal sections of the U-shaped block 902, and the tensioning wheel 903 is rollingly connected to the corresponding belt 7022. A first electric push rod 904 is fixedly provided on the upper front side of the loading frame 1. The telescopic shaft of the first electric push rod 904 passes through the first groove 2 and is connected to the upper part of the horizontal plate 901.
[0042] In order to ensure that the adjusted multiple feeding rollers 601 can rotate normally and synchronously, the first electric push rod 904 will also work synchronously during the process of adjusting the position of the feeding roller 601. When the gap between the two adjacent feeding rollers 601 is adjusted to be larger, the belt 7022 between the corresponding two pulleys 7021 will be tightened, and the first electric push rod 904 can work to drive the cross plate 901 to move downward, and the downward movement of the cross plate 901 can drive the U-shaped block 902 to move downward, and the downward movement of the U-shaped block 902 can drive the tensioning wheel 903 to move downward, thereby ensuring that the belt 7 022 is in a suitable tensioning degree. When the gap between two adjacent feeding rollers 601 is adjusted to be smaller, the belt 7022 between the corresponding two pulleys 7021 will be in a loose state. The first electric push rod 904 can work to drive the cross plate 901 to move upward. The upward movement of the cross plate 901 can drive the U-shaped block 902 to move upward. The upward movement of the U-shaped block 902 will drive the tensioning wheel 903 to move upward. The tensioning wheel 903 can be used to make the belt 7022 in a suitable tensioning degree, so that multiple feeding rollers 601 can rotate normally and synchronously after moving.
[0043] See Figure 5 and Figure 7 Two symmetrically distributed slide grooves 16 are provided on the inner front side of the loading frame 1, and the slide grooves 16 are connected to the first groove 2. Two symmetrically distributed sliders 17 are fixedly provided on the rear side of the horizontal plate 901. The side of the slider 17 away from the horizontal plate 901 passes through the slide groove 16 and is slidably connected to the slide groove 16.
[0044] In order to ensure the stability of the tensioning wheel 903 during the up and down movement, when the horizontal plate 901 moves to drive the tensioning wheel 903 to move, the movement of the horizontal plate 901 will also drive the slider 17 to slide in the slide groove 16, making the horizontal plate 901 more stable when moving, thereby ensuring the stability of the tensioning wheel 903 during the up and down movement, and making it less likely for the tensioning wheel 903 to be misplaced during the movement.
[0045] See Figure 4 and Figure 7 Rectangular openings 14 are provided on the front and rear inner walls of the feeding frame 1. The two rectangular openings 14 are respectively connected to the first groove 2 and the second groove 3. A corrugated sealing sleeve 15 is provided in the rectangular opening 14. The end of the rotating rod 603 away from the feeding roller 601 passes through the corrugated sealing sleeve 15 and is rotatably connected to the corrugated sealing sleeve 15.
[0046] In order to ensure the sealing of the first groove 2 and the second groove 3 during the movement of the feeding roller 601, the rotating rod 603 will push the corrugated sealing sleeve 15 during the movement. At this time, the corrugated sealing sleeve 15 will expand or deform to a certain extent. Since the corrugated sealing sleeve 15 has good elasticity and recovery, it can fit tightly around the rotating rod 603 and the rectangular opening 14, thereby ensuring that the sealing of the first groove 2 and the second groove 3 is not affected.
[0047] During specific operation, when the peanuts are normally loaded, the first motor 701 is used to drive the loading roller 601 to rotate clockwise, which can drive the peanuts to be transported from left to right in the loading frame 1. Then the peanuts can fall on the guide plate 11 and be discharged from the discharge port 10, and the peanuts can be normally loaded.
[0048] When it is necessary to coat the peanuts with paste synchronously during the feeding process, the feeding frame 1 can be moved to the upper part of the paste dish. At this time, the bottom end of the feeding roller 601 contacts the paste in the paste dish, and then the first motor 701 is used to drive the feeding roller 601 to rotate counterclockwise. During the rotation, the feeding roller 601 can wrap the paste on its surface, and then the peanuts rotating between the two feeding rollers 601 can be evenly in contact with the paste on the surface of the feeding roller 601, so that the peanuts can be evenly coated with paste. After the peanuts are coated with paste, the feeding roller 601 can be rotated clockwise to perform normal feeding on the peanuts coated with paste.
[0049] Furthermore, by utilizing the cooperation of the adjusting mechanism 8 and the tensioning mechanism 9, peanuts of different particle sizes can be fed and coated with paste, which greatly improves the applicability of the device.
[0050] The above are merely embodiments of the present invention and are not intended to limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made using the contents of the present invention description and drawings, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. An automatic feeding device for processing fried food, comprising a feeding frame (1), characterized in that: A first groove (2) is provided on the front inner side of the loading frame (1), and a second groove (3) is provided on the rear inner side of the loading frame (1). Guide plates (4) are fixedly provided in the first groove (2) and the second groove (3). Five mounting plates (5) are provided on the guide plate (4). The mounting plate (5) located in the middle is fixedly provided on the guide plate (4), and the other four mounting plates (5) are slidably provided on the guide plate (4). A feeding mechanism (6) is provided between the two corresponding mounting plates (5) at the front and rear. The feeding mechanism (6) includes a feeding roller (601) arranged on the inner side of the feeding frame (1), and the five feeding rollers (601) are located on the inner side of the feeding frame (1) at a decreasing height in the vertical direction from left to right. Three material-selecting plates (602) distributed in a circumferential array are fixedly arranged on the outer side of the feeding roller (601), and a rotating rod (603) is rotatably arranged on the side close to each other of the two corresponding front and rear guide plates (4), and the end of the rotating rod (603) away from the mounting plate (5) is connected to the end of the feeding roller (601); A driving mechanism (7) for use with a feeding mechanism is commonly provided on the five mounting plates (5) located in the first groove (2), the driving mechanism (7) comprising a first motor (701) fixedly provided on the front side wall of the leftmost mounting plate (5), the output shaft of the first motor (701) being connected to the front end of the leftmost rotating rod (603), a transmission assembly (702) being provided between two adjacent rotating rods (603), the transmission assembly (702) comprising a pulley (7021) provided on the corresponding rotating rod (603), and a belt (7022) being provided rollingly between the two pulleys (7021).
2. The automatic feeding device for processing fried food according to claim 1, characterized in that: An adjusting mechanism (8) for driving the feeding mechanism (6) to move is provided in the second groove (3), and the adjusting mechanism (8) includes a second electric push rod (801) provided in the second groove (3), a connecting plate (802) is fixedly installed on the telescopic shaft of the second electric push rod (801), the front side of the connecting plate (802) is connected to the rear side wall of the leftmost mounting plate (5) located in the second groove (3), a connecting shaft (803) is rotatably provided on the rear side wall of the mounting plate (5) located in the second groove (3), and a scissor-type telescopic frame (804) is commonly provided between the five connecting shafts (803).
3. The automatic feeding device for processing fried food according to claim 2, characterized in that: A tensioning mechanism (9) for use with the adjustment mechanism (8) is provided in the first groove (2), and the tensioning mechanism (9) includes a transverse plate (901) provided in the first groove (2), four U-shaped blocks (902) are fixedly provided at the bottom of the transverse plate (901), a tensioning wheel (903) is rotatably provided between the front and rear horizontal sections of the U-shaped block (902), and the tensioning wheel (903) is rollingly connected to the corresponding belt (7022), and a first electric push rod (904) is fixedly provided on the upper front side of the loading frame (1), and the telescopic shaft of the first electric push rod (904) passes through the first groove (2) and is connected to the upper part of the transverse plate (901).
4. The automatic feeding device for processing fried food according to claim 1, characterized in that: The right side of the loading frame (1) is provided with a discharge port (10), and a guide plate (11) is slidably arranged in the discharge port (10), and the side of the guide plate (11) close to the loading roller (601) is chamfered, and L-shaped plates (12) are fixedly arranged on the front and rear sides of the guide plate (11), and the left side of the L-shaped plate (12) on the front side penetrates into the first groove (2) and is connected to the corresponding mounting plate (5), and the left side of the L-shaped plate (12) on the rear side penetrates into the second groove (3) and is connected to the corresponding mounting plate (5).
5. The automatic feeding device for processing fried food according to claim 4, characterized in that: A blocking mechanism (13) is provided at the upper portion of the loading frame (1) at the discharge port (10), and the blocking mechanism (13) comprises two mounting blocks (131) arranged on the right side of the upper portion of the loading frame (1) and symmetrically distributed front to back, a connecting rod (132) is rotatably provided between the two mounting blocks (131), a blocking plate (133) is fixedly provided on the connecting rod (132), the blocking plate (133) is located in the discharge port (10), and the bottom of the blocking plate (133) contacts the upper portion of the guide plate (11), a second motor (134) is fixedly provided on one side of one of the mounting blocks (131), and the output shaft of the second motor (134) is connected to one end of the connecting rod (132).
6. The automatic feeding device for processing fried food according to claim 1, characterized in that: Rectangular openings (14) are provided on the front and rear inner side walls of the feeding frame (1), and the two rectangular openings (14) are respectively connected to the first groove (2) and the second groove (3). A corrugated sealing sleeve (15) is provided in the rectangular opening (14), and the end of the rotating rod (603) away from the feeding roller (601) passes through the corrugated sealing sleeve (15) and is rotatably connected to the corrugated sealing sleeve (15).
7. The automatic feeding device for processing fried food according to claim 3, characterized in that: The inner front side of the loading frame (1) is provided with two sliding grooves (16) which are symmetrically distributed on the left and right, and the sliding grooves (16) are connected to the first groove (2). The rear side of the horizontal plate (901) is fixed with two sliding blocks (17) which are symmetrically distributed on the left and right, and the side of the sliding block (17) away from the horizontal plate (901) passes through the sliding groove (16) and is slidably connected to the sliding groove (16).
8. The automatic feeding device for processing fried food according to claim 1, characterized in that: Vertical plates (18) are fixedly provided around the upper portion of the loading frame (1), and two supporting plates (19) symmetrically distributed on the front and rear sides of the loading frame (1) are fixedly provided.
Citation Information
Patent Citations
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