An automated high-speed forming and processing equipment for filling foods
Through the folding conveying device and lifting mechanism, combined with the multi-channel feeding assembly and the flower-pinching transmission device, the problem of equipment transportation and blanking stroke adaptability is solved, and the processing speed and efficiency of filling food is improved.
Patent Information
- Application Number
- CN202011436508.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-12-11
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2040-12-11
AI Technical Summary
The existing filling food processing equipment is limited by the equipment structural volume and has low processing efficiency. It needs to be disassembled and assembled during transportation. The blanking stroke does not adapt to the filling volume, which is prone to deformation and damage.
The conveying device and lifting mechanism using folding technology, combined with multiple feeding components and a flower-pinching transmission device, realize the equipment folding transportation and free adjustment of the blanking stroke. The sprocket chain drives synchronously to meet the processing needs of different volumes of fillings.
On the premise that the equipment volume does not increase, the processing speed and efficiency are improved, the processing needs of different volumes of stuffing are met, and the disassembly and assembly work during transportation is reduced.
Smart Images

Figure CN112586527B_ABST
Abstract
Description
Technical Field
[0001] The invention discloses automatic high-speed forming and processing equipment for filling foods, belonging to the technical field of filling food processing. Background Art
[0002] In the current processing of stuffing foods, the processing efficiency is greatly limited by the influence of the equipment structure volume, which seriously affects the processing speed of stuffing foods. In addition, the equipment occupies a large space during transportation. Therefore, during transportation, the equipment needs to be disassembled and assembled at the front and back. In addition, if the filling food is dropped during the dropping process, if the dropping stroke is too high, it is easy to cause the filling food to deform and damage. Moreover, the dropping stroke of filling foods of different sizes is different. It is difficult for current filling equipment to solve these technical problems. Summary of the Invention
[0003] The present invention overcomes the shortcomings of the existing technology and provides an automated high-speed forming and processing equipment for filling foods. It solves the problem of equipment transportation through folding technology and satisfies the processing needs of filling foods of different volumes by freely adjusting the blanking stroke. Without significantly increasing the volume of the equipment, the processing speed of filling foods is greatly improved.
[0004] In order to solve the above technical problems, the present invention adopts a technical solution: an automated high-speed forming and processing equipment for filling foods, comprising a conveying device, a filling diverting device, a pinching transmission device, and a main frame, wherein the filling diverting device is arranged on the upper part of the main frame, the conveying device is arranged in the middle part of the main frame, and the pinching transmission device is arranged between the filling diverting device and the conveying device. The pinching transmission device pinches and shapes the filling and outer skin output by the filling diverting device and then transports them away through the conveying device;
[0005] The structure of the conveying device is as follows: it includes a frame, a conveyor belt, a driving roller, a driven roller and a supporting roller, the frame is movably set on a vertical guide rail, the rear end of the frame is provided with a driven roller, both ends of the driven roller are hinged to the frame, the front end of the frame is hinged with a bending plate, one end of the bending plate is hinged to the frame, the other end of the bending plate is movably provided with a conveyor belt correction tongue, both sides of the bending plate are fixedly provided with bending pieces, both ends of the hinge shaft of the bending plate and the frame are plugged into the bending piece, the bending piece is provided with an arc-shaped slide groove, and the slide groove is provided with screw fasteners The said screw fasteners clamp and fix the bent piece on the frame by connecting with the frame, the said active roller and the supporting roller are arranged on the lower side of the frame, and the two ends of the said active roller and the supporting roller are hinged on the frame; the said conveyor belt passes around the active roller, the driven roller, the upper side of the frame, the upper side of the bending plate, the conveyor belt deviation correction tongue plate and the supporting roller, and then goes back to the active roller to form a closed loop; the said bending plate can rotate around the hinge axis between it and the frame to the top of the frame, the said bending piece rotates synchronously with the bending plate, and the said screw fasteners slide relatively along the slide groove in matching manner; the number of said conveyor belts is two, and the two said conveyor belts are symmetrically arranged laterally on the frame;
[0006] The structure of the filling diverter device is as follows: it includes an inner filling feeding component, an outer packaging material feeding component, a quantitative diverter component, a diverter pipe, a gate valve and a discharge mold cavity, the two outer packaging material feeding components are symmetrically arranged on both sides of the inner filling feeding component, the inner filling feeding component and the outer packaging material feeding component are both provided with a quantitative diverter component, the discharge port of the inner filling feeding component is provided with a diverter pipe, the diverter pipe is a T-shaped tee pipe, the vertical pipe end of the diverter pipe is connected with the quantitative diverter assembly discharge port of the inner filling feeding component, the two horizontal pipe ends of the diverter pipe are respectively connected with the discharge mold cavity through pipes, the inner cavity of the discharge mold cavity is connected with the horizontal pipe end of the diverter pipe, the outer cavity of the discharge mold cavity is connected with the quantitative diverter assembly discharge port of the outer packaging material feeding component through a pipe, and a gate valve is provided on the pipe connecting the horizontal pipe end of the diverter pipe and the discharge mold cavity, and the gate valve is used to control the filling flow entering the inner cavity of the discharge mold cavity;
[0007] The structure of the flower pinching transmission device is as follows: it includes a driving bracket, a cutter disc driving shaft, an eccentric shaft, a cutter disc driving plate, a pull rod, a bent rod, a cutter disc and a limit plate, the driving bracket is horizontally provided with a cutter disc driving shaft, the cutter disc driving shaft is driven by a motor fixed on the driving bracket through a sprocket chain structure, eccentric shafts are arranged in parallel at both ends of the cutter disc driving shaft, sprockets are arranged on the two eccentric shafts, the sprockets on the eccentric shafts are connected to the sprockets arranged on the cutter disc driving shaft by a chain, and the two eccentric shafts keep rotating synchronously, and the driving Limiting plates are provided at both ends of the bracket, and arc-shaped limiting holes are provided on the limiting plates. One end or both ends of the eccentric shaft are correspondingly arranged in the limiting holes. The cutter disc driving plate is movably mounted on the eccentric shaft, and the cutter disc driving plate is arranged between the driving bracket and the limiting plate. When the eccentric shaft rotates along the contour of the limiting hole, the cutter disc driving plate moves back and forth longitudinally. One end of the bent rod is connected to the upper end of the cutter disc driving plate through a pull rod, and the other end of the bent rod is connected to the cutter disc, and the cutter disc is driven to open and clamp and pinch flowers through the longitudinal reciprocating movement of the cutter disc driving plate.
[0008] The eccentric shaft is a roller structure with a cam partially provided. The portion of the eccentric shaft located in the limiting hole is provided with a cam follower. The cam follower is movably mounted on the eccentric shaft, so that rolling friction is formed between the eccentric shaft and the limiting hole.
[0009] A cutter disc drive plate guide block is provided between the drive bracket and the limit plate, and the cutter disc drive plate is movably provided on the cutter disc drive plate guide block.
[0010] The quantitative flow splitting component includes a quantitative flow splitting rotor and a paddle component.
[0011] The discharge mold cavity includes a mold fixing seat, an outer packaging material forming mold, an inner filling forming mold and a forming mold pressure cover. The inner filling forming mold is connected to the inner cavity discharge end by a thread, and the outer packaging material forming mold is pressed and fixed on the mold fixing seat by the forming mold pressure cover, wherein the forming mold pressure cover and the mold fixing seat are fixedly connected by a thread.
[0012] A lifting mechanism is provided on the lower side of the frame, and is used to push the frame to move up and down along the guide rail to adjust the blanking stroke of the filling food; the lifting mechanism is a structure of a worm gear and a screw nut.
[0013] The guide rail is fixedly arranged on the filling food rack, and the filling food rack is provided with an indicator scale in the direction along the guide rail. The end of the frame corresponding to the indicator scale is provided with an indicator needle, and the filling food falling stroke is indicated by the indicator needle and the indicator scale.
[0014] Conveyor belt anti-deflection baffles are provided on the bending plates on both sides of the conveyor belt, and the conveyor belt anti-deflection baffles are used to limit the running direction of the conveyor belt on the bending plates.
[0015] A waste receiving box is provided on the frame below the bending plate, and a scraper is provided on the rear side of the waste receiving box or on the frame behind the waste receiving box. The scraper is used to scrape the waste stuck on the conveyor belt into the waste receiving box.
[0016] Both ends of the active roller are provided with a conveyor belt tensioning adjustment plate, and the conveyor belt tensioning adjustment plate is fixedly arranged on the frame. The conveyor belt tensioning adjustment plate is provided with a long groove in the vertical direction, and the active roller can move up and down along the long groove to adjust the tension of the conveyor belt.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The present invention uses a lifting mechanism to adjust the height of the frame. During transportation, the conveyor does not need to be dismantled for transport; simply loosen the screw fasteners. The bending plate is lifted and rotated about its hinge axis with the frame. As the bending piece rotates synchronously with the bending plate, its sliding grooves match the screw fasteners. Once fully rotated, the screw fasteners press the bending piece against the frame and secure it.
[0019] 2. The present invention drives the two eccentric shafts to rotate synchronously through a sprocket chain structure. A cam structure is provided at one or both ends of each eccentric shaft, and the end of the eccentric shaft rolls along the contour of the limiting hole in the arc-shaped limiting hole of the limiting plate through a cam follower, driving the cutter disc driving plate to move back and forth longitudinally, thereby driving the cutter disc connected thereto to open and clamp the pinching, realizing the synchronous operation of the two pinching mechanisms, and greatly improving the processing efficiency of stuffing foods.
[0020] 3. The present invention greatly improves the processing efficiency of stuffing food by setting up two-way outer packaging material feeding components, and the gate valve adjusts the flow rate of the filling to meet the requirements of different outer packaging materials and outer packaging material discharge speeds, thereby greatly improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present invention will be further described below with reference to the accompanying drawings.
[0022] Figure 1 It is a structural schematic diagram of the present invention.
[0023] Figure 2 It is a perspective view of the present invention.
[0024] Figure 3 It is a structural schematic diagram of the conveying device in the present invention.
[0025] Figure 4 It is a three-dimensional diagram of the conveying device in the present invention.
[0026] Figure 5 It is a structural schematic diagram of the filling diversion device in the present invention.
[0027] Figure 6 It is a cross-sectional view of the filling diversion device in the present invention.
[0028] Figure 7 It is a structural schematic diagram of the flower pinching transmission device in the present invention.
[0029] Figure 8 It is an internal view of the flower pinching transmission device in the present invention.
[0030] In the figure: 1 is a conveying device, 11 is a frame, 12 is a conveyor belt, 13 is a driving roller, 14 is a driven roller, 15 is a support roller, 16 is a lifting mechanism, 17 is a guide rail, 18 is a conveyor belt correction tongue plate, 19 is a bending plate, 110 is a bending piece, 111 is a slide, 112 is a filling food rack, 113 is an indicator scale, 114 is an indicator needle, 115 is a conveyor belt anti-deflection baffle, 116 is a waste box, 117 is a scraper, 118 is a screw fastener, 119 is a conveyor belt tensioning adjustment plate, 2 is a filling diverter, 21 is a filling feeding assembly, 22 is an outer packaging material Feeding assembly, 23 is the quantitative diversion assembly, 231 is the quantitative diversion rotor, 232 is the paddle assembly, 24 is the diversion pipe, 25 is the gate valve, 26 is the discharge cavity, 261 is the mold fixing seat, 262 is the outer packaging material forming mold, 263 is the inner filling forming mold, 264 is the forming mold pressure cover, 3 is the flower pinching transmission device, 31 is the drive bracket, 32 is the cutter disc drive shaft, 33 is the eccentric shaft, 34 is the cutter disc drive plate, 35 is the pull rod, 36 is the bent rod, 37 is the cutter disc, 38 is the limit plate, 39 is the cam follower, 310 is the cutter disc drive plate guide block, and 4 is the main frame. DETAILED DESCRIPTION
[0031] like Figures 1 to 8 As shown, the present invention is an automated high-speed forming and processing equipment for filling foods, comprising a conveying device 1, a filling diverting device 2, a pinching transmission device 3, and a main frame 4. The filling diverting device 2 is arranged on the upper part of the main frame 4, the conveying device 1 is arranged in the middle part of the main frame 4, and the pinching transmission device 3 is arranged between the filling diverting device 2 and the conveying device 1. The pinching transmission device 3 pinches and shapes the filling and outer skin output by the filling diverting device 2 and then transports them away through the conveying device 1.
[0032] The structure of the conveying device 1 is as follows: it includes a frame 11, a conveyor belt 12, a driving roller 13, a driven roller 14 and a supporting roller 15, the frame 11 is movably set on a vertical guide rail 17, the rear end of the frame 11 is provided with a driven roller 14, both ends of the driven roller 14 are hinged to the frame 11, the front end of the frame 11 is hinged with a bending plate 19, one end of the bending plate 19 is hinged to the frame 11, and the other end of the bending plate 19 is movably provided with a conveyor belt correction tongue 18, both sides of the bending plate 19 are fixedly provided with bending pieces 110, both ends of the hinge axis of the bending plate 19 and the frame 11 are plugged into the bending piece 110, the bending piece 110 is provided with an arc-shaped slide groove 111, and the slide groove 111 is provided with a screw fastener 118, The screw fastener 118 is connected to the frame 11 to clamp the bent piece 110 on the frame 11, and the active roller 13 and the support roller 15 are arranged on the lower side of the frame 11, and the two ends of the active roller 13 and the support roller 15 are hinged to the frame 11; the conveyor belt 12 passes around the active roller 13, the driven roller 14, the upper side of the frame 11, the upper side of the bending plate 19, the conveyor belt correction tongue 18 and the support roller 15, and then goes back to the active roller 13 to form a closed loop; the bending plate 19 can rotate around its hinge axis with the frame 11 to the top of the frame 11, and the bent piece 110 rotates synchronously with the bending plate 19, and the screw fastener 118 slides relatively along the slide groove 111 in matching manner; the number of the conveyor belts 12 is two, and the two conveyor belts 12 are symmetrically arranged laterally on the frame 11;
[0033] The structure of the filling diversion device 2 is as follows: it includes an inner filling feeding component 21, an outer packaging material feeding component 22, a quantitative diversion component 23, a diversion pipe 24, a gate valve 25 and a discharge cavity 26. The two outer packaging material feeding components 22 are symmetrically arranged on both sides of the inner filling feeding component 21. The discharge ports of the inner filling feeding component 21 and the outer packaging material feeding component 22 are both provided with a quantitative diversion component 23. The discharge port of the inner filling feeding component 21 is provided with a diversion pipe 24. The diversion pipe 24 is a T-shaped three-way pipe. The vertical pipe of the diversion pipe 24 The end is communicated with the discharge port of the quantitative diversion component 23 of the filling feeding component 21, and the two horizontal pipe ends of the diversion pipe 24 are respectively connected to the discharge mold cavity 26 through pipes. The inner cavity of the discharge mold cavity 26 is communicated with the horizontal pipe end of the diversion pipe 24, and the outer cavity of the discharge mold cavity 26 is communicated with the discharge port of the quantitative diversion component 23 of the outer packaging material feeding component 22 through a pipe. A gate valve 25 is provided on the pipe connecting the horizontal pipe end of the diversion pipe 24 and the discharge mold cavity 26. The gate valve 25 is used to control the flow of filling entering the inner cavity of the discharge mold cavity 26;
[0034] The structure of the flower pinching transmission device 3 is as follows: it includes a driving bracket 31, a cutter disc driving shaft 32, an eccentric shaft 33, a cutter disc driving plate 34, a pull rod 35, a bent rod 36, a cutter disc 37 and a limit plate 38. The cutter disc driving shaft 32 is horizontally arranged on the driving bracket 31. The cutter disc driving shaft 32 is driven by a motor fixed on the driving bracket 31 through a sprocket chain structure. Eccentric shafts 33 are arranged in parallel at both ends of the cutter disc driving shaft 32. Sprockets are arranged on the two eccentric shafts 33. The sprockets on the eccentric shafts 33 are connected to the sprockets arranged on the cutter disc driving shaft 32 by a chain, and the two eccentric shafts 33 keep rotating synchronously. A limit plate 38 is provided at both ends of the bracket 31, and an arc-shaped limit hole is provided on the limit plate 38. One end or both ends of the eccentric shaft 33 are correspondingly arranged in the limit hole. The cutter disc drive plate 34 is movably mounted on the eccentric shaft 33, and the cutter disc drive plate 34 is arranged between the drive bracket 31 and the limit plate 38. When the eccentric shaft 33 rotates along the contour of the limit hole, the cutter disc drive plate 34 moves back and forth longitudinally. One end of the bent rod 36 is connected to the upper end of the cutter disc drive plate 34 through a pull rod 35, and the other end of the bent rod 36 is connected to the cutter disc 37. The cutter disc 37 is driven to open and clamp the flowers through the longitudinal reciprocating movement of the cutter disc drive plate 34.
[0035] The eccentric shaft 33 is a roller structure with a cam partially provided. The portion of the eccentric shaft 33 located in the limiting hole is provided with a cam follower 39. The cam follower 39 is movably mounted on the eccentric shaft 33, so that rolling friction is generated between the eccentric shaft 33 and the limiting hole.
[0036] A cutter disc drive plate guide block 310 is provided between the drive bracket 31 and the limit plate 38 , and the cutter disc drive plate 34 is movably provided on the cutter disc drive plate guide block 310 .
[0037] The quantitative flow splitting assembly 23 includes a quantitative flow splitting rotor 231 and a paddle assembly 232 .
[0038] The discharge mold cavity 26 includes a mold fixing seat 261, an outer packaging material forming mold 262, an inner filling forming mold 263 and a forming mold pressure cover 264. The inner filling forming mold 263 is connected to the inner cavity discharge end by a thread, and the outer packaging material forming mold 262 is pressed and fixed on the mold fixing seat 261 by the forming mold pressure cover 264, wherein the forming mold pressure cover 264 and the mold fixing seat 261 are fixedly connected by a thread.
[0039] A lifting mechanism 16 is provided on the lower side of the frame 11 for pushing the frame 11 up and down along the guide rail 17 to adjust the drop stroke of the filling food; the lifting mechanism 16 is a structure of a worm gear and a screw nut.
[0040] The guide rail 17 is fixedly set on the filling food rack 112, and the filling food rack 112 is provided with an indicator scale 113 in the direction along the guide rail 17. The end of the frame 11 corresponding to the indicator scale 113 is provided with an indicator needle 114, and the indicator needle 114 and the indicator scale 113 indicate the blanking stroke of the filling food.
[0041] Conveyor belt anti-deflection baffles 115 are provided on the bending plates 19 on both sides of the conveyor belt 12. The conveyor belt anti-deflection baffles 115 are used to limit the running direction of the conveyor belt 12 on the bending plates 19.
[0042] A waste receiving box 116 is provided on the frame 11 below the bending plate 19 , and a scraper 117 is provided on the rear side of the waste receiving box 116 or on the frame 11 behind the waste receiving box 116 . The scraper 117 is used to scrape the waste stuck on the conveyor belt 12 into the waste receiving box 116 .
[0043] Both ends of the active roller 13 are provided with a conveyor belt tensioning adjustment plate 119, and the conveyor belt tensioning adjustment plate 119 is fixedly set on the frame 11. The conveyor belt tensioning adjustment plate 119 is provided with a long groove in the vertical direction. The active roller 13 can move up and down along the long groove to adjust the tension of the conveyor belt.
[0044] The present invention adjusts the height of the frame 11 through the lifting mechanism 16. Specifically, the worm wheel is driven to rotate by rotating the handwheel, and the worm wheel drives the worm to rotate. The worm and the screw are coaxial, and the nut is mounted on the screw, and the upper end of the nut is connected to the frame 11. When the screw rotates, the nut drives the frame 11 to move up and down, thereby adjusting the blanking stroke of the filling food to meet the requirements of different blanking strokes of different filling foods.
[0045] During transportation, the present invention does not require the conveyor of the equipment to be disassembled for transportation. Instead, the screw fasteners 118 need only be loosened. The bending plate 19 is lifted and rotated about the hinge axis with the frame 11. As the bending piece 110 rotates synchronously with the bending plate 19, the sliding groove of the bending piece 110 matches the screw fasteners 118. After being rotated into place, the bending piece 110 is pressed against the frame 11 by the screw fasteners 118 and fixed.
[0046] The filling feeding assembly 21 and the outer packaging material feeding assembly 22 involved in the present invention are both existing technologies. By setting up two outer packaging material feeding assemblies 22, the processing efficiency of filling food is greatly improved, and the gate valve 25 adjusts the flow of the filling to meet the requirements of different outer packaging materials and outer packaging material discharge speeds, thereby greatly improving production efficiency.
[0047] The present invention drives the two eccentric shafts 33 to rotate synchronously through a sprocket chain structure. A cam structure is provided at one or both ends of each eccentric shaft 33, and the end of the eccentric shaft 33 rolls along the contour of the limiting hole in the arc-shaped limiting hole of the limiting plate 38 through a cam follower 39, driving the cutter disc driving plate 34 to move back and forth longitudinally, thereby driving the cutter disc 37 connected thereto to open and clamp the pinching, thereby realizing the synchronous operation of the two pinching mechanisms and greatly improving the processing efficiency of filling foods.
[0048] The embodiments of the present invention are described in detail above with reference to the accompanying drawings. However, the present invention is not limited to the above embodiments. Various changes can be made within the knowledge of ordinary technicians in this field without departing from the scope of the present invention.
Claims
1. An automated high-speed forming and processing equipment for filling food, characterized in that: The invention comprises a conveying device (1), a filling diverting device (2), a pinching transmission device (3) and a main frame (4), wherein the filling diverting device (2) is arranged at the upper part of the main frame (4), the conveying device (1) is arranged at the middle part of the main frame (4), the pinching transmission device (3) is arranged between the filling diverting device (2) and the conveying device (1), and the pinching transmission device (3) pinches and shapes the filling and the outer skin output by the filling diverting device (2) and then transports them away through the conveying device (1); The structure of the conveying device (1) is as follows: it includes a frame (11), a conveyor belt (12), a driving roller (13), a driven roller (14) and a supporting roller (15), the frame (11) is movably arranged on a vertical guide rail (17), the rear end of the frame (11) is provided with a driven roller (14), both ends of the driven roller (14) are hinged to the frame (11), the front end of the frame (11) is hinged to a bending plate (19), the bending plate (19) is hinged to the front end of the frame (11), and the bending plate (19) is hinged to the front end of the frame (11). One end is hinged to the frame (11), and the other end of the bending plate (19) is movably provided with a conveyor belt correction tongue (18), and both sides of the bending plate (19) are fixedly provided with bending pieces (110), and both ends of the hinge axis of the bending plate (19) and the frame (11) are plugged into the bending piece (110), and the bending piece (110) is provided with an arc-shaped slide groove (111), and the slide groove (111) is provided with a screw fastener (118). The screw fastener (118) is connected to the frame (11) to clamp and fix the bending plate (110) on the frame (11); the active roller (13) and the support roller (15) are arranged on the lower side of the frame (11), and the two ends of the active roller (13) and the support roller (15) are hinged on the frame (11); the conveyor belt (12) passes around the active roller (13), the driven roller (14), the upper side of the frame (11), the upper side of the bending plate (19), the conveyor belt deviation correction The tongue plate (18) and the support roller (15) are then wound around the active roller (13) to form a closed loop; the bending plate (19) can be rotated around the hinge axis with the frame (11) to the top of the frame (11), the bending piece (110) rotates synchronously with the bending plate (19), and the screw fastener (118) slides relatively along the slide groove (111) in a matching manner; the number of the conveyor belts (12) is two, and the two conveyor belts (12) are symmetrically arranged laterally on the frame (11); The structure of the filling diversion device (2) is as follows: it includes an inner filling feeding component (21), an outer packaging material feeding component (22), a quantitative diversion component (23), a diversion pipe (24), a gate valve (25) and a discharge cavity (26), the two outer packaging material feeding components (22) are symmetrically arranged on both sides of the inner filling feeding component (21), the discharge ports of the inner filling feeding component (21) and the outer packaging material feeding component (22) are both provided with a quantitative diversion component (23), the discharge port of the inner filling feeding component (21) is provided with a diversion pipe (24), the diversion pipe (24) is a T-shaped three-way pipe, and the diversion pipe (24) is The vertical pipe end is connected to the discharge port of the quantitative diversion component (23) of the filling feeding component (21), and the two horizontal pipe ends of the diversion pipe (24) are respectively connected to the discharge mold cavity (26) through pipes. The inner cavity of the discharge mold cavity (26) is connected to the horizontal pipe end of the diversion pipe (24), and the outer cavity of the discharge mold cavity (26) is connected to the discharge port of the quantitative diversion component (23) of the outer packaging material feeding component (22) through a pipe. A gate valve (25) is provided on the pipe connecting the horizontal pipe end of the diversion pipe (24) and the discharge mold cavity (26), and the gate valve (25) is used to control the flow of filling entering the inner cavity of the discharge mold cavity (26); The structure of the flower pinching transmission device (3) is as follows: it includes a driving bracket (31), a cutter disc driving shaft (32), an eccentric shaft (33), a cutter disc driving plate (34), a pull rod (35), a bent rod (36), a cutter disc (37) and a limit plate (38), wherein the driving bracket (31) is provided with a cutter disc driving shaft (32) in a transverse direction, and the cutter disc driving shaft (32) is driven by a motor fixed on the driving bracket (31) through a sprocket chain structure, and eccentric shafts (33) are provided in parallel at both ends of the cutter disc driving shaft (32), and sprockets are provided on the two eccentric shafts (33), and the sprockets on the eccentric shafts (33) are connected to the sprockets provided on the cutter disc driving shaft (32) by a chain, and the two eccentric shafts (33) keep rotating synchronously, and the driving bracket (31) is provided with a pull rod (35), a pull rod (36), a bent rod (36), a cutter disc (37) and a limit plate (38), wherein the driving bracket (31) is provided with a cutter disc driving shaft (32) in a transverse direction, and the cutter disc driving shaft (32) is driven by a motor fixed on the driving bracket (31) through a sprocket chain structure, and the eccentric shafts (33) are provided in parallel at both ends of the cutter disc driving shaft (32), and the sprockets on the two eccentric shafts (33) are connected to the sprockets provided on the cutter disc driving shaft (32) by a chain, and the two eccentric shafts (33) keep rotating synchronously, and the driving bracket (31) is provided with a pull rod (35), a pull rod (36), a bent rod (36), a cutter disc (37) and a limit plate (38), and a pull rod (35) A limiting plate (38) is provided at both ends of the movable bracket (31), and an arc-shaped limiting hole is provided on the limiting plate (38). One end or both ends of the eccentric shaft (33) are correspondingly provided in the limiting hole. The cutter disc driving plate (34) is movably sleeved on the eccentric shaft (33), and the cutter disc driving plate (34) is provided between the driving bracket (31) and the limiting plate (38). When the eccentric shaft (33) rotates along the contour of the limiting hole, the cutter disc driving plate (34) moves back and forth longitudinally. One end of the curved rod (36) is connected to the upper end of the cutter disc driving plate (34) through a pull rod (35), and the other end of the curved rod (36) is connected to the cutter disc (37). The cutter disc (37) is driven to open and clamp the flower by the longitudinal reciprocating movement of the cutter disc driving plate (34).
2. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: The eccentric shaft (33) is a roller structure partially provided with a cam, and a cam follower (39) is provided at a portion of the eccentric shaft (33) located in the limiting hole. The cam follower (39) is movably sleeved on the eccentric shaft (33), so that rolling friction is formed between the eccentric shaft (33) and the limiting hole.
3. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: A cutter disc drive plate guide block (310) is provided between the drive bracket (31) and the limit plate (38), and the cutter disc drive plate (34) is movably provided on the cutter disc drive plate guide block (310).
4. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: The quantitative flow splitting assembly (23) comprises a quantitative flow splitting rotor (231) and a paddle assembly (232).
5. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: The discharge mold cavity (26) comprises a mold fixing seat (261), an outer packaging material forming mold (262), an inner filling forming mold (263) and a forming mold pressure cover (264); the inner filling forming mold (263) is connected to the discharge end of the inner cavity via a thread; the outer packaging material forming mold (262) is pressed and fixed on the mold fixing seat (261) via the forming mold pressure cover (264); wherein the forming mold pressure cover (264) and the mold fixing seat (261) are fixedly connected via a thread.
6. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: A lifting mechanism (16) is provided on the lower side of the frame (11), and the lifting mechanism (16) is used to push the frame (11) to move up and down along the guide rail (17) to adjust the drop stroke of the filling food; the lifting mechanism (16) is a structure of a worm gear and a screw nut.
7. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: The guide rail (17) is fixedly mounted on the filling food rack (112); the filling food rack (112) is provided with an indicator scale (113) in a direction along the guide rail (17); the frame (11) is provided with an indicator needle (114) at an end corresponding to the indicator scale (113); and the indicator needle (114) and the indicator scale (113) are used to indicate the dropping stroke of the filling food.
8. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: Conveyor belt anti-deflection baffles (115) are provided on the bending plates (19) on both sides of the conveyor belt (12), and the conveyor belt anti-deflection baffles (115) are used to limit the running direction of the conveyor belt (12) on the bending plates (19).
9. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: A waste receiving box (116) is provided on the frame (11) below the bending plate (19), and a scraper (117) is provided on the rear side of the waste receiving box (116) or on the frame (11) behind the waste receiving box (116). The scraper (117) is used to scrape waste adhered to the conveyor belt (12) into the waste receiving box (116).
10. The automatic high-speed forming and processing equipment for filling food according to claim 1, characterized in that: Both ends of the active roller (13) are provided with a conveyor belt tensioning adjustment plate (119), the conveyor belt tensioning adjustment plate (119) is fixedly arranged on the frame (11), and a long groove is provided on the conveyor belt tensioning adjustment plate (119) in the vertical direction. The active roller (13) can move up and down along the long groove to adjust the tension of the conveyor belt.
Citation Information
Patent Citations
Automatic high-speed forming and processing equipment for stuffing food
CN213961545U