CN115708523A - Noodle strip forming and slitting equipment and slitting method - Google Patents
Noodle strip forming and slitting equipment and slitting method Download PDFInfo
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- CN115708523A CN115708523A CN202211610542.1A CN202211610542A CN115708523A CN 115708523 A CN115708523 A CN 115708523A CN 202211610542 A CN202211610542 A CN 202211610542A CN 115708523 A CN115708523 A CN 115708523A
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Abstract
The invention discloses a noodle strip forming and cutting device and a noodle strip forming and cutting method, wherein the noodle strip forming and cutting device comprises a machine body, an annular conveying belt driven by a transmission module is installed inside the machine body, two symmetrically arranged feeding rollers are rotatably connected to the front part of the machine body, a longitudinal cutting assembly, a guide post a, a main shaft driven by a motor a, a tape separating mechanism and a weighing detection mechanism are sequentially and respectively installed between the inner surfaces of the machine body along the feeding direction, a plurality of transverse cutting assemblies with adjustable positions are installed on the peripheral side surface of the guide post a, each transverse cutting assembly is driven by the main shaft, and trimming modules are installed on the surfaces of the leftmost transverse cutting assembly and the rightmost transverse cutting assembly. According to the invention, through the arrangement of the longitudinal cutting assembly, the transverse cutting assembly, the belt dividing mechanism and the weighing detection mechanism, the device can efficiently cut the dough belt, and the separation assisting mechanism for dividing the dough belt is added on the basis of the traditional cutting device.
Description
Technical Field
The invention relates to the technical field of noodle strip processing, in particular to noodle strip forming and cutting equipment and a noodle strip forming and cutting method.
Background
In the prior art, a patent document with publication number CN211322815U discloses a noodle cutting machine, which comprises a table, a panel, a rotating rod, a boss, a motor, a speed reducer and a transmission shaft, wherein four corners of the bottom of the table are provided with supporting legs, the tops of the supporting legs are connected with the bottom of the table, the bottoms of the supporting legs are in contact with the ground, two sides of the panel are provided with baffles, the left ends of the baffles are connected with the right ends of the panel, four groups of panel supports are arranged at the four corners of the bottom of the panel, the tops of the panel supports are connected with the bottom of the panel, the bottom of the panel supports is connected with the top of the table, and the surfaces of the rotating rod are provided with a plurality of groups of cutters.
Disclosure of Invention
Technical problem to be solved
The invention aims to provide noodle strip forming and cutting equipment and a noodle strip forming and cutting method, and the noodle strip forming and cutting equipment and the noodle strip forming and cutting method can efficiently finish the cutting operation of a noodle strip by arranging a longitudinal cutting assembly, a transverse cutting assembly, a strip dividing mechanism and a weighing detection mechanism.
(II) technical scheme
In order to achieve the purpose, the invention provides the following technical scheme, namely the noodle strip forming and cutting equipment, which adopts the following technical scheme: including the organism, the internally mounted of organism has through drive module and driven endless conveyor belt, the front portion of organism rotates and is connected with the feed roll that two symmetries set up, install vertical cutting assembly, guide post an respectively in proper order along the feeding direction between the internal surface of organism, through motor a and driven main shaft, branch band mechanism and weighing detection mechanism, a plurality of position adjustable horizontal cutting assembly, every are installed to the side of week of guide post a horizontal cutting assembly all through main shaft drive, leftmost side and rightmost side the deburring module is all installed on horizontal cutting assembly's surface, dusting module an is installed to the position that just corresponds the feed roll rear side between the internal surface of organism, dusting module an links through first belt and drive module, dusting module b is installed to the position between just corresponding horizontal cutting assembly and the branch band mechanism between the internal surface of organism, dusting module b is connected with vertical cutting assembly transmission through the second belt.
As preferred scheme, vertical cutting assembly includes cutting motor and cutting roller respectively, the surface and the organism fixed connection of cutting motor, the both ends of cutting roller all are rotated with the organism and are connected, the output axle head and the cutting roller fixed connection of cutting motor, a vertical cutter is installed to the side all around of cutting roller.
As preferred scheme, the horizontal cutting subassembly includes the blade holder, the inner wall and the guide post an sliding connection of blade holder, the top surface threaded connection of blade holder have with guide post a complex knob a that is locked, the inner wall of blade holder rotates and is connected with the driven sleeve pipe of being connected with spindle drive, driven sleeve pipe's week side fixed mounting has the rotary-cut blade disc, the shape of main shaft is regular polygon, the fixed transmission hole of seting up with main shaft shape form adaptation of driven sleeve pipe's inner wall, the rotation axis of rotary-cut blade disc is parallel with the extending direction of vertical cutter.
As preferred scheme, the deburring module includes the connecting plate, the surface of connecting plate and the blade holder fixed connection who corresponds the position, the inner wall of connecting plate rotates and is connected with the book face axle, the side fixed mounting of connecting plate has motor b, motor b's output shaft end and book face axle fixed connection, the book face axle is stainless steel material, the surface of book face axle and endless conveyor all fixes and is provided with anti-sticking coating a.
As preferred scheme, dusting module an and dusting module b all include with organism fixed connection and set up in the flour storage tank of endless conveyor belt top, it is connected with down the powder beam barrel to rotate between the internal surface of flour storage tank, the week side fixed mounting of powder beam barrel has a set of lower powder plectrum that is circumference array distribution, every down the tip of powder plectrum all rotates the laminating with the flour storage tank, the bottom of flour storage tank and the position fixed mounting who corresponds down powder beam barrel bottom have a powder pipe, the inside equipartition that goes out the powder pipe has a set of regular distribution and goes out the vertical decurrent flour orifice of powder direction, the lower powder beam barrel in the dusting module a is connected with the transmission of transmission module through first belt, the lower powder beam barrel in the dusting module b is connected with the transmission of cutting roller through the second belt.
As preferred scheme, the one end fixed mounting of organism discharge gate has returned powder storage tank.
As a preferred scheme, the belt dividing mechanism respectively comprises a guide post b installed between the inner surfaces of the machine body and a reciprocating push rod installed inside the machine body and horizontally arranged, the peripheral side surface of the guide post b is slidably connected with a reciprocating frame, the movable end of the reciprocating push rod is fixedly connected with the reciprocating frame, the surface of the reciprocating frame and the position corresponding to each rotary cutter head are slidably connected with a belt shifting plate, the top of the belt shifting plate is in threaded connection with a locking knob b matched with the reciprocating frame, the extending direction of the belt shifting plate is perpendicular to the rotation axis of the rotary cutter head, and the bottom of the belt shifting plate is in a V shape.
As preferred scheme, the detection mechanism that weighs includes waste discharge mouth, workbin, weighing frame, annular weighing area respectively, installs in the driving motor and the elevating platform of organism side, waste discharge mouth and workbin's surface all with organism fixed connection, waste discharge mouth and workbin set up respectively in weighing frame's both sides, install a set of weighing sensor between weighing frame's the bottom surface and the relative surface of organism, weighing frame's inner wall rotates respectively and is connected with drive roll and driven voller, the week side of drive roll and driven voller all is connected with the transmission of annular weighing area, drive gear is installed to driving motor's output axle head, the tip fixed mounting of drive roll has the driven gear with drive gear meshing, the top surface fixed mounting of elevating platform has the lift push rod of a set of vertical setting, lift push rod's week side and organism fixed connection, install lead screw drive module between the internal surface of elevating platform week side, lead screw drive module's face transmission is connected with and moves the panel, move the surface mounting of panel and have the location auxiliary.
Preferably, the positioning auxiliary member includes two opposite emission sensors mounted on the top of the moving plate, and a opposite reception sensor is fixedly mounted on the surface of the tool apron and on a side opposite to the opposite emission sensors.
As a preferred scheme, the slitting method of the noodle belt forming and slitting equipment comprises the following steps:
SS001, presetting, namely respectively adjusting the arrangement position of each transverse cutting assembly according to the slitting processing specification requirement of the dough belt, sequentially adjusting the position of each dough belt shifting plate after adjusting the arrangement position of each transverse cutting assembly, and enabling the central line of each dough belt shifting plate and the central line of the rotary cutter disc at the corresponding position to be on the same straight line after adjusting the position of each dough belt shifting plate, wherein before processing the dough belt, a feed inlet of a machine body is communicated with a forming extrusion device of the dough belt, and the dough belt extruded by the forming extrusion device of the dough belt penetrates out from between two feed rollers;
SS002, cutting operation, when the cutting operation is carried out, the annular conveyer belt and the forming extrusion equipment of the dough belt work at the same speed, the dough belt extruded by the dough belt forming extrusion equipment enters the annular conveyer belt and is conveyed forwards through the annular conveyer belt, when the dough belt is fed in at first, the ends of the irregular parts at the two sides of the dough belt are respectively pre-fixed on two dough rolling shafts through manual assistance, when the annular conveyer belt rotates, the dough rolling shafts and the annular conveyer belt move at the same speed and carry out the winding recovery operation of the waste edges at the two sides of the dough belt, when the annular conveyer belt conveys the dough belt, the cutting roller shafts rotate at the set rotating speed, then the dough belt is cut at fixed length in the longitudinal direction, after the dough belt is cut longitudinally, the dough belt is cut through a plurality of transverse cutting assemblies, when the transverse cutting assembly performs cutting operation, the reciprocating push rods drive a group of face belts to be poked to move in a reciprocating mode in a set stroke, so that every two face belts after transverse cutting are completely separated, the face belts are poked by the face belts to be separated fully, the cut face belts enter an action area of a moving panel, the moving panel sequentially sends the cut single face belts into a detection area of an annular weighing belt under the action of the moving panel, the screw rod driving module and the lifting push rods, if the weight data of the single face belts are qualified, the detected face belts enter a blanking box through the conveying of the annular weighing belt, and if the weight data of the single face belts are unqualified, the detected face belts are finally discharged through a waste discharge nozzle through the conveying of the annular weighing belt.
(III) advantageous effects
Compared with the prior art, the invention provides the dough belt forming and slitting equipment and the slitting method, and has the following beneficial effects
According to the noodle belt splitting device, the longitudinal cutting assembly, the transverse cutting assembly, the belt splitting mechanism and the weighing detection mechanism are arranged, so that the noodle belt splitting operation can be efficiently finished, the separation assisting mechanism for splitting the noodle belt is additionally arranged on the basis of a traditional splitting device, a noodle belt shifting plate in the belt splitting mechanism can enable the split noodle belts to be fully separated in pairs during working, and then the subsequent processing operation of the noodle belt is facilitated.
Drawings
FIG. 1 is a schematic structural view of a noodle strip forming and cutting apparatus according to the present invention;
FIG. 2 is a schematic view of another embodiment of the present invention shown in FIG. 1;
FIG. 3 is an enlarged view of a portion of FIG. 2A;
FIG. 4 is a schematic cross-sectional view of a powdering module a according to the present invention;
FIG. 5 is a schematic structural view of a locking knob b and a dough belt shifting plate according to the present invention;
FIG. 6 is a schematic diagram of a correlation emission sensor according to the present invention;
FIG. 7 is a schematic structural view of a spindle and a motor b according to the present invention;
fig. 8 is a schematic structural view of the capture knob a and the rotary cutter head of the present invention;
FIG. 9 is a schematic structural view of an endless weighing belt;
fig. 10 is a sectional view schematically showing the structure of the cutting roller.
In the figure: 1. a body; 2. an endless conveyor belt; 3. a feed roll; 4. a guide post a; 5. a main shaft; 6. a dusting module a; 7. a dusting module b; 8. cutting the motor; 9. cutting the roll shaft; 10. a longitudinal cutter; 11. a tool apron; 12. a locking knob a; 13. a driven sleeve; 14. rotary cutting the cutter disc; 15. a connecting plate; 16. a dough rolling shaft; 17. a motor b; 18. a returned powder storage box; 19. a guide post b; 20. a reciprocating push rod; 21. a reciprocating frame; 22. a dough belt shifting plate; 23. a locking knob b; 24. a waste discharge nozzle; 25. a blanking box; 26. a weighing frame; 27. an endless weighing belt; 28. a drive motor; 29. a lifting platform; 30. a lifting push rod; 31. a screw rod driving module; 32. moving the panel; 33. a correlation emission sensor; 34. correlation reception sensing; 35. a motor a.
Detailed Description
The invention will be further elucidated and described with reference to the embodiments and drawings of the specification:
referring to fig. 1-10, the present invention: the technical scheme adopted by the dough belt forming and cutting equipment is as follows: comprises a machine body 1, wherein an annular conveying belt 2 driven by a transmission module is arranged in the machine body 1;
the transmission module comprises a driving shaft, a driven shaft and a transmission motor, wherein two ends of the driving shaft and two ends of the driven shaft are rotatably connected with the machine body 1, the peripheral sides of the driving shaft and the driven shaft are in transmission connection with the annular conveying belt 2, and the driving shaft is driven by the transmission motor;
the front part of the machine body 1 is rotationally connected with two symmetrically arranged feeding rollers 3, a surface belt inlet seam is arranged between loudness surfaces of the two feeding rollers 3, and when the machine works, a surface belt is conveyed through a surface belt extruding device;
a longitudinal cutting assembly, a guide post a4, a main shaft 5 driven by a motor a35, a belt separating mechanism and a weighing detection mechanism are sequentially and respectively arranged between the inner surfaces of the machine body 1 along the feeding direction;
the longitudinal cutting assembly comprises a cutting motor 8 and a cutting roll shaft 9 respectively, the surface of the cutting motor 8 is fixedly connected with the machine body 1, two ends of the cutting roll shaft 9 are rotatably connected with the machine body 1, the output shaft end of the cutting motor 8 is fixedly connected with the cutting roll shaft 9, and a longitudinal cutter 10 is arranged on the peripheral side surface of the cutting roll shaft 9;
four position-adjustable transverse cutting assemblies are mounted on the peripheral side surface of the guide column a4, and each transverse cutting assembly is driven by a main shaft 5;
the surfaces of the leftmost transverse cutting assembly and the rightmost transverse cutting assembly are provided with trimming modules;
horizontal cutting assembly includes blade holder 11, the inner wall and the guide post a4 sliding connection of blade holder 11, the top surface threaded connection of blade holder 11 has and locks position knob a12 with guide post a4 complex, the inner wall of blade holder 11 rotates and is connected with driven sleeve 13 of being connected with the transmission of main shaft 5, driven sleeve 13's week side fixed mounting has rotary cutter dish 14, the shape of main shaft 5 is regular polygon, the fixed transmission hole of offering with the 5 shape adaptations of main shaft of inner wall of driven sleeve 13, rotary cutter dish 14's rotation axis is parallel with the extending direction of vertical cutter 10.
The trimming module comprises a connecting plate 15, the surface of the connecting plate 15 is fixedly connected with a cutter holder 11 at a corresponding position, the inner wall of the connecting plate 15 is rotatably connected with a winding shaft 16, a motor b17 is fixedly mounted on the side surface of the connecting plate 15, the output shaft end of the motor b17 is fixedly connected with the winding shaft 16, the winding shaft 16 is made of stainless steel, anti-sticking coatings a are fixedly arranged on the surfaces of the winding shaft 16 and the annular conveying belt 2, the anti-sticking coatings are made of nano anti-sticking materials in a coating mode, the stainless steel of the surface belt is arranged and the anti-sticking coatings a are arranged, and accordingly the adhesion rate of the surface belt on the surfaces of the winding shaft 16 and the annular conveying belt 2 is effectively reduced.
The belt dividing mechanism respectively comprises guide posts b19 arranged between the inner surfaces of the machine body 1 and reciprocating push rods 20 which are arranged in the machine body 1 and horizontally arranged, the peripheral side surfaces of the guide posts b19 are connected with a reciprocating frame 21 in a sliding manner, the movable ends of the reciprocating push rods 20 are fixedly connected with the reciprocating frame 21, the surface of the reciprocating frame 21 and the position corresponding to each rotary cutter disc 14 are connected with a surface belt shifting plate 22 in a sliding manner, the top of the surface belt shifting plate 22 is connected with a locking knob b23 matched with the reciprocating frame 21 in a threaded manner, the extending direction of the surface belt shifting plate 22 is vertical to the rotation axis of each rotary cutter disc 14, the bottom of the surface belt shifting plate 22 is V-shaped, and when the belt dividing mechanism works, the reciprocating push rods 20 drive the reciprocating frame 21 to reciprocate in a set stroke, and the divided surface belts are fully separated two by two through the reciprocating movement of the reciprocating push rods 20;
dusting module a6 is installed to the position that just corresponds 3 rear sides of feed roller between organism 1's the internal surface, dusting module a6 is through first belt and drive module linkage, dusting module b7 is installed to the position that just corresponds between horizontal cutting assembly and the branch tape unit between the internal surface of organism 1, dusting module b7 is connected with vertical cutting assembly transmission through the second belt, dusting module a6 is used for carrying out spraying of flour to endless conveyor 2, thereby reduce the adhesion rate of face area on endless conveyor 2 surfaces, dusting module b7 is used for carrying out spraying of face area to the surface of cutting back face area, thereby reduce adhesion rate between two liang of face areas and the adhesion rate of face area on endless conveyor 2 surfaces.
The powdering module a6 and the powdering module b7 both comprise flour storage tanks which are fixedly connected with the machine body 1 and arranged above the annular conveyer belt 2, lower flour axial rollers are rotatably connected between the inner surfaces of the flour storage tanks, a group of lower flour stirring sheets distributed in a circumferential array are fixedly arranged on the circumferential side surfaces of the lower flour axial rollers, the end part of each lower flour stirring sheet is rotatably attached to the flour storage tanks, powder outlet pipes are fixedly arranged at the bottoms of the flour storage tanks and correspond to the bottoms of the lower flour axial rollers, a group of flour spray holes which are regularly distributed and vertically downward in the powder outlet direction are uniformly distributed in the powder outlet pipes, the lower flour axial rollers in the powdering module a6 are in transmission connection with the transmission module through first belts, and the lower flour axial rollers in the powdering module b7 are in transmission connection with the cutting roll shafts 9 through second belts;
during operation, the lower flour beam barrel rotates at a set speed, and after the lower flour beam barrel rotates, the flour in the flour storage tank is spilled at a set flow rate.
One end of the discharge hole of the machine body 1 is fixedly provided with a returned powder storage tank 18, and the returned powder storage tank 18 is used for recovering the redundant fabrics on the surface of the annular conveyer belt 2.
The weighing detection mechanism comprises a waste discharge nozzle 24, a blanking box 25, a weighing frame 26, an annular weighing belt 27, a driving motor 28 and a lifting platform 29 which are arranged on the side face of the machine body 1, the surfaces of the waste discharge nozzle 24 and the blanking box 25 are fixedly connected with the machine body 1, the waste discharge nozzle 24 and the blanking box 25 are respectively arranged on two sides of the weighing frame 26, a group of weighing sensors 30 are arranged between the bottom surface of the weighing frame 26 and the opposite surface of the machine body 1, the weighing sensors 30 are used for monitoring the weight data of a surface belt after the surface of the annular conveying belt 2 is cut, when the device is used, the device is matched with a single chip microcomputer, the weighing sensors 30 feed back monitored real-time signals to the single chip microcomputer, the single chip microcomputer controls the working state of the annular conveying belt 2 according to the data feedback of the weighing sensors 30, and the weighing sensors 30 perform automatic zero calibration operation after the annular conveying belt 2 moves in sequence;
the model of the single chip microcomputer is STM8S005K6T6C, and the model of the weighing sensor 30 is RP-S40-ST;
the inner wall of the weighing frame 26 is respectively and rotatably connected with a driving roller and a driven roller, the peripheral sides of the driving roller and the driven roller are in transmission connection with an annular weighing belt 27, the output shaft end of a driving motor 28 is provided with a transmission gear, the end part of the driving roller is fixedly provided with a driven gear meshed with the transmission gear, and the driving gear and the driven gear are in meshing connection, so that the influence of the monitoring value of a vibration symmetry sensor 30 when the driving motor 28 works is reduced;
a group of vertically arranged lifting push rods 30 are fixedly mounted on the top surface of the lifting platform 29, the peripheral side surfaces of the lifting push rods 30 are fixedly connected with the machine body 1, a screw rod driving module 31 is mounted between the inner surfaces of the lifting platform 29, the peripheral side surfaces of the screw rod driving module 31 are in transmission connection with a moving panel 32, a positioning auxiliary part is mounted on the surface of the moving panel 32, and the screw rod driving module 31 is used for enabling the moving panel 32 to generate displacement in a set stroke and a set direction;
the screw rod driving module 31 is an existing mechanism, and is not described herein again;
the positioning auxiliary part comprises two correlation emission sensors 33 arranged at the top of the shifting board 32, one correlation receiving sensor 34 is fixedly arranged on the surface of the tool apron 11 and opposite to one side of the correlation emission sensors 33, the correlation generation sensors are matched with the correlation receiving sensors 34 so as to effectively position and limit the working position of the shifting board 32, and the models of the correlation emission sensors 33 and the correlation receiving sensors 34 are EOIR60m-BS30-6X.
The slitting method of the dough belt forming and slitting equipment comprises the following steps:
SS001, presetting, namely respectively adjusting the arrangement position of each transverse cutting assembly according to the slitting processing specification requirement of the dough belt, after the arrangement position of each transverse cutting assembly is adjusted, sequentially adjusting the position of each dough belt shifting plate 22, after the position of each dough belt shifting plate 22 is adjusted, enabling the central line of each dough belt shifting plate 22 and the central line of the rotary cutter disc 14 at the corresponding position to be on the same straight line, and before the dough belt is processed, a feed port of a machine body 1 is communicated with a dough belt molding extrusion device, and the dough belt extruded by the dough belt molding extrusion device penetrates out from between two feed rollers 3;
SS002, cutting operation, when the cutting operation is carried out, the annular conveyer belt 2 works at the same speed with the molding extrusion equipment of the dough belt, the dough belt extruded by the molding extrusion equipment of the dough belt enters the annular conveyer belt 2 and is conveyed forwards through the annular conveyer belt 2, when the dough belt is fed in at first, the end parts of the irregular parts at two sides of the dough belt are respectively pre-fixed on two dough rolling shafts 16 through manual assistance, when the annular conveyer belt 2 rotates, the dough rolling shafts 16 move at the same speed with the annular conveyer belt 2 and carry out the winding recovery operation of the waste edges at two sides of the dough belt, when the annular conveyer belt 2 conveys the dough belt, the cutting roll shafts 9 rotate at the set rotating speed, then carry out fixed-length cutting in the longitudinal direction of the dough belt, after the dough belt is longitudinally cut, the dough belt is cut through a plurality of transverse cutting assemblies, when the transverse cutting assembly performs cutting operation, the reciprocating push rod 20 drives a group of face belt shifting plates 22 to reciprocate within a set stroke, so that every two face belts after transverse cutting are fully separated, after the face belts are fully separated through the face belt shifting plates 22, the cut face belts enter an action area of the shifting plate 32, under the action of the shifting plate 32, the screw rod driving module 31 and the lifting push rod 30, the shifting plate 32 sequentially sends the cut single face belts into a detection area of the annular weighing belt 27, if the weight data of the single face belt is qualified, the detected face belt enters the blanking box 25 through the conveying of the annular weighing belt 27, and if the weight data of the single face belt is unqualified, the detected face belt is finally discharged through the waste discharge nozzle 24 through the conveying of the annular weighing belt 27.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention, and not for limiting the protection scope of the present invention, although the present invention is described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.
Claims (10)
1. Equipment is cut in surface tape shaping, including organism (1), its characterized in that: the internally mounted of organism (1) has through drive module and driven endless conveyor belt (2), the front portion of organism (1) is rotated and is connected with feed roll (3) that two symmetries set up, install respectively vertical cutting subassembly, guide post a (4), through motor a (35) and driven main shaft (5), branch tape unit and the detection mechanism that weighs between the internal surface of organism (1) in proper order along the direction of feed, a plurality of position adjustable horizontal cutting subassemblies, every are installed to the side of week of guide post a (4) horizontal cutting subassembly all drives through main shaft (5), leftmost side and rightmost side the deburring module is all installed on the surface of horizontal cutting subassembly, powder scattering module a (6) is installed to the position that just corresponds feed roll (3) rear side between the internal surface of organism (1), powder scattering module a (6) links through first belt and drive module, powder scattering module b (7) are installed to the position that just corresponds between horizontal cutting subassembly and the branch tape unit between the internal surface of organism (1), powder scattering module b (7) is connected through second drive module and vertical cutting subassembly.
2. The noodle strip forming and slitting device according to claim 1, characterized in that: vertical cutting assembly is including cutting motor (8) and cutting roller (9) respectively, the surface and organism (1) fixed connection of cutting motor (8), the both ends of cutting roller (9) all rotate with organism (1) and are connected, the output axle head and the cutting roller (9) fixed connection of cutting motor (8), a vertical cutter (10) is installed to the side all around of cutting roller (9).
3. The noodle strip forming and slitting device according to claim 2, characterized in that: horizontal cutting assembly includes blade holder (11), the inner wall and guide post a (4) sliding connection of blade holder (11), the top surface threaded connection of blade holder (11) has and fixes a position knob a (12) with guide post a (4) complex, the inner wall of blade holder (11) rotates and is connected with driven sleeve (13) of being connected with main shaft (5) transmission, the all side fixed mounting of driven sleeve (13) has rotary-cut blade disc (14), the shape of main shaft (5) is regular polygon, the inner wall of driven sleeve (13) is fixed sets up the transmission hole with main shaft (5) shape adaptation, the rotation axis of rotary-cut blade disc (14) is parallel with the extending direction of vertical cutter (10).
4. The noodle strip forming and slitting device according to claim 3, characterized in that: the trimming module comprises a connecting plate (15), the surface of the connecting plate (15) is fixedly connected with a cutter holder (11) corresponding to the position, the inner wall of the connecting plate (15) is rotatably connected with a roll surface shaft (16), the side surface of the connecting plate (15) is fixedly provided with a motor b (17), the output shaft end of the motor b (17) is fixedly connected with the roll surface shaft (16), the roll surface shaft (16) is made of stainless steel, and the surface of the roll surface shaft (16) and the surface of the annular conveying belt (2) are fixedly provided with an anti-sticking coating layer a.
5. The noodle strip forming and slitting device according to claim 4, wherein: dusting module a (6) and dusting module b (7) all include with organism (1) fixed connection and set up in the flour storage tank of endless conveyor belt (2) top, it is connected with down the flour beam barrel to rotate between the internal surface of flour storage tank, the week side fixed mounting of flour beam barrel has a set of lower powder plectrum that is circumference array distribution down, every the tip of lower powder plectrum all rotates the laminating with the flour storage tank, the bottom of flour storage tank and the position fixed mounting who corresponds down powder beam barrel bottom have a powder pipe, the inside equipartition that goes out the powder pipe has a set of regular distribution and goes out the vertical decurrent flour orifice of powder direction, the lower powder beam barrel in dusting module a (6) is connected with the transmission of transmission module through first belt, the lower powder beam barrel in dusting module b (7) is connected with cutting roller (9) transmission through the second belt.
6. The noodle strip forming and slitting device as claimed in claim 5, wherein: one end of the discharge hole of the machine body (1) is fixedly provided with a returned powder storage box (18).
7. The noodle strip forming and slitting device according to claim 1, characterized in that: divide belting to construct respectively including installing guide post b (19) between organism (1) internal surface and installing in organism (1) inside and the reciprocal push rod (20) of level setting, the week side sliding connection of guide post b (19) has reciprocal frame (21), the expansion end and reciprocal frame (21) fixed connection of reciprocal push rod (20), the equal sliding connection in position that the surface of reciprocal frame (21) just corresponds each rotary-cut blade disc (14) has the face to dial board (22), the top threaded connection of face dial board (22) has and reciprocates frame (21) complex lock position knob b (23), the extending direction that the board (22) was dialled in the face is perpendicular with the rotation axis of rotary-cut blade disc (14), the bottom that the board (22) was dialled in the face is "V" shape.
8. The noodle strip forming and slitting device according to claim 3, characterized in that: weighing detection mechanism is including wasting discharge nozzle (24), feed box (25), weighing frame (26), annular weighing area (27), installs in driving motor (28) and elevating platform (29) of organism (1) side respectively, the surface of wasting discharge nozzle (24) and feed box (25) all with organism (1) fixed connection, wasting discharge nozzle (24) and feed box (25) set up respectively in the both sides of weighing frame (26), install a set of weighing sensor (30) between the relative surface of the bottom surface of weighing frame (26) and organism (1), the inner wall of weighing frame (26) rotates respectively and is connected with drive roll and driven voller, the side all is connected with annular weighing area (27) transmission in all around drive roll and driven voller, drive gear is installed to the output of driving motor (28), the tip fixed mounting of drive roll has the driven gear with drive gear meshing, the top surface fixed mounting of elevating platform (29) has a set of vertical setting to go up and down push rod (30), the week side and the organism (1) fixed connection of lift push rod (30), the drive shaft end fixed mounting has the lead screw module (31) between the elevating platform (31), drive rod (31) and the drive face module (32) that moves.
9. The noodle strip forming and slitting device according to claim 8, characterized in that: the positioning auxiliary part comprises two correlation emission sensors (33) arranged at the top of a moving panel (32), and a correlation receiving sensor (34) is fixedly arranged on the surface of the tool apron (11) and opposite to one side of the correlation emission sensors (33).
10. The slitting method of the noodle strip forming and slitting equipment as claimed in any one of claims 1 to 9, wherein: the method comprises the following steps:
SS001, presetting, namely respectively adjusting the arrangement position of each transverse cutting assembly according to the slitting specification requirement of the dough strip, after the arrangement position of each transverse cutting assembly is adjusted, sequentially adjusting the position of each dough strip shifting plate (22), after the position of each dough strip shifting plate (22) is adjusted, enabling the central line of each dough strip shifting plate (22) and the central line of the rotary cutter head (14) at the corresponding position to be on the same straight line, and before the dough strip is processed, communicating a feed inlet of a machine body (1) with molding extrusion equipment of the dough strip, and enabling the dough strip extruded by the molding extrusion equipment of the dough strip to pass through between two feed rollers (3);
SS002, cutting operation, when the cutting operation is carried out, the annular conveyer belt (2) and the molding extrusion equipment of the dough belt work at the same speed, the dough belt extruded by the molding extrusion equipment of the dough belt enters the annular conveyer belt (2) and is conveyed forwards through the annular conveyer belt (2), when the dough belt is fed in at first, the end parts of the irregular parts at two sides of the dough belt are respectively pre-fixed on two dough rolling shafts (16) through manual assistance, when the annular conveyer belt (2) rotates, the dough rolling shafts (16) and the annular conveyer belt (2) move at the same speed and carry out the winding recovery operation of the waste edges at two sides of the dough belt, when the annular conveyer belt (2) conveys the dough belt, the cutting roll shafts (9) rotate at the set rotating speed, then carry out fixed length cutting on the dough belt in the longitudinal direction, after the longitudinal cutting of the dough belt is finished, then cutting is carried out by a plurality of transverse cutting assemblies, when the transverse cutting assemblies carry out cutting operation, a group of face belt shifting plates (22) are driven by a reciprocating push rod (20) to reciprocate in a set stroke, so that every two face belts after transverse cutting are fully separated, the cut face belts enter an action area of a moving panel (32) after the face belts are fully separated by the face belt shifting plates (22), the single face belts after cutting are sequentially sent into a detection area of an annular weighing belt (27) by the moving panel (32) under the action of the moving panel (32), a screw rod driving module (31) and a lifting push rod (30), if the weight data of the single face belts are qualified, the face belts after detection enter a blanking box (25) through the conveying of the annular weighing belt (27), if the weight data of the single noodle strip is unqualified, the detected noodle strip is conveyed by the annular weighing belt (27) and finally discharged by the waste discharge nozzle (24).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
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| CN202211610542.1A CN115708523B (en) | 2022-12-15 | 2022-12-15 | Device and method for forming and cutting flour strips |
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| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202211610542.1A CN115708523B (en) | 2022-12-15 | 2022-12-15 | Device and method for forming and cutting flour strips |
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| CN115708523A true CN115708523A (en) | 2023-02-24 |
| CN115708523B CN115708523B (en) | 2024-06-04 |
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| Application Number | Title | Priority Date | Filing Date |
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| CN202211610542.1A Active CN115708523B (en) | 2022-12-15 | 2022-12-15 | Device and method for forming and cutting flour strips |
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Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116512345A (en) * | 2023-02-27 | 2023-08-01 | 佐罗科技新材料(江苏)有限公司 | Slitting mechanism for resin medical adhesive tape production |
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| DE4429369A1 (en) * | 1994-08-20 | 1996-02-22 | Sandor Koevy | Device for separating biscuits into single units on baking tray |
| US6524090B1 (en) * | 2000-02-21 | 2003-02-25 | Rheon Automatic Machinery Co., Ltd. | Apparatus for supplying food dough |
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| CN115708523B (en) | 2024-06-04 |
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