CN103416444B - Noodle cutter - Google Patents

Noodle cutter Download PDF

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Publication number
CN103416444B
CN103416444B CN201210172897.7A CN201210172897A CN103416444B CN 103416444 B CN103416444 B CN 103416444B CN 201210172897 A CN201210172897 A CN 201210172897A CN 103416444 B CN103416444 B CN 103416444B
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CN
China
Prior art keywords
bevel
motion
support plate
leading screw
rocking arm
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Expired - Fee Related
Application number
CN201210172897.7A
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Chinese (zh)
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CN103416444A (en
Inventor
郝希忠
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Individual
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Individual
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Priority to CN201210172897.7A priority Critical patent/CN103416444B/en
Publication of CN103416444A publication Critical patent/CN103416444A/en
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Publication of CN103416444B publication Critical patent/CN103416444B/en
Expired - Fee Related legal-status Critical Current
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Abstract

Dough is cut into the processing equipment that rhombus is rectangular, the manually faster and better engineering goods completing bevel work can be replaced.Power is provided by bevel power motor and feeding motor, bevel power motor drives crank to make uniform circular motion after belt pulley 1: 3 reduction of speed, crank is connected with small rocker by connecting rod, the uniform circular motion of crank is converted into the fan-shaped circumference reciprocating motion of 50 ° by small rocker, small rocker and bevel rocking arm are fastened on the two ends of bevel rocking arm main shaft simultaneously, thus the fan-shaped circumference driving bevel rocking arm to do 50 ° moves back and forth, and completes bevel action; Feeding motor makes traverse feed leading screw make uniform circular motion through belt pulley 1: 1.5 decreasing transmission, support plate is driven to make horizontal linear uniform motion, arrive 1/3 distance before Derivative limit on the left or on the right position, the shift fork be connected with the fastening nuts of horizontal uniform motion drives length feed leading screw to rotate, trigger length feed, when support plate reaches the limit of, complete length feed.

Description

Noodle cutter
One, art
This Noodle cutter relates to and a kind ofly dough is cut into the rectangular processing equipment of rhombus, can replace the engineering goods for kitchen use of the manually faster and better bevel work that completes.
Two, background technology
At present, market there is the noodle slicing robot of various profile, their feeding mode is exactly the same, all that support plate moves left and right or swung traverse feed, bevel arm arrive right boundary position time automatically whereabouts minute angle complete length feed, traverse feed is separated with length feed, causes spatial volume excessive, part is too large, high cost.Current, various model motor is complete gradually, under having the prerequisite that various controlling functions circuit board makes great progress, for design and the less Noodle cutter of research and development volume have laid good basis.
Three, summary of the invention
In order to overcome in the market, noodle slicing robot spatial volume is huge, the disadvantage of high cost, realize one and the fusion of traverse feed and length feed, significantly reduce production cost, patent of the present invention provides a kind of Noodle cutter, not only volume is little, lightweight, and achieves the fusion of traverse feed and length feed, reduces cost to a great extent.
The technical scheme that this Noodle cutter is taked is: adopt bi-motor, be made up of bevel power motor and feeding motor, motor is all by O type belt outputting power, bevel power motor drives crank to make uniform circular motion after belt pulley 1: 3 reduction of speed, crank is connected with small rocker by connecting rod, the uniform circular motion of crank is converted into the fan-shaped circumference reciprocating motion of 50 ° by small rocker, small rocker and bevel rocking arm are fastened on the two ends of bevel rocking arm main shaft simultaneously, thus the fan-shaped circumference driving bevel rocking arm to do 50 ° moves back and forth, and completes bevel action; Feeding motor makes traverse feed leading screw make uniform circular motion through belt pulley 1: 1.5 decreasing transmission, make the nut that screws on traverse feed leading screw stressed, sliding sleeve frame is driven to make horizontal linear uniform motion, sliding sleeve frame and support plate are fastenedly connected, thus make support plate make horizontal linear uniform motion, arrive 1/3 distance before Derivative limit on the left or on the right position, the shift fork be connected with the fastening nuts of horizontal uniform motion drives length feed leading screw to rotate, trigger length feed, when support plate reaches the limit of, complete length feed.
Four, accompanying drawing explanation
Fig. 1 is the installation diagram of this Noodle cutter, and designate installation site and the size relationship of each part, label 31 is limit switches, and 32 is speed governing knobs, and 33 is buzzers, and 34 is snap fastener switch, and 35 is control circuit boards, and 36 is dc sources, and 37 is feeding motors.
Fig. 2 is main frame figure.
Fig. 3 is bevel dynamical frame figure, for installing each part of bevel power assembly, wherein C is to the front elevation for installing bevel power motor, centre-to-centre spacing is the circular hole of 4 Φ 6.2 of 95 × 42 is the installing hole of motor base, motor output power is the O type belt pulley of diameter of phi 51mm, is welded as a whole after bevel dynamical frame completes according to position shown in installation diagram and main frame.
Fig. 4 is big belt pulley figure, is connected by belt with bevel power motor, and big belt pulley is realized and being fastenedly connected of large belt wheel by M6 screw rod.
Fig. 5 is large belt wheel figure, and there is pedestal both sides, for installing bearing 6204, relative with bevel power motor position, at right angle setting.
Fig. 6 is crank figure, and the sleeve pipe of middle internal diameter Φ 19.8 is arranged on the upper end of large belt wheel, is realized and being fastenedly connected of large belt wheel by M6 screw rod, and bearing 6201 installed by the pedestal of outside Φ 12, located by jump ring.
Fig. 7 is connecting rod figure, and 2 internal diameters are install 2 6201 bearings after the race ring of Φ 34 installs rubber packing additional, and side is connected with crank, and opposite side is connected with small rocker, by the power transmission of crank to small rocker.
Fig. 8 is small rocker figure, and the sleeve pipe of internal diameter Φ 19.8 is fastenedly connected by M6 screw rod and bevel rocking arm main shaft, and opposite side is connected with connecting rod, and the fan-shaped circumference reciprocal circular motion of crank being converted into 50 ° moves back and forth.
Fig. 9 is bevel rocking arm main shaft figure, and be arranged on the top of bevel dynamical frame, at right angle setting, lower end is connected with small rocker, and upper end is connected with bevel rocking arm, is all fastenedly connected by M6 screw rod.
Figure 10 is bevel rocking arm figure, and left end and bevel rocking arm main shaft are fastenedly connected, and dough knife is installed on right side.
Figure 11 is dough knife figure, is fastenedly connected with the screw rod of bevel rocking arm by 2 M6.
Figure 12 is bearing gland figure, after respectively large belt wheel and bevel rocking arm main shaft both sides being installed 6204 bearings, and be placed in the assigned address of bevel dynamical frame, then bearing gland is placed in above bearing, by M6 bolt and nut, large belt wheel and bevel rocking arm main shaft and bevel dynamical frame is fastenedly connected.
The part of Fig. 4-12 and bevel power motor are arranged in bevel dynamical frame, just form bevel power assembly.
Figure 13 is traverse feed leading screw figure, and there is pedestal at two ends, installs 6204 bearings, and horizontal leading screw belt pulley is installed on right side.
Figure 14 is horizontal slide-bar figure, and both sides are fastenedly connected by M6 screw rod and side plate.
Figure 15 is sliding sleeve frame figure, 2 internal diameters are that the sliding sleeve of Φ 20 coordinates with 2 fastening horizontal slide-bars be arranged on side plate, realize horizontal rectilinear motion, hex nut on sliding sleeve frame and traverse feed leading screw screw, when leading screw at the uniform velocity rotates, promote sliding sleeve frame and transversely do linear uniform motion in slide-bar direction.For installing support plate fixed mount above sliding sleeve frame.
Figure 16 side plate figure, has 2, is arranged on the both sides of feed box respectively, and upper end is fastenedly connected with horizontal slide-bar and traverse feed leading screw upper bearing (metal) respectively, and lower end and side plate base are fastenedly connected.
Figure 17 is horizontal leading screw belt pulley figure, is connected, is arranged on the right-hand member of horizontal leading screw by O type belt with feeding motor.
Figure 18 is side plate base figure, is fastenedly connected respectively with the lower end of two side plates, and right center is used for being installed into motor fixing frame apart from the hole for 40mm.
Figure 19 is feeding motor fixing frame figure, is arranged on the lower right of side plate base, and the hole of 3 Φ 6.2 below fixed mount is used for fixing feeding motor.
Figure 20 is pressing fork rack figure, and level is arranged on immediately below sliding sleeve frame, and centre-to-centre spacing is that feeding motor drive direction is pointed in one end of 65mm.
Figure 21 is shift fork figure, be arranged on the two ends of pressing fork rack respectively, its 45 ° of mitred sections naturally droop, point to side plate base, the shift fork be arranged on pressing fork rack by M8 bolt and nut has unidirectional clamping function, when triggering length feed, shift fork has screens effect to forked plectrum wheel, drive forked plectrum wheel to rotate and realize length feed, after completing length feed, motor reversal, when support plate runs to opposite side limit position, just now the shift fork performing feeding can not drive forked plectrum wheel to rotate, and only can slip over above forked plectrum wheel.
Figure 22 is forked plectrum wheel figure, is arranged on the left end of length feed leading screw figure, is connected by M6 bolted.
Figure 23 is train wheel bridge figure, is arranged on immediately below side plate base, and corresponding with the position in each hole, after the hole of both sides Φ 20 is used for piercing into longitudinal slide-bar, by the fastening longitudinal slide-bar of M6 bolt and nut.
Figure 24 is lower plate figure, be arranged on immediately below train wheel bridge, after the hole of the Φ 20 of both sides is used for piercing into longitudinal slide-bar, by the fastening longitudinal slide-bar of M6 bolt and nut, the hole of two Φ 8 is used for the bolt piercing into M8 × 100, regulated the limit spacing of dough knife and support plate by nut location and the distance of train wheel bridge, the inner ring of middle Φ 47f7 is used for level and installs 6204 bearings.
Figure 25 is longitudinal slide-bar figure, at right angle setting, and upper end and train wheel bridge and lower plate are fastenedly connected, and lower end and feed box base inner diameter are that the sliding sleeve of Φ 20 coordinates, for feed box provides the movement locus of vertical direction.
Figure 26 is length feed leading screw figure, at right angle setting, the left end of length feed leading screw is pierced into from feed box base and screws, then after passing from the centre of lower plate, train wheel bridge, side plate base respectively, after making the pedestal of leading screw and being arranged on 6204 bearing close contacts in lower plate, forked plectrum wheel is arranged on the upper end of leading screw.
Figure 27 is feed box base figure, at right angle setting, is fastened on main frame by the installing hole of 4 Φ 8, and both sides internal diameter is that the sliding sleeve of Φ 20 coordinates with longitudinal slide-bar, ensure the movement locus of feed box vertical direction, the nut that middle screw distance is 12mm and length feed leading screw screw.
Figure 28 is hand runner figure, is arranged on the lower end of length feed leading screw, is fastenedly connected by M6 screw rod, for the height of holder for regulating panel, to adapt to the dough of different-thickness.
Figure 29 is support grillage figure, is arranged on directly over sliding sleeve frame, and by the bolt and nut realization of 3 M6 and being fastenedly connected of sliding sleeve frame, after installing, its upper surface and horizontal direction are 18 ° of inclination angles.
Figure 30 is support plate figure, is arranged on the upper surface of support plate fixed mount, and by 4 wood screw fastenings, the building up by welding placing dough goes out the half slot that several radiuses are 2mm, to increase friction, prevents in dough working angles stressed, landing from support plate.
The part of Figure 13-30 and feeding group of motors are fitted together, just constitute feed box assembly.
Figure 31 is the electrical schematic diagram of this Noodle cutter, indicates the circuit connecting relation of each components and parts.
Five, detailed description of the invention
1, in FIG, this Noodle cutter uses the low-tension supply of 24V as power electricity consumption and controls electricity consumption, largely avoid the danger that operating personnel get an electric shock.Double-motor power exports all by O type belt transmission, and tension on belt is more loose, thus greatly reduces the spoilage of motor.
2, bevel power motor drives crank to make uniform circular motion after belt pulley 1: 3 reduction of speed, crank is connected with small rocker by connecting rod, the uniform circular motion of crank is converted into the fan-shaped circumference reciprocating motion of 50 ° by small rocker, small rocker and bevel rocking arm are fastened on the two ends of bevel rocking arm main shaft simultaneously, thus the fan-shaped circumference driving bevel rocking arm to do 50 ° moves back and forth, complete bevel action, the fastening installation dough knife of right-hand member of bevel rocking arm, follow bevel rocking arm to move together, cut dough, dough knife edge of a knife two ends are set to 35 ° of inclination angles, the noodles cross section cut out can be made to present rhombus, thick in thin outward, keep noodles muscle degree mouthfeel, front can be thrown in the face cut out by the circular arc light face on rear side of dough knife, ensure that noodles fall in pot, the edge of a knife becomes 5 ° of inclination angles with cutting face, dough knife can be reduced and complete resistance when cutting back cutter, reduce the wastage.
3, the pitch of traverse feed leading screw is 6mm, often turn around support plate traverse feed 6mm, the control circuit board be connected with feeding motor circuit has speed-regulating function, realizes the speed governing of 40% ~ 100%, when speed governing to minimum 40% time, motor operates with minimum speed, the face now cut out is the thinnest (narrow), when speed governing to the highest 100% time, motor operates with maximum speed, the face now cut out is the thickest (wide), can realize stepless at the uniform velocity speed governing in 40%-100% interval.
4, the boundary bit run at support plate is provided with limit switch, limit switch is connected with control circuit board, when support plate moves to left margin and triggers limit switch, feeding motor shuts down, time delay is after 1 second, feeding motor starts to reversely rotate, support plate to the right limit switch place runs, when arriving right margin, trigger right limit switch, feeding motor shuts down, time delay is after 1 second, feeding motor starts to reversely rotate, limit switch place runs left, so go round and begin again running, feeding motor time delay 1 second, inertia impact during motor reversal can be relaxed completely.
5, the pitch of length feed leading screw is 12mm, often turn around support plate length feed 12mm, when support plate arrives right margin from left margin or arrives left margin from right margin, drives forked plectrum wheel to rotate 1/4 turn, namely length feed leading screw rotates 1/4 turn, therefore each feeding 3mm of length feed.Each feeding is all arrive 1/3 distance before Derivative limit on the left or on the right position, shift fork drives fork wheel to be rotated counterclockwise, forked plectrum wheel and length feed leading screw are fastenedly connected, thus drive feed screw to be rotated counterclockwise, trigger length feed, when leading screw is rotated counterclockwise, the distance of lower plate and feed box base is increased, now feed box base is fastened on main frame, so just produce a thrust vertically upward on length feed leading screw, this thrust passes to the bearing 6204 in lower plate by leading screw, thrust is passed to lower plate by bearing, because part more than lower plate is all fastenedly connected, so support plate rises, realize length feed, when support plate arrives boundary bit, complete length feed.When length feed reaches the limit of, trigger the alarm of length feed border, then buzzer siren continues to report to the police, and now feeding motor is still in running, drives the running of length feed leading screw, but now leading screw arrives boundary bit, although leading screw is in rotation, can not complete length feed, support plate no longer raises, at this moment dough knife and support distance between plates remain on the safe distance of 10mm, prevent dough knife from cutting support plate and produce destruction to dough knife and driving parts.
6, when length feed arrival border is spacing, during buzzer warning, when support plate moves to right boundary spacing centre position, press Noodle cutter power supply stop button, deenergization, after machine shuts down, the hand-operated wheel on the downside of feed box is moved with setting stick, turn clockwise, after support plate can be made to drop to minimum altitude, reappose dough.This hand-operated wheel also can be used for the height adjusting support plate, to adapt to the dough of different-thickness, each adjustment only just can regulate when support plate occupy centre position, because support plate triggers rising feeding when boundary bit, shift fork is in stuck position, cannot decline by holder for regulating panel.
7, this Noodle cutter traverse feed width is 24cm, and length feed height is 9cm, and bevel length is 36cm, therefore it is long that each support plate can place 36cm, 24cm is wide, the dough that 9cm is high, be equivalent to the face amount of 40 jorumes, the face amount of often having cut 40 jorumes just can reappose dough, more convenient use.
8, this Noodle cutter is per second cuts 2 faces, at least can cut out four big-bowl noodles in 1 minute, can meet the user demand of dining room in dining peak period completely.
9, the train wheel bridge of feed box and lower plate are the M8 screw rod location of 100mm by length, this screw rod can also regulate the limit spacing of dough knife and support plate, realize by regulating the spacing of lower plate and train wheel bridge, first the M6 screw rod at lower plate two ends is unclamped, then the M8 nut of the upper and lower both sides of turn lower plate regulates, the parallel of lower plate must be kept after adjustment, to ensure stress equalization, increase the service life.

Claims (1)

1. a Noodle cutter, entire machine is made up of main frame, bevel power assembly, feed box assembly, electronic device and circuit, shell, it is characterized in that: bevel power motor drives crank to make uniform circular motion after belt pulley 1: 3 reduction of speed, crank is connected with small rocker by connecting rod, the uniform circular motion of crank is converted into the fan-shaped circumference reciprocating motion of 50 ° by small rocker, small rocker and bevel rocking arm are fastened on the two ends of bevel rocking arm main shaft simultaneously, thus the fan-shaped circumference driving bevel rocking arm to do 50 ° moves back and forth, and completes bevel action; Feeding motor makes traverse feed leading screw make uniform circular motion through belt pulley 1: 1.5 decreasing transmission, make the nut that screws on traverse feed leading screw stressed, sliding sleeve frame is driven to make horizontal linear uniform motion, sliding sleeve frame and support plate are fastenedly connected, thus make support plate make horizontal linear uniform motion, arrive 1/3 distance before Derivative limit on the left or on the right position, the shift fork be connected with the fastening nuts of horizontal uniform motion drives length feed leading screw to rotate, trigger length feed, when support plate reaches the limit of, complete length feed.
CN201210172897.7A 2012-05-31 2012-05-31 Noodle cutter Expired - Fee Related CN103416444B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201210172897.7A CN103416444B (en) 2012-05-31 2012-05-31 Noodle cutter

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201210172897.7A CN103416444B (en) 2012-05-31 2012-05-31 Noodle cutter

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CN103416444A CN103416444A (en) 2013-12-04
CN103416444B true CN103416444B (en) 2015-09-09

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Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106720008A (en) * 2017-03-25 2017-05-31 郝希忠 Manual-work-imitating sliced noodle machine
CN111838245A (en) * 2020-07-09 2020-10-30 刘明闽 Noodle cutter for flour products

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2387733Y (en) * 1999-09-27 2000-07-19 张文 Noodle-shaving machine
CN2403245Y (en) * 1999-06-23 2000-11-01 张善臻 Automatic dough-paring machine
CN201349478Y (en) * 2008-10-15 2009-11-25 张谦 Manual-work-imitating sliced noodle machine
CN201541625U (en) * 2009-11-19 2010-08-11 史玉良 Noodle slicing machine
CN202179076U (en) * 2011-06-13 2012-04-04 高利平 Intelligent robotic sliced noodle making machine

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2403245Y (en) * 1999-06-23 2000-11-01 张善臻 Automatic dough-paring machine
CN2387733Y (en) * 1999-09-27 2000-07-19 张文 Noodle-shaving machine
CN201349478Y (en) * 2008-10-15 2009-11-25 张谦 Manual-work-imitating sliced noodle machine
CN201541625U (en) * 2009-11-19 2010-08-11 史玉良 Noodle slicing machine
CN202179076U (en) * 2011-06-13 2012-04-04 高利平 Intelligent robotic sliced noodle making machine

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Granted publication date: 20150909

Termination date: 20170531