CN203985799U - Oodle maker - Google Patents
Oodle maker Download PDFInfo
- Publication number
- CN203985799U CN203985799U CN201420048176.XU CN201420048176U CN203985799U CN 203985799 U CN203985799 U CN 203985799U CN 201420048176 U CN201420048176 U CN 201420048176U CN 203985799 U CN203985799 U CN 203985799U
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- ratchet
- stepping
- cylinder body
- motor
- arresting
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Abstract
An oodle maker, comprises support (10), framework (11), formation system, drive unit (7; 8); Formation system comprises two sleeve forming device and linkages, and every suit shaped device comprises piston (21), cylinder body (22), and forming hole (221) is arranged at cylinder body (22) bottom; Shaped device also comprises multi-position disc (20), is uniformly distributed the some through holes (201) that can put cylinder body (22) on disk (20); Shaped device also comprises the step device of multi-position disc (20), after leaving cylinder body (22), piston (21) is moved upward to upper position-arresting, driver plate (20) rotates a smaller angle, when piston (21) starts to be displaced downwardly to, to enter cylinder body (22) front, driver plate (20) rotates one compared with wide-angle, completes a stepping; Drive unit (7; 8) another set of in backhaul while driving linkage to make one in two sleeve forming devices be enclosed within pressure surface process.
Description
Technical field
The utility model relates to a kind of oodle maker.
Background technology
Oodle maker mostly is single cylinder list piston system at present, and single piston system has a backhaul problem, waste operating efficiency, although there is the oodle maker of multi-cylinder, station is still manual switching.
Summary of the invention
For the problems referred to above, the technical scheme that the utility model provides is:
An oodle maker, comprises support (10), framework (11), formation system, drive unit (7; 8); Formation system comprises 1 to 2 sleeve forming device, and every suit shaped device comprises piston (21), cylinder body (22), and forming hole (221) is arranged at cylinder body (22) bottom; Shaped device also comprises multi-position disc (20), is uniformly distributed the some through holes (201) that can put cylinder body (22) on disk (20).Can once pack a plurality of doughs into, concentrate compacting, raise the efficiency.
Further, described shaped device also comprises the step device of multi-position disc (20), after leaving cylinder body (22), piston (21) is moved upward to upper position-arresting, driver plate (20) rotates a smaller angle, when piston (21) starts to be displaced downwardly to, to enter cylinder body (22) front, driver plate (20) further rotates one compared with wide-angle, completes a stepping.Further again, the step device of described multi-position disc (20), comprises stepping ratchet (50), and minute large stepping ratchet (51) and small step are entered ratchet (52), smaller angle of phase phasic difference; Stepping ratchet (50) is fixedly connected with disk (20), and stepping ratchet (50) has some ratchets (55) corresponding with the station on disk (20), and ratchet (55) has pitch face (552) and straight-sided flank (551); Stepping depression bar (59) is fixed on piston (21), and ratchet (55) is pointed at the two ends of stepping depression bar (59); On stepping depression bar (59), move, upper end is touched small step and is entered the pitch face of the ratchet of ratchet (52) (55) (552), force disk (20) to rotate a smaller angle, and make stepping depression bar (59) lower end point to the pitch face (552) of the ratchet (55) of large stepping ratchet (51); When stepping depression bar (59) moves down, the pitch face (552) of the ratchet (55) of large stepping ratchet (51) is touched in lower end, force disk (20) further to rotate one compared with wide-angle, complete a stepping, and make stepping depression bar (59) upper end point to the pitch face (552) that the ratchet (55) of ratchet (52) is entered in small step.Like this, from piston (21), leave cylinder body (22) and completed station stepping to piston (21) enters cylinder body (22) again.
Further, shaped device also comprises cutting device for noodle production, if the smooth and edge evagination in cylinder body (22) bottom, there is the slide block (62) that is fixed on the chute (61) of framework (11) and slides thereon, on slide block (62), establish knife rest (64) fulcrum (640), knife rest (64) swings up and down around fulcrum (640), elastic blade (642) is established in one end of knife rest (64), the other end is established blade (642) contact roller (643), on framework (11), establish contact roller (643) track (65), track (65) minute compressed part (651) and flaccid part (652); When tangent plane starts, contact roller (643) is in flaccid part (652), and when tangent plane carries out, slide block (62) is mobile, and contact roller (643) enters compressed part (651), forces blade (642) to be adjacent to cylinder body (22) bottom.When pressure surface completes, move around cutting device for noodle production once, complete tangent plane.
Further, formation system comprises the linkage between two sleeve forming devices and two sleeve forming devices, linkage comprises 1 central gear (31) and 4 pinions (32), central gear (31) and 4 pinions (32) engagement, 2 pinions (32) mesh with the pole of 1 piston (21); Drive unit (7; 8) by driving central gear (31) to drive linkage.Another set of in backhaul when linkage makes one in two sleeve forming devices be enclosed within pressure surface process, avoid backhaul efficiency waste.
Further, drive unit (7) comprises that drive gear set (71) is connected with driving handle (72), drive gear set (71) has input end gear (711) and gear of output end (712), gear of output end (712) is coaxially connected with central gear (31), and input end gear (711) is connected with driving handle (72).Turning handle, realizes manual pressure surface forward or backwards.
Further, drive unit (8) comprises speed changer (82) and motor (81), and speed changer (82) output is coaxially connected with central gear (31), and input is connected with motor (81).Further again, drive unit (8) also comprises electrical control gear, comprises A.C. contactor KM1, KM2, press button SB0, SB1, SB2, travel switch SQ1, SQ2, fuse group FU1, FU2, air-break QS; Suppose when left side shaped device presses down, motor forward, while arriving lower position-arresting, touches SQ1, and when the right type device presses down, motor reversal, while arriving lower position-arresting, touches SQ2; When work starts, the right shaped device has arrived lower position-arresting, and SQ2 break contact SQ2-DD disconnects, and moving together contact SQ2-DH is closed, and motor forward enables; Press SB1, KM1 coil KM1-XQ energising, dynamic circuit breaker auxiliary contact KM1-DDF disconnects circuit for reversing and realizes interlocking, and dynamic circuit connector auxiliary contact KM1-DHF closure realizes self-locking, and dynamic circuit connector main contacts KM1-DHZ is closed, motor forward; While arriving lower position-arresting, hit travel switch SQ1, SQ1 break contact SQ1-DD first disconnects forward control circuit, and then moving together contact SQ1-DH is closed, and circuit for reversing is enabled; In like manner, press the reversion of SB2 starter motor.Like this, just having realized the automatic pressure surface of motor substitutes manually.
Accompanying drawing explanation
Fig. 1 is oodle maker perspective view.
Fig. 2 is oodle maker front view.
Fig. 3 is oodle maker bottom view.
Fig. 4 is the linkage of oodle maker.
Fig. 5 is the circuit theory diagrams of the motor driver of oodle maker.
The specific embodiment
Fig. 1 is a kind of example of oodle maker, comprise support (10), framework (11), formation system, drive unit, formation system comprises the linkage between two sleeve forming devices and two sleeve forming devices, every suit shaped device comprises piston (21), cylinder body (22), forming hole (221) is arranged at cylinder body (22) bottom, linkage comprises 1 central gear (31) and 4 pinions (32), central gear (31) and 4 pinions (32) engagement, 2 pinions (32) mesh with the pole of 1 piston (21).
Shaped device comprises 6 station discs (20), is uniformly distributed 6 through holes (201) that can put cylinder body (22) on disk (20); The step device that also comprises multi-position disc (20), comprises stepping ratchet (50), and ratchet (52) is entered in minute large stepping ratchet (51) and small step, phase phasic difference 15 degree; Stepping ratchet (50) is fixedly connected with disk (20), and stepping ratchet (50) has some ratchets (55) corresponding with the station on disk (20), and ratchet (55) has pitch face (552) and straight-sided flank (551); Stepping depression bar (59) is fixed on piston (21), and ratchet (55) is pointed at the two ends of stepping depression bar (59); On stepping depression bar (59), move, touch small step and enter the pitch face of ratchet (52) (552), force disk (20) to rotate a smaller angle 15 degree, when stepping depression bar (59) moves down, touch the pitch face (552) of large stepping ratchet (51), force disk (20) further to rotate one compared with wide-angle 45 degree, complete a stepping.
Shaped device also comprises cutting device for noodle production, if the smooth and edge evagination in cylinder body (22) bottom, there is the slide block (62) that is fixed on the chute (61) of framework (11) and slides thereon, on slide block (62), establish knife rest (64) fulcrum (640), knife rest (64) swings up and down around fulcrum (640), elastic blade (642) is established in one end of knife rest (64), the other end is established blade (642) contact roller (643), on framework (11), establish contact roller (643) track (65), track (65) minute compressed part (651) and flaccid part (652); When tangent plane starts, contact roller (643) is in flaccid part (652), and when tangent plane carries out, slide block (62) is mobile, and contact roller (643) enters compressed part (651), forces blade (642) to be adjacent to cylinder body (22) bottom.
Manual driving device (7) comprises that drive gear set (71) is connected with driving handle (72), drive gear set (71) has input end gear (711) and gear of output end (712), gear of output end (712) is coaxially connected with central gear (31), and input end gear (711) is connected with driving handle (72).
Motor driver (8) comprises speed changer (82) and motor (81), and speed changer (82) output is coaxially connected with central gear (31), and input is connected with motor (81).Motor-driven control device comprises A.C. contactor KM1, KM2, press button SB0, SB1, SB2, travel switch SQ1, SQ2, fuse group FU1, FU2, air-break QS; Suppose when left side shaped device presses down, motor forward, while arriving lower position-arresting, touches SQ1, and when the right type device presses down, motor reversal, while arriving lower position-arresting, touches SQ2; When work starts, the right shaped device has arrived lower position-arresting, and SQ2 break contact SQ2-DD disconnects, and moving together contact SQ2-DH is closed, and motor forward enables; Press SB1, KM1 coil KM1-XQ energising, dynamic circuit breaker auxiliary contact KM1-DDF disconnects circuit for reversing and realizes interlocking, and dynamic circuit connector auxiliary contact KM1-DHF closure realizes self-locking, and dynamic circuit connector main contacts KM1-DHZ is closed, motor forward; While arriving lower position-arresting, hit travel switch SQ1, SQ1 break contact SQ1-DD first disconnects forward control circuit, and then moving together contact SQ1-DH is closed, and circuit for reversing is enabled; In like manner, press the reversion of SB2 starter motor.
Specific operation process is as follows: at left and right shaped device, respectively put into some doughs, suppose that the right shaped device is carrying out pressure surface operation and approaching, piston (21) approaches cylinder body (22) bottom, and now the piston of left side edge forming device (21) has just left cylinder body (22), the right shaped device continues extrude dough, left side piston (21) continues to rise, stepping depression bar (59) lower end is left after the straight-sided flank (551) of ratchet (55) of large step gear (51), upper end starts to touch the pitch face (552) of the ratchet (55) of little step gear (52), force disk (20) to rotate, when left side piston (21) moves to upper position-arresting, disk (20) has rotated 15 degree, stepping depression bar (59) upper end has been left pitch face (552), touch the straight-sided flank (551) of another ratchet (55), stepping depression bar (59) lower end has been pointed to the pitch face (552) of the ratchet (55) of large step gear (51), when starting left side shaped device, start pressure surface, left side piston (21) moves down, stepping depression bar (59) upper end is left after the straight-sided flank (551) of ratchet (55) of little step gear (52), stepping depression bar (59) touches the pitch face (552) of the ratchet (55) of large step gear (51), forces disk (20) to be rotated further, when left side piston (21), to enter cylinder body (22) front, and disk (20) has rotated miter angle, completes stepping, now, the lower end of stepping depression bar (59) has been left pitch face (552), touches the straight-sided flank (551) of another ratchet (55), and stepping depression bar (59) upper end has been pointed to the pitch face (552) of the ratchet (55) of little step gear (52), left side piston (21) enters cylinder body (22), extrude dough, and while approaching bottom, the shaped device on the right starts the right disk (20) stepping, left side piston (21) continues extrude dough to lower position-arresting, tangent plane.
Claims (10)
1. an oodle maker, is characterized in that: comprise support (10), framework (11), formation system, drive unit (7; 8); Formation system comprises 1 sleeve forming device at the most, and every suit shaped device comprises piston (21), cylinder body (22), and forming hole (221) is arranged at cylinder body (22) bottom; Shaped device also comprises multi-position disc (20), is uniformly distributed the some through holes (201) that can put cylinder body (22) on disk (20).
2. oodle maker according to claim 1, it is characterized in that: described shaped device also comprises the step device of multi-position disc (20), after leaving cylinder body (22), piston (21) is moved upward to upper position-arresting, driver plate (20) rotates a smaller angle, when piston (21) starts to be displaced downwardly to, to enter cylinder body (22) front, driver plate (20) further rotates one compared with wide-angle, completes a stepping.
3. oodle maker according to claim 2, is characterized in that: the step device of described multi-position disc (20), comprise stepping ratchet (50), and ratchet (52) is entered in minute large stepping ratchet (51) and small step, and phase place differs; Stepping ratchet (50) is fixedly connected with disk (20), and stepping ratchet (50) has some ratchets (55) corresponding with the station on disk (20), and ratchet (55) has pitch face (552) and straight-sided flank (551); Stepping depression bar (59) is fixed on piston (21), and ratchet (55) is pointed at the two ends of stepping depression bar (59); On stepping depression bar (59), move, upper end is touched small step and is entered the pitch face of the ratchet of ratchet (52) (55) (552), force disk (20) to rotate a smaller angle, and make stepping depression bar (59) lower end point to the pitch face (552) of the ratchet (55) of large stepping ratchet (51); When stepping depression bar (59) moves down, the pitch face (552) of the ratchet (55) of large stepping ratchet (51) is touched in lower end, force disk (20) further to rotate one compared with wide-angle, complete a stepping, and make stepping depression bar (59) upper end point to the pitch face (552) that the ratchet (55) of ratchet (52) is entered in small step.
4. according to the oodle maker described in claim 1 or 2 or 3, it is characterized in that: described shaped device also comprises cutting device for noodle production, if the smooth and edge evagination in cylinder body (22) bottom, there is the slide block (62) that is fixed on the chute (61) of framework (11) and slides thereon, on slide block (62), establish knife rest (64) fulcrum (640), knife rest (64) swings up and down around fulcrum (640), elastic blade (642) is established in one end of knife rest (64), the other end is established blade (642) contact roller (643), on framework (11), establish contact roller (643) track (65), track (65) minute compressed part (651) and flaccid part (652), when tangent plane starts, contact roller (643) is in flaccid part (652), and when tangent plane carries out, slide block (62) is mobile, and contact roller (643) enters compressed part (651), forces blade (642) to be adjacent to cylinder body (22) bottom.
5. according to the oodle maker described in claim 1 or 2 or 3, it is characterized in that: formation system comprises the linkage between two sleeve forming devices and two sleeve forming devices, another set of in backhaul when linkage makes one in two sleeve forming devices be enclosed within pressure surface process.
6. oodle maker according to claim 4, is characterized in that: formation system comprises the linkage between two sleeve forming devices and two sleeve forming devices, another set of in backhaul when linkage makes one in two sleeve forming devices be enclosed within pressure surface process.
7. oodle maker according to claim 5, it is characterized in that: described linkage comprises 1 central gear (31) and 4 pinions (32), central gear (31) and 4 pinions (32) engagement, 2 pinions (32) mesh with the pole of 1 piston (21); Drive unit (7; 8) by driving central gear (31) to drive linkage.
8. oodle maker according to claim 6, it is characterized in that: described linkage comprises 1 central gear (31) and 4 pinions (32), central gear (31) and 4 pinions (32) engagement, 2 pinions (32) mesh with the pole of 1 piston (21); Drive unit (7; 8) by driving central gear (31) to drive linkage.
9. oodle maker according to claim 7, is characterized in that: described drive unit (8) comprises speed changer (82) and motor (81), and speed changer (82) output is coaxially connected with central gear (31), and input is connected with motor (81); Also comprise electrical control gear, comprise A.C. contactor KM1, KM2, press button SB0, SB1, SB2, travel switch SQ1, SQ2, fuse group FU1, FU2, air-break QS; Suppose when left side shaped device presses down, motor forward, while arriving lower position-arresting, touches SQ1, and when the right type device presses down, motor reversal, while arriving lower position-arresting, touches SQ2; When work starts, the right shaped device has arrived lower position-arresting, and SQ2 break contact SQ2-DD disconnects, and moving together contact SQ2-DH is closed, and motor forward enables; Press SB1, KM1 coil KM1-XQ energising, dynamic circuit breaker auxiliary contact KM1-DDF disconnects circuit for reversing and realizes interlocking, and dynamic circuit connector auxiliary contact KM1-DHF closure realizes self-locking, and dynamic circuit connector main contacts KM1-DHZ is closed, motor forward; While arriving lower position-arresting, hit travel switch SQ1, SQ1 break contact SQ1-DD first disconnects forward control circuit, and then moving together contact SQ1-DH is closed, and circuit for reversing is enabled; In like manner, press the reversion of SB2 starter motor.
10. oodle maker according to claim 8, is characterized in that: described drive unit (8) comprises speed changer (82) and motor (81), and speed changer (82) output is coaxially connected with central gear (31), and input is connected with motor (81); Also comprise electrical control gear, comprise A.C. contactor KM1, KM2, press button SB0, SB1, SB2, travel switch SQ1, SQ2, fuse group FU1, FU2, air-break QS; Suppose when left side shaped device presses down, motor forward, while arriving lower position-arresting, touches SQ1, and when the right type device presses down, motor reversal, while arriving lower position-arresting, touches SQ2; When work starts, the right shaped device has arrived lower position-arresting, and SQ2 break contact SQ2-DD disconnects, and moving together contact SQ2-DH is closed, and motor forward enables; Press SB1, KM1 coil KM1-XQ energising, dynamic circuit breaker auxiliary contact KM1-DDF disconnects circuit for reversing and realizes interlocking, and dynamic circuit connector auxiliary contact KM1-DHF closure realizes self-locking, and dynamic circuit connector main contacts KM1-DHZ is closed, motor forward; While arriving lower position-arresting, hit travel switch SQ1, SQ1 break contact SQ1-DD first disconnects forward control circuit, and then moving together contact SQ1-DH is closed, and circuit for reversing is enabled; In like manner, press the reversion of SB2 starter motor.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420048176.XU CN203985799U (en) | 2013-02-05 | 2014-01-26 | Oodle maker |
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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CN201320066465.8 | 2013-02-05 | ||
CN201320066465 | 2013-02-05 | ||
CN201420048176.XU CN203985799U (en) | 2013-02-05 | 2014-01-26 | Oodle maker |
Publications (1)
Publication Number | Publication Date |
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CN203985799U true CN203985799U (en) | 2014-12-10 |
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ID=52025908
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Application Number | Title | Priority Date | Filing Date |
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CN201420048176.XU Expired - Fee Related CN203985799U (en) | 2013-02-05 | 2014-01-26 | Oodle maker |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103960321A (en) * | 2013-02-05 | 2014-08-06 | 唐迪强 | Noodle press |
-
2014
- 2014-01-26 CN CN201420048176.XU patent/CN203985799U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103960321A (en) * | 2013-02-05 | 2014-08-06 | 唐迪强 | Noodle press |
CN103960321B (en) * | 2013-02-05 | 2018-07-24 | 唐迪强 | Noodle press |
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Legal Events
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20141210 Termination date: 20160126 |
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EXPY | Termination of patent right or utility model |