CN203936948U - The automatic machine for cutting vermicelli of a kind of numerical control - Google Patents

The automatic machine for cutting vermicelli of a kind of numerical control Download PDF

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Publication number
CN203936948U
CN203936948U CN201420403263.2U CN201420403263U CN203936948U CN 203936948 U CN203936948 U CN 203936948U CN 201420403263 U CN201420403263 U CN 201420403263U CN 203936948 U CN203936948 U CN 203936948U
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chain
ground rice
gripper shoe
bar
casing
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CN201420403263.2U
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Chinese (zh)
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赵绍华
蒋兰芳
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Abstract

The utility model relates to the automatic machine for cutting vermicelli of a kind of numerical control, comprise casing, cutting knife, transmission chain, cutting knife chain, rising chain, gripper shoe I, charging aperture, ground rice collection bar storehouse, sensor I, sensor II, length induction cylinder, chain motor, reclaiming plate, cutter motor, transmission chain I, PLC control panel, collect chain and gripper shoe II, on described length induction cylinder, be provided with described sensor I, described transmission chain is provided with rotating shaft near one end of described charging aperture, is provided with sensor II in rotating shaft.The utility model provides a kind of numerical control automatic machine for cutting vermicelli, by the length of setting, ground rice is cut off in numerical control automatically, and the ground rice cutting is automatically placed into after ground rice is collected on bar and is lined up, finally by artificial feeding, just can, replace traditional handwork, saved manpower, greatly improved production efficiency.

Description

The automatic machine for cutting vermicelli of a kind of numerical control
Technical field
The utility model relates to food processing equipment field, is specifically related to the automatic machine for cutting vermicelli of a kind of numerical control.
Background technology
In producing the process of ground rice, after first ground rice squeezed out by the slivering of ground rice press, then cut into fixing length, finally the ground rice of having sheared is placed on to ground rice and collects on bar.At present to this technique of the shearing of ground rice, all generally by manually completing by scissors, and then collect on bar by manually the ground rice of having sheared being placed on to ground rice, artificial shearing cannot guarantee the sheared length of ground rice each time, also cannot guarantee the neat of otch, and produces a large amount of flours while shearing, cause waste, manual work, wastes a large amount of manpowers simultaneously, thereby production efficiency has lowly increased production cost.
Utility model content
For addressing the above problem, technical problem to be solved in the utility model is to provide the automatic machine for cutting vermicelli of a kind of numerical control.
The technical scheme that the utility model solves the problems of the technologies described above is as follows: the automatic machine for cutting vermicelli of a kind of numerical control, comprises casing, cutting knife, transmission chain, cutting knife chain, rising chain, gripper shoe I, charging aperture, ground rice collection bar storehouse, sensor I, sensor II, length induction cylinder, chain motor, reclaiming plate, cutter motor, transmission chain I, PLC control panel, collects chain and gripper shoe II;
Described casing is the square casing of boring, in described casing, be provided with the described charging aperture for ground rice charging near the inwall of described casing one end, in described casing at described charging aperture near a side of described casing inner wall, be provided with and place the described ground rice collection bar storehouse that ground rice is collected bar, in described ground rice collection bar storehouse, be placed with ground rice and collect bar, described ground rice is collected bottom, bar storehouse and is provided with the shed stick device that the described ground rice of transmission is collected bar, is provided with described length induction cylinder in the described casing at described charging aperture away from a side of described casing 1 inwall;
At described length induction cylinder, away from a side of described charging aperture, be provided with described cutting knife, the two ends of described cutting knife are all rotatably arranged in described casing by semicircle rotating disk, on described casing inner wall below described cutting knife, be provided with the described gripper shoe I of horizontal positioned, described transmission chain I connects the described gripper shoe I of described shed stick device and described cutter near one end of described charging aperture, the described ground rice collection bar that described transmission chain I is collected described ground rice in bar storehouse is sent in described gripper shoe I by described shed stick device, in described gripper shoe I, be provided with described transmission chain, the described ground rice that described transmission chain level transmits in described gripper shoe I to the direction away from described charging aperture is collected bar,
At described casing, away from the both sides, end of one end of described charging aperture, be circumscribed with described reclaiming plate, on described reclaiming plate, be provided with blow tank, in described blow tank, be provided with collection chain, described rising chain connects one end away from described charging aperture of described transmission chain and described collection chain near one end of described casing, after by described rising chain, described ground rice being collected to bar is final and transmitted, be collected on described collection chain;
Below described gripper shoe I, be provided with described gripper shoe II, in described gripper shoe II, be provided with described cutter motor, bottom in described casing below described gripper shoe II is provided with described chain motor, described chain driven by motor transmission chain, described rising chain, transmission chain I and described shed stick device rotate, and described cutter motor drives described cutting knife and described collection chain to rotate;
On described length induction cylinder, be provided with described sensor I, described transmission chain is provided with rotating shaft near one end of described charging aperture, in described rotating shaft, be provided with sensor II, described PLC control panel is controlled the length of setting described sensor I and the induction of described sensor II, when described inductor I senses that the length of described length induction rollers roll is described PLC control panel setting value, described transmission chain I is collected bar to the direction transmission of described cutting knife by described ground rice, when described sensor II senses that by described rotating shaft the length of transmission chain rotation is described PLC control panel setting value, described cutting knife rotates blank.
Further, above described charging aperture, be provided with circular-arc bulk cargo bar.
Further, in the described gripper shoe I under described cutting knife, be provided with corresponding with the described cutting knife powder bar of cutting.
Further, in described gripper shoe II, be also provided with the air blast that air port makes progress, in described gripper shoe I, be evenly provided with air blast hole corresponding to a plurality of and described air blast position.
Further, hinged speed control rod in the described casing below described length induction cylinder, described speed control rod connects the speed governing inductive switch of described chain motor, regulates the velocity of rotation of described chain motor by the rotation of described speed control rod.
Further, the described casing inner wall below described semicircle rotating disk is provided with described powder pressing rod, and described powder pressing rod is connected on described casing inner wall by spring, and the described gripper shoe I of described powder pressing rod below is provided with the depression bar corresponding with described powder pressing rod.
Further, it is the narrow structure shape in wide bottom, top that described ground rice is collected bar storehouse, and the width of ground rice collection bottom, bar storehouse equals the diameter that described ground rice is collected bar.
Further, in the bottom of described housing, be provided with universal wheel.
The beneficial effects of the utility model are: the utility model provides a kind of numerical control automatic machine for cutting vermicelli, by the length of setting, ground rice is cut off in numerical control automatically, and the ground rice cutting is automatically placed into after ground rice is collected on bar and is lined up, finally by artificial feeding, just can, replace traditional handwork, saved manpower, greatly improved production efficiency.
Accompanying drawing explanation
Fig. 1 is the utility model plan structure schematic diagram;
Fig. 2 is the side-looking structural representation of Fig. 1;
Fig. 3 is the A-A sectional structure schematic diagram of Fig. 1.
In accompanying drawing, the list of parts of each label representative is as follows:
1, casing, 2, cutting knife, 3, universal wheel, 4, powder pressing rod, 5, bulk cargo bar, 6, transmission chain, 7, cutting knife chain, 8, rising chain, 9, air blast hole, 10, gripper shoe, 11, air blast, 12, charging aperture, 13, ground rice is collected bar storehouse, 14, inductor I, 15, inductor II, 16, length induction cylinder, 17, ground rice is collected bar, 18, chain motor, 19, speed control rod, 20, reclaiming plate, 21, cutter motor, 22, transmission chain I, 23, PLC control panel, 24, collect chain, 25, blow tank, 26, rotating shaft, 27, shed stick device, 28, semicircle rotating disk, 29, gripper shoe II, 30, chipping, 31, depression bar.
The specific embodiment
Below in conjunction with accompanying drawing, principle of the present utility model and feature are described, example, only for explaining the utility model, is not intended to limit scope of the present utility model.
As shown in Figure 1,2 and 3, the automatic machine for cutting vermicelli of numerical control, comprises casing 1, cutting knife 2, transmission chain 6, cutting knife chain 7, rising chain 8, gripper shoe I 10, charging aperture 12, ground rice collection bar storehouse 13, sensor I 14, sensor II 15, length induction cylinder 16, chain motor 18, reclaiming plate 20, cutter motor 21, transmission chain I 22, PLC control panel 23, collects chain 24 and gripper shoe II 29.
The square casing that described casing 1 is boring, in described casing 1, be provided with the described charging aperture 12 for ground rice charging near the inwall of described casing 1 one end, above described charging aperture 12, be provided with circular-arc bulk cargo bar 5, after ground rice is squeezed out by the slivering of ground rice press, ground rice drops to charging aperture 12 after the circular arc portion of bulk cargo bar 5, arc structure evenly scatters ground rice, prevents that ground rice is glutinous together, and ground rice enters machine for cutting vermicelli from charging aperture 12 and cuts powder.In described casing 1 at described charging aperture 12 near a side of described casing 1 inwall, be provided with described ground rice and collect bar storehouse 13, described ground rice is collected in bar storehouse 13 and is placed with ground rice collection bar 17, collects 13 bottoms, bar storehouse be provided with the shed stick device 27 that the described ground rice of transmission is collected bar 17 at described ground rice.The ground rice that is cut into regular length hangs over ground rice and collects on bar 17.In described casing 1 at described charging aperture 12 away from a side of described casing 1 inwall, be provided with described length induction cylinder 16, ground rice falls along length induction cylinder 16 from charging aperture 12 enters machine for cutting vermicelli, when falling, ground rice can drive length induction cylinder 16 to roll, on described length induction cylinder 16, be provided with described sensor I 14, the length that sensor I 14 induction length induction cylinders 16 roll.
At described length induction cylinder 16, away from a side of described charging aperture 12, be provided with described cutting knife 2, the two ends of described cutting knife 2 are all rotatably arranged in described casing 1 by semicircle rotating disk 28, on described casing 1 inwall below described cutting knife 2, be provided with the described gripper shoe I 10 of horizontal positioned, described transmission chain I 22 connects the described gripper shoe I 10 at described shed stick device 27 and described cutting knife 2 places near one end of described charging aperture 12, the described ground rice collection bar 17 that described transmission chain I 22 is collected described ground rice in bar storehouse 13 is sent in described gripper shoe I 10 by described shed stick device 27.Described ground rice is collected the narrow structure shape in wide bottom, 13Wei top, bar storehouse, and the width that ground rice is collected 13 bottoms, bar storehouse equals the diameter that described ground rice is collected bar 17, and wall scroll ground rice is collected bar 17 and dropped on described shed stick device 27 and is convenient to transmit.In described gripper shoe I 10, be provided with described transmission chain 6, both sides and centre position in gripper shoe I 10 are all provided with transmission chain 6, article three, the described ground rice that transmission chain 6 levels transmit in described gripper shoe I 10 to the direction away from described charging aperture 12 is collected bar 17, article three, transmission chain 6 transmits ground rice and collects bar 17, prevent that ground rice collection bar 17 is out of shape under the effect of ground rice pulling force, causes ground rice at random.At described casing 1, away from the both sides, end of one end of described charging aperture 12, be circumscribed with described reclaiming plate 20, on described reclaiming plate 20, be provided with blow tank 25, in described blow tank 25, be provided with and collect chain 24, one end away from described charging aperture 12 of the described transmission chain 6 of described rising chain 8 connection and described collection chain 24, near one end of described casing 1, are collected bar 17 by described rising chain 8 by described ground rice and are finally sent on described collection chain 24.
Below described gripper shoe I 10, be provided with described gripper shoe II 29, in described gripper shoe II 29, be provided with described cutter motor 21, bottom in described casing 1 below described gripper shoe II 29 is provided with described chain motor 18, described chain motor 18 drives transmission chain 6, rising chain 8, transmission chain I 22 and shed stick device 27 rotate, described cutter motor 21 drives described cutting knife 2 to rotate and described collection chain 24 rotates, in the process that cutting knife 2 rotates a circle, when the point of a knife of cutting knife 2 rotates to directly over gripper shoe I 10, in described gripper shoe I 10 under described cutting knife 2, be provided with corresponding with the described cutting knife 2 powder bar 30 of cutting, cutting knife 2 cuts off the ground rice in gripper shoe I 10 in the position of cutting powder bar 30.In described gripper shoe II 29, be also provided with the air blast 11 that air port makes progress, in described gripper shoe I 10, be evenly provided with air blast hole 9 corresponding to a plurality of and described air blast 11 positions.Air blast 11, by air blast hole 9 air blast above gripper shoe I 10, dries up gripper shoe 10 ground rice of process above, prevents ground rice because be bonded together with moisture.
The interior hinged speed control rod 19 of described casing 1 below described length induction cylinder 16, speed control rod 19 connects the speed governing inductive switch of chain motor 18, regulates the velocity of rotation of described chain motor 18 by the rotation of described speed control rod 19.By PLC control panel 23, control the induction length of setting described sensor I 14, when described inductor I 14 senses that the length of described length induction cylinder 16 rollings is described PLC control panel 23 setting value, by shed stick device 27, by described ground rice collection bar 17, the direction to described cutting knife 2 transmits described transmission chain I 22, when ground rice is collected bar 17 and transmitted to the direction of cutting knife 2, ground rice is collected the ground rice that bar 17 promotes charging aperture 12 interior whereabouts and is advanced through the rear direction toward cutting knife 2 of speed control rod 19.If ground rice is excessive through the speed of speed control rod 19, the pulling force that ground rice can produce speed control rod 19 is just larger, pull speed control rod 19 to rotate, speed control rod 19 connects the speed governing inductive switch of chain motor 18, speed control rod 19 rotates the rotating speed that will reduce described chain motor 18, keep chain within a normal velocity of rotation, make the velocity of rotation of chain and the falling speed of ground rice consistent.Described transmission chain 6 is provided with rotating shaft 26 near one end of described charging aperture 12, in transmission chain 6 rotating shafts 26, be provided with sensor II 15, described PLC control panel 23 is controlled the induction length of setting described sensor II 15, when described sensor II 15 senses that by described rotating shaft 26 length of transmission chain 6 rotations is described PLC control panel 23 setting value, described cutting knife 2 rotates blanks.When cutting knife 2 rotates, semicircle rotating disk 28 is along with rotating together, described casing 1 inwall below described semicircle rotating disk 28 is provided with described powder pressing rod 4, described powder pressing rod 4 is connected on described casing 1 inwall by spring, and the described gripper shoe I 10 of described powder pressing rod 4 belows is provided with the depression bar 31 corresponding with described powder pressing rod 4, in the process that semicircle rotating disk 28 rotates, can press down powder pressing rod 4, make powder pressing rod 4 push down ground rice on depression bar 31, powder pressing rod 4 is pushed down the synchronization of ground rice, when cutting knife 2 cuts off ground rice just, powder pressing rod 4 is pushed down ground rice can prevent that ground rice from clinging cutting knife 2, ground rice is at random because cutting knife 2 rotates.After ground rice cuts off, semicircle rotating disk 28 is removed the pressing down of powder pressing rod 4, powder pressing rod 4 rising that resets under the effect of spring.
Ground rice after cut-out hangs over to collect on bar 17 and continues to move along gripper shoe 10 by transmission chain 6, then passes through rising chain 8, and last proper alignment, on output chain 24, is wholely cut powder work and completed.In the bottom of described housing 1, be provided with universal wheel 3, by universal wheel 3, realize the transfer of machine for cutting vermicelli and carry.The whole powder work Automatic Control of cutting, finally by artificial feeding just can, replaced traditional handwork, save manpower, greatly improved production efficiency.
The foregoing is only preferred embodiment of the present utility model, not in order to limit the utility model, all within spirit of the present utility model and principle, any modification of doing, be equal to replacement, improvement etc., within all should being included in protection domain of the present utility model.

Claims (8)

1. the automatic machine for cutting vermicelli of numerical control, is characterized in that: comprise casing (1), cutting knife (2), transmission chain (6), cutting knife chain (7), rising chain (8), gripper shoe I (10), charging aperture (12), ground rice collection bar storehouse (13), sensor I (14), sensor II (15), length induction cylinder (16), chain motor (18), reclaiming plate (20), cutter motor (21), transmission chain I (22), PLC control panel (23), collect chain (24) and gripper shoe II (29);
The square casing that described casing (1) is boring, in described casing (1), inwall near described casing (1) one end is provided with the described charging aperture (12) for ground rice charging, in described casing (1) at described charging aperture (12) near a side of described casing (1) inwall, be provided with described ground rice and collect bar storehouse (13), in described ground rice collection bar storehouse (13), be placed with ground rice and collect bar (17), described ground rice is collected bottom, bar storehouse (13) and is provided with the shed stick device (27) that the described ground rice of transmission is collected bar (17), in described casing (1) at described charging aperture (12) away from a side of described casing (1) inwall, be provided with described length induction cylinder (16),
At described length induction cylinder (16), away from a side of described charging aperture (12), be provided with described cutting knife (2), the two ends of described cutting knife (2) are all passed through semicircle rotating disk (28) and are rotatably arranged in described casing (1), on described casing (1) inwall of described cutting knife (2) below, be provided with the described gripper shoe I (10) of horizontal positioned, described transmission chain I (22) connects one end of described shed stick device (27) and the close described charging aperture (12) of described gripper shoe I (10), the described ground rice collection bar (17) that described transmission chain I (22) is collected described ground rice in bar storehouse (13) is sent in described gripper shoe I (10) by described shed stick device (27), in described gripper shoe I (10), be provided with described transmission chain (6), the described ground rice that described transmission chain (6) level transmits in described gripper shoe I (10) to the direction away from described charging aperture (12) is collected bar (17),
At described casing (1), away from the both sides, end of described charging aperture (12) one end, be circumscribed with described reclaiming plate (20), on described reclaiming plate (20), be provided with blow tank (25), in described blow tank (25), be provided with and collect chain (24), described rising chain (8) connects one end away from described charging aperture (12) of described transmission chain (6) and one end of the close described casing (1) of described collection chain (24), by described rising chain (8), described ground rice is collected to bar (17) and is finally sent on described collection chain (24);
In described gripper shoe I (10) below, be provided with described gripper shoe II (29), in described gripper shoe II (29), be provided with described cutter motor (21), bottom in the described casing (1) of described gripper shoe II (29) below is provided with described chain motor (18), described chain motor (18) drives transmission chain (6), described rising chain (8), transmission chain I (22) and described shed stick device (27) to rotate, and described cutter motor (21) drives described cutting knife (2) and described collection chain (24) to rotate;
On described length induction cylinder (16), be provided with described sensor I (14), described transmission chain (6) is provided with rotating shaft (26) near one end of described charging aperture (12), in described rotating shaft (26), be provided with sensor II (15), described PLC control panel (23) is controlled the induction length of setting described sensor I (14) and described sensor II (15), when described inductor I (14) senses that the length of described length induction cylinder (16) rolling is described PLC control panel (23) setting value, described transmission chain I (22) is collected bar (17) to the direction transmission of described cutting knife (2) by described ground rice, when described sensor II (15) senses that by described rotating shaft (26) length of transmission chain (6) rotation is described PLC control panel (23) setting value, described cutting knife (2) rotates blank.
2. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, is characterized in that: in the top of described charging aperture (12), be provided with circular-arc bulk cargo bar (5).
3. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, is characterized in that: in the described gripper shoe I (10) under described cutting knife (2), be provided with corresponding with described cutting knife (2) the powder bar (30) of cutting.
4. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, it is characterized in that: in described gripper shoe II (29), be also provided with the air blast (11) that air port makes progress, in described gripper shoe I (10), be evenly provided with air blast hole (9) corresponding to a plurality of and described air blast (11) position.
5. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, it is characterized in that: hinged speed control rod (19) in the described casing (1) of described length induction cylinder (16) below, described speed control rod (19) connects the speed governing inductive switch of described chain motor (18), regulates the velocity of rotation of described chain motor (18) by the rotation of described speed control rod (19).
6. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, it is characterized in that: described casing (1) inwall in described semicircle rotating disk (28) below is provided with described powder pressing rod (4), described powder pressing rod (4) is connected on described casing (1) inwall by spring, and the described gripper shoe I (10) of described powder pressing rod (4) below is provided with the depression bar (31) corresponding with described powder pressing rod (4).
7. the automatic machine for cutting vermicelli of a kind of numerical control according to claim 1, it is characterized in that: described ground rice is collected bar storehouse (13) for the narrow structure shape in wide bottom, top, and the width of ground rice collection bottom, bar storehouse (13) equals the diameter that described ground rice is collected bar (17).
8. according to the arbitrary described automatic machine for cutting vermicelli of a kind of numerical control of claim 1 to 7, it is characterized in that: in the bottom of described housing (1), be provided with universal wheel (3).
CN201420403263.2U 2014-07-21 2014-07-21 The automatic machine for cutting vermicelli of a kind of numerical control Expired - Fee Related CN203936948U (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104647437A (en) * 2015-02-15 2015-05-27 宁毅 Fully-automatic numerical control rice noodle shearing machine
CN106466857A (en) * 2015-08-20 2017-03-01 南通青禾食品机械有限公司 A kind of automatization machine for cutting vermicelli device and control method
CN109318265A (en) * 2018-11-07 2019-02-12 柳州市乐哈哈食品科技有限公司 A kind of automatic shearing powder machine
CN112720601A (en) * 2020-12-15 2021-04-30 桂林康乐人粉业有限责任公司 Automatic rice noodle cutting and conveying equipment

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104647437A (en) * 2015-02-15 2015-05-27 宁毅 Fully-automatic numerical control rice noodle shearing machine
CN106466857A (en) * 2015-08-20 2017-03-01 南通青禾食品机械有限公司 A kind of automatization machine for cutting vermicelli device and control method
CN106466857B (en) * 2015-08-20 2018-03-06 南通青禾食品机械有限公司 One kind automation machine for cutting vermicelli device and control method
CN109318265A (en) * 2018-11-07 2019-02-12 柳州市乐哈哈食品科技有限公司 A kind of automatic shearing powder machine
CN112720601A (en) * 2020-12-15 2021-04-30 桂林康乐人粉业有限责任公司 Automatic rice noodle cutting and conveying equipment

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Granted publication date: 20141112

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