Noodle cutter for flour products

文档序号:1028024 发布日期:2020-10-30 浏览:42次 中文

阅读说明:本技术 一种面粉制品切条器 (Noodle cutter for flour products ) 是由 刘明闽 于 2020-07-09 设计创作,主要内容包括:本发明涉及一种切条器,尤其涉及一种面粉制品切条器。提供一种无需人工手动进行切割,切割均匀且切割效率高的面粉制品切条器。一种面粉制品切条器,包括有底座、伺服电机和支架,底座顶部一侧设有伺服电机,底座上部设有支架。通过刀片组件左右移动,从而对面条进行切割,通过第三锥齿轮与第二齿条之间的配合,从而使得切割板带动切割完毕的面条向下移动。(The invention relates to a slitter, in particular to a slitter for flour products. The utility model provides a need not artifical manual cutting, cut even and the efficient flour product slitting ware of cutting. A noodle cutter for flour products comprises a base, a servo motor and a support, wherein the servo motor is arranged on one side of the top of the base, and the support is arranged on the upper portion of the base. Remove about through blade subassembly to cutting noodless, through the cooperation between third bevel gear and the second rack, thereby making the cutting board drive the noodless that the cutting finishes and move down.)

1. The utility model provides a flour product slitting ware, is equipped with servo motor (2) including base (1), servo motor (2) and support (3) base (1) top one side, and base (1) upper portion is equipped with support (3), its characterized in that: still including cutting mechanism (4), advancing mechanism (5), first drive assembly (6), elevating system (7), cutting board (8) and play flitch (9), base (1) top advancing mechanism (5), be connected with cutting mechanism (4) between advancing mechanism (5) and support (3), base (1) top one side is equipped with elevating system (7), be connected with first drive assembly (6) between elevating system (7) and advancing mechanism (5), advancing mechanism (5) top is equipped with cutting board (8), base (1) one end of keeping away from support (3) one side is equipped with out flitch (9).

2. A noodle cutter for flour products as defined in claim 1, wherein: cutting mechanism (4) is including turning handle (40), sliding plate (41), connecting rod (42), first connecting block (43), connection piece (44) and blade subassembly (45), support (3) inboard slidingtype is connected with sliding plate (41), sliding plate (41) one side is equipped with connecting rod (42), connecting rod (42) one end of keeping away from sliding plate (41) one side is equipped with first connecting block (43), first connecting block (43) both sides all are equipped with connection piece (44), be connected with blade subassembly (45) between connection piece (44), advancing mechanism (5) top is equipped with turning handle (40), turning handle (40) upper portion cooperatees with sliding plate (41).

3. A noodle cutter for flour products as defined in claim 2, wherein: the propelling mechanism (5) comprises a first bevel gear (50), a first bearing seat (51), a first rotating shaft (52), a second bevel gear (53), a guide rail (54), a first rack (55), a first spring (56), a second bearing seat (57), a second rotating shaft (58), a first missing gear (59), a second connecting block (501), a propelling plate (502) and a second transmission assembly (503), wherein the output shaft of the servo motor (2) is connected with the first bevel gear (50), the top of the base (1) close to one side of the servo motor (2) is provided with the first bearing seat (51), the upper part of the first bearing seat (51) is rotatably provided with the first rotating shaft (52), the tail end of the first rotating shaft (52) is provided with the second bevel gear (53), the second bevel gear (53) is meshed with the first bevel gear (50), the two sides of the top of the base (1) are both provided with the second bearing seat, be connected with second pivot (58) between second bearing (57) upper portion, second pivot (58) both ends are connected with first scarce gear (59), base (1) top both sides that are close to servo motor (2) one side all are equipped with guide rail (54), equal sliding connection has first rack (55) on guide rail (54), all be connected with first spring (56) between first rack (55) one end and the bottom inner wall, first rack (55) top all is equipped with second connecting block (501), be connected with between second connecting block (501) the top and impel board (502), be connected with second transmission assembly (503) between first pivot (52) and second pivot (58).

4. A noodle cutter for flour products as defined in claim 3, wherein: the lifting mechanism (7) comprises a third bearing seat (70), a fixing column (71), a third rotating shaft (72), a third bevel gear (73), a second spring (74), a second rack (75), a sliding rod (77) and a disc (78), the top of the base (1) far away from one side of the servo motor (2) is provided with the fixing column (71), the top of the base (1) close to one side of the fixing column (71) is provided with the third bearing seat (70), the top end of the third bearing seat (70) is connected with the third rotating shaft (72), a first transmission assembly (6) is connected between the upper part of the third rotating shaft (72) and the second rotating shaft (58), the front end of the third rotating shaft (72) is provided with the third bevel gear (73), the top of the base (1) far away from one side of the first rack (55) is provided with a sliding groove (76), the sliding rod (77) is connected in the sliding groove (76), one, a second spring (74) is connected between the bottom of the second rack (75) and the top of the fixed column (71), a disc (78) is connected to the top end of the second rack (75), and the top of the disc (78) is connected with the bottom of the discharging plate (9).

5. A noodle maker for a flour product as set forth in claim 4 wherein: the novel blade assembly is characterized by further comprising a fixing disc (10) and clamp nails (11), the fixing disc (10) is arranged on the blade assembly (45) at even intervals, and the clamp nails (11) are inserted into the upper portion of the fixing disc (10).

Technical Field

The invention relates to a slitter, in particular to a slitter for flour products.

Background

With the increase of population, the clothes and eating habits will develop towards modernization, the simple manual making can not meet the requirements of people for food, the noodles are health care food which has simple making, convenient eating and rich nutrition, can be used as staple food and fast food, and have been accepted and loved by people in the world for a long time. A noodle is prepared by grinding cereal or bean flour with water to obtain dough, pressing or rolling or stretching into slices, cutting or pressing, or kneading, pulling, kneading, making into strips (narrow or wide, flat or round) or small pieces, and decocting, parching, braising, and frying. The patterns are various and the varieties are various.

Traditional noodless cutting mode mainly is through artifical cutter that uses, cuts the noodle, and the width degree is not well controlled, cuts inhomogeneous and cutting inefficiency easily.

Disclosure of Invention

In order to overcome and use the cutter through the manual work, cut the noodle, the not good control of width degree, the easy cutting is inhomogeneous and the cutting inefficiency shortcoming, technical problem: the utility model provides a need not artifical manual cutting, cut even and the efficient flour product slitting ware of cutting.

The technical implementation scheme of the invention is as follows: the utility model provides a flour product slitting ware, which comprises a base, servo motor and support, base top one side is equipped with servo motor, base upper portion is equipped with the support, still including cutting mechanism, advancing mechanism, first drive assembly, elevating system, cutting board and play flitch, base top advancing mechanism, be connected with cutting mechanism between advancing mechanism and the support, base top one side is equipped with elevating system, be connected with first drive assembly between elevating system and the advancing mechanism, the advancing mechanism top is equipped with cutting board, the base one end of keeping away from support one side is equipped with out the flitch.

Preferably, the cutting mechanism comprises a rotating handle, a sliding plate, a connecting rod, a first connecting block, connecting sheets and a blade assembly, the sliding plate is connected to the inner side of the support in a sliding mode, the connecting rod is arranged on one side of the sliding plate, the first connecting block is arranged at one end, far away from one side of the sliding plate, of the connecting rod, the connecting sheets are arranged on two sides of the first connecting block, the blade assembly is connected between the connecting sheets, the rotating handle is arranged at the top of the pushing mechanism, and the upper portion.

Preferably, the propelling mechanism comprises a first bevel gear, a first bearing seat, a first rotating shaft, a second bevel gear, a guide rail, a first rack, a first spring, a second bearing seat, a second rotating shaft, a first gear lack, a second connecting block, a propelling plate and a second transmission assembly, wherein the first bevel gear is connected to an output shaft of the servo motor, the first bearing seat is arranged at the top of the base close to one side of the servo motor, the first rotating shaft is rotatably arranged at the upper part of the first bearing seat, the second bevel gear is arranged at the tail end of the first rotating shaft and is meshed with the first bevel gear, the second bearing seats are arranged at two sides of the top of the base, the second rotating shaft is connected between the upper parts of the second bearing seats, the first gear lack is connected to two ends of the second rotating shaft, the guide rail is arranged at two sides of the top of the base close to one side of the servo motor, the first rack, the top of the first rack is provided with a second connecting block, a pushing plate is connected between the top ends of the second connecting blocks, and a second transmission assembly is connected between the first rotating shaft and the second rotating shaft.

Preferably, the lifting mechanism comprises a third bearing seat, a fixing column, a third rotating shaft, a third bevel gear, a second spring, a second rack, a sliding rod and a disc, the top of the base far away from one side of the servo motor is provided with the fixing column, the top of the base close to one side of the fixing column is provided with the third bearing seat, the top end of the third bearing seat is connected with the third rotating shaft, a first transmission assembly is connected between the upper portion of the third rotating shaft and the second rotating shaft, the front end of the third rotating shaft is provided with the third bevel gear, the top of the base far away from one side of the first rack is provided with a sliding groove, the sliding groove is connected with the sliding rod in a sliding manner, one end of the sliding rod is provided with the second rack, the second spring is connected between the bottom of the second.

Preferably, the novel blade assembly further comprises a fixing disc and clamping nails, the fixing disc is evenly arranged on the blade assembly at intervals, and the clamping nails are inserted into the upper portion of the fixing disc.

The invention has the following advantages: remove about through the blade subassembly to cutting noodless, through the cooperation between third bevel gear and the second rack, thereby make the cutting board drive the noodless that the cutting finishes and move down, through promoting the board with noodless propelling movement to going out the flitch on, thereby make things convenient for staff's collection work, through the cooperation between fixed disk and the bail, thereby adjust the width that goes on noodless, satisfy user's demand.

Drawings

Fig. 1 is a schematic front view of the noodle cutter for flour products.

Fig. 2 is a schematic front view of the cutting mechanism of the present invention.

Fig. 3 is a perspective view of a first partial structure of the propulsion mechanism of the present invention.

Fig. 4 is a perspective view of a second partial structure of the propulsion mechanism of the present invention.

Fig. 5 is a perspective view of a third partial structure of the propulsion mechanism of the present invention.

Fig. 6 is a schematic perspective view of the lifting mechanism of the present invention.

Fig. 7 is an exploded perspective view of a portion of the structure of the present invention.

Labeled as: a base, 2.. a servo motor, 3.. a support, 4.. a cutting mechanism, 40.. a stem, 41.. a sliding plate, 42.. a connecting rod, 43.. a first connecting block, 44.. a connecting plate, 45.. a blade assembly, 5.. an advancing mechanism, 50.. a first bevel gear, 51.. a first bearing block, 52.. a first rotating shaft, 53.. a second bevel gear, 54.. a guide rail, 55.. a first rack, 56.. a first spring, 57.. a second bearing block, 58.. a second rotating shaft, 59.. a first missing gear, 501.. a second connecting block, 502.. an advancing plate, 503.. a second transmission assembly, 6.. a first transmission assembly, 7.. a lifting and lowering mechanism, 70.. a third rotating shaft, 71.. a third transmission assembly, 73... third bevel gears, 74.. second springs, 75.. second racks, 76.. chutes, 77.. slide bars, 78.. discs, 8.. cutting plates, 9.. discharge plates, 10.. fixed plates, 11.. staples.

Detailed Description

The following further describes the technical solution with reference to specific embodiments, and it should be noted that: the words upper, lower, left, right, and the like used herein to indicate orientation are merely for the location of the illustrated structure in the corresponding figures. The serial numbers of the parts are themselves numbered herein, for example: first, second, etc. are used solely to distinguish one from another as to objects described herein, and do not have any sequential or technical meaning. The application states that: the connection and coupling, unless otherwise indicated, include both direct and indirect connections (couplings).

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