Cutting device for lace-shaped sliced noodles

文档序号:1723204 发布日期:2019-12-20 浏览:38次 中文

阅读说明:本技术 一种带花边形状刀削面的切削装置 (Cutting device for lace-shaped sliced noodles ) 是由 刘锋 于 2019-07-29 设计创作,主要内容包括:本发明涉及刀削面技术领域,具体公开了一种带花边形状刀削面的切削装置,包括支撑组件与切削刀组件,所述支撑组件由支撑座、支撑座上端插配的升降座与升降座上端铰接的托盘座构成,所述升降座与托盘座通过转轴铰接在一起,且在转轴的侧面设有与升降座、托盘座相插配的定位插销,所述托盘座的中间设有托板,且在托板上端的中间位置处设有框槽结构的削面槽,所述切削刀组件的下端设有切削刃;本发明使用时面团不需要人工托举,进而大大降低了削面师傅的劳动强度,因此提高了切削的效率与切削的质量;采用切削刀组件进行切削,将面团切削成带花边形状的刀削面,使刀削面的外形与口感都具有较大的新鲜感。(The invention relates to the technical field of sliced noodles, and particularly discloses a cutting device for a lace-shaped sliced noodle, which comprises a supporting component and a cutting knife component, wherein the supporting component consists of a supporting seat, a lifting seat inserted and matched at the upper end of the supporting seat and a tray seat hinged at the upper end of the lifting seat, the lifting seat and the tray seat are hinged together through a rotating shaft, a positioning bolt inserted and matched with the lifting seat and the tray seat is arranged on the side surface of the rotating shaft, a supporting plate is arranged in the middle of the tray seat, a sliced noodle groove of a frame groove structure is arranged in the middle of the upper end of the supporting plate, and a cutting edge is arranged at the lower end of the cutting knife component; when the dough cutting machine is used, the dough does not need to be lifted manually, so that the labor intensity of a noodle cutting master is greatly reduced, and the cutting efficiency and the cutting quality are improved; the cutting knife assembly is adopted for cutting, and the dough is cut into the laced sliced noodles, so that the appearance and the taste of the sliced noodles have larger fresh feeling.)

1. The utility model provides a take cutting device of lace shape cutting face, includes supporting component and cutting knife subassembly (8), its characterized in that: the supporting component comprises a supporting seat (2), a lifting seat (4) which is inserted and matched with the upper end of the supporting seat (2) and a tray seat (7) which is hinged with the upper end of the lifting seat (4), the bottom of the supporting seat (2) is provided with a bottom plate (201), a supporting tube (202) is fixedly welded in the middle of the upper end surface of the bottom plate (201), two adjusting screws I (3) are screwed on the side surface of the upper end of the supporting tube (202), the lifting seat (4) and the tray seat (7) are hinged together through a rotating shaft (5), a positioning bolt (6) which is inserted and matched with the lifting seat (4) and the tray seat (7) is arranged on the side surface of the rotating shaft (5), a supporting plate (401) is arranged in the middle of the lifting seat (4), a telescopic tray pipe (403) which is inserted and matched with the supporting tube (202) is fixedly welded in the middle of the lower end surface of the supporting plate (401), and a, and the middle position department of the upper end of layer board (701) is equipped with cutting face groove (702) of frame groove structure, the lower extreme of cutting knife tackle spare (8) is equipped with cutting edge (801), and the left and right sides symmetry in the upper end of cutting edge (801) is equipped with otic placode III (802), the inboard of otic placode III (802) and in the upper end fixedly connected with two guide pillars (805) of cutting edge (801), and the cover is furnished with die plate (806) on guide pillar (805), the lower extreme of die plate (806) is equipped with die groove (807), form the thick both sides thin lace shape cavity structures in middle part between the lower terminal surface of die groove (807) and the up end of cutting edge (801).

2. The cutting device for a lace-shaped cutting surface according to claim 1, wherein: the left and right sides symmetrical welding of the upper end of backup pad (401) has two otic placodes I (402), and offers in the centre of otic placode I (402) side with pivot (5) looks cover-match shaft hole I (405), the location pinhole I (406) that match is inserted mutually with location bolt (6) is offered to the upper end hoop equipartition in shaft hole I (405).

3. The cutting device for a lace-shaped cutting surface according to claim 1, wherein: two ear plates II (703) are symmetrically welded on the left side and the right side of the lower end face of the supporting plate (701), a shaft hole II (705) matched with the rotating shaft (5) in a sleeved mode is formed in the middle position of the side face of each ear plate II (703), and a positioning pin hole II (706) matched with the positioning pin (6) in an inserted mode is formed in the circumferential direction of the side face of each shaft hole II (705).

4. The cutting device for a lace-shaped cutting surface according to claim 1, wherein: a slot (704) is formed in one side of the upper end face of the face cutting slot (702), a baffle (9) is inserted into the slot (704), and an adjusting screw II (10) is screwed on the side face of the baffle (9) and the side face wall body of the slot (704).

5. The cutting device for a lace-shaped cutting surface according to claim 4, wherein: the main body of the baffle (9) is a baffle plate (901) with a bent plate-shaped structure, and a plate holding groove (902) is formed in one side of the upper end of the baffle plate (901).

6. The cutting device for a lace-shaped cutting surface according to claim 1, wherein: the left side and the right side of the contour plate (806) are fixedly connected with connecting plates (808) of a plate-shaped structure matched with the guide columns (805), the upper ends of the connecting plates (808) are provided with limiting pressing plates (809) matched with the guide columns (805), springs (811) matched with the guide columns (805) are arranged between the lower end faces of the limiting pressing plates (809) and the upper end faces of the connecting plates (808), and the upper ends of the limiting pressing plates (809) are provided with adjusting nuts (812) in threaded connection with the upper ends of the guide columns (805).

7. The cutting device for a lace-shaped cutting surface according to claim 6, wherein: the inner side of the ear plate III (802) is provided with a sliding groove (804) with a T-shaped structure, and the side surface of the limiting pressing plate (809) is provided with a sliding block (810) with a T-shaped boss structure, wherein the sliding block is matched with the sliding groove (804) in a sliding manner.

8. The cutting device for a lace-shaped cutting surface according to claim 1, wherein: the right end face of the ear plate III (802) is fixedly connected with a socket sleeve (803) of a sleeved structure, and a handle (813) is inserted into the socket sleeve (803).

9. The cutting device for a lace-shaped cutting surface according to claim 8, wherein: the left end of the handle (813) is fixedly connected with a plug (814) which is inserted and matched with the plug bush (803), and a locking screw (815) is screwed at the upper end of the plug (814) and in the wall body of the plug bush (803).

10. The cutting device for a lace-shaped cutting surface according to claim 9, wherein: the right end of the handle (813) is sleeved with a sheath (816), and the right end of the sheath (816) is provided with a hanging hole (817).

Technical Field

The invention relates to the technical field of sliced noodles, in particular to a cutting device of a lace-shaped sliced noodle.

Background

The sliced noodles are traditional wheaten foods, are popular mainly in Shanxi and northern areas, have a very simple making process, are made by supporting dough with one hand, holding a cutting tool with one hand, cutting the dough into strips by the cutting tool, pouring the strips into a boiling pot, taking out the strips after cooking, adding various seasonings, stirring the strips uniformly, and eating the noodles.

Disclosure of Invention

The present invention has been made to solve the above-mentioned problems occurring in the prior art, and an object of the present invention is to provide a cutting device for a lace-shaped shaved surface.

In order to achieve the purpose, the invention provides the following technical scheme: a cutting device for lace-shaped sliced noodles comprises a supporting component and a cutting knife component, wherein the supporting component comprises a supporting seat, a lifting seat inserted and matched with the upper end of the supporting seat and a tray seat hinged with the upper end of the lifting seat, the bottom of the supporting seat is provided with a bottom plate, a supporting tube is fixedly welded in the middle of the upper end surface of the bottom plate, two adjusting screws I are screwed on the side surface of the upper end of the supporting tube, the lifting seat and the tray seat are hinged together through a rotating shaft, a positioning bolt inserted and matched with the lifting seat and the tray seat is arranged on the side surface of the rotating shaft, a supporting plate is arranged in the middle of the lifting seat, a telescopic insertion tube inserted and matched with the supporting tube is fixedly welded in the middle of the lower end surface of the supporting plate, a supporting plate is arranged in the middle of the tray seat, a sliced noodle groove with a frame groove structure is arranged in the, and the left side and the right side of the upper end of the cutting edge are symmetrically provided with lug plates III, the inner side of the lug plates III is fixedly connected with two guide pillars at the upper end of the cutting edge, a pressure plate is sleeved on the guide pillars, the lower end of the pressure plate is provided with a pressure groove, and a lace-shaped cavity structure with thick middle and thin two sides is formed between the lower end surface of the pressure groove and the upper end surface of the cutting edge.

Preferably, the left and right sides symmetrical welding of the upper end of backup pad has two otic placodes I, and offers the shaft hole I that matches mutually with the pivot in the centre of otic placode I side, the location pinhole I that matches is inserted mutually with the location bolt is offered to the upper end hoop equipartition in shaft hole I.

Preferably, the left and right sides symmetrical welding of terminal surface has two otic placodes II under the layer board, the intermediate position department of otic placode II side offers with the pivot suit axle hole II, and offers the location pinhole II that matches with inserting with the location bolt in axle hole II's side hoop.

Preferably, a slot is formed in one side of the upper end face of the bevel groove, a baffle is inserted into the slot, and an adjusting screw II is screwed on the side face of the baffle and the side face wall body of the slot.

Preferably, the main body of the baffle is a baffle plate with a bent plate-shaped structure, and a plate holding groove is formed in one side of the upper end of the baffle plate.

Preferably, the left side and the right side of the contour plate are fixedly connected with connecting plates of plate structures which are matched with the guide pillars, the upper ends of the connecting plates are provided with limiting pressing plates which are matched with the guide pillars, springs which are matched with the guide pillars are arranged between the lower end faces of the limiting pressing plates and the upper end faces of the connecting plates, and the upper ends of the limiting pressing plates are provided with adjusting nuts which are in threaded connection with the upper ends of the guide pillars.

Preferably, the inner side of the ear plate III is provided with a sliding groove with a T-shaped structure, and the side surface of the limiting pressing plate is provided with a sliding block with a T-shaped boss structure matched with the sliding groove in a sliding manner.

Preferably, the right end face of the ear plate III is fixedly connected with a socket sleeve of a sleeving structure, and a handle is inserted in the socket sleeve.

Preferably, the left end of the handle is fixedly connected with a plug which is inserted into the plug bush, and the upper end of the plug and a locking screw are screwed in the wall body of the plug bush.

Preferably, the right end of the handle is sleeved with a sheath, and the right end of the sheath is provided with a hanging hole.

Compared with the prior art, the invention has the beneficial effects that:

1. when the cutting device is used, manual lifting is not needed, and the height and the cutting angle of the tray seat can be adjusted according to the height and the cutting direction of a master noodle cutter, so that the labor intensity of the master noodle cutter is greatly reduced, and the cutting efficiency and the cutting quality are improved;

2. the cutting knife assembly is adopted for cutting, the dough is cut into the polygonal sliced noodles with thick middle and thin two sides, meanwhile, the cut noodles have a certain compaction effect when being cut, the taste is better and chewy, and the appearance and the taste of the sliced noodles have larger freshness.

Drawings

FIG. 1 is a side elevational view of the structural shaft of the present invention;

FIG. 2 is an exploded isometric view of the structure of the present invention;

FIG. 3 is an enlarged view of a portion of the structure at A in FIG. 2;

FIG. 4 is a side view of the cutter assembly shaft;

fig. 5 is an exploded axial view of the cutting blade assembly.

In the figure: 2. a supporting seat; 3. adjusting a screw I; 4. a lifting seat; 5. a rotating shaft; 6. positioning a bolt; 7. a tray seat; 8. a cutting blade assembly; 9. a baffle plate; 10. an adjusting screw II; 201. a base plate; 202. supporting a tube; 401. a support plate; 402. an ear plate I; 403. a telescopic cannula; 405. a shaft hole I; 406. a positioning pin hole I; 701. a support plate; 702. a face cutting groove; 703. an ear plate II; 704. a slot; 705. a shaft hole II; 706. a positioning pin hole II; 801. a cutting edge; 802. an ear plate III; 803. inserting sleeves; 804. a chute; 805. a guide post; 806. a contour plate; 807. pressing a groove; 808. a connecting plate; 809. a limiting pressure plate; 810. a slider; 811. a spring; 812. adjusting the nut; 813. a handle; 814. a plug; 815. locking the screw; 816. a sheath; 817. a hanging hole; 901. a baffle plate; 902. a plate holding groove.

Detailed Description

The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

Referring to fig. 1 to 5, the present invention provides a technical solution: a cutting device with lace-shaped sliced noodles comprises a supporting component and a cutting knife component 8, the whole device can be made of stainless steel materials, thus effectively avoiding the corrosion phenomenon of parts in the device and prolonging the service life of the whole device, the supporting component comprises a supporting seat 2, a lifting seat 4 inserted and matched with the upper end of the supporting seat 2 and a tray seat 7 hinged with the upper end of the lifting seat 4, the bottom of the supporting seat 2 is provided with a bottom plate 201, the middle of the upper end surface of the bottom plate 201 is fixedly welded with a supporting tube 202, the side surface of the upper end of the supporting tube 202 is screwed with two adjusting screws I3, the lifting seat 4 is hinged with the tray seat 7 through a rotating shaft 5, the side surface of the rotating shaft 5 is provided with a positioning bolt 6 inserted and matched with the lifting seat 4 and the tray seat 7, the middle of the lifting seat 4 is provided with a supporting plate 401, and the middle of the lower end surface of the supporting plate 401 is fixedly welded with a telescopic inserting, when the telescopic insertion tube 403 is in the support tube 202, the telescopic insertion tube 403 can be tightly abutted against the inner wall of the support tube 202 by screwing the adjusting screw I3, so that the support seat 2 and the lifting seat 4 are in a fixed connection state, when the adjusting screw I3 is unscrewed, the telescopic insertion tube 403 can be stretched and slid up and down in the support tube 202, so that the height of the lifting seat 4 at the upper end of the support seat 2 can be adjusted, the support plate 701 is arranged in the middle of the tray seat 7, the bevel groove 702 with a frame groove structure is arranged in the middle of the upper end of the support plate 701, the bevel groove 702 is in a conical groove body structure with a small bottom and a large top, so that dough can be taken out from the bevel groove 702 easily, the groove bottom and the side wall of the bevel groove 702 are in arc-shaped excessive connection, so that the dough is not easy to adhere to the bottom of the bevel groove 702, so that the bevel groove 702 is, the front end of cutting edge 801 is sharp cutting edge structure, and the left and right sides symmetry at the upper end of cutting edge 801 is equipped with otic placode III 802, otic placode III 802's inboard and at two guide pillars 805 of cutting edge 801 upper end fixedly connected with, and suit die plate 806 on guide pillar 805, the lower extreme of die plate 806 is equipped with die groove 807, form the thin lace shape cavity structure in middle thick both sides between the lower terminal surface of die groove 807 and the up end of cutting edge 801, wherein, both ends all are equipped with smooth excessive fillet in front and back of die groove 807 lower extreme and the rear end of cutting edge 801 up end, this kind of structure can make the smooth business turn over in the lace shape cavity of dough, during the use, the front end of cutting edge 801 cuts into the surface of dough, the dough under will cut passes through the lace shape cavity, and then form the cutting surface of taking the lace shape.

In fig. 3: two otic placodes I402 of bilateral symmetry welding of the upper end of backup pad 401, and offer the axle hole I405 of mutually supporting with pivot 5 in the centre of otic placode I402 side, the locating pin hole I406 of mutually inserting and matching with locating pin 6 is offered to the upper end hoop equipartition of axle hole I405, insert the inboard of otic placode II 703 with otic placode I402 during the use, penetrate axle hole I405 and axle hole II 705 with pivot 5 simultaneously, make tray seat 7 can rotate certain angle around the seat 4 that goes up and down, when tray seat 7 rotates certain angle around the seat 4 that goes up and down, make locating pin hole II706 align with locating pin hole I406 simultaneously, insert locating pin 6 in locating pin hole I406 and locating pin hole II706, make tray seat 7 fix the upper end at the seat 4 that goes up and down.

In fig. 3: two ear plates II 703 are symmetrically welded on the left side and the right side of the lower end face of the supporting plate 701, a shaft hole II 705 matched with the rotating shaft 5 is formed in the middle of the side face of each ear plate II 703, and a positioning pin hole II706 matched with the positioning pin 6 in an inserting mode is formed in the circumferential direction of the side face of each shaft hole II 705.

In fig. 2: the slot 704 has been seted up to one side of the face of peeling groove 702 up end, and be furnished with baffle 9 in the slot 704 interpolation, the main effect of baffle 9 is that the dough that prevents in the face of peeling groove 702 sideslips when the cutting, consequently, baffle 9 plays the effect of a location protection to the dough in the face of peeling groove 702, the side of baffle 9 and the spiro union has adjusting screw II10 on the side wall body of slot 704, when unscrewing adjusting screw II10, baffle 9 can slide from top to bottom in the slot 704, when baffle 9 inserts certain degree of depth, adjusting screw II10 of screwing can be inconsistent tightly baffle 9 and the inner wall of slot 704, and then fix baffle 9 in the side of face of peeling groove 702.

In fig. 2: the main body of the baffle 9 is a baffle panel 901 with a bent plate-shaped structure, and a holding plate groove 902 is formed in one side of the upper end of the baffle panel 901, so that the baffle 9 can be held conveniently through the holding plate groove 902.

In fig. 5: the left side and the right side of the contour plate 806 are fixedly connected with a connecting plate 808 of a plate-shaped structure which is matched with the guide post 805, the upper end of the connecting plate 808 is provided with a limit pressure plate 809 matched with the guide post 805, a spring 811 matched with the guide post 805 is arranged between the lower end surface of the limit pressure plate 809 and the upper end surface of the connecting plate 808, the upper end of the limit pressure plate 809 is provided with an adjusting nut 812 screwed with the upper end of the guide post 805, the tightness of the adjusting nut 812 is adjusted, the spacing distance between the limit pressure plate 809 and the upper end surface of the cutting edge 801 is adjusted, the pressing force of the spring 811 on the connecting plate 808 can be adjusted, when the thickness of the cutting surface to be cut is smaller, the adjusting nut 812 is screwed downwards, the pressing force of the spring 811 on the connecting plate 808 is increased, the elastic opening angle between the pressure groove 807 and the cutting edge 801 is smaller, at the moment, the cut cutting surface, the adjusting nut 812 is screwed up to reduce the pressing force of the spring 811 on the connecting plate 808, so that the elastic opening angle between the pressing groove 807 and the spring 811 is large, and the cutting surface at the cutting position is thick.

In fig. 5: the inner side of the ear plate III 802 is provided with a sliding groove 804 with a T-shaped structure, the side surface of the limiting pressing plate 809 is provided with a sliding block 810 with a T-shaped boss structure, and the sliding block 810 is matched with the sliding groove 804 in a sliding mode.

In fig. 5: the right end face of the ear plate III 802 is fixedly connected with a plug sleeve 803 of a sleeved structure, and a handle 813 is inserted into the plug sleeve 803, so that the length of the side face of the cutting edge 801 is increased, and the whole cutting knife assembly 8 is more convenient to hold.

In fig. 5: the left end of the handle 813 is fixedly connected with a plug 814 which is inserted and matched with the socket 803, the upper end of the plug 814 is screwed with a locking screw 815 in the wall body of the socket 803, when the cutting edge 801 and the positioning pin hole II706 with different specifications and sizes need to be replaced, the locking screw 815 is only needed to be detached for replacement, and the handle 813 can be multipurpose due to the split structure, so that the use cost of the whole device is reduced.

In fig. 5: the right-hand member cover of handle 813 is equipped with sheath 816, and here sheath 816 is optional for the rubber sleeve structure, has improved the travelling comfort that handle 813 gripped to make handle 813 be difficult for the slippage, and seted up at the right-hand member of sheath 816 and hang the hole 817, at the fixed welding lifting hook of the lower extreme of backup pad 401, when cutting knife tackle spare 8 does not fit, with hanging hole 817 cover on the cutting knife tackle spare 8 on the lifting hook, make cutting knife tackle spare 8 be difficult for losing.

The working principle is as follows: when in use, the supporting seat 2 is firstly placed at a proper position beside the noodle boiling pot, then the height and the inclination angle of the tray seat 7 are adjusted according to the height and the operation habit of a noodle cutting master, the adjusting screw I3 on the side surface of the supporting tube 202 is unscrewed during adjustment, the supporting plate 401 is held by two hands to move the telescopic insertion tube 403 up and down in the supporting tube 202, after the proper height is adjusted, the supporting plate 401 is held by one hand, the adjusting screw I3 is screwed by the other hand, the supporting plate 401 is loosened after the screwing, the positioning bolt 6 is pulled out from the side surface of the tray seat 7, the supporting plate 701 is rotated to a proper angle, the positioning bolt hole I406 is ensured to be coincident with the positioning bolt hole II706, then the positioning bolt 6 is inserted into the positioning bolt hole I406 and the positioning bolt hole II706, thus the adjustment of the height and the angle of the tray seat 7 is completed, the cutting master can adjust the insertion depth of the baffle, during adjustment, firstly loosening the adjusting screw II10 on the side surface of the slot 704, then holding the plate holding slot 902 by a hand, adjusting the depth of the baffle plate 901 inserted into the slot 704 according to the height of dough in the sliced noodle slot 702, determining the insertion depth, then screwing the adjusting screw II10, and fixing the baffle plate 9 in the slot 704;

when the cutting knife assembly 8 is used for cutting dough, the sheath 816 is held by a hand to cut the front end face of the cutting edge 801 into the surface of the dough, so that the cut dough slides out from the upper end face of the cutting edge 801 and the lower end face of the pressure groove 807, in the process, a cavity between the pressure groove 807 and the cutting edge 801 is expanded under the action of an external supporting force of the dough, when the dough slides out from the cavity to form a laced cutting surface, a cavity gap between the pressure groove 807 and the cutting edge 801 is restored to the original shape under the elastic pressure of the spring 811, and the structure can cut the laced cutting surface and prevent the dough from being clamped between the pressure groove 807 and the cutting edge 801.

Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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