CN101690506A - Multi-process multi-machine head static pressure dvxy - Google Patents

Multi-process multi-machine head static pressure dvxy Download PDF

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CN101690506A
CN101690506A CN200910075705A CN200910075705A CN101690506A CN 101690506 A CN101690506 A CN 101690506A CN 200910075705 A CN200910075705 A CN 200910075705A CN 200910075705 A CN200910075705 A CN 200910075705A CN 101690506 A CN101690506 A CN 101690506A
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cylinder
facet
dough
interarea
cylinders
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CN101690506B (en
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韩学珍
韩玉珍
韩平珍
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Abstract

The invention provides a multi-process multi-machine head static pressure dvxy, which relates to food processing machinery and comprises a driving mechanism and a forming device comprising rotating dough cylinders, machine heads and a strip forming mold. The invention is characterized in that the number of the rotating dough cylinders 1 is at least two; a main dough cylinder 13 which is communicated with each rotating dough cylinder is arranged at the upper part of each rotating dough cylinder 1; the main dough cylinder is at least communicated with two small dough cylinders which are respectively driven by a hydraulic cylinder 22; movable sealing covers 15 are respectively arranged at the upper parts of the small dough cylinders; and pressure difference closing covers 16 are respectively arranged at channel openings of the main dough cylinder 13 and the small dough cylinders. The invention solves the problem of breaking of the strips delivery of fried dough twists in the production process, realizes the continuous production, solves the problem of low output because only one machine head is used in the prior art, improves the output per unit time and meets the requirements of production of large enterprises.

Description

Multi-process multi-machine head static pressure dvxy
Technical field
The present invention relates to food processing machinery, make the equipment of fried dough twist in particular for the processing dough.
Background technology
Drawbacks such as at present, the making fried dough twist mostly is manual operations, exists the finished product apparent size and differs, and labour intensity is big, is not suitable for producing in batches, and process is unhygienic.For addressing the above problem, prior art also has some fried dough twist machineries to come out, a kind of " multi-functional twist drills machine " disclosed as CN2689705Y, though can realize the mechanization production of fried dough twist, but because dough is to advance with the screw rod extruding, the fried dough twist of making is for twisting the clava of collection, and harder fried dough twist mouthfeel, taste are poor.CN2877308Y discloses a kind of " rotary-cylinder static pressure twist drills machine ", be a kind of cylinder rotation, face cylinder piston rotates synchronously, make fermented dough in cylinder, be in the rotary-cylinder static pressure twist drills machine of static relatively pressure space, overcome the destruction of spiral twist drills machine to the dough internal structure, fundamentally solved the quality guarantee problem of machine fried dough twist, the fried dough twist of producing reaches fully even is better than manual fried dough twist.But rotary-cylinder static pressure twist drills machine need to propose the pressure surface sheet dough of packing into once more after a cylinder face has been pressed, and the shaping of fried dough twist production at this moment is interrupted, and is not continuous production process, and it has only a head, and hourly output is low, can not satisfy the production needs of large enterprise.The twist drills machine of prior art exists can not be realized producing continuously and the lower shortcoming of production efficiency.
Summary of the invention
The objective of the invention is to overcome the shortcoming of prior art, a kind of multi-process multi-machine head static pressure dvxy is provided, solve the problem that fried dough twist production shaping has interruption, realize producing continuously; The problem that solution has only a head to yield poorly improves yield in unit time, satisfies the needs that large enterprise produces.
Concrete technical scheme of the present invention is as follows:
A kind of multi-process multi-machine head static pressure dvxy, comprise: connect hydraulic pump by motor, the driving mechanism that is connected with hydraulic motor with hydraulic cylinder respectively by oil pipe, with contain surfaces of revolution cylinder, head, the shaped device of slivering mould, described surfaces of revolution cylinder lower end is connected with head, the hollow shaft that is communicated with surfaces of revolution cylinder is installed on the head, the bottom of hollow shaft is connected with hollow planetary gear by bearing, the slivering matrix is equipped with in the exit of hollow shaft, hollow planetary gear and the ring gear engagement that is fixed on the frame, described hollow planetary gear below is provided with the synthetic bucket that is connected on the ring gear, synthetic bucket is divided into slideway, cutoff knife rack and controlling organization are installed on the slideway, it is characterized in that: described surfaces of revolution cylinder has two at least, surfaces of revolution cylinder top is provided with the interarea cylinder that is communicated with surfaces of revolution cylinder, and the interarea cylinder is communicated with two facet cylinders at least, and two described facet cylinders are respectively by described Driven by Hydraulic Cylinder.
The top of described two facet cylinders is respectively equipped with the movable sealing lid.
Place, passway with two described facet cylinders in the described interarea cylinder is provided with the pressure reduction closing cap respectively.
The junction of described interarea cylinder and surfaces of revolution cylinder is provided with bearing.
The present invention compared with prior art, because surfaces of revolution cylinder top is provided with the interarea cylinder that is communicated with surfaces of revolution cylinder, the interarea cylinder is communicated with two facet cylinders again, two facet cylinders are respectively by Driven by Hydraulic Cylinder, therefore, by the mutual replacement of at least two facet cylinders, the multiaspect cylinder takes turns dress face, pressure surface, form multiaspect road repetitive cycling operation, the interarea cylinder obtains successively and has the lining supply of certain pressure intensity.Because the interarea cylinder is communicated with at least two surfaces of revolution cylinders, be two or more rotatable fried dough twists to be installed on the interarea cylinder turn round a strand former, and the junction of interarea cylinder and surfaces of revolution cylinder is provided with bearing, therefore, the interarea cylinder can give each head supply successively and the lining of certain pressure intensity arranged by hollow pipeline.Thereby not only solved fried dough twist production shaping discontinuous problem is arranged, realized continuous production, simultaneously, solved and revolved the problem that cylinder static pressure twist drills machine has only a head to yield poorly, reach the purpose that improves yield in unit time, satisfied the needs that large enterprise produces.
Description of drawings
Fig. 1 is the structural representation of a kind of two-sided road multimachine head static pressure twist drills machine;
Fig. 2 is the A-A cutaway view of Fig. 1;
Fig. 3 is the structural representation that hollow shaft is connected with planetary gear;
Fig. 4 is a kind of structural representation of multi-process multi-machine head static pressure dvxy.
The specific embodiment
Below in conjunction with accompanying drawing and preferred embodiment, the present invention is further illustrated.
As Fig. 1,2, shown in 3, a kind of two-sided road multimachine head static pressure twist drills machine, comprise: connect hydraulic pump 19 by motor 18, the driving mechanism that is connected with hydraulic motor 21 with hydraulic cylinder 22 respectively by oil pipe 20, with contain surfaces of revolution cylinder 1, the shaped device of head 2 and slivering mould, described surfaces of revolution cylinder 1 lower end is connected with head 2, the hollow shaft 3 that is communicated with surfaces of revolution cylinder is installed on the head, the bottom of hollow shaft 3 is connected with hollow planetary gear 5 by bearing 4, slivering matrix 6 is equipped with in the exit of hollow shaft 3, hollow planetary gear 5 and ring gear 8 engagements that are fixed on the frame 7, described hollow planetary gear 5 belows are provided with the synthetic bucket 9 that is connected on the ring gear 8, synthetic bucket is divided into slideway 10, and cutoff knife rack 11 and controlling organization 12 are installed on the slideway.Described surfaces of revolution cylinder 1 has two, and surfaces of revolution cylinder 1 top is provided with the interarea cylinder 13 that is communicated with surfaces of revolution cylinder, and interarea cylinder 13 is communicated with No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2, and No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 are driven by described hydraulic cylinder 22 respectively.
The top of described No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 is respectively equipped with movable sealing lid 15.
Place, passway with No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 in the described interarea cylinder 13 is provided with pressure reduction closing cap 16 respectively.
Described interarea cylinder 13 is provided with bearing 17 with the junction of surfaces of revolution cylinder 1.
Described cutoff knife rack 11 and controlling organization 12 are made up of rotating shaft, section bar cutter, tractive magnet and light-operated switch, rotating shaft is fixed on the slideway by the bearing shell frame, 4 are cut bar cutter symmetry and vertically are fixed in the rotating shaft, the tooth bar engagement that rotating shaft is connected with tractive magnet by ratchet, tractive magnet is connected with light-operated switch.
By fried dough twist finished product length setting position, on slideway, offer the crack, the below of the slideway corresponding with saturating crack is provided with light-operated switch, with light-operated switch, the corresponding top installation bulb in saturating crack, when the fried dough twist bar slided into the crack, light-operated switch triggered tractive magnet, tractive magnet pulling tooth bar, stir rotating shaft and be with and cutting the moving certain angle of bar swivel by ratchet, finish and once cut bar, realize cutting continuously fried dough twist thereby press preseting length.
The bottom of described hollow shaft 3 is connected with hollow planetary gear 5 by bearing 4, is bearing 4 is installed between the rearmounted groove of the outer wall of hollow shaft 3 and hollow planetary gear 5.
Described hollow planetary gear 5 is generally three, also can increase and decrease on demand; The cylindrical void that goes out on the described slivering matrix 6 has 2 at least; Change the matrix that difference goes out cylindrical void, can suppress the fried dough twist bar of multiple style.
As shown in Figure 4, a kind of multi-process multi-machine head static pressure dvxy comprises: connect hydraulic pumps 19 by motor 18, driving mechanism that is connected with hydraulic motor 21 with hydraulic cylinder 22 respectively by oil pipe 20 and the shaped device that contains surfaces of revolution cylinder 1, head 2 and slivering mould.Described surfaces of revolution cylinder 1 has three, surfaces of revolution cylinder 1 top is provided with the interarea cylinder 13 that is communicated with surfaces of revolution cylinder, interarea cylinder 13 and No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4 are communicated with, and No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4 are driven by described hydraulic cylinder 22 respectively.
The top of described No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4 is respectively equipped with movable sealing lid 15.
Place, passway with No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4 in the described interarea cylinder 13 is provided with pressure reduction closing cap 16 respectively.
Described interarea cylinder 13 is provided with bearing 17 with the junction of surfaces of revolution cylinder 1.
The course of work of the present invention:
At first with dough from the dress face mouth facet cylinder 14-1 that packs into No. 1, close the movable sealing lid 15 on top, starter motor 18 then, hydraulic pump 19 work, drive hydraulic cylinder 22 by oil pipe 20 and start working (propelling pressure surface), face is pressed in the interarea cylinder 13 from No. 1 facet cylinder 14-1.After dough in No. 1 facet cylinder 14-1 had been pressed, the pressure reduction closing cap 16 between No. 1 facet cylinder 14-1 and the interarea cylinder 13 was closed, and No. 1 facet cylinder 14-1 and interarea cylinder 13 are isolated, make the faces in the interarea cylinder 13 can not return facet cylinder 14-1 No. 1; The pressure surface piston of No. 1 facet cylinder 14-1 quits work, turn back to start bit, open the movable sealing lid 15 on No. 1 facet cylinder 14-1 top then, the new dough of packing in No. 1 facet cylinder 14-1, close 15, No. 1 facet cylinder 14-1 of movable sealing lid and prepare again task (pressure surface).
When dough has been pressed in No. 1 facet cylinder 14-1, No. 1 facet cylinder 14-1 stops pressure surface, No. 2 facet cylinder 14-2 that installed dough start working (propelling pressure surface), pipeline by No. 2 facet cylinder 14-2 and interarea cylinder 13 link is pressed into face in the interarea cylinder 13.After dough in No. 2 facet cylinder 14-2 had been pressed, the pressure reduction closing cap 16 between No. 2 facet cylinder 14-2 and the interarea cylinder 13 was closed, and No. 2 facet cylinder 14-2 and interarea cylinder 13 are isolated, make the faces in the interarea cylinder 13 can not return facet cylinder 14-2 No. 2; The pressure surface piston of No. 2 facet cylinder 14-2 quits work, turn back to start bit, open the movable sealing lid 15 on No. 2 facet cylinder 14-2 tops then, the new dough of packing in No. 2 facet cylinder 14-2 face cylinders, close 15, No. 2 facet cylinder 14-2 of movable sealing lid and prepare again task (pressure surface).
When dough has been pressed in No. 2 facet cylinder 14-2, No. 2 facet cylinder 14-2 stop pressure surface, No. 3 facet cylinder 14-3 that installed dough start working (propelling pressure surface), pipeline by No. 3 facet cylinder 14-3 and interarea cylinder 13 link is pressed into face in the interarea cylinder 13.After dough in No. 3 facet cylinder 14-3 had been pressed, the pressure reduction closing cap 16 between No. 3 facet cylinder 14-3 and the interarea cylinder 13 was closed, and No. 3 facet cylinder 14-3 and interarea cylinder 13 are isolated, make the faces in the interarea cylinder 13 can not return facet cylinder 14-3 No. 3; The pressure surface piston of No. 3 facet cylinder 14-3 quits work, turn back to start bit, open the movable sealing lid 15 on No. 3 facet cylinder 14-3 tops then, the new dough of packing in No. 3 facet cylinder 14-3 face cylinders, close 15, No. 3 facet cylinder 14-3 of movable sealing lid and prepare again task (pressure surface).
When dough has been pressed in No. 3 facet cylinder 14-3, No. 3 facet cylinder 14-3 stop pressure surface, No. 4 facet cylinder 14-4 that installed dough start working (propelling pressure surface), pipeline by No. 4 facet cylinder 14-4 and interarea cylinder 13 link is pressed into face in the interarea cylinder 13.After dough in No. 4 facet cylinder 14-4 had been pressed, the pressure reduction closing cap 16 between No. 4 facet cylinder 14-4 and the interarea cylinder 13 was closed, and No. 4 facet cylinder 14-4 and interarea cylinder 13 are isolated, make the faces in the interarea cylinder 13 can not return facet cylinder 14-4 No. 4; The pressure surface piston of No. 4 facet cylinder 14-4 quits work, turn back to start bit, open the movable sealing lid 15 on No. 4 facet cylinder 14-4 tops then, the new dough of packing in No. 4 facet cylinder 14-4 face cylinders, close 15, No. 4 facet cylinder 14-4 of movable sealing lid and prepare again task (pressure surface).
No. 1 facet cylinder 14-1 that installs dough once more starts working (propelling pressure surface), and the pipeline by No. 1 facet cylinder 14-1 and interarea cylinder 13 link is pressed into face in the interarea cylinder 13.
Mutual replacement by No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4, the multiaspect cylinder takes turns dress face, pressure surface, realize multiaspect road repetitive cycling operation, interarea cylinder 13 obtains successively and has the lining supply of certain pressure intensity, and interarea cylinder 13 is realized continuous operation.
Replace when interarea cylinder 13 successively is supplied with the certain pressure intensity lining alternately at No. 1 facet cylinder 14-1 and No. 2 facet cylinder 14-2 and No. 3 facet cylinder 14-3 and No. 4 facet cylinder 14-4, hydraulic pump 20 drives hydraulic motor 21 by oil pipe 22, and hydraulic motor 21 drives surfaces of revolution cylinder 1.Because surfaces of revolution cylinder 1 obtains successively being supplied with by interarea cylinder 13 lining of certain pressure intensity, dough rotates with the face cylinder, and dough is pressed in the hollow shaft 3 that is communicated with the face cylinder, through the slivering matrix 6 in hollow shaft exit, extrudes by going out cylindrical void.Because planetary gear 5 rotates with surfaces of revolution cylinder 1, planetary gear 5 meshes with bull gear 8 again, thereby makes the planetary gear 5 existing revolution that contain three slivering matrixs 3, and rotation is arranged again, makes the dough strips of extruding twist into fried dough twist.The fried dough twist bar enters slideway 10 by synthetic bucket 9, and when the fried dough twist bar slided into the crack, light-operated switch triggered tractive magnet, and tractive magnet pulling tooth bar is stirred rotating shaft and cut the rotation of bar cutter by ratchet, cuts the bar cutter and presses the fixed ruler cutting fried dough twist, falls into the cost dish.
A strand former is turned round in two of installations, three or more rotatable fried dough twist on interarea cylinder 13, is connected by rotatable hollow pipeline; Interarea cylinder 13 gives each head supply successively and have certain pressure intensity lining, rotatable fried dough twist to turn round strand former will to extrude the face that comes and be twisted into fried dough twist by hollow pipeline, and a plurality of heads are worked simultaneously, the increase yield in unit time.

Claims (4)

1. multi-process multi-machine head static pressure dvxy, comprise: connect hydraulic pump (19) by motor (18), the driving mechanism that is connected with hydraulic motor (21) with hydraulic cylinder (22) respectively by oil pipe (20), with contain surfaces of revolution cylinder (1), head (2), the shaped device of slivering mould, described surfaces of revolution cylinder (1) lower end is connected with head (2), the hollow shaft (3) that is communicated with surfaces of revolution cylinder is installed on the head, the bottom of hollow shaft is connected with hollow planetary gear (5) by bearing (4), slivering matrix (6) is equipped with in the exit of hollow shaft, hollow planetary gear (5) and ring gear (8) engagement that is fixed on the frame (7), described hollow planetary gear (5) below is provided with the synthetic bucket (9) that is connected on the ring gear (8), synthetic bucket is divided into slideway (10), cutoff knife rack (11) and controlling organization (12) are installed on the slideway, it is characterized in that: described surfaces of revolution cylinder (1) has two at least, surfaces of revolution cylinder (1) top is provided with the interarea cylinder (13) that is communicated with surfaces of revolution cylinder, interarea cylinder (13) at least with two facet cylinders (14-1), (14-2) be communicated with two described facet cylinders (14-1), (14-2) drive by described hydraulic cylinder (22) respectively.
2. according to the described multi-process multi-machine head static pressure dvxy of claim 1, it is characterized in that: be respectively equipped with movable sealing lid (15) on the top of two described facet cylinders (14-1), (14-2).
3. according to the described multi-process multi-machine head static pressure dvxy of claim 1, it is characterized in that: the place, passway with described facet cylinder (14-1), (14-2) in the described interarea cylinder (13) is provided with pressure reduction closing cap (16) respectively.
4. according to the described multi-process multi-machine head static pressure dvxy of claim 1, it is characterized in that: described interarea cylinder (13) is provided with bearing (17) with the junction of surfaces of revolution cylinder (1).
CN2009100757059A 2009-10-12 2009-10-12 Multi-process multi-machine head static pressure dvxy Active CN101690506B (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102342575A (en) * 2011-09-20 2012-02-08 马喜龙 Quantitative cutting machine for instant rice noodles
CN102428980A (en) * 2011-12-27 2012-05-02 韩学珍 Sub-cylinder type rotary cylinder static pressure fried dough twist making machine
CN103598275A (en) * 2013-10-11 2014-02-26 中国农业大学 Extrusion molding die head for laminated twists
CN106723247A (en) * 2016-11-28 2017-05-31 华南农业大学 A kind of food 3D printer
CN111449101A (en) * 2020-05-19 2020-07-28 山西海玉园食品有限公司 Fried dough twist machine
CN111493107A (en) * 2020-05-19 2020-08-07 山西海玉园食品有限公司 Fried dough twist processing method

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE20014175U1 (en) * 2000-07-07 2000-12-28 Machf Holtkamp Bv Almelo Mixing, kneading and conveying system for dough
EP1602830A1 (en) * 2004-06-02 2005-12-07 Ailand Corporation S.A. Hydraulically driven multicylinder pumping machine
CN2877308Y (en) * 2006-03-13 2007-03-14 韩学珍 Rotary-cylinder twist cooked wheaten food immobile pressing machine
CN101461412B (en) * 2009-01-13 2011-12-28 徐志兴 Machine for making double-stranded farci fried dough twists

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102342575A (en) * 2011-09-20 2012-02-08 马喜龙 Quantitative cutting machine for instant rice noodles
CN102428980A (en) * 2011-12-27 2012-05-02 韩学珍 Sub-cylinder type rotary cylinder static pressure fried dough twist making machine
CN102428980B (en) * 2011-12-27 2013-09-25 韩学珍 Sub-cylinder type rotary cylinder static pressure fried dough twist making machine
CN103598275A (en) * 2013-10-11 2014-02-26 中国农业大学 Extrusion molding die head for laminated twists
CN106723247A (en) * 2016-11-28 2017-05-31 华南农业大学 A kind of food 3D printer
CN106723247B (en) * 2016-11-28 2022-09-13 华南农业大学 Food 3D printer
CN111449101A (en) * 2020-05-19 2020-07-28 山西海玉园食品有限公司 Fried dough twist machine
CN111493107A (en) * 2020-05-19 2020-08-07 山西海玉园食品有限公司 Fried dough twist processing method
CN111493107B (en) * 2020-05-19 2021-09-28 山西海玉园食品有限公司 Fried dough twist processing method

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