Apparatus and method for cutting noodle
10368549 ยท 2019-08-06
Assignee
Inventors
Cpc classification
B26D1/62
PERFORMING OPERATIONS; TRANSPORTING
Y10T83/9372
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B26D7/0625
PERFORMING OPERATIONS; TRANSPORTING
Y10T83/04
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
B26D1/12
PERFORMING OPERATIONS; TRANSPORTING
B26D1/62
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A noodle strand cutting apparatus for cutting gelatinized noodle strands used in manufacturing of instant noodles is provided with: a conveyer for conveying at least one bundle of the gelatinized noodle strands; and a rotary cutter arranged above the conveyer and intended to cut, to a predetermined length, the at least one bundle of the gelatinized noodle strands conveyed on the conveyer in a substantially horizontal direction. The rotary cutter is provided with a plurality of blades that extend side by side with a rotational axis in radial directions around the rotational axis, the plurality of blades being spaced from each other in a circumferential direction by predetermined intervals.
Claims
1. A method for cutting gelatinized noodle strands used in manufacturing of instant noodles, the method comprising: providing at least one bundle of the noodle strands that are longitudinally cut and gelatinized by heating, providing a noodle strand cutting apparatus comprising: a conveyer that conveys the at least one bundle of the noodle strands, the conveyer includes a flat surface that extends lengthwise in a horizontal direction, and the at least one bundle of the noodle strands being conveyed on the conveyer in a substantially horizontal direction, and a rotary cutter arranged above the conveyer, the rotary cutter being configured to cut the at least one bundle of the gelatinized noodle strands to a predetermined length from 1 to 10 cm, and a length of the flat surface of the conveyer is greater than a diameter of the rotary cutter, wherein the rotary cutter comprises: a plurality of blades that extend side by side along a peripheral surface of the rotary cutter and in radial directions around a rotational axis of the rotary cutter, the plurality of blades being spaced from each other in a circumferential direction by predetermined intervals, the plurality of blades being configured to directly contact the at least one bundle of the gelatinized noodle strands and the flat surface of the conveyer during cutting by the rotary cutter, and a number of blades is between six and thirty blades, inclusive, and a curved control surface that extends between a pair of the blades adjacent to each other, wherein: (i) a distance from the curved control surface to a tip of each of the plurality of blades, respectively, is shorter than a distance between each of the plurality of blades, and (ii) a clearance exists between the curved control surface and the at least one bundle of the gelatinized noodle strands when the at least one bundle of the gelatinized noodle strands are cut, pressing at least one of the plurality of blades of the rotary cutter against the at least one bundle of the gelatinized noodle strands, and cutting the at least one bundle of the gelatinized noodle strands by the rotary cutter.
2. The method according to claim 1, wherein the distance from the control surface to the tip of each of the plurality of blades, respectively, is equal to or less than 6 cm.
3. The method according to claim 1, wherein the noodle strand cutting apparatus further comprises a drive unit that drives the conveyer and the rotary cutter so as to make a speed of the tip of each of the plurality of blades and an upper surface of the conveyer substantially equal to each other.
4. The method of claim 1, wherein the plurality of blades extend along substantially an entire length of the rotary cutter from a first end of the rotary cutter to a second end of the rotary cutter.
5. The method of claim 1, wherein the control surface is made of plastics.
6. The method of claim 1, wherein the plurality of blades are covered with a material layer having detachment facilitating properties.
7. The method of claim 6, wherein the material layer is polytetrafluoroethylene.
8. The method of claim 1, wherein the adjacent blades and the conveyer form a substantially closed space such that the cut noodle strands stay within the space immediately after being cut.
9. The method of claim 1, wherein each of the plurality of blades is shaped like a wedge.
10. The method of claim 1, wherein the rotary cutter is configured to cut a plurality of bundles of the noodle strands at the same time.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE EMBODIMENTS
(8) A preferred embodiment at the time of this disclosure will be most appropriately appreciated by referencing the drawings. As generally illustrated and exemplified in the drawings of this specification, it will be easily appreciated that constituents of this disclosure can be arranged and designed in various different configurations. The following detailed description is not intended to limit the scope of claims but simply represents the preferred embodiment at the present time.
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(10) The conveyer 2 is used to convey gelatinized noodle strands. The conveyer 2 is a typical belt conveyer, and has a conveyer belt 21 and front and rear end rolls 22. The conveyer is arranged such that an upper surface thereof is substantially horizontal; however, the upper surface may be slanted to the extent that the noodle strands after cutting do not move. A material for the conveyer belt 21 can be selected from various materials such as rubber and plastic, and is not particularly limited.
(11) Inside the conveyer 2, a backup roll 23 (see
(12) The frame 5 has a drive part 4 (see
(13) As illustrated in
(14) Each of the blades 11 is generally wedge shaped, and any of the blades 11 is arranged so as to extend in a radial direction around the rotary shaft 13. Extend in a radial direction in this specification refers to that a center line or center plane C (see
(15) The material of the blade 11 can be selected from any materials, and for example, stainless steel or other metal, or plastics is preferably used as the material. The blades 11 may be fixed to the main body 12 after formation of the main body 12. The main body 12 may be hollow or solid. The rotary cutter 1 may be manufactured by combining a plurality of mutually different materials, for example, combining metal and plastics. Part or all of at least one of the surfaces of blades 11 and main body 12 may be covered with a material layer having detachment facilitating property or attachment suppressing property, such as polytetrafluoroethylene.
(16) As illustrated in
(17) A distance from the rotation center of the rotary cutter 1 to the tip (i.e., the rotation radius r of the tip) is not particularly limited, but preferably is approximately 3 to 25 cm. The rotation radius r can be changed depending on a manufacturing scale.
(18) Above the short noodle strands SN immediately after the cutting, a control surface 15 that is the surface of the main body 12 of the rotary cutter 1 comes close. Immediately after the cutting, the control surface 15, and a pair of blades 11 sandwiching it, form a substantially closed space or quasi-closed space in a rotational direction to the extent that the short noodle strands SN do not come out of the space. For this reason, the short noodle strands SN after the cutting are unlikely to bounce upward, and also for this reason, the scattering of the short noodle strands SN can be suppressed. Typically, a thickness (height) of the bundle B (see
(19) Referring again to
(20) Above the rotary cutter 1, a cover (not illustrated) may be provided to suppress the scattering of the short noodle strands SN. The cutter support parts 3 and/or the conveyer 2 are preferably provided with a mechanism that can adjust a relative distance between the rotation center of the rotary cutter 1 and the conveyer 2.
(21) The noodle strand cutting apparatus of the present embodiment is used as a part of a line of a series of processing apparatuses for manufacturing instant noodles. The processing apparatus line is provided with a rolling apparatus, splitting apparatus, and steaming apparatus all of which are not illustrated. The rolling apparatus rolls a dough to form a plate-like noodle sheet. The splitting apparatus thinly cuts the noodle sheet to manufacture noodle strands N. The steaming apparatus heats the noodle strands N to gelatinize them. A plurality of bundles B of the noodle strands N gelatinized by the steaming apparatus are supplied to the noodle strand cutting apparatus 10 of the present embodiment. In stead of the steaming apparatus, a boiling apparatus may be used, and in the gelatinization step in the steaming apparatus or boiling apparatus, superheated steam can be used. The number of bundles B of the noodle strands N supplied to the noodle strand cutting device 10 may be any number.
(22) The noodle strands N to be cut in the present invention includes various types of noodles such as Chinese noodles, white wheat noodles (udon), buckwheat noodles (soba), and pastas. The noodle strands N may be waved or straight.
(23) Operation of the noodle strand cutting apparatus 10 of the present embodiment configured as described above is described. As illustrated in
(24) In the noodle strand cutting apparatus 10 of the present embodiment, the rotary cutter 1 is provided with a plurality of blades 11, and therefore particularly preferable for cutting the gelatinized noodle strands N into the short noodle strands SN having a length of 1 to 10 cm. In other words, by configuring a plurality of blades 11, a rotation angle of the rotary cutter 1 from a cut to a next cut can be decreased to continuously perform the cutting into the short noodle strands SN at a small rotation angle. On the other hand, as a result of configuring a plurality of blades 11, the upward speed component Sz (see
(25) Also, since a plurality of blades 11 extend in the radial directions around the rotational axis of the rotary cutter 1, as compared with the case where the blades are arranged to extend in directions tangential to the surface of the main body 12, a direction of cutting surfaces of the noodle strands N becomes close to a transverse direction of the noodle strands N, which can reduce cross sectional areas of the cutting surfaces, suppress adhesion to the blades 11, and suppress scattering of the short noodle strands SN.
(26) Also, the rotary cutter 1 is further provided with the control surfaces 15 that extend between pairs of blades 11 adjacent to each other, and these control surfaces 15 control the bounce up of the short noodle strands SN after cutting, so that scattering of the short noodle strands SN can be suppressed.
(27) Also, the drive part 4 drives the conveyer 2 and the rotary cutter 1 so as to make the speeds of the tips of the plurality of blades 11 of the rotary cutter 1 and the upper surface of the conveyer 2 substantially equal to each other, and therefore in the process of the cutting, scattering of the short noodle strands SN caused by interference of the blades 11 can be suppressed.
(28) The embodiment of the present invention should be considered as the representative of a principle of the present invention, and with the understanding that the present invention shall not be limited to the exemplified embodiment, the specific embodiment of the present invention illustrated and described in this specification is presented. Various other embodiments are obvious to one having ordinary skill in the art, and will be easily carried out by one having ordinary skill in the art without departing from the scope and spirit of the present invention.
(29) For example, a drive unit may be configured such that a relative position between the rotary cutter 1 and the conveyer 2 changes during the cutting. On a surface of the backup roll 23, grooves that synchronously face to the blades 11 may be formed. In the present embodiment, the noodle strand cutting apparatus 10 that is an independent module only cutting noodle strands is described; however, the noodle strand cutting apparatus may be integrated with one or more apparatuses that perform other processing steps, or the noodle strand cutting apparatus may serve as a part of another apparatus. It should be appreciated that even in such a case, a relevant part corresponds to the noodle strand cutting apparatus of the present invention. The scope of the present invention will be determined by the appended claims and their equivalents.