JP2004337118A - Salt-sprinkling apparatus for both sides of rice ball - Google Patents

Salt-sprinkling apparatus for both sides of rice ball Download PDF

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Publication number
JP2004337118A
JP2004337118A JP2003140063A JP2003140063A JP2004337118A JP 2004337118 A JP2004337118 A JP 2004337118A JP 2003140063 A JP2003140063 A JP 2003140063A JP 2003140063 A JP2003140063 A JP 2003140063A JP 2004337118 A JP2004337118 A JP 2004337118A
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JP
Japan
Prior art keywords
rice ball
salt
rice
receiving plate
ball receiving
Prior art date
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Granted
Application number
JP2003140063A
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Japanese (ja)
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JP3749903B2 (en
Inventor
Yuji Ichikawa
雄二 市川
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Ichikawa Machinery Ltd
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Ichikawa Machinery Ltd
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Priority to JP2003140063A priority Critical patent/JP3749903B2/en
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a rice ball having taste, palate feeling and good quality similar to those of a hand-shaped rice ball by efficiently, continuously and automatically producing a rice ball with sprinkled salt on both sides like a hand-shaped rice ball and improving a defect of lowering taste of a rice ball made by conventionally mixing salt at the time of boiling rice. <P>SOLUTION: This salt-sprinkling apparatus for both sides of a rice ball has such a mechanism that a moving device 4 forming rice ball-receiving holes 5 and radiately arranging turnable rice ball-receiving plates 3 therein is set so as to intermittently turn, and a device 7 for sprinkling salt on a surface, a rice ball-receiving plate-reversing mechanism 8, a device 9 for sprinkling salt on the reverse of a rice ball, a rice ball-discharging device 10 and a rice ball receiving plate-reversing returning mechanism 11 are each set one by one along the periphery of the moving device 4 so as to continuously and efficiently produce rice balls sprinkled and attached with salt on both sides without loosing the shape of rice ball. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明はおにぎりに塩、ごま塩、その他の振りかけ等を附着せしめるおにぎりの両面塩振り装置に関する。
【0002】
【従来の技術】
現在コンビニエンスストアー等で販売されているおにぎりはその殆んどが機械的に自動製造されているのが現状であるが、その大部分は塩水炊き、即ち炊飯時に所定量の塩を混入した塩水で炊き上げた米飯を使用しているのが実情であり、人手で握ったおにぎりに塩振りしたものに比べると、塩味の食味、食感が劣る欠陥がある。そこで最近はおにぎりをベルトコンベヤ上でへらや羽根車によって直接反転してその両面に塩振りすることが一部で行われている。
【0003】
【発明が解決しようとする課題】
しかしながら前記ベルト上で反転して塩振りする方式は、反転時におにぎりの形態が崩れたり、反転したおにぎりの位置が一定でなくその位置決めが不正確になって塩振りがおにぎりに均等にできなかったりして品質のよいおにぎりを製造することができない等の欠陥がある。
【0004】
これらの現状に鑑み、本発明は従来の欠陥を改善して塩を直接にぎり飯の両面に均等に散布附着せしめて、おにぎりの食感、食味の向上を図ると共に形崩れしない品質のよいおにぎりを自動的に製造できるようにしたおにぎりの両面塩振り装置を提供することを目的とするものである。
【0005】
【課題を解決するための手段】
本発明は前記目的を達成するために、おにぎり受孔を形成しかつ回動可能なおにぎり受板を放射状に配設して間歇回動するようにしたおにぎり移動装置に沿って、順次おにぎり表面塩散布装置、おにぎり受板反転機構、おにぎり裏面塩散布装置、おにぎり排出装置及びおにぎり受板反転復帰機構を夫々設けたことを特徴とするものであり、特に前記おにぎり移動装置としては、各おにぎり受板を放射状に配列して円形状に構成するのがコンパクトに形成でき好適であるが、設置場所の都合等に応じては各おにぎり受板を並列状に配列してベルト状に構成し、その上部平面移送部だけを利用することもできる。
【0006】
また前記おにぎり受板を回転するおにぎり受板反転機構及びおにぎり受板反転復帰機構は同じ機構であって差支えないが、これらに設けた挟持爪片でおにぎり受板の表裏両面を挟持するようにすることにより、おにぎり受板の回転時におにぎりがおにぎり受板からの脱落を防止しながら円滑確実におにぎりを反転することができる。
【0007】
更におにぎり表面塩散布装置及びおにぎり裏面塩散布装置には夫々の噴射ノズル作動と連動して塩誘導筒を昇降自在に設けることにより塩散布時におにぎり受板に密接せしめて塩の散逸を防止すると共に塩を確実におにぎり表面に散布附着せしめることができる。
【0008】
【発明の実施の形態】
本発明の実施の形態を実施例の図面について説明すると、おにぎり成型孔1を設けた間歇回動する成型円盤2の一側下側には一部重合するように放射状に複数のおにぎり受板3を配列しターレット4′で間歇回動されるおにぎり移動装置4が成型円盤2と連動するように設けられ、前記各おにぎり受板3はターレット4′の軸4″に対して回動可能に軸支されると共に内側下端縁に係止縁5′を有しかつ前記成型孔1と略同形のおにぎり受孔5が穿設されており、公知のように間歇回動する成型円盤2のおにぎり成型孔1で所定の形状に成形されたおにぎりAを押出具6によりおにぎり移動装置4のおにぎり受板3のおにぎり受孔5内に収容して間歇移動できるように構成されている。
【0009】
また前記移動装置4の周囲には成型円盤2との重合部から回動移送方向(図1の左回り方向)に向けて順次おにぎり表面塩散布装置7、おにぎり受板反転機構8、おにぎり裏面塩散布装置9、おにぎり排出装置10及びおにぎり受板反転復帰機構11が夫々設置されている。
【0010】
しかして前記おにぎり表面塩散布装置7とおにぎり裏面塩散布装置9とは図4及び図5に示すように同構造であって夫々塩供給タンク7・7′・9′と塩供給ノズル7″・9″と該供給ノズル7″・9″の外側に夫々嵌着された昇降機構12′・13′で作動する塩誘導筒12・13とで構成されており、該塩誘導筒12・13が塩供給ノズル7″・9″の開閉動作と夫々連動して塩Bの供給噴射時には塩誘導筒12・13は夫々下降作動しておにぎり受板3の表面又は裏面に密接するようにして噴射した塩の散逸を防止するように形成されている。
【0011】
図6及び図7に示すようにまた前記おにぎり受板反転機構8とおにぎり受板反転復帰機構11も同じ構成であって、夫々には挟持爪片8′・11′が夫々穿設されており、おにぎり受板3が挟持爪片8′・11′間に間歇回動して来て停止すると、該挟持爪片8′・11′が夫々半回転しておにぎり受板反転機構8はおにぎり表面を下面になるように、またおにぎり受板反転復帰機構11はおにぎり裏面即ち係止縁5′が上面になるように夫々反転せしめるように構成されている。なお図中14はおにぎり排出装置10によって塩を散布されたおにぎりの搬出コンベヤであり、また15は成型円盤2の下部に設けられた固定受板、16は成型円盤2に設けた米飯供給装置である。
【0012】
本発明の実施例は上記のように構成されているので、成型円盤2で所定形状に成形されたおにぎりAは押出具6によっておにぎり移動装置4のおにぎり受板3のおにぎり受孔5内に係止縁5′で係止収容された後、おにぎり移動装置4の間歇回動により先ずおにぎり表面塩散布装置7の位置で係止すると、塩誘導筒12が昇降機構12′で下降しておにぎり受板3のおにぎり受孔5の周囲に密接した後塩供給タンク7′から所定量の塩Bが塩供給ノズル7″を介しておにぎり表面に塩Bが噴射散布される。
【0013】
次いでそのおにぎり受板3が更に間歇回動しておにぎり受板反転機構8の挟持爪片8′間で停止すると、該おにぎり受板反転機構8によりおにぎり受板3は半回転してその裏面を上面に反転せしめ、次に該おにぎり受板3がおにぎり裏面塩散布装置9の位置で停止すると、前記と同様に該おにぎり裏面塩散布装置9によりそのおにぎりの裏面に塩Bが噴射散布された後、更に間歇回動しておにぎり排出装置10の位置において搬出コンベヤ14でおにぎり受孔5から押出され所定の位置に移送されるものである。
【0014】
このようにして前記おにぎりを送出したおにぎり受板3はおにぎり受板反転復帰機構11の挟持爪片11′で元の位置に反転復帰されて、再びおにぎり収容位置に復帰し、以下同様の作動を繰返すものである。
【0015】
図10に示す実施例はおにぎり移動装置4の変形例であって、おにぎり受板3を並列状に配列してベルト状に構成し、その上部平面状部に始端部側から順次おにぎり表面塩散布装置7、おにぎり受板反転機構8、おにぎり裏面塩散布装置9、おにぎり排出装置10及びおにぎり受板反転復帰機構11を夫々設けたものである。
【0016】
なお本発明における塩振り装置は塩だけに限られるものではなく、ごま塩やその他のふりかけの散布附着をも包含するものであって、ごま塩又はその他のふりかけのおにぎりを製造することもできる。
【0017】
【発明の効果】
本発明はおにぎり受孔を形成しかつ回動可能なおにぎり受板を放射状に配設した間歇回動するおにぎり移動装置に沿って順次おにぎり表面塩散布装置、おにぎり受板反転機構、おにぎり裏面塩散布装置、おにぎり排出装置及びおにぎり受板反転復帰機構を設置したことによって、成形されたおにぎりの形態を崩すことなくその表裏両面に塩を自動的に円滑確実にかつ効率よく連続して散布附着でき、食味、食感及び品質のよいおにぎりを能率よく製造することができる。
【0018】
また本発明においては前記おにぎり移動装置をベルト状に構成するときは、設置場所スペースの状況や他の装置であるおにぎり成型装置、海苔巻き装置との配置関係等により細長い設置スペースにも対応することができる。
【0019】
更におにぎり受板反転機構及びおにぎり受板反転復帰機構に挟持爪片を設けておにぎり受板を挟持してこれを回動反転することにより、おにぎりがおにぎり受板からの脱落を防止を確実に防止しながらおにぎりの反転をその形態を損なうことなく円滑確実に行うことができる。
【0020】
またおにぎり表面塩散布装置及びおにぎり裏面塩散布装置に夫々昇降する塩誘導筒を設けて、塩の散布時におにぎり受板に密接せしめて塩の散逸を防止するようにすることにより、塩を効率よく附着することができると共に塩節減を図り、また周囲を汚染せず環境衛生上も好適に保持することができる。
【図面の簡単な説明】
【図1】本発明の平面図。
【図2】本発明のおにぎり移動装置の要部の斜面図。
【図3】本発明の成型円盤とおにぎり移動装置の重合部の断面図。
【図4】本発明の表面塩散布装置(裏面塩散布装置)の断面図。
【図5】本発明の表面塩散布装置(裏面塩散布装置)の塩散布時の断面図。
【図6】本発明のおにぎり受板とおにぎり受板反転機構部分の断面図。
【図7】おにぎり反転機構(おにぎり反転復帰機構)の平面図。
【図8】本発明のおにぎり受板の反転復帰機構部分の断面図。
【図9】本発明のおにぎり送出部分の断面図。
【図10】本発明の別実施例の要部の平面図。
【符号の説明】
1 おにぎり成型孔
2 成型円盤
3 おにぎり受板
4 おにぎり移動装置
5 おにぎり受孔
6 押出具
7 おにぎり表面塩散布装置
8 おにぎり受板反転機構
8′ 挟持爪片
9 おにぎり裏面塩散布装置
10 おにぎり排出装置
11 おにぎり受板反転復帰機構
11′ 挟持爪片
12・13 塩誘導筒
14 搬出コンベヤ
[0001]
TECHNICAL FIELD OF THE INVENTION
The present invention relates to an onigiri double-sided salting apparatus for attaching rice balls, salt, sesame salt, and other sprinkles.
[0002]
[Prior art]
At present, most of the rice balls sold at convenience stores etc. are mechanically manufactured automatically, but most of them are made with salt water, that is, salt water mixed with a predetermined amount of salt at the time of cooking rice. The fact is that cooked rice is used, and there is a defect that the taste and texture of the salty taste are inferior to those obtained by salting rice balls held by hand. Therefore, recently, some rice balls have been directly inverted on a belt conveyor with a spatula or an impeller and salted on both sides thereof.
[0003]
[Problems to be solved by the invention]
However, the method of inverting and salting on the belt is such that the shape of the onigiri is collapsed at the time of inversion, the position of the inverted onigiri is not constant, the positioning is inaccurate, and the salting cannot be evenly performed on the onigiri. There is a defect that high-quality rice balls cannot be manufactured.
[0004]
In view of these circumstances, the present invention is to improve the conventional deficiency and directly apply the salt on both sides of the rice with the salt so as to improve the texture and taste of the rice ball and to automatically produce rice balls that do not collapse in shape. It is an object of the present invention to provide a double-sided salting apparatus for rice balls, which can be manufactured in a special manner.
[0005]
[Means for Solving the Problems]
In order to achieve the above-mentioned object, the present invention provides a rice ball moving device in which a rice ball receiving hole is formed and a rotatable rice ball receiving plate is arranged radially so as to rotate intermittently. It is characterized by providing a sprinkling device, a rice ball receiving plate reversing mechanism, a rice ball backside salt scattering device, a rice ball discharging device, and a rice ball receiving plate reversing return mechanism, and in particular, as the rice ball moving device, each rice ball receiving plate It is preferable to form a circular shape by arranging the rice balls radially, but it is preferable because it can be formed compactly, but depending on the convenience of the installation location etc., each rice ball receiving plate is arranged in parallel and configured as a belt, and It is also possible to use only the plane transfer unit.
[0006]
The rice ball receiving plate reversing mechanism and the rice ball receiving plate reversing return mechanism for rotating the rice ball receiving plate may be the same mechanism, but the holding claws provided on the rice ball receiving plate are used to hold both sides of the rice ball receiving plate. Thus, the rice ball can be smoothly and reliably inverted while preventing the rice ball from falling off the rice ball receiving plate during rotation of the rice ball receiving plate.
[0007]
Furthermore, a salt induction cylinder is provided in the onigiri surface salt dispersing device and the onigiri back surface salt dispersing device so as to be able to move up and down in conjunction with the operation of each injection nozzle, so that the salt is prevented from dissipating by being in close contact with the rice ball receiving plate during salt dispersal. Salt can be surely applied to the surface of the rice balls.
[0008]
BEST MODE FOR CARRYING OUT THE INVENTION
An embodiment of the present invention will be described with reference to the accompanying drawings. On the lower side of one side of an intermittently rotating forming disc 2 provided with an onigiri forming hole 1, a plurality of rice ball receiving plates 3 are radially overlapped so as to partially overlap. And a rice ball moving device 4 intermittently rotated by a turret 4 'is provided so as to interlock with the molding disk 2, and each of the rice ball receiving plates 3 is rotatable about a shaft 4 "of the turret 4'. A rice ball receiving hole 5 which is supported and has a locking edge 5 'at the inner lower end edge and which has substantially the same shape as the molding hole 1 is formed. The rice ball A formed in the predetermined shape in the hole 1 is accommodated in the rice ball receiving hole 5 of the rice ball receiving plate 3 of the rice ball moving device 4 by the pushing tool 6 and can be intermittently moved.
[0009]
In addition, on the periphery of the moving device 4, the rice ball surface salt dispersing device 7, the rice ball receiving plate reversing mechanism 8, and the rice ball back surface salt are sequentially arranged from the overlapping portion with the molding disk 2 in the rotational transfer direction (counterclockwise direction in FIG. 1). A sprinkling device 9, a rice ball discharging device 10, and a rice ball receiving plate reversing and returning mechanism 11 are provided respectively.
[0010]
The rice ball front surface salt dispersing device 7 and the rice ball rear surface salt dispersing device 9 have the same structure as shown in FIGS. 4 and 5, and have a salt supply tank 7, 7 ', 9' and a salt supply nozzle 7 ', respectively. 9 "and salt guide tubes 12 and 13 operated by lifting mechanisms 12 'and 13' respectively fitted outside the supply nozzles 7" and 9 ". When the salt B is supplied and injected in conjunction with the opening / closing operation of the salt supply nozzles 7 ″ and 9 ″, the salt guide cylinders 12 and 13 are respectively lowered to perform the injection so as to be in close contact with the front or back surface of the rice ball receiving plate 3. It is formed to prevent the dissipation of salt.
[0011]
As shown in FIGS. 6 and 7, the rice ball receiving plate reversing mechanism 8 and the rice ball receiving plate reversing return mechanism 11 also have the same configuration, and each has clipping claw pieces 8 'and 11', respectively. When the rice ball receiving plate 3 intermittently rotates between the holding claw pieces 8 'and 11' and stops, the holding claw pieces 8 'and 11' rotate half a turn, respectively, so that the rice ball receiving plate inverting mechanism 8 is turned on the rice ball surface. The rice ball receiving plate reversing and returning mechanism 11 is configured to invert the rice ball so that the back side, that is, the locking edge 5 ′ is the upper surface. In the drawing, reference numeral 14 denotes a conveyor for rice balls on which salt has been sprinkled by the rice ball discharging device 10, reference numeral 15 denotes a fixed receiving plate provided at the lower part of the molding disk 2, and reference numeral 16 denotes a cooked rice supply device provided on the molding disk 2. is there.
[0012]
Since the embodiment of the present invention is configured as described above, the onigiri A formed into a predetermined shape by the molding disc 2 is engaged in the onigiri receiving hole 5 of the onigiri receiving plate 3 of the onigiri moving device 4 by the pushing tool 6. After being locked and stored at the retaining edge 5 ', when the rice ball moving device 4 is intermittently rotated and first locked at the position of the rice ball surface salt spraying device 7, the salt guiding cylinder 12 is lowered by the elevating mechanism 12' to receive the rice ball. After closely contacting the rice ball receiving hole 5 of the plate 3, a predetermined amount of salt B is sprayed from the salt supply tank 7 'onto the surface of the rice ball through the salt supply nozzle 7 ".
[0013]
Next, when the rice ball receiving plate 3 further rotates intermittently and stops between the holding claw pieces 8 ′ of the rice ball receiving plate reversing mechanism 8, the rice ball receiving plate 3 rotates half a turn by the rice ball receiving plate reversing mechanism 8, and the back surface thereof is turned. When the rice ball receiving plate 3 is stopped at the position of the rice ball backside salt dispersing device 9 in the same manner as above, the salt B is sprayed and sprayed on the rear side of the rice ball by the rice ball backside salt dispersing device 9 as described above. The rice balls are further intermittently rotated and extruded from the rice ball receiving hole 5 by the unloading conveyor 14 at the position of the rice ball discharging device 10 and transferred to a predetermined position.
[0014]
The rice ball receiving plate 3 that has sent the rice ball in this way is returned to the original position by the holding claw piece 11 ′ of the rice ball receiving plate reversing and returning mechanism 11, returns to the rice ball receiving position again, and so on. It is a repetition.
[0015]
The embodiment shown in FIG. 10 is a modified example of the rice ball moving device 4, in which the rice ball receiving plates 3 are arranged in parallel to form a belt, and the rice ball surface salt is scattered on the upper flat portion sequentially from the starting end side. The apparatus is provided with a device 7, an onigiri receiving plate reversing mechanism 8, an onigiri backside salt dispersing device 9, an onigiri discharging device 10, and an onigiri receiving plate inversion returning mechanism 11, respectively.
[0016]
It should be noted that the salt swinging device in the present invention is not limited to salt, but includes sesame salt and other sprinkles, and can also produce sesame salt or other sprinkled rice balls.
[0017]
【The invention's effect】
The present invention provides a rice ball surface salt dispersing device, a rice ball receiving plate reversing mechanism, and a rice ball reverse salt dispersing device sequentially along an intermittently rotating rice ball moving device in which a rice ball receiving hole is formed and a rotatable rice ball receiving plate is radially arranged. By installing the device, rice ball discharging device and rice ball receiving plate reversing return mechanism, salt can be automatically and smoothly and continuously applied to both front and back surfaces without disturbing the shape of the formed rice ball, Onigiri with good taste, texture and quality can be efficiently produced.
[0018]
Further, in the present invention, when the rice ball moving device is configured in a belt shape, it is necessary to cope with an elongated installation space due to the condition of the installation space and the arrangement of the rice ball forming device and the laver winding device. Can be.
[0019]
Furthermore, the rice ball receiving plate reversing mechanism and the rice ball receiving plate reversing and returning mechanism are provided with a holding claw piece, and the rice ball receiving plate is pinched and rotated to invert, so that the rice ball is securely prevented from falling off the rice ball receiving plate. Meanwhile, the onigiri can be smoothly and reliably reversed without impairing its form.
[0020]
In addition, salt guiding tubes are provided on the rice ball front surface salt dispersing device and the rice ball rear surface salt dispersing device, respectively, so that the salt can be efficiently lifted by closely contacting the rice ball receiving plate to prevent the salt from being dissipated. It can be attached and save salt, and it is possible to keep the environment clean without polluting the surroundings.
[Brief description of the drawings]
FIG. 1 is a plan view of the present invention.
FIG. 2 is a perspective view of a main part of the rice ball moving device of the present invention.
FIG. 3 is a cross-sectional view of the overlapping portion of the molding disk and the rice ball moving device of the present invention.
FIG. 4 is a cross-sectional view of the front surface salt spraying device (backside salt spraying device) of the present invention.
FIG. 5 is a cross-sectional view of the front surface salt dispersing apparatus (backside salt dispersing apparatus) of the present invention at the time of spraying salt.
FIG. 6 is a sectional view of the rice ball receiving plate and the rice ball receiving plate reversing mechanism of the present invention.
FIG. 7 is a plan view of an onigiri inversion mechanism (onigiri inversion return mechanism).
FIG. 8 is a cross-sectional view of the reversing and returning mechanism of the rice ball receiving plate of the present invention.
FIG. 9 is a cross-sectional view of a rice ball sending portion of the present invention.
FIG. 10 is a plan view of a main part of another embodiment of the present invention.
[Explanation of symbols]
REFERENCE SIGNS LIST 1 Onigiri forming hole 2 Onigiri disk 3 Onigiri receiving plate 4 Onigiri moving device 5 Onigiri receiving hole 6 Extruder 7 Onigiri surface salt scattering device 8 Onigiri receiving plate inverting mechanism 8 ′ Nipping claw piece 9 Onigiri back surface salt dispersing device 10 Onigiri discharging device 11 Onigiri receiving plate reversing and returning mechanism 11 'Nipping claw pieces 12, 13 Salt guide cylinder 14 Carry-out conveyor

Claims (4)

おにぎり受孔を形成しかつ回動可能なおにぎり受板を放射状に配設して間歇回動するようにしたおにぎり移動装置に沿って、順次おにぎり表面塩散布装置、おにぎり受板反転機構、おにぎり裏面塩散布装置、おにぎり排出装置及びおにぎり受板反転復帰機構を夫々設けたことを特徴とするおにぎりの両面塩振り装置。An onigiri surface salt dispersing device, an onigiri receiving plate reversing mechanism, and a back side of the onigiri, along with the onigiri moving device, in which the onigiri receiving plate is formed and the rotatable onigiri receiving plate is radially arranged to rotate intermittently. A double-sided salting device for rice balls, comprising a salt spraying device, a rice ball discharging device, and a rice ball receiving plate reversing mechanism. おにぎり受孔を形成しかつ回動可能なおにぎり受板を並列状にベルト状に配列して間歇回動するようにしたおにぎり移動装置の上部平面移送部に、順次おにぎり表面塩散布装置、おにぎり受板反転機構、おにぎり裏面塩散布装置、おにぎり排出装置及びおにぎり受板反転復帰機構を夫々設けたことを特徴とするおにぎりの両面塩振り装置。Onigiri surface salt dispersing device, rice ball receiving device in the upper flat transfer part of the rice ball moving device, which has rice ball receiving holes formed and rotatable rice ball receiving plates arranged in parallel in a belt shape so as to rotate intermittently A double-sided salting apparatus for rice balls, comprising a plate reversing mechanism, an onigiri backside salt spraying device, a rice ball discharging device, and a rice ball receiving plate reversing and returning mechanism. おにぎり受板反転機構及びおにぎり受板反転復帰機構に夫々設けた挟持爪片でおにぎり受板のおにぎり受孔の表裏面を挟持しておにぎり受板を回転するようにしたことを特徴とする請求項1又は2何れか記載のおにぎりの両面塩振り装置。The rice ball receiving plate is rotated by holding the front and back surfaces of the rice ball receiving hole of the rice ball receiving plate with the holding claw pieces provided in the rice ball receiving plate reversing mechanism and the rice ball receiving plate reversing return mechanism, respectively. 3. A double-sided salting apparatus for rice balls according to any one of 1 to 2. おにぎり表面塩散布装置及びおにぎり裏面塩散布装置に夫々おにぎり受板に密着する塩誘導筒を上下昇降自在に設けたことを特徴とする請求項1又は2何れか記載のおにぎりの両面塩振り装置。The double-sided salting device for rice balls according to any one of claims 1 and 2, wherein a salt guiding cylinder which is in close contact with the rice ball receiving plate is provided on the rice ball front surface salt dispersing device and the rice ball rear surface salt dispersing device so as to be vertically movable.
JP2003140063A 2003-05-19 2003-05-19 Onigiri double-sided salt shaker Expired - Fee Related JP3749903B2 (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009153465A (en) * 2007-12-27 2009-07-16 Suzumo Machinery Co Ltd Automatic salt sprinkling device
JP2009261310A (en) * 2008-04-24 2009-11-12 Kobird Co Ltd Powdery food material-applying device, and cooked rice food-forming device using the same
JP2012110264A (en) * 2010-11-24 2012-06-14 Ichikawa Kogyo Kk Automatic salt sprinkling device for rice ball
JP2015120530A (en) * 2013-12-24 2015-07-02 鈴茂器工株式会社 Food material supply device, food material packaging device having the same, food material supply method and food material packaging method having food material supply step by the food material supply method

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JPH0420253A (en) * 1990-05-14 1992-01-23 Makoto Suzuki Device of sprinkling on rice ball
JPH0662773A (en) * 1992-08-21 1994-03-08 Suzumo Kiko Kk Apparatus for applying soy sauce to roasted rice ball
JPH1146706A (en) * 1997-08-01 1999-02-23 Fuji Seiki Co Ltd Salt-attaching machine for rice ball
JP2000189080A (en) * 1998-12-25 2000-07-11 Suzumo Machinery Co Ltd Apparatus for coating common salt on food
JP2000300235A (en) * 1999-04-20 2000-10-31 Makoto Suzuki Adherence apparatus for granule
JP2002330713A (en) * 2001-05-02 2002-11-19 Suzumo Machinery Co Ltd Automatic sprinkling apparatus for food
JP2004081009A (en) * 2002-08-22 2004-03-18 Seiko Kikai Kk Processing device for rice ball
JP2004290161A (en) * 2003-02-14 2004-10-21 Shimazu Machinery Works Co Ltd Rice ball-producing apparatus

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0420253A (en) * 1990-05-14 1992-01-23 Makoto Suzuki Device of sprinkling on rice ball
JPH0662773A (en) * 1992-08-21 1994-03-08 Suzumo Kiko Kk Apparatus for applying soy sauce to roasted rice ball
JPH1146706A (en) * 1997-08-01 1999-02-23 Fuji Seiki Co Ltd Salt-attaching machine for rice ball
JP2000189080A (en) * 1998-12-25 2000-07-11 Suzumo Machinery Co Ltd Apparatus for coating common salt on food
JP2000300235A (en) * 1999-04-20 2000-10-31 Makoto Suzuki Adherence apparatus for granule
JP2002330713A (en) * 2001-05-02 2002-11-19 Suzumo Machinery Co Ltd Automatic sprinkling apparatus for food
JP2004081009A (en) * 2002-08-22 2004-03-18 Seiko Kikai Kk Processing device for rice ball
JP2004290161A (en) * 2003-02-14 2004-10-21 Shimazu Machinery Works Co Ltd Rice ball-producing apparatus

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009153465A (en) * 2007-12-27 2009-07-16 Suzumo Machinery Co Ltd Automatic salt sprinkling device
JP2009261310A (en) * 2008-04-24 2009-11-12 Kobird Co Ltd Powdery food material-applying device, and cooked rice food-forming device using the same
JP4574698B2 (en) * 2008-04-24 2010-11-04 株式会社コバード Powder food material applying apparatus and cooked rice food forming apparatus using the same
JP2012110264A (en) * 2010-11-24 2012-06-14 Ichikawa Kogyo Kk Automatic salt sprinkling device for rice ball
JP2015120530A (en) * 2013-12-24 2015-07-02 鈴茂器工株式会社 Food material supply device, food material packaging device having the same, food material supply method and food material packaging method having food material supply step by the food material supply method

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