JP3775149B2 - Rice milling facility - Google Patents

Rice milling facility Download PDF

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Publication number
JP3775149B2
JP3775149B2 JP2000021203A JP2000021203A JP3775149B2 JP 3775149 B2 JP3775149 B2 JP 3775149B2 JP 2000021203 A JP2000021203 A JP 2000021203A JP 2000021203 A JP2000021203 A JP 2000021203A JP 3775149 B2 JP3775149 B2 JP 3775149B2
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JP
Japan
Prior art keywords
rice
rice milling
machine room
machine
shape
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
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JP2000021203A
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Japanese (ja)
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JP2001205115A (en
Inventor
努 ▲高▼橋
吉博 加茂
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Iseki and Co Ltd
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Iseki and Co Ltd
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Priority to JP2000021203A priority Critical patent/JP3775149B2/en
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Description

【0001】
【発明の属する技術分野】
本発明は、コイン籾摺精米装置に関するものである。
【0002】
【従来の技術】
籾摺精米機においては、機械室内部に籾摺機、石抜機、精米機や昇降機等の多種にわたる機械を配置しなくてはならないが、コイン精米機として設置する場合を考えると全体のスペースも限られるので、どうしてもメンテナンススペースが狭くなる傾向にあった。
【0003】
【発明が解決しようとする課題】
本発明は、上記従来の問題を解決するためになされたものであって、その目的とするところは、メンテナンススペースを広くとってメンテナンスが行ない易い配置とした精米施設を提供することにある。
【0004】
【課題を解決するための手段】
かかる目的を達成するために、請求項1の発明は、建屋内を仕切壁で操作室側と機械室側とに区分けし、前記操作室側に面する供給タンクより前記機械室内の複数の搬送装置、精米装置を経て、再び前記操作室側に面する白米タンクに至る穀粒の作業経路を平面視略コの字型に配設するとともに、前記複数の搬送装置の駆動モータを前記コの字型の内部に配設する精米施設である。
【0005】
また、請求項2の発明は、上記請求項1において、記機械室内の一側に籾摺装置を、他側に前記精米装置を備え、前記供給タンクと前記籾摺装置との間および前記籾摺装置と前記精米装置との間をそれぞれ前記搬送装置で連通し、これらの搬送装置の駆動モータを前記コの字型の内部に配設するとともに、精米作業の前処理工程を行う装置を前記機械室の後方に面して配設することを特徴とする。
0006
【発明の実施の形態】
以下に、図面を参照して本発明の実施の形態について説明する。図1〜図7は本発明の精米施設の一実施形態を示すもので、図1は外観側面図、図2は操作室の正面図、図3は内部平面図、図4は図3のS1−S1矢視図、図5は図3のS2−S2矢視図、図6は図3のS3−S3矢視図、図7は作業工程図である。
0007
図3の平面図に示すように、本発明の精米施設の一実施形態によれば、建屋内を仕切壁11で操作室(客室)A側と機械室B側とに区分けしている。仕切壁11は操作室A側に向けて操作パネル(図2参照)を備えており、また中央のやや下方には取り外し可能なカバー12(図2参照)を設けている。このカバー12を取り外すと、操作室A側から機械室B側への出入りが可能になっている。
0008
また、操作室A側に面する供給タンク1(穀粒供給口)より機械室B内の複数の搬送装置、精米装置等を経て、再び操作室A側に面する白米タンク8(穀粒取出口)に至る穀粒の作業経路を平面視略コの字型に配設している。すなわち、供給タンク1に続いて、機械室B内の一側に籾摺機4を、他側に精米装置7を備え、上記供給タンク1と籾摺機4との間を籾昇降機3で連通し、籾摺機4と精米装置7との間は精米昇降機6を配設している。このように供給タンク1より白米タンク8に至る各種作業経路を平面視略コの字型に配設することで機械室B内全体にバランス良く配置することができる。また、還元通路24は、機械室B側に搬送された穀粒の操作室A側への返却用通路である。
0009
また、上記籾昇降機3と精米昇降機6のそれぞれの駆動モータ9、10を上記コの字型の内部、つまりコの字型の内側と仕切壁11との間に発生する空間内に配設している。
0010
さらに、本実施形態においては、精米作業の前処理工程を行う装置を機械室Bの後方に面して配設している。すなわち、石を除去する石抜機13を籾摺機4の下部に、さらに藁屑等を除去する異物除去装置5を石抜機13の側方であって精米昇降機6との間にそれぞれ配設している(図3、図5、図6参照)。なお、機械室Bの後方には、精米装置7で生じる糠を処理するためのサイクロン20、ヌカラセン21、糠袋23A,23Bをそれぞれ配設している。
0011
このような配置構成において、供給タンク1内に投入された籾(および玄米)は供給ラセン2によって籾昇降機3に移送され、さらに籾昇降機3により上方に運ばれて籾摺機4内に投入される。籾摺機4にて選別された玄米が石抜機13に入り、石抜機13にて石を選別される。次いで、異物除去装置5に入り、ここで藁屑等の異物が除去され、精米昇降機6に送られる。精米昇降機6にて上方に移送された玄米は精米装置7内に投入される。精米後の白米は白米タンク8に貯留され、一連の作業工程を終了する。精米装置7で発生する糠は後述するようにサイクロン20、ヌカラセン21により糠袋23A,23B内に貯められる。
0012
以上のように、供給タンク1より白米タンク8に至る一連の作業経路を平面視略コの字型にしてバランス良く配置するとともに、コの字型の内部に発生する空間を利用して、ここに昇降機の駆動モータのようなメンテナンスをする頻度の低い部材を配置することで、狭い設置面積に集中してコンパクトに配置することが可能になる。これにより、機械室後方のスペースをできるだけ広くとってメンテンススペースを十分に確保することが可能である。
0013
また、前述の仕切壁11に設けたカバー12を取り外すと操作室A側から機械室B側への出入りが可能となるので、コの字型の内部に配置した駆動モータ等のメンテナンスに便利である。なお、図2に示す実施形態では料金投入口の隣に上記カバー12を設けており、機械室B側にある金庫のメンテナンスも可能である。
0014
また、精米作業の前処理工程を行う装置を機械室B後方に面して配置し、たとえば石抜機13は籾摺機4の下方に、異物除去装置5はとくに籾摺機4と精米装置7との間の空間を利用して配置し、さらには前述のごとく昇降機の駆動モータ等はコの字型の内部に配設することで、メンテナンスの頻度の高い精米の前処理工程を行う装置(石抜機13の選別板、駆動ベルト等)のメンテナンスを機械室Bの後方より行っても、メンテナンスの邪魔になるようなものが足元にないので、メンテナンスがしやすいという利点がある。
0015
なお、上述の配置構成は、場合によっては、石抜機13を籾摺機4と精米装置7との間の空間を利用して配置し、異物除去装置5を省くような構成とすることも可能である。あるいは石抜機13と異物除去装置5の配置位置を置き換えてもよい。
0016】
図8は他の実施形態を示すもので、精米装置7から排出される白米を貯留する白米タンク8の上部前面に塩化ビニル樹脂などの材料でできた軟質カバー14を設けたものである。
0017
このような軟質カバー14を設けることで、精米装置7よりタンク8に白米が排出される開口部からの音が客室に漏れるのを防止でき、ゴミや虫がタンク内に入るのを防止できる。軟質な材質を用いることで、開閉が容易に行え、掃除などのメンテナンスも容易である。とくに透明なカバーを用いると、白米が排出される様子が客にも見えて安心感を与えることができる。
0018
図9及び図10はそれぞれ他の実施形態を示すものである。すなわち、図8は精米装置7の側面に、ソレノイド15とスプリング16の動作によって、一端を蝶番とする開閉自在のカバー17を設けたものであり、図9は同じく精米装置7の側面に、ソレノイド15とスプリング16の動作によって、水平方向に開閉自在のカバー18を設けたものである。
0019
このような駆動部の動作により開閉するカバー17又は18を設け、精米終了時に残粒排出を行う場合、これらのカバー17、18を開放して(同図の(b)参照)、開口部19より外気を取入れることで、糠排出用のファンによる吸引効果を軽減し、残粒排出をスムースに行うことができる。
0020
図11は精米装置7で排出される糠の処理形態を示すものである。すなわち、同図(a)に示すように、サイクロン20にて精米装置7より圧送された糠を空気と分離し、ヌカラセン21にてサイクロン20で分離した糠を搬送し、糠袋に落とす。このとき、ヌカラセン21の排出口には糠袋に溜まる糠の満量を検出するセンサ22を設置し、このセンサ22がオフの場合はヌカラセン21のモータは停止し、1袋目の糠袋23Aのみに糠を貯める。そして1袋目の糠袋23Aが満量になるとセンサ22がオンとなり、ヌカラセン21のモータが稼動し、同図(b)に示すように、2袋目の糠袋23Bに糠を貯めるようにする。
0021
これにより、1袋目、2袋目と確実に糠を貯めることができ、間違ってオーバーフローして機械室内を汚すような不具合も生じない。
0022
【発明の効果】
以上詳細に説明したように、本発明の精米施設は、建屋内を仕切壁で操作室側と機械室側とに区分けし、操作室側に面する供給タンクより機械室内の搬送装置、精米装置等を経て、再び操作室側に面する白米タンクに至る穀粒の作業経路を平面視略コの字型に配設するとともに、搬送装置の駆動モータを上記コの字型の内部に配設したので、各種作業装置をバランス良く配置すると同時に狭い設置面積に集中して配置することができ、メンテナンスに必要な機械室後方のスペースをできるだけ広くとることで十分なメンテナンススペースを確保することができる。
0023
た、機械室内の一側に籾摺装置を、他側に前記精米装置を備え、供給タンクと籾摺装置との間および籾摺装置と精米装置との間をそれぞれ搬送装置で連通し、これらの搬送装置の駆動モータを上記コの字型の内部に配設するとともに、精米作業の前処理工程を行う装置を機械室の後方に面して配設することにより、メンテナンスの頻度の高い精米作業の前処理工程を行う装置のメンテナンスを機械室の後方から行う場合、搬送装置の駆動モータが足下にはなく邪魔にならないのでメンテナンス性に優れる。
【図面の簡単な説明】
【図1】本発明の精米施設の外観側面図である。
【図2】その操作室の正面図である。
【図3】その内部平面図である。
【図4】図3のS1−S1矢視図である。
【図5】図3のS2−S2矢視図である。
【図6】図3のS3−S3矢視図である。
【図7】作業工程図である。
【図8】他の実施形態を示す図3のS1−S1矢視図である。
【図9】精米装置側面のカバーの構成を示す図である。
【図10】同じく精米装置側面のカバーの構成を示す図である。
【図11】糠の処理形態を示す図である。
【符号の説明】

供給タンク

供給ラセン

籾昇降機

籾摺機

異物除去装置

精米昇降機

精米機

白米タンク
9、10
駆動モータ
11
仕切壁
12
カバー
13
石抜機
14
軟質カバー
15
ソレノイド
16
スプリング
17、18
カバー
20
サイクロン
21
ヌカラセン
22
満量センサ
23A、23B 糠袋
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a coin hulling machine.
[0002]
[Prior art]
In the rice milling machine, it is necessary to arrange various machines such as a rice milling machine, a stone cutter, a rice milling machine, and an elevator in the machine room. Because it is limited, the maintenance space inevitably tended to become narrower.
[0003]
[Problems to be solved by the invention]
The present invention has been made in order to solve the above-described conventional problems, and an object of the present invention is to provide a rice milling facility that has a large maintenance space and can be easily maintained.
[0004]
[Means for Solving the Problems]
In order to achieve such an object, the invention of claim 1 divides a building into an operation room side and a machine room side by a partition wall, and a plurality of transports in the machine room from a supply tank facing the operation room side. The working path of the grain that reaches the white rice tank again facing the operation room through the apparatus and the rice milling apparatus is arranged in a substantially U shape in plan view, and the drive motors of the plurality of conveying apparatuses are This is a rice milling facility located inside the shape.
[0005]
The invention of claim 2 is, in the first aspect, before Symbol the hulling apparatus on one side of the machine room, with the rice device on the other side, and between said and said hulling apparatus and the supply tank A device that communicates between the rice bran device and the rice milling device by the transport device, arranges the drive motor of these transport devices inside the U-shaped, and performs a pre-processing step of the rice milling work It arrange | positions facing the back of the said machine room, It is characterized by the above-mentioned.
[ 0006 ]
DETAILED DESCRIPTION OF THE INVENTION
Embodiments of the present invention will be described below with reference to the drawings. 1 to 7 show an embodiment of the rice milling facility of the present invention. FIG. 1 is an external side view, FIG. 2 is a front view of an operation room, FIG. 3 is an internal plan view, and FIG. -S1 arrow figure, FIG. 5 is S2-S2 arrow figure of FIG. 3, FIG. 6 is S3-S3 arrow figure of FIG. 3, FIG.
[ 0007 ]
As shown in the plan view of FIG. 3, according to one embodiment of the rice milling facility of the present invention, the building is divided into an operation room (guest room) A side and a machine room B side by a partition wall 11. The partition wall 11 is provided with an operation panel (see FIG. 2) toward the operation room A, and a removable cover 12 (see FIG. 2) is provided slightly below the center. When this cover 12 is removed, it is possible to enter and exit from the operation room A side to the machine room B side.
[ 0008 ]
In addition, a white rice tank 8 (grain harvester) facing the operation room A again from the supply tank 1 (grain supply port) facing the operation room A through a plurality of conveying devices and rice milling devices in the machine room B. The work path of the grain to the exit) is arranged in a substantially U shape in plan view. That is, following the supply tank 1, a rice grinder 4 is provided on one side in the machine room B, and a rice milling device 7 is provided on the other side. A rice lifting machine 6 is disposed between the rice huller 4 and the rice milling device 7. In this way, by arranging various work paths from the supply tank 1 to the white rice tank 8 in a substantially U-shape in plan view, the work chamber B can be arranged in a well-balanced manner. Moreover, the reduction | restoration channel | path 24 is a channel | path for return to the operation room A side of the grain conveyed by the machine room B side.
[ 0009 ]
In addition, the drive motors 9 and 10 of the rice bran elevator 3 and the rice mill elevator 6 are arranged inside the U-shape, that is, in the space generated between the inside of the U-shape and the partition wall 11. ing.
[ 0010 ]
Furthermore, in this embodiment, the apparatus which performs the pre-processing process of a rice milling work is arrange | positioned facing the back of the machine room B. FIG. That is, a stone remover 13 for removing stones is disposed at the lower part of the grinder 4, and a foreign substance removing device 5 for removing shavings and the like is disposed on the side of the stone remover 13 and between the rice lifting machine 6. (See FIGS. 3, 5, and 6). Behind the machine room B, a cyclone 20, a nutracene 21, and sachets 23A and 23B for processing the slag produced in the rice mill 7 are disposed.
[ 0011 ]
In such an arrangement, rice cake (and brown rice) introduced into the supply tank 1 is transferred to the rice cake elevator 3 by the supply spiral 2, and further conveyed upward by the rice cake elevator 3 and introduced into the rice huller 4. The The unpolished rice selected by the hulling machine 4 enters the stone removing machine 13, and the stone is selected by the stone removing machine 13. Next, the foreign matter removing device 5 is entered, where foreign matters such as sawdust are removed and sent to the rice lifting machine 6. The brown rice transported upward by the rice mill lift 6 is put into the rice mill 7. The white rice after milling is stored in the white rice tank 8 and the series of work steps is completed. The rice cake generated in the rice milling device 7 is stored in the rice bag 23A, 23B by the cyclone 20 and the nutracene 21 as described later.
[ 0012 ]
As described above, a series of work paths extending from the supply tank 1 to the white rice tank 8 are arranged in a well-balanced manner in a substantially U shape in plan view, and the space generated inside the U shape is used here. By arranging a member with low maintenance frequency, such as a drive motor for an elevator, it is possible to concentrate on a small installation area and arrange it compactly. Thus, it is possible to sufficiently ensure the maintainer Nsu space taken broadly as possible space of the machine room behind.
[ 0013 ]
Further, when the cover 12 provided on the partition wall 11 is removed, it is possible to enter and exit from the operation chamber A side to the machine room B side, which is convenient for maintenance of a drive motor or the like disposed inside the U-shape. is there. In the embodiment shown in FIG. 2, the cover 12 is provided next to the charge input port, and maintenance of the safe on the machine room B side is also possible.
[ 0014 ]
Further, an apparatus for performing the pretreatment process of the rice milling operation is arranged facing the rear of the machine room B. For example, the stone remover 13 is located below the rice grinder 4, and the foreign substance removing device 5 is particularly the rice grinder 4 and the rice milling apparatus 7. A device that performs a pre-treatment process for milled rice with a high maintenance frequency by arranging the drive motor of the elevator and the like inside the U-shape as described above Even if maintenance of the sorting plate, drive belt, etc. of the stone remover 13 is performed from the rear of the machine room B, there is an advantage that maintenance is easy because there is nothing that interferes with maintenance.
[ 0015 ]
In addition, depending on the case, the above-described arrangement configuration may be configured such that the stone remover 13 is arranged using the space between the hulling machine 4 and the rice milling apparatus 7 and the foreign matter removing apparatus 5 is omitted. It is. Or you may replace the arrangement position of the stone remover 13 and the foreign material removal apparatus 5. FIG.
[ 0016]
FIG. 8 shows another embodiment, in which a soft cover 14 made of a material such as vinyl chloride resin is provided on the upper front surface of a white rice tank 8 for storing white rice discharged from the rice milling device 7.
[ 0017 ]
By providing such a soft cover 14, it is possible to prevent sound from the opening from which white rice is discharged from the rice milling device 7 to the tank 8 from leaking into the cabin, and to prevent dust and insects from entering the tank. By using a soft material, opening and closing can be performed easily, and maintenance such as cleaning is also easy. In particular, using a transparent cover can give customers a sense of security by seeing how white rice is being discharged.
[ 0018 ]
9 and 10 show other embodiments, respectively. That is, FIG. 8 is provided with an openable / closable cover 17 having one end hinged by the operation of the solenoid 15 and the spring 16 on the side surface of the rice milling device 7, and FIG. A cover 18 that can be opened and closed in the horizontal direction is provided by the action of the spring 15 and the spring 16.
[ 0019 ]
When the cover 17 or 18 that opens and closes by the operation of such a drive unit is provided and residual grains are discharged at the end of the milling, these covers 17 and 18 are opened (see (b) in the figure), and the opening 19 By taking in outside air more, the suction effect by the fan for discharging the soot can be reduced, and the residual particle can be discharged smoothly.
[ 0020 ]
FIG. 11 shows a processing mode of rice bran discharged from the rice milling device 7. That is, as shown in FIG. 2A, the cocoon pumped from the rice mill 7 by the cyclone 20 is separated from the air, and the cocoon separated by the cyclone 20 is transported by the nucaracene 21 and dropped into the bag. At this time, a sensor 22 for detecting the full amount of bag accumulated in the bag is installed at the discharge port of the nutracene 21. When this sensor 22 is OFF, the motor of the nutracene 21 stops and only the bag 23A of the first bag is stopped Save the firewood. When the first bag 23A is full, the sensor 22 is turned on and the motor of the Nucaracene 21 is operated to store the bag in the second bag 23B as shown in FIG.
[ 0021 ]
Thereby, the first bag and the second bag can be reliably stored, and there is no problem that the machine chamber overflows and soils the machine room.
[ 0022 ]
【The invention's effect】
As described above in detail, the rice milling facility of the present invention divides the building into an operation room side and a machine room side by a partition wall, and conveys the machine room from the supply tank facing the operation room side. The working path of the grain that reaches the white rice tank again facing the operation room side is arranged in a substantially U shape in plan view, and the drive motor of the conveying device is arranged inside the above U shape Therefore, various work devices can be arranged in a well-balanced manner and at the same time concentrated in a small installation area, and sufficient maintenance space can be secured by taking as much space as possible behind the machine room for maintenance. .
[ 0023 ]
Also, the hulling apparatus on one side of the machine room, with the rice device on the other side, communicates with each conveying device and between the hulling apparatus with rice apparatus the supply tank and the hulling apparatus, The frequency of maintenance is high by arranging the drive motor of these transfer devices inside the U-shape and arranging the device that performs the pretreatment process of the rice milling work facing the rear of the machine room. When maintenance of the apparatus that performs the pretreatment process of the rice milling operation is performed from the rear of the machine room, the drive motor of the transfer apparatus is not under the feet and does not get in the way, so that the maintenance is excellent.
[Brief description of the drawings]
FIG. 1 is an external side view of a rice milling facility according to the present invention.
FIG. 2 is a front view of the operation room.
FIG. 3 is an internal plan view thereof.
4 is a view taken in the direction of arrows S1-S1 in FIG. 3;
5 is a view taken in the direction of arrows S2-S2 in FIG.
6 is a view taken in the direction of arrows S3-S3 in FIG.
FIG. 7 is a work process diagram.
FIG. 8 is a view taken along arrow S1-S1 in FIG. 3 showing another embodiment.
FIG. 9 is a diagram showing a configuration of a cover on the side surface of the rice milling apparatus.
FIG. 10 is a view showing the structure of a cover on the side of the rice milling apparatus.
FIG. 11 is a diagram showing a processing mode for wrinkles.
[Explanation of symbols]
1
Supply tank 2
Supply spiral 3
籾 Elevator 4
Hulling machine 5
Foreign matter removal device 6
Rice lifting machine 7
Rice milling machine 8
White rice tank 9, 10
Drive motor 11
Partition wall 12
Cover 13
Stone remover 14
Soft cover 15
Solenoid 16
Spring 17, 18
Cover 20
Cyclone 21
Nucaracene 22
Full sensor 23A, 23B Bag

Claims (2)

建屋内を仕切壁で操作室側と機械室側とに区分けし、前記操作室側に面する供給タンクより前記機械室内の複数の搬送装置、精米装置を経て、再び前記操作室側に面する白米タンクに至る穀粒の作業経路を平面視略コの字型に配設するとともに、前記複数の搬送装置の駆動モータを前記コの字型の内部に配設することを特徴とする精米施設 The building is divided into an operation room side and a machine room side by a partition wall, and again faces the operation room side from the supply tank facing the operation room side through a plurality of transfer devices and rice milling devices in the machine room. A rice milling facility characterized in that the work path of the grain reaching the white rice tank is arranged in a substantially U shape in plan view, and the drive motors of the plurality of conveying devices are arranged in the U shape. . 記機械室内の一側に籾摺装置を、他側に前記精米装置を備え、前記供給タンクと前記籾摺装置との間および前記籾摺装置と前記精米装置との間をそれぞれ前記搬送装置で連通し、これらの搬送装置の駆動モータを前記コの字型の内部に配設するとともに、精米作業の前処理工程を行う装置を前記機械室の後方に面して配設することを特徴とする請求項記載の精米施設。The hulling apparatus on one side of the front SL machine room, with the rice device on the other side, the transport device, respectively and between the said hulling apparatus and the rice device and said supply tank and the hulling apparatus The drive motors of these conveying devices are arranged inside the U-shape, and the device for performing the pretreatment process of the rice milling operation is arranged facing the rear of the machine room. The rice milling facility according to claim 1 .
JP2000021203A 2000-01-31 2000-01-31 Rice milling facility Expired - Fee Related JP3775149B2 (en)

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JP5810535B2 (en) * 2011-01-25 2015-11-11 井関農機株式会社 Rice milling equipment
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