JP4697448B2 - Rice milling equipment - Google Patents

Rice milling equipment Download PDF

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JP4697448B2
JP4697448B2 JP2006130581A JP2006130581A JP4697448B2 JP 4697448 B2 JP4697448 B2 JP 4697448B2 JP 2006130581 A JP2006130581 A JP 2006130581A JP 2006130581 A JP2006130581 A JP 2006130581A JP 4697448 B2 JP4697448 B2 JP 4697448B2
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rice
milling
milling machine
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JP2007301448A (en
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英臣 川端
努 高橋
祐介 中田
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Iseki and Co Ltd
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Description

本発明は、籾摺機および精米機を備えて料金分の籾について籾摺精米処理を全自動で処理する籾摺精米設備に関するものである。   TECHNICAL FIELD The present invention relates to a rice mill rice mill equipment that is equipped with a rice mill and a rice milling machine, and that fully automatically processes rice mill rice milling processing for rice for a fee.

籾摺精米設備は、一例として特許文献1に示されるように、籾摺機および精米機を備えて構成され、投入された籾または玄米について料金分の精米処理を全自動で処理する籾摺精米設備が知られている。この籾摺精米設備は、籾摺機、精米機および関連機器を中心に、籾を投入するための投入ホッパおよび精米処理された精白米を取出すための白米タンクを備えて構成され、一連の処理が制御部によって自動運転される。   As shown in Patent Document 1, as an example, the rice milling rice mill is configured to include a rice milling machine and a rice milling machine, and the rice milling rice mill that automatically processes the rice milling process for the charged rice bran or brown rice. Equipment is known. This rice milling machine is mainly composed of rice milling machine, rice milling machine and related equipment, and is equipped with a feeding hopper for feeding rice bran and a white rice tank for taking out the milled rice. Is automatically operated by the control unit.

利用者は、籾を投入ホッパに投入し、次いで必要な金額のコインを投入することにより、投入ホッパの繰出装置が所定時間の稼動によって課金単位分の籾を取込んで籾摺精米処理し、投入金額の範囲でこれを繰り返すことにより、投入籾を籾摺精米して白米タンクから受取ることができる。
特開2002−35618号公報
The user inserts the rice cake into the insertion hopper, and then inserts the necessary amount of coins, so that the feeding device of the insertion hopper takes in the rice for the billing unit by operating for a predetermined time, and performs the rice milling process. By repeating this within the range of the input amount, the input rice bran can be polished and received from the white rice tank.
JP 2002-35618 A

しかしながら、上記構成の籾摺精米設備の籾摺機は、籾摺精米処理が終わりに近づくと籾摺頭部に供給される籾量の減少により脱ぷ率が低下し、この籾摺が不十分な玄米を精米機に入れると籾殻が残ったまま白米タンクに送られることから、その部分を除かない限り、籾混じりの問題が避けられなかった。   However, in the rice huller of the rice hull milling equipment having the above-described configuration, when the rice hull milling process is approaching the end, the removal rate decreases due to the reduction in the amount of rice hull supplied to the head of the hulling rice mill, and this rice hulling is insufficient When the unpolished brown rice is put into a rice mill, it is sent to the white rice tank with the rice husks remaining, so unless it is removed, the problem of mash mixing is inevitable.

解決しようとする問題点は、装置構成の複雑化を招くことなく、籾摺精米の終了間際の籾摺りが不十分な処理米を含む投入籾の全量について一定の精白度を確保することができる籾摺精米設備を提供することにある。   The problem to be solved is that a certain degree of milling can be ensured with respect to the total amount of the input rice bran including the treated rice that is insufficiently milled immediately before the end of the milled rice without complicating the apparatus configuration. The purpose is to provide the milled rice equipment.

請求項1に係る発明は、籾または玄米を投入する投入ホッパ(12)と、籾を籾摺処理する籾摺機(14)と、この籾摺機(14)により、籾摺された処理米を精白処理する精米機(16)と、精米機(16)の排出口にあって精白度を調節する圧迫板と、精白度を選択する操作部(11a)と、操作部(11a)で選択した精白度に基づき圧迫板を制御する制御部とを備え、
投入ホッパ(12)に玄米を投入した場合には籾摺機(14)による籾摺り処理を行なわずに精米機(16)で精米処理し、投入ホッパ(12)に籾を投入した場合には籾摺機(14)で籾摺り処理を行ってから精米機(16)で精白処理を行なう籾摺精米設備において、
前記投入ホッパ(12)に受けた籾または玄米について、その何れか該当種別を識別する米種識別手段(12d)を設け、
前記制御部は、精米作業終了間際の信号を検出すると、投入ホッパ(12)に玄米を投入した場合には、精米機(16)が停止するまでの間、操作部(11a)で選択した精白度のままで精白処理を行なうよう制御し、
投入ホッパ(12)に籾を投入した場合には、精米機(16)が停止するまでの間、操作部(11a)で選択した精白度からさらに精白度を上げて精白処理を行なうよう制御することを特徴とする。
According to the first aspect of the present invention, there is provided a feeding hopper (12) for feeding rice bran or brown rice, a rice huller (14) for carrying out a rice hulling treatment for rice cake, and a rice treated by the rice huller (14). Selected by the rice mill (16) for whitening, the pressure plate at the outlet of the rice mill (16) for adjusting the degree of milling, the operation unit (11a) for selecting the degree of milling, and the operation unit (11a) A control unit for controlling the compression plate based on the degree of milling performed,
When brown rice is put into the charging hopper (12), the rice milling process is performed by the rice milling machine (16) without performing the rice hulling process by the rice milling machine (14), and when the rice bran is put into the charging hopper (12) In the milling machine for rice milling, the milling process is performed by the milling machine (14) and then the milling process by the milling machine (16) .
For rice bran or brown rice received in the input hopper (12), a rice type identifying means (12d) for identifying any of the corresponding types is provided,
When the control unit detects a signal just before the completion of the rice milling operation, when brown rice is put into the feeding hopper (12), the whitening selected by the operation unit (11a) until the rice milling machine (16) stops. Control to perform whitening treatment at the same degree,
When the rice bran is put into the charging hopper (12), it is controlled to perform the whitening process by further increasing the whitening degree from the whitening degree selected by the operation unit (11a) until the rice milling machine (16) stops. It is characterized by that.

上記構成により、籾摺機に受けた籾は玄米に処理されて精米機に渡され、精米機に渡された玄米は所定の精白度で精白されることにより籾が籾摺精米され、この過程において、籾摺精米終了間際の籾量の減少に伴って籾摺りが不十分となる処理米について、そのタイミングを検出する検出信号に基づき、終了までの間、上記精米機が制御部により精白度を上げて稼動制御され、この精白処理によって籾摺りの不足が補われる According to the above configuration, the rice bran received by the rice mill is processed into brown rice and passed to the rice mill, and the brown rice passed to the rice mill is refined at a predetermined degree of milling, so that the rice bran is polished. , The rice milling machine determines the degree of whitening by the control unit until the end based on the detection signal that detects the timing of rice that has become unfinished due to a decrease in the amount of dredging at the end of rice milling. Operation is controlled and this whitening process compensates for the lack of hulling .

請求項1の籾摺精米設備は、籾摺精米の過程において、籾摺精米終了間際以降の精米処理における精白度の調節により、籾摺りが不十分な処理米についてその不足を補うことができるので、装置構成の複雑化を招くことなく、籾摺精米の終了間際以降を含む籾の全量について一定の精白度を確保して籾摺精米をすることができる Since the rice milling equipment of claim 1 can compensate for the deficiency of the treated rice with insufficient rice milling by adjusting the degree of whitening in the rice milling process after the end of rice milling in the process of rice milling rice, Without incurring the complexity of the apparatus configuration, it is possible to secure a certain degree of whitening for the total amount of rice bran including just after the end of rice milling, and to carry out rice milling .

上記技術思想に基づいて具体的に構成された実施の形態について以下に図面を参照しつつ説明する。
籾摺精米設備は、その一構成例についてのシステム展開図を図1に示すように、投入された穀粒を受ける投入ホッパ12と穀粒の取出が可能な白米タンク13が客室に臨んで設けられるほか、上記投入ホッパ12から受けた穀粒を上位排出する第1昇降機14eと、この第1昇降機14eから受けた穀粒を籾摺ロール14aによって籾摺りする籾摺機14と、この籾摺機14から受けた穀粒中の異物を振動選別するために選米出口15bと残米出口15cを前後端に配置した異物選別機15と、その選米出口15bから受けた穀粒を上位排出する第2昇降機16eと、この第2昇降機16eから玄米タンク16tに受けた穀粒を精米して上記白米タンク13に供給する精米機16と、これらを統括制御する制御部等から構成される。
Embodiments specifically configured based on the above technical idea will be described below with reference to the drawings.
As shown in FIG. 1, a system development diagram of one example of the rice milling rice equipment is provided with an input hopper 12 that receives the input grains and a white rice tank 13 that can extract the grains facing the guest room. In addition, the first elevator 14e for discharging the grain received from the charging hopper 12 to the upper level, the huller 14 for crushing the grain received from the first elevator 14e by the hulling roll 14a, and the huller In order to vibrationally sort foreign matter in the grain received from 14, the foreign matter sorter 15 in which the rice selection outlet 15 b and the remaining rice outlet 15 c are arranged at the front and rear ends, and the grain received from the rice selection outlet 15 b are discharged to the top. A second elevator 16e, a rice mill 16 that polishes the grains received in the brown rice tank 16t from the second elevator 16e and supplies the grain to the white rice tank 13, and a control unit that performs overall control thereof are configured.

投入ホッパ12には、穀粒投入を検出する穀粒センサ12bおよび投入穀粒が籾か玄米かを判別する判別手段として米種センサ12dを設ける。玄米の場合は、籾摺機14は、籾摺ロール14aの間隙を開いて籾摺作用なしに玄米をそのまま通過する。玄米タンク16tには、オーバーフローを検出する玄米タンク満量センサ16fおよび玄米の有無を検出する玄米タンク下限センサ16bを設け、これらセンサの検出信号に応じて制御部が後述のように機器の稼働を制御する。精米機16は、その排出口側に備える図示しない圧迫板を制御部の制御指令により移動調節して精白度制御可能に構成する。また、精米機16は切換制御可能な排出路16aを介して白米タンク13と接続し、その切換弁16jにより精米機充填初期の搗精圧が上がるまでの初期精白処理米を貯留するチャージタンク16cを設け、この初期精白処理米は全玄米の精米終了間際に第2昇降機16eを介して精米機16に追加供給することにより全玄米を精白処理する。   The input hopper 12 is provided with a grain sensor 12b for detecting the input of the grain and a rice seed sensor 12d as a determining means for determining whether the input grain is straw or brown rice. In the case of brown rice, the hulling machine 14 opens the gap between the hulling rolls 14a and passes through the brown rice without any hulling action. The brown rice tank 16t is provided with a brown rice tank full sensor 16f for detecting overflow and a brown rice tank lower limit sensor 16b for detecting the presence or absence of brown rice, and the control unit operates the equipment as described later according to the detection signals of these sensors. Control. The rice milling machine 16 is configured such that the degree of milling can be controlled by moving and adjusting a compression plate (not shown) provided on the discharge port side according to a control command of the control unit. The rice mill 16 is connected to a white rice tank 13 via a discharge controllable discharge path 16a, and a charge tank 16c for storing initial milled rice until the milling pressure in the initial stage of filling the rice mill is increased by the switching valve 16j. The initial milled rice is subjected to the milling process on the whole brown rice by additionally supplying it to the milling machine 16 via the second elevator 16e just before the end of the milling of the whole brown rice.

還元用切換弁14pは、投入ホッパ12内に少量の穀粒が料金不足等で残留した際に第1昇降機14eから還元通路14qを経て投入ホッパ12の上方の還元口14rに排出するための切換部である。異物選別機15の残米出口15cは、玄米が尽きたときに、第1昇降機14eから残米送路14gと第2昇降機16eによって精米機16に送られて全量が精米処理される。   The reduction switching valve 14p is a switch for discharging from the first elevator 14e through the reduction passage 14q to the reduction port 14r above the charging hopper 12 when a small amount of grain remains in the charging hopper 12 due to insufficient charge. Part. When the brown rice is exhausted, the remaining rice outlet 15c of the foreign matter sorter 15 is sent from the first elevator 14e to the rice mill 16 by the remaining rice transfer path 14g and the second elevator 16e, and the entire amount is processed.

籾摺精米設備は、その機器配置図を図2に示すように、矩形の建屋1内に機械室2とその前側の操作スペースとしての客室3とを仕切壁11で仕切る。本実施の形態では客室3側を前、機械室2側を後ろとする。   As shown in FIG. 2, the rice milling equipment divides a machine room 2 and a guest room 3 as an operation space on its front side by a partition wall 11 in a rectangular building 1. In the present embodiment, the cabin 3 side is the front and the machine room 2 side is the back.

機械室2には、仕切壁11の後方に突出する投入ホッパ12から第1昇降機14eを介してその側方に籾摺機14を配置し、その下方で投入ホッパ12の横位置に石抜等の異物選別機15を奥側に向けて配置する。この異物選別機15の側方に第2昇降機16eを配置し、この第2昇降機16eに選米出口15bおよび残米送路14gとともに精米機16の排出路16aを集合連通して循環精米する。そのほか、機械室2後部には、精米機16から接続する糠吸引部16fを介して糠袋16bを配置し、また、客室3側まで移送ダクト16dを分岐する。   In the machine room 2, a hulling machine 14 is arranged on the side of the loading hopper 12 projecting rearward of the partition wall 11 via the first elevator 14 e, and a pallet or the like is placed below the loading hopper 12 below it. The foreign matter sorter 15 is arranged facing the back side. A second elevator 16e is arranged on the side of the foreign matter sorter 15, and the rice mill 16 is connected to the discharge passage 16a of the rice milling machine 16 together with the rice selection outlet 15b and the remaining rice feed path 14g to circulate and polish the rice. In addition, a straw bag 16b is disposed in the rear part of the machine room 2 via a straw suction part 16f connected from the rice milling machine 16, and the transfer duct 16d is branched to the cabin 3 side.

客室3側は、図3の仕切壁の客室側正面図に示すように、籾投入用の投入ホッパ12と白米取出し用の白米タンク13を客室3に臨んで配置し、また、仕切壁11には精米処理の精白度の指定や料金投入のための操作部(操作盤)11aを設ける。白米タンク13下部に設けた取出部には小袋対応のために引出式の中段受台13bを組み込んで構成する。その側方に上記移送ダクト16dの先端を客室3に臨む糠取出部16pに開口する。操作盤11aまたは金庫ボックスは、投入ホッパ12、第1昇降機14e、異物選別機15のメンテナンスのためにメンテナンス扉として構成する。   On the side of the guest room 3, as shown in the front view on the guest room side of the partition wall in FIG. 3, a charging hopper 12 for pouring rice and a white rice tank 13 for taking out white rice are arranged facing the guest room 3. Is provided with an operation unit (operation panel) 11a for specifying the degree of milling of rice milling and charging a fee. The take-out section provided at the lower part of the white rice tank 13 is constructed by incorporating a drawer-type intermediate tray 13b for handling small bags. On the side thereof, the end of the transfer duct 16d is opened to the basket take-out portion 16p facing the passenger cabin 3. The operation panel 11a or the safe box is configured as a maintenance door for maintenance of the loading hopper 12, the first elevator 14e, and the foreign matter sorter 15.

(運転制御)
上記構成の籾摺精米設備の運転制御は、図4の見取図に示す操作部11aに従い、投入コインがコイン処理部11bで処理され、餅利用時は餅ボタン11cを押し、「上白」「標準」「8ぶ」の中から好みの白度を選択する白度ボタン11dにより対応の精米処理が設定されて籾摺精米設備が起動される。
(Operation control)
The operation control of the rice milling equipment having the above-described configuration is performed by the coin processing unit 11b processing coins inserted according to the operation unit 11a shown in the sketch of FIG. The corresponding rice milling process is set by the whiteness button 11d for selecting the desired whiteness from "8", and the rice milling equipment is activated.

籾摺精米設備の起動により、投入ホッパ12内に投入された籾は第1昇降機14eから籾摺機14、異物選別機15にて籾摺と異物選別処理がなされる。玄米が投入された場合は、米種センサ12dで判別され、籾摺ロール14aを開いた籾摺機14をそのまま通過して異物選別機15に入る。さらに、第2昇降機16eから精米機16により精米処理されて白米タンク13から取出し可能となる。また、チャージタンク16cには初期精米による処理米が一時貯留される。   As the rice hull milling machine is activated, the rice hulls put into the charging hopper 12 are subjected to the rice hulling and foreign matter sorting process by the first elevator 14e through the rice huller 14 and the foreign matter sorter 15. When brown rice is introduced, it is discriminated by the rice seed sensor 12d, and passes through the rice huller 14 with the hulling roll 14a open, and enters the foreign matter sorter 15. Further, the rice is processed by the rice mill 16 from the second elevator 16e and can be taken out from the white rice tank 13. The charge tank 16c temporarily stores treated rice from the initial milled rice.

(終了制御)
処理するべき籾全量について籾摺精米が終了に近づいた時点においては、制御部が籾摺精米終了間際であることを検出する信号に基づき所定時間の経過後に精米機が停止して籾摺精米設備の全ての装置が停止するまでの間、チャージタンク16cの一時貯留の初期精白処理米を含めて所定時間の精米処理を経た後に白米タンク13に全量を排出する。この時、精米機16の精白度は、玄米投入時は一定のままであるが、籾投入時は精白度を更に上げて稼動制御する。籾摺精米終了間際であることの検出は、投入ホッパ12の穀粒センサ12bのオフの検出によって判定し、また、玄米タンク下限センサ16bがオフ、コイン処理部11bにおける籾摺精米処理料金の全引去りの検出によって判定してもよい。
(End control)
When the total amount of rice bran to be processed is nearing the end of rice milling, the control unit stops the rice milling machine after a lapse of a predetermined time based on a signal for detecting that rice milling is about to end Until all the devices are stopped, after the rice milling process for a predetermined time including the initial milling process rice temporarily stored in the charge tank 16c, the whole amount is discharged into the white rice tank 13. At this time, the degree of milling of the rice milling machine 16 remains constant when the brown rice is introduced, but when the rice bran is introduced, the milling degree is further increased to control the operation. The detection that the milling rice is about to end is determined by detecting that the grain sensor 12b of the input hopper 12 is turned off, and the brown rice tank lower limit sensor 16b is turned off. You may determine by the detection of withdrawal.

上記のように籾摺精米設備を構成することにより、籾摺機14に受けた籾は玄米に処理されて精米機16に渡され、精米機16に渡された玄米は所定の精白度で精白されることにより籾が籾摺精米され、籾摺精米処理の終了間際で精白度を上げて精米機16が稼動制御され、この精米機16の精白処理により、終了までの間について籾摺りの不足が補われ、籾の全量について一定の精白度を確保することができる。   By configuring the rice bran milling equipment as described above, the rice bran received by the rice milling machine 14 is processed into brown rice and passed to the rice milling machine 16, and the brown rice passed to the rice milling machine 16 is polished at a predetermined milling degree. As a result, the rice bran is milled, the milling degree is increased just before the milling process is finished, and the milling machine 16 is controlled to operate. By the milling process of this rice milling machine 16, there is no shortage of milling until the end. It is compensated and a certain degree of whitening can be secured for the total amount of cocoons.

また、このような精米機16の精白度調節に代えて、または精白度調節と合わせて、玄米投入時より多くの量の初期精白処理米をチャージタンク16cに貯留するように切替弁16jを制御し、籾摺精米の終了間際に精米機16に追加することにより、玄米投入の場合より多くの量について長い循環時間で、かつ、精米機内に十分な量が充填されて精米処理できるので精白圧力が確保されて籾摺不足を補うことができる。   Further, in place of the milling degree adjustment of the rice milling machine 16 or in conjunction with the milling degree adjustment, the switching valve 16j is controlled so that a larger amount of the initial milled rice is stored in the charge tank 16c than when the brown rice is introduced. However, by adding it to the rice mill 16 just before the end of the rice milling rice, the milling pressure can be processed with a longer circulation time for a larger quantity than when brown rice is added and a sufficient amount is filled in the rice mill, so that the milling process can be performed. Can be secured to compensate for the lack of hulling.

(起動処理)
次に、籾摺精米設備を起動する際の米種判別に伴う制御処理について説明する。
投入ホッパ12の米種センサ12dによる籾・玄米の米種判別手段を備える籾摺精米設備において、その処理手順図を図5に示すように、利用者が白度ボタン11dを選択する前にその判別ができない場合(S1,S1a)は、ぶ搗き選択を可能として籾摺精米設備を起動(S2〜S5)し、「ぶ搗き」が選択されていても起動後の所定時間経過後の判別処理(S6)により籾の判別がされれば精米白度を「標準」に強制変更(S7)するとともに、対応のランプ表示をするように制御処理を構成する。
(Start process)
Next, a description will be given of a control process associated with rice type discrimination when starting up the rice milling machine.
As shown in FIG. 5, the processing procedure diagram in the rice milling rice mill equipment equipped with rice seed discrimination means of rice bran / brown rice by the rice seed sensor 12d of the input hopper 12 is shown in FIG. 5 before the user selects the whiteness button 11d. If discrimination is not possible (S1, S1a), the rice cracker milling equipment is activated (S2-S5) by enabling selection of rice cracking, and discrimination processing after a predetermined time has elapsed after activation even if “brushing” is selected If the rice bran is discriminated in (S6), the whiteness of the polished rice is forcibly changed to “standard” (S7), and the control process is configured to display the corresponding lamp.

精米工程おける白度については、籾について白度を「ぶ搗き」とすると精米機の圧力が「標準」より低いために籾が混じりやすくなることから、籾であることが判別された時点で白度を「標準」に変更することによって上記トラブルを防止することができ、また、利用者にとってもランプ表示により取扱いの変更を容易に認識することができる。   Regarding the whiteness in the rice milling process, if the whiteness of the rice bran is “blowing”, the pressure of the rice milling machine is lower than “standard” and the rice bran tends to be mixed. By changing the degree to “standard”, the above-mentioned trouble can be prevented, and the change of handling can be easily recognized by the user by the lamp display.

上記制御構成に対し、精米機までの工程を先行起動させて米種判別を行うように構成した場合は、料金投入後において、白度ボタン11dの選択前に米種判別を行い、判別結果が「籾」の場合は「ぶ搗き」の白度選択を不可とするように制御構成することができる。したがって、起動後に「籾」と判別された結果白度が「標準」に強制移行されることによる違和感を解消することができる。   For the above control configuration, when the process up to the rice milling machine is activated in advance to determine the rice type, the rice type is determined before the whiteness button 11d is selected after the fee is charged. In the case of “籾”, the control configuration can be made such that “brightness” whiteness selection is not allowed. Therefore, it is possible to eliminate a sense of incongruity caused by whiteness being forcibly shifted to “standard” as a result of determining “籾” after activation.

次に、籾についての白度制御について説明する。
米種判別により籾と判別された場合は、玄米と異なる白度制御を行う。白度調節のための精白圧力については、例えば、圧力ゼロから最高圧までの精米圧力の設定位置を0〜15の範囲とした場合に、玄米の白度処理は、上白、標準、8ぶ、5ぶの各白度についてそれぞれ12,10,9,7の精米位置による圧力設定とし、これに対して、籾の白度処理は、上白、標準、8ぶ、5ぶの各白度についてそれぞれ13,12,10,9の精米位置による高めの圧力設定とする。
Next, whiteness control for wrinkles will be described.
When rice is discriminated by rice type discrimination, whiteness control different from that of brown rice is performed. With regard to the whitening pressure for whiteness adjustment, for example, when the setting position of the rice polishing pressure from zero pressure to the maximum pressure is set to a range of 0 to 15, the whiteness processing of brown rice is white, standard, and eight. For each of the five whitenesses, the pressure is set according to the rice polishing positions of 12, 10, 9, and 7, respectively. On the other hand, the whiteness processing of the koji is the top white, standard, each of the eight whitenesses. Is set to a higher pressure setting according to the rice milling positions of 13, 12, 10, and 9, respectively.

このように米種に応じた圧力設定とすることにより、籾について玄米と同様の感覚で違和感の無い白度選択により、ぶ搗きの白度選択規制を利用者に強いることなく籾混入を防止することができる。   By setting the pressure according to the rice variety in this way, the whiteness selection with the same feeling as brown rice for the rice bran makes it possible to prevent the mixture of the rice cake without forcing the user to control the whiteness of the white rice. be able to.

次に、籾の処理に際して対象量が少ない場合の取扱いについて説明する。
利用者がぶ搗きの白度選択をし、投入された米種が籾と判別されて籾摺精米設備が起動された後に少量処理であることが判別された場合は、少量の籾の籾摺精米によって白米中に籾の混入が比較的多くなるので、そのような事態を防止するために以下のように制御処理を行う。
Next, handling in the case where the target amount is small at the time of processing for wrinkles will be described.
If the user selects the whiteness of the rice cracker, and the rice varieties that have been input are determined to be rice bran and the rice milling equipment is activated, it is determined that the processing is a small amount. Since milled rice contains a relatively large amount of rice bran, the following control process is performed to prevent such a situation.

「ぶ搗き」位置またはそれより低い圧力の精米位置で精米しつつ循環精米を行う。上記の「少量」であることの判断は、投入ホッパ12の穀粒センサ12bのオン時間が所定の時間に満たないことを判断基準とする。精米機の起動後は、通常の初期精米循環終了後も設定白度位置にて継続して行い、石抜機の残米排出完了時まで循環精米を行う。投入ホッパ12の穀粒センサ12bがオンであることを条件に精米排出を客室に行う。このように制御処理することにより、籾についてのぶ搗きが可能となる。   Circulating rice milling is performed while milling at a "brushing" position or at a rice milling position at a lower pressure. The determination of the “small amount” is based on whether or not the on-time of the grain sensor 12b of the charging hopper 12 is less than a predetermined time. After the start of the rice milling machine, it continues at the set whiteness position even after the end of the normal initial rice milling cycle, and the circulation rice milling is performed until the completion of the remaining rice discharging of the stone remover. The milled rice is discharged into the cabin on condition that the grain sensor 12b of the charging hopper 12 is on. By performing the control process in this manner, it is possible to fly about the wrinkles.

(センサ異常処理)
次に、センサ異常時の籾摺精米設備の制御について説明する。
籾摺精米設備の起動後の所定時間以内に精米機上部の玄米タンク16tの満量を検知する玄米タンク満量センサ16fがオンした場合はそのセンサ信号によるインターロックを解除して処理を続行する。このように運転制御することにより、センサ異常による運転停止を回避して処理が続行され、故障停止回数を減らすことができる。
(Sensor abnormality processing)
Next, control of the rice milling rice equipment when the sensor is abnormal will be described.
If the brown rice tank full sensor 16f that detects the fullness of the brown rice tank 16t in the upper part of the rice milling machine is turned on within a predetermined time after the start of the rice milling machine, the interlock by the sensor signal is released and the processing is continued. . By controlling the operation in this manner, it is possible to avoid the operation stop due to the sensor abnormality and to continue the processing, and to reduce the number of failure stops.

また、玄米タンク16tの空を検知する玄米タンク下限センサ16bがオンする前にタンク満量を検知する玄米タンク満量センサ16fが所定時間以内にオンした場合についても、上記同様に、玄米タンク満量センサ16fのセンサ信号に伴うインターロックを解除して処理を続行する。これにより、センサ異常による運転停止を回避して処理が続行され、故障停止回数を減らすことができる。なお、所定の時間経過後で玄米タンクがオンであればインターロック制御を行う。   Similarly, when the brown rice tank full sensor 16f for detecting the tank full level is turned on within a predetermined time before the brown rice tank lower limit sensor 16b for detecting the empty of the brown rice tank 16t is turned on, the brown rice tank full level is also detected. The interlock associated with the sensor signal of the quantity sensor 16f is released and the process is continued. Thereby, the process is continued while avoiding the operation stop due to the sensor abnormality, and the number of failure stop can be reduced. If the brown rice tank is on after a predetermined time has elapsed, interlock control is performed.

(玄米切換部)
次に、玄米切換部の構成について説明する。
玄米切換装置14cは電動切換弁により構成され、昇降機投げ口14hから石抜機15に案内する穀粒を客室3側に戻す際に切換え制御される。従来、玄米切換装置14cと昇降機投げ口14hとは個別に構成され、昇降機投げ口14hに点検口を備え、ボルト締結のフランジ接続により複雑に構成され、また、メンテナンスの際は個々の取付け、取外し、および切換弁の軸合わせのために多くの工数を要していた。
(Brown rice switching part)
Next, the configuration of the brown rice switching unit will be described.
The brown rice switching device 14c is constituted by an electric switching valve, and is switched when returning the grain guided from the elevator throw 14h to the stone remover 15 to the cabin 3 side. Conventionally, the brown rice switching device 14c and the elevator throw 14h are individually configured, the elevator throw 14h is provided with an inspection port, is configured in a complicated manner by bolted flange connection, and is individually installed and removed for maintenance. In addition, many man-hours are required to align the switching valves.

上記構成に伴う問題を解決すべく、玄米切換装置14cは、その要部構成図(a)とそのB矢視図(b)を図6に示すように、昇降機投げ口14hを合わせて一体化し、玄米切換装置14cのモータベース14bを取付ける開口に点検口の役割を持たせ、モータベース14bの取付けボルトを外すと切換弁一式がケーシングと分離可能に構成する。   In order to solve the problems associated with the above-described configuration, the brown rice switching device 14c is integrated with the elevator throwing port 14h as shown in FIG. 6 in its main part configuration diagram (a) and B arrow view (b). The opening for attaching the motor base 14b of the brown rice switching device 14c serves as an inspection port, and the set of switching valves is configured to be separable from the casing when the mounting bolt of the motor base 14b is removed.

このように構成することにより、接続フランジを廃してケーシング構成が簡易化され、玄米切換装置14cの切換弁の一体的な取扱いによりモータ軸の取付け調整を要することなく簡易に取付け・取外しができ、また、モータベース14b部の開口を点検口とする簡易な構成によって昇降機投げ口14hの点検口を要することなく一体的な内部メンテナンスが可能となる。   By configuring in this way, the connecting flange is eliminated, the casing configuration is simplified, and the integrated handling of the switching valve of the brown rice switching device 14c can be easily installed / removed without requiring adjustment of the mounting of the motor shaft, In addition, a simple configuration in which the opening of the motor base 14b is used as an inspection port enables integrated internal maintenance without requiring an inspection port for the elevator throwing port 14h.

(糠取出部)
次に、糠取出部の構成について説明する。
糠取出部16pは、その内部透過斜視図を図7に示すように、客室3に臨んで糠の移送ダクト16dを連通して構成し、そのまわりを囲んでフード16hを設ける。フード16hの底部は糠が通過可能な透過型に形成し、こぼれた糠が機械室内に入るように構成する。このように構成することにより、糠取出部16pに利用者が袋Bをセットして糠を持ち帰る際に糠がこぼれても客室3側に散乱することがなく、客室内の美化を保つことができる。
(Kashiwa removal department)
Next, the configuration of the cocoon extraction unit will be described.
As shown in FIG. 7, the basket take-out portion 16 p is configured to communicate with the cabin transfer duct 16 d so as to face the cabin 3, and is provided with a hood 16 h surrounding it. The bottom portion of the hood 16h is formed in a transmission type through which the cocoon can pass, and the spilled cocoon is configured to enter the machine room. By configuring in this way, even if a bag is spilled when the user sets the bag B in the bag take-out portion 16p and takes the bag home, it does not scatter to the cabin 3 side, and the beautification in the cabin can be maintained. it can.

籾摺精米設備の一例を示すシステム展開図である。It is a system development figure showing an example of a rice milling machine. 籾摺精米設備の機器配置図である。It is an equipment layout diagram of a rice milling machine. 仕切壁の客室側正面図である。It is a guest room side front view of a partition wall. 操作部の見取図である。It is a sketch of an operation part. 籾摺精米設備の起動処理手順図である。It is a starting process sequence diagram of a rice milling rice plant. 玄米切換部の要部構成図(a)とそのB矢視図(b)である。It is the principal part block diagram (a) of the brown rice switching part, and its B arrow line view (b). 糠取出部の内部透過斜視図である。FIG.

2 機械室
3 客室
11a 操作部
11b コイン処理部
12 投入ホッパ
12b 穀粒センサ
13 白米タンク
14 籾摺機
14e 昇降機
15 異物選別機(石抜機)
16 精米機
16a 排出路
16b 玄米タンク下限センサ
16c チャージタンク
16e 昇降機
16j 切替弁
16t 玄米タンク
2 Machine room 3 Guest room 11a Operation part 11b Coin processing part 12 Loading hopper 12b Grain sensor 13 White rice tank 14 Graining machine 14e Elevator 15 Foreign material sorter (stone removal machine)
16 Rice mill 16a Discharge path 16b Brown rice tank lower limit sensor 16c Charge tank 16e Elevator 16j Switching valve 16t Brown rice tank

Claims (1)

または玄米を投入する投入ホッパ(12)と、籾を籾摺処理する籾摺機(14)と、この籾摺機(14)により、籾摺された処理米を精白処理する精米機(16)と、精米機(16)の排出口にあって精白度を調節する圧迫板と、精白度を選択する操作部(11a)と、操作部(11a)で選択した精白度に基づき圧迫板を制御する制御部とを備え、
投入ホッパ(12)に玄米を投入した場合には籾摺機(14)による籾摺り処理を行なわずに精米機(16)で精米処理し、投入ホッパ(12)に籾を投入した場合には籾摺機(14)で籾摺り処理を行ってから精米機(16)で精白処理を行なう籾摺精米設備において、
前記投入ホッパ(12)に受けた籾または玄米について、その何れか該当種別を識別する米種識別手段(12d)を設け、
前記制御部は、精米作業終了間際の信号を検出すると、投入ホッパ(12)に玄米を投入した場合には、精米機(16)が停止するまでの間、操作部(11a)で選択した精白度のままで精白処理を行なうよう制御し、
投入ホッパ(12)に籾を投入した場合には、精米機(16)が停止するまでの間、操作部(11a)で選択した精白度からさらに精白度を上げて精白処理を行なうよう制御することを特徴とする籾摺精米設備。
A rice hopper (12) for feeding rice bran or brown rice, a rice huller (14) for processing rice bran, and a rice mill (16) for whitening the rice treated by this rice huller (14). ), A compression plate at the discharge port of the rice mill (16) for adjusting the degree of milling, an operation unit (11a) for selecting the degree of milling, and a compression plate based on the degree of milling selected by the operation unit (11a) A control unit for controlling,
When brown rice is put into the charging hopper (12), the rice milling process is performed by the rice milling machine (16) without performing the rice hulling process by the rice milling machine (14), and when the rice bran is put into the charging hopper (12) In the milling machine for rice milling, the milling process is performed by the milling machine (14) and then the milling process by the milling machine (16) .
For rice bran or brown rice received in the input hopper (12), a rice type identifying means (12d) for identifying any of the corresponding types is provided,
When the control unit detects a signal just before the completion of the rice milling operation, when brown rice is put into the feeding hopper (12), the whitening selected by the operation unit (11a) until the rice milling machine (16) stops. Control to perform whitening treatment at the same degree,
When the rice bran is put into the charging hopper (12), it is controlled to perform the whitening process by further increasing the whitening degree from the whitening degree selected by the operation unit (11a) until the rice milling machine (16) stops. The rice milling equipment is characterized by that.
JP2006130581A 2006-05-09 2006-05-09 Rice milling equipment Expired - Fee Related JP4697448B2 (en)

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Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004243321A (en) * 2004-05-31 2004-09-02 Iseki & Co Ltd Rice hulling and milling plant
JP2005262102A (en) * 2004-03-18 2005-09-29 Iseki & Co Ltd Automatic rice sweeper

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JPS62110752A (en) * 1985-11-06 1987-05-21 株式会社 山本製作所 Fixed-quantity rice-cleaning method
JP2831208B2 (en) * 1992-09-21 1998-12-02 株式会社クボタ Rice milling machine
JP2798079B2 (en) * 1996-11-27 1998-09-17 井関農機株式会社 Refining equipment

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005262102A (en) * 2004-03-18 2005-09-29 Iseki & Co Ltd Automatic rice sweeper
JP2004243321A (en) * 2004-05-31 2004-09-02 Iseki & Co Ltd Rice hulling and milling plant

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