JPS5949481A - Cereal drier with intermittent operation controller - Google Patents

Cereal drier with intermittent operation controller

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Publication number
JPS5949481A
JPS5949481A JP15741282A JP15741282A JPS5949481A JP S5949481 A JPS5949481 A JP S5949481A JP 15741282 A JP15741282 A JP 15741282A JP 15741282 A JP15741282 A JP 15741282A JP S5949481 A JPS5949481 A JP S5949481A
Authority
JP
Japan
Prior art keywords
grain
time
drying
drying operation
dryer
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.)
Pending
Application number
JP15741282A
Other languages
Japanese (ja)
Inventor
桑原 陽平
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shizuoka Seiki Co Ltd
Original Assignee
Shizuoka Seiki Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Shizuoka Seiki Co Ltd filed Critical Shizuoka Seiki Co Ltd
Priority to JP15741282A priority Critical patent/JPS5949481A/en
Publication of JPS5949481A publication Critical patent/JPS5949481A/en
Pending legal-status Critical Current

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  • Drying Of Solid Materials (AREA)
  • Adjustment And Processing Of Grains (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 この発明は、循環型穀物乾燥機の改良に係り、特に穀物
張込7T+に応じ−(乾燥運転時間と乾燥運転休止時間
とを算出し、各乾燥運転i1G関前に穀物張込計と穀物
水分(il′Iを測定しつつ乾燥運転と体11−運転と
を行い、効率的な乾燥を果1間欠運転制御装置を自する
穀物乾燥機に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to an improvement of a circulating grain dryer, and in particular calculates the drying operation time and drying operation stop time according to the grain loading 7T+, and The present invention relates to a grain dryer having an intermittent operation control device that performs drying operation and main operation while measuring grain moisture (il'I) with an infiltration gauge to achieve efficient drying.

従来の1111環型穀物乾jM機は、穀物の張込けにI
ll、、じて燃焼器の燃焼J辻を調節し、ごれにA、っ
て張込[11に無関係にほぼ一定の乾燥速度で(・2燥
を完−rlるように構成され゛(いる。
The conventional 1111 ring-type grain drying machine is
ll, then adjust the combustion point of the combustor and fill the dirt with A. There is.

しかし、従来のこのような装置i!i:によると、(1
)燃焼器の燃焼量の制御をほばl:5の燃焼幅(例えば
、1.2j!/hから6β/ h )の制御を要し、し
かもこの燃焼幅の全域において完全;P^焼をすること
が要求されており、例えばボッl一式バー−J−41+
<、の蒸発式浦バーナを使用する必要が41ニジる。そ
のため燃焼器自体が1111価であるばかりでなく、こ
の1Pλ焼器を制御するための制御装置も+i’li 
(+lliな1)のとなる不都合がある。(2)近時の
エネルキ事情のHB=、化によって、燃料は重質化の伸
開にあり従来の燃焼器によっては上記燃焼幅におりる全
域完全燃+、16 Let +、+、+5:1fなもの
であり、結果とし′(カーボン(=J着率の増大、燃料
の4L飛領域の拡大(未燃ガスの多発)等の不都合が4
にじる。(3)最小処理車に辺い張込1.)になるに1
jlfい、イ■二かりまでの穀物(族環回数が必然的に
多くなり、穀物は121(核的な114傷を受iJる不
都合がある。しかして、ごのよ・うな不都合を回避すべ
く、張込4’、!−に応して循1−f速度を変化させん
とすると、変速制御装置が’l;’rに必要とJ、; 
/)U川の増大を招く不都合がある。(4)熱風の送給
力式として、吸引型乾燥機が一般的であるか、この吸引
型乾燥機4J乾燥部のt′1圧により乾燥運転中に貯留
部に冷気が導入され、穀温を低1・゛さ−lまた穀粒間
の雰囲気をヱj「気で入れかえるため、穀粒間の水分j
オラを牛じさ・ける原因となっ′(いる。この)oめテ
ンパリング効↓ILを111なう不都合が生している。
However, such a conventional device i! According to i:, (1
) It is necessary to control the combustion amount of the combustor with a combustion width of approximately 1:5 (for example, from 1.2j!/h to 6β/h), and to achieve complete combustion over the entire range of this combustion width. For example, a complete set of bolts - J-41+
It is necessary to use an evaporative Ura burner. Therefore, not only the combustor itself has a valence of 1111, but also the control device for controlling this 1Pλ burner.
There is an inconvenience that it becomes (+lli 1). (2) Due to the recent energy situation, fuel is becoming heavier and heavier, and depending on the conventional combustor, complete combustion over the entire range within the above combustion range is possible. +, 16 Let +, +, +5: As a result, there are disadvantages such as an increase in the carbon (=J deposition rate) and an expansion of the 4L flight area of the fuel (many unburned gases).
Rainbow. (3) Staking out the edges of the minimum processing vehicle 1. ) becomes 1
If the number of grains is 121 (nuclear 114), the number of grains will inevitably increase, and the grain will suffer nuclear 114 damage.However, in order to avoid such inconvenience, When trying to change the circulation 1-f speed in response to the tensioning 4', !-, the speed change control device is required to 'l;'r.
/) There is an inconvenience that causes the increase of the U river. (4) As a hot air supply type, a suction type dryer is generally used, or the t'1 pressure of the drying section of this suction type dryer 4J introduces cold air into the storage section during drying operation, increasing the grain temperature. Low 1・゛Sa-l Also, because the atmosphere between the grains is exchanged with air, the moisture between the grains is
This causes the inconvenience of the tempering effect ↓ IL 111, which causes the odor to become irritated.

そごでこの発明の目的は、上記従来技術の欠点を改善す
るごとにある。
Therefore, an object of the present invention is to improve the drawbacks of the above-mentioned prior art.

」−配回的を達成すべく、この発明は、張込穀物量((
、l)が、最小処理量(Q)の幾倍(n)かを検知する
ための穀物センサを設り、乾燥運転時間(T I) )
をi’ I)−n ・L、(但しtは最小処理(けの循
環時間)により29出するとともに、乾燥運転体+1時
間(’I”s)を’r’ s = T t −′r1.
) (11j、 L、、′l″Lはテンパリンク時間;
一定)乙こよ〃)算出し、各乾燥運転iT1開前に張込
穀物量を山検知し−(前記乾燥運転時間(’I’l))
および(・2燥運転体11一時間(”l” s )を決
定しつつ乾燥運転を行う沖転制御装:4″を設りたごと
をll、冒!女とする。
” - In order to achieve this goal, this invention aims to reduce the amount of loaded grain ((
A grain sensor is installed to detect how many times (n) is the minimum throughput (Q), and the drying operation time (T I) is
i' I) - n ・L, (where t is 29 due to the minimum treatment (circulation time), and the drying unit + 1 hour ('I's) is 'r' s = T t -'r1 ..
) (11j, L,,'l''L is tempering link time;
(constant)) Calculate and detect the amount of loaded grain before each drying operation iT1 starts - (the drying operation time ('I'l))
And (2) It is a blasphemy to have installed a rolling control device: 4'' that performs drying operation while determining the drying operation unit 11 time ("l"s).

以下図面に基づいてこの発明の実h113例を説明する
An actual example of the present invention will be described below based on the drawings.

第1図において、循環型の穀物く・λ燥機2は、H1i
!留部4、乾燥部6、′8I′、穀部8を自し、lJ+
旨月j9jこ、l幻穀物を揚上し、七部搬送手1.貨1
0に、1って乾j(ψ捜2の−に部中央部まで搬送し、
均分子l立126ご、1、っ7 tl’i’留部4中に
均分落下さ一ヒ、乾燥j:II (iからi・“七を出
しバルブ14によ、っ゛(k&送毛段16に送り、11
1び揚穀機にまり揚−ヒするという循環を繰り返しつつ
この間に穀物の乾燥を行うものである。
In FIG. 1, the circulating grain dryer 2 is H1i
! Holding section 4, drying section 6, '8I', grain section 8, lJ+
Umatsuki j9j This day, I lifted up the phantom grains, and the seven-part carrier 1. currency 1
0, 1 is transported to the center of the - part of ψ search 2,
126 tl'i' 7 tl'i' Drop the 126 tl'i' evenly into the reservoir 4, and dry it. Send to hair stage 16, 11
The cycle of drying the grain in the drying machine is repeated, and the grain is dried during this cycle.

前記貯留部4の側板には、はし、f等間l’lilに−
Fカの最小処理型位置に第1センナ1B−1を設り1、
二の最小処理量位置の整数倍イ1装置に夫々第2センサ
111−2 、第3センジ・18−3、第41!ンウ1
))−4、第5センサ18−5、そしてh’i I一部
に第らセンサI 8−6を設りる。そしてこれらのセン
サにJ、って、穀物の張込I4−検知するのである。
On the side plate of the storage section 4, there are a pair of chopsticks, a space between f and l'lil, and -
Install the first sensor 1B-1 at the minimum processing type position of F force 1,
The second sensor 111-2, the third sensor 18-3, the 41st sensor 111-2, the third sensor 18-3, the 41st ! Nwu 1
))-4, a fifth sensor 18-5, and a third sensor I 8-6 in a part of h'i I. These sensors J detect the grain filling I4.

また乾1〜1部Gのために熱風をz、l成する燃焼器と
しては、ガンタイプバーナ等の1ゾ>N式油ノ\−すを
使用し、′1・’I’+ L、ニー・定の)ご4焼I1
1を安定し’(6(C保しく!Iるタイプの燃焼器とし
、瞬時に着火、消火が可能なものをi、i、+7える。
In addition, as a combustor that generates hot air for dry 1 to 1 part G, a 1zo>N type oil nozzle such as a gun type burner is used, and '1・'I'+L, Nee・Sadano) 4 grilled rice I1
1 is a type of combustor that is stable and can be instantly ignited and extinguished by i, i, +7.

この噴霧j1、油ハ′−すを使用するごとによって、コ
ストの低廉化を図ることができる。
By using the spray j1 and the oil bath, costs can be reduced.

(しかし所望によっては、ボットj(バーナ等の蒸発式
浦バーナを使用することもilJ fiヒである。)ま
た1ノ1風機とし゛(は、従来のごとき定速のものを(
Aliえ、乾燥t+++ Gは吸引型とする。47N、
出しバルブ等の循環機構とし°(も通電の定速型のもの
で1′遍い。また慝送糸の所望の位置に自動水分検り、
1已ム置20を設りる。またごの乾燥機全体の制御を行
うために、制御装置+??22を設りる。
(However, depending on your needs, it is also possible to use an evaporative type burner such as a bot.
Ali, dry t+++ G is a suction type. 47N,
The circulation mechanism such as the discharge valve (also energized constant speed type with 1' uniformity).
A 1-way station 20 will be installed. In addition, in order to control the entire dryer, the control device +? ? 22 will be established.

次にこの乾燥機を制御するための?、iii算式につい
て説明する。
Then to control this dryer? , iii formula will be explained.

穀物の最小処理量をqとし、張込穀物量をQと′4゛ろ
。張込穀物量Qの最小処理1i) Qにグ゛lする倍率
を11、最小処理量の循環時間を1 (分)、う−ンバ
リング時間をI’t(分)とする。ソ11おLと′1゛
Lは乾1:vi tハiによって定まる機械定数である
。このとき、:42.35.、:、運転紺績1時間T 
D (分) ト’、’i+ 1.3+3 Bi ’Ii
2 体、11一時間1’s(分)u以下の式で定まる。
The minimum amount of grain to be processed is q, and the amount of grain to be loaded is Q and '4'. Minimum treatment of grain loading Q 1i) Let the magnification for Q be 11, the circulation time of the minimum treatment amount be 1 (minute), and the counting time be I't (minute). So11oL and '1゛L are mechanical constants determined by dry1:vithii. At this time: 42.35. :、Driving result 1 hour T
D (minute) To','i+ 1.3+3 Bi 'Ii
2 bodies, 11 hours 1's (minutes) u is determined by the following formula.

′I″I) = n  ・ L T s ==”1’(、−n−を 例えば乾燥機の最小処理量(1か5(10kg、循工(
′3速度Wが40kfr/分であったとずれは、t =
 q 7w−500/イ(1=12.5分となるつごの
乾ノ;1・11?Ijのテンパリング時間か90分であ
っノごとする。
'I''I) = n ・ L T s == ``1'' (, -n-, for example, the minimum throughput of the dryer (1 or 5 (10 kg, circulating (
'3 If the speed W is 40 kfr/min, the deviation is t =
q 7w-500/a (1 = 12.5 minutes); 1.11? Ij tempering time is 90 minutes.

今、張込穀物IfQが最小処理(iqの5倍であったと
する。即ぢn = 5、よってi” D −n ・+、
 = 5 x12.5−62.5分、−力 ′I’ s
 =’l’ t  −n ・t−!10−62.5−2
7.5分と算出されるう次に、第2図にしめずフt、I
−ヂ中−1・G、二基づいて]−稈を説明する。
Now, suppose that the grain IfQ is the minimum processing value (5 times iq. So, n = 5, so i" D −n ・+,
= 5 x12.5-62.5 min, -force 'I' s
='l't-n・t-! 10-62.5-2
Next, it is calculated as 7.5 minutes.
- Based on 1, G and 2] - Explain the culm.

電源を○N50にすると、乾燥スイッチがONか否かを
判断52し、もしく・λ燥スイッチか(月=゛I)7、
yらば、張込スイッチ54がONかとっかを刊11j1
54する。もし張込スイッチがONであれば、張込上稈
C″二移る。張込スイッチがOIrFであれば利用スイ
ッチかONかとうかを1′す1折するわりである・が、
1ノ1出スイツチがONであれば排出工程に移る。
When the power is set to ○N50, it is determined whether the drying switch is ON or not.
If the stake-in switch 54 is ON or not, issue 11j1.
54. If the stake-in switch is ON, the stake-in upper culm C''2 will be moved.If the stake-in switch is OIrF, the use switch is turned ON or not.
If the 1/1 output switch is ON, the process moves to the discharge process.

υY出スイッチがOFFの状態以後の工程については、
ごの発明の要部でないので説明を省111hする。
Regarding the process after the υY output switch is OFF,
Since this is not an essential part of the invention, the explanation will be omitted.

乾燥スイッチが○N52であれば、前記第1〜6センザ
18−1〜18−6によりnの検出58を行う。さらに
前述の演算式に従い、l” D = n・tの演g’/
、 G (]、i” s = i’ t −n −L 
O)演算62、を行い′I″Dと′1゛sをq°出する
。次に乾燥機の燃焼器、搬送糸、fJ1’! J!、”
マ系、送風系をずベー(起動64し、例えしよ夏1−5
ならば62.5分の乾燥運転を1陸続する。時間′I゛
が’I゛I)を経過したかどうかを判断66し、i’ 
l)に達しない場合には燃焼器、till送系、循環系
、送風系の駆動64を繰り返す。時間1′が′1゛Dを
経過すると搬送部の水分検知装置20が作動し、水分イ
lllrmを設定水分子’nsと比較し、設定4N、j
、り低りれば<1λ燥槻を全停止1−シ、終了ランプを
表示70する。また、設定水分より多い場合には乾燥I
N、は休止72する。つまり、所定のナンバリング時間
を倖保すべく体11ニジ、燃焼器、搬送系、循環系、送
風系の駆動を停止する。次に′1゛sの体11゛時間が
経過したか否かを判断74し、′!’s(例えばn=5
の場合なら27.5分)以にの時間が経過したならば再
びnを再検出58し、i” I)、′1゛Sを演1(,
60,62し直し−この結果に基づいた必要な乾燥運転
に入り所定水分値まで乾燥を繰りjしず。
If the drying switch is ◯N52, the first to sixth sensors 18-1 to 18-6 perform detection 58 of n. Furthermore, according to the above-mentioned formula, the operation g'/ of l''D = n・t
, G (], i” s = i' t −n −L
O) Perform operation 62 and obtain 'I''D and '1゛s q°.Next, dryer combustor, conveyance yarn, fJ1'! J!,''
Ma system, ventilation system (start 64, let's say summer 1-5
In that case, one continuous drying operation takes 62.5 minutes. Determine 66 whether time 'I' has passed 'I'I', and i'
1), the operation 64 of driving the combustor, till system, circulation system, and ventilation system is repeated. When time 1' has passed '1'D, the moisture detection device 20 in the conveying section is activated, and the moisture level llrm is compared with the set water molecule 'ns, and the setting 4N, j
If it drops to <1λ, the dryer is completely stopped and the end lamp is displayed 70. Also, if the moisture content is higher than the set value, dry I
N, pauses 72. That is, in order to preserve the predetermined numbering time, the drive of the body 11, the combustor, the conveyance system, the circulation system, and the ventilation system is stopped. Next, it is determined 74 whether or not 11 seconds of '1's have elapsed, and '! 's (e.g. n=5
If the time has elapsed (27.5 minutes in the case of
60, 62 - Start the necessary drying operation based on the results and do not repeat the drying until the predetermined moisture value is reached.

以」−の説明から明らかtくように1、二の発明に、1
、れば以下の効果をfUる。
As is clear from the explanation below, inventions 1 and 2,
, the following effects will be obtained.

(1)、乾燥運転時間中は一定;〃焼を行う構成とした
ので、燃焼器として安定;混焼を果し安価なガンタイプ
バーナ等の噴霧式油バーナを使用することができ、信頼
性、安全性、保守点検の軽減に優れ、またコストも低度
となる利点がある。
(1) Constant during drying operation time; Stable as a combustor due to the structure that performs combustion; Co-combustion allows use of inexpensive spray-type oil burners such as gun-type burners; reliability; It has the advantage of being excellent in safety, reducing maintenance and inspection, and also being low in cost.

(2)、乾燥運転時間中におい′(は、はぼ一定計の燃
焼を行う構成とし、乾燥運転体重時間中においては全く
燃焼を行わない構成としたので、燃料の重質化への代替
はもとより、イー1炭や木41′(系燃料智でも吸込送
風機の1゛:!止開始制御により実??的ON、OF 
F制御か可能となり、この発明を実施することができる
(2) During the drying operation time, the combustion is performed at a constant rate, and during the drying operation time, no combustion is performed at all, so the alternative to heavier fuel is Of course, even with E1 charcoal or wood 41' (system fuel), the suction blower's 1゛:!Stop/start control can be used to turn on and off the air.
F control becomes possible and the present invention can be implemented.

(狙穀物の処理1iか少量の場合においても、一定燃焼
をさせる構成としたので、熱風?!!度が高YM1のK
EうがJn ?%l効イシイ4いというエネルギ法則を
利用し1:1”(、燃費勿J率向士が果され省エネルギ
に寄与しfUる。
(Even if the target grain is processed at 1i or a small amount, we have a configuration that allows constant combustion, so hot air?!!K of high YM1
Euga Jn? Utilizing the energy law of 4% efficiency, the fuel efficiency is increased to 1:1, contributing to energy savings.

(4)、穀物処理用が少(Uである場合でも、穀物は所
定回数しか循環されないので、従来のごとく過剰循環に
より物理的[3傷をきたす不都合がない。
(4) Even if the amount of grain used for processing is small (U), the grain is circulated only a predetermined number of times, so there is no inconvenience of physical damage caused by excessive circulation as in the conventional method.

また、乾燥機自体の軸受ベル1−等、乾1・°φ系、循
環系の機械部品の劣化が仕ぜす、使用)Y命が長くなり
保守が容易となる。
In addition, deterioration of mechanical parts such as the bearing bell 1- of the dryer itself, the drying system 1/°φ system, and the circulation system results in a longer service life and easier maintenance.

(5)、従来の吸込型乾燥機は乾燥部の負圧によって、
貯留曲中の穀物に冷気が導入される不都合があり、これ
によっ−C穀粒間の水分ムラが生じナンバリング効果を
111なっていたが、この発明によれば4jλ燥時以夕
1は運転を休止すく−構成としたので、穀渚、の維持G
、1もとより水分J・フカリjG il:され、さらに
呼吸熱にJoる穀温上昇とそれに、1、っ0しjイ看1
,7゛−゛内水付拡散のOt進等により、brましいラ
ーンパリングエ屋境を実現すること力くできる。rl”
、 ノこ、これCに31 っ゛C1;然費リノ率が向−
1するりJ果も111る。
(5) Conventional suction type dryers use negative pressure in the drying section to
There is an inconvenience in that cold air is introduced into the grains during storage, which causes uneven moisture between the grains, resulting in a numbering effect of 111. However, according to this invention, 4jλ is not operated after drying. Since we have made it a pause configuration, we can maintain the G
In addition to moisture content, the temperature of the grain increases due to respiratory fever, and
, 7゛-゛With internal water diffusion, etc., it is possible to realize a beautiful Ramparingue house. rl”
, No, this is 31 ゛C1; Natural cost reno rate is going -
The number of J fruit is also 111.

(6)、穀物張込量が各循環ごとに検出し直され°(い
るので、乾燥工程の進行にともない実質1゛1′刊16
込mの減少が生じてもナンバリング時間なしでilYび
※L燥工、Lj、iに入るという不都合がなく、連続2
度)・′/:燥等が律ぜず穀物の品質を1(1なう危険
がない。
(6) The amount of grain loaded is re-detected at each cycle.
Even if there is a decrease in m, there is no inconvenience of entering ilY*L drying, Lj, i without numbering time, and 2 consecutive
degree)・'/: There is no risk of the quality of the grain becoming 1 (1) without being affected by drying, etc.

【図面の簡単な説明】[Brief explanation of drawings]

第1図は穀物乾燥機の相11)1面止面図、第2図C5
1間欠運転制御を説明するソ+:+ −:f−ヤー1−
である。 図において、2は穀物乾燥機、4G11貯留部、I)(
−1−18−6は夫り第1センサ〜第6センザ、20は
水分検知装置、そして22は制御装置である。 代理人 弁理士 西郷、% 〕’、i
Figure 1 is a top view of phase 11) of the grain dryer, Figure 2 C5
1 Explaining intermittent operation control
It is. In the figure, 2 is a grain dryer, 4G11 storage part, I) (
-1-18-6 are first to sixth sensors, 20 is a moisture detection device, and 22 is a control device. Agent Patent Attorney Saigo,%〕',i

Claims (1)

【特許請求の範囲】[Claims] 張込穀物jd (Q )が最小処理&t(q)の幾倍(
rl)かを検知するための穀物センジーを設の、乾燥運
転時間(′1゛D)を’r1.) −n−1、(但しt
は最小処理3g(の循環時間)に、1、幻算出するとと
もに、乾燥運転休止時間(”I”s>を′I″s=1”
L −TD(但し、′1゛Lはナンバリンク1時一定一
定)により算出し、各乾燥運転再開前に張込穀物量を再
検知して前記乾燥運転時間(′I’ I) )および乾
燥運転休止時間(Ts)を決定しつ°つ乾燥運転を行う
運転制御装置6を設けたことを特徴とする間欠運転制御
装置6をイ1する穀物乾燥機。
How many times (
A grain sensor is installed to detect whether the drying operation time ('1゛D) is 'r1. ) −n−1, (but t
is the minimum processing time of 3g (circulation time), and calculate the drying operation stop time ('I's=1')
L-TD (however, '1゛L is constant at number link 1), and before resuming each drying operation, the amount of loaded grain is re-detected and the drying operation time ('I' I)) and drying time are calculated. A grain dryer equipped with an intermittent operation control device 6, characterized in that it is provided with an operation control device 6 that performs drying operation while determining an operation stop time (Ts).
JP15741282A 1982-09-11 1982-09-11 Cereal drier with intermittent operation controller Pending JPS5949481A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP15741282A JPS5949481A (en) 1982-09-11 1982-09-11 Cereal drier with intermittent operation controller

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP15741282A JPS5949481A (en) 1982-09-11 1982-09-11 Cereal drier with intermittent operation controller

Publications (1)

Publication Number Publication Date
JPS5949481A true JPS5949481A (en) 1984-03-22

Family

ID=15649065

Family Applications (1)

Application Number Title Priority Date Filing Date
JP15741282A Pending JPS5949481A (en) 1982-09-11 1982-09-11 Cereal drier with intermittent operation controller

Country Status (1)

Country Link
JP (1) JPS5949481A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59202384A (en) * 1983-04-28 1984-11-16 井関農機株式会社 Controller for combustion of burner in circulation type cereal grain drier
JPS62186185A (en) * 1986-02-12 1987-08-14 金子農機株式会社 Method of drying cereal
JPS63148085A (en) * 1986-12-10 1988-06-20 井関農機株式会社 Drying suspension controller in cereal grain drier
JPS63151360A (en) * 1986-12-16 1988-06-23 金子農機株式会社 Combustion control method in cereal drier

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5714173A (en) * 1980-06-28 1982-01-25 Shizuoka Seiki Co Ltd Controlling of circulation type grain dryer
JPS5760171A (en) * 1980-09-26 1982-04-10 Yamamoto Mfg Drying of grain particle

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5714173A (en) * 1980-06-28 1982-01-25 Shizuoka Seiki Co Ltd Controlling of circulation type grain dryer
JPS5760171A (en) * 1980-09-26 1982-04-10 Yamamoto Mfg Drying of grain particle

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59202384A (en) * 1983-04-28 1984-11-16 井関農機株式会社 Controller for combustion of burner in circulation type cereal grain drier
JPS62186185A (en) * 1986-02-12 1987-08-14 金子農機株式会社 Method of drying cereal
JPH0544594B2 (en) * 1986-02-12 1993-07-06 Kaneko Agricult Machinery
JPS63148085A (en) * 1986-12-10 1988-06-20 井関農機株式会社 Drying suspension controller in cereal grain drier
JPS63151360A (en) * 1986-12-16 1988-06-23 金子農機株式会社 Combustion control method in cereal drier

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