JPH0646138B2 - Hot air temperature setting device for grain dryer - Google Patents

Hot air temperature setting device for grain dryer

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Publication number
JPH0646138B2
JPH0646138B2 JP8083385A JP8083385A JPH0646138B2 JP H0646138 B2 JPH0646138 B2 JP H0646138B2 JP 8083385 A JP8083385 A JP 8083385A JP 8083385 A JP8083385 A JP 8083385A JP H0646138 B2 JPH0646138 B2 JP H0646138B2
Authority
JP
Japan
Prior art keywords
grain
hot air
weight
burner
air temperature
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 - Lifetime
Application number
JP8083385A
Other languages
Japanese (ja)
Other versions
JPS61240087A (en
Inventor
弘践 上谷
清明 水津
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.)
Iseki and Co Ltd
Original Assignee
Iseki and 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 Iseki and Co Ltd filed Critical Iseki and Co Ltd
Priority to JP8083385A priority Critical patent/JPH0646138B2/en
Publication of JPS61240087A publication Critical patent/JPS61240087A/en
Publication of JPH0646138B2 publication Critical patent/JPH0646138B2/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Description

【発明の詳細な説明】 産業上の利用分野 この発明は、穀粒乾燥機の熱風温度設定装置に関する。TECHNICAL FIELD The present invention relates to a hot air temperature setting device for a grain dryer.

従来の技術 従来、バーナより発生する熱風温度を手動で切替えて設
定する切替装置を有し、貯留室内へ収容した張込穀粒量
を目視で判定して、その張込穀粒量によって該切替装置
を手動操作して、該バーナより発生する熱風温度を設定
する装置であった。
Conventional technology Conventionally, there is a switching device that manually switches and sets the hot air temperature generated from the burner, and visually determines the amount of grain loaded in the storage chamber, and switches according to the amount of grain loaded. The device was a device for manually operating the device to set the temperature of hot air generated from the burner.

発明が解決しようとする問題点 貯留室内へ収容した穀粒を目視で判定し収容量を決定し
て、熱風温度を切替える切替装置を操作して、バーナよ
り発生する熱風温度を設定し、該バーナで発生する熱風
を排風機で吸わせることにより、乾燥室を横断通風さ
せ、該貯留室から該乾燥室内を流下中の穀粒を、この熱
風に晒して乾燥させる形態の乾燥機では、この乾燥作業
開始のときに機壁を設けた覗窓より、この貯留室内へ収
容した穀粒量を目視で判定して決定していたために、該
貯留室内の穀粒の配穀状態が悪いと正確な収容量が判定
できないことがあり、このため設定した熱風温度が高過
ぎて、穀粒は過乾燥となり胴割が発生したり、又設定温
度が低過ぎて、所定の乾燥速度が得られないことがあっ
た。
Problems to be Solved by the Invention The grain stored in the storage chamber is visually determined to determine the storage amount, and the switching device for switching the hot air temperature is operated to set the hot air temperature generated by the burner. By sucking the hot air generated by the blower with a blower, the drying chamber is cross-ventilated, and the grains flowing down from the storage chamber into the drying chamber are exposed to the hot air to be dried, so that the drying When the work was started, the amount of kernels stored in the storage room was visually determined and determined from the view window provided with the machine wall. The storage capacity may not be determined, so the set hot air temperature is too high and the kernel is over-dried, causing cracking, or the set temperature is too low and the specified drying speed cannot be obtained. was there.

問題点を解決するための手段 この発明は、機壁(1)内の上部には貯留室(2)を又
下部には乾燥室(3)を設け、この貯留室(2)内へ穀
粒を供給する一側部に穀粒張込漏斗(4)を有する昇穀
機(5)を該機壁(1)の一側部に設け、この穀粒張込
漏斗(4)近傍部には張込穀粒を一旦置いてこの穀粒張
込漏斗(4)より該昇穀機(5)を経て該貯留室(2)
内へ張込む穀粒の重量を検出する下部に重量検出センサ
ー(6)を有する張込穀粒受台(7)を設けると共に、
該機壁(1)一側部には熱風が発生するバーナ(8)を
設け、該張込穀粒受台(7)上に一旦乗せた穀粒重量を
該重量検出センサー(6)が検出しこの検出した穀粒重
量によって、該バーナ(8)より発生する熱風温度を設
定制御する制御装置を設けてなる穀粒乾燥機の熱風温度
設定装置の構成とする。
Means for Solving the Problems The present invention provides a storage chamber (2) in the upper part of a machine wall (1) and a drying chamber (3) in the lower part of the machine wall (1). A grain raising machine (5) having a grain squeezing funnel (4) on one side is provided on one side of the machine wall (1), and in the vicinity of the grain squeezing funnel (4). Once the grain is placed, the grain funnel (4) is passed through the grain raising machine (5) and then the storage chamber (2).
In addition to providing a swelling grain pedestal (7) having a weight detection sensor (6) at the lower part for detecting the weight of the swelling grain,
A burner (8) for generating hot air is provided on one side of the machine wall (1), and the weight detection sensor (6) detects the weight of the grain once placed on the overhanging grain receiving base (7). The hot air temperature setting device of the grain dryer is provided with a controller for setting and controlling the hot air temperature generated by the burner (8) based on the detected weight of the grain.

発明の作用、および効果 機壁(1)内に収容した穀粒を、貯留室(2)から乾燥
室(3)内を繰出し流下させながら、バーナ(8)で発
生した熱風を排風機で吸わせて、該乾燥室(3)を横断
通風させて、この乾燥室(3)内を流下中の穀粒をこの
熱風に晒して乾燥させるが、この乾燥作業のときに、該
機壁(1)内へ張込む穀粒は、張込穀粒受台(7)上に
一旦乗せてこの張込穀粒受台(7)より、穀粒を穀粒張
込漏斗(4)内へ供給し、昇穀機(5)で上部へ搬送さ
れ、該貯留室(2)内へ収容するが、該張込穀粒受台
(7)上に一旦乗せた穀粒は、この張込穀粒受台(7)
下部に設けた重量検出センサー(6)で重量が検出され
て積算され、該貯留室(2)内へ収容した穀粒の全重量
が検出され、この検出した穀粒重量によって制御装置で
該バーナ(3)より発生する熱風温度を設定制御させて
乾燥させる。
Action and Effect of the Invention Grains stored in the machine wall (1) are drawn from the storage chamber (2) into the drying chamber (3) and allowed to flow down, while the hot air generated in the burner (8) is sucked in by an exhaust fan. Accordingly, the drying chamber (3) is ventilated across the drying chamber (3) to expose the grains flowing down in the drying chamber (3) to the hot air for drying, but at the time of this drying operation, the machine wall (1 ), The grain to be put into the inside is once placed on the put-in grain receiver (7), and the grain is supplied from the put-in grain receiver (7) into the grain-filling funnel (4). The grain is transferred to the upper part by the grain raising machine (5) and is stored in the storage chamber (2). The grain once placed on the grain receiving stand (7) is Table (7)
The weight detection sensor (6) provided in the lower portion detects and integrates the weight, and the total weight of the grains stored in the storage chamber (2) is detected. The burner is controlled by the controller by the detected weight of the grains. The hot air temperature generated in (3) is set and controlled to dry.

従来は、該貯留室(2)内へ収容した穀粒量を目視で判
定して、この収容量により切替装置を手動操作して、該
バーナ(8)より発生する熱風温度を設定する装置であ
ったが、本発明により該貯留室(2)内へ収容した穀粒
の全重量が該検出センサー(6)で検出され、この検出
値によって該バーナ(8)より発生する熱風温度が該制
御装置で設定されるため、該貯留室(2)内へ収容した
穀粒量に見合った熱風温度となるため、穀粒は過乾燥と
なって胴割が発生することもなく、又常に所定の乾燥速
度で穀粒は乾燥される。
Conventionally, a device for visually determining the amount of grains stored in the storage chamber (2) and manually operating the switching device according to the stored amount to set the hot air temperature generated by the burner (8). However, according to the present invention, the total weight of the grains contained in the storage chamber (2) is detected by the detection sensor (6), and the hot air temperature generated by the burner (8) is controlled by the detection value. Since the temperature is set by the device, the hot air temperature corresponds to the amount of grains stored in the storage chamber (2), so that the grains will not be overdried and the barrel splitting will not occur. The grain is dried at the drying rate.

実施例 なお、図例において、乾燥機(9)の機壁(1)は前後
方向に長い平面視長方形状で、前後壁板及び左右壁板よ
りなり、この機壁(1)上部には天井板(10)、(10)
を設け、該前壁板部にはこの乾燥機(9)を始動、停止
及び各部を制御する操作装置(11)を着脱自在に設けた
構成である。
Embodiment In the illustrated example, the machine wall (1) of the dryer (9) has a rectangular shape in plan view which is long in the front-rear direction, and is composed of front and rear wall plates and left and right wall plates. Plates (10), (10)
The front wall plate portion is detachably provided with an operation device (11) for starting, stopping and controlling each of the dryers (9).

該機壁(1)下側中央部に位置して前後方向に亘る移送
ラセンを内装した正面視字状の下部移送樋(12)を設
け、この下部移送樋(12)上には正面視V字状の集穀室
(13)を設けて連通させ、この集穀室(13)上には縦方
向に乾燥室(3)、(3)を左右通風網板間に形成して
連通させ、この乾燥機(3)、(3)下部には穀粒を繰
出す回動自在な繰出バルブ(14)、(14)を設けた構成
である。
A lower transfer gutter (12), which is located in the center of the lower side of the machine wall (1) and has a transfer spiral extending in the front-rear direction, is provided in the shape of a front view, and the lower transfer gutter (12) has a front view V. A letter-shaped grain collecting chamber (13) is provided to communicate with each other, and drying chambers (3) and (3) are vertically formed on the grain collecting chamber (13) so as to communicate with each other, Under the dryers (3) and (3), rotatable feeding valves (14) and (14) for feeding grains are provided.

該各通風網板上側には傾斜板を設け、下側には仕切板を
設け、該内側通風網板間には熱風室(15)を形成して、
前記前壁板部に設けたバーナケース(16)内に内蔵して
設けたバーナ(8)と連通させ、該外側通風網板と前記
左右壁板間には排風室(17)、(17)を形成して、該後
壁板部に設けた排風機(18)と連通させた構成である。
該バーナケース(16)下壁板外側には、該バーナ(8)
内へ燃焼用燃料を供給する燃料ポンプ(19)を設け、前
記機壁(1)前部に設けた燃料タンク(20)より燃料ホ
ース(21)、該燃料ポンプ(19)及び燃料供給管(22)
を経て該バーナ(8)内へ燃焼用燃料を供給する構成で
あり、燃焼用燃焼風は該バーナケース(16)上壁板外側
に設けた送風機(23)及び送風機用モータ(24)で送風
ダクト(25)を経て該バーナ(8)内へ燃焼用燃焼風が
送風される構成である。
An inclined plate is provided on the upper side of each ventilation net plate, a partition plate is provided on the lower side, and a hot air chamber (15) is formed between the inner ventilation net plates,
A burner case (16) provided in the front wall plate portion is communicated with a burner (8) built in the burner case (16), and the exhaust chambers (17), (17) are provided between the outer ventilation plate and the left and right wall plates. ) Is formed and communicated with the exhaust fan (18) provided on the rear wall plate portion.
The burner (8) is provided outside the lower wall plate of the burner case (16).
A fuel pump (19) for supplying combustion fuel to the inside is provided, and a fuel hose (21), a fuel pump (19) and a fuel supply pipe (from a fuel tank (20) provided at the front part of the machine wall (1). twenty two)
The fuel for combustion is supplied into the burner (8) through the burner (8), and the combustion air for combustion is blown by the blower (23) and the blower motor (24) provided outside the upper wall plate of the burner case (16). The combustion air for combustion is blown into the burner (8) through the duct (25).

前記機壁(1)下部右側にはモータ(26)を設け、この
モータ(26)で前記繰出バルブ(14)、(14)、前記下
部移送樋(12)内の移送ラセン及び該排風機(18)等を
回転駆動する構成である。
A motor (26) is provided on the lower right side of the machine wall (1), and by the motor (26), the feeding valves (14) and (14), the transfer spiral in the lower transfer gutter (12), and the exhaust fan ( 18) etc. are rotationally driven.

前記乾燥室(3)、(3)上側には貯留室(2)を形成
し、この貯留室(2)上側の前記天井板(10)、(10)
に沿って移送ラセンを内装した上部移送樋(27)を設
け、この上部移送樋(27)中央部には移送穀粒をこの貯
留室(2)内へ供給する供給口を開口し、この供給口下
部には拡散盤(28)を設け、この拡散盤(28)で該貯留
室(2)内へ穀粒を均等に拡散還元する構成である。
A storage chamber (2) is formed above the drying chambers (3) and (3), and the ceiling plates (10) and (10) above the storage chamber (2) are formed.
An upper transfer gutter (27) having a transfer helix inside is provided along the center of the upper transfer gutter (27), and a supply port for supplying the transfer grain into the storage chamber (2) is opened at the center of the upper transfer gutter (27). A diffusion plate (28) is provided in the lower part of the mouth, and the diffusion plate (28) uniformly diffuses and reduces the grains into the storage chamber (2).

昇穀機(5)は、前記前壁板前部に着脱自在に装着し、
内部にはバケットコンベアー(30)ベルトを上下プーリ
間に張設し、上端部と該上部移送樋(27)始端部との間
には投出筒(31)を設けて連通させ、下端部と前記下部
移送樋(12)終端部との間には供給樋(32)を設けて連
通させた構成であり、該昇穀機(5)下部一側には穀粒
をこの昇穀機(5)内へ流入供給する穀粒張込漏斗
(4)を設けた構成であり、上部一側にはモータ(29)
を有し、このモータ(29)で該バケットコンベアー(3
0)ベルト及び該上部移送樋(27)内の該移送ラセンを
回転駆動する構成である。
The sublimation machine (5) is detachably attached to the front part of the front wall plate,
Inside, a bucket conveyor (30) belt is stretched between the upper and lower pulleys, and a discharge tube (31) is provided between the upper end portion and the starting end portion of the upper transfer gutter (27) to communicate with the lower end portion. A supply gutter (32) is provided between the terminal end of the lower transfer gutter (12) and the lower transfer gutter (12) to communicate with the lower transfer gutter (12). ) Is equipped with a grain funnel (4) for inflow and supply, and a motor (29) is provided on one side of the upper part.
The bucket conveyor (3
0) The belt and the transfer spiral in the upper transfer gutter (27) are rotationally driven.

該昇穀機(5)の該穀粒張込漏斗(4)前方部には箱形
状の張込穀粒受台(7)を設け、この張込穀粒受台
(7)下部には重量検出センサー(6)を設け、この重
量検出センサー(6)で該張込穀粒受台(7)上に一旦
乗せて、この張込穀粒受台(7)より該穀粒張込漏斗
(4)内へ供給して、該昇穀機(5)より前記上部移送
樋(27)を経て前記貯留室(2)内へ張込み収容する穀
粒重量を検出する構成である。
In the front part of the grain funnel (4) of the grain raising machine (5), a box-shaped grain support (7) is provided, and a weight is provided in the lower part of the grain support (7). A detection sensor (6) is provided, and the weight detection sensor (6) once puts it on the staking grain pedestal (7), and then the grain swelling funnel ( 4) It is configured such that the weight of the grain that is supplied into the storage chamber (2) from the grain raising machine (5) through the upper transfer gutter (27) and stored in the storage chamber (2) is detected.

前記操作装置(11)は箱形状で、表面部には始動スイッ
チ(33)、停止スイッチ(34)、及び穀物種類設定抓み
(35)等を有し、内部には制御装置(36)を有する構成
であり、該制御装置(36)は該各スイッチ(33)、(3
4)及び該設定抓み(35)の操作が入力される入力回路
(37)、該重量検出センサー(6)が検出する検出値が
A−D変換されるA−D変換器(38)、このA−D変換
器(38)で変換された変換値が入力される入力回路(3
7)、これら入力回路(37)、(37)より入力される各
種入力値を算術論理演算及び比較演算を行なうCPU
(39)及びこのCPU(39)より指令される各種指令を
受けて出力する出力回路(40)を有する構成であり、こ
の制御装置(36)で前記燃料ポンプ(19)及び前記各モ
ータ(24)、(26)、(29)等が始動、停止及び制御が
行なわれる構成である。
The operating device (11) has a box shape, and has a start switch (33), a stop switch (34), a grain type setting picker (35), etc. on the surface, and a control device (36) inside. The control device (36) is configured to have the switches (33), (3
4) and an input circuit (37) for inputting the operation of the setting knob (35), an AD converter (38) for AD converting the detection value detected by the weight detection sensor (6), An input circuit (3 to which the converted value converted by the AD converter (38) is input.
7), CPU for performing arithmetic logic operation and comparison operation on various input values input from these input circuits (37), (37)
(39) and an output circuit (40) for receiving and outputting various commands instructed by the CPU (39), the control device (36) includes the fuel pump (19) and the motors (24). ), (26), (29), etc. are configured to start, stop, and control.

該CPU(39)は前記重量検出センサー(6)が検出し
た張込穀粒の重量と該穀物種類設定抓み(35)で設定し
た穀物の種類とを、このCPU(39)内に記憶させた各
種の穀物種類のときの重量とを比較し、この検出した張
込穀粒重量と同じ重量のときの記憶させた熱風温度にな
るように、前記燃料ポンプ(19)より前記バーナ(8)
内へ供給する燃焼用燃料をこのCPU(39)で制御する
構成であり、該CPU(39)内には各重量のときの熱風
温度が記憶されている構成である。
The CPU (39) stores in the CPU (39) the weight of the overhanging grain detected by the weight detection sensor (6) and the type of grain set by the grain type setting picker (35). The weights of the various grain types are compared with each other, and the burner (8) is set by the fuel pump (19) so that the hot air temperature stored is the same when the detected weight of the grain is the same.
The combustion fuel supplied to the inside is controlled by the CPU (39), and the hot air temperature at each weight is stored in the CPU (39).

操作装置(11)を操作することにより、前壁板部に設け
たバーナ(8)より発生した熱風が後壁板部に設けた排
風機(18)で吸引排風され、熱風室(15)より乾燥室
(3)を通風し、乾燥機(9)の機壁(1)内に収容し
た穀粒は、該乾燥室(3)内を流下中にこの熱風に晒さ
れて乾燥され、繰出バルブ(14)で下部へと繰出され、
下側の移送ラセンで供給樋(32)内へ移送排出され、昇
穀機(5)で上部へ搬送され、上側の移送ラセンで拡散
盤(28)上へ移送供給され、この拡散盤(28)で貯留室
(2)内へ均等に換算還元され、循環乾燥され穀粒が規
定水分に達すると、該操作装置(11)で自動制御して該
乾燥機(9)は自動停止するが、この乾燥作業のときに
は、乾燥する穀粒は張込穀粒受台(7)上に一旦乗せ
て、この張込穀粒受台(7)上より、該昇穀機(5)の
穀粒張込漏斗(4)内へ供給し、この穀粒張込漏斗
(4)より流下する穀粒は該昇穀機(5)で上部へ搬送
されるが、該張込穀粒受台(7)上に一旦乗せた穀粒
は、この張込穀粒受台(7)下部に設けた重量検出セン
サー(6)で検出され該機壁(1)内に収容した穀粒の
全重量が検出され、この検出値によって、該バーナ
(8)より発生する熱風温度を該操作装置(11)内の制
御装置(36)により燃料ポンプ(19)より該バーナ
(8)内へ供給する燃焼用燃料が設定制御されて、該バ
ーナ(8)より発生する熱風温度を制御して穀粒は乾燥
される。
By operating the operating device (11), the hot air generated from the burner (8) provided in the front wall plate part is sucked and exhausted by the exhaust fan (18) provided in the rear wall plate part, and the hot air chamber (15) The grains that are further ventilated in the drying chamber (3) and stored in the machine wall (1) of the dryer (9) are exposed to the hot air while flowing down in the drying chamber (3), are dried, and are fed out. The valve (14) feeds it to the bottom
The lower transfer spiral transfers and discharges it into the supply trough (32), the upper grain transfer machine (5) transfers it to the upper part, and the upper transfer spiral transfers and supplies it to the diffusion plate (28). ) Is uniformly reduced into the storage chamber (2), circulated and dried, and when the grain reaches the specified water content, the operating device (11) automatically controls and the dryer (9) automatically stops, At the time of this drying operation, the grains to be dried are once placed on the stake grain pedestal (7), and the grain slate of the grain raising machine (5) is placed on the stake grain pedestal (7). The grain supplied to the grain funnel (4) and flowing down from the grain funnel (4) is conveyed to the upper portion by the grain raising machine (5), and the grain grain cradle (7) The grain once placed on top is detected by the weight detection sensor (6) provided at the lower part of the stake grain support (7), and the total weight of the grain accommodated in the machine wall (1) is detected. , This detection The control unit (36) of the operating device (11) controls the setting of the combustion fuel supplied from the fuel pump (19) into the burner (8) by the hot air temperature generated by the burner (8). The grain is dried by controlling the temperature of hot air generated from the burner (8).

該重量検出センサー(6)で該機壁(1)内へ収容する
穀粒重量が検出され、この検出値により該バーナ(8)
より発生する熱風温度が設定制御されて穀粒は乾燥され
るため、常に穀粒は所定の乾燥速度で乾燥されるので、
穀粒は胴割することがない。
The weight detection sensor (6) detects the weight of the grain contained in the machine wall (1), and the burner (8) is detected by the detected value.
Since the hot air temperature generated more is set and controlled and the grain is dried, the grain is always dried at a predetermined drying speed,
The grain is not cut into pieces.

なお、第6図に示す他の実施例を説明すると、前記乾燥
機(9)の前記機壁(1)の前記前壁板部には、この乾
燥機(9)内を循環乾燥する穀粒の水分を検出する水分
検出センサー(41)を設け、この水分検出センサー(4
1)は箱形状で、穀粒の水分を検出する検出部は該箱体
内より突出し、この突出部は該前壁板内に突出する状態
に装着し、該機壁(1)内を流下すると穀粒を挟圧粉砕
すると同時に、この粉砕穀粒の水分を検出する構成であ
る。(42)は排出漏斗、(43)は排出筒であり、この排
出漏斗(42)内には開閉自在な開閉弁(44)を設けた構
成である。
In addition, to explain another embodiment shown in FIG. 6, the front wall plate portion of the machine wall (1) of the dryer (9) has grains for circulating drying in the dryer (9). The moisture detection sensor (41) for detecting the moisture of the
1) is a box shape, and the detection unit for detecting the moisture of the grain protrudes from the inside of the box, and the protrusion is mounted so as to protrude into the front wall plate, and flows down in the machine wall (1). At the same time as crushing and crushing the grains, the water content of the crushed grains is detected. (42) is a discharge funnel, (43) is a discharge cylinder, and an opening / closing valve (44) that can be opened and closed is provided in the discharge funnel (42).

(45)は籾摺機、(46)は操作装置、(47)は籾受漏斗
であり、この操作装置(46)を操作すると、該籾摺機
(45)が始動開始すると同時に、前記乾燥機(9)と該
水分検出センサー(41)とが始動開始する構成であり、
又この乾燥機(9)内に収容した乾燥済み穀粒は、該開
閉弁(44)が開き状態となり、該排出漏斗(42)より該
排出筒(43)を経て該籾摺機(45)の該籾受漏斗(47)
内へ供給され、この籾摺機(45)で籾摺が行なわれる構
成である。
(45) is a huller, (46) is an operating device, and (47) is a paddy funnel. When the operating device (46) is operated, the hulling machine (45) starts to start and at the same time, the drying is performed. The machine (9) and the moisture detection sensor (41) are configured to start starting,
The dried grain stored in the dryer (9) has the open / close valve (44) opened, the discharge funnel (42) through the discharge cylinder (43), and the grain huller (45). Of the paddy funnel (47)
It is supplied to the inside and hulled by this hulling machine (45).

前記水分検出センサー(41)が始動開始すると、排出循
環中の穀粒の水分は、この水分検出センサー(41)で検
出し、この検出した穀粒の水分値が所定以上であると、
該操作装置(46)より警報を発すると同時に、この操作
装置(46)で前記乾燥機(9)を自動停止させる構成で
あり、乾燥済み穀粒は所定以上の水分値であると、該乾
燥機(9)より乾燥済み穀粒は該籾摺機(45)へ供給さ
れない構成である。
When the water content detection sensor (41) starts to start, the water content of the grain in the discharge circulation is detected by the water content detection sensor (41), and the moisture value of the detected grain is a predetermined value or more,
At the same time that an alarm is issued from the operating device (46), the dryer (9) is automatically stopped by the operating device (46), and when the dried grain has a moisture value of a predetermined value or more, the drying is performed. The dried grain is not supplied from the machine (9) to the huller (45).

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

図は、この発明の一実施例を示すもので、第1図はブロ
ック図、第2図は正面斜視図、第3図は一部破断せる側
面図、第4図は第3図のA−A断面図、第5図はその一
部の拡大正面図である。第6図は他の実施例を示す図
で、第6図は側面斜視図である。 図中、符号(1)は機壁、(2)は貯留室、(3)は乾
燥室、(4)は穀粒張込漏斗、(5)は昇穀機、(6)
は重量検出センサー、(7)は張込穀粒受台、(8)は
バーナを示す。
FIG. 1 shows an embodiment of the present invention. FIG. 1 is a block diagram, FIG. 2 is a front perspective view, FIG. 3 is a partially cutaway side view, and FIG. 4 is A- in FIG. A sectional view and FIG. 5 are enlarged front views of a part thereof. FIG. 6 is a view showing another embodiment, and FIG. 6 is a side perspective view. In the figure, reference numeral (1) is a machine wall, (2) is a storage room, (3) is a drying room, (4) is a grain stake funnel, (5) is a grain raising machine, and (6).
Indicates a weight detection sensor, (7) indicates a stake grain support, and (8) indicates a burner.

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】機壁(1)内の上部には貯留室(2)を又
下部には乾燥室(3)を設け、この貯留室(2)内へ穀
粒を供給する一側部に穀粒張込漏斗(4)を有する昇穀
機(5)を該機壁(1)の一側部に設け、この穀粒張込
漏斗(4)近傍部には張込穀粒を一旦置いてこの穀粒張
込漏斗(4)より該昇穀機(5)を経て該貯留室(2)
内へ張込む穀粒の重量を検出する下部に重量検出センサ
ー(6)を有する張込穀粒受台(7)を設けると共に、
該機壁(1)一側部には熱風が発生するバーナ(8)を
設け、該張込穀粒受台(7)上に一旦乗せた穀粒重量を
該重量検出センサー(6)が検出しこの検出した穀粒重
量によって、該バーナ(8)より発生する熱風温度を設
定制御する制御装置を設けてなる穀粒乾燥機の熱風温度
設定装置。
1. A storage chamber (2) is provided in an upper part of a machine wall (1), and a drying chamber (3) is provided in a lower part of the machine wall (1). A grain raising machine (5) having a grain funnel (4) is provided on one side of the machine wall (1), and the grain is temporarily placed in the vicinity of the grain funnel (4). From the grain-filled funnel (4) through the grain raising machine (5) to the storage chamber (2)
In addition to providing a swelling grain pedestal (7) having a weight detection sensor (6) at the lower part for detecting the weight of the swelling grain,
A burner (8) for generating hot air is provided on one side of the machine wall (1), and the weight detection sensor (6) detects the weight of the grain once placed on the overhanging grain receiving base (7). A hot air temperature setting device for a grain dryer, which is provided with a control device for setting and controlling the hot air temperature generated from the burner (8) according to the detected grain weight.
JP8083385A 1985-04-15 1985-04-15 Hot air temperature setting device for grain dryer Expired - Lifetime JPH0646138B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP8083385A JPH0646138B2 (en) 1985-04-15 1985-04-15 Hot air temperature setting device for grain dryer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP8083385A JPH0646138B2 (en) 1985-04-15 1985-04-15 Hot air temperature setting device for grain dryer

Publications (2)

Publication Number Publication Date
JPS61240087A JPS61240087A (en) 1986-10-25
JPH0646138B2 true JPH0646138B2 (en) 1994-06-15

Family

ID=13729396

Family Applications (1)

Application Number Title Priority Date Filing Date
JP8083385A Expired - Lifetime JPH0646138B2 (en) 1985-04-15 1985-04-15 Hot air temperature setting device for grain dryer

Country Status (1)

Country Link
JP (1) JPH0646138B2 (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2653506B2 (en) * 1989-01-11 1997-09-17 株式会社山本製作所 Operation control device for grain drying equipment

Also Published As

Publication number Publication date
JPS61240087A (en) 1986-10-25

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