JP3577762B2 - Four-wheel steering system for mobile agricultural machines - Google Patents

Four-wheel steering system for mobile agricultural machines Download PDF

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Publication number
JP3577762B2
JP3577762B2 JP1276495A JP1276495A JP3577762B2 JP 3577762 B2 JP3577762 B2 JP 3577762B2 JP 1276495 A JP1276495 A JP 1276495A JP 1276495 A JP1276495 A JP 1276495A JP 3577762 B2 JP3577762 B2 JP 3577762B2
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Japan
Prior art keywords
steering
steering mode
engine
wheel steering
mode
Prior art date
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Expired - Fee Related
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JP1276495A
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Japanese (ja)
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JPH08198130A (en
Inventor
二三男 黒岩
実 松岡
征典 今井
真人 永井
康弘 宮内
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Iseki and Co Ltd
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Iseki and Co Ltd
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  • Steering Control In Accordance With Driving Conditions (AREA)

Description

【0001】
【産業上の利用分野】
この発明は、四輪操舵車輌の操向開始安全装置に関する。この発明は機体の前方と後方に独立した操舵機構を設け、この操舵機構を夫れ夫れ独立または連動と、組合せを変更して小廻り性を向上して操向する車輌に関する。
【0002】
【従来の技術、及び、発明が解決しようとする課題】
従来の四輪操舵の組合せを各種変更しながら操向する車輌は、駐車場所に長時間保管後にエンジンを始動し操向を始めようとすると、小廻り性能を追及した四輪操舵が特殊な機体の動きをするのを知らなかったり、あわてていたので勘違いしたり等、運転者が思ってもいない方に操向して他物に接当したり破損傷害等を生じやすかった。
【0003】
そこで、現時点の操向モードをランプの点灯や点滅、或はブザー音等で知らせるものがある。しかし、このような解決策においても、切換モードが多すぎて運転者がその意味を正確に知らなかったり、無視したりすると機能発揮ができない欠点を有していた。
【0004】
【課題を解決するための手段】
この発明は、従来装置のこのような不具合を解消しようとするものであって、次のような技術的手段を講じた。即ち、前輪操舵モードと後輪操舵モードと前後輪操舵モードとを有し操向モードスイッチの切り換えによって操舵モードを択一的に選択し、エンジン始動時には前記操向モードスイッチによるモード設定に拘らず前輪操舵モードとなるように構成された移動農機において、エンジン停止直後の短時間の間にエンジンを再始動したときに前輪操舵モードへの移行を牽制するモード保持手段が設けられていることを特徴とする移動農機の四輪操舵装置とした。
【0005】
【実施例】
図例は、農用トラクター6であって、その操舵装置部分にこの発明を折り込んでいる。農用トラクター6の機体前後には、図3の側面図で示すように前車輪7,7と後車輪8,8が備えられており、図2の油圧回路説明図で示すように複動式の前後の油圧シリンダー9,10が取り付けられている。
【0006】
前車輪7,7間上方にはエンジン4が配設され、上方や側方等廻りをボンネット11で覆われている。後車輪8,8間上方には座席12が設けられ、運転者が着座すると目の前のボンネット11後部にハンドル13が位置している。14はフロアであって、運転者が足を置く場所である。ボンネット11後部のハンドル13下方には計器盤14が備えられ、後述する操向モードスイッチ3等が配置されている。
【0007】
ハンドル13は、全油圧式操舵装置15との間をハンドル軸16を介して連動連結されており、下端のメータリングポンプ17を左または右方向に廻すことにより、左旋回油路18または右旋回油路19のどちらに最初に油を流すか決定するものである。この時、エンジン4で駆動される油圧ポンプ20が作動して圧油が高圧油回路21に達している時は、メータリングポンプ17は方向切換弁の役目を行なって高圧油を利用して軽く素速く旋回を行ない、エンジン4が停止している時は、メータリングポンプ17は手動式の油圧ポンプの働きをして前車輪7,7や後車輪8,8を、作用については後述するが、夫れ夫れ独立して、または連動して操舵する。
【0008】
次に、操舵の作用について説明する。左旋回の場合、ハンドル13を左に動かしメータリングポンプ17により左旋回油路18に流された圧油は、図2で示すように後輪油路切替弁22の中立室22aを経て前輪油路切替弁23に達する。そして、前輪油路切替弁23の作動室23bを経て前油圧シリンダー9の左旋回室9aに圧油が流入し、前ベルクランク24を矢印「イ」方向に動かして前車輪7,7を左方に操舵し走行する。右旋回の場合は逆方向に、メータリングポンプ17により右旋回油路19に流された圧油は、前輪油路切替弁23の作動室23bを経て前油圧シリンダー9の右旋回室9bに圧油を流入させ前車輪7,7を右操舵する。左旋回室9a内の油は、前輪油路切替弁23の作動室23bから後輪油路切替弁22の中立室22aを経てメータリングポンプ17に達し、低圧回路25から油タンク26に排出する。前ベルクランク24の揺動中心部には、前部ポテンショメーター27が設けられ、前油圧シリンダー9の伸縮動、または前車輪7,7の操舵角度を検出し、後述するマイクロコンピューターであるCPU28に伝え各種の制御に利用している。この操舵作用は、計器盤14近傍部に設けた操向モードスイッチ3を前輪操舵モード5とした場合の動きの説明であり、通常の道路走行用の自動車等と同じく、機体の前部が操舵方向に横移動しながら旋回するものであり、一般の人が違和感無く操縦できる。
【0009】
後輪油路切替弁22と前輪油路切替弁23は電磁ソレノイド弁であって、図1の電気回路説明図で示すように、CPU28により中立室22a,23aまたは作動室22b,23bに自動切替される。即ち、操向モードスイッチ3を後輪操舵モード29とすると、図2の後輪油路切替弁22は作動室22bに切り替わると共に、前輪油路切替弁23は中立室23aに切り替わる。
【0010】
この、後輪操舵モード29の場合、図2で示す高圧油回路21の圧油がハンドル13の左または右操舵により、メータリングポンプ17で圧油の流入方向と量を変えられて後油圧シリンダー10のみを伸縮操舵し走行する。この操舵作用は特殊な操向であって、ハンドル13を左右方向に操作すると、機体の後部が左右に横方向に移動しながら旋回するものであって、通常はフォークリフト等の操向に用いられ、機体の前部を正確に位置合わせする際に便利であるが、運転時に前方しか見ていないと機体後部が側方にある他物に接当し危険であり操縦には熟練を要す。
【0011】
さらに操向モードスイッチ3を四輪操舵モード30にすると、後輪油路切替弁22と前輪油路切替弁23は共に作動室22b,23bとなり、前油圧シリンダー9と後油圧シリンダー10が同時に操舵される。この動きによる走行は、一定の円周上に沿って操向するものであり、軟らかい土壌上を旋回走行する際に前後車輪7,8が進行方向に一致しているから、土壌表面を傷めずに軽快に操向できる。
【0012】
これらの操向モードは、操舵モードを運転者が前輪操舵モード5や後輪操舵モード29や四輪操舵モード30に切り換えると、その切り換えに応じて計器盤14近傍の操向モード表示33部にランプ等で表示され区別される。このように、農用トラクター6は作業の目的に応じ、車輪の操舵旋回が各種調節可能となっており、運転開始時特に長期間使用していない場合、どの操舵モードであったか失念しても、注意して操向モード表示33部を見れば判るようにしている。
【0013】
次に、この発明の要部について説明する。エンジン4を始動後に、油圧ポンプ20が駆動すると高圧油回路21の内圧が高くなるがこの内圧を油圧計32で検出したり、エンジン回転計31等でエンジン4が駆動しているのを検出する。エンジン4駆動中との検出がCPU28に伝えられると、操向モードスイッチ3が前輪操舵モード5や後輪操舵モード29や四輪操舵モード30の内、どの状態になっていても、この発明においては前輪操舵モード5に電磁ソレノイドである後輪油路切替弁22と前輪油路切替弁23を切り換えると共に操向モード表示33部に、前輪操舵モード5と強制変更を表示する。これにより、後油圧シリンダー10はハンドル13を動かしても、伸縮動を行なわなくなり、前回の作業が直進状態でない操舵状態の場合機体後部が斜めに移動する恐れが生じる。そこで、高圧油回路21途中に備える後車輪直進制御弁34による制御説明をする。
【0014】
後車輪直進制御弁34は電磁ソレノイド式の三室切替弁であって、後車輪8,8を操舵する後ベルクランク35と後部ポテンショメーター36の操舵角度検出により、CPU28を介して操作される。即ち、後車輪8,8の左または右の操舵角度を後部ポテンショメーター36で検出し、例えば、後油圧シリンダー10の左旋回室10aに圧油が入って後車輪8,8が右に切られている場合、反対側の右旋回室10bに後車輪直進制御弁34の右室34bを経た圧油を供給し、後部ポテンショメーター36が直進状態を検出するまでCPU28で自動制御する。左室34aを介した圧油は後油圧シリンダー10の左旋回室10aに接続されており、後車輪8,8が左に切られている場合の補正をする。
【0015】
このように、始動時に自動的に後車輪8,8を直進方向に補正し、前車輪操舵で操向する。作業の形態に応じ、後主輪8,8のみの操舵や前後車輪7,8同時の操舵が必要なときは、運転手が操向モードスイッチ3を手動変更すればよい。さらに、エンジン回転計31や油圧計32によりエンジン4の作動を検出しているが、エンジン4停止から例えば1分から2分程度の短時間の間は、操向モードの自動変更を牽制するモード保持機構37を働かせる。
【0016】
これは、作業中に運転者の意図しない過負荷によるエンジン停止の際、再始動を行なうが、その時操向モードを変更せず継続して作業を続け得るようにしたものである。要旨の構成の変形例として、エンジン4の停止操作を停止操作検出器38で検出した時エンジン4をすぐ停止せず、後車輪8,8の操舵方向を後部ポテンショメーター36で検出し、後車輪直進制御弁34で後油圧シリンダー10を直進状態に制御後に停止するようにすると、次回のエンジン4始動時点ですでに後車輪8,8が直進状態に成っているから、同様に安全に運転開始ができる効果を生じる。
【0017】
【発明の作用効果】
この発明は、前記の構成により、次のような技術的効果を奏する。即ち、作業を終えたときの操向モードが前輪操舵モード以外のモードであってもエンジンを始動すると後輪は直進状態となり前輪のみ操舵できる前輪操舵モードになるから運転者は通常の前輪操舵の自動車の感覚で操縦でき、戸惑いを感じたりパニック状態になったりするようなことがない。
また、作業中にエンジンに過負荷が掛かりエンジンが停止するような事態に遭遇し、エンジンを再始動してもエンジン停止直後の短時間は前輪操舵モードへの移行は牽制されているから、作業時に選択していた操向モードがそのまま利用できることになり、エンジン始動時に前輪操舵モードへ移行することによって反って作業の能率を低下させてしまうといった不具合をなくすことができる
【図面の簡単な説明】
【図1】制御の説明線図である。
【図2】油圧回路の説明線図である。
【図3】移動車輌の、全体側面図である。
【符号の説明】
1 前輪操舵機構
2 後輪操舵機構
3 操向モードスイッチ
4 エンジン
5 前輪操舵モード
[0001]
[Industrial applications]
The present invention relates to a steering start safety device for a four-wheel steering vehicle. The present invention relates to a vehicle in which independent steering mechanisms are provided on the front and rear sides of an airframe, and the steering mechanisms are independently or interlocked, and the combination of the steering mechanisms is changed to improve small-turnability and steer.
[0002]
2. Related Art and Problems to be Solved by the Invention
Vehicles that steer while changing the combination of conventional four-wheel steering in various ways have a special body that pursues small turning performance when starting the engine and starting steering after storing in a parking place for a long time. It was easy for the driver to steer in a direction that the driver did not even think that he did not know that he was moving or misunderstood because he was in a hurry.
[0003]
Therefore, there is a type in which the current steering mode is notified by lighting or blinking of a lamp or a buzzer sound. However, even in such a solution, there is a drawback that the function cannot be exhibited if the driver does not know the meaning of the switching mode too much or ignores it, because there are too many switching modes.
[0004]
[Means for Solving the Problems]
The present invention is to solve such a problem of the conventional device, and has taken the following technical measures. That is, it has a front wheel steering mode, a rear wheel steering mode, and a front and rear wheel steering mode, and selects a steering mode by switching a steering mode switch. In the mobile agricultural machine configured to be in the front wheel steering mode, the mode holding means for restraining the shift to the front wheel steering mode when the engine is restarted for a short time immediately after the engine is stopped is provided. The feature is a four-wheel steering device for a mobile agricultural machine .
[0005]
【Example】
The illustrated example is an agricultural tractor 6 in which the present invention is folded into a steering device. Front and rear wheels 8, 7 are provided on the front and rear of the agricultural tractor 6 as shown in the side view of FIG. 3, and a double-acting type is shown in the hydraulic circuit diagram of FIG. Front and rear hydraulic cylinders 9 and 10 are attached.
[0006]
An engine 4 is disposed above the front wheels 7 and 7, and an upper portion and sideways are covered with a hood 11. A seat 12 is provided above the rear wheels 8, 8, and a handle 13 is located at a rear portion of the hood 11 in front of the driver when the driver sits down. Reference numeral 14 denotes a floor on which a driver places his / her feet. An instrument panel 14 is provided below the handle 13 at the rear of the bonnet 11, and a steering mode switch 3, which will be described later, is arranged.
[0007]
The handle 13 is interlocked with the all-hydraulic steering device 15 via a handle shaft 16. By turning the metering pump 17 at the lower end in the left or right direction, the left turning oil passage 18 or the right turning This determines which of the recirculation passages 19 the oil flows first. At this time, when the hydraulic pump 20 driven by the engine 4 operates and the pressure oil reaches the high-pressure oil circuit 21, the metering pump 17 acts as a directional switching valve and uses the high-pressure oil to lighten. When the engine 4 is turning quickly and the engine 4 is stopped, the metering pump 17 functions as a manual hydraulic pump to operate the front wheels 7, 7 and the rear wheels 8, 8, and the operation will be described later. Steer independently or in conjunction with each other.
[0008]
Next, the operation of the steering will be described. In the case of a left turn, the pressure oil flowing to the left turn oil passage 18 by the metering pump 17 by moving the handle 13 to the left passes through the neutral chamber 22a of the rear wheel oil passage switching valve 22 as shown in FIG. It reaches the road switching valve 23. Then, pressure oil flows into the left turning chamber 9a of the front hydraulic cylinder 9 through the working chamber 23b of the front wheel oil passage switching valve 23, and moves the front bell crank 24 in the direction of arrow "a" to move the front wheels 7, 7 to the left. Steer toward and drive. In the case of right turning, in the opposite direction, the pressure oil that has flowed to the right turning oil passage 19 by the metering pump 17 passes through the working chamber 23 b of the front wheel oil passage switching valve 23 and the right turning chamber of the front hydraulic cylinder 9. The pressure oil flows into 9b and the front wheels 7, 7 are steered to the right. The oil in the left turning chamber 9a reaches the metering pump 17 from the working chamber 23b of the front wheel oil passage switching valve 23 through the neutral room 22a of the rear wheel oil passage switching valve 22, and is discharged from the low pressure circuit 25 to the oil tank 26. . A front potentiometer 27 is provided at the center of the swing of the front bell crank 24. The front potentiometer 27 detects the expansion / contraction movement of the front hydraulic cylinder 9 or the steering angle of the front wheels 7, 7, and transmits the result to a CPU 28 which is a microcomputer described later. Used for various controls. This steering action is an explanation of the movement when the steering mode switch 3 provided in the vicinity of the instrument panel 14 is set to the front wheel steering mode 5, and the front part of the body is steered in the same manner as a normal road running automobile or the like. It turns while moving laterally in the direction, so that ordinary people can steer without discomfort.
[0009]
The rear wheel oil passage switching valve 22 and the front wheel oil passage switching valve 23 are electromagnetic solenoid valves, and are automatically switched to the neutral chambers 22a, 23a or the working chambers 22b, 23b by the CPU 28 as shown in the electric circuit diagram of FIG. Is done. That is, when the steering mode switch 3 is set to the rear wheel steering mode 29, the rear wheel oil passage switching valve 22 in FIG. 2 is switched to the working chamber 22b, and the front wheel oil passage switching valve 23 is switched to the neutral room 23a.
[0010]
In the case of the rear wheel steering mode 29, the pressure oil in the high pressure oil circuit 21 shown in FIG. Only the vehicle 10 is operated by telescopic steering. This steering operation is a special steering operation. When the steering wheel 13 is operated in the left-right direction, the rear part of the body turns while moving in the left-right direction, and is usually used for steering of a forklift or the like. Although it is convenient to accurately position the front of the aircraft, when looking only at the front during driving, the rear of the aircraft may be in danger of hitting other objects on the side and requires skill to control.
[0011]
Further, when the steering mode switch 3 is set to the four-wheel steering mode 30, the rear wheel oil passage switching valve 22 and the front wheel oil passage switching valve 23 are both operated chambers 22b and 23b, and the front hydraulic cylinder 9 and the rear hydraulic cylinder 10 are simultaneously operated. Is done. The traveling by this movement is to steer along a certain circumference, and when turning on soft soil, the front and rear wheels 7, 8 coincide with the traveling direction, so that the soil surface is not damaged. You can steer lightly.
[0012]
When the driver switches the steering mode to the front wheel steering mode 5, the rear wheel steering mode 29, or the four-wheel steering mode 30, the steering mode is displayed on the steering mode display 33 near the instrument panel 14 in accordance with the switching. It is displayed and distinguished by a lamp or the like. As described above, the agricultural tractor 6 can adjust the steering and turning of the wheels in various ways according to the purpose of the work. Then, it can be understood by looking at the steering mode display 33.
[0013]
Next, the main part of the present invention will be described. When the hydraulic pump 20 is driven after the start of the engine 4, the internal pressure of the high-pressure oil circuit 21 increases. The internal pressure is detected by a hydraulic gauge 32 or the engine tachometer 31 detects that the engine 4 is being driven. . When the detection that the engine 4 is being driven is transmitted to the CPU 28, the present invention can be applied to any state of the steering mode switch 3 among the front wheel steering mode 5, the rear wheel steering mode 29, and the four-wheel steering mode 30. In the front wheel steering mode 5, the rear wheel oil passage switching valve 22 and the front wheel oil passage switching valve 23, which are electromagnetic solenoids, are switched, and the steering mode display 33 displays the front wheel steering mode 5 and the forcible change. As a result, even if the rear hydraulic cylinder 10 moves the handle 13, the rear hydraulic cylinder 10 does not extend and retract, and if the previous operation is in a steering state where the vehicle is not traveling straight, there is a possibility that the rear part of the body may move obliquely. Therefore, control by the rear wheel straight-running control valve 34 provided in the middle of the high-pressure oil circuit 21 will be described.
[0014]
The rear wheel straight-running control valve 34 is an electromagnetic solenoid type three-chamber switching valve, and is operated via the CPU 28 by detecting a steering angle of a rear bell crank 35 for steering the rear wheels 8 and a rear potentiometer 36. That is, the left or right steering angle of the rear wheels 8, 8 is detected by the rear potentiometer 36. For example, pressure oil enters the left turning chamber 10a of the rear hydraulic cylinder 10, and the rear wheels 8, 8 are turned right. If so, pressurized oil that has passed through the right chamber 34b of the rear wheel straight-ahead control valve 34 is supplied to the right turning chamber 10b on the opposite side, and is automatically controlled by the CPU 28 until the rear potentiometer 36 detects the straight-ahead state. The pressure oil via the left chamber 34a is connected to the left turning chamber 10a of the rear hydraulic cylinder 10, and corrects when the rear wheels 8, 8 are turned to the left.
[0015]
In this manner, the rear wheels 8, 8 are automatically corrected in the straight traveling direction at the time of starting, and the steering is performed by steering the front wheels. When the steering of only the rear main wheels 8 and 8 and the simultaneous steering of the front and rear wheels 7 and 8 are required according to the type of work, the driver may manually change the steering mode switch 3. Further, the operation of the engine 4 is detected by the engine tachometer 31 and the oil pressure gauge 32. For a short period of time, for example, about 1 minute to 2 minutes after the engine 4 is stopped, the mode holding for automatically changing the steering mode is maintained. Ru worked the mechanism 37.
[0016]
This is to restart the engine when the engine is stopped due to an overload unintended by the driver during the operation. At that time, the operation can be continued without changing the steering mode. As a modified example of the gist configuration, when the stop operation of the engine 4 is detected by the stop operation detector 38, the engine 4 is not immediately stopped, but the steering direction of the rear wheels 8, 8 is detected by the rear potentiometer 36, and the rear wheels go straight. If the rear hydraulic cylinder 10 is controlled to the straight running state by the control valve 34 and then stopped, since the rear wheels 8, 8 are already in the straight running state at the next start of the engine 4, the operation can be similarly safely started. The effect that can be produced.
[0017]
Operation and Effect of the Invention
The present invention has the following technical effects by the above configuration. That is, even if the steering mode at the end of the work is a mode other than the front wheel steering mode, when the engine is started, the rear wheels are in a straight-ahead state and the front wheel steering mode in which only the front wheels can be steered. It can be operated as if it were a car, and there is no embarrassment or panic.
In addition, when the engine was overloaded during the operation and the engine stopped, the transition to the front wheel steering mode was stopped for a short time immediately after the engine was stopped even if the engine was restarted. The steering mode selected at that time can be used as it is, and it is possible to eliminate a problem that the efficiency of the work is reduced by shifting to the front wheel steering mode when the engine is started .
[Brief description of the drawings]
FIG. 1 is an explanatory diagram of control.
FIG. 2 is an explanatory diagram of a hydraulic circuit.
FIG. 3 is an overall side view of the mobile vehicle.
[Explanation of symbols]
Reference Signs List 1 front wheel steering mechanism 2 rear wheel steering mechanism 3 steering mode switch 4 engine 5 front wheel steering mode

Claims (1)

前輪操舵モードと後輪操舵モードと前後輪操舵モードとを有し操向モードスイッチの切り換えによって操舵モードを択一的に選択し、エンジン始動時には前記操向モードスイッチによるモード設定に拘らず前輪操舵モードとなるように構成された移動農機において、エンジン停止直後の短時間の間にエンジンを再始動したときに前輪操舵モードへの移行を牽制するモード保持手段が設けられていることを特徴とする移動農機の四輪操舵装置 It has a front wheel steering mode, a rear wheel steering mode, and a front and rear wheel steering mode, and selects one of the steering modes by switching a steering mode switch. When the engine is started, regardless of the mode setting by the steering mode switch, the front wheel In the mobile agricultural machine configured to be in the steering mode, a mode holding unit that restrains the transition to the front wheel steering mode when the engine is restarted for a short time immediately after the engine is stopped is provided. Four-wheel steering system for mobile agricultural machinery .
JP1276495A 1995-01-30 1995-01-30 Four-wheel steering system for mobile agricultural machines Expired - Fee Related JP3577762B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1276495A JP3577762B2 (en) 1995-01-30 1995-01-30 Four-wheel steering system for mobile agricultural machines

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1276495A JP3577762B2 (en) 1995-01-30 1995-01-30 Four-wheel steering system for mobile agricultural machines

Publications (2)

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JPH08198130A JPH08198130A (en) 1996-08-06
JP3577762B2 true JP3577762B2 (en) 2004-10-13

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Publication number Priority date Publication date Assignee Title
JP4798916B2 (en) * 2001-10-15 2011-10-19 独立行政法人農業・食品産業技術総合研究機構 Agricultural machinery steering device
JP4195322B2 (en) * 2003-03-24 2008-12-10 株式会社ショーシン Agricultural vehicle
JP4604048B2 (en) * 2005-05-26 2010-12-22 三菱レイヨン株式会社 Water-based resin composition and weather-resistant improving material for water-based paints using the same, weather-resistant improving material for thermoplastic resins, weather-resistant improving material for solvent-based paints
JP2018122821A (en) * 2017-02-03 2018-08-09 ボッシュ株式会社 Electric power steering device

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Publication number Priority date Publication date Assignee Title
JPS61295176A (en) * 1985-06-24 1986-12-25 Daihatsu Motor Co Ltd Four-wheel steering gear
JPS62137278A (en) * 1985-12-09 1987-06-20 Daihatsu Motor Co Ltd 4-wheel steering device
JP3038771B2 (en) * 1990-03-28 2000-05-08 井関農機株式会社 Four-wheel steering control device
JPH0568950A (en) * 1991-09-17 1993-03-23 Furuno Electric Co Ltd Hood cleaning apparatus
JPH0577760A (en) * 1991-09-18 1993-03-30 Honda Motor Co Ltd Four wheels steering device

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