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JP2009185545A - Traveling device of self-propelling paving machine - Google Patents

Traveling device of self-propelling paving machine Download PDF

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JP2009185545A
JP2009185545A JP2008027759A JP2008027759A JP2009185545A JP 2009185545 A JP2009185545 A JP 2009185545A JP 2008027759 A JP2008027759 A JP 2008027759A JP 2008027759 A JP2008027759 A JP 2008027759A JP 2009185545 A JP2009185545 A JP 2009185545A
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hydraulic
hydraulic motor
pressure oil
switching valve
hydraulic pump
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Akira Sakakibara
晃 榊原
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Sumitomo SHI Construction Machinery Co Ltd
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Sumitomo SHI Construction Machinery Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a traveling device capable of transmitting a stable drive force when drive wheels go into a skid inexpensively by a simple configuration in a wheel self-propelling paving machine driven by hydraulic motors. <P>SOLUTION: The wheel self-propelling paving machine is provided with: a hydraulic pump 11 driven by an engine 10; and the left and right hydraulic motors 12L, 12R for independently driving their respective left and right drive wheels 14L, 14R by the pressure oil discharged from the hydraulic pump 11. The paving machine is further provide with a selector valve 30 having: a first position (α) where the pressure oil from the hydraulic pump 11 is divided and supplied to and discharged from, the left and right hydraulic motors 12L, 12R; and a second position where the hydraulic oil from the hydraulic pump 11 is supplied to and discharged from the left and right hydraulic motors 12L, 12R in this order. The paving machine is also provided with a control section 40 for changing the selector valve 30 to the second position (β) when either of the left and right drive wheels 14L, 14R goes into a slip. <P>COPYRIGHT: (C)2009,JPO&INPIT

Description

本発明は自走式舗装機械における走行装置に関するものであり、特に、油圧モータにより駆動されるホイール式の自走式舗装機械において、駆動輪がスリップした場合に安定した駆動力を伝達できるようにした走行装置に関するものである。   The present invention relates to a traveling device in a self-propelled paving machine, and in particular, in a wheel-type self-propelled paving machine driven by a hydraulic motor, so that a stable driving force can be transmitted when a drive wheel slips. It is related with the traveling apparatus.

従来、此種ホイール式の自走式舗装機械の走行装置は、図3に示すように、エンジン10により駆動される油圧ホンプ11と、該油圧ポンプ11から吐出される圧油によって回転する左右の油圧モータ12L,12Rとを備え、油圧ポンプ11の圧油を分流して左右の油圧モータ12L,12Rへ給排し、左右の駆動軸13L,13Rを介して左右の駆動輪14L,14Rをそれぞれ独立して駆動するように形成されている。   Conventionally, as shown in FIG. 3, the traveling device of this type of wheel type self-propelled pavement machine includes a hydraulic pump 11 driven by an engine 10 and left and right rotating by pressure oil discharged from the hydraulic pump 11. The hydraulic motors 12L and 12R are provided, and the hydraulic oil from the hydraulic pump 11 is divided and supplied to the left and right hydraulic motors 12L and 12R. The left and right drive wheels 14L and 14R are respectively connected via the left and right drive shafts 13L and 13R. It is formed to be driven independently.

上記の構成では、通常の直進時は1:1に分流された圧油が左右の油圧モータ12L,12Rに供給されて左右の駆動輪14L,14Rが同一回転となり、旋回時は左右の駆動輪14L,14Rの回転差に応じて左右の油圧モータ12L,12Rへの流量が変化して回転差を調整している。しかし、軟弱路面や凹凸のある路面などで一方の駆動輪例えば右側の駆動輪14Rがスリップした場合、負荷がなくなってスリップした側の油圧モータ12Rに圧油が集中的に流れ、他方の油圧モータ12Lには圧油が流れなくなって他方の駆動輪14Lの駆動力が極端に低下する。   In the above configuration, the pressure oil that has been divided into 1: 1 during normal straight travel is supplied to the left and right hydraulic motors 12L and 12R, so that the left and right drive wheels 14L and 14R rotate in the same direction. The flow rate to the left and right hydraulic motors 12L, 12R changes according to the rotation difference between 14L and 14R to adjust the rotation difference. However, when one drive wheel, for example, the right drive wheel 14R slips on a soft road surface or an uneven road surface, the load disappears and pressure oil flows intensively to the slipped hydraulic motor 12R, and the other hydraulic motor No pressure oil flows through 12L, and the driving force of the other driving wheel 14L is extremely reduced.

この不具合を解消するために、図4に示すように、左右の駆動軸13L,13Rを制動するためのブレーキ15L,15Rと、該ブレーキ15L,15Rを作動させるブレーキシリンダ16L,16Rを配設し、前記油圧モータ12L,12Rとは別系統の油圧管路17L,17Rを介して、それぞれ独立して左右の駆動軸13L,13Rを制動できるように形成した自走式舗装機械の走行装置が知られている(例えば、特許文献1参照)。   In order to eliminate this problem, as shown in FIG. 4, brakes 15L and 15R for braking the left and right drive shafts 13L and 13R and brake cylinders 16L and 16R for operating the brakes 15L and 15R are provided. A traveling device for a self-propelled pavement machine formed so that the left and right drive shafts 13L and 13R can be braked independently via hydraulic lines 17L and 17R, which are separate systems from the hydraulic motors 12L and 12R, is known. (For example, refer to Patent Document 1).

上記特許文献1では、何れか一方の駆動輪例えば右側の駆動輪14Rがスリップした場合、適宜の検知手段を有するコントローラやオペレータからの信号により一方の油圧管路17Rの圧油を抜き、スリップした側のブレーキシリンダ16Rを作動させてブレーキ15Rにて駆動軸13Rを制動する。この結果、空転していた油圧モータ12Rの回転が停止し、油圧ポンプ11から吐出される圧油の全量が他方の油圧モータ12Lに流れて、他方の駆動輪14Lに駆動力が発生する。   In the above-mentioned Patent Document 1, when any one of the driving wheels, for example, the right driving wheel 14R slips, the hydraulic oil in one hydraulic line 17R is pulled and slipped by a signal from a controller or an operator having appropriate detection means. The brake cylinder 16R on the side is actuated to brake the drive shaft 13R with the brake 15R. As a result, the idle rotation of the hydraulic motor 12R stops, the entire amount of pressure oil discharged from the hydraulic pump 11 flows to the other hydraulic motor 12L, and a driving force is generated on the other drive wheel 14L.

また、両後輪にそれぞれ回転ケーシングを直結し、固定ケーシング側に内装した油圧モータによって駆動軸から高速用クラッチまたは減速機構と連結した低速用クラッチを介して回転ケーシングを回転駆動させるとともに、回転駆動を停止させたときに油圧モータを固定ケーシングに内蔵した負作動ブレーキと上記クラッチによって回転ケーシング側の回転力を制動させるようにし、さらに、一方の後輪にスピンが発生したときに、他方の後輪を回転駆動する油圧モータに等量の圧油を供給して牽引力を発生させるように構成したアスファルトフィニッシャの走行装置が知られている(例えば、特許文献2参照)。   In addition, the rotary casing is directly connected to both rear wheels, and the rotary casing is driven to rotate from the drive shaft via the high speed clutch or the low speed clutch connected to the speed reduction mechanism by the hydraulic motor built in the fixed casing. When the engine is stopped, the rotating force on the rotating casing side is braked by a negative operating brake with a built-in hydraulic motor in the fixed casing and the above clutch. An asphalt finisher traveling device is known that is configured to generate an traction force by supplying an equal amount of pressure oil to a hydraulic motor that rotationally drives a wheel (see, for example, Patent Document 2).

上記特許文献2では、油圧ポンプからの圧油供給管路を分流弁と分岐管路を通じて両後輪用油圧モータに連通させ、これらの分岐管路間が切換弁を備えた連結管路により連結されており、一方の後輪がスリップした場合、前記切換弁を作動して連結管路を遮断することにより、両後輪の油圧モータに圧油を供給してデフロック動作を行う構成が開示されている。
特開2001−32207号公報 特開2001−18670号公報(第6頁、図9)
In Patent Document 2, a pressure oil supply line from a hydraulic pump is communicated with a hydraulic motor for both rear wheels through a diversion valve and a branch line, and a connection line having a switching valve is connected between these branch lines. When one of the rear wheels slips, a configuration is disclosed in which differential oil is operated by supplying pressure oil to the hydraulic motors of both rear wheels by operating the switching valve to shut off the connecting pipeline. ing.
JP 2001-32207 A Japanese Patent Laid-Open No. 2001-18670 (6th page, FIG. 9)

特許文献1記載の発明は、何れか一方の駆動輪がスリップした場合、スリップした側の駆動軸を制動して一方の駆動輪をロックするため、他方の駆動輪のみの駆動力で走行することになり、駆動力が低下する。また、スリップした側の駆動輪はロックされて引き摺られるため、路面に対する走行抵抗が大となり、車体の推進力がより一層低下する。   In the invention described in Patent Document 1, when one of the drive wheels slips, the drive shaft on the slipped side is braked to lock one of the drive wheels, so that the vehicle travels with the drive force of only the other drive wheel. As a result, the driving force decreases. Further, since the drive wheel on the slipped side is locked and dragged, the running resistance against the road surface is increased, and the propulsive force of the vehicle body is further reduced.

特許文献2記載の発明は、分流弁と連結回路に設けた切換弁によってデフロック機構が構成されているが、構造が複雑でコストアップの要因となる。   In the invention described in Patent Document 2, the diff lock mechanism is configured by the diversion valve and the switching valve provided in the connection circuit. However, the structure is complicated and causes a cost increase.

そこで、油圧モータにより駆動されるホイール式の自走式舗装機械において、駆動輪がスリップした場合に安定した駆動力を伝達できるようにした走行装置を簡素な構成で安価に提供するために解決すべき技術的課題が生じてくるのであり、本発明はこの課題を解決することを目的とする。   Therefore, in a wheel-type self-propelled pavement machine driven by a hydraulic motor, a solution is provided in order to provide a traveling device capable of transmitting a stable driving force when a driving wheel slips with a simple configuration at low cost. The technical problem which should arise arises, and this invention aims at solving this problem.

本発明は上記目的を達成するために提案されたものであり、請求項1記載の発明は、エンジンにより駆動される油圧ホンプと、該油圧ポンプから吐出される圧油により左右の駆動輪をそれぞれ独立して駆動する左右の油圧モータを備えたホイール式の自走式舗装機械において、前記油圧ポンプからの圧油を前記左右の油圧モータへ分流して給排する第1位置と、前記油圧ポンプからの圧油を前記左右の油圧モータへ順番に給排する第2位置とを有する切換弁を設け、前記左右何れかの駆動輪がスリップした場合は、前記切換弁を第2位置に切り換える制御部を備えたことを特徴とする自走式舗装機械における走行装置を提供する。   The present invention has been proposed to achieve the above object, and the invention according to claim 1 is characterized in that the hydraulic pump driven by the engine and the left and right drive wheels are respectively connected by the pressure oil discharged from the hydraulic pump. In a wheel-type self-propelled pavement machine having left and right hydraulic motors that are driven independently, a first position for distributing and supplying and discharging pressure oil from the hydraulic pump to the left and right hydraulic motors, and the hydraulic pump A switching valve having a second position for sequentially supplying and discharging pressure oil from and to the left and right hydraulic motors, and switching the switching valve to the second position when the left or right drive wheel slips. Provided is a traveling device in a self-propelled paving machine characterized by comprising a section.

この構成によれば、通常走行する場合は切換弁を第1位置にする。切換弁が第1位置のときは、油圧ポンプからの圧油は左右の油圧モータへ分流され、直進時は左右の駆動輪が同一回転となり、旋回時は左右の駆動輪の回転差に応じて左右の油圧モータへの流量が変化する。   According to this configuration, when the vehicle normally travels, the switching valve is set to the first position. When the switching valve is in the first position, the pressure oil from the hydraulic pump is diverted to the left and right hydraulic motors, and when driving straight, the left and right drive wheels rotate in the same direction, and when turning, depending on the rotation difference between the left and right drive wheels The flow rate to the left and right hydraulic motors changes.

これに対して左右何れかの駆動輪がスリップした場合は、検知手段の検知またはオペレータの指示に基づく制御部の制御によって切換弁を第2位置に切り換える。切換弁が第2位置のときは、油圧ポンプからの圧油は、先ず左右何れか一方の油圧モータへ流れ、続いて他方の油圧モータへと順番に給排されて、左右双方の油圧モータに同量の圧油が給排される。したがって、左右双方の駆動輪が駆動され、スリップした側の駆動輪にも多少の駆動力が発生する。   On the other hand, when either the left or right drive wheel slips, the switching valve is switched to the second position by the detection of the detection means or the control of the control unit based on the instruction of the operator. When the switching valve is in the second position, the pressure oil from the hydraulic pump first flows to one of the left and right hydraulic motors, and then is sequentially supplied to and discharged from the other hydraulic motor to both the left and right hydraulic motors. The same amount of pressure oil is supplied and discharged. Therefore, both the left and right drive wheels are driven, and some driving force is generated on the slipped drive wheels.

請求項2記載の発明は、上記切換弁は、上記左右何れか一方の油圧モータの吸入側の管路と他方の油圧モータの排出側の管路を遮断する位置に配設され、ノーマル状態では上記第1位置にて前記それぞれの管路の圧油を通過させ、スリップ状態では上記第2位置にて前記他方の油圧モータの排出側の管路の圧油を前記一方の油圧モータの吸入側の管路へ連通させるように形成されたことを特徴とする請求項1記載の自走式舗装機械における走行装置を提供する。   According to a second aspect of the present invention, the switching valve is disposed at a position where the suction side conduit of the left and right hydraulic motors and the discharge side conduit of the other hydraulic motor are shut off in a normal state. In the slip state, the pressure oil in the pipes on the discharge side of the other hydraulic motor is supplied to the suction side of the one hydraulic motor in the second position in the slip state. The traveling device for a self-propelled paving machine according to claim 1, wherein the traveling device is formed so as to communicate with the pipeline.

この構成によれば、ノーマル状態では切換弁が第1位置にあり、油圧ポンプからの圧油は分流して、1つは切換弁の第1位置を介して一方の油圧モータの吸入側の管路へ圧油が供給され、該一方の油圧モータを駆動して、該一方の油圧モータの排出側の管路から油圧ポンプもしくはタンクに戻される。分流したもう1つは、他方の油圧モータの吸入側の管路へ供給され、該他方の油圧モータを駆動して、該他方の油圧モータの排出側の管路から前記切換弁の第1位置を介して油圧ポンプもしくはタンクに戻される。   According to this configuration, the switching valve is in the first position in the normal state, the pressure oil from the hydraulic pump is diverted, and one is a pipe on the suction side of one hydraulic motor through the first position of the switching valve. Pressure oil is supplied to the passage, the one hydraulic motor is driven, and returned to the hydraulic pump or the tank from the pipe line on the discharge side of the one hydraulic motor. The other one of the divided flow is supplied to the suction-side pipe line of the other hydraulic motor, drives the other hydraulic motor, and from the discharge-side pipe line of the other hydraulic motor, the first position of the switching valve. Is returned to the hydraulic pump or tank.

これに対して、スリップ状態では制御部の制御によって切換弁を第2位置に切り換える。切換弁が第2位置のときは、油圧ポンプからの圧油は、先ず一方の油圧モータの吸入側の管路へ供給され、該一方の油圧モータを駆動した後に、一方の油圧モータの排出側の管路へ排出される。この圧油は、前記切換弁の第2位置を介して、他方の油圧モータの吸入側の管路へ送られ、他方の油圧モータを駆動した後に、他方の油圧モータの排出側の管路から油圧ポンプもしくはタンクに戻される。したがって、左右双方の駆動輪が駆動され、スリップした側の駆動輪にも多少の駆動力が発生する。   In contrast, in the slip state, the switching valve is switched to the second position under the control of the control unit. When the switching valve is in the second position, the pressure oil from the hydraulic pump is first supplied to the suction side conduit of one hydraulic motor, and after driving the one hydraulic motor, the discharge side of one hydraulic motor It is discharged to the pipeline. This pressure oil is sent to the suction side conduit of the other hydraulic motor via the second position of the switching valve, and after driving the other hydraulic motor, from the discharge side conduit of the other hydraulic motor. Return to hydraulic pump or tank. Therefore, both the left and right drive wheels are driven, and some driving force is generated on the slipped drive wheels.

請求項1記載の発明は、第1位置と第2位置を有する切換弁を設け、左右何れかの駆動輪がスリップした場合は、制御部の制御にて切換弁を第2位置に切り換えるようにしたので、油圧ポンプからの圧油が左右の油圧モータに順番に給排されて、スリップした側の駆動輪にも多少の駆動力が発生する。かくして、従来の自走式舗装機械の走行装置に比べて、簡素な構成で安価に駆動力を増加させることができる。   According to the first aspect of the present invention, a switching valve having a first position and a second position is provided, and when either the left or right drive wheel slips, the switching valve is switched to the second position under the control of the control unit. Therefore, the pressure oil from the hydraulic pump is sequentially supplied to and discharged from the left and right hydraulic motors, and some driving force is generated also on the slipping drive wheels. Thus, the driving force can be increased at a low cost with a simple configuration as compared with the traveling device of the conventional self-propelled paving machine.

請求項2記載の発明は、左右何れかの駆動輪がスリップした場合は、制御部の制御にて切換弁を第2位置に切り換えることにより、一方の油圧モータの吸入側の管路と他方の油圧モータの排出側の管路を連通するように形成したので、請求項1記載の発明の効果に加えて、より一層効果的に駆動力を増加させることができる。   According to the second aspect of the present invention, when one of the left and right drive wheels slips, the control valve controls the switching valve to the second position so that the suction side pipe line of one hydraulic motor and the other side are switched. Since the discharge side pipe line of the hydraulic motor is formed to communicate, the driving force can be increased more effectively in addition to the effect of the first aspect of the invention.

以下、本発明に係る自走式舗装機械における走行装置について、好適な実施例をあげて説明する。油圧モータにより駆動されるホイール式の自走式舗装機械において、駆動輪がスリップした場合に安定した駆動力を伝達できるようにした走行装置を簡素な構成で安価に提供するという目的を達成するために、本発明は、エンジンにより駆動される油圧ホンプと、該油圧ポンプから吐出される圧油により左右の駆動輪をそれぞれ独立して駆動する左右の油圧モータを備えたホイール式の自走式舗装機械において、前記油圧ポンプからの圧油を前記左右の油圧モータへ分流して給排する第1位置と、前記油圧ポンプからの圧油を前記左右の油圧モータへ順番に給排する第2位置とを有する切換弁を設け、前記左右何れかの駆動輪がスリップした場合は、前記切換弁を第2位置に切り換える制御部を備えたことにより実現した。   Hereinafter, the traveling device in the self-propelled paving machine according to the present invention will be described with reference to preferred embodiments. In order to achieve the object of providing a traveling device capable of transmitting a stable driving force when a drive wheel slips in a wheel-type self-propelled paving machine driven by a hydraulic motor with a simple configuration at low cost. Further, the present invention provides a wheel-type self-propelled pavement provided with a hydraulic pump driven by an engine and left and right hydraulic motors that independently drive left and right drive wheels by pressure oil discharged from the hydraulic pump. In the machine, a first position for supplying and discharging pressure oil from the hydraulic pump to the left and right hydraulic motors, and a second position for sequentially supplying and discharging pressure oil from the hydraulic pump to the left and right hydraulic motors. When the left or right drive wheel slips, a control unit that switches the switching valve to the second position is provided.

図1および図2は、本発明に係るホイール式の自走式舗装機械における走行装置を示し、説明の都合上、図3および図4に示した従来の走行装置と同一構成部分には同一符号を付して、重複説明は省略する。   1 and 2 show a traveling device in a wheel-type self-propelled paving machine according to the present invention. For convenience of explanation, the same reference numerals are given to the same components as those of the conventional traveling device shown in FIGS. A duplicate description is omitted.

図1に示すように、油圧ポンプの吐出管路21は、途中から、左の油圧モータ12Lの吸入側管路22Lと、右の油圧モータ12Rの吸入側管路22に分岐している。また、左の油圧モータ12Lの排出側管路23Lと、右の油圧モータ12Rの排出側管路23Rは、途中から、油圧ポンプの吸入管路24に結合している。   As shown in FIG. 1, the discharge line 21 of the hydraulic pump branches from the middle into a suction side line 22L of the left hydraulic motor 12L and a suction side line 22 of the right hydraulic motor 12R. Further, the discharge side pipe 23L of the left hydraulic motor 12L and the discharge side pipe 23R of the right hydraulic motor 12R are coupled to the suction pipe 24 of the hydraulic pump from the middle.

前記左の油圧モータの吸入側管路22Lと、右の油圧モータの排出側管路23Rとの、双方の管路を遮断する位置に、切換弁30を介装してある。該切換弁30は、前記左の油圧モータの吸入側管路22Lと右の油圧モータの排出側管路23Rのそれぞれの管路の圧油を通過させる第1位置(イ)と、前記右の油圧モータの排出側の管路23Rの圧油を前記左の油圧モータの吸入側の管路22Lへ連通させる第2位置(ロ)とを有している。   A switching valve 30 is interposed at a position where both the suction side pipeline 22L of the left hydraulic motor and the discharge side pipeline 23R of the right hydraulic motor are blocked. The switching valve 30 has a first position (A) for allowing the pressure oil in each of the suction side pipe line 22L of the left hydraulic motor and the discharge side pipe line 23R of the right hydraulic motor to pass, and the right valve And a second position (b) for communicating the pressure oil in the discharge side pipe line 23R of the hydraulic motor to the suction side pipe line 22L of the left hydraulic motor.

前記切換弁30のソレノイド31には制御部40からの信号線41が接続されており、該ソレノイド31が励磁されていないノーマル状態では、バネ32の付勢により切換弁30は第1位置(イ)にある。また、符号50は左右何れかの駆動輪14L,14Rのスリップを検知するスリップ検知手段である。このスリップ検知手段50は信号線42により前記制御部40へ接続されている。   A signal line 41 from the control unit 40 is connected to the solenoid 31 of the switching valve 30. In a normal state in which the solenoid 31 is not excited, the switching valve 30 is moved to the first position (a) by the bias of the spring 32. )It is in. Reference numeral 50 denotes a slip detection means for detecting the slip of the left or right drive wheel 14L, 14R. The slip detection means 50 is connected to the control unit 40 by a signal line 42.

次に、本発明に係る走行装置の動作について説明する。通常走行する場合は、図1に示すように、前記切換弁30のソレノイド31を励磁せず、該切換弁30を第1位置(イ)にする。   Next, the operation of the traveling device according to the present invention will be described. When traveling normally, as shown in FIG. 1, the solenoid 31 of the switching valve 30 is not excited, and the switching valve 30 is set to the first position (A).

該切換弁30が第1位置(イ)のときは、油圧ポンプ11からの圧油は吐出管路21を通り、途中から左の油圧モータ12Lの吸入側管路22Lと、右の油圧モータ12Rの吸入側管路22とに分岐する。左の油圧モータ12Lの吸入側管路22Lに分岐した圧油は、前記切換弁30が第1位置(イ)を通過して左の油圧モータ12Lへ供給され、該左の油圧モータ12Lを回転させて左の駆動輪14Lを駆動した後に、排出側管路23Lから油圧ポンプの吸入管路24へ戻る。   When the switching valve 30 is in the first position (A), the pressure oil from the hydraulic pump 11 passes through the discharge pipe 21, and in the middle, the suction side pipe 22L of the left hydraulic motor 12L and the right hydraulic motor 12R. Branches to the suction side pipe line 22. The pressure oil branched to the suction side pipeline 22L of the left hydraulic motor 12L is supplied to the left hydraulic motor 12L through the switching valve 30 through the first position (A), and rotates the left hydraulic motor 12L. After driving the left drive wheel 14L, the discharge side pipe 23L returns to the hydraulic pump suction pipe 24.

また、右の油圧モータ12Rの吸入側管路22Rに分岐した圧油は、そのまま右の油圧モータ12Rへ供給され、該右の油圧モータ12Rを回転させて右の駆動輪14Rを駆動した後に、排出側管路23Rから前記切換弁30が第1位置(イ)を通過して、油圧ポンプの吸入管路24へ戻る。   Further, the pressure oil branched to the suction side pipe 22R of the right hydraulic motor 12R is supplied to the right hydraulic motor 12R as it is, and after rotating the right hydraulic motor 12R and driving the right drive wheel 14R, The switching valve 30 passes through the first position (A) from the discharge side pipe 23R and returns to the suction pipe 24 of the hydraulic pump.

この状態では、通常の直進時は1:1に分流された圧油が左右の油圧モータ12L,12Rに供給されて左右の駆動輪14L,14Rが同一回転となり、旋回時は左右の駆動輪14L,14Rの回転差に応じて左右の油圧モータ12L,12Rへの流量が変化して回転差を調整する。   In this state, the pressure oil that has been divided into 1: 1 during normal straight travel is supplied to the left and right hydraulic motors 12L and 12R, so that the left and right drive wheels 14L and 14R rotate in the same direction. , 14R, the flow rate to the left and right hydraulic motors 12L, 12R changes to adjust the rotation difference.

ここで、軟弱路面や凹凸のある路面などで、一方の駆動輪例えば右側の駆動輪14Rがスリップした場合は、右側の駆動輪14Rの負荷がなくなって右の油圧モータ12Rが空転し、左の油圧モータ12Lには圧油が流れなくなって左の駆動輪14Lの駆動力が低下する。   Here, when one drive wheel, for example, the right drive wheel 14R slips on a soft road surface or an uneven road surface, the load on the right drive wheel 14R disappears, the right hydraulic motor 12R runs idle, Pressure oil no longer flows through the hydraulic motor 12L, and the driving force of the left driving wheel 14L decreases.

本発明では、駆動輪がスリップした場合は、前記検知手段50がスリップを検知して制御部40へ検知信号を送る。制御部40は該検知信号を受けると、前記切換弁30のソレノイド31へ制御信号を送って励磁させ、前記切換弁30を第2位置(ロ)に切り換える。あるいは、駆動輪がスリップした場合に、オペレータが手動でスイッチ(図示せず)を操作し、前記ソレノイド31を励磁して前記切換弁30を第2位置(ロ)に切り換えてもよい。   In the present invention, when the drive wheel slips, the detection means 50 detects the slip and sends a detection signal to the control unit 40. Upon receiving the detection signal, the control unit 40 sends a control signal to the solenoid 31 of the switching valve 30 to excite it, and switches the switching valve 30 to the second position (B). Alternatively, when the drive wheel slips, an operator may manually operate a switch (not shown) to excite the solenoid 31 and switch the switching valve 30 to the second position (B).

図2に示すように、右側の駆動輪14Rがスリップした場合に、制御部40の制御によって切換弁30が第2位置(ロ)に切り換わると、前記吐出管路21と、該吐出管路21から分岐した左の油圧モータ12Lの吸入側管路22Lとの間が遮断され、右の油圧モータ12Rの排出側の管路23Rと、左の油圧モータ12Lの吸入側の管路22Lが連通する。   As shown in FIG. 2, when the switching valve 30 is switched to the second position (b) under the control of the control unit 40 when the right drive wheel 14 </ b> R slips, the discharge pipe 21 and the discharge pipe 21 is disconnected from the suction side pipe line 22L of the left hydraulic motor 12L, and the discharge side pipe line 23R of the right hydraulic motor 12R and the suction side pipe line 22L of the left hydraulic motor 12L communicate with each other. To do.

該切換弁30が第2位置(ロ)のときは、油圧ポンプ11からの圧油は吐出管路21を通り、先ず右の油圧モータ12Rの吸入側の管路22Rへ圧油が供給され、右の油圧モータ12Rを回転させて右の駆動輪14Rを駆動する。したがって、スリップしている右の駆動輪14Rにも多少の駆動力が発生する。   When the switching valve 30 is in the second position (b), the pressure oil from the hydraulic pump 11 passes through the discharge pipe 21 and is first supplied to the pipe 22R on the suction side of the right hydraulic motor 12R. The right hydraulic motor 12R is rotated to drive the right drive wheel 14R. Therefore, some driving force is also generated in the slipping right driving wheel 14R.

そして、右の油圧モータ12Rの排出側の管路23Rに排出された圧油は、前記切換弁30の第2位置(ロ)を通って、左の油圧モータ12Lの吸入側管路22Lへ圧油が供給され、左の油圧モータ12Lを回転させて左の駆動輪14Lを駆動する。左の油圧モータ12Lの排出側の管路23Lに排出された圧油は、吸入管路24を経て前記油圧ポンプ11もしくはタンク(図示せず)に戻される。   Then, the pressure oil discharged to the discharge side pipe 23R of the right hydraulic motor 12R passes through the second position (B) of the switching valve 30 and is pressurized to the suction side pipe 22L of the left hydraulic motor 12L. Oil is supplied and the left hydraulic motor 12L is rotated to drive the left drive wheel 14L. The pressure oil discharged to the discharge line 23L of the left hydraulic motor 12L is returned to the hydraulic pump 11 or a tank (not shown) through the suction line 24.

このように、左右何れかの駆動輪14L,14Rがスリップした場合は、前記切換弁30を第2位置(ロ)に切り換えることにより、左右の油圧モータ12L,12Rがタンデム接続となり、油圧ポンプ11の圧油が左右の油圧モータ12L,12Rを順番に流れる。したがって、左右の油圧モータ12L,12Rがほぼ同一回転となり、スリップした側の駆動輪にも多少の駆動力が発生する。   As described above, when one of the left and right drive wheels 14L and 14R slips, the left and right hydraulic motors 12L and 12R are connected in tandem by switching the switching valve 30 to the second position (B). Pressure oil flows through the left and right hydraulic motors 12L, 12R in turn. Accordingly, the left and right hydraulic motors 12L and 12R rotate substantially the same, and some driving force is generated on the slipping drive wheels.

なお、本発明は、本発明の精神を逸脱しない限り種々の改変を為すことができ、そして、本発明が該改変されたものに及ぶことは当然である。   It should be noted that the present invention can be variously modified without departing from the spirit of the present invention, and the present invention naturally extends to the modified ones.

本発明に係る自走式舗装機械における走行装置の回路図。The circuit diagram of the traveling apparatus in the self-propelled pavement machine which concerns on this invention. 図1の作動状態を示す図。The figure which shows the operation state of FIG. 従来の自走式舗装機械の走行装置の回路図。The circuit diagram of the traveling apparatus of the conventional self-propelled pavement machine. 従来の自走式舗装機械の走行装置の回路図。The circuit diagram of the traveling apparatus of the conventional self-propelled pavement machine.

符号の説明Explanation of symbols

10 エンジン
11 油圧ポンプ
12L,12R 油圧モータ
14L,14R 駆動輪
21 吐出管路
22L,22R 吸入側管路
23L,23R 排出側管路
24 吸入管路
30 切換弁
(イ) 第1位置
(ロ) 第2位置
40 制御部
50 検知手段
DESCRIPTION OF SYMBOLS 10 Engine 11 Hydraulic pump 12L, 12R Hydraulic motor 14L, 14R Drive wheel 21 Discharge line 22L, 22R Suction side line 23L, 23R Discharge side line 24 Suction line 30 Switching valve (A) First position (B) First position 2 position 40 control unit 50 detection means

Claims (2)

エンジンにより駆動される油圧ホンプと、該油圧ポンプから吐出される圧油により左右の駆動輪をそれぞれ独立して駆動する左右の油圧モータを備えたホイール式の自走式舗装機械において、
前記油圧ポンプからの圧油を前記左右の油圧モータへ分流して給排する第1位置と、前記油圧ポンプからの圧油を前記左右の油圧モータへ順番に給排する第2位置とを有する切換弁を設け、
前記左右何れかの駆動輪がスリップした場合は、前記切換弁を第2位置に切り換える制御部を備えたことを特徴とする自走式舗装機械における走行装置。
In a wheel-type self-propelled pavement machine provided with a hydraulic pump driven by an engine and left and right hydraulic motors that independently drive left and right drive wheels by pressure oil discharged from the hydraulic pump,
A first position for distributing and supplying pressure oil from the hydraulic pump to the left and right hydraulic motors; and a second position for sequentially supplying and discharging pressure oil from the hydraulic pump to the left and right hydraulic motors. Provide a switching valve,
A traveling device in a self-propelled pavement machine, comprising a control unit that switches the switching valve to a second position when either of the left and right drive wheels slips.
上記切換弁は、上記左右何れか一方の油圧モータの吸入側の管路と他方の油圧モータの排出側の管路を遮断する位置に配設され、ノーマル状態では上記第1位置にて前記それぞれの管路の圧油を通過させ、スリップ状態では上記第2位置にて前記他方の油圧モータの排出側の管路の圧油を前記一方の油圧モータの吸入側の管路へ連通させるように形成されたことを特徴とする請求項1記載の自走式舗装機械における走行装置。   The switching valve is disposed at a position where the suction-side pipe line of the left or right hydraulic motor and the discharge-side pipe line of the other hydraulic motor are cut off. In the slip state, the pressure oil in the discharge side pipe of the other hydraulic motor is communicated with the suction side pipe of the one hydraulic motor in the slip state. The traveling device for a self-propelled paving machine according to claim 1, wherein the traveling device is formed.
JP2008027759A 2008-02-07 2008-02-07 Traveling device of self-propelling paving machine Pending JP2009185545A (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104442375A (en) * 2013-09-24 2015-03-25 陕西中大机械集团有限责任公司 Anti-slip walking hydraulic device for road roller
WO2016093382A1 (en) * 2014-12-09 2016-06-16 Volvo Construction Equipment Ab Paver with traction control function
CN109024178A (en) * 2018-09-04 2018-12-18 青岛科泰重工机械有限公司 A kind of novel fueling injection equipment for rubber-tyred roller
CN115384306A (en) * 2022-10-27 2022-11-25 潍柴雷沃智慧农业科技股份有限公司 Hydrostatic four-wheel drive control system and agricultural machine

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Publication number Priority date Publication date Assignee Title
JP2001018670A (en) * 1999-07-09 2001-01-23 Handa Kikai Kk Traveling device for asphalt finisher
JP2001032207A (en) * 1999-07-27 2001-02-06 Sumitomo Constr Mach Co Ltd Construction machinery traveling device for road pavement
JP2003082610A (en) * 2001-09-04 2003-03-19 Kawasaki Heavy Ind Ltd Tire roller
JP2006009272A (en) * 2004-06-22 2006-01-12 Sumitomo (Shi) Construction Machinery Manufacturing Co Ltd Travel drive unit of wheel-traveling type asphalt finisher

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2001018670A (en) * 1999-07-09 2001-01-23 Handa Kikai Kk Traveling device for asphalt finisher
JP2001032207A (en) * 1999-07-27 2001-02-06 Sumitomo Constr Mach Co Ltd Construction machinery traveling device for road pavement
JP2003082610A (en) * 2001-09-04 2003-03-19 Kawasaki Heavy Ind Ltd Tire roller
JP2006009272A (en) * 2004-06-22 2006-01-12 Sumitomo (Shi) Construction Machinery Manufacturing Co Ltd Travel drive unit of wheel-traveling type asphalt finisher

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104442375A (en) * 2013-09-24 2015-03-25 陕西中大机械集团有限责任公司 Anti-slip walking hydraulic device for road roller
WO2016093382A1 (en) * 2014-12-09 2016-06-16 Volvo Construction Equipment Ab Paver with traction control function
CN109024178A (en) * 2018-09-04 2018-12-18 青岛科泰重工机械有限公司 A kind of novel fueling injection equipment for rubber-tyred roller
CN115384306A (en) * 2022-10-27 2022-11-25 潍柴雷沃智慧农业科技股份有限公司 Hydrostatic four-wheel drive control system and agricultural machine

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