JP5128266B2 - lift device - Google Patents

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JP5128266B2
JP5128266B2 JP2007331202A JP2007331202A JP5128266B2 JP 5128266 B2 JP5128266 B2 JP 5128266B2 JP 2007331202 A JP2007331202 A JP 2007331202A JP 2007331202 A JP2007331202 A JP 2007331202A JP 5128266 B2 JP5128266 B2 JP 5128266B2
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runner
guide post
locking mechanism
hydraulic cylinder
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忠彦 鈴木
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日本リフト株式会社
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本発明は、昇降プラットホームを昇降駆動して荷役等に用いる昇降装置に関する。   The present invention relates to an elevating device that is used for cargo handling or the like by driving an elevating platform up and down.

貨物自動車等の車両荷台後部に装着し、昇降プラットホームを昇降させることで貨物等の荷台への積み降ろしを行う昇降装置(荷役作業機)が、近年しばしば使用されるようになってきている。この種の昇降装置では、昇降プラットホームを昇降させて荷役を行うが、不使用時(走行時)は昇降プラットホームを垂直に立てて荷台の後部ゲート板と兼用するのが一般的である。   2. Description of the Related Art In recent years, a lifting device (loading work machine) that is mounted on a rear part of a vehicle loading platform such as a cargo vehicle and loads and unloads cargo on a loading platform by raising and lowering a lifting platform has been frequently used. In this type of lifting device, the lifting platform is moved up and down for cargo handling. When not in use (during traveling), it is common to stand the lifting platform vertically and also serve as the rear gate plate of the loading platform.

しかるに、大型車両に装着する昇降装置にあっては、昇降プラットホーム自体の重量が大となり、手動による開閉動作(ゲート板を兼ねたプラットホームを水平から垂直に立てる動作及びその逆の動作)が不可能になるので、昇降プラットホームの昇降駆動用の油圧シリンダとは別に開閉用の油圧シリンダを設けている。   However, in a lifting device mounted on a large vehicle, the lifting platform itself is heavy, and manual opening / closing operation (operation of standing the platform also serving as a gate plate from the horizontal to the vertical and vice versa) is impossible. Therefore, a hydraulic cylinder for opening and closing is provided separately from the hydraulic cylinder for raising and lowering driving of the raising and lowering platform.

また、開閉用の油圧シリンダを用いない機構としては、本出願人による特許文献1がある。   As a mechanism that does not use a hydraulic cylinder for opening and closing, there is Patent Document 1 by the present applicant.

実公昭55−5393号公報 この特許文献1では、車両シャーシ側に開閉用の案内レールを固着し、先端にローラーを有する開閉用棒を昇降プラットホーム(ゲート板)側に取り付け、開閉用棒を当該プラットホームと平行な面内で回動自在とすることで、開閉用棒先端のローラーが案内レールに係合可能な位置と、開閉用棒がプラットホーム内側に引き込まれた位置とを取り得るようにしている。開閉用棒先端のローラーが案内レールに係合可能な状態においては昇降プラットホームが上昇するのに伴って昇降プラットホームを閉じる向きに回動させることができる。In this patent document 1, an opening / closing guide rail is fixed to the vehicle chassis side, an opening / closing bar having a roller at the tip is attached to the lifting platform (gate plate) side, and the opening / closing bar is attached to the opening / closing platform. By making it rotatable in a plane parallel to the platform, it is possible to take a position where the roller at the tip of the opening / closing rod can be engaged with the guide rail and a position where the opening / closing rod is retracted inside the platform. Yes. In a state where the roller at the tip of the opening / closing rod can be engaged with the guide rail, the lifting platform can be rotated in the closing direction as the lifting platform rises.

上述したような従来例では、案内レールをシャーシ側の適切な位置に固定する必要があるが、車種によっては案内レールの適切な固定位置が見いだせない場合がある。また、開閉用棒は昇降プラットホームが水平に展開した荷役状態ではプラットホームの中間位置裏側に配置されることになるが、開閉用棒先端のローラーが案内レールに係合するように昇降プラットホーム裏側の開閉用棒を操作するのは操作性が悪い問題がある。   In the conventional example as described above, it is necessary to fix the guide rail to an appropriate position on the chassis side. However, depending on the vehicle type, an appropriate fixing position of the guide rail may not be found. In addition, the open / close bar is placed behind the platform when the lift platform is deployed horizontally, but the open / close bar on the back of the lift platform is engaged so that the roller at the tip of the open / close bar engages the guide rail. There is a problem that the operability is poor to operate the bar.

本発明は、上記の点に鑑み、昇降プラットホームの昇降と開閉に油圧シリンダを共用でき、昇降動作と開閉動作の切換を操作性よく実行でき、機構の簡素化を図ることが可能で、しかも多様な車種に適用可能な昇降装置を提供することを目的とする。   In view of the above points, the present invention can share a hydraulic cylinder for raising and lowering and opening and closing of the raising and lowering platform, can perform switching between the raising and lowering operation and the opening and closing operation with good operability, and can simplify the mechanism. An object of the present invention is to provide an elevating device applicable to various vehicle types.

本発明のその他の目的や新規な特徴は後述の実施の形態において明らかにする。   Other objects and novel features of the present invention will be clarified in embodiments described later.

上記目的を達成するために、本発明の第1の態様は、車両荷台に沿って垂直に取り付けられたガイドポストと、前記ガイドポストにより昇降自在に案内されるランナと、閉じた状態で垂直で開いた状態では水平になるように前記ランナに枢着される昇降プラットホームとを備える昇降装置であって、
一端が前記ガイドポストに枢着され、他端が前記昇降プラットホームに固定のアーム端部に枢着される複動油圧シリンダと、
前記ランナを上昇位置で係止する係止機構とを備え、
前記係止機構による係止解除状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの昇降動作を行い、
前記係止機構による前記ランナ係止状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの開閉動作を行うことを特徴としている。
In order to achieve the above object, a first aspect of the present invention includes a guide post mounted vertically along a vehicle bed, a runner guided by the guide post so as to be movable up and down, and a closed vertical state. An elevating device comprising an elevating platform pivotally attached to the runner so as to be horizontal in an open state,
A double-acting hydraulic cylinder having one end pivotally attached to the guide post and the other end pivotally attached to an arm end fixed to the elevating platform;
A locking mechanism for locking the runner in the raised position;
The lifting platform is moved up and down by operating the double acting hydraulic cylinder in the unlocked state by the locking mechanism,
The lifting platform is opened and closed by operating the double-acting hydraulic cylinder in the runner locking state by the locking mechanism.

本発明の第2の態様は、車両荷台に沿って垂直に取り付けられたガイドポストと、前記ガイドポストにより昇降自在に案内されるランナと、閉じた状態で垂直で開いた状態では水平になるように前記ランナに枢着される昇降プラットホームと、
一端が前記ガイドポストに枢着され、他端が前記昇降プラットホームに固定のアーム端部に枢着される複動油圧シリンダと、
前記ランナを上昇位置で係止する係止機構と、
前記昇降プラットホームに設けられた降下防止ストッパとを備え、
前記係止機構による係止解除状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの昇降動作を行い、
前記係止機構による前記ランナ係止状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの開閉動作を行い、
前記降下防止ストッパは、前記昇降プラットホームが垂直に閉じた状態のときに、前記車両荷台床面に係合可能な降下防止位置となり、前記昇降プラットホームが水平に開いたときは、前記車両荷台床面に対して係合解除となることを特徴としている。
According to a second aspect of the present invention, a guide post mounted vertically along a vehicle bed, a runner guided by the guide post so as to be movable up and down, and horizontally when closed and opened vertically. A lifting platform pivotally attached to the runner,
A double-acting hydraulic cylinder having one end pivotally attached to the guide post and the other end pivotally attached to an arm end fixed to the elevating platform;
A locking mechanism for locking the runner in the raised position;
A descent prevention stopper provided on the elevating platform,
The lifting platform is moved up and down by operating the double acting hydraulic cylinder in the unlocked state by the locking mechanism,
By opening and closing the lifting platform by operating the double-acting hydraulic cylinder in the runner locking state by the locking mechanism,
The descent prevention stopper is in a descent prevention position engageable with the vehicle bed floor when the lift platform is closed vertically, and when the lift platform is opened horizontally, the vehicle bed floor It is characterized in that the disengagement respect.

前記第2の態様において、前記降下防止ストッパは前記昇降プラットホームの上面に固着されて、当該上面から突出した突起であってもよい。   In the second aspect, the descent prevention stopper may be a protrusion that is fixed to the upper surface of the elevating platform and protrudes from the upper surface.

各態様において、前記複動油圧シリンダ及び係止機構は前記ガイドポスト内に設けられていてもよい。   In each aspect, the double-acting hydraulic cylinder and the locking mechanism may be provided in the guide post.

また、各態様において、前記係止機構は、前記ガイドポスト側に移動自在に設けられた第1係合部と、前記ランナ側の第2係合部とを有し、係止状態では前記第1係合部が前記第2係合部に係合して前記ランナの下降を阻止する構成でもよい。   Further, in each aspect, the locking mechanism includes a first engagement portion movably provided on the guide post side and a second engagement portion on the runner side. A configuration in which one engaging portion engages with the second engaging portion to prevent the runner from descending may be employed.

本発明に係る昇降装置によれば、昇降プラットホームの昇降と開閉に、ガイドポストに取り付けた油圧シリンダを共用でき、昇降動作と開閉動作の切換を操作性よく実行できる。この結果、機構の簡素化を図ることが可能である。   According to the lifting device of the present invention, the hydraulic cylinder attached to the guide post can be shared for lifting and lowering and opening and closing of the lifting platform, and switching between the lifting and closing operations can be performed with good operability. As a result, it is possible to simplify the mechanism.

しかも、昇降プラットホーム側に開閉のための特殊機構が不要で多様な車種に適用可能である。   In addition, a special mechanism for opening and closing is not required on the lifting platform side, and it can be applied to various vehicle types.

また、第2の態様のように、昇降プラットホームに降下防止ストッパを設けておくことで、降下防止ストッパは昇降プラットホームが垂直に閉じた状態のときに車両荷台床面に係合可能な降下防止位置となる。このため、昇降プラットホームが閉じた状態にあるとき、操作者の誤操作で昇降プラットホームの枢着されているランナの係止機構の係止解除を行っても、昇降プラットホームが不意に下降して開いてしまう動作を未然に防止できる。これにより、安全性の向上が可能である。   Further, as in the second aspect, by providing a descent prevention stopper on the elevating platform, the descent preventing stopper can be engaged with the vehicle bed floor when the elevating platform is vertically closed. It becomes. For this reason, when the lifting platform is in a closed state, the lifting platform is unexpectedly lowered and opened even if the locking mechanism of the runner pivotally attached to the lifting platform is released due to an erroneous operation by the operator. Can be prevented in advance. Thereby, safety can be improved.

以下、本発明を実施するための最良の形態として、昇降装置の実施の形態を図面に従って説明する。   Hereinafter, as the best mode for carrying out the present invention, an embodiment of a lifting device will be described with reference to the drawings.

図1乃至図4は本発明に係る昇降装置の実施の形態を示す。これらの図において、車両荷台1後部の左右両側に沿って垂直にガイドポスト2が取り付けられており、各ガイドポスト2内にガイドレール3が固定されている。ランナ4には少なくもと上下2カ所にローラー5が枢着されており(回転自在に取り付けられ)、これらのローラー5はガイドレール3で上下方向に移動自在に案内されている。つまり、各ガイドポスト2内に設けられたローラー付きのランナ4は、それぞれガイドポスト2により昇降自在に案内されることになる。   1 to 4 show an embodiment of a lifting device according to the present invention. In these drawings, guide posts 2 are attached vertically along the left and right sides of the rear part of the vehicle carrier 1, and guide rails 3 are fixed in the respective guide posts 2. Rollers 5 are pivotally attached to the runner 4 at least in two upper and lower positions (rotatably mounted), and these rollers 5 are guided by a guide rail 3 so as to be movable in the vertical direction. That is, the runner 4 with a roller provided in each guide post 2 is guided by the guide posts 2 so as to be movable up and down.

各ランナ4には取付用ブラケット6が固着一体化され、昇降プラットホーム10の基端部は左右両側において、ガイドポスト2の外側に延びているブラケット6及びプラットホーム基端部を貫通する取付ピン12でランナ4側に枢着されている。この結果、プラットホーム10は水平に展開して開いた状態(ブラケット6側のストッパで水平に支持される)と垂直に閉じた状態との間で回動自在に支持されかつ、ランナ4が昇降駆動されるのに伴って昇降自在である。   A mounting bracket 6 is fixedly integrated with each runner 4, and the base end portion of the lifting platform 10 is provided on both the left and right sides with a bracket 6 extending outside the guide post 2 and a mounting pin 12 penetrating the platform base end portion. It is pivotally attached to the runner 4 side. As a result, the platform 10 is supported so as to be rotatable between a state where the platform 10 is expanded and opened (supported horizontally by a stopper on the bracket 6 side) and a state where it is closed vertically, and the runner 4 is driven up and down. As it is done, it can move up and down.

また、昇降プラットホーム10の左右両側の基端部にはアーム20が固着されている。このアーム20の回転支点はピン12である。アーム20の先端部と、ガイドポスト2間に複動油圧シリンダ30が設けられる。すなわち、ガイドポスト2内に配置されている複動油圧シリンダ30の一端がガイドポスト2の内側上部にピン31で枢着され、他端がアーム20の先端部にピン32で枢着される。   In addition, arms 20 are fixed to the base end portions on both the left and right sides of the lifting platform 10. The rotation fulcrum of this arm 20 is a pin 12. A double-acting hydraulic cylinder 30 is provided between the tip of the arm 20 and the guide post 2. That is, one end of the double acting hydraulic cylinder 30 disposed in the guide post 2 is pivotally attached to the inner upper portion of the guide post 2 by the pin 31, and the other end is pivotally attached to the distal end portion of the arm 20 by the pin 32.

前記昇降プラットホーム10が車両荷台1の床面1aと同じ高さとなった昇降プラットホーム10の上昇限位置にてランナ4を係止する(下降しないように保持する)係止機構40がガイドポスト2内に配置されている。この係止機構40は、ガイドポスト2にピン41にて枢着された第1係合部としての係合レバー42と、ランナ4に形成された第2係合部としての係合凹部43と、係合レバー42を右回転方向(係合方向)に付勢するばね(図示省略)とを有している。係止状態では係合レバー42の一端部(係合端部)42aが係合凹部43に係合(嵌合)してランナ4の下降を阻止するようになっている。なお、係合レバー42の形状及び取付姿勢及び係合凹部43の形状は、昇降プラットホーム10が着地している下降限位置から床面1aと同じ高さの上昇限位置まで、ランナ4が上昇する向きの移動は妨げないように設定されている。   A locking mechanism 40 that locks the runner 4 at the ascending limit position of the lifting platform 10 where the lifting platform 10 is at the same height as the floor surface 1 a of the vehicle loading platform 1 (holds the runner 4 so as not to descend) is provided in the guide post 2. Is arranged. The locking mechanism 40 includes an engagement lever 42 as a first engagement portion pivotally attached to the guide post 2 by a pin 41, and an engagement recess 43 as a second engagement portion formed in the runner 4. And a spring (not shown) for urging the engagement lever 42 in the right rotation direction (engagement direction). In the locked state, one end (engagement end) 42a of the engagement lever 42 is engaged (fitted) with the engagement recess 43 to prevent the runner 4 from descending. Note that the shape and mounting posture of the engaging lever 42 and the shape of the engaging recess 43 are such that the runner 4 rises from the lower limit position where the elevating platform 10 is landed to the upper limit position having the same height as the floor surface 1a. It is set not to prevent the movement of the direction.

係合レバー42の他端部42bにはワイヤ44の一端が連結され、ガイドポスト2の外側の操作性の良い位置に設けたハンドル45に連動するガイドポスト内側のアーム46に、ワイヤ44の他端が連結されている。ハンドル45を操作してワイヤ44を引っ張ることで係止機構40の係止解除が可能である。すなわち、ワイヤ44を下向きに引っ張ることで、係合レバー42の係合端部42aを係合凹部43から外すことが可能である。係合レバー42の操作機構はワイヤに限定されず、リンク等を用いてもよいことは明らかである。   One end of a wire 44 is connected to the other end portion 42b of the engaging lever 42, and the other end of the wire 44 is connected to an arm 46 inside the guide post interlocked with a handle 45 provided at a position with good operability outside the guide post 2. The ends are connected. The locking mechanism 40 can be unlocked by operating the handle 45 and pulling the wire 44. That is, it is possible to remove the engagement end portion 42 a of the engagement lever 42 from the engagement recess 43 by pulling the wire 44 downward. Obviously, the operation mechanism of the engagement lever 42 is not limited to a wire, and a link or the like may be used.

昇降プラットホーム10の上面には、三角板状突起である降下防止ストッパ48が当該プラットホーム上面から突出して固着されている。降下防止ストッパ48は、図3のように昇降プラットホームが垂直に閉じた状態のときに、車両荷台1の床面1aに係合可能な降下防止位置となり、昇降プラットホームが水平に開いたときは、床面1aに対して係合解除となり、降下可能になる。   On the upper surface of the elevating platform 10, a descent prevention stopper 48, which is a triangular plate-like protrusion, protrudes from the upper surface of the platform and is fixed. The descent prevention stopper 48 becomes a descent prevention position that can be engaged with the floor surface 1a of the vehicle bed 1 when the elevating platform is vertically closed as shown in FIG. 3, and when the elevating platform is opened horizontally, The engagement is released with respect to the floor surface 1a and can be lowered.

詳細は省略するが、前記ガイドポスト2には昇降プラットホーム10を垂直に立てて閉じた状態に保持するためのロック機構70が設けられている。ロック機構70は例えば昇降プラットホーム10の側面にロックピン71を差し込んでプラットホーム10を垂直に保持するものである。   Although not described in detail, the guide post 2 is provided with a lock mechanism 70 for holding the elevating platform 10 in a vertically upright state. For example, the lock mechanism 70 is configured to hold the platform 10 vertically by inserting a lock pin 71 into a side surface of the elevating platform 10.

図5は前記昇降装置を駆動するための油圧回路であり、油タンク60と、油タンク60内の作動油を吸い上げて2本の複動油圧シリンダ30に作動油を供給する油圧ポンプ50と、これを駆動する電動モータ51と、電動モータ51への通電を制御するスイッチ52と、ポンプ50の吐出側が一定圧力を超えたときに開いて作動油を油タンク60内に戻すリリーフ弁(安全弁)VA6と、第1、第2及び第3電磁切換弁VA1,VA2,VA3と、フロートコントロール弁(定流量弁)VA4と、同調弁VA5、チェック弁(逆止弁)VA7、絞り弁VA8とを有している。この図5の油圧回路では第1、第2及び第3電磁切換弁VA1,VA2,VA3共に非励磁状態を示している。   FIG. 5 shows a hydraulic circuit for driving the lifting device, an oil tank 60, a hydraulic pump 50 that sucks up the hydraulic oil in the oil tank 60 and supplies the hydraulic oil to the two double acting hydraulic cylinders 30; An electric motor 51 that drives this, a switch 52 that controls energization of the electric motor 51, and a relief valve (safety valve) that opens when the discharge side of the pump 50 exceeds a certain pressure and returns hydraulic oil into the oil tank 60 VA6, first, second and third electromagnetic switching valves VA1, VA2, VA3, float control valve (constant flow valve) VA4, tuning valve VA5, check valve (check valve) VA7, throttle valve VA8 Have. In the hydraulic circuit of FIG. 5, the first, second and third electromagnetic switching valves VA1, VA2 and VA3 are in a non-excited state.

本発明の実施の形態に係る昇降装置における昇降プラットホームの昇降動作及び開閉動作を図5の油圧回路を併用して説明する。   The raising / lowering operation and opening / closing operation of the raising / lowering platform in the raising / lowering apparatus based on Embodiment of this invention are demonstrated using the hydraulic circuit of FIG. 5 together.

図1の仮想線(イ)及び図3のように昇降プラットホーム10をガイドポスト2に沿わせて垂直に閉じた状態おいてロック機構70を解除し、係止機構40によるランナ4の保持を継続しながら、昇降プラットホーム10の自重を利用して複動油圧シリンダ30を縮動させる。これにより、昇降プラットホーム10は図1の仮想線(イ)の閉じた状態から実線(ロ)の水平に開いた状態に展開する。   As shown in the imaginary line (A) in FIG. 1 and FIG. 3, the lock mechanism 70 is released while the lifting platform 10 is vertically closed along the guide post 2, and the retaining mechanism 40 continues to hold the runner 4. Meanwhile, the double-acting hydraulic cylinder 30 is contracted by utilizing the weight of the lifting platform 10. Thereby, the raising / lowering platform 10 expand | deploys from the closed state of the virtual line (A) of FIG. 1 to the state opened horizontally of the continuous line (B).

この昇降プラットホーム10を垂直から水平に開く動作では、図5の油圧回路で第1電磁切換弁VA1は非励磁状態とし、第2電磁切換弁VA2のAコイルを励磁してA側に切り換え、かつ第3電磁切換弁VA3を励磁して開く。油圧回路の高圧側の圧力がチェック弁VA7に点線の経路で加わることでチェック弁VA7が開いて、昇降プラットホーム10が自重で開く方向に回動し始める。これに伴い、複動油圧シリンダ30の伸動駆動側給油口から出た作動油は、絞り弁VA8、チェック弁VA7、第2電磁切換弁VA2の経路で油タンク60内に還流するが、閉じた状態の第1電磁切換弁VA1に並列接続された絞り弁VA8で流量が絞られるため、昇降プラットホーム10の開く動作は緩慢に行われる。   In the operation of opening the lifting platform 10 from vertical to horizontal, the first electromagnetic switching valve VA1 is de-energized in the hydraulic circuit of FIG. 5, the A coil of the second electromagnetic switching valve VA2 is excited and switched to the A side, and The third electromagnetic switching valve VA3 is excited and opened. When the pressure on the high pressure side of the hydraulic circuit is applied to the check valve VA7 through a dotted path, the check valve VA7 opens, and the lifting platform 10 starts to rotate in its own weight. Along with this, the hydraulic oil that has come out from the extension drive side oil supply port of the double acting hydraulic cylinder 30 returns to the oil tank 60 through the path of the throttle valve VA8, the check valve VA7, and the second electromagnetic switching valve VA2, but is closed. Since the flow rate is throttled by the throttle valve VA8 connected in parallel to the first electromagnetic switching valve VA1 in the above state, the opening / closing platform 10 is opened slowly.

なお、昇降プラットホーム10の開き動作の初期において、油圧ポンプ50を短時間作動させて昇降プラットホーム10の垂直状態からの開き動作を確実にしてもよい。   In the initial stage of the opening operation of the lifting platform 10, the hydraulic pump 50 may be operated for a short time to ensure the opening operation of the lifting platform 10 from the vertical state.

ここで、三角板状突起である降下防止ストッパ48の作用について説明する。図1の仮想線(イ)、図3及び図4のように昇降プラットホーム10をガイドポスト2に沿わせて垂直に閉じた状態おいてロック機構70を解除し、係止機構40によるランナ4の保持を継続しながら、昇降プラットホーム10を水平に展開する動作を行わせる代わりに、操作者の誤操作によって係止機構40によるランナ4の保持を解除してしまった場合を考える。   Here, the operation of the descent prevention stopper 48 which is a triangular plate-like protrusion will be described. As shown in the imaginary line (a) in FIG. 1 and FIGS. 3 and 4, the lock mechanism 70 is released while the lifting platform 10 is vertically closed along the guide post 2, and the runner 4 is locked by the locking mechanism 40. Consider a case in which the holding of the runner 4 by the locking mechanism 40 is canceled due to an erroneous operation by the operator, instead of performing the operation of deploying the elevating platform 10 horizontally while continuing the holding.

このとき、降下防止ストッパ48が無いと、ランナ4は図2の着地位置に向かって下降してしまい、途中で昇降プラットホーム10が不意に開いてしまう危険がある。   At this time, if the descent prevention stopper 48 is not provided, the runner 4 is lowered toward the landing position in FIG. 2, and there is a risk that the elevating platform 10 is unexpectedly opened halfway.

これに対して、降下防止ストッパ48がある場合、図3の実線のように、降下防止ストッパ48は、昇降プラットホーム10が垂直に閉じた状態のときに、車両荷台1の床面1aに係合可能(床面1aに引っ掛かることが可能)な降下防止位置となっているため、係止機構40によるランナ4の保持を解除しても降下防止ストッパ48が床面1aに当接し、昇降プラットホーム10の下降は阻止される。このため、図1の仮想線(イ)の状態が維持される。以後、係止機構40によるランナ4の保持を行って、正常の昇降プラットホーム10を開く動作を行えばよい。   On the other hand, when there is the descent prevention stopper 48, as shown by the solid line in FIG. 3, the descent prevention stopper 48 is engaged with the floor 1a of the vehicle bed 1 when the elevating platform 10 is closed vertically. Since the lowering prevention position is possible (it can be caught on the floor surface 1a), the lowering prevention stopper 48 abuts against the floor surface 1a even if the holding of the runner 4 by the locking mechanism 40 is released. Is prevented from falling. For this reason, the state of the virtual line (A) in FIG. 1 is maintained. Thereafter, the runner 4 may be held by the locking mechanism 40 and the normal lifting platform 10 may be opened.

昇降プラットホーム10を図1の実線(ロ)の水平に開いた状態に展開した後(このとき降下防止ストッパ48は図3のように床面1aに引っ掛からない係合解除状態)、図2のようにワイヤ44を引っ張ることで係止機構40の係止を解除する。すなわち、係合レバー42の係合端部42aをランナ4に形成された係合凹部43から外して、ランナ4を自由に昇降可能にする。そして、昇降プラットホーム10の自重を利用して複動油圧シリンダ30を伸動させることで、昇降プラットホーム10は図2の実線(ハ)の上昇限位置(床面1aと同じ高さ)から仮想線(ニ)の下降位置(着地位置)に下降する。   After the lifting platform 10 is deployed in a state of being opened horizontally as shown by the solid line (b) in FIG. 1 (at this time, the lowering prevention stopper 48 is disengaged so as not to be caught on the floor surface 1a as shown in FIG. 3), as shown in FIG. By pulling the wire 44, the locking mechanism 40 is unlocked. That is, the engaging end 42a of the engaging lever 42 is removed from the engaging recess 43 formed in the runner 4 so that the runner 4 can freely move up and down. Then, the double-acting hydraulic cylinder 30 is extended by utilizing the dead weight of the lifting platform 10 so that the lifting platform 10 is imaginary from the rising limit position (the same height as the floor surface 1a) of the solid line (c) in FIG. Lower to the descent position (landing position) of (d).

この昇降プラットホーム10の下降動作では、図5の油圧回路において、第1電磁切換弁VA1を励磁して開き、第2電磁切換弁VA2のBコイルを励磁してB側に切り換え、かつ、第3電磁切換弁VA3を励磁して開く。これにより、昇降プラットホーム10が自重で下降するのに伴い、複動油圧シリンダ30の縮動駆動側給油口から出た作動油を、第3電磁切換弁VA3、同調弁VA5、フロートコントロール弁VA4、第2電磁切換弁VA2の経路で油タンク60内に還流させる。このとき、フロートコントロール弁VA4が作動油の還流経路に挿入されているので、昇降プラットホーム10の下降速度は昇降プラットホーム10上の積載物の重量にかかわらずほぼ一定に維持される。   In the lowering operation of the lifting platform 10, in the hydraulic circuit of FIG. 5, the first electromagnetic switching valve VA1 is excited and opened, the B coil of the second electromagnetic switching valve VA2 is excited and switched to the B side, and the third The electromagnetic switching valve VA3 is excited and opened. As a result, as the lifting platform 10 is lowered by its own weight, the hydraulic oil that has come out of the compression driving side oil supply port of the double acting hydraulic cylinder 30 is supplied to the third electromagnetic switching valve VA3, the tuning valve VA5, the float control valve VA4, The oil is recirculated into the oil tank 60 through the path of the second electromagnetic switching valve VA2. At this time, since the float control valve VA4 is inserted into the hydraulic oil recirculation path, the descending speed of the elevating platform 10 is maintained almost constant regardless of the weight of the load on the elevating platform 10.

昇降プラットホーム10を図2の仮想線(ニ)の下降位置(着地位置)から実線(ハ)の上昇限位置(床面1aと同じ高さ)にまで上昇させる動作は、係止機構40の係止解除状態で複動油圧シリンダ30を縮動させることにより行う。   The operation of raising the lifting platform 10 from the lowered position (landing position) of the phantom line (d) in FIG. 2 to the rising limit position (the same height as the floor surface 1a) of the solid line (c) is related to the locking mechanism 40. This is performed by contracting the double-acting hydraulic cylinder 30 in the stop release state.

この昇降プラットホーム10の上昇動作では、図5の油圧回路で第1電磁切換弁VA1を励磁して開き、第2電磁切換弁VA2のAコイルを励磁してA側に切り換え、かつ第3電磁切換弁VA3を励磁して開いた状態として、油圧ポンプ50を作動させる。油圧ポンプ50から吐出された作動油は、第2電磁切換弁VA2、フロートコントロール弁VA4、同調弁VA5、第3電磁切換弁VA3の経路で縮動駆動側給油口に供給され、複動油圧シリンダ30を縮動させる。なお、伸動駆動側給油口から出た作動油は、第1電磁切換弁VA1、チェック弁VA7(点線の経路で圧力が加わり開状態)、第2電磁切換弁VA2の経路で油タンク60内に戻る。   In the lifting operation of the lifting platform 10, the first electromagnetic switching valve VA1 is excited and opened by the hydraulic circuit of FIG. 5, the A coil of the second electromagnetic switching valve VA2 is excited and switched to the A side, and the third electromagnetic switching is performed. The hydraulic pump 50 is operated with the valve VA3 excited and opened. The hydraulic oil discharged from the hydraulic pump 50 is supplied to the compression drive side oil supply port through the path of the second electromagnetic switching valve VA2, the float control valve VA4, the tuning valve VA5, and the third electromagnetic switching valve VA3, and is a double-acting hydraulic cylinder. 30 is contracted. In addition, the hydraulic oil that has come out from the extension drive side oil supply port is in the oil tank 60 through the first electromagnetic switching valve VA1, the check valve VA7 (pressure is applied through the dotted line path), and the second electromagnetic switching valve VA2. Return to.

昇降プラットホーム10の上昇限位置(床面1aと同じ高さ)で昇降プラットホーム10を水平状態から垂直に閉じる場合、図1のようにワイヤ44を戻して係止機構40でランナ4を係止する。すなわち、係合レバー42の係合端部42aをランナ4に形成された係合凹部43に係合して、ランナ4の下降を阻止する。そして、複動油圧シリンダ30を伸動させることで、昇降プラットホーム10を水平から垂直に閉じることができる。   When the lifting platform 10 is closed vertically from the horizontal state at the ascending limit position (the same height as the floor surface 1a) of the lifting platform 10, the wire 44 is returned and the runner 4 is locked by the locking mechanism 40 as shown in FIG. . That is, the engaging end 42 a of the engaging lever 42 is engaged with the engaging recess 43 formed in the runner 4 to prevent the runner 4 from descending. And the raising / lowering platform 10 can be closed perpendicularly | vertically by extending the double acting hydraulic cylinder 30. FIG.

この昇降プラットホーム10の閉じる動作では、図5の油圧回路において第1電磁切換弁VA1は非励磁とし、第2電磁切換弁VA2のBコイルを励磁してB側に切り換え、かつ第3電磁切換弁VA3を励磁して開く。そして、油圧ポンプ50を作動させることで、作動油を、第2電磁切換弁VA2、チェック弁VA7、絞り弁VA8を通して伸動駆動側給油口に供給し、複動油圧シリンダ30を伸動させる。このとき、閉じた状態の第1電磁切換弁VA1に並列接続された絞り弁VA8で流量が絞られるため、昇降プラットホーム10の閉じる動作は緩慢に行われる。   In the closing operation of the lifting platform 10, the first electromagnetic switching valve VA1 is de-energized in the hydraulic circuit of FIG. 5, the B coil of the second electromagnetic switching valve VA2 is excited to switch to the B side, and the third electromagnetic switching valve Energize and open VA3. Then, by operating the hydraulic pump 50, hydraulic oil is supplied to the extension drive side oil supply port through the second electromagnetic switching valve VA2, the check valve VA7, and the throttle valve VA8, and the double action hydraulic cylinder 30 is extended. At this time, since the flow rate is throttled by the throttle valve VA8 connected in parallel to the closed first electromagnetic switching valve VA1, the closing operation of the lifting platform 10 is performed slowly.

この実施の形態によれば、次の通りの効果を得ることができる。   According to this embodiment, the following effects can be obtained.

(1) 昇降プラットホーム10の昇降と開閉に、ガイドポスト2に取り付けた複動油圧シリンダ30を共用でき、開閉動作と昇降動作の切換を、ガイドポスト2に設けた係止機構40でランナ4を係止するか係止解除するかによって操作性よく実行できる。 (1) The double-acting hydraulic cylinder 30 attached to the guide post 2 can be shared for the raising and lowering and opening and closing of the raising and lowering platform 10, and the runner 4 can be switched between the opening and closing operation and the raising and lowering operation by the locking mechanism 40 provided on the guide post 2. It can be executed with good operability depending on whether it is locked or unlocked.

(2) 昇降プラットホーム10の重量が大きくても、開閉専用の油圧シリンダは不要であり、機構の簡素化を図ることが可能である。 (2) Even if the lifting platform 10 is heavy, a hydraulic cylinder dedicated to opening and closing is not necessary, and the mechanism can be simplified.

(3) 昇降プラットホーム10に降下防止ストッパ48を設けておくことで、降下防止ストッパ48は昇降プラットホーム10が垂直に閉じた状態のときに車両荷台1の床面1aに係合可能な降下防止位置となる。このため、昇降プラットホーム10が閉じた状態にあるとき、操作者の誤操作で昇降プラットホーム10の枢着されているランナ4の係止機構40の係止解除を行っても、昇降プラットホーム10が不意に下降して開いてしまう動作を未然に防止できる。これにより、安全性の向上が可能である。 (3) By providing the elevating platform 10 with the descent prevention stopper 48, the descent prevention stopper 48 can be engaged with the floor 1a of the vehicle bed 1 when the elevating platform 10 is closed vertically. It becomes. For this reason, when the lifting platform 10 is in a closed state, even if the locking mechanism 40 of the runner 4 pivotally attached to the lifting platform 10 is unlocked by an operator's erroneous operation, the lifting platform 10 is unexpectedly moved. The operation of lowering and opening can be prevented in advance. Thereby, safety can be improved.

(4) 昇降プラットホーム側に開閉のための特殊機構が不要で多様な車種に適用可能である。 (4) No special mechanism for opening and closing is required on the lifting platform side, and it can be applied to various vehicle types.

(5) 複動油圧シリンダ30及び係止機構40はガイドポスト2内に設けて収納でき、可動部分がガイドポスト2内に入ることで、安全性にも優れている。 (5) The double-acting hydraulic cylinder 30 and the locking mechanism 40 can be provided and stored in the guide post 2, and the movable part enters the guide post 2.

なお、ガイドポスト内を昇降するランナを係止する係止機構は、図示の形状に限定されない。例えば、前記係止機構は、前記ガイドポスト側に移動自在に設けられた第1係合部と、前記ランナ側の第2係合部(例えば第1係合部と嵌合する凸部又は凹部)とを有する構造であって、係止状態では前記第1係合部が前記第2係合部に係合して前記ランナの下降を阻止する構成でもよい。   The locking mechanism that locks the runner that moves up and down in the guide post is not limited to the shape shown in the drawing. For example, the locking mechanism includes a first engagement portion that is movably provided on the guide post side, and a second engagement portion on the runner side (for example, a convex portion or a concave portion that fits with the first engagement portion). In the locked state, the first engaging portion may engage with the second engaging portion to prevent the runner from descending.

以上本発明の実施の形態について説明してきたが、本発明はこれに限定されることなく請求項の記載の範囲内において各種の変形、変更が可能なことは当業者には自明であろう。   Although the embodiments of the present invention have been described above, it will be obvious to those skilled in the art that the present invention is not limited to these embodiments, and various modifications and changes can be made within the scope of the claims.

本発明に係る昇降装置の実施の形態であって、昇降プラットホームの開閉動作を説明する側断面図である。It is embodiment of the raising / lowering apparatus which concerns on this invention, Comprising: It is a sectional side view explaining the opening / closing operation | movement of a raising / lowering platform. 同じく昇降プラットホームの昇降動作を説明する側断面図である。It is a sectional side view explaining the raising / lowering operation | movement of a raising / lowering platform similarly. 降下防止ストッパの作用を説明するための拡大側面図である。It is an enlarged side view for demonstrating the effect | action of a descent | fall prevention stopper. 前記昇降装置において、昇降プラットホームが垂直に閉じた状態の背面図である。FIG. 3 is a rear view of the lifting device with a lifting platform vertically closed. 昇降プラットホームを昇降及び開閉するための油圧回路図である。It is a hydraulic circuit diagram for raising / lowering and opening / closing the raising / lowering platform.

符号の説明Explanation of symbols

1 車両荷台
1a 床面
2 ガイドポスト
3 ガイドレール
4 ランナ
5 ローラー
6 取付用ブラケット
10 昇降プラットホーム
12 取付ピン
20 アーム
30 複動油圧シリンダ
40 係止機構
42 係合レバー
43 係合凹部
44 ワイヤ
48 降下防止ストッパ
50 油圧ポンプ
60 油タンク
70 ロック機構
DESCRIPTION OF SYMBOLS 1 Vehicle bed 1a Floor surface 2 Guide post 3 Guide rail 4 Runner 5 Roller 6 Mounting bracket 10 Lifting platform 12 Mounting pin 20 Arm 30 Double acting hydraulic cylinder 40 Locking mechanism 42 Engaging lever 43 Engaging recess 44 Wire 48 Prevention of descent Stopper 50 Hydraulic pump 60 Oil tank 70 Lock mechanism

Claims (5)

車両荷台に沿って垂直に取り付けられたガイドポストと、前記ガイドポストにより昇降自在に案内されるランナと、閉じた状態で垂直で開いた状態では水平になるように前記ランナに枢着される昇降プラットホームとを備える昇降装置であって、
一端が前記ガイドポストに枢着され、他端が前記昇降プラットホームに固定のアーム端部に枢着される複動油圧シリンダと、
前記ランナを上昇位置で係止する係止機構とを備え、
前記係止機構による係止解除状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの昇降動作を行い、
前記係止機構による前記ランナ係止状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの開閉動作を行うことを特徴とする昇降装置。
A guide post mounted vertically along the vehicle bed, a runner guided by the guide post so as to freely move up and down, and a lift that is pivotally attached to the runner so as to be horizontal when closed and opened vertically. A lifting device comprising a platform,
A double-acting hydraulic cylinder having one end pivotally attached to the guide post and the other end pivotally attached to an arm end fixed to the elevating platform;
A locking mechanism for locking the runner in the raised position;
The lifting platform is moved up and down by operating the double acting hydraulic cylinder in the unlocked state by the locking mechanism,
An elevating device that opens and closes the elevating platform by operating the double-acting hydraulic cylinder in the runner locked state by the locking mechanism.
車両荷台に沿って垂直に取り付けられたガイドポストと、前記ガイドポストにより昇降自在に案内されるランナと、閉じた状態で垂直で開いた状態では水平になるように前記ランナに枢着される昇降プラットホームと、
一端が前記ガイドポストに枢着され、他端が前記昇降プラットホームに固定のアーム端部に枢着される複動油圧シリンダと、
前記ランナを上昇位置で係止する係止機構と、
前記昇降プラットホームに設けられた降下防止ストッパとを備え、
前記係止機構による係止解除状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの昇降動作を行い、
前記係止機構による前記ランナ係止状態で前記複動油圧シリンダを作動させることで前記昇降プラットホームの開閉動作を行い、
前記降下防止ストッパは、前記昇降プラットホームが垂直に閉じた状態のときに、前記車両荷台床面に係合可能な降下防止位置となり、前記昇降プラットホームが水平に開いたときは、前記車両荷台床面に対して係合解除となることを特徴とする昇降装置。
A guide post mounted vertically along the vehicle bed, a runner guided by the guide post so as to freely move up and down, and a lift that is pivotally attached to the runner so as to be horizontal when closed and opened vertically. Platform,
A double-acting hydraulic cylinder having one end pivotally attached to the guide post and the other end pivotally attached to an arm end fixed to the elevating platform;
A locking mechanism for locking the runner in the raised position;
A descent prevention stopper provided on the elevating platform,
The lifting platform is moved up and down by operating the double acting hydraulic cylinder in the unlocked state by the locking mechanism,
By opening and closing the lifting platform by operating the double-acting hydraulic cylinder in the runner locking state by the locking mechanism,
The descent prevention stopper is in a descent prevention position engageable with the vehicle bed floor when the lift platform is closed vertically, and when the lift platform is opened horizontally, the vehicle bed floor A lifting device characterized in that the engagement is released.
前記降下防止ストッパは前記昇降プラットホームの上面に固着されて、当該上面から突出した突起である請求項2記載の昇降装置。   The lifting device according to claim 2, wherein the lowering prevention stopper is a protrusion that is fixed to the upper surface of the lifting platform and protrudes from the upper surface. 前記複動油圧シリンダ及び係止機構は前記ガイドポスト内に設けられている請求項1,2又は3記載の昇降装置。   4. The lifting device according to claim 1, wherein the double-acting hydraulic cylinder and the locking mechanism are provided in the guide post. 前記係止機構は、前記ガイドポスト側に移動自在に設けられた第1係合部と、前記ランナ側の第2係合部とを有し、係止状態では前記第1係合部が前記第2係合部に係合して前記ランナの下降を阻止する請求項1,2,3又は4記載の昇降装置。   The locking mechanism includes a first engagement portion movably provided on the guide post side and a second engagement portion on the runner side. In the locked state, the first engagement portion is The elevating device according to claim 1, 2, 3, or 4, wherein the elevating device is engaged with a second engaging portion to prevent the runner from descending.
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