JPS584675A - Driving system for service car - Google Patents
Driving system for service carInfo
- Publication number
- JPS584675A JPS584675A JP9992681A JP9992681A JPS584675A JP S584675 A JPS584675 A JP S584675A JP 9992681 A JP9992681 A JP 9992681A JP 9992681 A JP9992681 A JP 9992681A JP S584675 A JPS584675 A JP S584675A
- Authority
- JP
- Japan
- Prior art keywords
- wheels
- aircraft
- rockable
- crosswise
- car body
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B60—VEHICLES IN GENERAL
- B60G—VEHICLE SUSPENSION ARRANGEMENTS
- B60G5/00—Resilient suspensions for a set of tandem wheels or axles having interrelated movements
- B60G5/01—Resilient suspensions for a set of tandem wheels or axles having interrelated movements the set being characterised by having more than two successive axles
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Automatic Cycles, And Cycles In General (AREA)
Abstract
Description
【発明の詳細な説明】
本発明は1機体の左右情夫々に3優の車輪を機体前後方
向K11l設した作業車の走行装置に関し、車輪の電材
構造を合理的なものに改造することにより、たとえ不整
地であっても1機体を前後及び左右揺前の少ない安定し
た状態で支持させながら、かつ、上下振動の少ない状態
で走行させられるようにすることを目的とする。DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a traveling device for a work vehicle in which three wheels are installed on each of the left and right sides of one machine body in the longitudinal direction K11l of the machine body, and by modifying the electric material structure of the wheels to a rational one, To enable a machine to be supported in a stable state with little back-and-forth and side-to-side sway even on uneven ground, and to be able to run in a state with little vertical vibration.
次に1本発明の実施の態様を例示図に基いて説明する。Next, one embodiment of the present invention will be described based on illustrative drawings.
第1図に示すように、車輪式走行装置を有する機体の前
部に、運転部11+と原IFI s(!lを左右に並列
させた状態で設けると共に、それらの後方に、荷台(3
)を流体圧シリンダ(4)により軸芯岬周9で上下揺動
自在に設け、荷台(3)のダンプを可能にした運搬車を
構成しである。As shown in Fig. 1, a driving unit 11+ and an original IFI s(!l) are installed in parallel on the left and right at the front of the aircraft body having a wheeled traveling device, and a loading platform (3
) is provided so as to be able to swing vertically around the circumference of the axis 9 using a fluid pressure cylinder (4), thereby configuring a transport vehicle that is capable of dumping the cargo platform (3).
前記走行装置Fi、第2図ないし第4図に示す如く構成
しである。The traveling device Fi is constructed as shown in FIGS. 2 to 4.
すなわち1機体フレーム(6)の左右側夫々に3個の車
輪(6ml) 、 (6b) 、 (6b)をi体動後
方向に並置し、それら6個の車輪(6m)、(6b)・
・のうち機体前端側に位置する左右のもの(43a)、
(841)を、前ε機体フレーム(II K回前のみ自
在に取付け。In other words, three wheels (6ml), (6b), (6b) are placed side by side on the left and right sides of one body frame (6) in the backward direction of body movement, and these six wheels (6m), (6b),
・The left and right ones located at the front end of the aircraft (43a),
(841) can be freely attached to the front ε fuselage frame (II K times only).
そして、残りの4個の車輪(6b)・―のうち機体前端
側に位置する左右のものを $1111車輪取付部材(
))にその左右両端側に振り分は配置し九状態で回前自
在rCIIL付けると共に1機体後端側に位置する左右
のものを、第2車輪堆付部材(11にその左右両端側K
IE、り7分は配置した状態で回動自在Kll付け、そ
して、eIJ記第1車輪取付部材(1)の左右中間部を
、前記機体フレームfll) K横向会軸芯−屑pで上
下揺前自在に職付は九第3車輪順付部材+11の揺動軸
芯(唖よp前端側に位置する遊端部に機体前後向きの軸
芯嗜を育する連結軸によp枢支連結し、第2車輪取付部
材(8)の左右中間部を、前記第3車輪取付部材to+
の揺動輪8嗜より後端側に位置する道端部に機体前後向
會の軸芯−を有する連結軸により枢支連結しである。
つま夛1機体後端側の4個の車輪(6b)・・を、jl
lf3車輪権付部材(旬に対して、左右のものが機体前
後向きの軸芯(111周りで反響的かっ一体的に昇降す
る状態で、さらWC,@後のものを帰防軸芯憎の前後に
1119分けた状態で取付けて、平滑地においても不整
地Kmいても1機体全体としての支持が、安定的に行わ
せられるところの3点、すなわち1機体フレーム+1)
KjE付は良友右車輪(6m)、(6m)夫々の接地点
と、横向き軸芯嗜と前向き軸芯嗜の交点に相当する位置
時とにより行われるようにしである。 さらには、後端
側の4個の車輪(6b)@・の前後のものが第3車輪取
付部材(9)の揺動軸芯彎周りで反響的かつ一体的に昇
降することにより、地面の凹凸に起因する機体の上下変
位が地面凹凸に滑らかに追従する状態で行われるように
しである。Of the remaining four wheels (6b), install the left and right ones located at the front end of the aircraft using the $1111 wheel mounting member (
)) are placed on both the left and right ends of the rCIIL, which can be rotated freely in the 9 state, and the left and right ones located at the rear end of the fuselage are attached to the second wheel mounting member (11 on both the left and right ends of the rCIIL).
IE, attach the rotatable Kll in the state that it is placed, and then shake the left and right middle part of the first wheel mounting member (1) described in eIJ up and down with the above-mentioned fuselage frame full) The 9th and 3rd wheel ordering members + 11 swinging shafts (p-pivotally connected to the free end located on the front end side by a connecting shaft that develops the longitudinal axis of the fuselage) can be freely moved forward. Then, the left and right intermediate portions of the second wheel attachment member (8) are connected to the third wheel attachment member to+.
It is pivotally connected to the end of the road located on the rear end side of the swinging wheels 8 by a connecting shaft having an axis of longitudinal direction of the fuselage.
The four wheels (6b) on the rear end side of Tsumudan 1 aircraft are jl
lf3 wheel right member (relative to the season, the left and right ones move up and down in an echoing manner around 111) By attaching it in front and rear parts, it is possible to stably support the entire aircraft even on smooth ground or rough ground (1 aircraft frame + 1).
KjE attachment is to be carried out at the grounding points of Yoshitomo's right wheels (6m) and (6m), respectively, and at the position corresponding to the intersection of the horizontal axis and the forward axis. Furthermore, the front and rear wheels of the rear end side four wheels (6b) @ move up and down resonantly and integrally around the swing axis curvature of the third wheel mounting member (9), thereby raising and lowering the ground. This is to ensure that the vertical displacement of the aircraft body due to unevenness is carried out in a state in which it smoothly follows the unevenness of the ground.
又、6傭の車輪(6m)、(6b)・拳夫々に、油圧モ
ーター、及び、このモーターの回動力を車輪(組に減速
伝達するための装置−を付設し、そして、左側の車輪群
の3個の油圧モーター・・を一体的に駆動及び停止操作
するための操作員(l1m) 、及び、右側の車輪群の
3個の油圧モーター・・を一体的に駆動及び停止操作す
る丸めの操作員(llb)を、前記運転部+11に設け
、もって、全車輪(6す、(6b)・・を油圧駆動して
機体走行させると共に、前記操作具(l1m)、(ll
b) Kよる左右車輪群の択一的な停止操作により1機
体の旋回操作を行うようにしである。In addition, a hydraulic motor and a device for decelerating and transmitting the rotational force of this motor to the wheels (set) are attached to each of the six wheels (6m) and (6b), and the left wheel group An operator (l1m) who integrally drives and stops the three hydraulic motors of An operator (llb) is installed in the driving section +11, and hydraulically drives all the wheels (6s, (6b)...
b) A turning operation of one aircraft is performed by an alternative stop operation of the left and right wheel groups by K.
前記走行装置を構成するに、6傭の車輪のうち機体後端
側の左右のものを機体に取付け、前端側の4個を対機体
昇降可能に構成してもよい。In constructing the traveling device, the left and right wheels on the rear end side of the aircraft body among the six wheels may be attached to the aircraft body, and the four wheels on the front end side may be configured to be able to move up and down relative to the aircraft body.
上記走行装置は、バックホウ等各種作業車に適用で會ゐ
。The above traveling device is applicable to various work vehicles such as backhoes.
以上要するに1本発明は、冒記した作業車の走行装置に
おいて、前記車輪(6m)、(6b)のうち機体前後一
端側に位置する左右のもの(6す。In summary, one aspect of the present invention is that, in the above-mentioned traveling device for a work vehicle, among the wheels (6m) and (6b), the left and right wheels (6) are located at one end of the front and back of the machine body.
(6a)を前記機体に職付け、残りの4個の車輪(6す
・・を、前記機体に対して横向き軸芯−屑pで上下賜前
自在KMR付けた車輪取付部材(9)に。(6a) is attached to the above-mentioned fuselage, and the remaining four wheels (6...) are attached to the above-mentioned fuselage with a horizontal axle and a scrap p so that they can be freely raised and lowered.
左右の−のが機体前後向きの軸芯中周りで反響的かつ一
体的に昇降する状態で、さらに、n後の−のを前記車輪
取付部材(9)の揺動軸芯−の前後に@り分けた状lで
取付けである事を特徴とする。With the left and right - moving up and down resonantly and integrally around the center of the longitudinal axis of the aircraft, the - after n is moved forward and backward of the swing axis - of the wheel mounting member (9). It is characterized by being installed in a separate form.
つ*タ、上記構成によれば、車輪取付部材(11)に付
設の4儂の車輪(6b)・φが地面凹凸に応じて前後及
び左右に揺動することにより、たとえ不整地であっても
1機体支持が安定的に行われるところの3点、すなわち
1機体に付設の左右車輪(6a)、(6a)夫々と、横
向き軸芯19と前後向き軸芯(智の交点(曖とにより行
われることになり。*According to the above configuration, the four wheels (6b) and φ attached to the wheel mounting member (11) swing back and forth and left and right according to the unevenness of the ground. The three points at which one aircraft is stably supported, namely the left and right wheels (6a) and (6a) attached to one aircraft, the horizontal axis 19 and the longitudinal axis (the intersection of the two It will be done.
機体揺動を極力少なく抑制できるようになった。It has become possible to suppress the vibration of the aircraft as much as possible.
又、第6図に示す従来のように、車輪の全てを機体に固
定しであると1機体進行に伴う機体重心四の軌跡(2)
が地面(&lの形状とは大きく興なう九ものになるが1
本発明のものにあっては。In addition, as shown in Fig. 6, if all wheels are fixed to the aircraft body, the trajectory of the aircraft center of gravity (4) as the aircraft moves forward (2)
is on the ground (the shape of &l is very interesting, but 1
In the case of the present invention.
車輪取付部材(9)に取付けた4個の車輪(6b)・・
の前後のものが車輪取付部材(9)の揺動軸芯彎周りで
反響的かつ一体的に昇降す、ることにより。Four wheels (6b) attached to the wheel attachment member (9)...
The front and rear parts move up and down resonantly and integrally around the pivot axis curvature of the wheel mounting member (9).
第S図に示すように1機体進行に伴う構体重心(Qの軌
跡(8)が地面Illの形状に比較的近いものKな木。As shown in FIG.
すなわち1機体前後方向の凹凸に起因する機体の上下
変位が地面凹凸に滑らかに追従する状態で行われるよう
になり1機体の上下振動を抑制できるようになった。
もって、全体として、たとえ不整地であっても機体走行
を揺前や振動の少ない状態で行わせられ1作業を安全に
かつ運転疲労の少ない状態で行わせることが可能になっ
た。In other words, the vertical displacement of the aircraft due to irregularities in the longitudinal direction of the aircraft is now carried out in a state in which it smoothly follows the unevenness of the ground, making it possible to suppress the vertical vibration of the aircraft.
As a whole, it has become possible to run the machine with less rocking and vibration, even on uneven ground, and to perform one task safely and with less driving fatigue.
図面は本発明に係る作業車の走行装置の実施の態様を例
示し、第1図は運搬車の全体側面図。
第2図は車輪城付部の平面図、第3図は車輪取付部の側
面fg、第4図は第3図の冒−冒断面矢視図、第5図は
不整地走行状態の概略図、第6図は従来構造における不
整地走行状態の概略図である。
(6m)、(6b)・・・・・車輪、(9)・・・・車
輪取付部材。
(唖、(9・・・・・・軸芯。
第1図
第2図The drawings illustrate an embodiment of the traveling device for a working vehicle according to the present invention, and FIG. 1 is an overall side view of the transport vehicle. Fig. 2 is a plan view of the wheel mounting part, Fig. 3 is a side view fg of the wheel mounting part, Fig. 4 is a cross-sectional view taken along the arrow in Fig. 3, and Fig. 5 is a schematic diagram of the state of running on rough terrain. , FIG. 6 is a schematic diagram of a conventional structure running on rough terrain. (6m), (6b)...Wheel, (9)...Wheel mounting member. ((9... shaft core. Figure 1 Figure 2
Claims (1)
体前後方向に並設した作業車の走行装置であって、前記
車輪(6m)、(6b)のうち機体前後一端側に位置す
る左右のもの(6m)、(6M)を前記機体に取付け、
残りの4個の車輪(6b)・・を、前記機体に対して横
向会軸芯(噌周シで上下揺動自在に取付は九車輪敗付部
材191に、左右のものが機体前後商会の軸芯嗜屑すで
反響的かつ一体的に昇降する状態で、さらに1前後のも
のを前記車輪取付部材(−)のIIIFl軸芯(11の
前後に振り分けた状謙で堆付けである事を特徴とする作
業車の走行装置。A traveling device for a working vehicle in which three wheels C6m) and C6b) are arranged in parallel in the longitudinal direction of the body on each of the left and right sides of the body, and one of the wheels (6m) and (6b) is located at one end of the body in the front and rear. Attach the left and right ones (6m) and (6M) to the aircraft,
The remaining four wheels (6b) are attached to the nine-wheel attachment member 191, and the left and right wheels are attached to the fuselage front and rear wheels. In a state where the shaft core is moved up and down resonantly and integrally, the parts around 1 and 1 are placed on the front and rear of the IIIF1 shaft (11) of the wheel mounting member (-). Features a traveling device for work vehicles.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP9992681A JPS584675A (en) | 1981-06-26 | 1981-06-26 | Driving system for service car |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP9992681A JPS584675A (en) | 1981-06-26 | 1981-06-26 | Driving system for service car |
Publications (1)
Publication Number | Publication Date |
---|---|
JPS584675A true JPS584675A (en) | 1983-01-11 |
Family
ID=14260357
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP9992681A Pending JPS584675A (en) | 1981-06-26 | 1981-06-26 | Driving system for service car |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPS584675A (en) |
Cited By (9)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS59187606U (en) * | 1983-05-27 | 1984-12-12 | 吉野ゴム工業株式会社 | Collection belt device |
JPS60197404A (en) * | 1984-03-16 | 1985-10-05 | Yanmar Agricult Equip Co Ltd | Traveling-part structure for power working vehicle |
WO1986002893A1 (en) * | 1984-11-07 | 1986-05-22 | Carlson Project Kb. Ky. | Tractor with slip steering |
JPS61122989U (en) * | 1985-01-22 | 1986-08-02 | ||
JPS61275070A (en) * | 1985-05-28 | 1986-12-05 | Hikoma Seisakusho Kk | Construction vehicle |
US4840394A (en) * | 1988-04-21 | 1989-06-20 | The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration | Articulated suspension system |
JPH0735276U (en) * | 1993-12-14 | 1995-06-27 | 新キャタピラー三菱株式会社 | Traveling equipment for asphalt paving vehicles |
JP2001253364A (en) * | 2000-03-08 | 2001-09-18 | Inst Of Physical & Chemical Res | An omnidirectional vehicle that can climb over bumps |
JP2005155764A (en) * | 2003-11-25 | 2005-06-16 | Rikogaku Shinkokai | Actuator and omnidirectional traveling vehicle |
-
1981
- 1981-06-26 JP JP9992681A patent/JPS584675A/en active Pending
Cited By (10)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JPS59187606U (en) * | 1983-05-27 | 1984-12-12 | 吉野ゴム工業株式会社 | Collection belt device |
JPS60197404A (en) * | 1984-03-16 | 1985-10-05 | Yanmar Agricult Equip Co Ltd | Traveling-part structure for power working vehicle |
WO1986002893A1 (en) * | 1984-11-07 | 1986-05-22 | Carlson Project Kb. Ky. | Tractor with slip steering |
JPS61122989U (en) * | 1985-01-22 | 1986-08-02 | ||
JPH0234146Y2 (en) * | 1985-01-22 | 1990-09-13 | ||
JPS61275070A (en) * | 1985-05-28 | 1986-12-05 | Hikoma Seisakusho Kk | Construction vehicle |
US4840394A (en) * | 1988-04-21 | 1989-06-20 | The United States Of America As Represented By The Administrator Of The National Aeronautics And Space Administration | Articulated suspension system |
JPH0735276U (en) * | 1993-12-14 | 1995-06-27 | 新キャタピラー三菱株式会社 | Traveling equipment for asphalt paving vehicles |
JP2001253364A (en) * | 2000-03-08 | 2001-09-18 | Inst Of Physical & Chemical Res | An omnidirectional vehicle that can climb over bumps |
JP2005155764A (en) * | 2003-11-25 | 2005-06-16 | Rikogaku Shinkokai | Actuator and omnidirectional traveling vehicle |
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