JPH02204182A - Prevention of slip-off of elastic belt in caterpillar vehicle and device therefor - Google Patents
Prevention of slip-off of elastic belt in caterpillar vehicle and device thereforInfo
- Publication number
- JPH02204182A JPH02204182A JP2350689A JP2350689A JPH02204182A JP H02204182 A JPH02204182 A JP H02204182A JP 2350689 A JP2350689 A JP 2350689A JP 2350689 A JP2350689 A JP 2350689A JP H02204182 A JPH02204182 A JP H02204182A
- Authority
- JP
- Japan
- Prior art keywords
- frame
- guide arm
- elastic
- idler
- sprocket
- 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
- 230000002265 prevention Effects 0.000 title claims description 7
- 238000013459 approach Methods 0.000 claims description 3
- 238000000034 method Methods 0.000 claims description 3
- 230000002093 peripheral effect Effects 0.000 abstract description 2
- JOYRKODLDBILNP-UHFFFAOYSA-N Ethyl urethane Chemical compound CCOC(N)=O JOYRKODLDBILNP-UHFFFAOYSA-N 0.000 description 3
- XEEYBQQBJWHFJM-UHFFFAOYSA-N Iron Chemical group [Fe] XEEYBQQBJWHFJM-UHFFFAOYSA-N 0.000 description 3
- 239000000463 material Substances 0.000 description 3
- 230000000694 effects Effects 0.000 description 2
- 239000004033 plastic Substances 0.000 description 2
- 238000010276 construction Methods 0.000 description 1
- 229910052742 iron Inorganic materials 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 229910052751 metal Inorganic materials 0.000 description 1
- 238000000465 moulding Methods 0.000 description 1
Landscapes
- Handcart (AREA)
Abstract
Description
【発明の詳細な説明】
(産業上の利用分野)
本発明はブルドーザ、パワーショベル等の各種土木建築
機械、あるいはトラクター等の農耕用車輌の如き、無限
軌道車輌における弾性履帯の脱輪防止方法及びその装置
に関する。Detailed Description of the Invention (Industrial Application Field) The present invention relates to a method for preventing derailment of elastic tracks in tracked vehicles such as various civil engineering and construction machines such as bulldozers and power shovels, or agricultural vehicles such as tractors, and Regarding the device.
(従来の技術)
無限軌道車輌の走行に用いられる履帯は、通常多数のリ
ンクと履板とをブツシュおよびピンを介して相互に無端
状に連結された鉄製の構造のものが使用されるが、舗装
路面上の走行時には路面I貝傷を防止するために、ゴム
やウレタンなどの可塑材により構成された所謂弾性順帯
に履き換えることがおこなわれている。(Prior Art) Tracks used for running tracked vehicles usually have an iron structure in which a large number of links and tracks are endlessly connected to each other via bushes and pins. When driving on a paved road surface, in order to prevent scratches on the road surface, it is common practice to wear so-called elastic belts made of a plastic material such as rubber or urethane.
さらに上記弾性履帯は、第6〜7図に示したように無限
軌道車輌と一体のフレーム1を中心とし、フレーム1の
長さ方向両側に対設させたアイドラー2およびスプロケ
ット(図示省略)、およびフレーム1の上側に配した上
転輪(図示省略)やフレーム1の下側に配した下転輪(
5)に掛け回され、しかも上記フレーム1の比較的アイ
ドラー2、およびスプロケット寄りの位置に、弾性層帯
4の内周面方向に突出させた鉄製の固定ガイド板3がと
りつけられており、これにより走行中のスプロケットあ
るいはアイドラーからの弾性履帯の脱輪を減少させるよ
うにしている。Furthermore, as shown in FIGS. 6 and 7, the elastic crawler track is centered around a frame 1 that is integrated with the tracked vehicle, and includes idlers 2 and sprockets (not shown) that are disposed oppositely on both sides of the frame 1 in the length direction, and The upper roller wheel (not shown) arranged on the upper side of the frame 1 and the lower roller wheel (not shown) arranged on the lower side of the frame 1
5), and is attached to the frame 1 at a position relatively close to the idler 2 and the sprocket, and is fitted with a fixed guide plate 3 made of iron and protruding in the direction of the inner circumferential surface of the elastic layer band 4. This reduces the possibility of the elastic track coming off the sprocket or idler during running.
(発明が解決しようとする課B)
上記した固定ガイド板の存在は平坦地の直進および旋回
に際し、弾性層帯のアイドラーあるいはスプロケットか
らの脱輪の減少にある程度の効果を期待できる。(Problem B to be Solved by the Invention) The presence of the fixed guide plate described above can be expected to have a certain degree of effect in reducing the occurrence of the elastic layer band coming off the idler or sprocket when traveling straight on flat ground and turning.
しかしながら、傾斜面での急激な旋回や、起伏の激しい
路面の走行時の脱輪までをも減少させることはできない
。However, it is not possible to reduce sudden turns on slopes or derailment when driving on rough roads.
何故ならば路面が傾斜している場合には第8図に示した
ように車体のフレーム1に対して弾性層帯4が傾めに変
位する分だけの余裕を必要とするために、固定ガイド板
3の突出長さは控え目にしなければならないからである
。This is because when the road surface is sloping, as shown in FIG. 8, the fixed guide is This is because the protruding length of the plate 3 must be kept modest.
またそればかりではなく、弾性履帯4が傾斜した場合に
はその内周側の転輪5と当接する面をスプロケットが容
易に乗り越えやすくなり、脱輪の危険は依然として解消
されない。Moreover, if the elastic crawler track 4 is inclined, the sprocket will easily get over the surface that contacts the inner circumferential roller 5, and the risk of the wheel coming off is still unresolved.
したがって上記の構造を有する弾性履帯を備えた無限軌
道車輌の運転走行に際しては細心の注意をはらう必要が
あり作業性の面においても問題があった。Therefore, when operating a tracked vehicle equipped with an elastic crawler track having the above-mentioned structure, it is necessary to take great care and there are also problems in terms of workability.
(課題を解決するための手段)
本発明は上記した従来技術における問題点を解決し、無
限軌道車輌の走行に際しての弾性層帯の脱輪をより確実
に防止できるようにしたものであって、具体的には、無
限軌道車輌と一体のフレームを中心とし、フレームの長
さ方向両側に対設されるアイドラーとスプロケット、お
よびフレームの上側と下側に配設される転輪間に掛け回
される無端状の弾性履帯であって、アイドラー又はスプ
ロケットに接近するフレームの少なくとも一端より先端
が前記弾性履帯の内周面に向けて付勢されるガイドアー
ムにより弾性履帯の弛みを吸収するようにしたことを特
徴とする無限軌道車輌における弾性履帯の脱輪防止方法
に関する。(Means for Solving the Problems) The present invention solves the problems in the prior art described above, and makes it possible to more reliably prevent the elastic layer band from coming off when the tracked vehicle runs. Specifically, the system is centered around a frame that is integrated with the tracked vehicle, with idlers and sprockets installed opposite to each other on both sides of the frame in the longitudinal direction, and between wheels installed on the upper and lower sides of the frame. An endless elastic crawler track, in which slack of the elastic track is absorbed by a guide arm whose tip is biased toward the inner circumferential surface of the elastic track from at least one end of the frame that approaches the idler or sprocket. The present invention relates to a method for preventing derailment of an elastic crawler track in a tracked vehicle, characterized by:
本発明はまた無限軌道車輌と一体のフレームと、該フレ
ームの長さ方向両側に対設されたアイドラーとスプロケ
ットと、上記フレームの上側および下側に設けられた転
輪と、該転輪および前記アイドラーとスプロケット間に
掛け回される無端状の弾性履帯と、前記フレームの両端
部であって、アイドラーおよびスプロケットに接近した
位置の少なくとも一方に、先端が弾性層帯の内周側面方
向に向けて常時付勢されるガイドアームとからなる無限
軌道車輌における弾性履帯の脱輪防止装置にも関する。The present invention also provides a frame integrated with a tracked vehicle, an idler and a sprocket provided oppositely on both sides in the longitudinal direction of the frame, wheels provided on the upper and lower sides of the frame, and the wheels and the sprocket provided on the upper and lower sides of the frame. An endless elastic crawler belt that is wound around between the idler and the sprocket, and a tip of the elastic crawler belt that is located at least one of the ends of the frame and close to the idler and the sprocket, and has a tip facing toward the inner circumferential side of the elastic layer band. The present invention also relates to a device for preventing derailment of an elastic crawler track in a tracked vehicle, which includes a guide arm that is constantly energized.
(作 用)
弾性履帯の内周面に向けて常時付勢されたガイドアーム
により無限軌道車輌の走行に際し、傾斜路面や起伏の激
しい走行地面において弾性履帯に弛みを生じた場合に上
記ガイドアームがこれを吸収し、スプロケットやアイド
ラーから弾性履帯が脱輪するのを阻止する。(Function) When a tracked vehicle runs with a guide arm that is constantly biased toward the inner peripheral surface of the elastic crawler track, if the elastic track becomes slack on a sloping road surface or rough running ground, the guide arm is activated. It absorbs this and prevents the elastic track from coming off the sprocket or idler.
(実 施 例)
以下において本発明の具体的な内容を第1〜5図の実施
例をもとに説明する。(Example) The specific content of the present invention will be explained below based on the example shown in FIGS. 1 to 5.
図において11は無限軌道車輌と一体のフレーム、12
はフレーム11の長さ方向の一偏に配設されたスプロケ
ット、13はフレーム11の長さ方向の他側において前
記スプロケット12に対設されたアイドラ、14はフレ
ーム11の上側および下側に設けられた転輪11a、お
よび前記アイドラー13とスプロケット12とに掛け回
された無端状の弾性履帯、15は脱輪防止装置をそれぞ
れ示す。In the figure, 11 is a frame integrated with the tracked vehicle, 12
13 is a sprocket disposed on one side in the length direction of the frame 11, an idler 13 is disposed opposite to the sprocket 12 on the other side in the length direction of the frame 11, and 14 is a sprocket disposed on the upper and lower sides of the frame 11. The rollers 11a and the endless elastic tracks 15 are wound around the idler 13 and the sprocket 12, respectively, and 15 indicates a derailment prevention device.
弾性履帯14はゴムあるいはウレタン等の弾性力のある
可塑材により金型を用いて無端状に一体成型されて得ら
れる。The elastic crawler track 14 is formed by integrally molding an elastic plastic material such as rubber or urethane into an endless shape using a mold.
脱輪防止装置15は第4図および第5図に示したように
相互に一定の間隔を介して対設された側板16a、16
bと背板16Cとにより断面が略コの字状をなした支承
部16と、側板16a、16b間に一端を回動自在に軸
着して介装されるガイドアーム18と、側板16a、1
6b間の上記したガイドアーム18の軸着位置寄りに介
装される弾性体より構成される。As shown in FIGS. 4 and 5, the derailment prevention device 15 includes side plates 16a and 16 that are arranged opposite to each other at a constant distance.
a support portion 16 having a substantially U-shaped cross section formed by b and a back plate 16C, a guide arm 18 interposed between the side plates 16a and 16b with one end rotatably attached to the shaft, and a side plate 16a, 1
It is composed of an elastic body interposed near the pivot position of the guide arm 18 described above between 6b.
支承部16には前記背板16Cに連続させて、略直角方
向に折り曲げて前記側板16a、16bの後方開口部を
閉塞するストッパー板16dを有する。The support portion 16 has a stopper plate 16d that is continuous with the back plate 16C and is bent approximately at right angles to close the rear openings of the side plates 16a and 16b.
ガイドアーム18は第4図に示した通りの形状をなし、
基端部に軸穴19を有し、これに軸エフを挿通して側板
16a、16b間に回動自在に支承させるとともに、上
側の略中央部に突出部1111aを形成し、この突出部
18aから前記軸穴19寄りにかけて内側に凹入する湾
曲部20が形成されている。The guide arm 18 has a shape as shown in FIG.
It has a shaft hole 19 at its base end, through which the shaft F is inserted and rotatably supported between the side plates 16a and 16b, and a protrusion 1111a is formed approximately in the center of the upper part, and this protrusion 18a A curved portion 20 is formed which is recessed inward toward the shaft hole 19.
さらに軸穴19寄りの後面には支承部16のストッパー
板16dと当接させるための平坦な後面部18bが形成
され、しかもガイドアーム18の略中間より21が一体
に溶接されている。Further, a flat rear surface portion 18b is formed on the rear surface near the shaft hole 19 to be brought into contact with the stopper plate 16d of the support portion 16, and a guide arm 21 is integrally welded from approximately the middle of the guide arm 18.
弾性体22はゴムあるいは軟質のウレタン等をはじめと
した弾力性と復元力に冨む材質により形成され、支承部
16内において前記ガイドアーム18の湾曲部20と背
板16cとの間に介装され、これによりガイドアームI
8を軸17を支点として常時下方(ガイドアームI8の
後面部18bがストッパー板16dに当接する方向)、
すなわち第4図の実線位置に向けて付勢される。The elastic body 22 is made of a material with high elasticity and restoring force, such as rubber or soft urethane, and is interposed between the curved part 20 of the guide arm 18 and the back plate 16c in the support part 16. As a result, the guide arm I
8 with the shaft 17 as the fulcrum, always downward (in the direction in which the rear surface portion 18b of the guide arm I8 abuts the stopper plate 16d),
That is, it is urged toward the solid line position in FIG.
上記の支承部をフレームIIの両端部下側であってアイ
ドラー13、およびスプロケット12に接近した位置の
少なくとも一方にボルト等の固定手段により固定して装
着し、ガイドアーム18の先端を弾性履帯14の内周側
に圧接させる(第1図および第2図参照)。The above-mentioned support part is fixed to at least one of the lower sides of the frame II at a position close to the idler 13 and the sprocket 12 with a fixing means such as a bolt, and the tip of the guide arm 18 is attached to the elastic crawler track 14. Press it against the inner circumferential side (see Figures 1 and 2).
しかるに無限軌道車輌の走行中に弾性履帯14に弛みを
生じた場合には弾性体22の弾力性によりガイドアーム
18の先端が軸I7を支点に下方へ回動し、先端が弾性
履帯14の内周面に追従して弛みを吸収する(第3図参
照)。However, if the elastic track 14 becomes slack while the tracked vehicle is running, the tip of the guide arm 18 will rotate downward about the axis I7 due to the elasticity of the elastic body 22, and the tip will move inside the elastic track 14. It follows the circumferential surface and absorbs slack (see Figure 3).
向上記の実施例においてはガイドアーム18の付勢手段
として弾性体22を介在させる場合について説明したが
、必ずしもこれに限定されるものではなく、スプリング
やオイルダンパーの如き他の付勢手段によりガイドアー
ムの先端を弾性履帯の内周面に対して常時圧接させるよ
うにしてもよい。In the embodiment described above, a case has been described in which the elastic body 22 is interposed as a biasing means for the guide arm 18, but the guide arm 18 is not necessarily limited to this, and other biasing means such as a spring or an oil damper may be used for guiding The tip of the arm may be brought into constant pressure contact with the inner circumferential surface of the elastic track.
(発明の効果)
本発明は上記したようにアイドラー又はスプロケットに
接近するフレームの少なくとも一端より先端が前記弾性
履帯の内周面に向けて付勢されるガイドアームにより弾
性腹帯の弛みを吸収するようにしたものであるために、
弾性履帯を備えた無限軌道車輌の走行に際し、傾斜面で
の急旋回や、起伏の激しい路面の走行時の弾性履帯の脱
輪のおそれがなく、作業性を著しく向上させることがで
きる。(Effects of the Invention) As described above, the present invention has a guide arm whose tip end is urged toward the inner circumferential surface of the elastic track from at least one end of the frame that approaches the idler or sprocket to absorb the slack of the elastic belt. Because it was made in
When running a tracked vehicle equipped with elastic tracks, there is no risk of the elastic tracks coming off when making sharp turns on slopes or running on rough roads, and work efficiency can be significantly improved.
第1図は本発明の一実施例である弾性履帯の脱輪防止装
置を備えた無限軌道装置の斜視図、第2図は第1図にお
ける脱輪防止装置装着部の要部断面図、
第3図は第2図における弾性履帯の弛緩時のガイドアー
ムの作用を説明するための側面図、第4図は脱輪防止装
置の片側の側板を切り欠いた状態の拡大側面図、
第5図は脱輪防止装置の支承部のみを縦断面であられし
た正面図、
第6図は従来の弾性履帯を備えた無限走行軌道装置の部
分断面図、
第7図は第6図における弾性履帯の断面図、第8図は第
6図の弾性履帯の傾斜地走行時の傾斜状態をあられした
断面図である。
11・・・・・・フレーム
I3・・・・・・アイドラー
15・・・・・・脱輪防止装置
1.6a、16b・・・・・・側板
1.6d・・・・・・ストッパー板
18・・・・・・ガイドアーム
12・・・・・・スプロケット
14・・・・・・弾性履帯
16・・・・・・支承部
16c・・・・・・背板
17・・・・・・軸
18a・・・・・・突出部
18b・・・・・・後面部
20・・・・・・湾曲部
22・・・・・・弾性体
I9・・・・・・軸穴
21・・・・・・金属バー
発 明 者
同
同
同FIG. 1 is a perspective view of an endless track device equipped with a derailment prevention device for an elastic crawler track according to an embodiment of the present invention, and FIG. Figure 3 is a side view for explaining the action of the guide arm when the elastic track is relaxed in Figure 2, Figure 4 is an enlarged side view with one side plate of the derailment prevention device cut away, and Figure 5. Figure 6 is a partial cross-sectional view of a conventional endless track system equipped with an elastic crawler track, and Figure 7 is a cross-section of the elastic track shown in Figure 6. FIG. 8 is a sectional view showing the inclined state of the elastic crawler belt of FIG. 6 when running on a slope. 11... Frame I3... Idler 15... Roll-off prevention device 1.6a, 16b... Side plate 1.6d... Stopper plate 18... Guide arm 12... Sprocket 14... Elastic crawler track 16... Support portion 16c... Back plate 17...・Shaft 18a... Protruding portion 18b... Rear surface portion 20... Curved portion 22... Elastic body I9... Shaft hole 21...・・・Metal bar inventor: same person
Claims (2)
ームの長さ方向両側に対設されるアイドラーとスプロケ
ット、およびフレームの上側と下側に配設される転輪間
に掛け回される無端状の弾性履帯であって、上記アイド
ラー又はスプロケットに接近するフレームの少なくとも
一端より先端が前記弾性履帯の内周面に向けて付勢され
るガイドアームにより弾性履帯の弛みを吸収するように
したことを特徴とする無限軌道車輌における弾性履帯の
脱輪防止方法。(1) An endless frame centered on a frame integrated with the tracked vehicle, with idlers and sprockets installed opposite to each other on both sides in the length direction of the frame, and between wheels installed on the upper and lower sides of the frame. The elastic crawler is adapted to absorb the slack of the elastic crawler by a guide arm whose tip is urged toward the inner circumferential surface of the elastic crawler from at least one end of the frame that approaches the idler or sprocket. A method for preventing derailment of an elastic crawler track in a tracked vehicle, characterized by:
長さ方向両側に対設されたアイドラーとスプロケットと
、上記フレームの上側および下側に設けられた転輪と、
該転輪および前記アイドラーとスプロケット間に掛け回
される無端状の弾性履帯と、前記フレームの両端部であ
って、アイドラーおよびスプロケットに接近した位置の
少くなくとも一方に、先端が弾性履帯の内周側面方向に
向けて常時付勢されるガイドアームとからなる無限軌道
車輌における弾性履帯の脱輪防止装置。(2) a frame integrated with the tracked vehicle, an idler and a sprocket provided oppositely on both sides in the length direction of the frame, and wheels provided on the upper and lower sides of the frame;
An endless elastic crawler belt that extends between the wheels, the idler, and the sprocket, and a tip end inside the elastic crawler belt on at least one of both ends of the frame close to the idler and sprocket. A derailment prevention device for an elastic crawler track in a tracked vehicle, comprising a guide arm that is constantly biased toward the circumferential side.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2350689A JPH02204182A (en) | 1989-02-01 | 1989-02-01 | Prevention of slip-off of elastic belt in caterpillar vehicle and device therefor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
JP2350689A JPH02204182A (en) | 1989-02-01 | 1989-02-01 | Prevention of slip-off of elastic belt in caterpillar vehicle and device therefor |
Publications (1)
Publication Number | Publication Date |
---|---|
JPH02204182A true JPH02204182A (en) | 1990-08-14 |
Family
ID=12112353
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
JP2350689A Pending JPH02204182A (en) | 1989-02-01 | 1989-02-01 | Prevention of slip-off of elastic belt in caterpillar vehicle and device therefor |
Country Status (1)
Country | Link |
---|---|
JP (1) | JPH02204182A (en) |
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5904217A (en) * | 1996-02-16 | 1999-05-18 | Honda Giken Kogyo Kabushiki Kaisha | Snowmobile |
JP2008260344A (en) * | 2007-04-10 | 2008-10-30 | Sumitomo Rubber Ind Ltd | Crawler type traveling device |
US20120104840A1 (en) * | 2010-11-02 | 2012-05-03 | Zuchoski Jeremie | Track assembly for providing traction to an off-road vehicle such as an all-terrain vehicle (atv) or a snowmobile |
-
1989
- 1989-02-01 JP JP2350689A patent/JPH02204182A/en active Pending
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US5904217A (en) * | 1996-02-16 | 1999-05-18 | Honda Giken Kogyo Kabushiki Kaisha | Snowmobile |
JP2008260344A (en) * | 2007-04-10 | 2008-10-30 | Sumitomo Rubber Ind Ltd | Crawler type traveling device |
US20120104840A1 (en) * | 2010-11-02 | 2012-05-03 | Zuchoski Jeremie | Track assembly for providing traction to an off-road vehicle such as an all-terrain vehicle (atv) or a snowmobile |
US9211921B2 (en) * | 2010-11-02 | 2015-12-15 | Camso Inc. | Track assembly for providing traction to an off-road vehicle such as an all-terrain vehicle (ATV) or a snowmobile |
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