JPS5855397B2 - Lubricant central supply device - Google Patents

Lubricant central supply device

Info

Publication number
JPS5855397B2
JPS5855397B2 JP4062277A JP4062277A JPS5855397B2 JP S5855397 B2 JPS5855397 B2 JP S5855397B2 JP 4062277 A JP4062277 A JP 4062277A JP 4062277 A JP4062277 A JP 4062277A JP S5855397 B2 JPS5855397 B2 JP S5855397B2
Authority
JP
Japan
Prior art keywords
oil
lubricating oil
tank
chambers
lubricating
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.)
Expired
Application number
JP4062277A
Other languages
Japanese (ja)
Other versions
JPS53125570A (en
Inventor
直孝 金井
信弘 坂上
輝雄 西
利勝 谷本
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kubota Corp
Original Assignee
Kubota Corp
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Kubota Corp filed Critical Kubota Corp
Priority to JP4062277A priority Critical patent/JPS5855397B2/en
Publication of JPS53125570A publication Critical patent/JPS53125570A/en
Publication of JPS5855397B2 publication Critical patent/JPS5855397B2/en
Expired legal-status Critical Current

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Description

【発明の詳細な説明】 本発明は、複数個所への潤滑油注油を集中的に行う潤滑
油集中供給装置に関する。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a lubricating oil centralized supply device that centrally supplies lubricating oil to a plurality of locations.

従来、かかる集中供給装置としては、個々のタンクを集
合配置させることによって、潤滑油補充をその補充用容
器を持ち廻る労力を軽減させ得る手段があるが、かかる
手段では、夫々のタンクへの給油を必要とし、その上、
対象とする潤滑個所によって給油頻度が夫々異なるので
あり、かかる頻度に応じた適正な給油管理が確実に行わ
れないとトラブルをまねく危険性があり、したがって、
潤滑油補充作業が全体として煩わしいものとなっていた
Conventionally, as such a centralized supply system, there is a means for replenishing lubricating oil by arranging individual tanks together to reduce the labor of carrying replenishment containers around. and, in addition,
The frequency of lubrication differs depending on the target lubrication point, and if proper lubrication management is not carried out in accordance with the frequency, there is a risk of causing trouble.
The entire lubricating oil replenishment operation was troublesome.

本発明は、かかる実情に鑑みてなされたものであり、潤
滑油タンクの合理的な構成により、潤滑油補充労力の軽
減を図るとともに、給油頻度の高いものほど優先的に給
油できるようにし、全体として給油作業を容易迅速かつ
適切に行えるようにする事を目的とする。
The present invention has been made in view of the above circumstances, and uses a rational configuration of the lubricating oil tank to reduce the labor for replenishing lubricating oil, as well as to prioritize the refueling of items that are refueled more frequently. The purpose is to make refueling work easier, faster, and more appropriate.

以下本発明の実施例を図面に基づいて詳細に説明する。Embodiments of the present invention will be described in detail below based on the drawings.

機体にクローラ型走行装置1を装着し、機体前部におい
て、植立殻稈引起し装置2、刈取り装置3、刈取殻稈搬
送装置4からなる前処理部5を横軸芯X0まわりに昇降
回動可能に設けて刈高変更可能に設け、機体後部におい
て、脱穀装置6を搭載し、この脱穀装置6に付設のフィ
ードチェーン7で、前記搬送装置4からの刈取殻稈をそ
の株元部を受継いで、穂先部を脱穀装置6内に供給して
脱穀処理するとともに、脱穀物を袋詰めすべく構成し、
もって、機体を走行させなから殻稈の刈取り脱穀処理を
行うためのコンバインを構威しである。
A crawler-type traveling device 1 is attached to the machine body, and a pre-processing section 5 consisting of a planted culm lifting device 2, a reaping device 3, and a cut culm conveying device 4 is moved up and down around the horizontal axis X0 at the front of the machine body. A threshing device 6 is mounted at the rear of the machine, and a feed chain 7 attached to the threshing device 6 transfers the harvested husk culm from the conveying device 4 to its stock base. Inheriting the grains, the grains are fed into the threshing device 6 for threshing processing, and the threshed grains are packed into bags.
Therefore, a combine harvester is used to harvest and thresh the husk without moving the machine.

前記搬送装置4は穂先搬送装置8、株元搬送装置9とで
構成してあり、かつこの株元搬送装置9は、搬送方向に
三段階に分けてあって、その内申段のものを横軸芯X2
まわりに駆動揺動可能に構成して、刈取殻稈の中継位置
を変更する扱き深さ変更機構15を構成しである。
The conveying device 4 is composed of an ear tip conveying device 8 and a stock head conveying device 9, and this stock head conveying device 9 is divided into three stages in the conveying direction, and the inner stage is shown on the horizontal axis. Core x2
The handling depth changing mechanism 15 is configured to be able to be driven and moved around the cutting husk and change the relay position of the cut husk.

前記引起し装置2は、はぼ立姿勢に引起し刈取った殻稈
の穂先部の通過し得る程度にまで高く延出してあって、
これら複数の引起し装置2・・を横方向に横枠10で連
ねてあり、この高い位置における横枠10に潤滑油貯留
タンク11を搭載しこの高位置のタンク11から夫々注
油管12・・を導出して、地面近くの刈取装置3.3段
階に分けた株元搬送装置9、穂先搬送装置8、刈高調節
用枢支部13、機体側に付設のフィードチェーン7、そ
して三個の各引起し装置2・・などの各種被供給個所の
夫々に自然流下により潤滑油を滴下供給すべく構成しで
ある。
The lifting device 2 extends high enough to allow the tip of the harvested culm to pass through when raised in a vertical position,
These plurality of lifting devices 2... are laterally connected by a horizontal frame 10, and a lubricating oil storage tank 11 is mounted on the horizontal frame 10 at a high position, and each oil supply pipe 12... The reaping device near the ground 3. The stock transfer device 9 divided into three stages, the tip transfer device 8, the cutting height adjustment pivot 13, the feed chain 7 attached to the machine body, and the three each The lubricating oil is configured to be dripped and supplied to each of various supply points such as the lifting device 2 by natural flow.

前記タンク11は、第2図に示すように、合成樹脂製タ
ンク本体の内部を仕切り用縦壁11a・・にて横方向に
区画してその上部にて互いに連通する油室a0 ・・、
anを形成し、オーバーフローにより順次的に下手側の
油室a2・・、anに供給すべく構成しである。
As shown in FIG. 2, the tank 11 has an oil chamber a0 which horizontally partitions the inside of a synthetic resin tank body with vertical partitioning walls 11a and communicates with each other at the upper part thereof.
An is formed, and the overflow is configured to sequentially supply oil to the lower oil chambers a2, . . . , an.

そして、各油室a0の横断面積を、刈取装置3用の油室
a0は大きく、刈高調節用枢支部13用の油室anは小
さくして夫々潤滑油の必要量に応じてこれを設定してあ
り、また、夫々の油室a1 ・・からの注油管12の径
も潤滑油の必要量に合せて設定しである。
The cross-sectional area of each oil chamber a0 is set according to the required amount of lubricating oil, with the oil chamber a0 for the reaping device 3 being large and the oil chamber an for the cutting height adjustment pivot 13 being small. The diameter of the oil supply pipe 12 from each oil chamber a1 is also set according to the required amount of lubricating oil.

そして、各油室a1 ” ” v anの給油口14
に対する配列順序は、刈取装置3のように使用日毎に注
油が必要なもの(タンクへの給油頻度が高い)を先頭に
And the oil filler port 14 of each oil chamber a1 ” ” van
The order of arrangement is for those that require oiling every day of use (the tank is oiled more frequently), such as the reaping device 3.

そして刈高調節用枢支部13のように稼動期間内で一時
的に、あるいは、相当長期間毎の間歇的に僅かに注油す
るもの(タンクへの給油頻度が少なくてよい)を後尾に
なすように各作業内容に応じて順序づけである。
Then, something like the cutting height adjustment pivot 13 that lubricates a little bit temporarily during the operating period or intermittently over a fairly long period of time (the tank needs to be refueled less frequently) should be placed at the rear. The tasks are ordered according to the content of each task.

更に、貯留タンク11を半透明合成樹脂で成形してあり
各油室a2・・の油面の減少程度を隣接の油室a1ta
3の油面減少程度との比較によって、注油管12の損傷
による異状な減少や管路の詰りを判断し、もって注油ト
ラブルを未然に防止すべく構成しである。
Furthermore, the storage tank 11 is molded from a translucent synthetic resin, and the degree of decrease in the oil level in each oil chamber a2 is determined by comparing the degree of decrease in the oil level in the adjacent oil chamber a1ta.
By comparing the degree of decrease in the oil level in No. 3, abnormal decrease due to damage to the oil supply pipe 12 or clogging of the pipe line is determined, thereby preventing oil supply troubles from occurring.

この場合、単位時間(例えば、数時間)当りの注油量に
相当する基準線を夫々の油室a□に設けておくと便利で
ある。
In this case, it is convenient to provide a reference line corresponding to the amount of oil to be filled per unit time (for example, several hours) in each oil chamber a□.

そして、貯留タンク11と例えばフィードチェーン7の
ように前処理部5が下降した収穫姿勢では、そのレベル
差が少なくて自然流下では注油がなし難い状態では、前
処理部5を上昇させてそのレベル差を大きくして良好に
注油すべく構成しである。
In the harvesting position where the storage tank 11 and the pre-processing section 5 are lowered, such as the feed chain 7, if the level difference is small and it is difficult to lubricate by gravity, the pre-processing section 5 is raised to the level. It is designed to increase the difference and provide good lubrication.

第3図イ1口は、夫々他の実施例を示し、同図イは給油
口14の直下の油室a1の夫々隣接油室a2.a2′;
a3′・・を同順位になすべく構成しである。
Portions A1 and A1 in FIG. 3 respectively show other embodiments, and A1 and A1 in FIG. a2′;
The configuration is such that a3'... are placed in the same order.

又、同図口は高い仕切り壁11a′ と低い仕切り壁1
1a・・により矢印方向に順序づげである。
In addition, the entrance in the figure is a high partition wall 11a' and a low partition wall 1.
1a... are ordered in the direction of the arrow.

又、貯留タンク11にポンプ装置を付設して、タンク内
圧力を高めてタンク11からの流下を促進させるべく構
成するもよい。
Alternatively, a pump device may be attached to the storage tank 11 to increase the pressure inside the tank and promote the flow down from the tank 11.

前記ポンプ装置は手指で操作し得る簡易のものや、又駆
動部を有するものであってもよい。
The pump device may be a simple device that can be operated by hand or may have a drive unit.

又、貯留タンク11を引起し装置2・・の連結用部材に
兼ねるもよい。
Further, the storage tank 11 may also serve as a connecting member for the lifting device 2.

又、実施例以外の各種の被供給個所、例えば排ワラ結束
装置、種々の回転枢支部等に注油を行なうべく構成する
もよい。
Furthermore, the present invention may be configured to lubricate various locations other than those in the embodiments, such as the waste straw binding device, various rotating pivot parts, etc.

以上要するに、本発明は、内部の潤滑油液面を透視可能
に構成した1個の潤滑油貯留タンク内に仕切り用縦壁な
横方向に並設して、上部にて互いに連通ずる複数の油室
を形成し、各油室の下部より潤滑個所に夫々被供給個所
への注油管を延出し、前記タンクへの潤滑油補充に伴っ
て、オーバーフローにより前記油室に順次的に潤滑油が
供給されるべく構成すると共に、潤滑油消費量が多い被
供給個所に対する油室はどオーバーフロー順位が先にな
るように、前記タンク内で潤滑油が順次オーバーフロー
してゆく方向の上手側に配設しであることを特徴とする
In summary, the present invention provides a lubricating oil storage tank configured to allow the internal lubricating oil liquid level to be seen through, and a plurality of lubricant oils arranged in parallel in the horizontal direction with vertical walls for partitions and communicating with each other at the upper part. A chamber is formed, and a lubricating pipe is extended from the bottom of each oil chamber to each lubricating point, and as the tank is refilled with lubricating oil, lubricating oil is sequentially supplied to the oil chamber by overflow. At the same time, the oil chambers for the parts to be supplied with large amounts of lubricant consumption are arranged on the upper side in the direction in which the lubricating oil sequentially overflows in the tank so that the overflow order comes first. It is characterized by

つまり、1つのタンク内に仕切り板で仕切った各油室の
上部を連通しであるから、1個所から給油するだけで全
ての油室への補充が行え、もって各油室の潤滑油の補充
労力は、各油室に対して各別に行なう手段に比し大幅に
軽減し得る。
In other words, since the upper parts of each oil chamber separated by a partition plate in one tank are connected, all oil chambers can be refilled by refilling from one place, thereby replenishing the lubricating oil in each oil chamber. Labor can be significantly reduced compared to a method that is performed for each oil chamber separately.

しかも、前記タンクは内部の潤滑油の液面レベルを透視
可能に構成しであると共に、潤滑油消費量が多い被供給
個所に対する油室はどオーバーフロー順位が先になるよ
うに構成しであるので、潤滑油消費量が多い被供給個所
に対する油室のように、その油室に対する潤滑油の補給
頻度が大なる油室はど先行して潤滑油の補給を行えるも
のであり、従って、補給時にタンク内油室の補給状況を
目視しながら、補給頻度の犬なる油室のみに対して潤滑
油を補給することも可能であるため、例えば、実施例に
示した刈高調節用枢支部のように、常時潤滑油を供給し
続けるよりも一時的に、あるいは、きわめて少ない頻度
で供給するほうが、その個所に対してのワラ屑の付着が
少ない点などから望ましい個所に対する油室へは、潤滑
油をきわめて少ない頻度でしか補給しないように、オー
バーフロー順位の下手側の油室にまで潤滑油をオーバー
フローさせずとも、補給頻度の犬なる油室に対して充分
な量の潤滑油を補給できる利点がある。
Moreover, the tank is constructed so that the liquid level of the lubricating oil inside can be seen through, and the oil chambers for the locations where lubricating oil is consumed in large amounts are constructed so that overflow comes first. The lubricating oil can be refilled first in the oil chambers that are frequently refilled with lubricating oil, such as the oil chambers for the parts to be supplied that consume a large amount of lubricating oil. It is also possible to replenish lubricating oil only to the frequently refilled oil chamber while visually checking the replenishment status of the oil chamber in the tank. However, rather than constantly supplying lubricating oil, it is preferable to supply lubricating oil temporarily or very infrequently, since this will reduce the amount of straw debris attached to the area. The advantage is that a sufficient amount of lubricating oil can be supplied to the oil chambers that are frequently refilled without overflowing the lubricating oil to the oil chambers on the lower side of the overflow order. be.

【図面の簡単な説明】 図面は本発明に係る潤滑油集中供給装置の実施例を示し
、第1図は側面図、第2図はタンクの縦断面図、第3図
イ1口は他の実施例を示し、同図イは概略側面図、同図
口は概略平面図である。 11・・・・・・タンク、11a・・・・・・仕切り用
縦壁、al・・、an・・・・・・油室。
[BRIEF DESCRIPTION OF THE DRAWINGS] The drawings show an embodiment of the lubricating oil centralized supply device according to the present invention, in which FIG. An example is shown in which figure A is a schematic side view and figure A is a schematic plan view. 11...Tank, 11a...Vertical wall for partition, al..., an...Oil chamber.

Claims (1)

【特許請求の範囲】[Claims] 1 内部の潤滑油液面を透視可能に構威した1個の潤滑
油貯留タンク11内に仕切り用縦壁11a・・を横方向
に並設して、上部にて互いに連通ずる複数の油室a0
・・、anを形成し、各油室a1・・の下部より潤滑個
所に夫々被供給個所への注油管12・・を延出し、前記
タンク11への潤滑油補充に伴って、オーバーフローに
より前記油室a1 ・・に順次的に潤滑油が供給される
べく構成すると共に、潤滑油消費量が多い被供給個所に
対する油室a0 ・・5ay1はどオーバーフロー順位
が先になるように、前記タンク11内で潤滑油が順次オ
ーバーフローしてゆく方向の上手側に配設しであること
を特徴とする潤滑油集中供給装置。
1 In one lubricating oil storage tank 11 in which the internal lubricating oil liquid level can be seen through, partitioning vertical walls 11a... are arranged in parallel in the horizontal direction, and a plurality of oil chambers communicate with each other at the upper part. a0
. . , an are formed, and oil supply pipes 12 . . . are extended from the lower part of each oil chamber a1 . The tank 11 is configured so that lubricating oil is sequentially supplied to the oil chambers a1..., and the oil chambers a0...5ay1 are arranged so that the oil chambers a0...5ay1, which are supplied with a large amount of lubricating oil, have an overflow order first. A lubricating oil centralized supply device characterized in that the lubricating oil is disposed on the upper side in the direction in which the lubricating oil sequentially overflows.
JP4062277A 1977-04-07 1977-04-07 Lubricant central supply device Expired JPS5855397B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP4062277A JPS5855397B2 (en) 1977-04-07 1977-04-07 Lubricant central supply device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP4062277A JPS5855397B2 (en) 1977-04-07 1977-04-07 Lubricant central supply device

Publications (2)

Publication Number Publication Date
JPS53125570A JPS53125570A (en) 1978-11-01
JPS5855397B2 true JPS5855397B2 (en) 1983-12-09

Family

ID=12585621

Family Applications (1)

Application Number Title Priority Date Filing Date
JP4062277A Expired JPS5855397B2 (en) 1977-04-07 1977-04-07 Lubricant central supply device

Country Status (1)

Country Link
JP (1) JPS5855397B2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59180397U (en) * 1983-05-18 1984-12-01 シャープ株式会社 High frequency heating device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS59180397U (en) * 1983-05-18 1984-12-01 シャープ株式会社 High frequency heating device

Also Published As

Publication number Publication date
JPS53125570A (en) 1978-11-01

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