JP5419132B2 - Handheld power working machine and power transmission joint - Google Patents

Handheld power working machine and power transmission joint Download PDF

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JP5419132B2
JP5419132B2 JP2009030429A JP2009030429A JP5419132B2 JP 5419132 B2 JP5419132 B2 JP 5419132B2 JP 2009030429 A JP2009030429 A JP 2009030429A JP 2009030429 A JP2009030429 A JP 2009030429A JP 5419132 B2 JP5419132 B2 JP 5419132B2
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孝信 西垣
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ニシガキ工業株式会社
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発明の詳細な説明Detailed Description of the Invention

本発明は、操作杆内に設けられているドライブシャフトの先端部と作業装置側の動力入力部とが互いに連れ回り係合しない異形状であっても、双方に係合して接続させる動力伝達用ジョイントを備えた手持ち式動力作業機と、この動力伝達用ジョイントに関する。  The present invention provides power transmission in which a tip end of a drive shaft provided in an operating rod and a power input portion on the work device side are engaged with and connected to each other even if they have different shapes that do not engage with each other. The present invention relates to a hand-held power working machine equipped with a joint for power and a joint for power transmission.

従来技術Conventional technology

例えば、刈払機,草刈機,ヘッジトリマー,高枝カッターなどの手持ち式動力作業機は、原動機付き操作杆の先端部に、これらいずれかの作業装置が装着された状態で販売されるのが通常である。
多くの場合、この装着は、特許文献1の第6図に示すように、金属パイプ製の操作杆7の先端部を、作業装置に設けられている短筒部の後端部内に嵌入・保持させて、ボルトで締結して抜け止めする方法で行われている。そしてこの嵌入・保持とともに、ドライブシャフト11の先端部を作業装置側の動力入力部(傘歯車27の中空軸部がこれに相当する。)内に突入・係合させて、原動機から出力された回転動力がドライブシャフト11を通じて作業装置側の動力入力部に伝達されるようにしてあり、前記先端部と前記動力入力部との間で行われる係合には、スプライン係合又はセレーション係合等がある。そして、スプライン係合やセレーション係合を行う歯数は、6〜13条等、製造会社及び機種により様々である。
For example, hand-held power work machines such as brush cutters, mowers, hedge trimmers, and high branch cutters are usually sold with one of these working devices attached to the tip of the operating rod with a motor. is there.
In many cases, as shown in FIG. 6 of Patent Document 1, this mounting is performed by fitting and holding the front end portion of the operating rod 7 made of metal pipe into the rear end portion of the short cylindrical portion provided in the working device. It is done by a method of fastening and fastening with bolts. Then, along with this insertion / holding, the tip of the drive shaft 11 was plunged / engaged into the power input part on the working device side (the hollow shaft part of the bevel gear 27 corresponds to this) and output from the prime mover. Rotational power is transmitted to the power input unit on the working device side through the drive shaft 11, and the engagement performed between the tip portion and the power input unit includes spline engagement, serration engagement, or the like. There is. And the number of teeth for spline engagement and serration engagement varies depending on the manufacturer and model, such as 6-13.

ところで、最近では、手持ち式動力作業機の原動機付き操作杆や作業装置のいずれかが故障すると、原動機付き操作杆だけを買え替えたり、作業装置だけを買え替えることができるように、これらが個別に販売されていることがある。また、機器購入コストを抑えるため、1本の原動機付き操作杆に、作業内容に合わせた作業装置を装着する事もできる。
従来、このような場合に対処させるためには、ドライブシャフトの先端部の形状と、作業装置側の動力入力部の内壁形状とを一致させる必要があった。
By the way, recently, if either a motorized operation rod or a work device of a hand-held power work machine breaks down, these can be purchased individually so that only a motorized operation rod or a work device can be purchased. May have been sold to. Further, in order to reduce the equipment purchase cost, it is possible to attach a work device suitable for the work contents to one operation pole with a motor.
Conventionally, in order to cope with such a case, it is necessary to make the shape of the tip end portion of the drive shaft coincide with the shape of the inner wall of the power input portion on the working device side.

特開昭64−30510号公報の第6図FIG. 6 of Japanese Patent Application Laid-Open No. 64-30510

発明が解決しようとする課題Problems to be solved by the invention

しかしながら、上述したように、ドライブシャフトの先端部の形状と、作業装置側の動力入力部の形状とを一致させる確認は、面倒であり、間違え易い。
しかも、多くの消費者は、原動機付き操作杆と、別タイプの作業装置とを組み合わせるということを知らないために、エンジン故障の場合でも手持ち式動力作業機全体を買い換えるなどして、機器購入費用を高くさせていた。また、作業内容に合わせた手持ち式動力作業機を複数台所有すると、保管スペースの負担も大きかった。
However, as described above, confirmation of matching the shape of the tip end portion of the drive shaft with the shape of the power input portion on the working device side is troublesome and easy to make a mistake.
In addition, many consumers do not know that a motorized control rod and a different type of work device are combined, so even if the engine breaks down, it is necessary to replace the entire handheld power work machine, etc. Was high. In addition, having multiple kitchens with hand-held power work machines that match the work content was a heavy burden on storage space.

本発明が解決しようとする課題は、器財購入や買い替えのコストを抑え、保管スペースを向上させることができる、手持ち式動力作業機と、この動力伝達用ジョイントを提供することにある。  The problem to be solved by the present invention is to provide a hand-held power working machine capable of reducing the cost of purchasing and replacing equipment and improving the storage space, and this power transmission joint.

課題を解決するための手段Means for solving the problem

請求項1に係る手持ち式動力作業機は、
エンジン又は電動モータよりなる原動機を後部に搭載した中空パイプ構造を有し、その内側にドライブシャフトを備えた操作杆の先端部に、該ドライブシャフトから回転動力を入力して駆動する作業装置を搭載させた基本構造を有し、
前記作業装置は、刈払装置の他、作業目的に合わせて選択した作業装置に交換可能であり、
該ドライブシャフトの先端部と前記選択した作業装置の動力入力部とが対応しない形状であっても、
後部側に、スプライン内壁、セレーション内壁、角形内壁、二面取りされた内壁のいずれかよりなる筒形状の嵌合部を有し、前部側に、スプライン軸、セレーション軸、角軸、二面取り軸のいずれかよりなる軸部、又はスプライン内壁、セレーション内壁、角形内壁、二面取りされた内壁のいずれかよりなる筒形状の嵌合部を有する複数種類の動力伝達用ジョイントのうちから、後部側が前記ドライブシャフトの先端部を突入させて連れ回り可能に係合し、前部側が前記選択した作業装置の動力入力部に連れ回り可能に係合する動力伝達ジョイントが選択されて、
この選択された動力伝達用ジョイントを介して、前記ドライブシャフトの先端部と前記選択した作業装置の動力入力部とが連結されるように構成されているところに特徴がある。
A hand-held power work machine according to claim 1 is:
A hollow pipe structure with a prime mover consisting of an engine or electric motor mounted at the rear, and a work device that inputs rotational power from the drive shaft and drives it at the tip of an operating rod equipped with a drive shaft inside Has a basic structure,
The working device can be replaced with a working device selected in accordance with the work purpose in addition to the brush cutter device,
Even if the tip portion of the drive shaft and the power input portion of the selected working device do not correspond,
On the rear side, it has a cylindrical fitting part consisting of any of spline inner wall, serration inner wall, square inner wall, and two-sided inner wall, and on the front side, spline shaft, serration shaft, square axis, two-chamfered shaft Among the plurality of types of power transmission joints having a shaft-like fitting portion, or a spline inner wall, a serration inner wall, a square inner wall, or a cylindrical fitting portion made of two chamfered inner walls, the rear side is the aforementioned A power transmission joint is selected in which the front end of the drive shaft is plunged and engaged so as to be able to rotate, and the front side is engaged so as to be able to rotate along with the power input portion of the selected working device.
It is characterized in that the tip end portion of the drive shaft and the power input portion of the selected work device are connected via the selected power transmission joint.

この手持ち式動力作業機においては、前記原動機から出力された回転動力は、前記ドライブシャフトから前記動力伝達ジョイントを通じて作業装置側の前記動力入力部に伝達される。
ドライブシャフトの先端部と作業装置側の前記動力入力部の形状が異なる場合でも、後部側がドライブシャフトの先端部と連れ回り可能に係合し、前部側が前記動力入力部と連れ回り可能に係合する動力伝達ジョイントを用いると、ドライブシャフトの先端部と作業装置側の前記動力入力部とを連れ回り可能に連結させる。
この点において、実公昭62−7857号公報の第2図及び第3図、実登第3119138号公報の図3〜図8等に示すドライブシャフトの途中長さの箇所を連結させるジョイントとは、構造のみならず作用・効果において全く異なる。
この動力伝達用ジョイントは、形状及びサイズが異なる複数種類のものがあり、前記動力入力部や前記ドライブシャフトの先端部の形状に合った動力伝達用ジョイントが選択使用される。
連れ回り可能にさせる係合は、スプライン係合、セレーション係合、角と角穴による係合、二面取りされた角と二面取りされた角穴とによる係合等である
In this hand-held power work machine, the rotational power output from the prime mover is transmitted from the drive shaft to the power input unit on the work device side through the power transmission joint.
Even when the tip of the drive shaft and the power input portion on the work device side are different, the rear side engages with the tip of the drive shaft so as to be able to rotate, and the front side engages with the power input portion so as to be able to rotate. When the power transmission joint to be combined is used, the tip end portion of the drive shaft and the power input portion on the working device side are connected to each other so as to be able to rotate.
In this regard, the joint that connects the intermediate length portions of the drive shaft shown in FIGS. 2 and 3 of the Japanese Utility Model Publication No. 62-7857, FIGS. 3 to 8 of the Japanese Utility Model No. 3119138, etc. Not only the structure but also the action and effect are completely different.
There are a plurality of types of power transmission joints having different shapes and sizes, and a power transmission joint suitable for the shape of the power input portion or the tip of the drive shaft is selectively used.
Engagement makes it possible turns with is a spline engagement, serration engagement, engagement by square shaft and a square hole, engagement due and secondary chamfered square shaft and the secondary chamfered square hole.

請求項2は請求項1に記載の手持ち式動力作業機に装備される動力伝達ジョイントの発明であり、
該動力伝達用ジョイントは、主ジョイントと入れ子とからなり、
該入れ子は、その中央に前記ドライブシャフトの先端部を突入させて連れ回り可能に係合させる嵌合部を有し、
前記主ジョイントは、前部側に前記選択した作業装置の動力入力部に連れ回り 可能に係合する軸部又は筒形状の嵌合部を有し、後部側に前記入れ子を密着した状態で没入させて連れ回りさせ得る筒形状の嵌合部を有しているところに特徴がある。
Claim 2 is an invention of a power transmission joint equipped in the hand-held power working machine according to claim 1,
The power transmission joint consists of a main joint and a nest.
The nesting has a fitting portion that engages the tip of the drive shaft at the center thereof so that the tip of the nesting can enter and rotate.
The main joint has a shaft portion or a cylindrical fitting portion that engages with a power input portion of the selected working device on the front side, and is immersed in a state in which the insert is in close contact with the rear side. It has a feature in that it has a cylindrical fitting part that can be rotated together .

請求項2に係る動力伝達ジョイントは、主ジョイントに加えて、主ジョイントの後部につれ回り可能に没入させて前記ドライブシャフトの先端部を突入させて連れ回り可能に係合させる入れ子を備える。この入れ子は、前記ドライブシャフトの先端部の形状に合った複数種類のものが用意されて、これから接続しようとするドライブシャフトの先端部の形状に合ったものを選択して使用する。このようにすると、ドライブシャフトに加わる回転駆動力がこの動力伝達用ジョイントを介して前記動力入力部に伝達される。The power transmission joint according to a second aspect includes, in addition to the main joint, a nest that is inserted into the rear portion of the main joint so as to be able to rotate and engages so that the front end portion of the drive shaft is inserted and can be rotated. A plurality of types of nestings are prepared in accordance with the shape of the tip of the drive shaft, and those that match the shape of the tip of the drive shaft to be connected are selected and used. If it does in this way, the rotational drive force added to a drive shaft will be transmitted to the said power input part via this power transmission joint.

請求項3に係る動力伝達用ジョイントは、
前記主ジョイントの後部側に有する前記嵌合部の筒内周面に縦方向の条溝が形成され、前記入れ子の外周面に前記条溝に係合する凸条が形成されて、
前記主ジョイントと該主ジョイント後部側の前記嵌合部内に没入させた前記入れ子とは、前記条溝と前記凸条とによる係合により、連れ回りするように構成さ れている。
The power transmission joint according to claim 3 is:
A longitudinal groove is formed on the inner circumferential surface of the fitting portion on the rear side of the main joint, and a convex groove that engages with the groove is formed on the outer circumferential surface of the insert.
The main joint and the nest inserted into the fitting portion on the rear side of the main joint are configured to be rotated together by engagement between the groove and the protrusion .

請求項3に係る動力伝達用ジョイントにおいては、主ジョイント後部側に形成されている筒形状の嵌合部とこの嵌合部内に没入させた前記入れ子とを連れ回りが、この嵌合部の筒内周面に形成されている前記条溝と前記入れ子の外周面に形成されている凸条とを係合させることにより可能としている。In the power transmission joint according to claim 3, the cylindrical fitting portion formed on the rear side of the main joint and the nest inserted into the fitting portion are rotated together. This is made possible by engaging the groove formed on the inner peripheral surface with the convex strip formed on the outer peripheral surface of the insert.

請求項に係る動力伝達用ジョイントは、請求項2又は3に記載の動力伝達用ジョイントであって、前記入れ子は、複数枚のリング板を重ね合わせたもので構成されている。A power transmission joint according to a fourth aspect of the present invention is the power transmission joint according to the second or third aspect, wherein the nesting is formed by overlapping a plurality of ring plates.

複数枚のリング板を重ね合わせた入れ子としたのは、複雑な構造を有する入れ子を1単体で形成するよりも、金属板をプレス加工して形成したリング板を重ね合わせた入れ子のほうが、製造が容易且つ低コストで行えるからである。  The nesting made by stacking multiple ring plates is more difficult to manufacture by nesting a ring plate formed by pressing a metal plate than by forming a single nesting with a complicated structure. This is because it can be performed easily and at low cost.

発明の効果Effect of the invention

請求項1に係る手持ち式作業機によれば、
操作杆内に設けられているドライブシャフトの先端部と前記作業装置の動力入力部とが対応しない形状であっても、前記先端部と前記動力入力部の双方に連れ回り可能に係合する動力伝達用ジョイントを選択して、この選択した動力伝達用ジョイントを介して前記先端部と前記動力入力部とが連結されるように構成した結果、メーカーや機種が異なる原動機付き操作杆と作業装置とを自由に組み合わせて装着できるようになった。
これにより、原動機付き操作杆だけを交換したり、作業目的に合わせた所望の機種の作業装置に交換することができるようになった。
この結果、経済性、利便性を向上させ、保管スペースを抑えることができるようになった。
しかも、原動機付き操作杆作業装置とを組み合わせる際において、従来、面倒で間違え易かった、ドライブシャフトの先端部の形状と前記動力入力部の形状とを一致させる確認が不要になった。
According to the hand-held work machine according to claim 1,
Even if the tip of the drive shaft provided in the operating rod does not correspond to the power input part of the working device, the power that engages both the tip and the power input part so as to be able to rotate. As a result of selecting the transmission joint and connecting the distal end portion and the power input portion via the selected power transmission joint, the operating rod with the motor and the working device of different manufacturers and models Can be installed in any combination.
As a result, it has become possible to replace only the operating rod with a prime mover or a working device of a desired model according to the work purpose.
As a result, the economy and convenience can be improved, and the storage space can be reduced.
Moreover, when combining the motor- operated operating rod and the working device , it is no longer necessary to confirm the shape of the tip end portion of the drive shaft and the shape of the power input portion, which has been troublesome and easy to make mistakes.

請求項2に係る動力伝達用ジョイントによれば、
ドライブシャフトの先端部の形状が異なる場合でも、入れ子を交換するだけで、簡単且つ経済的に、前記動力入力部と前記ドライブシャフトの先端部とを連れ回り可能に接続させることができるようになった。
According to the power transmission joint according to claim 2,
Even when the shape of the tip end portion of the drive shaft are different, simply by replacing the nested, simply and economically, and to be able to take Mawari connected the distal end of the drive shaft and the power input unit became.

請求項3に係る動力伝達用ジョイントにおいても、請求項2に係る動力伝達用ジョイントが有する効果と同様の効果を奏する。The power transmission joint according to the third aspect has the same effect as the power transmission joint according to the second aspect.

請求項4に係る動力伝達用ジョイントによれば、
前記入れ子を、複数枚のリング板を重ね合わせたもので構成した結果、プレス加工で出来た安価なリング板を用いた入れ子とすることができるようになった。
According to the power transmission joint according to claim 4,
As a result of constituting the nesting by superimposing a plurality of ring plates, the nesting can be performed using an inexpensive ring plate made by press working.

本発明を実施するための最良の形態を次の実施例のものである。  The best mode for carrying out the present invention is that of the following embodiment.

図1は、本発明による手持ち式動力作業機の1例と交換可能な作業装置を例示した斜視図である。
図1に示す手持ち式動力作業機1は、原動機付き操作杆2の先端部に、作業装置(刈払装置)10が装着された刈払機である。原動機付き操作杆2は、操作杆3の後部にエンジン4が搭載され、操作杆3の途中長さの箇所に両手持ちのハンドル5が装着されたものであり、図示していないが、操作杆3には肩掛けベルトが取り付けられる。そして、この手持ち式動力作業機(刈払機)1の原動機付き操作杆2には、刈払装置10に代えて、例えば、ナイロンコード草刈装置11、バリカン式刈払装置12,13、ロータリー式土耕装置14、ブロワ−15、回転ブラシ16等の作業装置の装着が可能である。
FIG. 1 is a perspective view illustrating one example of a hand-held power working machine according to the present invention and a work device that can be replaced.
A hand-held power work machine 1 shown in FIG. 1 is a brush cutter in which a working device (a brush cutter device) 10 is attached to the tip of an operating rod 2 with a motor. The motor-operated operation rod 2 has an engine 4 mounted on the rear portion of the operation rod 3 and a handle 5 with both hands attached to a portion of the length of the operation rod 3. A shoulder belt is attached to 3. In addition, instead of the brush cutter 10, for example, a nylon cord mowing device 11, a clipper type brush cutter 12 or 13, and a rotary soil can be used in the operating rod 2 with a prime mover of the handheld power working machine (brusher) 1. It is possible to attach working devices such as the tilling device 14, the blower 15, and the rotating brush 16.

図2(a)は刈払装置と操作杆先端部とを例示した側面断面図、(b)はこの刈払装置内部の部分平面断面図、図3は操作杆の先端部と刈払装置側の動力入力部とを接続させて示した側面断面図である。
図2(a)に示す刈払装置10によると、主ギヤケース23の下方に回転刃である上刃21と下刃22が設けられている。主ギヤケース23の略中央箇所には主軸24が回転自在に支持されており、主軸24の下部には大径平歯車32が遊嵌支持され、主軸24の上部には大径平歯車31が連れ回り可能に係合支持されている。主ギヤケース23の後部上面には後部ギヤケース25が被着されており、後部ギヤケース25の後端中央から斜め上後方に短尺筒部26が突出形成されている。短尺筒部26の後部は操作杆3の先端部3aを突入させる部分であり、短尺筒部26の筒内の前部箇所には、小径傘歯車27の軸27aが回転自在に保持されている。小径傘歯車27は、後部ギヤケース25内の第2軸28に連れ回り可能に支持されている大径傘歯車29に噛合している。
図2(a)(b)に示すように、主ギヤケース23内の後部には、大径傘歯車29と連動する小径平歯車30が位置し、小径平歯車30と上段の大径平歯車31とが噛合して下刃22を回転駆動させる。また、主ギヤケース23内の後部において、小径平歯車30と中間平歯車33とが噛合し、更に、中間平歯車33と下段の大径平歯車32と噛合して上刃21を下刃22に対して逆回転させる。
2A is a side cross-sectional view illustrating the brush cutter and the tip of the operating rod, FIG. 2B is a partial plan sectional view of the inside of the brush cutter, and FIG. 3 is the tip of the operating rod and the brush cutter side. It is side surface sectional drawing which connected and showed the motive power input part.
According to the brush cutter 10 shown in FIG. 2A, an upper blade 21 and a lower blade 22 that are rotary blades are provided below the main gear case 23. A main shaft 24 is rotatably supported at a substantially central portion of the main gear case 23, a large-diameter spur gear 32 is loosely supported on the lower portion of the main shaft 24, and a large-diameter spur gear 31 is associated with the upper portion of the main shaft 24. It is engaged and supported so that it can rotate. A rear gear case 25 is attached to the rear upper surface of the main gear case 23, and a short cylindrical portion 26 is formed to project obliquely upward and rearward from the center of the rear end of the rear gear case 25. The rear portion of the short cylindrical portion 26 is a portion into which the distal end portion 3a of the operating rod 3 is inserted, and the shaft 27a of the small-diameter bevel gear 27 is rotatably held at the front portion in the cylinder of the short cylindrical portion 26. . The small-diameter bevel gear 27 meshes with a large-diameter bevel gear 29 supported so as to be able to rotate with the second shaft 28 in the rear gear case 25.
As shown in FIGS. 2 (a) and 2 (b), a small-diameter spur gear 30 interlocking with the large-diameter bevel gear 29 is located in the rear part of the main gear case 23, and the small-diameter spur gear 30 and the upper large-diameter spur gear 31 are located. And the lower blade 22 is driven to rotate. Further, at the rear part in the main gear case 23, the small-diameter spur gear 30 and the intermediate spur gear 33 mesh with each other, and further, the intermediate spur gear 33 and the lower large-diameter spur gear 32 mesh with each other so that the upper blade 21 becomes the lower blade 22. Reversely rotate.

図2(a)を参照しつつ図3に示すように、操作杆3の先端部を作業装置側の短尺筒部26内に突入させて締付固定させると、操作杆3の先端部に作業装置10が装着される。そして、この装着とともに、小径傘歯車27の軸27aの後端部を形成している動力入力部27bと、操作杆3内に設けられているドライブシャフト50の先端部50aとが、動力伝達用ジョイント40によって連れ回り可能に接続されている。
動力伝達用ジョイント40は、前記動力入力部27bの各種形状とドライブシャフト50の先端部50aの各種形状に合った複数種類のものが用意される。そして、これらの中から、最適な動力伝達用ジョイント40を選択使用する。
図3に示す動力入力部27bは六角軸であり、ドライブシャフト50の先端部50aはスプライン軸であり、これらを接続させる動力伝達用ジョイント40の詳細な各実施形態が図4(a)〜(d)に示されている。
As shown in FIG. 3 with reference to FIG. 2 (a), when the tip of the operating rod 3 is inserted into the short cylindrical portion 26 on the working device side and is fastened and fixed, the work is applied to the tip of the operating rod 3. Device 10 is installed. Along with this mounting, the power input portion 27b forming the rear end portion of the shaft 27a of the small-diameter bevel gear 27 and the tip portion 50a of the drive shaft 50 provided in the operating rod 3 are used for power transmission. The joint 40 is connected to be able to rotate.
A plurality of types of power transmission joints 40 are prepared in accordance with the various shapes of the power input portion 27b and the various shapes of the distal end portion 50a of the drive shaft 50. From these, the optimum power transmission joint 40 is selected and used.
The power input unit 27b shown in FIG. 3 is a hexagonal shaft, the tip 50a of the drive shaft 50 is a spline shaft, and detailed embodiments of the power transmission joint 40 for connecting them are shown in FIGS. d).

〔第1実施形態の動力伝達用ジョイント〕
図4(a)は第1実施形態による動力伝達用ジョイントの斜前方から見た斜視図、(b)は斜め後方から見た斜視図、(c)は側面断面図、(d)は動力伝達用ジ矢視図、図5(a)はドライブシャフトの前部側の端面形状を例示した図、(b)は後部側の端面形状を例示した図、図6は入れ子の端面形状を例示した図である。
[Power Transmission Joint of First Embodiment]
4A is a perspective view of the power transmission joint according to the first embodiment as viewed obliquely from the front, FIG. 4B is a perspective view of the power transmission joint as viewed obliquely from the rear, FIG. 4C is a side sectional view, and FIG. FIG. 5A is a view illustrating the end face shape of the front side of the drive shaft, FIG. 5B is a view illustrating the end face shape of the rear side, and FIG. 6 illustrates the end face shape of the nesting. FIG.

図4(a)〜(c)に示す第1実施形態の動力伝達用ジョイント40Aは、主ジョイント41と入れ子42とを組み合わせた動力伝達用ジョイントであり、入れ子42は主ジョイント41の後部側になる片側内に没入されて、主ジョイント41と連れ回りする。  A power transmission joint 40 </ b> A according to the first embodiment shown in FIGS. 4A to 4C is a power transmission joint in which a main joint 41 and a nest 42 are combined. The nest 42 is disposed on the rear side of the main joint 41. It is immersed in the one side and turns with the main joint 41.

主ジョイント41は、図4(a)(b)(d)に示すように、前部側(出力側)に位置する一方の片側に六角孔の嵌合部41aを有し、後部側(入力側)になる他方の片側の筒内周を6等分する箇所に、縦方向に向けた条溝41dが夫々形成された嵌合部41bを有する。双方の嵌合部41a,41bは、略同程度の奥行きがあり、有底の穴であってもよい。
入れ子42は、主ジョイント41の嵌合部41b内に略密着して没入する径があり、その外周面に前記条溝41dに係合する凸条42aが形成され、筒内がスプライン内壁を有する嵌合孔42bとされている。
主ジョイント41の先端部の端面形状には、図5(a)に例示する各種端面形状のものがあり、後端部の端面形状には、図5(b)に例示する端面形状のものがある。入れ子42についても、図6に例示する端面形状のものがある。即ち、主ジョイント41は、図5(a)に示す形状と(b)に示す形状とを組み合わせた形状のものが用意され、これらから、前記接続に適したものが選択使用される。
As shown in FIGS. 4A, 4B, and 4D, the main joint 41 has a hexagonal hole fitting portion 41a on one side located on the front side (output side) and the rear side (input). A fitting portion 41b in which a groove 41d in the vertical direction is formed, respectively, at a portion that divides the inner circumference of the other side of the other side into six equal parts. Both fitting parts 41a and 41b have substantially the same depth, and may be bottomed holes.
The nest 42 has a diameter that is substantially tightly immersed in the fitting portion 41b of the main joint 41, and a convex strip 42a that engages with the strip groove 41d is formed on the outer peripheral surface thereof, and the inside of the cylinder has a spline inner wall. The fitting hole 42b is used.
The end surface shape of the front end portion of the main joint 41 includes various end surface shapes illustrated in FIG. 5A, and the end surface shape of the rear end portion includes an end surface shape illustrated in FIG. 5B. is there. The nesting 42 also has an end face shape illustrated in FIG. That is, the main joint 41 is prepared in a shape combining the shape shown in FIG. 5A and the shape shown in FIG. 5B, and from these, the one suitable for the connection is selected and used.

この動力伝達用ジョイント40Aの取り付けは、図3に示す動力入力部27bの形状に合った主ジョイント41を選択して、その前部側の嵌合部41aを図3に示す動力入力部27bに嵌入させることから始まる。続いて、複数種類の入れ子のうちから、図3に示すドライブシャフト50の先端部50aの形状に合った内壁形状を有する入れ子42を選択して、これを主ジョイント41の後部側の嵌合部41b内に没入させる。更に続いて、ドライブシャフト50の先端部50aを入れ子42の内側に突入させると、動力入力部27bとドライブシャフト50の先端部50aとが動力伝達用ジョイント40Aを介した接続ができるThe power transmission joint 40A is attached by selecting the main joint 41 that matches the shape of the power input portion 27b shown in FIG. 3, and replacing the front fitting portion 41a with the power input portion 27b shown in FIG. Start by inserting. Subsequently, a nest 42 having an inner wall shape that matches the shape of the tip 50a of the drive shaft 50 shown in FIG. 3 is selected from a plurality of types of nests, and this is used as a fitting portion on the rear side of the main joint 41. Immerse in 41b. Further, when the tip 50a of the drive shaft 50 is inserted into the insert 42, the power input portion 27b and the tip 50a of the drive shaft 50 can be connected via the power transmission joint 40A.

〔第2実施形態の動力伝達用ジョイント〕
図7(a)は第2実施形態の動力伝達用ジョイントを斜め前方から見た斜視図、(b)は斜め後方から見た斜視図である。
図7(a)(b)に示す第2実施形態の動力伝達用ジョイント40Bは、主ジョイント41と入れ子42とを組み合わせた動力伝達用ジョイントであり、入れ子42は端面形状が同形状のリング板42nを複数枚、重ね合わされたもので構成される。主ジョイント41は図4(a)(b)に示す主ジョイント41と同じものが用いられる。リング板42nを重ね合わせた入れ子42は、図4(a)(b)(c)に示す入れ子42と同様の形状になる。主ジョイント41と入れ子42の形状の組み合わせは、第1実施形態の動力伝達用ジョイントの場合と同様に複数あり、リング板42nを重ね合わせた入れ子42は、プレス成型で容易かつ安価に製造できる。
[Power Transmission Joint of Second Embodiment]
FIG. 7A is a perspective view of the power transmission joint according to the second embodiment as viewed obliquely from the front, and FIG. 7B is a perspective view of the power transmission joint as viewed obliquely from the rear.
The power transmission joint 40B of the second embodiment shown in FIGS. 7A and 7B is a power transmission joint in which a main joint 41 and a nest 42 are combined, and the nest 42 is a ring plate having the same end face shape. A plurality of 42n sheets are overlapped. The main joint 41 is the same as the main joint 41 shown in FIGS. The insert 42 on which the ring plates 42n are overlapped has the same shape as the insert 42 shown in FIGS. 4 (a), 4 (b), and 4 (c). There are a plurality of combinations of the shapes of the main joint 41 and the insert 42 as in the case of the power transmission joint of the first embodiment, and the insert 42 on which the ring plates 42n are stacked can be easily and inexpensively manufactured by press molding.

〔第3実施形態の動力伝達用ジョイント〕
図8(a)は第3実施形態の動力伝達用ジョイントを用いて操作杆の先端部と作業装置側の動力入力部とを接続させた状態を示した側面断面図、(b)はこの接続方法を示す側面断面図、図9は第3実施形態による動力伝達用ジョイントの分解斜視図、図10(a)は第3実施形態による動力伝達用ジョイントの側面断面図、(b)は左側面図、(c)は右側面図、(d)は第3実施形態による動力伝達用ジョイントの一部を構成する主ジョイントの側面断面図、(e)は左側面図、(f)は右側面図、図11は軸部材の端面形状を例示した図である。
[Power Transmission Joint of Third Embodiment]
FIG. 8A is a side sectional view showing a state in which the distal end portion of the operating rod is connected to the power input portion on the working device side using the power transmission joint of the third embodiment, and FIG. FIG. 9 is an exploded perspective view of the power transmission joint according to the third embodiment, FIG. 10A is a side sectional view of the power transmission joint according to the third embodiment, and FIG. (C) is a right side view, (d) is a side sectional view of a main joint constituting a part of a power transmission joint according to the third embodiment, (e) is a left side view, and (f) is a right side view. FIG. 11 and FIG. 11 are views illustrating the end face shape of the shaft member.

図8(a)(b)、図9及び図10(a)(b)(c)に示す第3実施形態による動力伝達ジョイント40Cは、図8に示す動力入力部27bが穴又は孔形状の場合に対応させた動力伝達用ジョイントであり、主ジョイント41と2個の入れ子42,43と、軸部材44とによる組み合わせ品で構成される。
主ジョイント41は、図9及び図10(e)〜(f)に示すように、筒内周を6等分する箇所に、縦方向に向けた条溝41dが夫々設けられた、貫通孔からなる嵌合部41bを有する。
2個の入れ子42,43は、いずれも主ジョイント41内に密着した状態で没入する大きさの径があり、その外周面には前記条溝41dに係合する凸条42a,43aが形成され、内側に嵌合孔42b,43bが設けられたものが用いられ、いずれも主ジョイント41の長さの略半分程度の長さがあり、いずれも図6に示す各種端面形状のものが用意される。軸部材44は、図11に示す各種形状のものが用意される。
The power transmission joint 40C according to the third embodiment shown in FIGS. 8A, 8B, 9 and 10A, 10B, and 10C has a power input portion 27b shown in FIG. It is a joint for power transmission corresponding to the case, and is constituted by a combination product of a main joint 41, two inserts 42 and 43, and a shaft member 44.
As shown in FIGS. 9 and 10 (e) to 10 (f), the main joint 41 is formed from a through hole in which a longitudinal groove 41d is respectively provided at a portion that divides the inner circumference of the cylinder into six equal parts. It has the fitting part 41b which becomes.
Each of the two inserts 42 and 43 has a diameter large enough to be immersed in the main joint 41, and on the outer peripheral surface thereof, convex strips 42a and 43a that engage with the strip groove 41d are formed. In addition, those provided with fitting holes 42b and 43b on the inner side are used, both of which are approximately half the length of the main joint 41, and all have various end face shapes shown in FIG. The The shaft member 44 is prepared in various shapes as shown in FIG.

この実施形態による動力伝達用ジョイント40Cは、次の手順を経て動力入力部27bとドライブシャフト50の先端部50aとを接続させる。
即ち、図8(b)に示すように、動力入力部27bの形状に合った軸部材44を選択して、この軸部材44の先端部を動力入力部27b内に突入させることから始まる。続いて、軸部材44の形状に合った嵌合孔43bを有する入れ子43を選択して、この入れ子43を軸部材44の後部に嵌入させる。この後、主ジョイントの前部をこの入れ子43に嵌入させると、動力入力部27bと主ジョイント41の前部とが、連れ回り可能に接続される。
続いて、ドライブシャフト50の先端部50aの形状に合った嵌合孔42bを有する入れ子42を選択し、この入れ子42を主ジョイント41の後部内に没入させ、最後に、ドライブシャフト50の先端部50aをこの入れ子42内に突入させると、前記接続の作業は終了する。
The power transmission joint 40C according to this embodiment connects the power input portion 27b and the tip end portion 50a of the drive shaft 50 through the following procedure.
That is, as shown in FIG. 8B, the shaft member 44 that matches the shape of the power input portion 27b is selected, and the tip end portion of the shaft member 44 enters the power input portion 27b. Subsequently, the insert 43 having a fitting hole 43 b that matches the shape of the shaft member 44 is selected, and the insert 43 is inserted into the rear portion of the shaft member 44. Thereafter, when the front portion of the main joint is fitted into the insert 43, the power input portion 27b and the front portion of the main joint 41 are connected to be able to rotate.
Subsequently, the insert 42 having a fitting hole 42b that matches the shape of the tip 50a of the drive shaft 50 is selected, and the insert 42 is immersed in the rear part of the main joint 41. Finally, the tip of the drive shaft 50 When 50a is inserted into the insert 42, the connection operation is completed.

この実施形態による動力伝達用ジョイント40Cによれば、最初に、軸部材44と前部側の入れ子43を使用して主ジョイント41を動力入力部27bに取り付けると、その後は、ドライブシャフト50の先端部50aの形状に合った後部側の入れ子42を選択利用するだけでよい。このため、簡単且つ低コストで前記接続が行える利点がある。  According to the power transmission joint 40C according to this embodiment, when the main joint 41 is first attached to the power input portion 27b using the shaft member 44 and the front insert 43, the tip of the drive shaft 50 is thereafter used. It is only necessary to selectively use the rear nesting 42 that matches the shape of the portion 50a. For this reason, there exists an advantage which can perform the said connection simply and at low cost.

〔第4実施形態の動力伝達用ジョイント〕
図12は第4実施形態による動力伝達用ジョイントを用いて操作杆の先端部と作業装置側の動力入力部とを接続させた状態を示した側面断面図、図13(a)は第4実施形態による動力伝達用ジョイントを斜め前方から見た分解斜視図、(b)は斜め後方から見た分解斜視図である。
[Power Transmission Joint of Fourth Embodiment]
FIG. 12 is a side sectional view showing a state in which the distal end portion of the operating rod is connected to the power input portion on the working device side using the power transmission joint according to the fourth embodiment, and FIG. 13A is the fourth embodiment. The disassembled perspective view which looked at the joint for power transmission by a form from diagonally forward, (b) is the disassembled perspective view which looked from diagonally back.

図12及び図13(a)(b)に示す第4実施形態による動力伝達用ジョイント40Dは、第3実施形態による動力伝達用ジョイントと同様、動力入力部27bが嵌合穴である場合に対応させた動力伝達用ジョイントであり、主ジョイント45と入れ子42とにより構成される。
主ジョイント45は前部が軸部45aで形成され、後部が有底の肉厚円筒部45bで形成され、肉厚円筒部45bの後部端面は図5(b)に示す形状を有している。
主ジョイント45は、図11に示す形状の軸部45aと、図5に示す端面形状を有する嵌合部45cとが組み合わされた、複数種類のものが用意される。また、軸部45aは肉厚円筒部45bと一体形成されたもの以外にも、軸部45aの後端部を肉厚円筒部45bの前端部に形成した孔又は有底穴(図示せず)内に突入固定させたものが想定される。
入れ子42は、図4(a)(b)に示す入れ子42、又は図7に示す入れ子42と同様のものであり、且つ、端面形状も図6に示す形状のものが用意される。
Similar to the power transmission joint according to the third embodiment, the power transmission joint 40D according to the fourth embodiment shown in FIGS. 12 and 13 (a) (b) corresponds to the case where the power input portion 27b is a fitting hole. The power transmission joint is composed of a main joint 45 and a nest 42.
The main joint 45 has a front portion formed by a shaft portion 45a and a rear portion formed by a thick cylindrical portion 45b having a bottom, and a rear end face of the thick cylindrical portion 45b has a shape shown in FIG. .
A plurality of types of main joints 45 are prepared in which a shaft portion 45a having a shape shown in FIG. 11 and a fitting portion 45c having an end surface shape shown in FIG. 5 are combined. Further, the shaft portion 45a in addition to those formed integrally with the thick cylindrical portion 45b, (not shown) holes or blind hole the rear end portion was formed at the front end portion of the thick cylindrical portion 45b of the shaft portion 45a It is assumed that it is fixed inside.
The insert 42 is the same as the insert 42 shown in FIGS. 4 (a) and 4 (b) or the insert 42 shown in FIG. 7, and the end face shape shown in FIG. 6 is also prepared.

図12に示す動力入力部27bとドライブシャフト50の先端部とをこの実施形態の動力伝達用ジョイント40Dで接続させる場合には、最適な形状の軸部45aを有する主ジョイント45を選択する。そして、ドライブシャフト50の先端部50aの形状に合う入れ子42を選択して、選択した主ジョイント45の軸部45aを動力入力部27b内に突入させる。続いて、選択した入れ子42を主ジョイント45の肉厚円筒部45b内に没入させ、最後にドライブシャフト50の先端部50aを入れ子42の内側に突入させると、動力入力部27bとドライブドライブシャフト50の先端部50aとが動力伝達用ジョイント40Dで接続される。When the power input portion 27b shown in FIG. 12 and the tip end portion of the drive shaft 50 are connected by the power transmission joint 40D of this embodiment, the main joint 45 having the optimally shaped shaft portion 45a is selected. Then, the insert 42 that matches the shape of the distal end portion 50a of the drive shaft 50 is selected, and the shaft portion 45a of the selected main joint 45 is inserted into the power input portion 27b. Subsequently, when the selected insert 42 is immersed in the thick cylindrical portion 45b of the main joint 45, and finally the tip portion 50a of the drive shaft 50 is inserted into the insert 42, the power input portion 27b and the drive drive shaft 50 are inserted. Are connected by a power transmission joint 40D.

この実施形態の動力伝達用ジョイント40Dは、主ジョイント45の軸部45aを、図12に示す動力入力部27b内に突入させて、動力入力部27bに主ジョイント45を取り付けておけば、ドライブシャフト50の先端部50aの形状に合う入れ子42を選択して使用するだけで、簡単且つ低コストで、先端部50aの形状に違いに対応させた、動力入力部27bとドライブシャフト50の先端部50aとの接続が可能になる。  In the power transmission joint 40D of this embodiment, if the shaft portion 45a of the main joint 45 is inserted into the power input portion 27b shown in FIG. 12 and the main joint 45 is attached to the power input portion 27b, the drive shaft The power input portion 27b and the tip portion 50a of the drive shaft 50 can be easily and inexpensively adapted to the shape of the tip portion 50a simply by selecting and using the insert 42 that matches the shape of the tip portion 50a. Connection with is possible.

以上の各実施形態の動力伝達用ジョイントは入れ子を備えたもので構成されているが、主ジョイントに直接ドライブシャフトの先端部を、連れ回り係合可能に突入させる、入れ子を備えていない構成とすることも可能である。この構成によれば、主ジョイントは、ドライブシャフト先端部の形状の種類に対応する各種形状の嵌合部を有するもが用意される。  The power transmission joint of each of the embodiments described above is configured with a nesting, but the configuration in which the tip of the drive shaft is directly inserted into the main joint so as to be able to rotate and engage is not provided. It is also possible to do. According to this configuration, the main joint is provided with a fitting portion having various shapes corresponding to the shape type of the tip portion of the drive shaft.

本発明による手持ち式動力作業機の1例と交換可能な作業装置を例示した斜視図である。It is the perspective view which illustrated one example of the hand-held power working machine by this invention, and the work apparatus replaceable. 図2(a)は刈払装置と操作杆先端部を例示した側面断面図、(b)はこの刈払装置内部の部分平面断面図である。FIG. 2A is a side cross-sectional view illustrating the brush cutter and the operating rod tip, and FIG. 2B is a partial plan cross-sectional view inside the brush cutter. 図3は操作杆の先端部と作業装置側の動力入力部とを接続させて示した側面断面図である。FIG. 3 is a side cross-sectional view showing the distal end portion of the operating rod connected to the power input portion on the working device side. (a)は第1実施形態による動力伝達用ジョイントの斜前方から見た斜視図、(b)は斜め後方から見た斜視図、(c)は側面断面図、(d)はその一部を構成する主ジョイントの側面断面図である。(A) is a perspective view of the power transmission joint according to the first embodiment as viewed obliquely from the front, (b) is a perspective view as viewed from the oblique rear, (c) is a side sectional view, and (d) is a part thereof. It is side surface sectional drawing of the main joint which comprises. (a)はドライブシャフトの前部側の端面形状を例示した図、(b)は後部側の端面形状を例示した図である。(A) is the figure which illustrated the end surface shape of the front part side of a drive shaft, (b) is the figure which illustrated the end surface shape of the rear part side. 図6は入れ子の端面形状を例示した図である。FIG. 6 is a diagram illustrating an end face shape of the insert. (a)は第2実施形態の動力伝達用ジョイントを斜め前方から見た斜視図、(b)は斜め後方から見た斜視図である。(A) is the perspective view which looked at the joint for power transmission of 2nd Embodiment from diagonally forward, (b) is the perspective view seen from diagonally back. (a)は第3実施形態の動力伝達用ジョイントを用いて操作杆の先端部と作業機側の動力入力部とを接続させた状態を示した側面断面図、(b)はこの接続方法を示す側面断面図である。(A) is side surface sectional drawing which showed the state which connected the front-end | tip part of the operating rod, and the power input part by the side of a working machine using the power transmission joint of 3rd Embodiment, (b) is this connection method. It is side surface sectional drawing shown. 第3実施形態による動力伝達用ジョイントの分解斜視図である。It is a disassembled perspective view of the joint for power transmission by 3rd Embodiment. (a)は第3実施形態による動力伝達用ジョイントの側面断面図、(b)は左側面図、(c)は右側面図、(d)は第3実施形態による動力伝達用ジョイントの一部を構成する主ジョイントの側面断面図、(e)は左側面図、(f)は右側面図である。(A) is side sectional drawing of the power transmission joint by 3rd Embodiment, (b) is a left view, (c) is a right view, (d) is a part of power transmission joint by 3rd Embodiment. The side sectional view of the main joint which constitutes, (e) is a left side view, (f) is a right side view. 軸部材の端面形状を例示した図である。It is the figure which illustrated the end face shape of the shaft member. 第4実施形態の動力伝達用ジョイントを用いて操作杆の先端部と作業装置側の動力入力部とを接続させた状態を示した側面断面図である。It is side surface sectional drawing which showed the state which connected the front-end | tip part of the operating rod, and the power input part by the side of a working device using the power transmission joint of 4th Embodiment. (a)は第4実施形態の動力伝達用ジョイントを斜め前方から見た分解斜視図、(b)は斜め後方から見た分解斜視図である。(A) is the disassembled perspective view which looked at the joint for power transmission of 4th Embodiment from diagonally forward, (b) is the disassembled perspective view which looked from diagonally back.

1 手持ち式動力作業機
2 原動機付き操作杆
3 操作杆
10 刈払装置
21 上刃
22 下刃
23 主ギヤケース
24 主軸
25 後部ギヤケース
26 短尺筒部
27 小径傘歯車
27b 動力入力部
40 動力伝達用ジョイント
40A 第1実施形態の動力伝達用ジョイント
40B 第2実施形態の動力伝達用ジョイント
40C 第3実施形態の動力伝達用ジョイント
40D 第4実施形態の動力伝達用ジョイント
41 主ジョイント
41a 嵌合部
41b 嵌合部
41c 嵌合部
41d 条溝
42 入れ子
42a 凸条
42b スプライン嵌合孔
42n リング板
43 入れ子
43a 凸条
43b 嵌合孔
44 軸部材
45 主ジョイント
45a 軸部
45b 肉厚円筒部
45c 嵌合部
50 ドライブシャフト
50a 先端部
DESCRIPTION OF SYMBOLS 1 Hand-held power working machine 2 Operating rod with motor 3 Operating rod 10 Brush cutter 21 Upper blade 22 Lower blade 23 Main gear case 24 Main shaft 25 Rear gear case 26 Short cylindrical portion 27 Small diameter bevel gear 27b Power input portion 40 Power transmission joint 40A Power transmission joint 40B of the first embodiment Power transmission joint 40C of the second embodiment Power transmission joint 40D of the third embodiment Power transmission joint 41 of the fourth embodiment Main joint 41a Fitting portion 41b Fitting portion 41c fitting part 41d groove 42 nest 42a protrusion 42b spline fitting hole 42n ring plate 43 nest 43a protrusion 43b fitting hole 44 shaft member 45 main joint 45a shaft part 45b thick cylindrical part 45c fitting part 50 drive shaft 50a Tip

Claims (4)

エンジン又は電動モータよりなる原動機を後部に搭載した中空パイプ構造を有し、その内側にドライブシャフトを備えた操作杆の先端部に、該ドライブシャフトから回転動力を入力して駆動する作業装置を搭載させた基本構造を有し、
前記作業装置は、刈払装置の他、作業目的に合わせて選択した作業装置に交換可能であり、
該ドライブシャフトの先端部と前記選択した作業装置の動力入力部とが対応しない形状であっても、
後部側に、スプライン内壁、セレーション内壁、角形内壁、二面取りされた内壁のいずれかよりなる筒形状の嵌合部を有し、前部側に、スプライン軸、セレーション軸、角軸、二面取り軸のいずれかよりなる軸部、又はスプライン内壁、セレーション内壁、角形内壁、二面取りされた内壁のいずれかよりなる筒形状の嵌合部を有する複数種類の動力伝達用ジョイントのうちから、後部側が前記ドライ ブシャフトの先端部を突入させて連れ回り可能に係合し、前部側が前記選択した作業装置の動力入力部に連れ回り可能に係合する動力伝達ジョイントが選択されて、
この選択された動力伝達用ジョイントを介して、前記ドライブシャフトの先端部と前記選択した作業装置の動力入力部とが連結されるように構成されていることを特徴とする手持ち式動力作業機。
A hollow pipe structure with a prime mover consisting of an engine or electric motor mounted at the rear, and a work device that inputs rotational power from the drive shaft and drives it at the tip of an operating rod equipped with a drive shaft inside Has a basic structure,
The working device can be replaced with a working device selected in accordance with the work purpose in addition to the brush cutter device,
Even if the tip portion of the drive shaft and the power input portion of the selected working device do not correspond,
On the rear side, it has a cylindrical fitting part consisting of any of spline inner wall, serration inner wall, square inner wall, and two-sided inner wall, and on the front side, spline shaft, serration shaft, square axis, two-chamfered shaft Among the plurality of types of power transmission joints having a shaft-like fitting portion, or a spline inner wall, a serration inner wall, a square inner wall, or a cylindrical fitting portion made of two chamfered inner walls, the rear side is the aforementioned to plunge the tip of the dry Bushafuto engaged to turns with it, and a power transmission joint front side is engagable turns with the power input of the selected working device is selected,
Through the selected power transmission joint, hand held power working machine, characterized in that the power input of the selected working device and distal portion of the drive shaft is configured to be coupled.
請求項1に記載の手持ち式動力作業機に装備される動力伝達ジョイントであって、
主ジョイントと入れ子とからなり、
該入れ子は、その中央に前記ドライブシャフトの先端部を突入させて連れ回り可能に係合させる嵌合部を有し、
前記主ジョイントは、前部側に前記選択した作業装置の動力入力部に連れ回り可能に係合する軸部又は筒形状の嵌合部を有し、後部側に前記入れ子を密着した状態で没入させて連れ回りさせ得る筒形状の嵌合部を有していることを特徴とする動力伝達用ジョイント。
A power transmission joint equipped in the hand-held power working machine according to claim 1,
It consists of a main joint and nesting,
The nesting has a fitting portion that engages the tip of the drive shaft at the center thereof so that the tip of the nesting can enter and rotate.
The main joint has a shaft portion or a cylindrical fitting portion that engages with a power input portion of the selected working device on the front side, and is immersed in a state in which the insert is in close contact with the rear side. A power transmission joint having a cylindrical fitting portion that can be rotated together .
前記主ジョイントの後部側に有する前記嵌合部の筒内周面に縦方向の条溝が形成され、前記入れ子の外周面に前記条溝に係合する凸条が形成されて、A longitudinal groove is formed on the inner circumferential surface of the fitting portion on the rear side of the main joint, and a convex groove that engages with the groove is formed on the outer circumferential surface of the insert.
前記主ジョイントと該主ジョイント後部側の前記嵌合部内に没入させた前記入れ子とは、前記条溝と前記凸条とによる係合により、連れ回りするように構成されている、請求項2に記載の動力伝達用ジョイント。The said main joint and the said nest | insert nested in the said fitting part of this main joint rear part side are comprised so that it may rotate with the engagement by the said groove and the said protruding item | line. The power transmission joint described.
前記入れ子は、複数枚のリング板を重ね合わせたもので構成される請求項2又は3に記載の動力伝達用ジョイント。4. The power transmission joint according to claim 2 , wherein the nest is configured by overlapping a plurality of ring plates. 5.
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