JP5231048B2 - Hollow shaft member and method for forming the same - Google Patents
Hollow shaft member and method for forming the same Download PDFInfo
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- JP5231048B2 JP5231048B2 JP2008053187A JP2008053187A JP5231048B2 JP 5231048 B2 JP5231048 B2 JP 5231048B2 JP 2008053187 A JP2008053187 A JP 2008053187A JP 2008053187 A JP2008053187 A JP 2008053187A JP 5231048 B2 JP5231048 B2 JP 5231048B2
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Description
本発明は、中実の素材から成形され、かつ軸方向の先端側を小径状に絞り成形してなり、及び/あるいは軸方向の一部の外周面に歯形を形成してなる中空軸部材及びその成形方法に関するものである。 The present invention relates to a hollow shaft member formed from a solid material and formed by drawing the tip end side in the axial direction to a small diameter and / or forming a tooth profile on a part of the outer peripheral surface in the axial direction. The present invention relates to the molding method.
この種の中空軸部材の成形方法としては、本発明の出願人が先に特許文献1として提案した成形方法がある。 As a method for molding this type of hollow shaft member, there is a molding method previously proposed as Patent Document 1 by the applicant of the present invention.
この従来の成形方法にあっては、図1、図2に示すように中実棒状の素材1の軸方向両端側を、対向部に環状空間部2を有する上下の金型3,4にて型締め状態で保持し、ついで素材1より小径の上下のパンチ5,6にて押圧して素材1の軸方向両側からパンチ5,6による穴を押し出し成形すると共に、金型3,4の環状空間部2に対向する部分で段状に膨出変形させて軸方向中間部に段状大径部7を有する中空軸部材を成形するようにしている。そしてこのときに両パンチ5,6の対向間にできる栓状部8は、一方のパンチを押し切ることにより抜かれて、例えば図3に示すような中空軸部材の第1成形体9aが形成される(特許文献1参照)。
In this conventional molding method, as shown in FIGS. 1 and 2, both ends in the axial direction of a solid rod-shaped material 1 are formed by upper and
上記のようにして成形された中空軸部材の第1成形体9aにおいて、図4に示すように上記段状大径部7がある位置から軸方向両側を上型10と下型11にて小径に押圧成形して軸方向両側部に小径部12,13を有する第2成形体9bを成形し、さらに図5に示すように、上記第2成形体9bの中間部の外周にセレーション14を金型15により軸方向に押し出し成形して第3成形体9cとすることがある。
In the first molded body 9a of the hollow shaft member molded as described above, the
上記した成形工程において、例えば図6に示すように、第1成形体9aを上下の型10,11にて軸方向に型締めして軸方向両側に小径部12,13を成形するときに、第1成形体9aが中空であることにより、中間部に座屈が生じ、図6にて鎖線で示すように膨出部16が生じることがある。
In the above-described molding process, for example, as shown in FIG. 6, when the first molded body 9a is clamped in the axial direction with the upper and
また、図4で示した第2成形体9bの外周に図5に示すようにセレーション14を成形して第3成形体9cに成形する際に、上記第2成形体9bの成形と同様に、この部分が中空であることにより、上記下型11による押し出し成形時のバックアップ力が不足して、このセレーション14の歯形の成形精度を出すことが困難であった。なお、この部分に芯金を挿入すればよいが、上記第2成形体9aの軸方向両端側が、中間部より小径であることにより、中空部に芯金を挿入しての成形はできない。
Further, when the
本発明は上記のことに鑑みなされたもので、中実の素材から成形された軸方向の先端側に小径部や歯形部を精度高く成形することができる中空軸部材及びその成形方法を提供することを目的とするものである。 The present invention has been made in view of the above, and provides a hollow shaft member capable of accurately molding a small-diameter portion and a tooth profile portion on an axial tip side formed from a solid material, and a molding method thereof. It is for the purpose.
上記目的を達成するために、本発明に係る中空軸部材は、外周に段状大径部と中径部を有し、段状大径部と中径部の内部に同径の中空部を塑性成形により設けた中空軸部材において、段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を設け、この歯形を設けた部分の中空部に、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さの栓状部を設けた構成になっている。 In order to achieve the above object, a hollow shaft member according to the present invention has a stepped large diameter portion and a medium diameter portion on the outer periphery, and has a hollow portion having the same diameter inside the stepped large diameter portion and the medium diameter portion . In a hollow shaft member provided by plastic forming , tooth shapes such as serrations and gears are provided on the outer periphery of the medium diameter portion adjacent to the stepped large diameter portion, and the axial length of the tooth shape is provided in the hollow portion of the portion where the tooth shape is provided. The plug-shaped portion having an axial length smaller than the axial length of the tooth profile is provided.
また、外周に段状大径部と中径部を有し、軸方向の端部の外周に他の部分より小径にした小径部を有し、段状大径部と中径部の内部に同径の中空部を、小径部の内部に前記中空部より小径の中空部を塑性成形により設けた中空軸部材において、段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を設け、この歯形を設けた部分の中空部に、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さの栓状部を設けた構成になっている。 In addition, it has a stepped large diameter part and a medium diameter part on the outer periphery, a small diameter part made smaller in diameter than the other parts on the outer periphery of the axial end, and inside the stepped large diameter part and the medium diameter part In a hollow shaft member in which a hollow portion having the same diameter is formed by plastic forming a hollow portion having a smaller diameter than the hollow portion inside the small diameter portion , serrations, gears, etc. are provided on the outer periphery of the medium diameter portion adjacent to the stepped large diameter portion. A tooth shape is provided, and a plug-like portion having an axial length that is within the axial length of the tooth shape and smaller than the axial length of the tooth shape is provided in the hollow portion of the portion where the tooth shape is provided. .
そして上記中空軸部材の成形方法は、上下の金型内に中実棒状の素材を保持し、この素材より小径の上下のパンチにて軸方向から押圧して、外周に段状大径部と中径部を有し、段状大径部と中径部の内部に同径の中空部及び栓状部とを塑性成形により設けた中空軸部材を押し出し成形し、段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を塑性成形する中空軸部材の成形方法であって、栓状部を、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さとした。 The hollow shaft member is formed by holding a solid rod-shaped material in the upper and lower molds, pressing it from the axial direction with upper and lower punches having a smaller diameter than the material , and forming a stepped large diameter portion on the outer periphery. A hollow shaft member that has a medium-diameter portion and is formed by plastic forming a step-shaped large-diameter portion and a hollow portion and a plug-shaped portion of the same diameter inside the medium-diameter portion, is adjacent to the step-shaped large-diameter portion A hollow shaft member molding method in which a tooth shape such as a serration or a gear is plastically formed on the outer periphery of the medium diameter portion , wherein the plug-like portion is within the axial length of the tooth profile and is smaller than the axial length of the tooth profile. Small axial length .
また、上下の金型内に中実棒状の素材を保持し、この素材より小径の上下のパンチにて軸方向から押圧して、外周に段状大径部と中径部を有し、段状大径部と中径部の内部に同径の中空部及び栓状部とを塑性成形により設けた中空軸部材を押し出し成形し、次に、軸方向の端部の段状大径部と隣接しない側の中径部の外周を他の部分より小径にした小径部に絞りつつ、段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を塑性成形する中空軸部材の成形方法であって、栓状部を、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さとした。 Moreover, holding a solid rod-like material into the mold up and down, and pressed from the axial direction from the material at the small diameter of the upper and lower punches having a stepped large-diameter portion and the intermediate-diameter portion on the outer periphery, A hollow shaft member in which a hollow portion and a plug-like portion having the same diameter are formed by plastic molding inside the stepped large diameter portion and the medium diameter portion is extruded, and then the stepped large diameter portion at the end in the axial direction is formed. A hollow shaft that plastically forms serrations, gears, and other tooth profiles on the outer periphery of the medium-diameter portion adjacent to the stepped large-diameter portion while the outer periphery of the medium-diameter portion on the non-adjacent side is narrowed to a smaller-diameter portion that is smaller than other portions In the method for forming a member, the plug-like portion has an axial length that is within the axial length of the tooth profile and is smaller than the axial length of the tooth profile .
本発明の請求項1に記載の中空軸部材によれば、これの外周に歯形を加工する際に、この部分の内側に設けられた栓部材にてバックアップされ、塑性成形によるセレーションや歯車の成形を精度高く行うことができる。 According to the hollow shaft member of the first aspect of the present invention, when the tooth profile is processed on the outer periphery of the hollow shaft member, it is backed up by the plug member provided inside this portion, and serration or gear molding by plastic molding is performed. Can be performed with high accuracy.
また、請求項2に記載の中空軸部材は、軸方向端部の小径部を座屈が生じることなく、軸方向から塑性成形にて成形することができる。 In addition, the hollow shaft member according to claim 2 can be molded by plastic molding from the axial direction without causing buckling of the small diameter portion of the axial end portion.
請求項3及び請求項4の成形方法によれば、上記軸方向の一部の外周にセレーションや歯車等の歯形を塑性成形してなる中空軸部材及び軸方向端に他の部分より小径の小径部を塑性成形してなる中空軸部材のそれぞれの塑性成形部の内側への栓状部の成形を容易に行うことができる。
According to the molding method of
本発明の実施の形態を図7以下に説明する。なお、図1から図6に示した従来の成形方法の説明に用いた金型と同一の金型は、同一の符号を付して説明する。 An embodiment of the present invention will be described below with reference to FIG. Note that the same mold as the mold used in the description of the conventional molding method shown in FIGS. 1 to 6 is given the same reference numeral.
図7は、図3に示した従来の第1成形体9aの成形途中、すなわち図2に示した栓状部8を打ち抜く前の状態を示すものである。そしてこの実施の形態では、上側のパンチ5の押し出し位置を制御して上記栓状部8を、図4で示す一方の軸端部に成形する小径部13と段状大径部7との間に位置させた第1成形体9a´を成形する。
FIG. 7 shows a state during molding of the conventional first molded body 9a shown in FIG. 3, that is, a state before punching out the plug-
図8は、上記第1成形体9a´を図6で示した従来の第2成形体9bの成形と同様に、上下の型10,11にて軸方向両側に小径部12,13を成形する成形途中を示す。
8, the first molded body 9 a ′ is molded with
このときにおいて、段状大径部7より下側の中空部の中間部は栓状部8にて中実状になっているので、図9に示すように、この中空部に座屈が発生することなく軸方向からの下型11による押し出し成形により小径部13が成形されて第2成形体9b´となる。
At this time, since the intermediate portion of the hollow portion below the stepped
図10は、上記第2成形体9b´を図5で示した従来の第3成形体9cの成形と同様に、段状大径部7と小径部13の間にセレーション14を成形した状態を示している。
FIG. 10 shows a state where the
このときにおいて、上記セレーション14を成形する部分が栓状部8にて中実状になっているので、このセレーション14の成形はこの栓状部8にてバックアップされて成形され、精度高く成形される。
At this time, since the portion where the
図11は上記した第2成形体9c´を用いて、これの段状大径部7に歯車17を加工した中空歯車軸18であり、歯車17の軸方向両側に軸の内外を連通する油孔19が設けてある。
FIG. 11 shows a
この中空歯車軸18において、歯車17の内側の中空部に給油された潤滑油は、油孔19を通って歯車17の噛み合い部に供給される。このとき中空部に供給された潤滑油は、栓状部8にて軸方向へ抜けるのが遮られてこれの全量が上記油孔19より外側へ流出されて、供給された潤滑油が他へ流失することなく有効に利用される。
In the
1…素材、2…環状空間部、3,4,10,11,15…金型、5,6…パンチ、7…段状大径部、8…栓部材、9a,9b,9c,9a´,9b´,9c´…成形体、12,13…小径部、14…セレーション、16…膨出部、17…歯車、18…中空歯車軸、19…油孔。 DESCRIPTION OF SYMBOLS 1 ... Material, 2 ... Annular space part, 3, 4, 10, 11, 15 ... Mold, 5, 6 ... Punch, 7 ... Stepped large diameter part, 8 ... Plug member, 9a, 9b, 9c, 9a ' , 9b ', 9c' ... molded body, 12, 13 ... small diameter part, 14 ... serration, 16 ... bulge part, 17 ... gear, 18 ... hollow gear shaft, 19 ... oil hole.
Claims (4)
段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を設け、この歯形を設けた部分の中空部に、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さの栓状部を設けたことを特徴とする中空軸部材。 In a hollow shaft member having a stepped large diameter portion and a medium diameter portion on the outer periphery, and providing a hollow portion of the same diameter inside the stepped large diameter portion and the medium diameter portion by plastic molding,
A tooth profile such as serrations and gears is provided on the outer periphery of the medium diameter portion adjacent to the stepped large diameter portion, and the hollow portion of the portion where the tooth shape is provided is within the axial length of the tooth profile and the axial direction of the tooth profile A hollow shaft member provided with a plug-like portion having an axial length smaller than the length .
段状大径部と隣接した中径部の外周にセレーションや歯車等の歯形を設け、この歯形を設けた部分の中空部に、歯形の軸方向長さの範囲内であって歯形の軸方向長さより小さな軸方向長さの栓状部を設けたことを特徴とする中空軸部材。 It has a stepped large diameter part and a medium diameter part on the outer periphery, a small diameter part made smaller in diameter than other parts on the outer periphery of the axial end, and the same diameter inside the stepped large diameter part and the medium diameter part A hollow shaft member in which a hollow portion having a smaller diameter than that of the hollow portion is formed by plastic molding inside the small diameter portion ,
A tooth profile such as serrations and gears is provided on the outer periphery of the medium diameter portion adjacent to the stepped large diameter portion, and the hollow portion of the portion where the tooth shape is provided is within the axial length of the tooth profile and the axial direction of the tooth profile A hollow shaft member provided with a plug-like portion having an axial length smaller than the length .
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JP2008053187A JP5231048B2 (en) | 2008-03-04 | 2008-03-04 | Hollow shaft member and method for forming the same |
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JP2008053187A JP5231048B2 (en) | 2008-03-04 | 2008-03-04 | Hollow shaft member and method for forming the same |
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JP5231048B2 true JP5231048B2 (en) | 2013-07-10 |
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JPS5790415A (en) * | 1980-11-26 | 1982-06-05 | Komatsu Ltd | Stepped hollow shaft manufacturing method |
JP3201160B2 (en) * | 1994-08-29 | 2001-08-20 | セイコーエプソン株式会社 | Watch shoe and its manufacturing method |
JP4000861B2 (en) * | 2002-02-12 | 2007-10-31 | 株式会社ユーケー | Manufacturing method of stepped shaft |
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