JP5534733B2 - Universal joint boots - Google Patents

Universal joint boots Download PDF

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Publication number
JP5534733B2
JP5534733B2 JP2009175241A JP2009175241A JP5534733B2 JP 5534733 B2 JP5534733 B2 JP 5534733B2 JP 2009175241 A JP2009175241 A JP 2009175241A JP 2009175241 A JP2009175241 A JP 2009175241A JP 5534733 B2 JP5534733 B2 JP 5534733B2
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Prior art keywords
boot
universal joint
lip
groove
shape
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JP2011027212A (en
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健一郎 東
真一 高部
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NTN Corp
Nok Corp
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NTN Corp
Nok Corp
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Priority to JP2009175241A priority Critical patent/JP5534733B2/en
Priority to PCT/JP2010/058315 priority patent/WO2011013433A1/en
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16DCOUPLINGS FOR TRANSMITTING ROTATION; CLUTCHES; BRAKES
    • F16D3/00Yielding couplings, i.e. with means permitting movement between the connected parts during the drive
    • F16D3/84Shrouds, e.g. casings, covers; Sealing means specially adapted therefor
    • F16D3/843Shrouds, e.g. casings, covers; Sealing means specially adapted therefor enclosed covers
    • F16D3/845Shrouds, e.g. casings, covers; Sealing means specially adapted therefor enclosed covers allowing relative movement of joint parts due to the flexing of the cover
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16JPISTONS; CYLINDERS; SEALINGS
    • F16J3/00Diaphragms; Bellows; Bellows pistons
    • F16J3/04Bellows
    • F16J3/041Non-metallic bellows
    • F16J3/042Fastening details

Description

本発明は、自在継手に装着される自在継手用ブーツに関する。本発明の自在継手用ブーツは例えば、自動車関連分野におけるドライブシャフト用自在継手用ブーツやプロペラシャフト用自在継手用ブーツや産業機械関連分野における動力伝達自在継手用ブーツとして用いられる。   The present invention relates to a universal joint boot mounted on a universal joint. The universal joint boot of the present invention is used as, for example, a universal joint boot for a drive shaft, a universal joint boot for a propeller shaft, and a power transmission universal joint boot in an industrial machine related field.

従来から図7(A)に示すように、蛇腹形状の膜部52の一方の端部にシャフト21に対する取付部53を設けるとともに他方の端部に自在継手の外側継手部材22に対する取付部54を設け、取付部53,54の外周面にバンド装着溝55を設けた自在継手用ブーツ51が知られており、この自在継手用ブーツ51は、これをシャフト21および自在継手の外側継手部材22にセットし、その後バンド23で締め付けることによりシール性を確保してブーツ51内にグリース(図示せず)を封入するものである。図7(B)に拡大して示すように取付部53の内周面にはシール性を高めるため、突起状のリップ56が設けられている(特許文献1参照)。   Conventionally, as shown in FIG. 7A, an attachment portion 53 for the shaft 21 is provided at one end portion of the bellows-shaped membrane portion 52, and an attachment portion 54 for the outer joint member 22 of the universal joint is provided at the other end portion. There is known a universal joint boot 51 provided with a band mounting groove 55 on the outer peripheral surface of the mounting portions 53, 54. This universal joint boot 51 is connected to the shaft 21 and the outer joint member 22 of the universal joint. The seal is secured by tightening with a band 23 after that, and grease (not shown) is sealed in the boot 51. As shown in an enlarged view in FIG. 7B, a projection-like lip 56 is provided on the inner peripheral surface of the mounting portion 53 in order to improve the sealing performance (see Patent Document 1).

しかしながら、上記図7の構造では、締め付け用のバンド23の締め付け力が弱い場合、十分なシール性を確保できず、内部のグリースが流出する可能性がある。そこで十分なシール性を確保するため、強い締め付け力を得ることができるバンド構造が必要となり、必然的にバンドの製作コストが高くなる課題が発生する。バンド23の構造としては、図8に示すように、レバー24を矢印方向へ折り返すことにより締め付けるタイプや、図9に示すように、帯状のバンド本体25の両端に係合孔26および係合爪27よりなる引っ掛け部を設け、それらを係合することで締め付けるタイプ(特許文献2参照)や、図10に示すように、塑性変形部(耳部)28を設け、この部位を塑性変形させることで締め付けるタイプ(特許文献2参照)や、図11に示すように、円環状の部材(ブーツリング)29を内径方向に塑性変形させることで締め付けるタイプ(特許文献3参照)などがある。   However, in the structure of FIG. 7 described above, when the tightening force of the tightening band 23 is weak, sufficient sealing performance cannot be ensured, and internal grease may flow out. Therefore, in order to ensure a sufficient sealing performance, a band structure capable of obtaining a strong tightening force is required, which inevitably raises a problem that the manufacturing cost of the band increases. As shown in FIG. 8, the structure of the band 23 is a type in which the lever 24 is fastened by folding it back in the direction of the arrow. As shown in FIG. 9, the engagement holes 26 and the engagement claws are formed at both ends of the band-shaped band body 25. 27 is provided with a hook part 27 and tightened by engaging them (see Patent Document 2), and as shown in FIG. 10, a plastic deformation part (ear part) 28 is provided to plastically deform this part. There are a type (see Patent Document 2) that is tightened with a screw, and a type that is tightened by plastic deformation of an annular member (boot ring) 29 in the inner diameter direction as shown in FIG. 11 (see Patent Document 3).

特開2004−301202号公報JP 2004-301202 A 特開2006−283842号公報JP 2006-283842 A 特開2005−291367号公報JP 2005-291367 A

本発明は以上の点に鑑みて、ブーツ取付部におけるシール性を一層高め、もって比較的小さな締め付け力のバンドを用いても、十分なシール性を確保することができる自在継手用ブーツを提供することを目的とする。   In view of the above points, the present invention provides a universal joint boot that can further enhance the sealing performance of the boot mounting portion and can ensure sufficient sealing performance even when a band having a relatively small tightening force is used. For the purpose.

上記目的を達成するため、本発明の請求項1による自在継手用ブーツは、蛇腹形状の膜部の端部にシャフトまたは外側継手部材に対する取付部を有するとともに前記取付部の外周面にバンド装着溝を有する自在継手用ブーツにおいて、前記取付部の内周面に前記シャフトまたは外側継手部材に対するシール面圧を発生させるリップを設けるとともに前記バンド装着溝の底面に凸部を設け、前記リップの断面形状を不等辺形状とし、前記リップは複数設けられてリップ間に溝部が設けられ、前記溝部は、前記取付部の内周面のうちの前記リップを設けた面であってシャフトの軸方向に対し平行な向きの断面直線状の面よりも径方向外方へ凹設されるとともに、ブーツ内側の第一リップのブーツ外側斜面からの延長をなす断面直線状の斜面を溝部内面の一部として有することを特徴とする。 In order to achieve the above object, a universal joint boot according to claim 1 of the present invention has a mounting portion for a shaft or an outer joint member at an end portion of a bellows-shaped membrane portion, and a band mounting groove on an outer peripheral surface of the mounting portion. In the universal joint boot having a lip, a lip that generates a seal surface pressure against the shaft or the outer joint member is provided on the inner peripheral surface of the mounting portion, and a convex portion is provided on the bottom surface of the band mounting groove. The lip is provided in plural, and a groove is provided between the lips, and the groove is a surface of the inner peripheral surface of the mounting portion where the lip is provided and is in the axial direction of the shaft. while being recessed into the parallel orientation of the cross-section straight radially outward from a surface, the groove cross section linear slope which forms an extension of the boot outer inclined surface of the first lip of the inner boot Characterized in that it has as part of the surface.

また、本発明の請求項2による自在継手用ブーツは、上記した請求項1記載の自在継手用ブーツにおいて、前記溝部は、前記斜面のほかに、前記斜面から連続するフラット面と、断面円弧状をなして前記フラット面とブーツ外側の第二リップのブーツ内側斜面とを結ぶ曲面とを有することを特徴とする。 The universal joint boot according to claim 2 of the present invention is the universal joint boot according to claim 1 , wherein, in addition to the inclined surface, the groove portion has a flat surface continuous from the inclined surface, and an arc-shaped cross section. And a curved surface connecting the flat surface and the boot inner slope of the second lip on the outer side of the boot .

また、本発明の請求項3による自在継手用ブーツは、上記した請求項1または2記載の自在継手用ブーツにおいて、前記リップと前記凸部は、断面形状において対応した位置に設けられたことを特徴とする。   A universal joint boot according to claim 3 of the present invention is the universal joint boot according to claim 1 or 2, wherein the lip and the convex portion are provided at corresponding positions in the cross-sectional shape. Features.

また、本発明の請求項4による自在継手用ブーツは、上記した請求項1から3いずれかに記載の自在継手用ブーツにおいて、軸方向の変位を許容しながら回転力を伝達することができるしゅう動型等速自在継手に使用されることを特徴とする。   A universal joint boot according to claim 4 of the present invention is the universal joint boot according to any one of claims 1 to 3, wherein the rotational force can be transmitted while allowing axial displacement. It is used for a dynamic type constant velocity universal joint.

また、本発明の請求項5による自在継手用ブーツは、上記した請求項1から4いずれかに記載の自在継手用ブーツにおいて、自動車の駆動力を車輪に伝達するためのドライブシャフトの構成部品である等速自在継手に使用されることを特徴とする。   According to a fifth aspect of the present invention, there is provided a universal joint boot according to any one of the first to fourth aspects, wherein the universal joint boot is a component part of a drive shaft for transmitting a driving force of an automobile to a wheel. It is used for a constant velocity universal joint.

外周面にバンド装着溝を設けるとともに内周面にリップを設けたブーツの取付部において、リップに対応した位置のバンド装着溝の底面に凸部を設けると、バンド締め付け力が凸部からリップへ伝達され易いことから、リップにおけるシール面圧を増大させることが可能となるが、従来のリップはその断面形状が軸方向に対称な等辺形状(V字形状)であることから、本願発明者らが行なったFEM解析結果によると、リップにおけるシール面圧の増大比率はあまり大きくない。   If a protrusion is provided on the bottom surface of the band mounting groove at a position corresponding to the lip in the mounting part of the boot provided with a band mounting groove on the outer peripheral surface and a lip on the inner peripheral surface, the band tightening force is changed from the convex to the lip. Since it is easy to transmit, the seal surface pressure in the lip can be increased. However, since the conventional lip has an equilateral shape (V-shape) symmetrical in the axial direction, the inventors of the present application. According to the FEM analysis result performed by No. 1, the increase ratio of the seal surface pressure at the lip is not so large.

これに対し、上記等辺形状(V字形状)における先端(V字先端)を軸方向に変位させる形状などとしてリップの断面形状を不等辺形状とすると、上記等辺形状(V字形状)の場合と比較して、リップにおけるシール面圧のピーク値が20%以上増大することが判明した。そこで本発明では、取付部の内周面にリップを設けるとともに、リップに対応した位置のバンド装着溝の底面に凸部を設け、更にリップの断面形状を不等辺形状と規定するものである。   On the other hand, if the cross-sectional shape of the lip is an unequal side shape, such as a shape that axially displaces the tip (V shape tip) in the equilateral shape (V shape), the case of the equilateral shape (V shape) In comparison, it was found that the peak value of the seal surface pressure at the lip increased by 20% or more. Therefore, in the present invention, a lip is provided on the inner peripheral surface of the mounting portion, a convex portion is provided on the bottom surface of the band mounting groove at a position corresponding to the lip, and the cross-sectional shape of the lip is defined as an unequal side shape.

尚、上記等辺形状(V字形状)の先端を軸方向に変位させる場合には、先端をブーツ外側の大気側ではなくブーツ内側のグリース側へ変位させることによりグリース近傍部位にピーク面圧が生じることから、シール機能上好ましい。   When the tip of the equilateral shape (V-shape) is displaced in the axial direction, peak surface pressure is generated in the vicinity of the grease by displacing the tip to the grease side inside the boot instead of the atmosphere side outside the boot. Therefore, it is preferable in terms of the sealing function.

また、リップは上記等辺形状(V字形状)であると云っても、完全な尖端形状ではなく、ブーツ内側斜面(ブーツ内側すなわちグリース側からブーツ外側すなわち大気側へかけて内径寸法が徐々に縮小する斜面)、フラット面(内径寸法が一定の円筒面)およびブーツ外側斜面(ブーツ内側すなわちグリース側からブーツ外側すなわち大気側へかけて内径寸法が徐々に拡大する斜面)の3面を一連に備えるのが通常であることから、本発明でもリップはこれら3面を一連に備える場合を含み、この場合、軸方向で対をなすブーツ内側斜面とブーツ外側斜面とで辺長さおよび傾斜角度が異なることにより不等辺形状とされる。   Moreover, even if the lip has the above-mentioned equilateral shape (V shape), it is not a perfect pointed shape, but the inner diameter of the boot is gradually reduced from the inside slope of the boot (from the inside of the boot, that is, the grease side to the outside of the boot, that is, the atmosphere) 3 surfaces including a flat surface (cylindrical surface having a constant inner diameter) and a boot outer slope (a slope whose inner diameter gradually increases from the boot inner side, that is, the grease side to the boot outer side, that is, the atmosphere side). In the present invention, the lip includes a case where these three surfaces are provided in series, and in this case, the side length and the inclination angle are different between the boot inner slope and the boot outer slope which are paired in the axial direction. As a result, an unequal side shape is obtained.

したがって以上により、不等辺形状は、具体的には、ブーツ内側斜面の辺長さをL、傾斜角度(軸直角平面に対する傾斜角度)をθ、ブーツ外側斜面の辺長さをL、傾斜角度(軸直角平面に対する傾斜角度)をθとして、
<Lかつθ<θ
と規定されることになる。
Therefore, as described above, the unequal side shape, specifically, the side length of the boot inner slope is L 1 , the tilt angle (the tilt angle with respect to the plane perpendicular to the axis) is θ 1 , the side length of the boot outer slope is L 2 , The inclination angle (inclination angle with respect to the plane perpendicular to the axis) is θ 2 and
L 1 <L 2 and θ 12
Will be defined.

また、リップが複数設けられてリップ間に溝部が設けられると、溝部はグリースを貯留することから、シール性が一層高められる。リップを複数設ければリップ間の空間は当然、相対の凹部となるが、このような相対凹部は溝部に含まず、溝部は相対凹部よりも深いものである(事象としては直線状の基準面が設定され、この基準面にリップが複数凸設され、リップ間の空間が相対凹部とされるが、このような相対凹部は溝部に含まない。溝部は相対凹部とは別途、基準面に凹設される)。 Further, when a plurality of lips are provided and a groove portion is provided between the lips, the groove portion stores grease, thereby further improving the sealing performance. If a plurality of lips are provided, the space between the lips naturally becomes a relative concave portion, but such a relative concave portion is not included in the groove portion, and the groove portion is deeper than the relative concave portion (as an event, a linear reference surface) A plurality of lips are provided on the reference surface, and the space between the lips is a relative concave portion, but such a relative concave portion is not included in the groove portion. Established).

また、バンド装着溝の底面に設けられる凸部には、バンド締め付け時のバンド装着溝とバンド間の抵抗を低減したり、バンド締め付け時にブーツ取付部が円周上で部分的に偏ってしまうことを制御する効果もある。   In addition, the convex part provided on the bottom surface of the band mounting groove reduces the resistance between the band mounting groove and the band when tightening the band, or the boot mounting part is partially biased on the circumference when tightening the band There is also an effect of controlling.

本発明は、以下の効果を奏する。   The present invention has the following effects.

すなわち、本発明のようにブーツ取付部の内周面にリップを設けるとともに、リップに対応した位置のバンド装着溝の底面に凸部を設け、更にリップの断面形状を不等辺形状とすることにより、リップの断面形状が等辺形状である場合と比較して、リップにおけるシール面圧のピーク値を大幅に増大させることができる。また、リップが複数設けられてリップ間に溝部が設けられると、溝部はグリースを貯留することから、シール性が一層高められる。したがって本発明所期の目的どおり、ブーツ取付部におけるシール性を一層高め、もって十分なシール性を確保する自在継手用ブーツを提供することができる。   That is, by providing a lip on the inner peripheral surface of the boot mounting portion as in the present invention, providing a convex portion on the bottom surface of the band mounting groove at a position corresponding to the lip, and making the cross-sectional shape of the lip an unequal side shape As compared with the case where the cross-sectional shape of the lip is an equilateral shape, the peak value of the seal surface pressure at the lip can be greatly increased. Further, when a plurality of lips are provided and a groove portion is provided between the lips, the groove portion stores grease, thereby further improving the sealing performance. Therefore, according to the intended purpose of the present invention, it is possible to provide a boot for a universal joint that further enhances the sealing performance at the boot mounting portion and ensures sufficient sealing performance.

本発明の実施例に係る自在継手用ブーツの装着状態を示す断面図Sectional drawing which shows the mounting state of the boot for universal joints based on the Example of this invention 同自在継手用ブーツの要部拡大断面図Expanded sectional view of the main part of the universal joint boot 図2におけるA部拡大図Part A enlarged view in FIG. 比較試験中「現行形状」に係るデータを示す表図Table showing data related to "current shape" during comparative tests 比較試験中「比較形状」に係るデータを示す表図Table showing data related to "comparative shape" during comparative tests 比較試験中「実施例(発明形状)」に係るデータを示す表図Table showing data related to "Example (Invention shape)" during comparative tests 従来例に係る自在継手用ブーツを示す図であって、(A)はその装着状態を示す断面図、(B)はその要部拡大断面図It is a figure which shows the boot for universal joints which concerns on a prior art example, Comprising: (A) is sectional drawing which shows the mounting state, (B) is the principal part expanded sectional view バンドの第一例を示す正面図Front view showing the first example of a band バンドの第二例を示す図であって、(A)(B)および(C)はその締め付け作動を段階的に示す断面図、(D)はその締め付け状態を示す斜視図It is a figure which shows the 2nd example of a band, Comprising: (A) (B) and (C) are sectional drawings which show the fastening operation | movement in steps, (D) is a perspective view which shows the fastening state バンドの第三例を示す図であって、(A)はその平面図、(B)はその側面図、(C)はその締め付け途中の断面図It is a figure which shows the 3rd example of a band, (A) is the top view, (B) is the side view, (C) is sectional drawing in the middle of the tightening バンドの第四例を示す斜視図The perspective view which shows the 4th example of a band

尚、本発明には、以下の実施形態が含まれる。
(1)自在継手用ブーツは、ブーツをシャフト・外側継手部材にセットし、その後バンドで締め付けることでシール性を確保してブーツ内のグリースを封入している。バンドには様々なタイプのものが使用されているが、締め付け力が弱いタイプのものでは十分なシール性を確保できず、内部のグリースが流出する可能性がある。
(2)そこで本発明では、シャフト・外側継手部材にセットしバンド締め付けでシール性を確保する自在継手用ゴムブーツの小径側もしくは大径側のバンド締め付け部の形状に関して、下記(a)〜(c)を付与してシール性向上を狙う。
(a)バンド締め付け時のバンド装着溝とバンド間の抵抗低減、バンド締め付け時にブーツ取付部が円周上で部分的に偏ってしまうことの制御を狙い、ブーツのバンド溝に凸部を付与したもの。
(b)ブーツ内圧上昇に対するグリース流出防止を狙い、ブーツ内面リップを不等辺形状としたもの。
(c)グリース留めを狙って不等辺リップ間に溝を付与したもの。
The present invention includes the following embodiments.
(1) In the universal joint boot, the boot is set on the shaft / outer joint member, and then tightened with a band to ensure sealing performance and enclose the grease in the boot. Various types of bands are used, but those with a weak tightening force cannot secure a sufficient sealing performance, and internal grease may flow out.
(2) Therefore, in the present invention, regarding the shape of the band tightening portion on the small diameter side or large diameter side of the rubber boot for a universal joint that is set on the shaft / outer joint member and secures the sealing performance by band tightening, the following (a) to (c) ) To improve sealing performance.
(A) To reduce the resistance between the band mounting groove and the band when tightening the band, and to control that the boot mounting part is partially biased on the circumference when tightening the band, a convex portion was added to the band groove of the boot thing.
(B) The boot inner surface lip has an unequal side shape for the purpose of preventing the outflow of grease against the boot internal pressure rise.
(C) A groove provided between unequal side lips for the purpose of grease fastening.

つぎに本発明の実施例を図面にしたがって説明する。   Next, embodiments of the present invention will be described with reference to the drawings.

図1は、本発明の実施例に係る自在継手用ブーツ1の装着状態の全体断面を示し、その要部(小径側取付部3)が図2に示されている。また図3は図2のA部を更に拡大して示している。   FIG. 1 shows an overall cross-section of a mounted state of a universal joint boot 1 according to an embodiment of the present invention, and its main part (small diameter side attaching part 3) is shown in FIG. FIG. 3 further shows the portion A of FIG. 2 in an enlarged manner.

当該実施例に係る自在継手用ブーツ1は、熱可塑性エラストマーまたは所定のゴム状弾性体よりなるドライブシャフト用またはプロペラシャフト用の自在継手用ブーツであって、蛇腹形状を呈する膜部(蛇腹部)2の軸方向一方の端部にシャフト21に対する小径側取付部3が一体成形されるとともに軸方向他方の端部に外側継手部材(ジョイント)22に対する大径側取付部4が一体成形され、それぞれバンド23によって締め付け固定される。   A universal joint boot 1 according to this embodiment is a universal joint boot for a drive shaft or propeller shaft made of a thermoplastic elastomer or a predetermined rubber-like elastic body, and has a bellows-shaped membrane part (bellows part). The small-diameter side attachment portion 3 for the shaft 21 is integrally formed at one end portion in the axial direction 2 and the large-diameter side attachment portion 4 for the outer joint member (joint) 22 is integrally formed at the other end portion in the axial direction. The band 23 is fastened and fixed.

図2に拡大して示すように、小径側取付部3は、全体として円筒形を呈し、その外周面に所定の軸方向幅Wを備える環状のバンド装着溝5が設けられ、その内周面に環状のリップ6が設けられるとともに、リップ6に対応した位置のバンド装着溝5の底面に環状の凸部7が設けられている。リップ6は所定の間隔を開けて2つ設けられ、これに対応して凸部7も2つ設けられている。 As shown in an enlarged view in FIG. 2, the small-diameter side attachment portion 3 has a cylindrical shape as a whole, and is provided with an annular band mounting groove 5 having a predetermined axial width W 1 on its outer peripheral surface. An annular lip 6 is provided on the surface, and an annular projection 7 is provided on the bottom surface of the band mounting groove 5 at a position corresponding to the lip 6. Two lips 6 are provided at a predetermined interval, and two protrusions 7 are provided correspondingly.

尚、小径側取付部3の内周面には、シャフト21の周面に設けた位置決め用の環状溝24(図1参照)に係合する軸方向所定幅Wの位置決め用の環状突起8が設けられているので、リップ6はそれぞれこの断面台形を呈する環状突起8の内周面に設けられている。 In addition, on the inner peripheral surface of the small-diameter side mounting portion 3, a positioning annular protrusion 8 having a predetermined axial width W 2 that engages with a positioning annular groove 24 (see FIG. 1) provided on the peripheral surface of the shaft 21. Therefore, the lip 6 is provided on the inner peripheral surface of the annular projection 8 having a trapezoidal cross section.

凸部7の断面形状はそれぞれ、軸方向に対称な円弧形とされている。これに対しリップ6の断面形状は以下のように構成されている。   Each of the cross-sectional shapes of the convex portions 7 is a circular arc shape that is symmetrical in the axial direction. On the other hand, the cross-sectional shape of the lip 6 is configured as follows.

すなわち、図3に一層拡大して示すように、リップ6が設けられていなければ小径側取付部3の内周面(環状突起8の内周面)は、mからnへ至る直線(以下、この直線を基準面とも称する)をもって表されるところ、この基準面よりも径方向内方(図では下方)へ突出するものとしてリップ6が2つ設けられ、リップ6の断面形状はそれぞれ台形であって、更に軸方向に非対称な不等辺形状とされている。   That is, as further enlarged in FIG. 3, if the lip 6 is not provided, the inner peripheral surface of the small-diameter side mounting portion 3 (the inner peripheral surface of the annular protrusion 8) is a straight line from m to n (hereinafter, This straight line is also referred to as a reference plane). Two lips 6 are provided so as to protrude radially inward (downward in the figure) from the reference plane, and the lip 6 has a trapezoidal cross section. In addition, it has an unequal side shape that is asymmetric in the axial direction.

すなわち、リップ6はそれぞれ、ブーツ内側斜面(ブーツ内側すなわちグリース側(図では左方)からブーツ外側すなわち大気側(図では右方)へかけて内径寸法が徐々に縮小する斜面)6a、フラット面(内径寸法が一定の円筒面)6bおよびブーツ外側斜面(ブーツ内側すなわちグリース側からブーツ外側すなわち大気側へかけて内径寸法が徐々に拡大する斜面)6cの3面を一連に備える断面台形とされ、軸方向で対をなすブーツ内側斜面6aとブーツ外側斜面6cとで辺長さおよび傾斜角度が異なる不等辺形状とされ、具体的には、ブーツ内側斜面6aの辺長さをL、傾斜角度(軸直角平面に対する傾斜角度)をθ、ブーツ外側斜面6cの辺長さをL、傾斜角度(軸直角平面に対する傾斜角度)をθとして、
<Lかつθ<θ
を充足するように形成されている。
That is, each of the lips 6 has a boot inner slope (a slope whose inner diameter is gradually reduced from the boot inner side, that is, the grease side (left side in the figure) to the boot outer side, that is, the atmospheric side (right side in the figure)) 6a, a flat surface. (Cylinder surface having a constant inner diameter dimension) 6b and a boot outer slope (a slope whose inner diameter dimension gradually increases from the boot inner side, that is, the grease side to the boot outer side, the atmosphere side) 6c is a trapezoidal cross section. The boot inner slope 6a and the boot outer slope 6c, which are paired in the axial direction, have an unequal side shape with different side lengths and inclination angles. Specifically, the side length of the boot inner slope 6a is L 1 , and the slope is inclined. The angle (inclination angle with respect to the plane perpendicular to the axis) is θ 1 , the side length of the boot outer slope 6 c is L 2 , and the inclination angle (inclination angle with respect to the axis perpendicular to the axis) is θ 2 .
L 1 <L 2 and θ 12
It is formed to satisfy.

また、図2に示したようにリップ6はそれぞれ、その外周側に設けられた凸部7と軸方向同位置に配置され、リップ6のフラット面6bの軸方向中央線(センターライン)6dは凸部7の軸方向中央線(センターライン)7dと合致せしめられ、リップ6全体の軸方向幅W(図3参照)は凸部7の軸方向幅W(図2参照)よりも少々小さく設定されている。 Further, as shown in FIG. 2, each of the lips 6 is disposed at the same position in the axial direction as the convex portion 7 provided on the outer peripheral side thereof, and the axial center line (center line) 6d of the flat surface 6b of the lip 6 is The axial width W 3 (see FIG. 3) of the whole lip 6 is made to coincide with the axial center line (center line) 7d of the convex portion 7, and the axial width W 4 (see FIG. 2) of the convex portion 7 is slightly smaller. It is set small.

また、図3に示したように2つのリップ6の間には、上記基準面よりも径方向外方(図では上方)へ凹設された環状の溝部9が設けられており、その断面形状は特に限定されないものの、図では、ブーツ内側の第一リップ6のブーツ外側斜面6cからの延長をなす断面直線状の斜面9aと、フラット面9bと、断面円弧状をなしてフラット面9bとブーツ外側の第二リップ6のブーツ内側斜面6aとを結ぶ曲面9cとによって形成されている。   As shown in FIG. 3, an annular groove 9 is provided between the two lips 6 so as to be recessed radially outward (upward in the drawing) from the reference surface. Is not particularly limited, but in the figure, the first lip 6 inside the boot extends from the boot outer slope 6c, the slope 9a has a linear cross section, a flat face 9b, and the flat face 9b and the boot have an arcuate cross section. It is formed by a curved surface 9c connecting the boot inner slope 6a of the second outer lip 6.

つぎに、上記実施例に係る自在継手用ブーツ1の面圧ピーク値に関する比較試験を行なったので、その内容および結果を説明すると、以下のとおりである。比較例としては、図4に示す「現行形状」および図5に示す「比較形状」の2つとし、図6に上記の「実施例(発明形状)」を示す。   Next, since the comparative test regarding the surface pressure peak value of the universal joint boot 1 according to the above embodiment was performed, the contents and results thereof will be described as follows. As a comparative example, there are two “current shape” shown in FIG. 4 and “comparative shape” shown in FIG. 5, and FIG. 6 shows the above “example (invention shape)”.

「現行形状」:凸部無し、等辺形状のリップ有り、リップ間の溝部無し
θ=θ=45度
“Current shape”: No convex part, equilateral lip, no groove between lips
θ 1 = θ 2 = 45 degrees

「比較形状」:断面円弧形の凸部有り、等辺形状のリップ有り、リップ間の溝部有り
θ=θ=45度
“Comparison shape”: Convex part with arc-shaped cross section, equilateral lip, groove between lips
θ 1 = θ 2 = 45 degrees

「実施例(発明形状)」:断面円弧形の凸部有り、不等辺形状のリップ有り、リップ間の溝部有り
θ=15度、θ=60度
“Example (Invention shape)”: Convex with arc-shaped cross section, unequal side lip, groove between lips
θ 1 = 15 degrees, θ 2 = 60 degrees

上記3形状共に、リップ高さ、フラット部の軸方向幅、基準面の内径寸法、基準面およびバンド装着溝底面間の厚みは同一寸法である。また、比較形状と実施例における凸部高さと溝部深さは同一寸法である。   In all the three shapes, the lip height, the axial width of the flat portion, the inner diameter of the reference surface, and the thickness between the reference surface and the bottom surface of the band mounting groove are the same. Further, the height of the projection and the depth of the groove in the comparative shape and the example are the same dimensions.

比較試験の結果は、各図「FEM解析結果」の「面圧分布」および「面圧ピーク比」に示すとおり、「現行形状」の面圧ピーク値を「1.0」として、「比較形状」の面圧ピーク値は「1.19」、「実施例(発明形状)」の面圧ピーク値は「1.52」となり、本発明に係る「不等辺リップ」の有効性を確認することができた。また「実施例(発明形状)」においては、「面圧分布」のグラフ図に示されるように面圧ピークがグリース側(図では左方)に偏って発生しており、よってシール効果が一層高いものである。   The results of the comparative test are as follows. As shown in the “surface pressure distribution” and “surface pressure peak ratio” in each figure “FEM analysis result”, the surface pressure peak value of “current shape” is set to “1.0”, and “comparison shape” The surface pressure peak value of “1.19” and the surface pressure peak value of “Example (invention shape)” are “1.52”, confirming the effectiveness of the “unequal-side lip” according to the present invention. I was able to. In the “Example (Invention shape)”, as shown in the graph of “Surface pressure distribution”, the surface pressure peak is biased toward the grease side (left side in the figure), so that the sealing effect is further enhanced. It is expensive.

1 自在継手用ブーツ
2 膜部
3 小径側取付部
4 大径側取付部
5 バンド装着溝
6 リップ
6a ブーツ内側斜面
6b,9b フラット面
6c ブーツ外側斜面
6d,7d 軸方向中央線
7 凸部
8 環状突起
9 溝部
9a 斜面
9c 曲面
21 シャフト
22 外側継手部材
23 バンド
24 環状溝
DESCRIPTION OF SYMBOLS 1 Boot for universal joints 2 Film | membrane part 3 Small diameter side attaching part 4 Large diameter side attaching part 5 Band mounting groove 6 Lip 6a Boot inner slope 6b, 9b Flat surface 6c Boot outer slope 6d, 7d Axial center line 7 Convex part 8 Annular Projection 9 Groove 9a Slope 9c Curved surface 21 Shaft 22 Outer joint member 23 Band 24 Annular groove

Claims (5)

蛇腹形状の膜部の端部にシャフトまたは外側継手部材に対する取付部を有するとともに前記取付部の外周面にバンド装着溝を有する自在継手用ブーツにおいて、
前記取付部の内周面に前記シャフトまたは外側継手部材に対するシール面圧を発生させるリップを設けるとともに前記バンド装着溝の底面に凸部を設け、前記リップの断面形状を不等辺形状とし、
前記リップは複数設けられてリップ間に溝部が設けられ、
前記溝部は、前記取付部の内周面のうちの前記リップを設けた面であってシャフトの軸方向に対し平行な向きの断面直線状の面よりも径方向外方へ凹設されるとともに、ブーツ内側の第一リップのブーツ外側斜面からの延長をなす断面直線状の斜面を溝部内面の一部として有することを特徴とする自在継手用ブーツ。
In the universal joint boot having an attachment portion for the shaft or the outer joint member at the end of the bellows-shaped membrane portion and having a band mounting groove on the outer peripheral surface of the attachment portion,
A lip that generates a seal surface pressure against the shaft or the outer joint member is provided on the inner peripheral surface of the mounting portion, and a convex portion is provided on the bottom surface of the band mounting groove, and the cross-sectional shape of the lip is an unequal side shape,
A plurality of the lips are provided, and a groove is provided between the lips.
The groove portion is a surface provided with the lip in the inner peripheral surface of the mounting portion, and is recessed radially outward from a surface having a straight section in a direction parallel to the axial direction of the shaft. , boot for a universal joint, characterized in that it has a cross-section linear slope which forms an extension of the boot outer inclined surface of the first lip of the inner boot as part of the groove inner surface.
前記溝部は、前記斜面のほかに、前記斜面から連続するフラット面と、断面円弧状をなして前記フラット面とブーツ外側の第二リップのブーツ内側斜面とを結ぶ曲面とを有することを特徴とする、請求項1記載の自在継手用ブーツ。 In addition to the inclined surface, the groove portion has a flat surface continuous from the inclined surface, and a curved surface connecting the flat surface and the boot inner inclined surface of the second lip outside the boot in a circular arc shape. The boot for a universal joint according to claim 1. 前記リップと前記凸部は、断面形状において対応した位置に設けられることを特徴とする、請求項1または2に記載の自在継手用ブーツ。   The universal joint boot according to claim 1, wherein the lip and the convex portion are provided at corresponding positions in a cross-sectional shape. 軸方向の変位を許容しながら回転力を伝達することができるしゅう動型等速自在継手に使用される、請求項1から3いずれかに記載の自在継手用ブーツ。   The universal joint boot according to any one of claims 1 to 3, wherein the boot is used for a sliding type constant velocity universal joint capable of transmitting a rotational force while allowing an axial displacement. 自動車の駆動力を車輪に伝達するためのドライブシャフトの構成部品である等速自在継手に使用される、請求項1から4いずれかに記載の自在継手用ブーツ。   The universal joint boot according to any one of claims 1 to 4, which is used for a constant velocity universal joint that is a component part of a drive shaft for transmitting a driving force of an automobile to a wheel.
JP2009175241A 2009-07-28 2009-07-28 Universal joint boots Expired - Fee Related JP5534733B2 (en)

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