JPS5852841B2 - vehicle rims - Google Patents

vehicle rims

Info

Publication number
JPS5852841B2
JPS5852841B2 JP50097230A JP9723075A JPS5852841B2 JP S5852841 B2 JPS5852841 B2 JP S5852841B2 JP 50097230 A JP50097230 A JP 50097230A JP 9723075 A JP9723075 A JP 9723075A JP S5852841 B2 JPS5852841 B2 JP S5852841B2
Authority
JP
Japan
Prior art keywords
rim
cross
tire
wheel
wheel flange
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
JP50097230A
Other languages
Japanese (ja)
Other versions
JPS5142201A (en
Inventor
パクール ヘンリク
テイーマン ラインハルト
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.)
KONCHINENTARU GUMI UERUKE AG
Original Assignee
KONCHINENTARU GUMI UERUKE AG
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 KONCHINENTARU GUMI UERUKE AG filed Critical KONCHINENTARU GUMI UERUKE AG
Publication of JPS5142201A publication Critical patent/JPS5142201A/en
Publication of JPS5852841B2 publication Critical patent/JPS5852841B2/en
Expired legal-status Critical Current

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60BVEHICLE WHEELS; CASTORS; AXLES FOR WHEELS OR CASTORS; INCREASING WHEEL ADHESION
    • B60B21/00Rims
    • B60B21/10Rims characterised by the form of tyre-seat or flange, e.g. corrugated
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60CVEHICLE TYRES; TYRE INFLATION; TYRE CHANGING; CONNECTING VALVES TO INFLATABLE ELASTIC BODIES IN GENERAL; DEVICES OR ARRANGEMENTS RELATED TO TYRES
    • B60C15/00Tyre beads, e.g. ply turn-up or overlap
    • B60C15/02Seating or securing beads on rims

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Tires In General (AREA)

Description

【発明の詳細な説明】 本発明は、耐引張性ワイヤーリングで補強されたビード
が外側のホイールフランジによって限界を定められた載
置面でリムの外側ジャケット上に支承された、空気タイ
ヤを有する車両用リムに関する。
DETAILED DESCRIPTION OF THE INVENTION The invention comprises a pneumatic tire in which a bead reinforced with a tension-resistant wire ring is supported on the outer jacket of the rim with a bearing surface delimited by the outer wheel flange. Regarding vehicle rims.

本発明の使用範囲が専ら高速運転自動車、スポーツ・カ
ーおよびレーシング・カーにとって益々使用されている
ような比較的平坦な空気タイヤへの応用に決して限られ
てはいないけれども、一定の有利な用途がある。
Although the scope of use of the present invention is in no way limited to applications in relatively flat pneumatic tires, such as those increasingly used for high-speed automobiles, sports cars, and racing cars, certain advantageous applications may be found. be.

これら空気タイヤの秀れた運転特性は、これらタイヤを
して特に高速度に適当なものにさせるが、しかし他方で
は平坦な断面形に基づく貧弱な弾性作用は、欠陥として
、上記長所を相殺する。
The excellent driving properties of these pneumatic tires make them particularly suitable for high speeds, but on the other hand the poor elastic behavior due to the flat cross-section offsets the above advantages as a drawback. .

本発明の根本課題は、空気タイヤの弾性作用によって測
定される乗心地を改良すると同時にまっすぐな運行に必
要なリム上のタイヤの正確な着座を保証するにある。
The fundamental problem of the invention is to improve the riding comfort as measured by the elastic action of a pneumatic tire while at the same time ensuring the correct seating of the tire on the rim, which is necessary for straight running.

本発明は上記課題を空気タイヤ付の車輛ホイールにとっ
て一般にタイヤの断面に無関係に処理させ従って任意の
断面形状のタイヤへも使用できるものである。
The present invention solves the above-mentioned problem for vehicle wheels with pneumatic tires, regardless of the cross section of the tire, and therefore can be used for tires of any cross-sectional shape.

本発明によると上述の種類の自動車ホイールは、ホイー
ルフランジが軸方向断面で見て二つの直線部分に区分さ
れていて、半径方向外側の部分が直径平面に対して半径
方向内側の部分より遥かに大きい角度βを成して傾斜し
ており、二つの部分の間の屈曲点がワイヤーリングの中
心横断面とはゾ同じ直径の延長上にあることを特徴とす
る程度を異にして配向せる画部分の間の移行屈曲部は、
コア・リングの断面中心とほぼ一致する直径上にあるの
が好しく、上記外側部分の該直径平面に対する傾斜角が
40°と70°との間、好しくは45゜の大きさのオー
ダに、これに反して上記内側部分では5°と200との
間、好しくは15°の大きさのオーダにすることができ
る。
According to the invention, a motor vehicle wheel of the above-mentioned type is provided, in which the wheel flange is divided into two straight sections in axial section, the radially outer section being much wider than the radially inner section with respect to the diametric plane. The differently oriented drawings are inclined at a large angle β and are characterized in that the bending point between the two parts lies on an extension of the same diameter as the central cross-section of the wire ring. The transition bend between the parts is
Preferably, it lies on a diameter substantially coinciding with the cross-sectional center of the core ring, and the angle of inclination of said outer portion with respect to said diametric plane is between 40° and 70°, preferably of the order of magnitude of 45°. , whereas in the inner part it can be of the order of magnitude between 5° and 200°, preferably 15°.

このように構成せる傾斜断面形状からして、本発明の重
要な部分特徴による上記ホイール・フランジの最大直径
はコア・リングの外径に従った大きさのオーダで調整せ
ねばならない。
Due to the inclined cross-sectional shape constructed in this way, the maximum diameter of the wheel flange according to an important feature of the invention must be adjusted on the order of magnitude according to the outer diameter of the core ring.

本発明は、タイヤを直接外側によって支持するホイール
・リムの縁部分に新しい様式の形状を導入し、このため
ホイールが転動する場合空気タイヤとホイール・リムと
の間の動力学的繰返えし運動をする際運転挙動への著し
い反作用が発生する。
The invention introduces a new style of geometry in the edge section of the wheel rim that supports the tire directly on the outside, so that when the wheel rolls, the dynamic repetition between the pneumatic tire and the wheel rim is reduced. Significant reactions to the driving behavior occur when driving.

顕著な屈曲部を自体直線状の両部分の方向経路内に有す
るホイール・フランジの断面に角度をつけたかまたは湾
曲させた形状は、作動上の再分割をもたらすことになり
、そのためコア・リングの位置と断面形状へのホイール
・フランジの特定の調和が重要となる。
An angled or curved cross-sectional shape of the wheel flange with significant bends in the directional path of both parts, which are themselves straight, will result in an operational subdivision, so that the core ring The specific matching of the wheel flange to its location and cross-sectional shape is important.

上記直径平面に対して比較的小さな傾斜角をなして延長
する急な内側部分は、タイヤ・ビードにとって有効な停
止部を構成する。
The steep inner portion extending at a relatively small angle of inclination to the diametrical plane constitutes an effective stop for the tire bead.

このホイール・フランジの方向変換がなおコア・リング
の断面の内側にある高さ、好ましくはこのリング断面の
中間部分でなされるから、この内側部分の少くとも最大
部分は、軸芯方向に投影してコア・リングと一致する。
Since this change in direction of the wheel flange is still carried out at a height which is inside the cross-section of the core ring, preferably at the middle part of this ring cross-section, at least the largest part of this inside part is projected in the axial direction. and match the core ring.

この結果ホイール・フランジの上記部分にビードを設け
ることができ従って直つすぐな運行にとって重要なタイ
ヤのリム上での正確な着座を確実にする。
As a result, said portion of the wheel flange can be provided with a bead, thus ensuring correct seating of the tire on the rim, which is important for straight running.

他方では、はぼ平坦な方向経過のもとに湾曲せるホイー
ル・フランジの外側部分は、著しい半径方向の弾性運動
に対する載置面と支持面を、ビードに直接続いている空
気タイヤの縁部分に提供する。
On the other hand, the outer part of the wheel flange, which curves with a nearly flat directional course, provides a resting surface and a support surface for significant radial elastic movements to the edge part of the pneumatic tire directly following the bead. provide.

例えば高速タイヤの平坦な断面形状に外側のホイール・
フランジの比較的大きい傾斜角が始めから広汎に適して
いる。
For example, the flat cross-sectional shape of a high-speed tire
A relatively large angle of inclination of the flange is initially suitable for a wide range of applications.

その上しかもこの傾斜角は、従来の断面形状を有する空
気タイヤにも側壁の顕著な変形を可能にし、リム上のビ
ードの固定し加圧せる着座を欠かさず、これらタイヤの
変形は、ホイール・フランジの湾曲せる外側部分に絶え
ず当接させることによって穏やかに捕捉させる。
Moreover, this angle of inclination allows for significant deformation of the sidewall even in pneumatic tires with conventional cross-sectional shapes, requiring a fixed and pressurized seating of the bead on the rim, and these tire deformations are Gentle capture is achieved by constant contact with the curved outer portion of the flange.

上記両部分を傾斜させて延長させた結果としてこのホイ
ールフランジの完全に低い高さは、タイヤ組立を簡単化
しようとする努力に報い、更に空気タイヤの着脱は、外
方に向って円錐形状に先広がりになるホイール・リムの
外周面上でのビードの載置面をホイール軸に対して10
と20°との間好しくはほぼ15°の大きさのオーダヘ
一定角度で傾斜させる場合、一層簡単にならしめること
になる。
The completely low height of this wheel flange, as a result of the sloping extension of both parts, rewards efforts to simplify tire assembly, and furthermore, the mounting and dismounting of pneumatic tires is facilitated by the outwardly conical shape of the wheel flange. The mounting surface of the bead on the outer circumferential surface of the wheel rim that widens toward the front is 10 mm with respect to the wheel axis.
It is even easier if the angle of inclination is of the order of magnitude between and 20[deg.] and preferably approximately 15[deg.].

添附図面に掲げた実施例を参照して本発明を説明する。The invention will now be described with reference to embodiments illustrated in the accompanying drawings.

図示せるこの車輛ホイールは、ホイール本体のリム3上
へ取りつけた空気タイヤ2を含み、このタイヤは、図示
のようにチューブレス・タイヤとして設計することがで
きる。
The vehicle wheel shown includes a pneumatic tire 2 mounted on a rim 3 of the wheel body, which tire can be designed as a tubeless tire as shown.

しかし本発明を上記に限定することなく、補助的に挿入
したチューブを有する空気タイヤへも同一の働らきをさ
せて使用できるものである。
However, the present invention is not limited to the above, but can also be used in pneumatic tires having an auxiliary inserted tube with the same function.

同様に、空気タイヤのまたはホイール本体の構造と形状
から諸種の限定を設けるものでもない。
Similarly, there are no limitations imposed by the structure and shape of the pneumatic tire or wheel body.

埋め込んだ耐牽引力コア・リング4で補強せるタイヤビ
ード21は、リムの外側縁部分31にありまた、内部空
気圧の作用を受けてこの縁部分に固定させ、従って軸方
向に見て外側に引き続いたホイール・フランジへ押圧さ
せる。
The tire bead 21, which can be reinforced by an embedded traction-resistant core ring 4, is located on the outer edge part 31 of the rim and is fixed to this edge part under the action of internal air pressure, so that it continues outwardly when viewed in the axial direction. Press it against the wheel flange.

上記ホイール・フランジは、直径平面に対して第1傾斜
角α以下にして配向させた内側部分32および第2傾斜
β以下に配向せる外側部分33から構成させ、その角度
の大きさはα=15°およびβ=55°と考えてよい。
The wheel flange comprises an inner portion 32 oriented at a first inclination angle α or less with respect to the diametrical plane and an outer portion 33 oriented at a second inclination β or less, the angular magnitude of which is α=15. It may be considered that ° and β = 55°.

両部分32.33の各種の角度経過は、このホイール−
フランジを湾曲せる断面形状にさせる。
The various angular profiles of the two parts 32, 33 are similar to that of this wheel.
The flange has a curved cross-sectional shape.

求めている働らきをさせるためにコア・リング4の中心
直径dmと一致する高さへの移行屈曲部の設置と、コア
・リングの外径daへのこのホイール・フランジの最大
直径の限定が重要である。
In order to achieve the desired function, it is necessary to install the transition bend at a height that corresponds to the center diameter dm of the core ring 4 and to limit the maximum diameter of this wheel flange to the outer diameter da of the core ring. is important.

タイヤ・ビード21を支持するリムの縁部分31が15
°の大きさのオーダの傾斜角にして延長するのが好しい
The edge portion 31 of the rim supporting the tire bead 21 is 15
Preferably, the extension is at an angle of inclination of the order of magnitude.

【図面の簡単な説明】[Brief explanation of drawings]

添附せる唯1つの図面は、本発明の好しい車輛ホイール
の実施例の断面にした部分図を示す。 4:コイル・リング、21:タイヤ・ビード、31:縁
部分、32:内側部分、33:外側部分。
The only accompanying drawing shows a partial sectional view of a preferred embodiment of a vehicle wheel of the invention. 4: Coil ring, 21: Tire bead, 31: Edge portion, 32: Inside portion, 33: Outside portion.

Claims (1)

【特許請求の範囲】[Claims] 1 耐引張性ワイヤーリングで補強されたビードが外側
のホイールフランジによって限界を定められた載置面で
リムの外側ジャケット上に支承された、空気タイヤを有
する車両用リムにおいて、ホイールフランジが軸方向断
面で見て二つの直線部分に区分されていて、半径方向外
側の部分33が直径平面に対して半径方向内側の部分3
2より遥かに大きい角度βを成して傾斜しており、二つ
の部分の間の屈曲点がワイヤーリング4の中心横断面と
はゾ同じ直径上にあることを特徴とする車両用リム。
1. Rims for vehicles with pneumatic tires, in which a bead reinforced with a tension-resistant wire ring is supported on the outer jacket of the rim with a bearing surface delimited by the outer wheel flange, the wheel flange being axially It is divided into two straight parts in cross section, the radially outer part 33 being the radially inner part 3 with respect to the diametric plane.
A rim for a vehicle, characterized in that it is inclined at an angle β much greater than 2, and that the bending point between the two parts is on the same diameter as the central cross-section of the wire ring 4.
JP50097230A 1974-08-12 1975-08-12 vehicle rims Expired JPS5852841B2 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE19742438632 DE2438632B2 (en) 1974-08-12 1974-08-12 VEHICLE WHEEL RIM WITH A PNEUMATIC TIRE

Publications (2)

Publication Number Publication Date
JPS5142201A JPS5142201A (en) 1976-04-09
JPS5852841B2 true JPS5852841B2 (en) 1983-11-25

Family

ID=5922992

Family Applications (1)

Application Number Title Priority Date Filing Date
JP50097230A Expired JPS5852841B2 (en) 1974-08-12 1975-08-12 vehicle rims

Country Status (7)

Country Link
JP (1) JPS5852841B2 (en)
AT (1) AT340784B (en)
DE (1) DE2438632B2 (en)
FR (1) FR2281846A1 (en)
GB (1) GB1513780A (en)
IT (1) IT1041811B (en)
SE (1) SE424061B (en)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2602056C2 (en) * 1976-01-21 1983-04-28 Continental Gummi-Werke Ag, 3000 Hannover Vehicle wheel with a pneumatic tire
JPS52132507U (en) * 1976-04-05 1977-10-07
DE2659764A1 (en) * 1976-12-29 1978-07-06 Kronprinz Ag Vehicle wheel with shallow profile rim - has hub welded to rim which is finish formed after tyre fitting
DE2714363A1 (en) * 1977-03-31 1978-10-05 Continental Gummi Werke Ag VEHICLE WHEEL WITH A PNEUMATIC TIRE
DE2831698C2 (en) * 1978-07-19 1983-12-22 Continental Gummi-Werke Ag, 3000 Hannover Vehicle wheel rim with a pneumatic tire
JP2720366B2 (en) * 1991-07-12 1998-03-04 敏 木村 Method for manufacturing single-layer fiberboard
FR2743530B1 (en) * 1996-01-15 1998-02-13 Michelin & Cie TIRE-RIM ASSEMBLY FOR HEAVY-DUTY VEHICLE

Also Published As

Publication number Publication date
ATA592775A (en) 1977-04-15
AT340784B (en) 1978-01-10
SE7508918L (en) 1976-02-13
DE2438632B2 (en) 1977-08-11
FR2281846B1 (en) 1980-10-17
FR2281846A1 (en) 1976-03-12
JPS5142201A (en) 1976-04-09
SE424061B (en) 1982-06-28
IT1041811B (en) 1980-01-10
DE2438632A1 (en) 1976-03-11
GB1513780A (en) 1978-06-07

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