JP2009274392A - Molding drum of tire member - Google Patents

Molding drum of tire member Download PDF

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Publication number
JP2009274392A
JP2009274392A JP2008129924A JP2008129924A JP2009274392A JP 2009274392 A JP2009274392 A JP 2009274392A JP 2008129924 A JP2008129924 A JP 2008129924A JP 2008129924 A JP2008129924 A JP 2008129924A JP 2009274392 A JP2009274392 A JP 2009274392A
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drum
segment
segment piece
piece
main
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JP4510907B2 (en
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Hiroyuki Onimatsu
博幸 鬼松
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Sumitomo Rubber Industries Ltd
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Sumitomo Rubber Industries Ltd
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Priority to JP2008129924A priority Critical patent/JP4510907B2/en
Priority to CN2009101352558A priority patent/CN101579930B/en
Publication of JP2009274392A publication Critical patent/JP2009274392A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D30/00Producing pneumatic or solid tyres or parts thereof
    • B29D30/06Pneumatic tyres or parts thereof (e.g. produced by casting, moulding, compression moulding, injection moulding, centrifugal casting)
    • B29D30/08Building tyres
    • B29D30/20Building tyres by the flat-tyre method, i.e. building on cylindrical drums
    • B29D30/24Drums
    • B29D30/26Accessories or details, e.g. membranes, transfer rings
    • B29D2030/2657Radially expandable and contractable drum comprising a set of circumferentially arranged rigid elements, e.g. fingers or arms

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  • Tyre Moulding (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a molding drum of a tire member which can keep circularity even when expanding/contracting the diameter of segments. <P>SOLUTION: This molding drum 1 of a tire member is for molding a ring-shaped tire member by winding a tire material around the outer peripheral surface O of a nearly cylindrical drum, and comprises a rotatably supported center shaft, a plurality of segments 7 arranged around the center shaft and constituting the outer peripheral surface of the drum and a segment moving means for expansively/contractively moving the segments 7 in the radial direction of the drum. Each segment 7 comprises a main segment piece 8 moving in the radial direction of the drum by the segment moving means, and inflective segment pieces 9 pivoted like a cantilever at one side edge 8a in the circumferential direction of the main segment piece 8 and inflectively around the axial line along the drum shaft direction. The end part of free end 9f side of each inflective segment piece 9 is loaded on the outer surface of the main segment piece 8 of another segment adjacent at the free end side, and an energizing means 10 for energizing the inflective segment piece 9 to the radially inner direction of the drum is provided. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、トレッドゴム、インナーライナー及び/又はサイドウォールゴムなどのリング状のタイヤ部材を精度良く成形するのに役立つ成形ドラムに関する。   The present invention relates to a molding drum useful for accurately molding a ring-shaped tire member such as a tread rubber, an inner liner and / or a sidewall rubber.

例えば、図6に示されるように、略円筒状のドラム外周面Oを具え、そこに空気入りタイヤのベルトプライ又はバンドプライ等の帯状のタイヤ材料を巻回して、リング状のトレッド補強層B(タイヤ部材)を成形する成形ドラムa1が知られている(例えば、特許文献1参照)。   For example, as shown in FIG. 6, a substantially cylindrical drum outer peripheral surface O is provided, and a belt-shaped tire material such as a belt ply or a band ply of a pneumatic tire is wound around the drum-shaped tread reinforcing layer B. A molding drum a1 for molding (tire member) is known (see, for example, Patent Document 1).

また近年では、前記成形ドラムa1上に、未加硫のリボン状のゴムストリップsを、周方向に螺旋状に巻き重ねてトレッドゴムやインナーライナー、サイドウォールゴム、さらにはチェーファーゴムを成形すること(以下、このような工程を「ストリップワインド工程」と呼ぶことがある。)も行われている。このストリップワインド工程では、ゴムストリップsの一端が成形ドラムa1上(又はトレッド補強層B上)に固着され、その後、成形ドラムa1を回転させるとともにゴムストリップsの軸方向の位置を変えながら所定の断面形状のタイヤ部材(ゴム部材)が成形される。なお、ゴムストリップsは、成形ドラムa1側に軽く付勢されたローラrによって押圧される。   In recent years, a tread rubber, an inner liner, a sidewall rubber, and further a chafer rubber are formed by winding an unvulcanized ribbon-like rubber strip s on the forming drum a1 in a spiral manner in the circumferential direction. (Hereinafter, such a process may be referred to as a “strip wind process”). In this strip winding process, one end of the rubber strip s is fixed on the molding drum a1 (or on the tread reinforcing layer B), and then the molding drum a1 is rotated and a predetermined position is changed while changing the axial position of the rubber strip s. A tire member (rubber member) having a cross-sectional shape is formed. The rubber strip s is pressed by a roller r that is lightly biased toward the molding drum a1.

また、一般的な成形ドラムの構造としては、例えば図7に示されるように、該成形ドラムa1の中心軸fからドラム半径方向に放射状にのびる複数のアームbと、該アームbに固着されるとともに周方向に並ぶことにより略円筒状のドラム外周面Oを形成する均等割りされた複数個の弓形のセグメントcとが設けられる。このような成形ドラムa1は、外径d1の状態では、セグメントcが周方向に隙間無く連続するので真円度の高いタイヤ部材を精度良く成形できる。   As a general forming drum structure, for example, as shown in FIG. 7, a plurality of arms b extending radially from the central axis f of the forming drum a1 in the drum radial direction, and fixed to the arms b. In addition, a plurality of equally-divided arcuate segments c forming a substantially cylindrical drum outer peripheral surface O are provided by being arranged in the circumferential direction. In such a forming drum a1, in the state of the outer diameter d1, the segment c is continuous without a gap in the circumferential direction, so that a tire member having a high roundness can be accurately formed.

しかしながら、アームbを伸長して前記外径d1よりも大きい外径d2又はd3とした場合、隣り合うセグメントc、c間に隙間gが生じ、十分な真円度が確保できない。このため、このような成形ドラムa1では、複数の内径を有するタイヤ部材を精度良く成形できないという問題がある。特に、成形ドラム上に直接ゴムストリップを巻き付ける場合、成形ドラムの真円度が低いと、貼付位置がずれ易くなるなど、前記問題が顕著になる。   However, when the arm b is extended to have an outer diameter d2 or d3 larger than the outer diameter d1, a gap g is generated between the adjacent segments c and c, and sufficient roundness cannot be ensured. For this reason, in such a forming drum a1, there exists a problem that the tire member which has several internal diameter cannot be shape | molded accurately. In particular, when the rubber strip is wound directly on the molding drum, the above-described problem becomes remarkable, for example, when the roundness of the molding drum is low, the sticking position is easily shifted.

上記問題を解決するために、例えば図8に示されるような成形ドラムa2が提案されている。該成形ドラムa2は、セグメントcとして、周方向長さが大きい第1のセグメントc1と、周方向長さが小さい第2のセグメントc2とを含み、これらが周方向に交互に設けられている。このような成形ドラムa2では、図8において下側に示されるように、第1のセグメントc1のみを周方向に連ねて外径d1の小径状態が得られる一方、図8において上側に示されるように、第1及び第2のセグメントc1、c2を交互に連ねて外径d2の拡径状態を得ることができる。いずれの状態でもセグメント間の隙間を比較的小さくできる。従って、この成形ドラムa2では、内径が異なる2種類のタイヤ部材を成形することが可能になる。   In order to solve the above problem, for example, a forming drum a2 as shown in FIG. 8 has been proposed. The forming drum a2 includes, as the segment c, a first segment c1 having a large circumferential length and a second segment c2 having a small circumferential length, and these are alternately provided in the circumferential direction. In such a forming drum a2, as shown on the lower side in FIG. 8, only the first segment c1 is connected in the circumferential direction to obtain a small diameter state of the outer diameter d1, whereas on the upper side in FIG. In addition, the first and second segments c1 and c2 can be alternately connected to obtain an expanded state of the outer diameter d2. In any state, the gap between the segments can be made relatively small. Therefore, with this molding drum a2, two types of tire members having different inner diameters can be molded.

特開平6−344465号公報JP-A-6-344465

しかしながら、前記成形ドラムa2においても、小さいながらもセグメント間に隙間が生じるため、改善の余地があった。   However, the molding drum a2 also has room for improvement because it is small but has a gap between the segments.

また、第1のセグメントc1のみを用いて外径d1の小径状態を得た場合、ドラム外周面Oの分割数が拡径状態のときの半分に減り、その真円度が低下してトレッド補強層Bの成形精度を悪化させるおそれがある。特に、このような真円度の低い小径状態では、ストリップワインド工程において、ゴムストリップsを押圧するローラrが成形ドラムの凹凸によって頻繁に上下に飛び跳ね、十分にゴムストリップを押圧できないなど、ゴム部材の成形精度を悪化させるおそれもあった。   Further, when the small diameter state of the outer diameter d1 is obtained by using only the first segment c1, the number of divisions of the drum outer peripheral surface O is reduced to half that in the expanded diameter state, and the roundness is decreased and tread reinforcement is performed. There is a possibility that the forming accuracy of the layer B may be deteriorated. In particular, in such a small diameter state with a low roundness, the rubber member in which the roller r that presses the rubber strip s frequently jumps up and down due to the unevenness of the molding drum in the strip winding process, and the rubber strip cannot be pressed sufficiently. There was also a possibility of deteriorating the molding accuracy.

本発明は、以上のような実状に鑑み案出されたもので、各セグメントを、セグメント移動手段によって拡縮移動する主セグメント片と、該主セグメント片のドラム周方向の一方側の側縁に片持ち状かつドラム軸方向に沿った軸線回りで屈曲可能に枢着された屈曲セグメント片とを含んで構成し、しかも各屈曲セグメント片の自由端側の端部分を隣り合う主セグメント片の外面に載置させるとともに、該屈曲セグメント片をドラム半径方向内側へ付勢する付勢手段を設けることを基本として、径を異ならせてもセグメント間の隙間が生じるのを防ぎ、真円度を高く維持して複数種類の径を有するトレッド補強層、サイドウォールゴム、インナーライナーゴム又はチェーファーゴムといったタイヤ部材を精度良く成形するのに役立つ成形ドラムを提供することを主たる目的としている。   The present invention has been devised in view of the actual situation as described above, and each segment is divided into a main segment piece that is expanded and contracted by the segment moving means, and one side edge of the main segment piece in the drum circumferential direction. And a bent segment piece pivotally attached to bendable about an axis along the drum axis direction, and an end portion of each bent segment piece on the outer surface of the adjacent main segment piece. In addition to placing the bent segment piece on the inside of the drum in the radial direction of the drum, it prevents the gap between segments from occurring even if the diameter is different, and maintains high roundness. A molding drum useful for accurately molding tire members such as tread reinforcement layers, sidewall rubber, inner liner rubber or chafer rubber having multiple types of diameters It has been the main purpose of providing.

本発明のうち請求項1記載の発明は、略円筒状のドラム外周面にタイヤの材料を巻回してリング状のタイヤ部材を成形するタイヤ部材の成形ドラムであって、回転可能に支持された中心軸と、前記中心軸の周りに並べられて前記ドラム外周面を構成する複数のセグメントと、前記セグメントを前記中心軸に対してドラム半径方向に拡縮移動させるセグメント移動手段とを含み、前記各セグメントは、前記セグメント移動手段によってドラム半径方向に移動する主セグメント片と、該主セグメント片のドラム周方向の一方側の側縁に片持ち状かつドラム軸方向に沿った軸線回りで屈曲可能に枢着された屈曲セグメント片とを含み、かつ前記各屈曲セグメント片の自由端側の端部分は、該自由端側で隣り合う主セグメント片の外面に重なりを有して載置されるとともに、該屈曲セグメント片をドラム半径方向内側へ付勢する付勢手段を設けたことを特徴とする。   The invention according to claim 1 of the present invention is a tire drum for forming a ring-shaped tire member by winding a tire material around a substantially cylindrical drum outer peripheral surface, and is rotatably supported. A central axis, a plurality of segments arranged around the central axis and constituting the outer peripheral surface of the drum, and segment moving means for expanding and contracting the segments in the radial direction of the drum with respect to the central axis, The segment is bendable around a main segment piece that moves in the drum radial direction by the segment moving means, and an axial line that extends along the drum axis in a cantilevered side edge of the main segment piece in the drum circumferential direction. End portions on the free end side of each of the bent segment pieces are overlapped on the outer surface of the adjacent main segment piece on the free end side. Together is placed, characterized in that a biasing means for biasing the bend segment piece to the drum radially inward.

また請求項2記載の発明は、前記主セグメント片の外面は、タイヤ部材が巻回される前記ドラム外周面の一部をなす基準面と、前記基準面よりも小さい外径を有する屈曲セグメント片支持用の載置面とを含む請求項1記載のタイヤ部材の成形ドラムである。   According to a second aspect of the present invention, the outer surface of the main segment piece includes a reference surface forming a part of the outer peripheral surface of the drum around which a tire member is wound, and a bent segment piece having an outer diameter smaller than the reference surface. It is a forming drum of the tire member according to claim 1 including a mounting surface for support.

また請求項3記載の発明は、前記各セグメントは、前記主セグメント片と前記屈曲セグメント片との重なりを維持しつつ、前記主セグメント片の外側面と前記屈曲セグメント片の外側面とが実質的に同一外径で連続する基準外径状態と、該基準外径状態よりも外径が2インチ大きい2インチ拡径状態との間を少なくとも拡縮移動する請求項1又は2記載のタイヤ部材の成形ドラムである。   According to a third aspect of the present invention, each segment has a substantial outer surface of the main segment piece and an outer surface of the bent segment piece while maintaining the overlap of the main segment piece and the bent segment piece. The molding of a tire member according to claim 1 or 2, wherein the tire member is at least expanded / contracted between a reference outer diameter state continuous at the same outer diameter and a 2-inch expanded state whose outer diameter is 2 inches larger than the reference outer diameter state. It is a drum.

また請求項4記載の発明は、前記セグメントは、タイヤ周方向に均等に配されるとともに、下式(1)を満たす請求項1又は2記載のタイヤ部材の成形ドラム。
Ls>50.8π/n …(1)
ただし、πは円周率、nはドラム1個当たりの総セグメント数、Lsは前記主セグメント片の外側面と前記屈曲セグメント片の外側面とが実質的に同一外径で連続する基準外径状態での周方向重なり長さ(mm)である。
According to a fourth aspect of the present invention, in the tire member forming drum according to the first or second aspect, the segments are arranged uniformly in the tire circumferential direction and satisfy the following expression (1).
Ls> 50.8π / n (1)
Where π is the circumference ratio, n is the total number of segments per drum, and Ls is a reference outer diameter in which the outer surface of the main segment piece and the outer surface of the bent segment piece are substantially the same outer diameter. The circumferential overlap length (mm) in the state.

請求項1記載の発明では、各セグメントは、セグメント移動手段によってドラム半径方向に移動する主セグメント片と、該主セグメント片のドラム周方向の一方側の側縁に片持ち状かつドラム軸方向に沿った軸線回りで屈曲可能に枢着された屈曲セグメント片とを含み、かつ各屈曲セグメント片の自由端側の端部分は、該自由端側で隣り合う他のセグメントの主セグメント片の外面に重なりを有して載置される。しかも、屈曲セグメント片は、付勢手段によりドラム半径方向内側へ付勢される。このような成形ドラムでは、主セグメント片を拡径した場合でも、屈曲セグメント片と主セグメント片との重なりによってセグメント間に隙間が生じるのを防止しうる。特に、屈曲セグメント片は、付勢手段によって、ドラム半径方向内側へと付勢されるため、該屈曲セグメント片の自由端側で隣り合う主セグメント片と接触しかつその径変化に追随して屈曲する。このため、セグメントのドラム外周面の真円度の低下を防止できる。また、請求項1の成形ドラムでは、ドラム外周面の分割数が、拡径時及び縮径時で実質的に変わらない。従って、拡径時及び縮径時の両状態において、成形ドラムの真円度を向上させることが可能である。よって、精度良く、例えばストリップワインド工法を行うことができる。   According to the first aspect of the present invention, each segment has a main segment piece that moves in the drum radial direction by the segment moving means, and a cantilevered side edge in the drum circumferential direction of the main segment piece in the drum axial direction. A bent segment piece pivotally attached to be bent about an axis along the axis, and an end portion on the free end side of each bent segment piece is on an outer surface of a main segment piece of another segment adjacent to the free end side Placed with overlap. Moreover, the bent segment piece is urged inward in the drum radial direction by the urging means. In such a forming drum, even when the diameter of the main segment piece is increased, it is possible to prevent a gap from being generated between the segments due to the overlapping of the bent segment piece and the main segment piece. In particular, since the bent segment piece is urged inward in the drum radial direction by the urging means, the bent segment piece comes into contact with the adjacent main segment piece on the free end side of the bent segment piece and follows the change in its diameter. To do. For this reason, the fall of the roundness of the drum outer peripheral surface of a segment can be prevented. In the molding drum according to the first aspect, the number of divisions on the outer peripheral surface of the drum is not substantially changed between the diameter expansion and the diameter reduction. Therefore, it is possible to improve the roundness of the molding drum in both the state of diameter expansion and the state of diameter reduction. Therefore, for example, a strip wind method can be performed with high accuracy.

また、請求項2記載の発明のように、主セグメント片の外面が、ドラム外周面の一部をなす基準面と、基準面よりも小さい外径を有する屈曲セグメント片支持用の載置面とを含む場合には、主セグメント片に載置される屈曲セグメント片の浮き上がりを防ぐことができる。これは、ドラム外周面を滑らかに連続させ、その真円度を向上させるのに役立つ。   According to a second aspect of the present invention, the outer surface of the main segment piece is a reference surface that forms part of the outer peripheral surface of the drum, and the mounting surface for supporting the bent segment piece that has an outer diameter smaller than the reference surface. Can be prevented, the bent segment piece placed on the main segment piece can be prevented from being lifted. This is useful for smoothly and continuously improving the roundness of the drum outer peripheral surface.

なお、インチ数が異なる複数種のタイヤを成形するためには、少なくとも内径が2インチ程度異なるタイヤ部材を成形する必要がある。従って、請求項3又は4記載の発明のように、各セグメントが、主セグメント片と屈曲セグメント片との重なりを維持しつつ、主セグメント片の外側面と屈曲セグメント片の外側面とが実質的に同一の半径で連続する基準外径状態と、該基準外径状態よりも外径が2インチ大きい2インチ拡径状態との間を少なくとも拡縮移動しうるときには、異なるタイヤサイズのタイヤ部材を、真円度を維持して精度良く成形できる。   In order to form a plurality of types of tires having different inch numbers, it is necessary to form tire members having at least an inner diameter of about 2 inches. Therefore, as in the invention according to claim 3 or 4, each segment substantially maintains the outer surface of the main segment piece and the outer surface of the bent segment piece while maintaining the overlap of the main segment piece and the bent segment piece. The tire member having a different tire size can be moved at least between a reference outer diameter state continuous at the same radius and a 2-inch expanded state whose outer diameter is 2 inches larger than the reference outer diameter state. It can be molded with good accuracy while maintaining roundness.

以下、本発明の実施の一形態が図面に基づき説明される。
図1は本実施形態の成形ドラム1の部分断面図、図2はその要部拡大図、図3は図2のA−A部分拡大端面図をそれぞれ示す。図において、成形ドラム1は、本体フレーム2と、該本体フレーム2に設けられた軸受B1、B2で回転自在かつ片持ち状に支持された水平な中心軸3と、該中心軸3で支持された略円筒状のドラム外周面Oを有するドラム本体4とを含む。なお、本明細書では、図1におけるドラム本体4側(右側)を一端側S1とし、その反対側を他端側S2として説明する。
Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
FIG. 1 is a partial cross-sectional view of a forming drum 1 of the present embodiment, FIG. 2 is an enlarged view of a main part thereof, and FIG. 3 is an AA partial enlarged end view of FIG. In the figure, a forming drum 1 is supported by a main body frame 2, a horizontal central shaft 3 which is rotatably supported by bearings B 1 and B 2 provided on the main body frame 2 and cantilevered, and the central shaft 3. And a drum main body 4 having a substantially cylindrical drum outer peripheral surface O. In the present specification, the drum body 4 side (right side) in FIG. 1 is described as one end side S1, and the opposite side is described as the other end side S2.

前記本体フレーム2は、一端側S1に配されかつ軸受B1を有する第1の側壁部2Aと、その他端側S2に距離を隔てて配されかつ軸受B1と同軸状に設けられた軸受B2を有する第2の側壁部2Bと、該第1、第2の側壁部2A、2Bの上端間に配された上板部2Cとを含む。該本体フレーム2は、例えば図示しない床面に固定されることにより、ドラム本体4の重量を支持できる。   The main body frame 2 includes a first side wall 2A disposed on one end side S1 and having a bearing B1, and a bearing B2 disposed on the other end side S2 at a distance and provided coaxially with the bearing B1. It includes a second side wall portion 2B and an upper plate portion 2C disposed between the upper ends of the first and second side wall portions 2A, 2B. The main body frame 2 can support the weight of the drum main body 4 by being fixed to a floor surface (not shown), for example.

前記中心軸3は、本実施形態では、内部に空所を具えた円筒状をなし、前記空所には、ドラム本体4に供給するための高圧空気が流れる空気パイプ5が挿入されている。該空気パイプ5の他端側S2の端部5aには、例えばコンプレッサー等から高圧空気が供給される。また、空気パイプ5の一端側S1の端部には、1ないし複数の接続口を有する分岐ポート5bが設けられ、図示しないホースを介して必要な箇所に高圧空気が供給される。例えば、前記高圧空気は、各種の部品や機構を駆動させる駆動エネルギーとして用いられる他、ドラム外周面Oとその上に成形されたタイヤ部材との間に供給され、該タイヤ部材をドラム外周面から剥離させる際に用いられる。   In the present embodiment, the central shaft 3 has a cylindrical shape with a void therein, and an air pipe 5 through which high-pressure air to be supplied to the drum body 4 flows is inserted into the void. High pressure air is supplied to the end 5a of the other end S2 of the air pipe 5 from, for example, a compressor. A branch port 5b having one or more connection ports is provided at the end of one end S1 of the air pipe 5, and high-pressure air is supplied to necessary portions via a hose (not shown). For example, the high-pressure air is used as drive energy for driving various components and mechanisms, and is supplied between the drum outer peripheral surface O and a tire member molded thereon, and the tire member is supplied from the drum outer peripheral surface. Used when peeling.

また、中心軸3は、軸受B2から他端側S2にはみ出すとともに、そこにはプーリ11が固着される。また、プーリ11には、ベルト6を介して第1の電動機(図示省略)のトルクが伝達される。従って、第1の電動機を駆動させることにより、中心軸3を水平軸周りで回転させることができる。   Further, the central shaft 3 protrudes from the bearing B2 to the other end S2, and a pulley 11 is fixed thereto. Further, the torque of the first electric motor (not shown) is transmitted to the pulley 11 via the belt 6. Therefore, the central shaft 3 can be rotated around the horizontal axis by driving the first electric motor.

前記ドラム本体4は、前記中心軸3の周りでドラム周方向に並べられることにより略円筒状のドラム外周面Oを構成する複数のセグメント7と、該セグメント7を前記中心軸3に対してドラム半径方向に拡縮移動させるセグメント移動手段とを含んで構成される。   The drum body 4 is arranged in the drum circumferential direction around the central axis 3 to form a plurality of segments 7 constituting a substantially cylindrical drum outer peripheral surface O, and the segments 7 are drums with respect to the central axis 3. Segment moving means for expanding and contracting in the radial direction.

前記セグメント移動手段は、中心軸3に設けられた軸方向にのびる長孔状の案内溝12と、中心軸3の内部を軸方向に摺動しうるスライド筒13と、該スライド筒13に固着されるとともに前記案内溝12から外方に突出する突片14と、該突片14にスライドリング27(図2に示す)を介して連結されたリンク部26と、前記スライド筒13を軸方向にスライドさせる駆動部23とを含んで構成される。   The segment moving means includes an elongated guide groove 12 provided in the central shaft 3 extending in the axial direction, a slide cylinder 13 capable of sliding in the axial direction inside the central shaft 3, and fixed to the slide cylinder 13. The projecting piece 14 projecting outward from the guide groove 12, the link portion 26 connected to the projecting piece 14 via a slide ring 27 (shown in FIG. 2), and the slide cylinder 13 in the axial direction. And a drive unit 23 to be slid.

前記案内溝12は、本実施形態では、中心軸3のセグメント7の内方をのびる部分に設けられ、一端側S1に形成される第1の案内溝12Aと、他端側S2に形成される第2の案内溝12Bとの一対からなる。各案内溝12A、12Bは、それぞれ中心軸3を貫通している。なお、案内溝12A、12Bは、突片14のスライドを許容するよう該突片14よりも僅かに大きい溝幅で形成される。   In the present embodiment, the guide groove 12 is provided in a portion extending inward of the segment 7 of the central shaft 3, and is formed in the first guide groove 12A formed on one end side S1 and the other end side S2. It consists of a pair with the second guide groove 12B. Each guide groove 12A, 12B penetrates the central axis 3 respectively. The guide grooves 12 </ b> A and 12 </ b> B are formed with a slightly larger groove width than the projecting piece 14 to allow the projecting piece 14 to slide.

前記スライド筒13は、本実施形態では円筒状をなし、中心軸3の内周面と空気パイプ5の外周面との間で軸方向に摺動自在に配されている。   In the present embodiment, the slide cylinder 13 has a cylindrical shape, and is slidable in the axial direction between the inner peripheral surface of the central shaft 3 and the outer peripheral surface of the air pipe 5.

前記突片14は、第1の案内溝12Aから突出する第1の突片14Aと、第2の案内溝12Bから突出する第2の突片14Bとを含む。各突片14A、14Bには、中心軸3の外周面に外嵌挿入されかつ軸方向に摺動しうるスライドリング27が固着されている。従って、各突片14A、14B及びスライドリング27は、いずれもスライド筒13と一体となって軸方向に移動しうる。また、第2の突片14Bの他端側S2には、前記中心軸3の外周面を囲むリング状のフランジ片Fが固着されている。該フランジ片Fの内径は、中心軸3の外径よりも大きく形成される。従って、このフランジ片Fも、中心軸3と干渉することなくスライド筒13と一体となって移動できる。なお、中心軸3の回転により、案内溝12の溝壁面で突片14にトルクが伝えられるので、該突片14、スライド筒13及びフランジ片Fは、中心軸3とともに回転しうる。   The projecting piece 14 includes a first projecting piece 14A projecting from the first guide groove 12A and a second projecting piece 14B projecting from the second guide groove 12B. A slide ring 27 is fixedly attached to each of the projecting pieces 14A and 14B. The slide ring 27 is fitted on the outer peripheral surface of the central shaft 3 and can slide in the axial direction. Accordingly, each of the projecting pieces 14 </ b> A and 14 </ b> B and the slide ring 27 can move in the axial direction integrally with the slide cylinder 13. Further, a ring-shaped flange piece F surrounding the outer peripheral surface of the central shaft 3 is fixed to the other end side S2 of the second projecting piece 14B. The inner diameter of the flange piece F is formed larger than the outer diameter of the central shaft 3. Therefore, this flange piece F can also move integrally with the slide cylinder 13 without interfering with the central shaft 3. In addition, since the torque is transmitted to the projecting piece 14 by the groove wall surface of the guide groove 12 by the rotation of the central shaft 3, the projecting piece 14, the slide cylinder 13, and the flange piece F can rotate together with the central shaft 3.

前記リンク部26は、第1の突片14A及び第2の突片14Bにそれぞれ連結される第1のリンク部26A及び第2のリンク部26Bを含む。各リンク部26A、26Bは、それぞれ長尺な主リンク28aと、該主リンク28aよりも短尺な補助リンク28bとを含む。   The link portion 26 includes a first link portion 26A and a second link portion 26B that are connected to the first protrusion 14A and the second protrusion 14B, respectively. Each of the link portions 26A and 26B includes a long main link 28a and an auxiliary link 28b shorter than the main link 28a.

前記主リンク28aは、ドラム半径方向内側の一端が前記スライドリング27に、ドラム半径方向外側の他端がセグメント7の内周面側のベース部25にそれぞれ回動自在にピン29にて枢着される。また、補助リンク28bは、主リンク28aの1/2の有効リンク長を有し、そのドラム半径方向内側の一端が中心軸3に固着された固定突片30に、またドラム半径方向外側の他端が主リンク28aの有効リンク長の中間位置にそれぞれ回動自在に枢着されている。   One end of the main link 28a on the inner side in the drum radial direction is pivotally attached to the slide ring 27 and the other end on the outer side in the drum radial direction is pivotally attached to the base portion 25 on the inner peripheral surface side of the segment 7 by a pin 29. Is done. The auxiliary link 28b has an effective link length that is ½ that of the main link 28a. The auxiliary link 28b has an end on the inner side in the drum radial direction fixed to the fixed protrusion 30 fixed to the central shaft 3, and the other on the outer side in the drum radial direction. The ends are pivotally attached to intermediate positions of the effective link length of the main link 28a.

本実施形態において、各主リンク28aは、ドラム半径方向外側に向かって他端側S2から一端側S1に傾斜して設けられる一方、補助リンク28bは、主リンク28aとは逆向きの傾斜で設けられる。このようなリンク部26は、主リンク28aを立ち上げる向きに傾動させることにより、セグメント7をドラム半径方向外側に押し上げドラム外周面Oを拡径させる一方、主リンク28aを寝かせる向きに傾動させることにより、セグメント7をドラム半径方向内側へと引き込みドラム外周面Oを縮径させ得る。   In the present embodiment, each main link 28a is provided to be inclined from the other end side S2 to the one end side S1 toward the outer side in the drum radial direction, while the auxiliary link 28b is provided with an inclination opposite to the main link 28a. It is done. Such a link portion 26 is tilted in the direction in which the main link 28a is raised, thereby pushing the segment 7 outward in the radial direction of the drum and expanding the outer peripheral surface O of the drum while tilting in the direction in which the main link 28a is laid down. Thus, the segment 7 is drawn inward in the drum radial direction, and the outer peripheral surface O of the drum can be reduced in diameter.

前記駆動部23は、図示しない第2の電動機から得られる回転運動を水平な直線運動に変換する運動変換手段15と、該運動変換手段15に連結されたロッド部材16と、該ロッド部材16と前記フランジ片Fとの間を連結する連結部17とを含む。   The drive unit 23 includes a motion conversion unit 15 that converts a rotational motion obtained from a second electric motor (not shown) into a horizontal linear motion, a rod member 16 connected to the motion conversion unit 15, and the rod member 16. And a connecting portion 17 that connects the flange piece F.

前記運動変換手段15は、第2の側壁部2Bから一端側S1にのびかつネジ溝18Aが形成された水平なネジ軸18と、該ネジ軸18に螺合するボールナット部19と、該ボールナット部19に固着されるとともに、中心軸3が通る貫通孔20Aを有する移動枠20とを含んで構成される。   The motion converting means 15 includes a horizontal screw shaft 18 extending from the second side wall portion 2B to one end S1 and having a screw groove 18A, a ball nut portion 19 screwed into the screw shaft 18, and the ball The movable frame 20 is configured to be fixed to the nut portion 19 and has a through hole 20A through which the central shaft 3 passes.

前記ネジ軸18は、その他端側S2が第2の側壁部2Bに設けた軸受B3によって回動可能に支持される。また、このネジ軸18には、スプロケット22及びチェーン21を介して図示しない第2の電動機のトルクが伝えられる。   The other end side S2 of the screw shaft 18 is rotatably supported by a bearing B3 provided on the second side wall portion 2B. Further, the torque of a second electric motor (not shown) is transmitted to the screw shaft 18 via the sprocket 22 and the chain 21.

前記移動枠20は、例えば上板部2C側に向かってのびるとともに、その略中心部には、中心軸3を通過させる貫通孔20Aが設けられている。   The moving frame 20 extends, for example, toward the upper plate 2C side, and a through hole 20A through which the central shaft 3 passes is provided at a substantially central portion thereof.

前記ロッド部材16は、その他端側S2の端部16aが移動枠20に固着されるとともに、一端側S1の端部16bは、第2の側壁部2Aに設けられた直動軸受24によって水平軸方向にのみ摺動可能に支持されてドラム本体4側へとのびている。   The rod member 16 has an end portion 16a on the other end side S2 fixed to the moving frame 20, and an end portion 16b on one end side S1 has a horizontal axis by a linear motion bearing 24 provided on the second side wall portion 2A. It is slidably supported only in the direction and extends to the drum body 4 side.

前記連結部17は、前記中心軸3を通す貫通孔17Hを有する円盤状の側板17aと、該側板17aに固着された円筒状の外筒部17bと、この外筒部17bに軸受17cを介して内挿されることにより外筒部17bとは独立して回動しうる内筒部17dと、該内筒部17dと前記フランジ片Fとの間を連結する継ぎ筒17eとを含んで構成される。また、前記側板17aには、前記ロッド部材16の端部16bが固着される。   The connecting portion 17 includes a disc-shaped side plate 17a having a through hole 17H through which the central shaft 3 passes, a cylindrical outer cylinder portion 17b fixed to the side plate 17a, and a bearing 17c on the outer cylinder portion 17b. The inner cylinder part 17d that can be rotated independently of the outer cylinder part 17b by being inserted, and the joint cylinder 17e that connects the inner cylinder part 17d and the flange piece F are configured. The The end 16b of the rod member 16 is fixed to the side plate 17a.

以上のような駆動部23の作用について説明する。
図示しない第2の電動機を駆動させることにより、そのトルクは、チェーン21、スプロケット22及びネジ軸18に伝えられこれらを回転させる。移動枠20によって回転が規制されたボールナット部19は、ネジ軸18の回転によって軸方向に移動し、移動枠20、ロッド部材16及び連結部17を介して突片14及びスライド筒13を軸方向に移動させ得る。そして、例えば、スライド筒13を一端側S1へ移動させることにより、主リンク28aを立ち上げる向きに傾動でき、ひいてはセグメント7を拡径できる。逆に、スライド筒13を他端側S2へ移動させることにより、主リンク28aを寝かせる向きに傾動させ、セグメント7を縮径できる。なお、スライド筒13の移動の向きは、第2の電動機の回転方向を制御することにより行われる。また、第1の電動機を駆動して中心軸3を回転させると、突片14、リンク部26を介してドラム本体4を中心軸3とともに回転させることができる。この際、軸受17cによって、側板17aやロッド部材16を回転させることはない。
The operation of the drive unit 23 as described above will be described.
By driving a second electric motor (not shown), the torque is transmitted to the chain 21, the sprocket 22, and the screw shaft 18 to rotate them. The ball nut portion 19 whose rotation is restricted by the moving frame 20 moves in the axial direction by the rotation of the screw shaft 18, and the projecting piece 14 and the slide cylinder 13 are pivoted through the moving frame 20, the rod member 16 and the connecting portion 17. Can be moved in the direction. Then, for example, by moving the slide cylinder 13 to the one end side S1, the main link 28a can be tilted in the direction in which the main link 28a is raised, and the segment 7 can be expanded in diameter. On the contrary, by moving the slide cylinder 13 to the other end S2, the segment 7 can be reduced in diameter by tilting the main link 28a in the direction to lay down. The direction of movement of the slide cylinder 13 is performed by controlling the rotation direction of the second electric motor. Further, when the first electric motor is driven to rotate the central shaft 3, the drum body 4 can be rotated together with the central shaft 3 via the projecting piece 14 and the link portion 26. At this time, the side plate 17a and the rod member 16 are not rotated by the bearing 17c.

図3及び図4に示されるように、略円筒状のドラム外周面Oは、複数個のセグメント7が中心軸3の周りに並べられることにより形成される。本実施形態では、12個のセグメント7が周方向にかつ均等に並べられる(換言すれば、各セグメント7は同一形状を有している。)。   As shown in FIGS. 3 and 4, the substantially cylindrical drum outer peripheral surface O is formed by arranging a plurality of segments 7 around the central axis 3. In the present embodiment, twelve segments 7 are arranged evenly in the circumferential direction (in other words, each segment 7 has the same shape).

また、各セグメント7は、セグメント移動手段によってドラム半径方向に移動させられる主セグメント片8と、該主セグメント片8のドラム周方向の一方側の側縁8aに、ドラム軸方向に沿った軸線回りで屈曲可能かつ片持ち状に枢着された屈曲セグメント片9とから構成される。換言すれば、本実施形態のドラム外周面Oは、12個の主セグメント片8と、12個の屈曲セグメント片9とが交互に配されて構成される。   Each segment 7 has a main segment piece 8 moved in the drum radial direction by the segment moving means, and a side edge 8a on one side of the drum circumferential direction of the main segment piece 8 around the axis line along the drum axis direction. And a bent segment piece 9 pivotably mounted in a cantilever manner. In other words, the drum outer peripheral surface O of the present embodiment is configured by alternately arranging 12 main segment pieces 8 and 12 bent segment pieces 9.

前記主セグメント片8は、所定の軸方向長さを有するとともに、中心軸3に沿った軸線周りで湾曲する円弧状の金属材料で構成される。本実施形態では、主セグメント片8の内側面8iに、基板25a及びリンク取付部25bからなるベース部25が、例えばボルト35にて固着される。また、ベース部25には、セグメント移動手段の主リンク28aが枢着されるのは上述の通りである。従って、主セグメント片8は、主リンク28aの傾動(セグメント移動手段)によりドラム半径方向に直接的に移動させられる。   The main segment piece 8 is made of an arc-shaped metal material having a predetermined axial length and curved around an axis along the central axis 3. In the present embodiment, the base portion 25 including the substrate 25 a and the link attachment portion 25 b is fixed to the inner side surface 8 i of the main segment piece 8 with, for example, bolts 35. Further, as described above, the main link 28a of the segment moving means is pivotally attached to the base portion 25. Therefore, the main segment piece 8 is directly moved in the drum radial direction by tilting (segment moving means) of the main link 28a.

前記屈曲セグメント片9は、主セグメント片8と実質的に等しい軸方向長さを有するとともに、中心軸3に沿った軸線周り湾曲する円弧状の金属材料で構成される。また、屈曲セグメント片9は、主セグメント片8の一方側の側縁8aに、本実施形態では、ドラム軸方向に沿った軸線回りで開閉可能な蝶番31を介して連結される。前記蝶番31は、主セグメント片8及び屈曲セグメント片9の各内側面8i、9iに跨って固着される。これにより、屈曲セグメント片9は、主セグメント片8と連結され、主セグメント片8に引っ張られて半径方向に移動できる。   The bent segment piece 9 has an axial length substantially equal to that of the main segment piece 8 and is made of an arc-shaped metal material that is curved around the axis along the central axis 3. In addition, the bent segment piece 9 is connected to one side edge 8a of the main segment piece 8 via a hinge 31 that can be opened and closed around an axis along the drum axis direction in this embodiment. The hinge 31 is fixed across the inner side surfaces 8 i and 9 i of the main segment piece 8 and the bent segment piece 9. Accordingly, the bent segment piece 9 is connected to the main segment piece 8 and is pulled by the main segment piece 8 and can move in the radial direction.

また、図3に示されるように、各屈曲セグメント片9の自由端側の端部分9fは、隣り合う他のセグメント7の主セグメント片8の外面に重なり(周方向の重なり長さ)を有して載置されるとともに、該屈曲セグメント片9をドラム半径方向内側へ付勢する付勢手段10が設けられる。   Further, as shown in FIG. 3, the end portion 9f on the free end side of each bent segment piece 9 overlaps the outer surface of the main segment piece 8 of another adjacent segment 7 (overlap length in the circumferential direction). And an urging means 10 for urging the bent segment piece 9 inward in the drum radial direction.

本実施形態において、主セグメント片8の外側面8oは、ドラム外周面Oの一部をなす円弧面からなる基準面8o1と、該基準面8o1よりも小さい外径の円弧面からなる屈曲セグメント片支持用の載置面8o2とを含んで構成されている。これによって、図3に示されるように、主セグメント片8に載置される屈曲セグメント片9が、主セグメント片8から過度に浮き上がるのを防止し、より高い真円度でかつ滑らかにドラム外周面Oを連続させることができる。これは、精度良くタイヤ部材を成形するのに役立つ。   In the present embodiment, the outer surface 8o of the main segment piece 8 includes a reference surface 8o1 made of an arc surface that forms a part of the drum outer peripheral surface O, and a bent segment piece made of an arc surface having an outer diameter smaller than the reference surface 8o1. And a mounting surface 8o2 for support. As a result, as shown in FIG. 3, the bent segment piece 9 placed on the main segment piece 8 is prevented from being lifted excessively from the main segment piece 8, and the drum outer periphery can be smoothly smoothed with higher roundness. The plane O can be made continuous. This is useful for accurately molding the tire member.

本実施形態では、基準面8o1の半径R1aと、載置面8o2の半径R1bとの差(R1a−R1b)が、載置面8o2に載置される屈曲セグメント片9の厚さtと実質的に等しく設定されている。また、屈曲セグメント片9の外側面9oの半径(曲率半径)R2は、前記基準面8o1の半径R1aと等しく設定される(R1a=R2)。さらに、図3に示されるように、主セグメント片8と屈曲セグメント片9の自由端側の端部分9fとを重ねたときに、それらの外周面が隙間無くかつ連続するように、載置面8o2の形状及び自由端側の端部分9fの断面形状を定められる。換言すれば、主セグメント片8の基準面8o1から屈曲セグメント片9の自由端側の端部の断面を切り欠くことによって、載置面8o2の輪郭を定めることができる。これらによって、ドラム外周面Oの真円度をより一層向上させることができる。   In this embodiment, the difference (R1a−R1b) between the radius R1a of the reference surface 8o1 and the radius R1b of the placement surface 8o2 is substantially equal to the thickness t of the bent segment piece 9 placed on the placement surface 8o2. Is set equal to. The radius (curvature radius) R2 of the outer surface 9o of the bent segment piece 9 is set equal to the radius R1a of the reference surface 8o1 (R1a = R2). Further, as shown in FIG. 3, when the main segment piece 8 and the end portion 9f on the free end side of the bent segment piece 9 are overlapped with each other, the mounting surface is arranged such that their outer peripheral surfaces are continuous without gaps. The shape of 8o2 and the cross-sectional shape of the end portion 9f on the free end side can be determined. In other words, the outline of the mounting surface 8o2 can be determined by cutting out the cross section of the end portion on the free end side of the bent segment piece 9 from the reference surface 8o1 of the main segment piece 8. By these, the roundness of the drum outer peripheral surface O can be further improved.

なお、図3には、ドラム外周面Oの半径Dsが、主セグメント片8の基準面8o1の曲率半径R1a(即ち、屈曲セグメント片9の外側面9oの曲率半径R2)をなす基準外径状態が示されている。   In FIG. 3, the reference outer diameter state in which the radius Ds of the drum outer peripheral surface O forms the curvature radius R1a of the reference surface 8o1 of the main segment piece 8 (that is, the curvature radius R2 of the outer surface 9o of the bent segment piece 9). It is shown.

本実施形態の付勢手段10は、主セグメント片8の内側面8iからドラム半径方向内側へ突出形成された突軸10Aと、前記屈曲セグメント片9の内側面9iからドラム半径方向内側に突出形成された突軸10Bと、これらの突軸10A、10B間に架け渡され両軸を互いに接近する向きに付勢するコイルばね10Cとから構成されている。   The biasing means 10 of the present embodiment includes a protruding shaft 10A that protrudes inward in the drum radial direction from the inner side surface 8i of the main segment piece 8, and a protrusion that protrudes inward in the drum radial direction from the inner side surface 9i of the bent segment piece 9. And a coil spring 10C that spans between the projecting shafts 10A and 10B and urges the shafts toward each other.

以上のように構成された成形ドラム1では、図5に示されるように、セグメント移動手段によって各主セグメント片8をドラム半径方向に移動させ、ドラム外周面Oを半径Dsの基準外径状態ST1から半径Dmの拡径状態まで拡大させた場合でも、主セグメント片8と屈曲セグメント片9との重なりが維持されセグメント7間に隙間が生じるのを防ぐ。これは、ドラム外周面Oの真円度の悪化を防止できる。なお、本実施形態の成形ドラム1では、ドラム外周面Oの拡径につれて、屈曲セグメント片9と主セグメント片8との重なり長さLは小さくなり、ドラム外周面Oの表面には窪みEが生じる。しかし、この窪みEは、主セグメント片8の載置面8o2によって有底状をなすため、そこに巻き付けられているタイヤ部材が過度に半径方向内側へ変形するといった不具合を防止できる点で好ましい。   In the forming drum 1 configured as described above, as shown in FIG. 5, each main segment piece 8 is moved in the drum radial direction by the segment moving means, and the drum outer peripheral surface O is in the reference outer diameter state ST1 having the radius Ds. Even when expanded to a diameter-enlarged state with a radius Dm, the overlap between the main segment piece 8 and the bent segment piece 9 is maintained and a gap is prevented from being generated between the segments 7. This can prevent deterioration of the roundness of the drum outer peripheral surface O. In the molding drum 1 of the present embodiment, the overlapping length L between the bent segment piece 9 and the main segment piece 8 decreases as the diameter of the drum outer peripheral surface O increases, and a depression E is formed on the surface of the drum outer peripheral surface O. Arise. However, since this depression E has a bottomed shape due to the mounting surface 8o2 of the main segment piece 8, it is preferable in that the tire member wound around the depression E can be prevented from being deformed excessively inward in the radial direction.

また、拡径状態ST2において、ドラム外周面Oの半径Dmは、各セグメント片8、9の外側面の曲率半径R1a、R2よりも大きいので完全な真円にはならない。しかし、屈曲セグメント片9は、主セグメント片8に対して屈曲できかつ付勢手段10でドラム半径方向内側へと付勢されるので、その自由端側で隣り合う主セグメント片8の径変化に追随して屈曲変形し、ドラム外周面Oが凹凸化するのを極力減じる。これにより、ドラム外周面Oの真円度の低下がより確実に防止できる。さらに、本実施形態の成形ドラム1では、ドラム外周面Oの分割数が、ドラム外周面Oの外径を変化させても実質的に変化しない。従って、拡径時及び縮径時の両状態において、ドラム外周面Oの真円度を向上できる。なお、ドラム外周面Oに巻き付けられたトレッド補強層などは、例えばリンク部28が互いに干渉しない程度まで主セグメント片8と屈曲セグメント片9との重なり長さを大きくし、最小径状態ST0として容易に取り外すことができる。   In the expanded diameter state ST2, the radius Dm of the drum outer peripheral surface O is larger than the curvature radii R1a and R2 of the outer surfaces of the segment pieces 8 and 9, so that it does not become a perfect circle. However, the bent segment piece 9 can be bent with respect to the main segment piece 8 and is urged inward in the drum radial direction by the urging means 10, so that the diameter of the adjacent main segment piece 8 on the free end side can be changed. Following the bending deformation, the drum outer peripheral surface O is reduced as much as possible from being uneven. Thereby, the fall of the roundness of the drum outer peripheral surface O can be prevented more reliably. Furthermore, in the forming drum 1 of the present embodiment, the number of divisions of the drum outer peripheral surface O does not substantially change even when the outer diameter of the drum outer peripheral surface O is changed. Accordingly, it is possible to improve the roundness of the outer peripheral surface O of the drum in both the states of diameter expansion and contraction. For example, the tread reinforcement layer wound around the drum outer peripheral surface O increases the overlap length of the main segment piece 8 and the bent segment piece 9 to the extent that the link portions 28 do not interfere with each other, and can be easily set as the minimum diameter state ST0. Can be removed.

また、インチ数が異なる複数種のタイヤを成形するためには、少なくとも内径が2インチ程度異なるタイヤ部材を成形する必要がある。従って、1台の成形ドラム1でこのようなタイヤ部材を成形するために、主セグメント片8と屈曲セグメント片9との重なりを維持しつつ、前記基準外径状態ST1と、該基準外径状態ST1よりも外径が2インチ大きい2インチ拡径状態との間を少なくとも拡縮移動させるのが好ましい。これにより、異なるタイヤサイズのトレッド補強層を、真円度を高く維持して精度良く成形できる。   Further, in order to form a plurality of types of tires having different numbers of inches, it is necessary to form tire members having at least an inner diameter of about 2 inches. Therefore, in order to form such a tire member with one molding drum 1, the reference outer diameter state ST1 and the reference outer diameter state are maintained while maintaining the overlap of the main segment piece 8 and the bent segment piece 9. It is preferable to move at least the expansion and contraction between the diameter expansion state of 2 inches larger than ST1 by 2 inches. Thereby, tread reinforcement layers of different tire sizes can be molded with high accuracy while maintaining high roundness.

具体的に述べると、円筒物の直径が2インチ増加すると、その周方向長さは2πインチ、即ち50.8π(mm)増加する。他方、ドラム1個当たりの総セグメント数をn、基準外径状態における主セグメント片8と屈曲セグメント片9との重なり長さをLs(mm)とすると、重なり長さの総和はLs・n(mm)となる。従って、主セグメント片8と屈曲セグメント片9との重なりを維持しつつ、基準外径状態ST1と2インチ拡径状態との間を少なくとも拡縮移動させるためには、下式を満足させれば良い。
Ls>50.8π/n …(1)
Specifically, as the diameter of the cylinder increases by 2 inches, its circumferential length increases by 2π inches, or 50.8π (mm). On the other hand, if the total number of segments per drum is n and the overlapping length of the main segment piece 8 and the bent segment piece 9 in the reference outer diameter state is Ls (mm), the total sum of the overlapping lengths is Ls · n ( mm). Therefore, in order to at least expand and contract between the reference outer diameter state ST1 and the 2 inch diameter expanded state while maintaining the overlap between the main segment piece 8 and the bent segment piece 9, the following equation should be satisfied. .
Ls> 50.8π / n (1)

以上、本発明の特に好ましい形態について詳述したが、本発明は図示の実施形態に限定されることなく、種々の態様に変形して実施し得る。例えば、本実施形態の付勢手段10では、突軸10A、10Bにコイルばね10Cを架け渡すことにより構成されているが、このような態様に代えて、例えば板バネを用いて主セグメント片8と屈曲セグメント片9とを連結しても良いし、さらには蝶番31にばねを組み入れたバネ蝶番などを用いても良い。   As mentioned above, although the especially preferable form of this invention was explained in full detail, this invention is not limited to embodiment of illustration, It can deform | transform and implement in a various aspect. For example, the biasing means 10 of the present embodiment is configured by bridging the coil spring 10C around the projecting shafts 10A and 10B, but instead of such a mode, for example, the main segment piece 8 using a leaf spring is used. And the bent segment piece 9 may be connected to each other, or a spring hinge incorporating a spring into the hinge 31 may be used.

本実施形態のタイヤ部材の成形ドラムの部分断面図である。It is a fragmentary sectional view of the forming drum of the tire member of this embodiment. そのドラムの拡大断面図である。It is an expanded sectional view of the drum. 図2のA−A部分拡大端面図であるIt is an AA partial expanded end view of FIG. セグメントの要部斜視図である。It is a principal part perspective view of a segment. セグメントの各縮径状態を示す部分断面図である。It is a fragmentary sectional view showing each diameter reduction state of a segment. ドラム外周面の拡縮状態を示す部分断面図である。It is a fragmentary sectional view which shows the expansion / contraction state of a drum outer peripheral surface. 従来の成形ドラムを示す部分断面図である。It is a fragmentary sectional view showing the conventional forming drum. 従来の成形ドラムを示す部分断面図である。It is a fragmentary sectional view showing the conventional forming drum.

符号の説明Explanation of symbols

1 成形ドラム
3 中心軸
4 ドラム本体
7 セグメント
8 主セグメント片
8a 主セグメント片の側縁
9 屈曲セグメント片
9f 屈曲セグメント片の自由端側の端部分
10 付勢手段
O ドラム外周面
DESCRIPTION OF SYMBOLS 1 Forming drum 3 Center axis | shaft 4 Drum main body 7 Segment 8 Main segment piece 8a Side edge 9 of main segment piece Bending segment piece 9f End part 10b of free end side of bending segment piece Energizing means O Drum outer peripheral surface

Claims (4)

略円筒状のドラム外周面にタイヤの材料を巻回してリング状のタイヤ部材を成形するタイヤ部材の成形ドラムであって、
回転可能に支持された中心軸と、
前記中心軸の周りに並べられて前記ドラム外周面を構成する複数のセグメントと、
前記セグメントを前記中心軸に対してドラム半径方向に拡縮移動させるセグメント移動手段とを含み、
前記各セグメントは、前記セグメント移動手段によってドラム半径方向に移動する主セグメント片と、該主セグメント片のドラム周方向の一方側の側縁に片持ち状かつドラム軸方向に沿った軸線回りで屈曲可能に枢着された屈曲セグメント片とを含み、かつ
前記各屈曲セグメント片の自由端側の端部分は、該自由端側で隣り合う主セグメント片の外面に重なりを有して載置されるとともに、
該屈曲セグメント片をドラム半径方向内側へ付勢する付勢手段を設けたことを特徴とするタイヤ部材の成形ドラム。
A tire member forming drum for forming a ring-shaped tire member by winding a tire material around a substantially cylindrical drum outer peripheral surface,
A central axis rotatably supported;
A plurality of segments arranged around the central axis and constituting the outer peripheral surface of the drum;
Segment moving means for expanding and contracting the segment in the radial direction of the drum with respect to the central axis,
Each segment is bent around an axis along the drum axis direction in a cantilevered manner at a side edge on one side in the drum circumferential direction of the main segment piece by the segment moving means in the drum radial direction. The bent segment pieces pivotably attached to each other, and the end portions of the respective bent segment pieces on the free end side are placed on the outer surface of the adjacent main segment pieces with an overlap. With
A tire member forming drum, comprising a biasing means for biasing the bent segment piece inward in the drum radial direction.
前記主セグメント片の外面は、タイヤ部材が巻回される前記ドラム外周面の一部をなす基準面と、前記基準面よりも小さい外径を有する屈曲セグメント片支持用の載置面とを含む請求項1記載のタイヤ部材の成形ドラム。   The outer surface of the main segment piece includes a reference surface that forms a part of the outer peripheral surface of the drum around which a tire member is wound, and a mounting surface for supporting a bent segment piece having an outer diameter smaller than the reference surface. The molding drum of the tire member according to claim 1. 前記各セグメントは、前記主セグメント片と前記屈曲セグメント片との重なりを維持しつつ、前記主セグメント片の外側面と前記屈曲セグメント片の外側面とが実質的に同一外径で連続する基準外径状態と、該基準外径状態よりも外径が2インチ大きい2インチ拡径状態との間を少なくとも拡縮移動する請求項1又は2記載のタイヤ部材の成形ドラム。   Each segment is out of the reference where the outer surface of the main segment piece and the outer surface of the bent segment piece are continuous with substantially the same outer diameter while maintaining the overlap between the main segment piece and the bent segment piece. 3. The tire member forming drum according to claim 1, wherein the tire member is at least expanded and contracted between a diameter state and a 2 inch expanded state having an outer diameter that is 2 inches larger than the reference outer diameter state. 前記セグメントは、タイヤ周方向に均等に配されるとともに、下式(1)を満たす請求項1又は2記載のタイヤ部材の成形ドラム。
Ls>50.8π/n …(1)
(ただし、πは円周率、nはドラム1個当たりの総セグメント数、Lsは前記主セグメント片の外側面と前記屈曲セグメント片の外側面とが実質的に同一外径で連続する基準外径状態での周方向重なり長さ(mm)である。)
The molding drum for a tire member according to claim 1 or 2, wherein the segments are equally distributed in a tire circumferential direction and satisfy the following formula (1).
Ls> 50.8π / n (1)
(Where π is the circularity ratio, n is the total number of segments per drum, Ls is the non-reference length where the outer surface of the main segment piece and the outer surface of the bent segment piece are substantially the same outer diameter) (Overlapping length in the circumferential direction (mm) in the radial state.)
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WO2015194940A1 (en) 2014-06-20 2015-12-23 Vmi Holland B.V. Tire building drum
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US20170144396A1 (en) * 2014-06-20 2017-05-25 Vmi Holland B.V. Tire building drum
NL2013045B1 (en) * 2014-06-20 2016-07-06 Vmi Holland Bv Tire building drum.
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US11548251B2 (en) 2019-01-28 2023-01-10 Davian Enterprises, LLC Expandable belt and tread drum with reverse offset fingers
JP7354751B2 (en) 2019-10-11 2023-10-03 住友ゴム工業株式会社 Tire component forming equipment
US11993043B2 (en) 2020-12-03 2024-05-28 Davian Enterprises, LLC Expandable belt and tread drum with magnetic deck fixing

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