JP4704602B2 - Sidewall pasting former - Google Patents

Sidewall pasting former Download PDF

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Publication number
JP4704602B2
JP4704602B2 JP2001150410A JP2001150410A JP4704602B2 JP 4704602 B2 JP4704602 B2 JP 4704602B2 JP 2001150410 A JP2001150410 A JP 2001150410A JP 2001150410 A JP2001150410 A JP 2001150410A JP 4704602 B2 JP4704602 B2 JP 4704602B2
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former
shaft
segment
support members
segments
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Japanese (ja)
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JP2002337251A (en
Inventor
博幸 鬼松
将章 出口
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Sumitomo Rubber Industries Ltd
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Sumitomo Rubber Industries Ltd
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Description

【0001】
【発明の属する技術分野】
本発明は、タイヤ製造用のサイドウォール貼付フォーマーに関する。
【0002】
【従来の技術】
生タイヤの製造では、インナーライナー、カーカス等を貼付け後にビードをセットし、カーカスをビード周りに折り返してローカバー(ファーストカバーと呼ばれることもある)を形成し、その後ローカバーにサイドウォールを貼付ける場合がある。
【0003】
図9は、従来のサイドウォール貼付フォーマーを示す。このサイドウォール貼付フォーマー40は、回転可能なシャフト42と、シャフト42に設けられた左右一対のリング部材41,41を備えたものであり、図10に示すように、リング部材41は軸方向にフラットな(同一径の)短円筒状であり、その外径はローカバー30の内径よりも小さく設定されている。
サイドウォール貼付作業では、フォーマー40にローカバー30を挿入セットし、ローカバー30の外周面にサイドウォール44の始端をローラ45にて押さえつけ、シャフト42を回転させることによりローカバー30を回転してサイドウォール44を貼付けていく。
【0004】
【発明が解決しようとする課題】
しかしながら、ローカバー30はリング部材41,41に(軸方向から見て)点接触状に吊下げられているため、回転するリング部材41,41とローカバー30との間に滑り(回転速度差)が生じ、自動カット時のカットバラツキの原因となっていた。また、リング部材41の外周面は軸方向にフラットであるため、リング部材41の軸方向外端側に配置されるローカバー30のビード折返部34(図8参照)が盛り上がってサイドウォール貼付面がテーパ状となるため、サイドウォールの幅方向左右端に貼付周速度差が生じ、その結果自動ジョイント精度が下がるという問題があった。
【0005】
そこで、本発明は、サイドウォールをローカバーに高精度に貼付けることができるサイドウォール貼付フォーマーを提供することを目的とする。
【0006】
【課題を解決するための手段】
上述の目的を達成するために、本発明に係るサイドウォール貼付フォーマーは、回転可能なシャフトに設けられた左右一対のフォーマー本体を備え、各上記フォーマー本体が、周方向長さが大小2種類で交互に配設された複数のフォーマーセグメントと、該フォーマーセグメントが径方向外端側に取付けられると共に径方向内端側にローラが設けられた支持部材と、該支持部材を径方向へ往復動させて上記複数のフォーマーセグメントを拡縮させる拡縮手段とを具備し、さらに、上記複数のフォーマーセグメントを等しい径方向ストロークにて拡径させて、拡開状態にて上記複数のフォーマーセグメントの外面が連続円筒面状となるように構成し、上記拡縮手段が、上記シャフトに外嵌状に取付けられる筒体と、該筒体に軸方向往復動可能に外嵌されると共にそのテーパ面にて複数の上記支持部材の上記ローラを押圧して該支持部材を外径方向へ移動させるテーパコーンと、複数の上記支持部材に懸架されて各該支持部材を内径方向へ弾発付勢する弾性バンドと、を備え、上記筒体と上記テーパコーンとの間にエアー供給室を形成し、該エアー供給室内に供給するエアーの圧力を調整して、上記テーパコーンをエアーにより軸方向へ移動させて複数の上記支持部材を外径方向へ押圧する押圧力と、上記弾性バンドによる内径方向への弾発付勢力と、均衡させて、上記複数のフォーマーセグメントを中途拡開状態に保持可能に構成し、さらに、上記左右一対のフォーマー本体は、上記シャフトに一体回転可能に固着された固定側のフォーマー本体と、上記シャフトに一体回転可能かつ軸方向にスライド可能に取付けられた移動側のフォーマー本体と、から成り、上記移動側のフォーマー本体を上記固定側のフォーマー本体に接近・離間させてフォーマーの軸方向幅寸法を調節可能に構成したものである。
【0007】
また、各上記フォーマーセグメントの外面の軸方向外端に勾配面が設けられたものである。
【0008】
【発明の実施の形態】
以下、実施の形態を示す図面に基づき、本発明を詳説する。
【0009】
図1は、本発明に係るサイドウォール貼付フォーマーの実施の一形態を示す。
このサイドウォール貼付フォーマーは、回転可能なシャフト2に設けられた左右一対のフォーマー本体1,1を備える。図1と図2に示すように、各フォーマー本体1は、ラジアルエキスパンド式であり、周方向長さが大小2種類で交互に配設された複数のフォーマーセグメント3…(3a…,3b…)と、フォーマーセグメント3を外端側に取付けた支持部材4と、支持部材4…を径方向へ往復動させて複数のフォーマーセグメント3…を拡縮させる拡縮手段5と、を具備する。
【0010】
拡縮手段5は、軸方向外端に外鍔部6aを有する筒体6と、筒体6に軸方向往復動可能に外嵌されたテーパコーン7と、筒体6の軸方向内端に取付部材21を介して取付けられると共に周方向等ピッチで配設された複数の径方向ガイド部材8…と、各径方向ガイド部材8…に径方向スライド自在に取付けられた支持部材4…に懸架されて各支持部材4…を内径方向に弾発付勢する弾性バンド9と、を備える。なお、軸方向外端は左右一対のフォーマー本体1,1間の中央線Pに対して遠い方の端部であり、軸方向内端は中央線Pに対して近い方の端部であると定義する。
【0011】
テーパコーン7は、軸心孔を有すると共に軸方向内端側にテーパ面7aを有し、さらに軸方向外端側に凹部が形成されている。そして、テーパコーン7が筒体6に外嵌されることにより、テーパコーン7と筒体6との間にエアー供給室10が形成されている。そして、外部のエアー供給源からのエアーが図示省略のエアー流路を介してこのエアー供給室10に供給される。
【0012】
支持部材4は、その径方向内端側にテーパコーン7のテーパ面7aを転動するローラ11が設けられている。そして、この支持部材4の径方向外端に円弧板状のフォーマーセグメント3が着脱可能に取付けられている。本実施の形態では、中心角度60°で6個の支持部材4…が設けられ、周方向長さが大小2種類のフォーマーセグメント3a,3bが交互に6個の支持部材4…に取付けられている場合を例示している。
【0013】
周方向長さが長いフォーマーセグメント3aには、その円弧状内面の周方向端部に勾配面部12,12が形成されると共に、周方向長さが短いフォーマーセグメント3bには、その円弧状外面の周方向端部に勾配面部13,13が形成されており、各フォーマーセグメント3a…,3b…が互いに干渉せずスムースに拡縮動作できるものとしている。また、各フォーマーセグメント3の外面の軸方向外端(ショルダー部)には勾配面14が設けられている。即ち、拡径状態のフォーマー本体1に於て、その外周面のショルダー部はテーパ状とされている。
【0014】
なお、大小のフォーマーセグメント3a,3bは、各々所定の周方向長さM1 ,M2 に設定されると共に、その外面の曲率半径Rが、装着されるローカバーの内周面の曲率半径に略等しく設定され、かつ、所定の軸方向長さLに設定されている。
【0015】
ところで、図3に示すように、このサイドウォール貼付フォーマーは、その一方(左側)のフォーマー本体1(1a)がシャフト2の先端に一体回転可能に固着され、他方(右側)のフォーマー本体1(1b)は動力伝達機構15によってシャフト2に一体回転可能にかつスライド可能に取付けられている。
【0016】
この動力伝達機構15は、移動側のフォーマー本体1bの筒体6に連結されかつシャフト2にスライド可能に外嵌されたパイプ体16と、パイプ体16に設けられたキー17と、シャフト2に形成されたキー溝18と、軸受19を介してパイプ体16に外嵌された非回転部材20と、を備える。そして、図1と図3に示すように、例えばシリンダ等の往復動手段にて非回転部材20をシャフト2に沿って往復動させ、移動側のフォーマー本体1bを固定側のフォーマー本体1aに接近・離間させる(フォーマーを開閉する)ことにより、フォーマーの軸方向幅寸法Wを調節してローカバーの軸方向長さに対応することができる。なお、シャフト2を回転する駆動部は図示省略している。
【0017】
次に、フォーマー本体1の拡縮動作について説明する。図2と図4は、その上半部がフォーマーの拡開状態を示し、下半部がフォーマーの縮径状態を示している。拡径動作では、テーパコーン7の内部のエアー供給室10に所定圧のエアーが供給されることにより、テーパコーン7が弾性バンド9の弾発力に抗して軸方向(矢印A方向)へ取付部材21に当接するまで移動して各支持部材4…の内端のローラ11…を押圧し、それによってローラ11…がテーパコーン7のテーパ面7aを転動しつつ外径方向へ移動する。即ち、各支持部材4…及び各フォーマーセグメント3…が外径方向(矢印B方向)へ移動し、複数のフォーマーセグメント3…が拡径してその外面が連続円筒面状となった拡開状態となる。
【0018】
また、縮径動作では、テーパコーン7の内部のエアー供給室10からエアーが排出されることにより、弾性バンド9の弾発付勢力によって各支持部材4…のローラ11…がテーパ面7aを押圧してテーパコーン7が軸方向(矢印A′方向)へ移動し、それによって各支持部材4…が内径方向(矢印B′方向)へ移動して、複数のフォーマーセグメント3…が縮径した縮径状態となる。
【0019】
この拡縮動作では、各支持部材4…が等しい径方向ストロークにて移動する。即ち、複数のフォーマーセグメント3…は等しい径方向ストロークにて拡径・縮径する。このとき、大小のフォーマーセグメント3a,3bの周方向端部に各々勾配面部12,12,13,13を設けたことにより、複数のフォーマーセグメント3a…,3b…は互いに干渉することなくスムースにかつ比較的大きい径方向ストロークにて動作することができる。なお、左右一対のフォーマー本体1,1は同期的に拡縮動作する。
【0020】
また、このサイドウォール貼付フォーマーは、図5に示すように、テーパコーン7をエアーにより軸方向へ移動させて複数の支持部材4…を外径方向へ押圧する押圧力F1 と、弾性バンド9による内径方向への弾発付勢力F2 と、均衡させて、複数のフォーマーセグメント3…を中途拡開状態に保持可能としている。つまり、複数のフォーマーセグメント3…がローカバー30の内径よりもある程度小さい中途拡開状態となるときの弾性バンド9の収縮力に釣り合うよう、テーパコーン7内部のエアー供給室10に供給するエアーの圧力を調整する。このようにフォーマー本体1,1を中途拡開状態に保持することで、ローカバー30をフォーマーに容易に挿入セットすることができる。
【0021】
ところで、図6(イ)(ロ)に示すように、ローカバー30は、少なくともインナーライナー、カーカス32を貼付けた後にビード部材33,33をセットし、カーカス32をビード部材33,33周りに折り返して形成され、図6(ハ)に示す如く、このローカバー30を(本発明の)サイドウォール貼付フォーマーにセットしてサイドウォール31,31を貼付ける。
【0022】
このとき、図1と図7に示すように、フォーマー本体1の各フォーマーセグメント3…の外面の軸方向外端(ショルダー部)に勾配面14…が設けられているので、フォーマー本体1にセットされたローカバー30のビード折返部34がフラットになる。つまり、ローカバー30のビード折返部34は(エイペックス及びカーカス32の折り返し分等により)厚肉となっているが、この厚肉分を勾配面14にて逃がすことでビード折返部34の外周面(サイドウォール貼付面)を平坦にすることができる。従って、図6(ロ)(ハ)に示すサイドウォール貼付時に、サイドウォール31の幅方向左右端31a,31aの貼付周速度が等しくなって正確にローカバー30に貼付けることができ、自動ジョイント精度が向上する。かつ、フォーマー本体1,1がローカバー30の内径に対応する外径寸法に拡径して隙間無く保持するので、ローカバー30が滑りを生じること無くフォーマー本体1,1と一体回転し、サイドウォール自動カット時のカットバラツキを無くすことができる。
【0023】
図8は比較例を示し、仮に、各フォーマーセグメント3′…の外面の軸方向外端(ショルダー部)がフラットであると、フォーマー本体1′にセットされたローカバー30のビード折返部34は盛り上がって外周面(サイドウォール貼付面)がテーパ状となる。従って、サイドウォール貼付時に、サイドウォールの幅方向左右端に貼付周速度差が生じ、自動ジョイント精度が低下してしまう。
【0024】
なお、本発明は上述の実施の形態に限定されず、例えば、各種サイズ毎(周方向長さM1 ,M2 曲率半径R・軸方向長さL)にフォーマーセグメント3…を取り揃え、ローカバーのサイズ(径・軸方向長さ)に対応するサイズのフォーマーセグメント3…を選択して支持部材4…に付け替えるようにするも、好ましい。
【0025】
【発明の効果】
本発明は上述の如く構成されるので、次に記載する効果を奏する。
【0026】
(請求項1によれば)フォーマー本体1,1がローカバー30の内径に対応する外径寸法に拡径して隙間無く保持するので、サイドウォール貼付時にローカバー30が滑りを生じること無くフォーマー本体1,1と一体回転し、自動カット時のカットバラツキを無くすことができる。
また、複数のフォーマーセグメント3…は周方向長さが大小2種類から構成されるので、互いに干渉せずに拡縮動作することができ、大きな径方向ストロークも得やすいという利点がある。従って、各種サイズのタイヤカバーに対応可能である。
【0027】
(請求項2によれば)ローカバー30のセット時に於て、ローカバー30の厚肉のビード折返部34を各フォーマーセグメント3…の勾配面14…にて逃がし、ビード折返部34の外周面(サイドウォール貼付面)を平坦にすることができる。従って、サイドウォール貼付時にサイドウォール31の幅方向左右端31a,31aの貼付周速度が等しくなり、自動ジョイント精度が向上する。即ち、サイドウォール貼付精度がより一層向上する。
【0028】
(請求項によれば)拡縮手段5が簡素な構造となり、全体としてコンパクトにかつ低コストにて製作することができる。
(請求項によれば)フォーマー本体1,1を中途拡開状態に保持することにより、ローカバー30を容易に挿入セットすることができる。
【図面の簡単な説明】
【図1】 本発明に係るサイドウォール貼付フォーマーの実施の一形態を示す径方向から見た断面正面図である。
【図2】 拡開状態と縮径状態を示す軸方向から見た断面側面図である。
【図3】 左右のフォーマー本体が離間した状態を示す断面正面図である。
【図4】 拡開状態と縮径状態を示す要部断面正面図である。
【図5】 中途拡開状態を示す要部断面正面図である。
【図6】 ローカバーを形成してサイドウォールを貼付けるまでの工程を説明する説明図である。
【図7】 ローカバーをフォーマー本体にセットした状態を示す要部断面正面図である。
【図8】 比較例を示す要部断面正面図である。
【図9】 従来例を示す斜視図である。
【図10】 サイドウォール貼付時を示す作用説明図である。
【符号の説明】
1 フォーマー本体
シャフト
3 フォーマーセグメント
4 支持部材
5 拡縮手段
筒体
7 テーパコーン
7a テーパ面
9 弾性バンド
11 ローラ
14 勾配面
1 押圧力
2 弾発付勢力
軸方向幅寸法
[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a sidewall sticking former for manufacturing tires.
[0002]
[Prior art]
In the production of raw tires, the bead is set after affixing the inner liner, carcass, etc., the carcass is folded around the bead to form a raw cover (sometimes called a first cover), and then a sidewall is attached to the raw cover. is there.
[0003]
FIG. 9 shows a conventional sidewall pasting former. This side wall pasting former 40 includes a rotatable shaft 42 and a pair of left and right ring members 41, 41 provided on the shaft 42. As shown in FIG. It has a flat (same diameter) short cylindrical shape, and its outer diameter is set smaller than the inner diameter of the raw cover 30.
In the side wall affixing operation, the raw cover 30 is inserted and set in the former 40, the starting end of the side wall 44 is pressed against the outer peripheral surface of the raw cover 30 by the roller 45, and the low cover 30 is rotated by rotating the shaft 42 to rotate the side wall 44. Paste.
[0004]
[Problems to be solved by the invention]
However, since the low cover 30 is suspended in a point contact manner (as viewed from the axial direction) on the ring members 41 and 41, slip (rotational speed difference) occurs between the rotating ring members 41 and 41 and the low cover 30. This was the cause of cut variations during automatic cutting. Further, since the outer peripheral surface of the ring member 41 is flat in the axial direction, the bead folding portion 34 (see FIG. 8) of the raw cover 30 disposed on the outer end side in the axial direction of the ring member 41 rises and the side wall application surface becomes Due to the taper shape, there is a problem that a difference in peripheral speed of application occurs at the left and right ends in the width direction of the sidewall, resulting in a decrease in automatic joint accuracy.
[0005]
Then, an object of this invention is to provide the side wall sticking former which can stick a side wall to a low cover with high precision.
[0006]
[Means for Solving the Problems]
To achieve the above object, the sidewall affixed former according to the present invention includes a pair of left and right formers body provided rotatable shaft, each said former body, the circumferential length of two types magnitude a plurality of former segments, alternately disposed, a support member roller is provided radially inner end side together with the former segment is kicked mounted radially outer end side, the support member in the radial direction is reciprocated by and a scaling means for scaling the plurality of formers segment further by expanded the plurality of formers segments at equal radial stroke, the plurality of formers in expanded state configured as the outer surface of the segment is a continuous cylindrical surface, said scaling means comprises a cylindrical body attached to the outer fitting shape to the shaft, axially reciprocally in the tubular member A taper cone that is fitted and presses the rollers of the plurality of support members at its tapered surface to move the support members in the outer diameter direction, and is suspended on the plurality of support members to move the support members in the inner diameter direction. An elastic band for elastically energizing the tape, forming an air supply chamber between the cylindrical body and the taper cone, adjusting the pressure of the air supplied to the air supply chamber, and The plurality of former segments are expanded in a balanced manner by balancing the pressing force that moves in the axial direction and presses the plurality of support members in the outer diameter direction and the elastic biasing force in the inner diameter direction by the elastic band. Further, the pair of left and right former bodies are configured to be fixed to the shaft so as to be integrally rotatable with the shaft, and can be integrally rotated with the shaft. A former body of the movable mounted slidably in a direction, consist, and the former body of the movable adjustably configure the axial width of the former is brought closer to and away from the former body of the fixed-side Is.
[0007]
Also, Ru der which inclined surface is provided in the axially outer end of the outer surface of each said former segments.
[0008]
DETAILED DESCRIPTION OF THE INVENTION
Hereinafter, the present invention will be described in detail with reference to the drawings illustrating embodiments.
[0009]
FIG. 1 shows an embodiment of a sidewall sticking former according to the present invention.
This side wall sticking former includes a pair of left and right former bodies 1, 1 provided on a rotatable shaft 2. As shown in FIG. 1 and FIG. 2, each former body 1 is a radial expanding type, and a plurality of former segments 3 (3a,... 3b,. ), And a support member 4 having the former segment 3 attached to the outer end side, and expansion / contraction means 5 for expanding / contracting the plurality of former segments 3 by reciprocating the support members 4 in the radial direction.
[0010]
The expansion / contraction means 5 includes a cylindrical body 6 having an outer flange portion 6a at the outer end in the axial direction, a tapered cone 7 that is externally fitted to the cylindrical body 6 so as to be capable of reciprocating in the axial direction, and an attachment member at the inner end in the axial direction of the cylindrical body 6 A plurality of radial guide members 8 which are attached via 21 and arranged at equal circumferential pitches, and are supported by support members 4 which are slidably attached to the respective radial guide members 8. And an elastic band 9 that elastically urges each support member 4 in the inner diameter direction. The outer end in the axial direction is the end far from the center line P between the pair of left and right former bodies 1, 1, and the inner end in the axial direction is the end closer to the center line P. Define.
[0011]
The tapered cone 7 has an axial hole, a tapered surface 7a on the inner end side in the axial direction, and a recess formed on the outer end side in the axial direction. The taper cone 7 is externally fitted to the cylindrical body 6, whereby an air supply chamber 10 is formed between the tapered cone 7 and the cylindrical body 6. Then, air from an external air supply source is supplied to the air supply chamber 10 via an air flow path (not shown).
[0012]
The support member 4 is provided with a roller 11 that rolls on the tapered surface 7a of the tapered cone 7 on the radially inner end side. An arc plate-shaped former segment 3 is detachably attached to the outer end of the support member 4 in the radial direction. In the present embodiment, six support members 4 are provided at a central angle of 60 °, and two types of former segments 3a and 3b having large and small circumferential lengths are alternately attached to the six support members 4. The case is shown as an example.
[0013]
In the former segment 3a having a long circumferential length, gradient surface portions 12 and 12 are formed at the circumferential ends of the arcuate inner surface, and in the former segment 3b having a short circumferential length, the arcuate shape is formed. Gradient surface portions 13 and 13 are formed at the circumferential end portions of the outer surface, and the former segments 3a... 3b. In addition, a slope surface 14 is provided at the axial outer end (shoulder portion) of the outer surface of each former segment 3. That is, in the former body 1 in the expanded diameter state, the shoulder portion on the outer peripheral surface thereof is tapered.
[0014]
The large and small former segments 3a and 3b are set to predetermined circumferential lengths M 1 and M 2 , respectively, and the curvature radius R of the outer surface thereof is set to the curvature radius of the inner circumferential surface of the mounted low cover. It is set to be approximately equal and set to a predetermined axial length L.
[0015]
By the way, as shown in FIG. 3, this side wall pasting former has one (left side) former body 1 (1a) fixed to the tip of the shaft 2 so as to be integrally rotatable, and the other (right side) former body 1 ( 1b) is attached to the shaft 2 by a power transmission mechanism 15 so as to be integrally rotatable and slidable.
[0016]
This power transmission mechanism 15 is connected to the cylinder 6 of the former body 1b on the moving side and is slidably fitted to the shaft 2; a key 17 provided on the pipe body 16; The formed keyway 18 and a non-rotating member 20 that is externally fitted to the pipe body 16 via a bearing 19 are provided. Then, as shown in FIGS. 1 and 3, the non-rotating member 20 is reciprocated along the shaft 2 by reciprocating means such as a cylinder, for example, so that the moving former body 1b approaches the fixed former body 1a. -By separating (opening and closing the former), the axial width W of the former can be adjusted to correspond to the axial length of the raw cover. In addition, the drive part which rotates the shaft 2 is abbreviate | omitting illustration.
[0017]
Next, the expansion / contraction operation of the former body 1 will be described. 2 and 4, the upper half shows the expanded state of the former, and the lower half shows the reduced diameter state of the former. In the diameter expansion operation, a predetermined pressure of air is supplied to the air supply chamber 10 inside the taper cone 7, so that the taper cone 7 resists the elastic force of the elastic band 9 in the axial direction (arrow A direction). The roller 11 is moved until it abuts against the roller 21 and presses the rollers 11 at the inner ends of the support members 4. As a result, the rollers 11 move in the outer diameter direction while rolling on the tapered surface 7 a of the tapered cone 7. That is, the support members 4 and the former segments 3 move in the outer diameter direction (arrow B direction), the plurality of former segments 3 increase in diameter, and the outer surface becomes a continuous cylindrical surface. Opened.
[0018]
Further, in the diameter reduction operation, air is discharged from the air supply chamber 10 inside the taper cone 7, so that the rollers 11 of the support members 4 press the taper surface 7 a by the elastic urging force of the elastic band 9. The taper cone 7 is moved in the axial direction (arrow A ′ direction), whereby each support member 4 is moved in the inner diameter direction (arrow B ′ direction), and the plurality of former segments 3 are reduced in diameter. It becomes a state.
[0019]
In this expansion / contraction operation, each support member 4... Moves with the same radial stroke. That is, the plurality of former segments 3 are expanded and contracted with the same radial stroke. At this time, by providing the inclined surface portions 12, 12, 13, 13 at the circumferential ends of the large and small former segments 3a, 3b, the plurality of former segments 3a,. And with a relatively large radial stroke. Note that the pair of left and right former bodies 1 and 1 perform expansion / contraction operations synchronously.
[0020]
Further, as shown in FIG. 5, this sidewall sticking former is formed by a pressing force F 1 that moves the taper cone 7 in the axial direction by air and presses the plurality of support members 4. A plurality of former segments 3 can be maintained in an intermediately expanded state in balance with the elastic biasing force F 2 in the inner diameter direction. That is, the pressure of the air supplied to the air supply chamber 10 inside the taper cone 7 so as to balance the contraction force of the elastic band 9 when the plurality of former segments 3 are in a partially expanded state that is somewhat smaller than the inner diameter of the raw cover 30. Adjust. By holding the former bodies 1 and 1 in the middle expanded state in this way, the low cover 30 can be easily inserted and set in the former.
[0021]
By the way, as shown in FIGS. 6A and 6B, the low cover 30 has at least the inner liner and the carcass 32 attached, and then the bead members 33 and 33 are set, and the carcass 32 is folded around the bead members 33 and 33. As shown in FIG. 6 (c), the raw cover 30 is set on the side wall application former (of the present invention) and the side walls 31, 31 are attached.
[0022]
At this time, as shown in FIG. 1 and FIG. 7, since the slope surface 14 is provided at the axial outer end (shoulder portion) of the outer surface of each of the former segments 3 of the former body 1, the former body 1 The bead folding portion 34 of the set low cover 30 becomes flat. In other words, the bead folding portion 34 of the low cover 30 is thick (due to the folding portion of the apex and carcass 32, etc.), but the outer circumferential surface of the bead folding portion 34 is escaped by the slope 14. (Side wall sticking surface) can be made flat. Accordingly, when the sidewalls shown in FIGS. 6 (b) and 6 (c) are pasted, the circumferential speeds of the left and right edges 31a and 31a of the sidewall 31 are equal and can be accurately pasted to the raw cover 30, and automatic joint accuracy Will improve. In addition, the former body 1, 1 expands to an outer diameter corresponding to the inner diameter of the raw cover 30 and holds without gaps, so the raw cover 30 rotates integrally with the former main body 1, 1 without slipping, and the sidewall automatic Cut variation at the time of cutting can be eliminated.
[0023]
FIG. 8 shows a comparative example. If the outer end (shoulder portion) of the outer surface of each former segment 3 ′ is flat, the bead folding portion 34 of the low cover 30 set on the former body 1 ′ It rises and the outer peripheral surface (sidewall sticking surface) becomes tapered. Therefore, when the sidewall is applied, a difference in the peripheral speed of the application occurs at the left and right ends in the width direction of the sidewall, and the automatic joint accuracy is reduced.
[0024]
The present invention is not limited to the above-described embodiment. For example, the former segments 3 are prepared for various sizes (circumferential length M 1 , M 2 radius of curvature R and axial length L). It is also preferable to select the former segments 3 of a size corresponding to the size (diameter and axial length) and replace them with the support members 4.
[0025]
【The invention's effect】
Since the present invention is configured as described above, the following effects can be obtained.
[0026]
(According to claim 1) Since the former main bodies 1 and 1 are expanded to the outer diameter corresponding to the inner diameter of the raw cover 30 and are held without any gaps, the former main body 1 is free from slippage when the raw cover 30 is applied. , 1 can be rotated integrally with each other and cut variations during automatic cutting can be eliminated.
Further, since the plurality of former segments 3 are composed of two kinds of sizes in the circumferential direction, there is an advantage that they can be expanded / contracted without interfering with each other and a large radial stroke can be easily obtained. Therefore, it can respond to tire covers of various sizes.
[0027]
(According to claim 2) When the raw cover 30 is set, the thick bead folding part 34 of the raw cover 30 is escaped by the slope surface 14 of each former segment 3 ... and the outer peripheral surface of the bead folding part 34 ( Sidewall sticking surface) can be made flat. Therefore, when the side walls are applied, the peripheral speeds of the left and right ends 31a, 31a in the width direction of the side walls 31 become equal, and the automatic joint accuracy is improved. That is, the side wall sticking accuracy is further improved.
[0028]
(According to claim 1 ) The expansion / contraction means 5 has a simple structure, and can be manufactured compactly and at low cost as a whole.
(According to claim 1 ) By holding the former main bodies 1 and 1 in the halfway expanded state, the low cover 30 can be easily inserted and set.
[Brief description of the drawings]
FIG. 1 is a cross-sectional front view seen from a radial direction showing an embodiment of a sidewall sticking former according to the present invention.
FIG. 2 is a cross-sectional side view seen from the axial direction showing an expanded state and a reduced diameter state.
FIG. 3 is a cross-sectional front view showing a state in which left and right former bodies are separated from each other.
FIG. 4 is a cross-sectional front view of an essential part showing an expanded state and a reduced diameter state.
FIG. 5 is a cross-sectional front view of an essential part showing a halfway expanded state.
FIG. 6 is an explanatory diagram illustrating a process from forming a raw cover to attaching a sidewall.
FIG. 7 is a cross-sectional front view of an essential part showing a state where a raw cover is set on a former body.
FIG. 8 is a cross-sectional front view of an essential part showing a comparative example.
FIG. 9 is a perspective view showing a conventional example.
FIG. 10 is an operation explanatory diagram showing when a sidewall is attached.
[Explanation of symbols]
1 Former body
2 shaft 3 former segment 4 support member 5 expansion / contraction means
6 cylinder 7 taper cone 7a taper surface 9 elastic band
11 rollers
14 gradient surface F 1 pressing force F 2 resiliently urging force
W axis width

Claims (2)

回転可能なシャフト(2)に設けられた左右一対のフォーマー本体(1)(1)を備え、各上記フォーマー本体(1)が、周方向長さが大小2種類で交互に配設された複数のフォーマーセグメント(3)…と、該フォーマーセグメント(3)が径方向外端側に取付けられると共に径方向内端側にローラ(11)が設けられた支持部材(4)と、該支持部材(4)…を径方向へ往復動させて上記複数のフォーマーセグメント(3)…を拡縮させる拡縮手段(5)とを具備し、さらに、上記複数のフォーマーセグメント(3)…を等しい径方向ストロークにて拡径させて、拡開状態にて上記複数のフォーマーセグメント(3)…の外面が連続円筒面状となるように構成し
上記拡縮手段(5)が、上記シャフト(2)に外嵌状に取付けられる筒体(6)と、該筒体(6)に軸方向往復動可能に外嵌されると共にそのテーパ面(7a)にて複数の上記支持部材(4)…の上記ローラ(11)を押圧して該支持部材(4)を外径方向へ移動させるテーパコーン(7)と、複数の上記支持部材(4)…に懸架されて各該支持部材(4)を内径方向へ弾発付勢する弾性バンド(9)と、を備え、
上記筒体(6)と上記テーパコーン(7)との間にエアー供給室(10)を形成し、該エアー供給室(10)内に供給するエアーの圧力を調整して、上記テーパコーン(7)をエアーにより軸方向へ移動させて複数の上記支持部材(4)…を外径方向へ押圧する押圧力(F 1 )と、上記弾性バンド(9)による内径方向への弾発付勢力(F 2 )と、均衡させて、上記複数のフォーマーセグメント(3)…を中途拡開状態に保持可能に構成し、
さらに、上記左右一対のフォーマー本体(1)(1)は、上記シャフト(2)に一体回転可能に固着された固定側のフォーマー本体(1)と、上記シャフト(2)に一体回転可能かつ軸方向にスライド可能に取付けられた移動側のフォーマー本体(1)と、から成り、
上記移動側のフォーマー本体(1)を上記固定側のフォーマー本体(1)に接近・離間させてフォーマーの軸方向幅寸法(W)を調節可能に構成したことを特徴とするサイドウォール貼付フォーマー。
Comprising a mounted on a rotatable shaft (2) pair of the former body (1) (1), each of the former body (1) is, the circumferential length are disposed alternately in two large and small plurality the former segment (3) ..., and the support member (4) in the radial inner end side roller (11) provided with the former segment (3) is kicked mounted radially outer end side, the the support member (4) ... by reciprocating in the radial direction and a plurality of former segment (3) ... scaling means for scaling the (5), further, the plurality of formers segment (3) ... a equal by diameter at radial stroke, constituted by expanded state as the plurality of formers segment (3) ... outer surface of a continuous cylindrical surface,
The expansion / contraction means (5) is externally fitted on the shaft (2) so as to be fitted on the shaft (2), and is externally fitted on the cylindrical body (6) so as to be capable of reciprocating in the axial direction. ) Presses the rollers (11) of the plurality of support members (4) to move the support members (4) in the outer diameter direction, and the plurality of support members (4). An elastic band (9) that is suspended on the elastic member and elastically urges each support member (4) in the inner diameter direction,
An air supply chamber (10) is formed between the cylindrical body (6) and the taper cone (7), and the pressure of the air supplied into the air supply chamber (10) is adjusted, so that the taper cone (7) Is moved in the axial direction by air, and a pressing force (F 1 ) for pressing the plurality of support members (4)... In the outer diameter direction, and an elastic urging force (F ) in the inner diameter direction by the elastic band (9). 2 ) and in balance, the plurality of former segments (3)...
Further, the pair of left and right former bodies (1) and (1) includes a fixed-side former body (1) fixed to the shaft (2) so as to be integrally rotatable, and a shaft and a shaft that are integrally rotatable with the shaft (2). A moving-side former body (1) slidably mounted in a direction,
A side wall sticking former characterized in that the former body (1) on the moving side is moved closer to and away from the former body (1) on the fixed side to adjust the axial width dimension (W) of the former. .
上記フォーマーセグメント(3)の外面の軸方向外端に勾配面(14)が設けられた請求項1記載のサイドウォール貼付フォーマー。Each said former segments (3) sidewall affixed former of claim 1, wherein the inclined surface axially outer end (14) is provided on the outer surface of the.
JP2001150410A 2001-05-21 2001-05-21 Sidewall pasting former Expired - Fee Related JP4704602B2 (en)

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CN103317629A (en) * 2012-03-18 2013-09-25 刘志民 Method for molding tyre by combined type internal mould
JP5767610B2 (en) * 2012-07-02 2015-08-19 住友ゴム工業株式会社 Tire molding drum
JP7067359B2 (en) * 2018-08-20 2022-05-16 住友ゴム工業株式会社 Tire molding former and tire manufacturing method
US20210187887A1 (en) * 2019-12-20 2021-06-24 The Goodyear Tire & Rubber Company Tire building drum and method of building a tire

Citations (3)

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Publication number Priority date Publication date Assignee Title
JPS63134228A (en) * 1986-11-26 1988-06-06 Ohtsu Tire & Rubber Co Ltd Tire molding drum device
JPH03187728A (en) * 1989-12-18 1991-08-15 Sumitomo Rubber Ind Ltd Former for molding of tire
JPH03224728A (en) * 1989-12-04 1991-10-03 Sumitomo Rubber Ind Ltd Drum for sticking tire constituting material

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS63134228A (en) * 1986-11-26 1988-06-06 Ohtsu Tire & Rubber Co Ltd Tire molding drum device
JPH03224728A (en) * 1989-12-04 1991-10-03 Sumitomo Rubber Ind Ltd Drum for sticking tire constituting material
JPH03187728A (en) * 1989-12-18 1991-08-15 Sumitomo Rubber Ind Ltd Former for molding of tire

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