JP2003011245A - Method for detecting degree of joint of tread ring and inspection device - Google Patents
Method for detecting degree of joint of tread ring and inspection deviceInfo
- Publication number
- JP2003011245A JP2003011245A JP2001205104A JP2001205104A JP2003011245A JP 2003011245 A JP2003011245 A JP 2003011245A JP 2001205104 A JP2001205104 A JP 2001205104A JP 2001205104 A JP2001205104 A JP 2001205104A JP 2003011245 A JP2003011245 A JP 2003011245A
- Authority
- JP
- Japan
- Prior art keywords
- rubber sheet
- cutting
- tread
- tread ring
- length
- 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.)
- Granted
Links
- 238000000034 method Methods 0.000 title claims description 6
- 238000007689 inspection Methods 0.000 title 1
- 238000005520 cutting process Methods 0.000 claims abstract description 71
- 238000000465 moulding Methods 0.000 claims abstract description 12
- 238000004804 winding Methods 0.000 claims abstract description 10
- 238000005304 joining Methods 0.000 claims abstract description 3
- 238000012795 verification Methods 0.000 claims description 11
- 230000002950 deficient Effects 0.000 claims description 6
- 238000010998 test method Methods 0.000 claims description 6
- 238000011144 upstream manufacturing Methods 0.000 claims description 6
- 238000012360 testing method Methods 0.000 claims description 3
- 230000003247 decreasing effect Effects 0.000 claims 1
- 238000004513 sizing Methods 0.000 claims 1
- 230000002093 peripheral effect Effects 0.000 abstract 1
- 238000012545 processing Methods 0.000 description 5
- 238000010586 diagram Methods 0.000 description 3
- 238000003860 storage Methods 0.000 description 3
- 239000003550 marker Substances 0.000 description 2
- 238000013459 approach Methods 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 230000008602 contraction Effects 0.000 description 1
- 230000007547 defect Effects 0.000 description 1
- 238000006073 displacement reaction Methods 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000001125 extrusion Methods 0.000 description 1
- 238000005286 illumination Methods 0.000 description 1
- 230000001771 impaired effect Effects 0.000 description 1
- 238000004519 manufacturing process Methods 0.000 description 1
- 238000005259 measurement Methods 0.000 description 1
- 238000003825 pressing Methods 0.000 description 1
Landscapes
- Tyre Moulding (AREA)
Abstract
Description
【0001】[0001]
【発明の属する技術分野】本発明は、定寸切りしたトレ
ッドゴムシートの切断面を互いに突き合わせてジョイン
トし、環状のトレッドリングを形成する際のジョイント
量を検定するトレッドリングのジョイント量検定方法、
及び検定装置に関する。BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a tread ring joint amount test method for testing the joint amount when the cut surfaces of tread rubber sheets that have been cut into a constant size are butted against each other and jointed to form an annular tread ring,
And the verification device.
【0002】[0002]
【従来の技術】タイヤ製造工程では、図8(A)に示す
ように、定寸切りしたトレッドゴムシートaを成形ドラ
ム上で巻回し、かつその切断面a1、a2を互いに突き
合わせてジョイントすることにより環状のトレッドリン
グを形成している。この時、ジョイント部jでの接合強
度を高めるために、トレッドゴムシートaの両端は、長
さ方向の垂直面内において剣先状に傾斜して切断されて
いる。2. Description of the Related Art In a tire manufacturing process, as shown in FIG. 8 (A), a tread rubber sheet a, which has been cut to a certain size, is wound around a molding drum, and cut surfaces a1 and a2 thereof are butted against each other and joined. To form an annular tread ring. At this time, both ends of the tread rubber sheet a are cut so as to be inclined like a sword in a vertical plane in the longitudinal direction in order to increase the joint strength at the joint j.
【0003】しかし係る場合においても、例えばトレッ
ドゴムシートaの長さバラツキ等に起因してジョイント
量が不足した場合(図8(B)に示す)には、ジョイン
ト部jでの厚さ及び接合面積が減じるなど充分な強度が
確保できなくなる。逆にジョイント量が過多の場合(図
8(C)に示す)には、ジョイント部jでの厚さが局部
的に増加するなどユニフォミティーに不利となる。However, even in such a case, when the joint amount is insufficient due to the variation in the length of the tread rubber sheet a (shown in FIG. 8 (B)), the thickness and joint at the joint j It will not be possible to secure sufficient strength such as the area being reduced. On the contrary, when the joint amount is excessive (shown in FIG. 8C), the thickness at the joint j is locally increased, which is disadvantageous to the uniformity.
【0004】そこで、このジョイント量が適正かどうか
を判断するために、従来、例えばレーザ変位計等を用
い、ジョイント部j表面の凹凸状態を測定する方法がと
られている。Therefore, in order to determine whether or not this joint amount is appropriate, a method of measuring the unevenness of the surface of the joint j using a laser displacement meter or the like has been conventionally used.
【0005】[0005]
【発明が解決しようとする課題】しかしながら、この方
法では、前記凹凸の変動が小さいため、測定誤差が大き
くなり、その結果、ジョイント量の判定精度や信頼性を
充分に確保できないという問題があった。However, this method has a problem that the fluctuation of the unevenness is small and thus the measurement error is large, and as a result, the accuracy and reliability of the determination of the joint amount cannot be sufficiently secured. .
【0006】そこで本発明は、構成が簡易であり、かつ
ジョイント量の判定を精度良くかつ信頼性高く行いうる
トレッドリングのジョイント量検定方法、及び検定装置
の提供を目的としている。Therefore, an object of the present invention is to provide a tread ring joint amount verification method and a verification device, which have a simple structure and can judge the joint amount with high accuracy and reliability.
【0007】[0007]
【課題を解決するための手段】前記目的を達成するため
に、請求項1である第1発明は、押出し機から連続的に
押し出される帯状のトレッドゴムシートを切断した定寸
切りのゴムシート片を、成形ドラム上で巻回しかつ切断
面を互いに突き合わせてジョイントしたトレッドリング
のジョイント量を検定するトレッドリングのジョイント
量検定方法であって、前記押出し機から押出される帯状
のトレッドゴムシートを切断装置により、長さ方向の垂
直面内で傾斜して切断した定寸切りのゴムシート片を成
形ドラム上で巻回し、かつ両切断面を互いに突き合わせ
てジョイントすることによりトレッドリングを形成する
一方、前記切断とともに、切断される押出機側のトレッ
ドゴムシートに切断面上端から長さ方向に距離Aを隔て
る第1の切断マークMaと、切断されるゴムシート片に
切断面上端から長さ方向に距離Bを隔てる第2の切断マ
ークMbとを付すとともに、前記トレッドリングにおけ
る前記第1,2の切断マークMa’、Mb’間の周方向
長さCを測定し、かつ前記距離A,Bにより定めた基準
長さSと、前記長さCとの差S−Cが規定範囲のとき良
品の判定をすることを特徴としている。In order to achieve the above-mentioned object, the first aspect of the present invention, which is claim 1, is a rubber sheet piece of a fixed size obtained by cutting a strip-shaped tread rubber sheet continuously extruded from an extruder. Is a joint amount verification method of a tread ring which is wound on a molding drum and which tests the joint amount of tread rings jointed by abutting cut surfaces against each other, wherein a belt-shaped tread rubber sheet extruded from the extruder is cut. By the device, a tread ring is formed by winding a fixed-size slicing rubber sheet piece inclined and cut in a vertical plane in the length direction on a forming drum, and forming a tread ring by abutting both cut surfaces and joining them. At the same time as the cutting, a first cutting mar that separates a distance A in the length direction from the upper end of the cutting surface on the tread rubber sheet on the extruder side to be cut. Ma and a second cutting mark Mb which is separated from the upper end of the cutting surface by a distance B in the length direction from the upper end of the cutting surface, and the first and second cutting marks Ma ′, Mb ′ on the tread ring are provided. It is characterized in that the circumferential length C between them is measured, and when the difference SC between the reference length S determined by the distances A and B and the length C is within a specified range, it is judged as a non-defective product. There is.
【0008】又請求項5である第2発明は、トレッドリ
ングのジョイント量検定装置であって、前記押出し機か
ら押出される帯状のトレッドゴムシートを長さ方向の垂
直面内で傾斜して定寸切りする切断装置と、定寸切りの
ゴムシート片を巻回し、かつ両切断面を互いに突き合わ
せてジョイントすることによりトレッドリングを形成す
る成形ドラムとを具える一方、前記切断とともに、切断
される押出機側のトレッドゴムシートに切断面上端から
長さ方向に距離Aを隔てる第1の切断マークMaと、切
断されるゴムシート片側に切断面上端から距離Bを隔て
る第2の切断マークMbとを付すマーク付け手段と、前
記トレッドリングにおける前記第1,2の切断マークM
a’、Mb’間の周方向長さCを測定する測定手段と、
前記距離A,Bにより定めた基準長さSと、前記長さC
との差S−Cが規定範囲のとき良品の判定をする判断手
段とを設けたことを特徴としている。A second aspect of the present invention is a joint amount verification device for a tread ring, wherein a belt-shaped tread rubber sheet extruded from the extruder is tilted in a vertical plane in the longitudinal direction. A cutting device for slicing and a molding drum for forming a tread ring by winding a piece of rubber sheet of a fixed size and jointing the cut surfaces with each other are sewn together with the cutting. The tread rubber sheet on the extruder side has a first cutting mark Ma that is separated from the upper end of the cutting surface by a distance A in the length direction, and a second cutting mark Mb that is separated from the upper end of the cutting surface by a distance B on one side of the rubber sheet to be cut. And a first marking mark M on the tread ring.
measuring means for measuring the circumferential length C between a'and Mb ',
The reference length S determined by the distances A and B and the length C
And a determination means for determining a non-defective product when the difference S-C from the specified range is within a specified range.
【0009】[0009]
【発明の実施の形態】以下、本願の第1発明であるトレ
ッドリングのジョイント量検定方法の実施の一形態を、
第2発明であるトレッドリングのジョイント量検定装置
の実施の一形態とともに、図示例を用いて説明する。BEST MODE FOR CARRYING OUT THE INVENTION An embodiment of a tread ring joint amount test method, which is the first invention of the present application, will be described below.
A tread ring joint amount verification device according to a second aspect of the present invention will be described with reference to an illustrated example together with an embodiment.
【0010】図1において、トレッドリングのジョイン
ト量検定装置1(以下検定装置1という)は、押出し機
2から押出される帯状のトレッドゴムシートGを定寸切
りする切断装置3と、定寸切りのゴムシート片GAを巻
回してトレッドリングGBを形成する成形ドラム4と、
前記切断とともにトレッドゴムシートGに第1、第2の
切断マークMa、Mbを付すマーク付け手段5と、前記
トレッドリングGBにおける前記第1,2の切断マーク
Ma、Mb間の周方向長さCを測定する測定手段6とを
具えている。In FIG. 1, a tread ring joint amount verification device 1 (hereinafter referred to as a verification device 1) comprises a cutting device 3 for cutting a strip-shaped tread rubber sheet G extruded from an extruder 2 and a constant cutting device. A molding drum 4 for winding the rubber sheet piece GA to form a tread ring GB,
Marking means 5 for attaching first and second cutting marks Ma, Mb to the tread rubber sheet G along with the cutting, and a circumferential length C between the first and second cutting marks Ma, Mb in the tread ring GB. And a measuring means 6 for measuring
【0011】なお、前記押出し機2には、本例では、ス
クリュー式の押出機本体の前端に、ゴムを所定の断面形
状に成形して連続的に押出すヘッド2Aを設けた周知構
造のものが使用される。In the present embodiment, the extruder 2 has a well-known structure in which a screw type extruder main body is provided at the front end thereof with a head 2A for molding rubber into a predetermined sectional shape and continuously extruding it. Is used.
【0012】又この押出し機2からのトレッドゴムシー
トGは、アキュームレータ10およびサービサ11をへ
て前記成形ドラム4に供給されるように構成される。Further, the tread rubber sheet G from the extruder 2 is constructed so as to be supplied to the forming drum 4 through the accumulator 10 and the servicer 11.
【0013】前記アキュームレータ10は、前記押出し
機2からのトレッドゴムシートGをU字状に垂下せし
め、一時的に貯留させる貯留部10Aを有する。この貯
留部10Aは、周知の如く、上流側でのトレッドゴムシ
ートGの動き(速度やタイミングを含む)と下流側での
動きの差を吸収して、円滑な動作を達成するものであ
り、例えば図6(A)〜(E)に、貯留量の変遷が示さ
れている。The accumulator 10 has a storage portion 10A for suspending the tread rubber sheet G from the extruder 2 in a U shape and temporarily storing it. As is well known, the storage section 10A absorbs a difference between the movement (including speed and timing) of the tread rubber sheet G on the upstream side and the movement on the downstream side to achieve a smooth operation. For example, FIGS. 6A to 6E show changes in the storage amount.
【0014】次に、前記サービサ11は、前記アキュー
ムレータ10からのトレッドゴムシートGを受け取って
搬送する第1のコンベヤ部11Aと、この第1のコンベ
ヤ部11Aに切断装置3を介して乗り継ぎ自在に配さ
れ、定寸切りされたゴムシート片GAを成形ドラム4ま
で搬送しかつ貼り付けする第2のコンベヤ部11Bとか
ら形成される。Next, the servicer 11 receives the tread rubber sheet G from the accumulator 10 and conveys it to the first conveyor portion 11A via the cutting device 3 so as to be freely connectable to the first conveyor portion 11A. And a second conveyor section 11B which conveys and affixes the cut and cut rubber sheet pieces GA to the forming drum 4.
【0015】前記第1のコンベヤ部11Aは、ベルトコ
ンベヤであって、トレッドゴムシートGを、所定長さ毎
に間欠送りする制御手段によって制御される。この第1
のコンベヤ部11Aは、本例では、例えば駆動モータm
1の回転数をエンコーダにより検出する、或いはコンベ
ヤベルトに接して転動するローラの回転数をエンコーダ
により検出する等の検出手段を具え、これによって前記
第1のコンベヤ部11Aから第2のコンベヤ部11Bへ
のトレッドゴムシートGの送り出し長さL1が、即ち、
トレッドゴムシートGが切断装置3の上流側から下流側
に送られる送り長さL1が計測される。The first conveyor section 11A is a belt conveyor, and is controlled by a control means for intermittently feeding the tread rubber sheet G every predetermined length. This first
In this example, the conveyor section 11A of the
The number of rotations of 1 is detected by an encoder, or the number of rotations of a roller that rolls in contact with a conveyor belt is detected by an encoder, whereby the first conveyor section 11A to the second conveyor section are provided. The feeding length L1 of the tread rubber sheet G to 11B is
The feed length L1 at which the tread rubber sheet G is fed from the upstream side to the downstream side of the cutting device 3 is measured.
【0016】又前記第2のコンベヤ部11Bは、架台1
2上の枢着点Kで上流側端が枢支され、この枢着点K廻
りで上下に傾動しうるコンベヤ本体13を具える。この
コンベヤ本体13は、ベルトコンベヤからなり、前記架
台12の例えば側面に取り付くシリンダ15のロッド上
端に連結され、該ロッドの伸縮動作によって、先端が成
形ドラム4に近づきゴムシート片GAを貼着する位置
と、前記成形ドラム4から離間して待機する位置との間
で傾動する。Further, the second conveyor section 11B includes a gantry 1
The upstream end is pivotally supported at a pivot point K on the upper end of the conveyor 2, and a conveyor main body 13 that can tilt up and down around the pivot point K is provided. The conveyor main body 13 is composed of a belt conveyor, and is connected to the upper end of a rod of a cylinder 15 attached to, for example, a side surface of the gantry 12. By the expansion / contraction operation of the rod, the tip approaches the molding drum 4 and the rubber sheet piece GA is attached. It tilts between a position and a position where it stands apart from the molding drum 4.
【0017】そして、前記第1、第2のコンベヤ部11
A、11Bの間の乗り継ぎ位置に、前記切断装置3と、
マーク付け手段5とを設けている。Then, the first and second conveyor sections 11
At the connecting position between A and 11B, the cutting device 3 and
Marking means 5 is provided.
【0018】前記切断装置3は、図2に拡大して示すよ
うに、トレッドゴムシートGの上方で巾方向に移動自在
な走行台16と、その下面に取り付き走行台16ととも
に一体移動する超音波カッタ17とを具える。前記走行
台16は、本例では、水平に架設されるネジ軸19Aに
螺合するネジ孔16A、及び前記ネジ軸19Aと平行な
ガイド軸19Bに案内されるガイド孔16Bを具える。
そして、駆動モータm2によるネジ軸19Aの回転動作
によって、前記走行台16は巾方向に往復移動しうる。As shown in the enlarged view of FIG. 2, the cutting device 3 has a traveling base 16 which is movable in the width direction above the tread rubber sheet G, and an ultrasonic wave which moves integrally with the mounting traveling base 16 on the lower surface thereof. It includes a cutter 17. In the present example, the traveling table 16 includes a screw hole 16A screwed into a horizontally extending screw shaft 19A, and a guide hole 16B guided by a guide shaft 19B parallel to the screw shaft 19A.
Then, the traveling base 16 can reciprocate in the width direction by the rotation operation of the screw shaft 19A by the drive motor m2.
【0019】又前記超音波カッタ17は周知構造をな
し、コンベヤ部11A、11Bの間の切断位置で、トレ
ッドゴムシートGを剣先状に傾斜して切断する。なお傾
斜角度は調整可能である。Further, the ultrasonic cutter 17 has a well-known structure, and cuts the tread rubber sheet G at a cutting position between the conveyor portions 11A and 11B while inclining it in a sword-like shape. The tilt angle can be adjusted.
【0020】又前記マーク付け手段5は、切断ととも
に、切断される押出し機2側のトレッドゴムシートG、
及び切断されるゴムシート片GAに、ぞれぞれ目印であ
る第1、第2の切断マークMa、Mbを形成する。ここ
で、前記「切断とともに」とは、切断のためにコンベヤ
部11A、11Bが停止した状態であるならば、切断中
だけでなく、切断前或いは切断後であっても良い。しか
し、切断後は、トレッドゴムシートGの前端やゴムシー
ト片GAの後端が自由端となって変形しやすくなるた
め、マーキングが不明確になったり、又マーキング精度
が損なわれやすく、従って、切断中或いは切断前が好ま
しい。The marking means 5 cuts the tread rubber sheet G on the side of the extruder 2 which is cut along with cutting.
The first and second cutting marks Ma and Mb, which are marks, are formed on the rubber sheet piece GA to be cut. Here, “with cutting” may mean not only during cutting but also before or after cutting as long as the conveyor parts 11A and 11B are stopped for cutting. However, after cutting, the front end of the tread rubber sheet G and the rear end of the rubber sheet piece GA become free ends and are easily deformed, so that marking becomes unclear or marking accuracy is easily impaired. During cutting or before cutting is preferable.
【0021】又第1の切断マークMaは、図7(A)の
如く、トレッドゴムシートGに、切断面GSの上端から
長さ方向に距離Aを隔てる位置に形成されるとともに、
第2の切断マークMbは、ゴムシート片GAに、切断面
GSの上端から長さ方向に距離Bを隔てる位置に形成さ
れる。この第1、第2の切断マークMa、Mbは、目印
であるため、例えばインクによる印字やスプレーなどで
も良いが、装置の簡易化のために、押し付けによって生
じる表面の凹み、或いは切り傷等であっても良い。又マ
ークの形状も、図3に示すように、点状(単数、複数で
あっても良い)或いは、線状など種々のものが採用でき
る。As shown in FIG. 7A, the first cut mark Ma is formed on the tread rubber sheet G at a position separated from the upper end of the cut surface GS by a distance A in the lengthwise direction.
The second cut mark Mb is formed on the rubber sheet piece GA at a position separated from the upper end of the cut surface GS by a distance B in the length direction. Since the first and second cutting marks Ma and Mb are marks, they may be printed or sprayed with ink, for example. However, for the sake of simplifying the device, they are dents or cuts on the surface caused by pressing. May be. As for the shape of the mark, as shown in FIG. 3, various shapes such as a dot shape (may be single or plural) or a linear shape can be adopted.
【0022】本例では、第1、第2の切断マークMa、
Mbが、ゴム表面に凹設される点状の凹みである場合を
例示している。そのために、前記マーク付け手段5は、
トレッドゴムシートG表面に向かって進退自在な基台2
0に、マーク形成用の本例ではポンチ状のマーカ21
a、21bを、その鋭利な先端をトレッドゴムシートG
表面に向けて取り付けている。なお前記基台20は、例
えばシリンダ21等の進退具のロッド端に取付いてい
る。In this example, the first and second cutting marks Ma,
The case where Mb is a dot-shaped recess formed on the rubber surface is illustrated. To that end, the marking means 5
Base 2 that can move back and forth toward the surface of the tread rubber sheet G
0, a punch-shaped marker 21 in this example for mark formation
a and 21b, the sharp tip of which is tread rubber sheet G
It is attached toward the surface. The base 20 is attached to the rod end of an advancing / retreating tool such as a cylinder 21.
【0023】ここで、図4に示すように、トレッドゴム
シートGの厚さがt1からt2に変化したとき、切断面
GSの上端の位置も変化する。従って、この厚さ変化に
よる距離A、Bへの影響を避けるため、前記マーカ21
a、21bは、超音波カッタ17と同角度で傾斜させる
のが好ましいが、トレッドゴムシートG表面のプロファ
イルが複雑な場合には、本例の如く、マーカ21a、2
1bをトレッドゴムシートGと実質的に直角に進退させ
るのが、プロファイルの影響をなくす上で好ましい。Here, as shown in FIG. 4, when the thickness of the tread rubber sheet G changes from t1 to t2, the position of the upper end of the cut surface GS also changes. Therefore, in order to avoid the influence of the thickness change on the distances A and B, the marker 21
It is preferable to incline a and 21b at the same angle as the ultrasonic cutter 17, but when the profile of the surface of the tread rubber sheet G is complicated, as in this example, the markers 21a and 2b are used.
It is preferable to move 1b forward and backward substantially at right angles to the tread rubber sheet G in order to eliminate the influence of the profile.
【0024】次に、前記測定手段6は、成形ドラム4上
で巻回されたトレッドリングGBにおける前記第1,2
の切断マークMa’、Mb’間の周方向長さCを測定す
る。この測定手段6として、本例では、図5に示すよう
に、前記第1,2の切断マークMa’、Mb’を含むジ
ョイント部Jを撮影するCCDカメラ22と、該CCD
カメラ22から送られてくる画像データを処理する画像
処理手段23とを具えたものを例示する。Next, the measuring means 6 includes the first and second parts of the tread ring GB wound on the forming drum 4.
The circumferential length C between the cutting marks Ma ′ and Mb ′ of is measured. As the measuring means 6, in this example, as shown in FIG. 5, a CCD camera 22 for photographing the joint portion J including the first and second cutting marks Ma ′, Mb ′, and the CCD
An example including an image processing unit 23 for processing image data sent from the camera 22 will be exemplified.
【0025】前記CCDカメラ22は、例えばボールネ
ジ機構24Aなどを用いた昇降具24の昇降台24Bに
取り付き、前記ジョイント部Jをその上方から略直角に
撮影する。なお昇降台24Bには、CCDカメラ22の
前後に、蛍光灯などの照明25を設けている。The CCD camera 22 is attached to a lift table 24B of a lift tool 24 using, for example, a ball screw mechanism 24A and the joint portion J is photographed from above at a substantially right angle. The elevator table 24B is provided with illuminations 25 such as fluorescent lamps before and after the CCD camera 22.
【0026】又前記画像処理手段23は、画像中の第
1,2の切断マークMa’、Mb’を認識し、この第
1,2の切断マークMa’、Mb’間の画素数を計測す
る。そして、この画素数を距離に換算することにより、
前記周方向長さCを算出する。なお、前記周方向長さC
は、厳密には、トレッドリングGBの外表面に沿って円
弧で測定することが必要であるが、前記周方向長さC
が、トレッドリングGBの半径に対して充分小であるこ
とにより近似できる。そのために、本例では、前記距離
の和A+Bを30〜50mmの範囲としている。The image processing means 23 recognizes the first and second cutting marks Ma 'and Mb' in the image and measures the number of pixels between the first and second cutting marks Ma 'and Mb'. . Then, by converting this number of pixels into a distance,
The circumferential length C is calculated. The circumferential length C
Strictly speaking, it is necessary to measure with an arc along the outer surface of the tread ring GB.
Can be approximated by being sufficiently smaller than the radius of the tread ring GB. Therefore, in this example, the sum A + B of the distances is set in the range of 30 to 50 mm.
【0027】又第1,2の切断マークMa’、Mb’の
認識として、画像中のパターンを登録したマーク形状と
比較して自動認識させる所謂パターンマッチングで検出
することができる。この時には、切断マークMa、Mb
を、トレッドゴムシートG表面上の模様類と確実に識別
させるために、例えば+字など特別なマーク形状とする
のが好ましい。As the recognition of the first and second cutting marks Ma 'and Mb', it is possible to detect the pattern in the image by so-called pattern matching in which the pattern is automatically recognized by comparing it with the registered mark shape. At this time, the cutting marks Ma, Mb
Is preferably a special mark shape such as a + character in order to be surely distinguished from the patterns on the surface of the tread rubber sheet G.
【0028】そして本実施形態では、さらに、前記測定
手段6によって測定した前記長さCと、前記距離A,B
により定めた基準長さSと差S−Cが規定範囲のとき良
品の判定をする判断手段7を具えている。Further, in the present embodiment, the length C measured by the measuring means 6 and the distances A and B are further added.
When the difference between the reference length S and the difference S-C determined by the above is within a specified range, the determination means 7 is provided for determining a non-defective product.
【0029】ここで、前記ゴムシート片GAが成形ドラ
ム4上で巻回されるまでの間でその長さが実質的に変動
しない場合には、前記基準長さSは、前記距離の和A+
Bとして定めることができる。Here, when the length of the rubber sheet piece GA does not substantially change before being wound on the molding drum 4, the reference length S is the sum of the distances A +.
It can be defined as B.
【0030】しかし、実際には、切断後においては、押
出しの歪みが原因して、第2のコンベヤ部11B上にお
いて、ゴムシート片GAに縮(シュリンク)が生じ、長
さが変動する場合がある。係る場合には、ドラム巻付け
前に、第2のコンベヤ部11B上でゴムシート片GAの
長さL2を、測定手段9(図1に示す)によって測定
し、その長さL2と、前記第1のコンベヤ部11Aから
の送り出し長さL1とから、前記基準長さSを次式
(1)として定める。
S=(A+B)×(L2/L1) −−−(1)
なおゴムシート片GAの成形ドラム4への貼り付け時に
は、第2のコンベヤ部11Bと成形ドラム4とが同調制
御される、即ち、駆動速度やタイミングなどの動作全体
が同調して制御されるため、前記長さの変動は実質的に
生じない。However, in practice, after cutting, the rubber sheet piece GA may shrink (shrink) on the second conveyor section 11B due to the distortion of extrusion, and the length may fluctuate. is there. In this case, the length L2 of the rubber sheet piece GA is measured by the measuring means 9 (shown in FIG. 1) on the second conveyor section 11B before winding the drum, and the length L2 and the The reference length S is determined by the following equation (1) from the length L1 of the sheet fed from the conveyor unit 11A of No. 1 S = (A + B) × (L2 / L1) --- (1) When the rubber sheet piece GA is attached to the forming drum 4, the second conveyor section 11B and the forming drum 4 are synchronously controlled, that is, Since the entire operation such as the driving speed and the timing is controlled in synchronization with each other, the length variation does not substantially occur.
【0031】前記測定手段9としては、第2のコンベヤ
部11B上で待機中のゴムシート片GAの前端(下流側
端)、および後端(上流側端)を撮影し、その画像から
前記長さL2を計測するCCDカメラ及び画像処理手段
を有するものが好適に採用できる。As the measuring means 9, the front end (downstream side end) and the rear end (upstream side end) of the rubber sheet piece GA waiting on the second conveyor section 11B are photographed, and the length is taken from the image. A device having a CCD camera for measuring the height L2 and an image processing means can be suitably adopted.
【0032】又前記判断手段7では、本例では、前記差
S−Cが、0〜3.0mmの規定範囲内の時、ジョイン
ト量が適正でありトレッドリングGBが良品であるとの
判定を行っている。しかしこの規定範囲は、トレッドゴ
ムシートGの厚さや長さ、或いは切断時の剣先角度など
に応じて設定することができ、又規定範囲は、前記長さ
L1等に対する相対長さとして定めてもよい。In the present embodiment, the judging means 7 judges that the joint amount is proper and the tread ring GB is a good product when the difference SC is within the specified range of 0 to 3.0 mm. Is going. However, this specified range can be set according to the thickness and length of the tread rubber sheet G, or the angle of the sword at the time of cutting, and the specified range can be set as a relative length with respect to the length L1 or the like. Good.
【0033】又本実施形態では、前記判断手段7は、前
記差S−Cが前記規定範囲を越えて大であるとき、前記
値L1を増し、逆に範囲を越えて小であるとき、前記値
L1を減じるフィードバック制御を行う制御装置7A
(図1に示す)を含んで構成している。即ち前記判断手
段7は、その不合格の判定結果を、次回或いは次々回の
切断に反映せしめ、切断長さを調整することにより、手
直しが必要となるジョイント不良品の発生率を大幅に削
減することができる。Further, in the present embodiment, the judging means 7 increases the value L1 when the difference S−C is larger than the specified range, and conversely, when the difference S−C is smaller than the range, the value is increased. Control device 7A for performing feedback control for reducing the value L1
(Shown in FIG. 1). That is, the judging means 7 reflects the judgment result of the rejection in the next or subsequent cutting and adjusts the cutting length, thereby significantly reducing the incidence of defective joints requiring repair. You can
【0034】なお、前記制御装置7Aは、前記第1のコ
ンベヤ部11Aの駆動モータm1を制御し、このコンベ
ヤ部11Aからの前記送り出し長さL1を調整する。The controller 7A controls the drive motor m1 of the first conveyor section 11A to adjust the delivery length L1 from the conveyor section 11A.
【0035】このように、本実施形態では、切断時に第
1,2の切断マークMa、Mbを付し、その時の切断マ
ークMa、Mb間の長さ(即ちA+B)と、ジョイント
後に測定した第1,2の切断マークMa’、Mb’間の
長さCとを比較するだけであるため、数値の演算処理を
簡便に行いうる。又長さA+B、C等の測定が容易であ
り、しかもジョイント量が的確に表されるため、ジョイ
ント量の判定を精度良くかつ信頼性高く行うことができ
る。又構成が簡易であるため、装置コストの上昇を低く
抑えることができる。又判定結果のフィードバックが容
易であるため、ジョイント不良の発生率を大幅に削減す
ることも可能となる。As described above, in the present embodiment, the first and second cutting marks Ma and Mb are added at the time of cutting, the length between the cutting marks Ma and Mb at that time (that is, A + B), and the first measured after the joint. Since only the length C between the cut marks Ma ′ and Mb ′ of 1 and 2 is compared, the numerical value arithmetic processing can be performed easily. Further, since the lengths A + B, C, etc. can be easily measured and the joint amount is accurately represented, the joint amount can be determined accurately and highly reliably. Further, since the structure is simple, it is possible to suppress an increase in device cost to a low level. Further, since it is easy to feed back the determination result, it is possible to significantly reduce the incidence of joint failure.
【0036】以上、本発明の特に好ましい実施形態につ
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うる。Although a particularly preferred embodiment of the present invention has been described above in detail, the present invention is not limited to the illustrated embodiment and can be modified into various modes.
【0037】[0037]
【発明の効果】本発明は叙上の如く構成しているため、
ジョイント量の判定を精度良くかつ信頼性高く行うこと
ができる。又構成が簡易であるため、装置コストの上昇
を低く抑えることができ、又判定結果のフィードバック
が容易であるため、ジョイント不良の発生率を大幅に削
減することも可能となる。Since the present invention is constructed as described above,
The joint amount can be determined with high accuracy and reliability. Further, since the structure is simple, it is possible to suppress an increase in the cost of the apparatus to a low level, and since it is easy to feed back the determination result, it is possible to significantly reduce the occurrence rate of joint defects.
【図1】本発明のトレッドリングのジョイント量検定装
置の一実施例を示す側面図である。FIG. 1 is a side view showing an embodiment of a tread ring joint amount verification device of the present invention.
【図2】切断装置の主要部をマーク付け手段とともに示
す断面図である。FIG. 2 is a sectional view showing a main part of a cutting device together with a marking means.
【図3】(A)、(B)は切断マークを例示する平面図
である。FIGS. 3A and 3B are plan views illustrating cut marks.
【図4】マーク付け手段の他の例を示す略図である。FIG. 4 is a schematic view showing another example of the marking means.
【図5】測定手段の一例を示す側面である。FIG. 5 is a side view showing an example of measuring means.
【図6】(A)〜(E)は、トレッドゴムシートの流れ
を概略的に説明する線図である。6 (A) to (E) are diagrams schematically illustrating the flow of a tread rubber sheet.
【図7】判断手段を説明する線図である。FIG. 7 is a diagram illustrating a determination unit.
【図8】(A)〜(C)は、従来技術の問題点を説明す
る線図である。8A to 8C are diagrams for explaining the problems of the conventional technology.
2 押出し機 3 切断装置 4 成形ドラム 5 マーク付け手段 6 測定手段 7 判断手段 7A 制御装置 G トレッドゴムシート GA ゴムシート片 GB トレッドリング GS 切断面 2 extruder 3 cutting device 4 molding drum 5 Marking means 6 Measuring means 7 Judgment means 7A control device G tread rubber sheet GA rubber sheet piece GB tread ring GS cut surface
Claims (7)
トレッドゴムシートを切断した定寸切りのゴムシート片
を、成形ドラム上で巻回しかつ切断面を互いに突き合わ
せてジョイントしたトレッドリングのジョイント量を検
定するトレッドリングのジョイント量検定方法であっ
て、 前記押出し機から押出される帯状のトレッドゴムシート
を切断装置により、長さ方向の垂直面内で傾斜して切断
した定寸切りのゴムシート片を成形ドラム上で巻回し、
かつ両切断面を互いに突き合わせてジョイントすること
によりトレッドリングを形成する一方、 前記切断とともに、切断される押出機側のトレッドゴム
シートに切断面上端から長さ方向に距離Aを隔てる第1
の切断マークMaと、切断されるゴムシート片に切断面
上端から長さ方向に距離Bを隔てる第2の切断マークM
bとを付すとともに、 前記トレッドリングにおける前記第1,2の切断マーク
Ma’、Mb’間の周方向長さCを測定し、 かつ前記距離A,Bにより定めた基準長さSと、前記長
さCとの差S−Cが規定範囲のとき良品の判定をするこ
とを特徴とするトレッドリングのジョイント量検定方
法。Claim: What is claimed is: 1. A tread ring joint amount in which a constant-sized piece of rubber sheet obtained by cutting a strip-shaped tread rubber sheet continuously extruded from an extruder is wound on a molding drum and the cut surfaces are butted against each other. A method for certifying the joint amount of a tread ring, in which a belt-shaped tread rubber sheet extruded from the extruder is cut by a cutting device, and is cut to a predetermined length in a vertical plane in a longitudinal direction. Wind the piece on the forming drum,
A tread ring is formed by abutting and jointing both cut surfaces with each other, and at the same time as the cutting, a tread rubber sheet on the extruder side to be cut is separated from the upper end of the cut surface by a distance A in the longitudinal direction.
Cutting mark Ma and a second cutting mark M that is separated from the upper end of the cutting surface by a distance B in the length direction from the rubber sheet piece to be cut.
b, the circumferential length C between the first and second cutting marks Ma ′, Mb ′ in the tread ring is measured, and the reference length S determined by the distances A, B, and A tread ring joint amount test method, characterized in that a non-defective product is judged when the difference S-C from the length C is within a specified range.
とを特徴とする請求項1記載のトレッドリングのジョイ
ント量検定方法。2. The tread ring joint amount test method according to claim 1, wherein the specified range is 0 to 3.0 mm.
徴とする請求項1又は2記載のトレッドリングのジョイ
ント量検定方法。3. The tread ring joint amount test method according to claim 1, wherein the reference length S is A + B.
シートが切断装置の上流側から下流側に送られる送り長
さを測定しその値をL1、ドラム巻付け前に測定したゴ
ムシート片の値をL2としたとき、 S=(A+B)×(L2/L1) であることを特徴とする請求項1〜3の何れかに記載の
トレッドリングのジョイント量検定方法。4. The reference length S is a rubber sheet piece measured by measuring the feed length of the tread rubber sheet sent from the upstream side to the downstream side of the cutting device at the time of cutting, and measuring the value L1 before winding the drum. When the value of is set to L2, it is S = (A + B) * (L2 / L1), The joint amount test method of the tread ring in any one of Claims 1-3 characterized by the above-mentioned.
トレッドゴムシートを切断した定寸切りのゴムシート片
を、成形ドラム上で巻回しかつ切断面を互いに突き合わ
せてジョイントしたトレッドリングのジョイント量を検
定するトレッドリングのジョイント量検定装置であっ
て、 前記押出し機から押出される帯状のトレッドゴムシート
を長さ方向の垂直面内で傾斜して定寸切りする切断装置
と、定寸切りのゴムシート片を巻回し、かつ両切断面を
互いに突き合わせてジョイントすることによりトレッド
リングを形成する成形ドラムとを具える一方、 前記切断とともに、切断される押出機側のトレッドゴム
シートに切断面上端から長さ方向に距離Aを隔てる第1
の切断マークMaと、切断されるゴムシート片側に切断
面上端から距離Bを隔てる第2の切断マークMbとを付
すマーク付け手段と、 前記トレッドリングにおける前記第1,2の切断マーク
Ma’、Mb’間の周方向長さCを測定する測定手段
と、 前記距離A,Bにより定めた基準長さSと、前記長さC
との差S−Cが規定範囲のとき良品の判定をする判断手
段とを設けたことを特徴とするトレッドリングのジョイ
ント量検定装置。5. A joint amount of a tread ring formed by winding a constant-sized piece of rubber sheet obtained by cutting a belt-shaped tread rubber sheet continuously extruded from an extruder, and winding the piece on a molding drum and abutting the cut surfaces against each other. Is a joint amount verification device of the tread ring for verifying, a cutting device for inclining the belt-shaped tread rubber sheet extruded from the extruder in a vertical plane in the longitudinal direction and sizing, A cutting drum is formed by winding a piece of rubber sheet and forming a tread ring by joining both cut surfaces to each other by abutting the cut surfaces, and at the same time as the cutting, the tread rubber sheet on the extruder side to be cut has a cut surface upper end. First distance A from the distance A
Marking mark Ma, and a marking means for marking one side of the rubber sheet to be cut with a second cutting mark Mb separating a distance B from the upper end of the cutting surface, and the first and second cutting marks Ma ′ in the tread ring, Measuring means for measuring the circumferential length C between Mb ', a reference length S defined by the distances A and B, and the length C
And a determination means for determining a non-defective product when the difference S-C from the specified range is within a specified range.
か、又は切断時にトレッドゴムシートが切断装置の上流
側から下流側に送られる送り長さを測定しその値をL
1、ドラム巻付け前に測定したゴムシート片の値をL2
としたとき、 S=(A+B)×(L2/L1) とすることを特徴とする請求項5記載のトレッドリング
のジョイント量検定装置。6. The reference length S is A + B, or the feed length at which the tread rubber sheet is fed from the upstream side to the downstream side of the cutting device at the time of cutting is measured and the value is L.
1, the value of the rubber sheet piece measured before winding the drum is L2
Then, S = (A + B) × (L2 / L1) is set, and the joint amount test device for the tread ring according to claim 5, wherein
範囲を越えて大であるとき、前記値L1を増し、かつ範
囲を越えて小であるとき、前記値L1を減じるフィード
バック制御を行う制御装置を含むことを特徴とする請求
項6記載のトレッドリングのジョイント量検定装置。7. The feedback control for increasing the value L1 when the difference S−C is larger than the specified range and decreasing the value L1 when the difference S−C is smaller than the range. The joint amount verification device for a tread ring according to claim 6, further comprising a control device for performing.
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JP2001205104A JP4537624B2 (en) | 2001-07-05 | 2001-07-05 | Tread ring joint amount verification method and verification device |
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US20110186198A1 (en) * | 2010-01-29 | 2011-08-04 | Bridgestone Bandag, Llc | Method and apparatus for improved tread splicing |
WO2012121148A1 (en) * | 2011-03-08 | 2012-09-13 | 東洋ゴム工業株式会社 | Device and method for forming sheet-like rubber |
WO2017103416A1 (en) * | 2015-12-18 | 2017-06-22 | Compagnie Generale Des Etablissements Michelin | Method and facility for winding a rubber strip onto a form of revolution |
WO2020255556A1 (en) * | 2019-06-17 | 2020-12-24 | 横浜ゴム株式会社 | Device and method for producing unvulcanized band-shaped rubber member |
WO2020255555A1 (en) * | 2019-06-17 | 2020-12-24 | 横浜ゴム株式会社 | Device and method for producing unvulcanized ring-shaped rubber member |
RU2782756C1 (en) * | 2019-06-17 | 2022-11-02 | Дзе Йокогама Раббер Ко., Лтд. | Device and method for manufacturing of non-vulcanized ribbon-like rubber element |
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