JP4890149B2 - Method for producing elastic crawler - Google Patents

Method for producing elastic crawler Download PDF

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JP4890149B2
JP4890149B2 JP2006215844A JP2006215844A JP4890149B2 JP 4890149 B2 JP4890149 B2 JP 4890149B2 JP 2006215844 A JP2006215844 A JP 2006215844A JP 2006215844 A JP2006215844 A JP 2006215844A JP 4890149 B2 JP4890149 B2 JP 4890149B2
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mold
lug
pitch
rubber
vulcanized
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JP2008037001A (en
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康晴 福島
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Sumitomo Rubber Industries Ltd
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本発明は、弾性クローラの製造方法に関する。   The present invention relates to a method for manufacturing an elastic crawler.

農作業車や建設機械の走行装置に装着される弾性クローラは、例えば、無端帯状でゴム製のクローラ本体内に無端状の抗張体が埋設されるとともに、このクローラ本体の外周面に複数のラグが形成され、内周面に駆動用突起が形成されている(例えば特許文献1参照)。
従来、このような弾性クローラを製造は、例えば以下のように行われる。
まず、スチールコードなどからなる抗張体の内周側と外周側とに、所定の長さの未加硫ゴム材を添設し、上型と下型とからなる加熱金型で抗張体と未加硫ゴム材とを挟持し、この加熱金型を加熱することで、未加硫ゴム材と抗張体とを加硫成形する。加熱金型には、加硫成形された帯状ゴム様体にラグ、駆動突起が形成されるように、所定のピッチで凹部が形成されている。
An elastic crawler to be mounted on a farm vehicle or construction machine traveling device is, for example, an endless belt-like rubber crawler body with an endless tensile body embedded therein and a plurality of lugs on the outer peripheral surface of the crawler body. And a driving projection is formed on the inner peripheral surface (see, for example, Patent Document 1).
Conventionally, such an elastic crawler is manufactured as follows, for example.
First, an unvulcanized rubber material of a predetermined length is attached to the inner peripheral side and outer peripheral side of a tensile body made of steel cord, etc., and the tensile body is heated with a heating mold consisting of an upper mold and a lower mold. The unvulcanized rubber material and the tensile body are vulcanized and molded by heating the heating mold. In the heating mold, recesses are formed at a predetermined pitch so that lugs and drive protrusions are formed on the vulcanized belt-like rubber-like body.

前記加熱金型の端部には、冷却金型が設けられており、加硫成形された帯状ゴム様体の端部は、この冷却金型によって冷却され、未加硫または半加硫の状態となる。
そして、この未加硫または半加硫とされた帯状ゴム様体の端部と、他の帯状ゴム様体とを加熱金型によって加硫接着する。加硫済みの帯状ゴム様体の端部の未加硫部分と、他の帯状ゴム様体とを加硫成形する際、加熱金型には、加硫済みのラグの一部や駆動突起の一部が再び加熱金型の中に入って位置決めがなされることになる。
最後に、抗張体の端部同士をオーバラップさせ、この部分に帯状ゴム様体を加硫接着することにより、無端状の弾性クローラが形成される。
特開2005−280337号公報
A cooling mold is provided at the end of the heating mold, and the end of the vulcanized belt-like rubber-like body is cooled by the cooling mold and is in an unvulcanized or semi-vulcanized state. It becomes.
Then, the end portion of the unvulcanized or semi-vulcanized belt-like rubber-like body and the other belt-like rubber-like body are vulcanized and bonded by a heating mold. When vulcanizing and molding the unvulcanized part of the end of the vulcanized belt-like rubber-like body and other belt-like rubber-like bodies, the heated mold has a part of the vulcanized lug and the drive projections. A part of it will again enter the heating mold and be positioned.
Finally, the end portions of the tensile body are overlapped with each other, and a belt-like rubber-like body is vulcanized and bonded to this portion, thereby forming an endless elastic crawler.
JP 2005-280337 A

例えば、抗張体として、スチールコードの他に、ナイロン等の熱収縮性の材質のものを使用した場合、上記のように加熱金型によって加硫成形した後に、この抗張体が収縮してしまい、加硫済みの帯状ゴム様体のラグ等のピッチが小さくなる場合がある。
従来の弾性クローラの製造方法では、上述したように、加硫済みの帯状ゴム様体の端部と、未加硫ゴム材の端部とを加硫接着する場合には、加硫済みの帯状ゴム様体のラグ等の一部が再び加熱金型内に入ることになるが、このラグ等は、加硫成形後にそのピッチが小さくなっているので、金型内にうまく収まらず、無理矢理納めて加硫すると所定の寸法の弾性クローラができない場合があった。
For example, in the case of using a heat-shrinkable material such as nylon in addition to the steel cord as the tensile body, the tensile body contracts after vulcanization molding with a heating mold as described above. Therefore, the pitch of the vulcanized belt-like rubber-like body lugs may be reduced.
In the conventional elastic crawler manufacturing method, as described above, when vulcanized and bonded to the end of the vulcanized belt-like rubber-like body and the end of the unvulcanized rubber material, Some of the rubber-like lugs will enter the heated mold again, but the pitch of these lugs, etc. is reduced after vulcanization molding, so they will not fit well in the mold and are forced to pay. When vulcanized, an elastic crawler with a predetermined size may not be obtained.

本発明は、このような事情に鑑みてなされたものであり、抗張体に熱収縮性の材質のものを用いた場合に、所望の寸法の弾性クローラを製造できる弾性クローラの製造方法を提供することを目的とする。   The present invention has been made in view of such circumstances, and provides an elastic crawler manufacturing method capable of manufacturing an elastic crawler having a desired size when a heat-shrinkable material is used as a tensile body. The purpose is to do.

本発明は上記の課題を解決するために以下の技術的手段を講じた。
すなわち、本発明は、熱収縮性の抗張体に帯状ゴム様体を加硫成形して形成したクローラ本体を無端状に形成する弾性クローラの製造方法であって、最初の帯状ゴム様体を加硫成形する第1の金型と、前記抗張体の端部同士をオーバラップさせたオーバラップ部分に帯状ゴム様体を接着する第2の金型を備え、前記第1の金型には、クローラ本体にラグを形成するためのラグ形成用凹部が所定のピッチで形成され、前記第2の金型には、前記第1の金型のラグ形成用凹部のピッチよりも小さなピッチで形成されたラグ収容凹部と、前記第1の金型のラグ形成用凹部のピッチと等しいピッチで形成されたラグ形成用凹部と、前記第1の金型のラグ形成用凹部のピッチよりも小さなピッチで形成されていて前記オーバラップ部分にラグを形成するための第2ラグ形成用凹部とが設けられ、前記第1の金型で最初の帯状ゴム様体を前記抗張体に加硫成形した後、この抗張体の端部同士をオーバラップさせるとともに、加硫済みの帯状ゴム様体の一部のラグを前記第2の金型のラグ収容凹部に納め、第2の金型の第2ラグ形成用凹部によって前記オーバラップ部分に帯状ゴム様体を加硫接着してラグを形成することを特徴とする。
In order to solve the above problems, the present invention has taken the following technical means.
That is, the present invention is an elastic crawler manufacturing method for forming an endless crawler body formed by vulcanizing a band-like rubber-like body on a heat-shrinkable tensile body. A first mold for vulcanization molding, and a second mold for adhering a band-like rubber-like body to an overlap portion in which ends of the tensile bodies are overlapped with each other. In the crawler body, lug forming recesses for forming lugs are formed at a predetermined pitch, and the second mold has a pitch smaller than the pitch of the lug forming recesses of the first mold. It is smaller than the pitch of the formed lug housing recesses, the lug forming recesses formed at a pitch equal to the pitch of the lug forming recesses of the first mold, and the lug forming recesses of the first mold. It is formed with a pitch and a lug is formed in the overlap portion. A second lug-forming recess is formed, and after the first band-like rubber-like body is vulcanized and molded into the tensile body with the first mold, the ends of the tensile body are overlapped with each other. In addition, a part of the rug of the vulcanized belt-like rubber-like body is stored in the lug housing recess of the second mold, and the belt-like rubber-like is formed on the overlap portion by the second lug forming recess of the second mold. The rug is formed by vulcanizing and bonding the body.

これによれば、第1の金型によって加硫成形された最初の帯状ゴム様体は加硫後に抗張体が収縮することによって、そのラグのピッチが第1の金型のラグ形成用凹部の第1ピッチよりも小さくなる。
この加硫成形済みの帯状ゴム様体のラグの一部は、第2の金型のラグ収容凹部に収まることになるが、小さくなったラグのピッチに適合するように、このラグ収容凹部のピッチが第1の金型のラグ形成用凹部のピッチよりも小さくなっているので、このラグは無理なくラグ収容凹部に収まることになる。
According to this, the first band-like rubber-like body vulcanized by the first mold is contracted by the tensile body after vulcanization, so that the pitch of the lug is the recess for forming the lug of the first mold. Smaller than the first pitch.
A part of the lug of the vulcanized belt-like rubber-like body will be accommodated in the lug accommodating recess of the second mold, but the lug accommodating recess is adapted to fit the reduced lug pitch. Since the pitch is smaller than the pitch of the recesses for forming the lugs of the first mold, the lugs will fit in the lug accommodating recesses without difficulty.

抗張体の端部のオーバラップ部分は、オーバラップしていない部分に比べ、加硫後の熱収縮量が小さい。したがって、弾性クローラ成形後のオーバラップ部分のラグのピッチと、他の部分のラグのピッチとが等しくなるようにする必要がある。
このオーバラップ部分にラグを形成するための第2ラグ形成用凹部のピッチを、第1の金型のラグ形成用凹部ピッチよりも小さくすることによって、前記オーバラップ部分のラグの収縮後のピッチと、他の部分のラグの収縮後のピッチとをほぼ等しくできる。
以上によって、抗張体に熱収縮性の材質のものを用いた場合に、所望の寸法の弾性クローラを製造できるようになる。
The overlapping portion at the end of the tensile body has a smaller amount of heat shrinkage after vulcanization than the non-overlapping portion. Therefore, it is necessary to make the pitch of the lug in the overlap portion after forming the elastic crawler equal to the pitch of the lug in the other portion.
By making the pitch of the second lug forming recesses for forming lugs in the overlap part smaller than the pitches of the lug forming recesses of the first mold, the pitch after the shrinkage of the lugs in the overlap part And the pitch after contraction of the lugs in other parts can be made substantially equal.
As described above, an elastic crawler having a desired dimension can be manufactured when a heat-shrinkable material is used for the tensile body.

本発明によれば、抗張体に熱収縮性の材質のものを用いた場合に、所望の寸法の弾性クローラを製造できるようになる。   According to the present invention, an elastic crawler having a desired size can be manufactured when a heat-shrinkable material is used for the tensile body.

以下、本発明を実施するための最良の形態を図面を参照しながら説明する。
図3は、本発明に係る弾性クローラの製造方法によって製造された弾性クローラ1を例示している。弾性クローラ1は、農作業機械や建設機械等の走行装置に装着されて使用される。
この走行装置は、例えば、トラックフレームにスプロケット、アイドラ、複数の転輪等を回転自在に設けたものであり、弾性クローラ1は、この走行装置に巻き掛けられ、スプロケットによって駆動されて走行するようになっている。
The best mode for carrying out the present invention will be described below with reference to the drawings.
FIG. 3 illustrates an elastic crawler 1 manufactured by the elastic crawler manufacturing method according to the present invention. The elastic crawler 1 is used by being mounted on a traveling device such as an agricultural machine or a construction machine.
This traveling device is, for example, a sprocket, an idler, a plurality of wheels, and the like that are rotatably provided on a track frame. The elastic crawler 1 is wound around this traveling device and driven by the sprocket so as to travel. It has become.

この弾性クローラ1は、無端帯状のクローラ本体2を備えている。このクローラ本体2の外周面2aには、複数のラグ3がクローラ本体2の周方向(帯長手方向をいう)に間隔をおいて形成されている。
クローラ本体2の内周面2bには、スプロケットの歯が係合して駆動される複数の駆動突起4が形成されている。これらの駆動突起4は、クローラ本体2の周方向に一定の間隔をおいて形成されている。この駆動突起4は、前記ラグ3の位置に対応した位置に形成されている。
The elastic crawler 1 includes an endless belt-like crawler body 2. A plurality of lugs 3 are formed on the outer peripheral surface 2 a of the crawler main body 2 at intervals in the circumferential direction of the crawler main body 2 (referred to as the belt longitudinal direction).
A plurality of drive protrusions 4 are formed on the inner peripheral surface 2b of the crawler body 2 to be driven by engaging the teeth of the sprocket. These drive protrusions 4 are formed at regular intervals in the circumferential direction of the crawler body 2. The drive protrusion 4 is formed at a position corresponding to the position of the lug 3.

クローラ本体2内には、無端状の抗張体5が埋設されている。この抗張体5には、加硫成形したときに、スチールコードよりも熱による収縮率が高い材質のものが用いられる。以下、この抗張体5の性質を「熱収縮性」という。この抗張体5には、例えばポリエステルやナイロン等の熱収縮性の大きな材質のものが使用される。
この弾性クローラ1を製造する方法について、以下に説明する。
弾性クローラ1の製造は、線状の抗張体5に、図1に示す第1の金型8によって最初のゴム様体6(6a)を加硫接着し、次に、抗張体5の端部同士をオーバラップさせ、このオーバラップ部分とその回りに帯状ゴム様体6(6b)を第2の金型22によって加硫接着する。各帯状ゴム様体6(6a、6b)は、複数の未加硫ゴム材7を一体に加硫成形することにより形成される。
An endless tensile body 5 is embedded in the crawler body 2. The tensile member 5 is made of a material having a higher shrinkage rate due to heat than a steel cord when vulcanized. Hereinafter, the property of the tensile body 5 is referred to as “heat shrinkability”. The tensile body 5 is made of a material having a large heat shrinkage, such as polyester or nylon.
A method for manufacturing the elastic crawler 1 will be described below.
The elastic crawler 1 is manufactured by vulcanizing and bonding the first rubber-like body 6 (6a) to the linear tensile body 5 by the first mold 8 shown in FIG. The end portions are overlapped with each other, and the band-like rubber-like body 6 (6b) is vulcanized and bonded by the second mold 22 around the overlapped portion. Each belt-like rubber-like body 6 (6a, 6b) is formed by integrally vulcanizing and molding a plurality of unvulcanized rubber materials 7.

前記第1の金型8には、弾性クローラ1にラグ3が形成されるように、複数のラグ形成用凹部9が形成されている。ラグ形成用凹部9は、第1の金型8の長手方向に所定のピッチP0で形成されている。
また、この第1の金型8には、弾性クローラ1に駆動突起4が形成されるように、複数の駆動突起形成用凹部10が形成されている。駆動突起形成用凹部10は、第1の金型8の長手方向に所定のピッチで形成されている。
この第1の金型8の駆動突起形成用凹部10は、前記ラグ形成用凹部9の位置に対応して設けられている。前記駆動突起形成用凹部10の中心(図中にその中心線を符号Bで示す)は、前記ラグ形成用凹部9の中心(図中にその中心線を符号Aで示す)と一致して形成されている。したがって、駆動突起形成用凹部10のピッチは、ラグ形成用凹部9のピッチP0と等しい。
A plurality of lug forming recesses 9 are formed in the first mold 8 so that the lugs 3 are formed on the elastic crawler 1. The lug forming recesses 9 are formed at a predetermined pitch P0 in the longitudinal direction of the first mold 8.
Further, the first mold 8 is formed with a plurality of drive projection forming recesses 10 so that the drive projections 4 are formed on the elastic crawler 1. The drive projection forming recesses 10 are formed at a predetermined pitch in the longitudinal direction of the first mold 8.
The driving projection forming recess 10 of the first mold 8 is provided corresponding to the position of the lug forming recess 9. The center of the driving projection forming recess 10 (the center line is indicated by symbol B in the figure) coincides with the center of the lug forming recess 9 (the center line is indicated by symbol A in the figure). Has been. Therefore, the pitch of the driving projection forming recesses 10 is equal to the pitch P0 of the lug forming recesses 9.

第1の金型8は、帯状ゴム様体6を構成する未加硫ゴム材7を加熱する加熱金型12と、加熱金型12の端部に設けられた冷却金型13を備えている。加熱金型12は、上型12aと下型12bとを有している。これら上型12aと下型12bの外側面には加熱部14が設けられている。上型12aには、前記ラグ形成用凹部9がピッチP0で形成され、また、下型12bには、前記駆動突起形成用凹部10がピッチP0で形成されている。
冷却金型13は、加熱金型12によって加硫成形された加硫済みの帯状ゴム様体6の端部と、他の帯状ゴム様体6の端部とを接着するために、加硫済みの帯状ゴム様体6の端部を冷却して未加硫または半加硫のままの状態にするためのものである。
The first mold 8 includes a heating mold 12 for heating the unvulcanized rubber material 7 constituting the belt-like rubber-like body 6 and a cooling mold 13 provided at an end of the heating mold 12. . The heating mold 12 has an upper mold 12a and a lower mold 12b. A heating unit 14 is provided on the outer surfaces of the upper mold 12a and the lower mold 12b. The lug forming recesses 9 are formed at the pitch P0 in the upper mold 12a, and the drive projection forming recesses 10 are formed at the pitch P0 in the lower mold 12b.
The cooling mold 13 is vulcanized in order to bond the end of the vulcanized belt-like rubber-like body 6 vulcanized by the heating mold 12 and the end of another belt-like rubber-like body 6. The end portion of the belt-like rubber-like body 6 is cooled so as to remain in an unvulcanized or semi-vulcanized state.

この冷却金型13は、冷却水が通過する冷却通路が形成されている。この冷却通路に冷却水供給装置によって一定温度の冷却水を供給することで、冷却金型13は、加熱金型12よりも低温となって、加硫成形される帯状ゴム様体6の端部を冷却するようになっている。
最初の帯状ゴム様体6aは、複数の未加硫ゴム材7で熱収縮性の抗張体5を挟んだ状態で、これらを加熱金型12の上型12aと下型12bとに挟持し、加熱部14によって上型12a、下型12bを加熱することにより、所定の形状に加硫成形される。
The cooling mold 13 has a cooling passage through which cooling water passes. The cooling mold 13 is cooled to a temperature lower than that of the heating mold 12 by supplying cooling water having a constant temperature to the cooling passage by means of a cooling water supply device, so that the end of the belt-like rubber-like body 6 to be vulcanized is formed. Is supposed to cool.
The first belt-like rubber-like body 6a is sandwiched between the upper mold 12a and the lower mold 12b of the heating mold 12 with the heat-shrinkable tensile body 5 sandwiched between a plurality of unvulcanized rubber materials 7. The upper mold 12a and the lower mold 12b are heated by the heating unit 14 to be vulcanized into a predetermined shape.

加硫成形された帯状ゴム様体6(6a)には、複数ラグ3および駆動突起4が形成される。なお、前記抗張体5は、予め未加硫のゴム層15により被覆されている。ゴム層15は、上記加硫成形により帯状ゴム様体6と一体成形される。
この帯状ゴム様体6aの長手方向の端部は、上記加熱金型12による加熱と同時に冷却金型13により冷却され、帯状ゴム様体6aの成形が終わったときに、未加硫または半加硫の状態となる。
第1の金型8による最初の帯状ゴム様体6aの加硫成形の後、加硫済みの帯状ゴム様体6aは第1の金型8から取り外される。
A plurality of lugs 3 and drive protrusions 4 are formed on the vulcanized belt-like rubber-like body 6 (6a). The tensile body 5 is covered with an unvulcanized rubber layer 15 in advance. The rubber layer 15 is integrally formed with the belt-like rubber-like body 6 by the vulcanization molding.
The end in the longitudinal direction of the band-like rubber-like body 6a is cooled by the cooling mold 13 simultaneously with the heating by the heating mold 12, and when molding of the band-like rubber-like body 6a is finished, it is unvulcanized or semi-vulcanized. It becomes a state of sulfur.
After vulcanization molding of the first band-like rubber-like body 6 a by the first mold 8, the vulcanized band-like rubber-like body 6 a is removed from the first mold 8.

第1の金型8による加硫成形を行った後、図2に示すように、抗張体5の端部同士をオーバラップさせ、このオーバラップ部分31(図中には、オーバラップ部分に便宜上ハッチングをいれている)に、帯状ゴム様体6bを接着して、無端状の弾性クローラ1を成形する。
この成形工程には、第2の金型22が用いられる。図2に示すように、第2の金型22は、第1の金型8と同様に、複数のラグ形成用凹部23と、複数の駆動突起形成用凹部24を有する。
After performing the vulcanization molding by the first mold 8, as shown in FIG. 2, the ends of the tensile members 5 are overlapped with each other, and this overlap portion 31 (in the figure, the overlap portion is not overlapped). The endless elastic crawler 1 is formed by adhering the belt-like rubber-like body 6b.
The second mold 22 is used for this molding process. As shown in FIG. 2, the second mold 22 has a plurality of lug forming recesses 23 and a plurality of drive protrusion forming recesses 24, as in the first mold 8.

ラグ形成用凹部23は、第2の金型22の長手方向に沿って所定のピッチP3で形成されている。第2の金型22のラグ形成用凹部23のピッチP3は、第1の金型8のラグ形成用凹部9のピッチP0と等しくなっている。
駆動突起形成用凹部24は、ラグ形成用凹部23に対応する位置に形成されている。駆動突起形成用凹部24は、その中心(図中にその中心線を符号Hで示す)が、ラグ形成用凹部23の中心(図中にその中心線を符号Gで示す)と一致して形成されている。駆動突起形成用凹部24は、ラグ形成用凹部23と同じピッチP3で形成されている。
The lug forming recesses 23 are formed at a predetermined pitch P3 along the longitudinal direction of the second mold 22. The pitch P3 of the lug forming recesses 23 of the second mold 22 is equal to the pitch P0 of the lug forming recesses 9 of the first mold 8.
The drive projection forming recess 24 is formed at a position corresponding to the lug forming recess 23. The driving projection forming recess 24 is formed such that its center (the center line is indicated by a symbol H) coincides with the center of the lug forming recess 23 (the center line is indicated by a symbol G). Has been. The drive projection forming recesses 24 are formed at the same pitch P3 as the lug forming recesses 23.

第2の金型22は、加硫済みの帯状ゴム様体6のラグ3、駆動突起4が収まるラグ収容凹部25、駆動突起収容凹部26を備える。ラグ収容凹部25は第2の金型22の長手方向に所定のピッチP1で形成されている。このラグ収容凹部25のピッチP1は、第1の金型8のラグ形成用凹部9のピッチP0よりも小さくなっている。
駆動突起収容凹部26はラグ収容凹部25に対応する位置に設けられている。第2の金型22の長手方向において、駆動突起収容凹部26の中心(図中にその中心線を符号Jで示す)は、ラグ収容凹部25の中心(図中にその中心線を符号Iで示す)と一致して設けられている。
The second mold 22 includes a lug 3 of the vulcanized belt-like rubber-like body 6, a lug accommodating recess 25 in which the driving projection 4 is accommodated, and a driving projection accommodating recess 26. The lug housing recesses 25 are formed at a predetermined pitch P1 in the longitudinal direction of the second mold 22. The pitch P <b> 1 of the lug accommodating recess 25 is smaller than the pitch P <b> 0 of the lug forming recess 9 of the first mold 8.
The drive projection receiving recess 26 is provided at a position corresponding to the lug receiving recess 25. In the longitudinal direction of the second mold 22, the center of the drive projection receiving recess 26 (the center line is indicated by the symbol J in the drawing) is the center of the lug receiving recess 25 (the center line is indicated by the symbol I in the drawing). Is shown).

第2の金型22は、抗張体5の端部のオーバラップ部分31にラグ3、駆動突起4を形成するために、複数の第2ラグ形成用凹部28、複数の第2駆動突起形成用凹部29を有する。第2ラグ形成用凹部28は第2の金型22の長手方向に所定のピッチP2で形成されている。
第2駆動突起形成用凹部29は、前記第2ラグ形成用凹部28の位置に対応して設けられている。第2駆動突起形成用凹部29の中心(図中にその中心線を符号Lで示す)は、第2ラグ形成用凹部28の中心(図中にその中心線を符号Kで示す)と一致している。第2駆動突起形成用凹部29のピッチは、第2ラグ形成用凹部28のピッチP2と等しくなっている。
The second mold 22 is formed with a plurality of second lug forming recesses 28 and a plurality of second drive protrusions in order to form the lugs 3 and the drive protrusions 4 in the overlap portion 31 at the end of the tensile body 5. A concave portion 29 is provided. The second lug forming recesses 28 are formed in the longitudinal direction of the second mold 22 at a predetermined pitch P2.
The second driving projection forming recess 29 is provided corresponding to the position of the second lug forming recess 28. The center of the second driving projection forming recess 29 (the center line is indicated by a symbol L in the drawing) coincides with the center of the second lug forming recess 28 (the center line is indicated by a symbol K in the drawing). ing. The pitch of the second drive projection forming recesses 29 is equal to the pitch P2 of the second lug forming recesses 28.

前記第2ラグ形成用凹部28のピッチP2は、ラグ形成用凹部23のピッチP3よりも小さく設定されている。すなわち、第2ラグ形成用凹部28のピッチP2は、第1の金型8のラグ形成用凹部9のピッチP0よりも小さくなっている。
抗張体5の端部のオーバラップ部分31は、他の部分よりも加硫成形後の収縮量が小さい。したがって、オーバラップ部分31が収縮した場合に、他の部分のラグ3、駆動突起4のピッチとほぼ等しくなるように、第2ラグ形成用凹部28のピッチP2はラグ形成用凹部23のピッチP3、第1の金型8のラグ形成用凹部9のピッチP0よりも小さくなっているのである。
The pitch P2 of the second lug forming recesses 28 is set smaller than the pitch P3 of the lug forming recesses 23. That is, the pitch P <b> 2 of the second lug forming recess 28 is smaller than the pitch P <b> 0 of the lug forming recess 9 of the first mold 8.
The overlap portion 31 at the end of the tensile body 5 has a smaller shrinkage amount after vulcanization molding than the other portions. Therefore, when the overlap portion 31 contracts, the pitch P2 of the second lug forming recesses 28 is equal to the pitch P3 of the lug forming recesses 23 so that the pitches of the lugs 3 and drive protrusions 4 of the other portions are substantially equal. The pitch is smaller than the pitch P0 of the lug forming recesses 9 of the first mold 8.

第2の金型22は、上型22a、下型22bに分割されている。上型22aには、ラグ形成用凹部23、ラグ収容凹部25、第2ラグ形成用凹部28が形成されている。下型22bには、駆動突起形成用凹部24、駆動突起収容凹部26、第2駆動突起形成用凹部29が形成されている。上型22a、下型22bの外側面には加熱部30が設けられている。
第2の金型22による加硫成形工程は、以下のようになされる。
まず、第1の金型8によって帯状ゴム様体6と抗張体5とを一体に加硫成形した後、この抗張体5の端部同士をオーバラップさせる。
The second mold 22 is divided into an upper mold 22a and a lower mold 22b. The upper mold 22a is formed with a lug forming recess 23, a lug receiving recess 25, and a second lug forming recess 28. The lower mold 22b is formed with a drive projection forming recess 24, a drive projection receiving recess 26, and a second drive projection forming recess 29. A heating unit 30 is provided on the outer surfaces of the upper mold 22a and the lower mold 22b.
The vulcanization molding process by the second mold 22 is performed as follows.
First, after the band-like rubber-like body 6 and the tensile body 5 are integrally vulcanized and molded by the first mold 8, the ends of the tensile body 5 are overlapped.

そして、ゴム様体6が接着されていない抗張体5の部分を複数の未加硫ゴム材7で上下に挟み、これらの未加硫ゴム材7を第2の金型22の上型22aのラグ形成用凹部23、第2ラグ形成用凹部28が設けられた部分と、下型22bの駆動突起形成用凹部24、第2駆動突起形成用凹部29が設けられた部分とで挟持する。
このとき、抗張体5の端部のオーバラップ部分31は、上型22aの第2ラグ形成用凹部28が設けられている部分と、下型22bの第2駆動突起形成用凹部29が設けられている部分の間に位置することになる。
Then, the portion of the tensile body 5 to which the rubber-like body 6 is not bonded is sandwiched between a plurality of unvulcanized rubber materials 7, and these unvulcanized rubber materials 7 are connected to the upper mold 22 a of the second mold 22. The lug forming concave portion 23 and the second lug forming concave portion 28 are sandwiched between the driving protrusion forming concave portion 24 and the second driving protrusion forming concave portion 29 of the lower mold 22b.
At this time, the overlap portion 31 at the end of the tensile body 5 is provided with a portion where the second lug forming recess 28 of the upper die 22a is provided and a second drive projection forming recess 29 of the lower die 22b. It will be located between the parts.

また、このとき、加硫済みの帯状ゴム様体6(6a)のラグ3が第2の金型22のラグ収容凹部25に入り、駆動突起4が駆動突起収容凹部26に入るようにする。このようにしたとき、第2の金型22で加硫成形される帯状ゴム様体6bの長手方向の各端部は、第1の金型8で加硫成形された帯状ゴム様体6aの各端部に当たった状態になる。
この状態で、上型22aと下型22bの加熱部30によって加熱し、帯状ゴム様体6bを加硫成形する。第1の金型8によって加硫成形された帯状ゴム様体6aの端部は冷却金型13で冷却されて未加硫または半加硫の状態になっており、第2の金型22の加硫成形によって、帯状ゴム様体6aの端部と一体に成形される。
Further, at this time, the lug 3 of the vulcanized belt-like rubber-like body 6 (6 a) enters the lug accommodating recess 25 of the second mold 22, and the driving projection 4 enters the driving projection accommodating recess 26. When this is done, each end in the longitudinal direction of the belt-like rubber-like body 6b vulcanized and molded by the second mold 22 is formed by the belt-like rubber-like body 6a vulcanized and molded by the first mold 8. It hits each end.
In this state, the belt-like rubber-like body 6b is vulcanized and heated by the heating part 30 of the upper die 22a and the lower die 22b. The end of the belt-like rubber-like body 6a vulcanized and molded by the first mold 8 is cooled by the cooling mold 13 and is in an unvulcanized or semi-vulcanized state. It is molded integrally with the end of the belt-like rubber-like body 6a by vulcanization molding.

以上によって、クローラ本体2が無端状になり、その外周面2aにラグ3、内周面2bに駆動突起4が形成された弾性クローラ1が製造される。
上述したように、本発明に係る弾性クローラ1の製造方法によれば、熱収縮性の抗張体5を弾性クローラ1に使用する場合に、帯状ゴム様体6を抗張体5に加硫成形したときの熱によって抗張体5が収縮し、これによって、第1の金型8によって加硫成形されたラグ3、駆動突起4のピッチが第1の金型8のラグ形成用凹部9、駆動突起形成用凹部10のピッチP0よりも小さくなる。
As a result, the crawler main body 2 becomes endless, and the elastic crawler 1 in which the lugs 3 are formed on the outer peripheral surface 2a and the drive protrusions 4 are formed on the inner peripheral surface 2b is manufactured.
As described above, according to the method of manufacturing the elastic crawler 1 according to the present invention, when the heat-shrinkable tensile body 5 is used for the elastic crawler 1, the belt-like rubber-like body 6 is vulcanized to the tensile body 5. The tensile body 5 is shrunk by the heat at the time of molding, and as a result, the lugs 3 vulcanized and molded by the first mold 8 and the pitch of the drive projections 4 are the lug forming recesses 9 of the first mold 8. The pitch becomes smaller than the pitch P0 of the driving projection forming recesses 10.

このラグ3、駆動突起4のピッチとほぼ等しくなるように、第2の金型22のラグ収容凹部25、駆動突起収容凹部26のピッチP1を第1の金型8のラグ形成用凹部9のピッチP0よりも小さく設定することによって、未加硫ゴム材7と第1の金型8によって加硫成形された帯状ゴム様体6の一端部とを加硫接着する場合に、第2の金型22のラグ収容凹部25と駆動突起収容凹部26は、加硫済みの帯状ゴム様体6のラグ3、駆動突起4を変形させることなく収容することができる。
また、第2の金型22によって、帯状ゴム様体6bを加硫成形する場合においても、この第2の金型22のラグ形成用凹部23、駆動突起形成用凹部24のピッチP3は、第1の金型8のラグ形成用凹部9のピッチP0と等しくなっているため、このラグ形成用凹部23、駆動突起形成用凹部24によって成形されたラグ3、駆動突起4は、成形後の抗張体5の収縮によって、そのピッチが小さくなり、すでに成形されたラグ3、駆動突起4のピッチと同じになる。
The pitch P1 of the lug housing recess 25 of the second mold 22 and the drive projection housing recess 26 is set to be equal to the pitch of the lug forming recess 9 of the first mold 8 so as to be substantially equal to the pitch of the lugs 3 and drive projections 4. By setting the pitch smaller than the pitch P0, when the vulcanized and bonded unvulcanized rubber material 7 and one end portion of the belt-like rubber-like body 6 vulcanized by the first mold 8, the second gold The lug housing recess 25 and the drive projection housing recess 26 of the mold 22 can be accommodated without deforming the lug 3 and the drive projection 4 of the vulcanized belt-like rubber-like body 6.
Further, even when the belt-like rubber-like body 6b is vulcanized by the second mold 22, the pitch P3 of the lug forming recess 23 and the drive projection forming recess 24 of the second mold 22 is the 1 is equal to the pitch P0 of the lug forming recess 9 of the mold 8, and the lug 3 and the drive protrusion 4 formed by the lug forming recess 23 and the drive protrusion forming recess 24 are formed after the molding. Due to the contraction of the tension body 5, the pitch becomes smaller and becomes the same as the pitch of the already formed lugs 3 and drive protrusions 4.

また、第2ラグ形成用凹部28、第2駆動突起形成用凹部29によって形成されたラグ3、駆動突起4も、成形後に抗張体5の端部のオーバラップ部分31が収縮することにより、そのピッチが第2ラグ形成用凹部28、第2駆動突起形成用凹部29のピッチP2よりも小さくなるが、オーバラップ部分31の収縮量とその他の部分の収縮量の差を考慮して、第2ラグ形成用凹部28、第2駆動突起形成用凹部29のピッチP2が、第1の金型8のラグ形成用凹部9のピッチP0よりも前記収縮量の差の分だけ小さくされているため、収縮後の前記オーバラップ部分31のラグ3、駆動突起4のピッチは、他の部分のラグ3、駆動突起4のピッチと等しくなる。   In addition, the lug 3 and the drive protrusion 4 formed by the second lug forming recess 28 and the second drive protrusion forming recess 29 also shrink the overlap portion 31 at the end of the tensile body 5 after molding. The pitch is smaller than the pitch P2 of the second lug forming recess 28 and the second drive projection forming recess 29, but considering the difference between the shrinkage amount of the overlap portion 31 and the shrinkage amount of the other portions, 2 The pitch P2 between the lug forming recess 28 and the second drive projection forming recess 29 is made smaller than the pitch P0 of the lug forming recess 9 of the first mold 8 by the difference in contraction amount. The pitch of the lug 3 and the driving projection 4 of the overlap portion 31 after contraction is equal to the pitch of the lug 3 and the driving projection 4 of the other portion.

以上によって、弾性クローラ1は、ラグ3、駆動突起4が等ピッチで形成されることになり、所望のピッチ寸法、周長のものに製造できるのである。
なお、本発明の方法は、熱収縮性の抗張体に帯状ゴム様体を加硫接着するものであれば適用可能であり、上記の実施形態に限定するものではない。また、抗張体の材質としては、ナイロン、ポリエステル以外の熱収縮性の材料を用いてもよい。
As described above, the elastic crawler 1 has the lugs 3 and the drive protrusions 4 formed at an equal pitch, and can be manufactured to have a desired pitch dimension and circumference.
The method of the present invention can be applied as long as a rubber band is vulcanized and bonded to a heat-shrinkable tensile body, and is not limited to the above embodiment. Further, as the material of the tensile body, a heat-shrinkable material other than nylon or polyester may be used.

本発明は、弾性クローラの製造に利用できる。   The present invention can be used for manufacturing an elastic crawler.

本発明に係る実施形態の第1の金型を示す断面図である。It is sectional drawing which shows the 1st metal mold | die of embodiment which concerns on this invention. 本発明に係る実施形態の第2の金型を示す断面図である。It is sectional drawing which shows the 2nd metal mold | die of embodiment which concerns on this invention. 本発明によって製造された弾性クローラの一部を示す側面図である。It is a side view which shows a part of elastic crawler manufactured by this invention.

符号の説明Explanation of symbols

1 弾性クローラ
2 クローラ本体
3 ラグ
5 抗張体
8 第1の金型
9 第1の金型のラグ形成用凹部
10 第1の金型の駆動突起形成用凹部
22 第2の金型
23 第2の金型のラグ形成用凹部
25 第2の金型のラグ収容凹部
28 第2の金型の第2ラグ形成用凹部
31 オーバラップ部分
DESCRIPTION OF SYMBOLS 1 Elastic crawler 2 Crawler main body 3 Lug 5 Tensile body 8 1st metal mold | die 9 The recessed part 10 for the lug formation of the 1st metal mold | die 22 The 2nd metal mold 23 2nd metal mold | die 23 Lug forming recess 25 of second mold Lug housing recess 28 of second mold Second lug forming recess 31 of second mold Overlap portion

Claims (1)

熱収縮性の抗張体に帯状ゴム様体を加硫成形して形成したクローラ本体を無端状に形成する弾性クローラの製造方法であって、
最初の帯状ゴム様体を加硫成形する第1の金型と、前記抗張体の端部同士をオーバラップさせたオーバラップ部分に帯状ゴム様体を接着する第2の金型を備え、
前記第1の金型には、クローラ本体にラグを形成するためのラグ形成用凹部が所定のピッチで形成され、
前記第2の金型には、前記第1の金型のラグ形成用凹部のピッチよりも小さなピッチで形成されたラグ収容凹部と、前記第1の金型のラグ形成用凹部のピッチと等しいピッチで形成されたラグ形成用凹部と、前記第1の金型のラグ形成用凹部のピッチよりも小さなピッチで形成されていて前記オーバラップ部分にラグを形成するための第2ラグ形成用凹部とが設けられ、
前記第1の金型で最初の帯状ゴム様体を前記抗張体に加硫成形した後、この抗張体の端部同士をオーバラップさせるとともに、加硫済みの帯状ゴム様体の一部のラグを前記第2の金型のラグ収容凹部に納め、第2の金型の第2ラグ形成用凹部によって前記オーバラップ部分に帯状ゴム様体を加硫接着してラグを形成することを特徴とする弾性クローラの製造方法。
A method for producing an elastic crawler that forms an endless crawler body formed by vulcanizing and forming a band-like rubber-like body on a heat-shrinkable tensile body,
A first mold for vulcanizing the first band-like rubber-like body, and a second mold for adhering the band-like rubber-like body to the overlapped portion where the ends of the tensile body overlap each other,
In the first mold, recesses for forming lugs for forming lugs on the crawler body are formed at a predetermined pitch,
The second mold has a lug housing recess formed at a pitch smaller than the pitch of the lug forming recess of the first mold and the pitch of the lug forming recess of the first mold. A lug forming recess formed at a pitch and a second lug forming recess formed at a pitch smaller than the pitch of the lug forming recess of the first mold to form a lug at the overlap portion And
After the first band-like rubber-like body is vulcanized and molded into the tensile body with the first mold, the ends of the tensile body are overlapped with each other and a part of the vulcanized belt-like rubber-like body In the lug housing recess of the second mold, and a rubber band is vulcanized and bonded to the overlap portion by the second lug forming recess of the second mold to form the lug. A method for producing an elastic crawler.
JP2006215844A 2006-08-08 2006-08-08 Method for producing elastic crawler Expired - Fee Related JP4890149B2 (en)

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