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JP2014134578A - Optical fiber attachment ferrule manufacturing method, optical fiber attachment ferrule and optical connector - Google Patents

Optical fiber attachment ferrule manufacturing method, optical fiber attachment ferrule and optical connector Download PDF

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Publication number
JP2014134578A
JP2014134578A JP2013001210A JP2013001210A JP2014134578A JP 2014134578 A JP2014134578 A JP 2014134578A JP 2013001210 A JP2013001210 A JP 2013001210A JP 2013001210 A JP2013001210 A JP 2013001210A JP 2014134578 A JP2014134578 A JP 2014134578A
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optical fiber
adhesive
hole
ferrule
adhesive reservoir
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Kosuke Sone
康介 曽根
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Sumitomo Wiring Systems Ltd
AutoNetworks Technologies Ltd
Sumitomo Electric Industries Ltd
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Sumitomo Wiring Systems Ltd
AutoNetworks Technologies Ltd
Sumitomo Electric Industries Ltd
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Abstract

PROBLEM TO BE SOLVED: To efficiently manufacture an optical fiber attachment ferrule having satisfactory, stable quality by preventing occurrence of damage such as crack or chip in the optical fiber when the front end of the ferrule, through which the optical fiber is passed and held, is polished.SOLUTION: A first through-hole 4 through which an optical fiber cable 20 is passed through, and a second through-hole 5 through which an optical fiber is passed through are continuously provided along the central axis of the ferrule. An adhesive reservoir 6 continuing from the front end of the second through-hole 5 and having a diameter larger than the second through-hole 5 are provided in the form of a recess at the front end of the second through-hole 5. After adhesive 11 is injected into the adhesive reservoir 6, second through-hole 5, and first through-hole 4, the optical fiber cable 20 is passed through the first through-hole, and the optical fiber 21 is passed through the second through-hole 5 and adhesive reservoir 6, and the adhesive is cured. Then, the front end face of the optical fiber 21 is exposed by polishing the front end of the ferrule 1.

Description

本発明は光ファイバ装着フェルールの製造方法、該方法により製造した光ファイバ装着フェルールおよび該光ファイバ装着フェルールを備えた光コネクタに関し、詳しくは、光ファイバを貫通保持したフェルールの前端を研磨する際に、該光ファイバに割れや欠け等の損傷が生じるのを防止するものである。   The present invention relates to a manufacturing method of an optical fiber mounting ferrule, an optical fiber mounting ferrule manufactured by the method, and an optical connector including the optical fiber mounting ferrule, and more specifically, when polishing a front end of a ferrule penetrating and holding an optical fiber. The optical fiber is prevented from being damaged such as cracks and chips.

近年、自動車内では光ファイバケーブルを用いた通信が普及しており、光ファイバケーブル相互の光結合はケーブル端末に取り付けた光コネクタを介して行っている。光コネクタは、光ファイバケーブルおよびその芯線である光ファイバを貫通保持し前端に該光ファイバの前端面を露出させたフェルール(光ファイバ装着フェルール)を備えている。該光ファイバ装着フェルールを備えた光コネクタを接続相手方の光コネクタに嵌合させることにより、互いのフェルール前端の光ファイバの前端面同士を接触させて光結合させることができる。   In recent years, communication using optical fiber cables has become widespread in automobiles, and optical coupling between optical fiber cables is performed via an optical connector attached to a cable terminal. The optical connector includes a ferrule (optical fiber mounting ferrule) in which an optical fiber that is an optical fiber cable and its core wire is held through and a front end surface of the optical fiber is exposed at a front end. By fitting the optical connector provided with the optical fiber mounting ferrule to the optical connector of the connection counterpart, the front end surfaces of the optical fibers at the front ends of the ferrules can be brought into contact with each other for optical coupling.

前記光ファイバ装着フェルールは、例えば、図6に示すような構造を有している。
筒状のフェルール100には、中心軸線に沿って光ファイバケーブル110を貫通する貫通穴101と、該光ファイバケーブル110の被覆の前端より突出させた光ファイバ111を貫通させる貫通穴102を設けている。図6(A)のようにフェルール100の貫通穴101、102に光ファイバケーブル110および光ファイバ111を貫通させた後、図6(B)、(C)のように貫通穴101、102の空隙に樹脂材料103や接着剤104を注入している。その後、光ファイバ111を貫通保持したフェルール100の前端を研磨することにより、図6(D)のように光ファイバ111の前端面をフェルール100の前端に露出させた光ファイバ装着フェルール105を得ることができる[特開2007−279576号公報(特許文献1)参照]。
The optical fiber mounting ferrule has a structure as shown in FIG. 6, for example.
The cylindrical ferrule 100 is provided with a through hole 101 that penetrates the optical fiber cable 110 along the central axis, and a through hole 102 that penetrates the optical fiber 111 protruding from the front end of the coating of the optical fiber cable 110. Yes. After passing the optical fiber cable 110 and the optical fiber 111 through the through holes 101 and 102 of the ferrule 100 as shown in FIG. 6A, the gaps of the through holes 101 and 102 as shown in FIGS. 6B and 6C. The resin material 103 and the adhesive 104 are injected into this. Thereafter, the front end of the ferrule 100 that penetrates and holds the optical fiber 111 is polished to obtain the optical fiber mounting ferrule 105 in which the front end surface of the optical fiber 111 is exposed at the front end of the ferrule 100 as shown in FIG. [See JP 2007-279576 A (Patent Document 1)].

なお、前記研磨時に貫通穴102に貫通保持した光ファイバ111がぐらついて撓んだりすることにより光ファイバ111の内部に割れや欠け等の損傷が発生し、結果的に良好な光結合ができなくなる場合があるため、光ファイバ111を突出させたフェルール100の前端に、例えば図6(C)に示すような接着剤からなる隆起部106を形成し、光ファイバ111の突出部分の周囲を前記隆起部106で取り囲んで安定保持しながら研磨することで光ファイバ111の損傷を防いでいる。   Note that the optical fiber 111 held through the through hole 102 at the time of polishing wobbles and bends to cause damage such as cracking or chipping inside the optical fiber 111, and as a result, good optical coupling cannot be performed. Since there is a case, a raised portion 106 made of an adhesive, for example, as shown in FIG. 6C is formed at the front end of the ferrule 100 from which the optical fiber 111 is projected, and the raised portion around the protruding portion of the optical fiber 111 is formed. The optical fiber 111 is prevented from being damaged by polishing while being surrounded and stably held by the portion 106.

特開2007−279576号公報JP 2007-279576 A

しかし、前記のようにフェルール100の前端に突出させた光ファイバ111の周囲に接着剤からなる隆起部106を形成し、その後、該部分を研磨する方法では、隆起部106の形成工程が増加して製造効率が低下すると共に、光ファイバ111の径が小さいため隆起部106の大きさや形状を正確に制御することができず、研磨後の光ファイバ装着フェルールの品質が安定しないという問題もある。   However, in the method of forming the raised portion 106 made of the adhesive around the optical fiber 111 protruding from the front end of the ferrule 100 as described above and then polishing the portion, the number of steps for forming the raised portion 106 increases. As a result, the manufacturing efficiency is reduced, and the size and shape of the raised portion 106 cannot be accurately controlled because the diameter of the optical fiber 111 is small, so that the quality of the polished optical fiber mounting ferrule is not stable.

本発明は前記問題に鑑みてなされたもので、光ファイバを貫通保持したフェルールの前端を研磨する際に該光ファイバに割れや欠け等の損傷が発生するのを防止して、良好かつ安定した品質を有する光ファイバ装着フェルールを効率よく製造できることを課題としている。   The present invention has been made in view of the above problems, and prevents the occurrence of damage such as cracks and chips in the optical fiber when polishing the front end of the ferrule penetrating and holding the optical fiber. It is an object to efficiently manufacture an optical fiber mounting ferrule having quality.

前記課題を解決するため、第一の発明として、光ファイバケーブルを貫通させる第1貫通穴と、前記光ファイバケーブルの被覆の前端より突出させた光ファイバを貫通させる第2貫通穴をフェルールの中心軸線に沿って連続して設けると共に、該第2貫通穴の前端に連続し該第2貫通穴より大径とした接着剤溜め部を前記フェルールの前端に凹設し、
前記フェルールの接着剤溜め部、第2貫通穴および第1貫通穴に接着剤を注入した後、
光ファイバケーブルを前記第1貫通穴に貫通させると共に該光ファイバケーブルの被覆の前端より突出させた光ファイバを前記第2貫通穴および前記接着剤溜め部に貫通させて、前記接着剤を硬化させ、
ついで、前記接着剤溜め部に光ファイバを貫通固着した前記フェルールの前端を研磨して該光ファイバの前端面を露出させることを特徴とする光ファイバ装着フェルールの製造方法を提供している。
In order to solve the above-mentioned problem, as a first invention, the center of the ferrule includes a first through-hole through which the optical fiber cable passes and a second through-hole through which the optical fiber protruded from the front end of the coating of the optical fiber cable. An adhesive reservoir that is provided continuously along the axis and continuous with the front end of the second through hole and having a diameter larger than that of the second through hole is recessed at the front end of the ferrule.
After injecting the adhesive into the adhesive reservoir, the second through hole and the first through hole of the ferrule,
An optical fiber cable is passed through the first through hole and an optical fiber protruding from the front end of the coating of the optical fiber cable is passed through the second through hole and the adhesive reservoir to cure the adhesive. ,
Next, a method for manufacturing an optical fiber mounting ferrule is provided, wherein the front end of the ferrule having an optical fiber penetrated and fixed to the adhesive reservoir is polished to expose the front end surface of the optical fiber.

前記のように、第一の発明では、光ファイバを貫通させるフェルールの第2貫通穴の前端に連続して、該第2貫通穴より大径とした接着剤溜め部を前記フェルールの前端に凹設し、該接着剤溜め部、第2貫通穴および光ファイバケーブルを貫通させる第1貫通穴に接着剤を注入した後、光ファイバケーブルを第1貫通穴に、その先端の光ファイバを第2貫通穴および接着剤溜め部に貫通させる構成としている。前記接着剤溜め部、第2貫通穴および第1貫通穴に接着剤を注入してから光ファイバケーブルおよび光ファイバを貫通させることで、光ファイバを前記接着剤溜め部および第2貫通穴に、光ファイバケーブルを前記第1貫通穴に確実に固着して光ファイバの安定保持を図ることができる。特に、研磨を行うフェルールの前端近傍では、光ファイバが第2貫通穴より大径の接着剤溜め部の接着剤でさらに安定した状態で保持されるため、研磨時に光ファイバのぐらつきや撓み等が生じにくく光ファイバに割れや欠け等の損傷が発生するのを効果的に防止できる。また、前記第1、第2貫通穴への接着剤注入時に前記接着剤溜め部にも接着剤が注入、充填されるため、従来のように光ファイバ貫通後に接着剤からなる隆起部をフェルールの前端に形成する必要がなく製造効率が高められるうえ、前記接着剤溜め部の大きさや形状は予め定められているため、研磨後の光ファイバ装着フェルールの品質も良好な状態で安定させることができる。   As described above, in the first invention, the adhesive reservoir having a diameter larger than that of the second through hole is recessed in the front end of the ferrule continuously from the front end of the second through hole of the ferrule that allows the optical fiber to pass therethrough. And injecting the adhesive into the adhesive reservoir, the second through hole, and the first through hole penetrating the optical fiber cable, and then inserting the optical fiber cable into the first through hole and the second optical fiber at the tip. It is set as the structure penetrated to a through-hole and an adhesive reservoir part. By injecting the adhesive into the adhesive reservoir, the second through hole, and the first through hole and then penetrating the optical fiber cable and the optical fiber, the optical fiber is inserted into the adhesive reservoir and the second through hole. The optical fiber cable can be securely fixed to the first through hole to stably hold the optical fiber. In particular, in the vicinity of the front end of the ferrule to be polished, the optical fiber is held in a more stable state by the adhesive in the adhesive reservoir portion having a diameter larger than that of the second through hole. It is possible to effectively prevent the occurrence of damage such as cracking or chipping in the optical fiber that is hardly generated. Also, since the adhesive is injected and filled in the adhesive reservoir when the adhesive is injected into the first and second through holes, the raised portion made of the adhesive is inserted into the ferrule after passing through the optical fiber as in the prior art. Since it is not necessary to form the front end, the manufacturing efficiency is improved, and the size and shape of the adhesive reservoir are predetermined, so that the quality of the optical fiber mounting ferrule after polishing can be stabilized in a good state. .

接着剤の注入工程では、先端から前記接着剤を吐出するノズルを前記第1貫通穴の前端近傍まで挿入して前記第2貫通穴および接着剤溜め部に前記接着剤を注入し、続いて前記ノズルを後方へ引き抜きながら前記第1貫通穴に接着剤を注入することが好ましい。   In the adhesive injection step, a nozzle for discharging the adhesive from the tip is inserted to the vicinity of the front end of the first through hole to inject the adhesive into the second through hole and the adhesive reservoir, and then It is preferable to inject an adhesive into the first through hole while pulling the nozzle backward.

前記のように、接着剤を吐出するノズルを前記第1貫通穴の前端近傍まで挿入することで、光ファイバを貫通する前記第2貫通穴および接着剤溜め部への確実な接着剤の注入が可能となる。また、前記ノズルを後方へ引き抜きながら接着剤を吐出することで、光ファイバケーブルを貫通する第1貫通穴にも気泡の混入を防止しながら接着剤を均一に注入していくことができる。   As described above, by inserting the nozzle that discharges the adhesive to the vicinity of the front end of the first through hole, reliable injection of the adhesive into the second through hole penetrating the optical fiber and the adhesive reservoir is performed. It becomes possible. Further, by discharging the adhesive while pulling out the nozzle backward, the adhesive can be uniformly injected into the first through hole penetrating the optical fiber cable while preventing air bubbles from entering.

前記接着剤としては、23℃における粘度が3000〜6000cPsである接着剤を用いていることが好ましい。   As the adhesive, an adhesive having a viscosity of 3000 to 6000 cPs at 23 ° C. is preferably used.

前記粘度は、具体的にはASTM試験法D2393に基づく23℃、50rpmにおける粘度であり、該粘度が3000〜5000cPsであることがより好ましい。
前記粘度を3000〜6000cPsとすることで、注入した接着剤が前記接着剤溜め部の前端や第1貫通穴の後端から漏出するのを防ぎつつ、光ファイバ貫通時に光ファイバが持ち出す接着剤の量も制限できる。また、前記粘度を3000〜6000cPsとすることで、接着剤の可使用時間(POT Life)を3時間以下とすることができるため、光ファイバ装着フェルールを効率的に製造できる。
前記接着剤としては、例えばエポキシ系の接着剤を用いることが好ましい。
Specifically, the viscosity is a viscosity at 23 ° C. and 50 rpm based on ASTM test method D2393, and the viscosity is more preferably 3000 to 5000 cPs.
By setting the viscosity to 3000 to 6000 cPs, it is possible to prevent the injected adhesive from leaking out from the front end of the adhesive reservoir or the rear end of the first through hole, and the adhesive that the optical fiber takes out when penetrating the optical fiber. The amount can also be limited. Further, by setting the viscosity to 3000 to 6000 cPs, the usable time (POT Life) of the adhesive can be reduced to 3 hours or less, so that the optical fiber mounting ferrule can be efficiently manufactured.
For example, an epoxy adhesive is preferably used as the adhesive.

また、前記フェルールをジルコニアまたは液晶ポリマー(LCP)により形成すると共に、前記接着剤として、硬化後の硬度が前記フェルールおよび前記光ファイバの硬度より小である接着剤を用いていることが好ましい。   Moreover, it is preferable that the ferrule is formed of zirconia or liquid crystal polymer (LCP), and an adhesive having a hardness after curing smaller than the hardness of the ferrule and the optical fiber is used as the adhesive.

ジルコニアや液晶ポリマー(LCP)はいずれも高硬度で寸法精度が高いため、光ファイバ同士の正確なPC接続(フィジカルコンタクト)が可能な信頼性の高いフェルールを得ることができる。
また、前記接着剤の硬化後の硬度をフェルールや光ファイバの硬度より小とすることで、前記第2貫通穴に貫通する光ファイバと該第2貫通穴の周壁との間に低硬度の接着剤層が形成されることとなり、光ファイバが高硬度の第2貫通穴の周壁に接触した衝撃で割れや欠け等の損傷を受けるのを防止できる。また、接着剤の硬度を光ファイバの硬度より小とすることで、研磨時に、前記接着剤溜め部に充填した接着剤の前端面から光ファイバの前端面を容易に露出させることができる。前記接着剤の硬化後の硬度としては、例えば、ショアD硬度で80〜90程度であることが好ましい。
Since both zirconia and liquid crystal polymer (LCP) have high hardness and high dimensional accuracy, a highly reliable ferrule capable of accurate PC connection (physical contact) between optical fibers can be obtained.
Further, by making the hardness of the adhesive after curing smaller than the hardness of a ferrule or an optical fiber, low-hardness adhesion can be achieved between the optical fiber penetrating the second through hole and the peripheral wall of the second through hole. Since the agent layer is formed, it is possible to prevent the optical fiber from being damaged such as cracking or chipping due to an impact coming into contact with the peripheral wall of the second through hole having high hardness. Moreover, by making the hardness of the adhesive smaller than that of the optical fiber, the front end face of the optical fiber can be easily exposed from the front end face of the adhesive filled in the adhesive reservoir during polishing. The hardness of the adhesive after curing is preferably about 80 to 90 in Shore D hardness, for example.

前記接着剤溜め部を略円柱形状または前端に向けて拡径する略円錐台形状とし、該接着剤溜め部の中心軸線に沿って前記光ファイバを貫通させると共に前記接着剤溜め部の前端面の直径を前記光ファイバの直径の3倍以上とし、かつ、前記接着剤溜め部の深さを前記光ファイバの直径の3倍以上、より好ましくは5倍以上としていることが好ましい。
前記接着剤溜め部を前記寸法とすることで、光ファイバの前端側部分をより安定した状態で保持できる。
The adhesive reservoir has a substantially cylindrical shape or a substantially frustoconical shape that expands toward the front end, and passes through the optical fiber along the central axis of the adhesive reservoir, and is formed on the front end surface of the adhesive reservoir. It is preferable that the diameter is 3 times or more of the diameter of the optical fiber, and the depth of the adhesive reservoir is 3 times or more, more preferably 5 times or more of the diameter of the optical fiber.
By setting the adhesive reservoir portion to the dimensions, the front end side portion of the optical fiber can be held in a more stable state.

また、第二の発明では、第一の発明の製造方法により製造された光ファイバ装着フェルールを提供している。
第二の発明の光ファイバ装着フェルールでは、光ファイバに割れや欠け等の損傷が生じていないため、良好な光結合が可能となる。
Moreover, in 2nd invention, the optical fiber mounting ferrule manufactured by the manufacturing method of 1st invention is provided.
In the optical fiber mounting ferrule of the second invention, since the optical fiber is not damaged such as cracking or chipping, good optical coupling is possible.

さらに、第三の発明では、第二の発明の光ファイバ装着フェルールをコネクタ・ハウジング内に挿入保持している光コネクタも提供している。   Furthermore, the third invention also provides an optical connector in which the optical fiber mounting ferrule of the second invention is inserted and held in the connector housing.

前述したように、第一の発明では、光ファイバを貫通させるフェルールの第2貫通穴の前端に連続して、該第2貫通穴より大径とした接着剤溜め部を前記フェルールの前端に凹設し、該接着剤溜め部、第2貫通穴および光ファイバケーブルを貫通する第1貫通穴に接着剤を注入してから光ファイバケーブルおよび光ファイバを貫通させている。よって、光ファイバを前記接着剤溜め部および第2貫通穴に、光ファイバケーブルを前記第1貫通穴に確実に固着して光ファイバの安定保持を図ると共に、研磨を行うフェルールの前端近傍では、光ファイバが第2貫通穴より大径の接着剤溜め部の接着剤でさらに安定した状態で保持されるため、研磨時に光ファイバに割れや欠け等の損傷が発生するのを効果的に防止できる。また、前記第1、第2貫通穴への接着剤注入時に前記接着剤溜め部にも接着剤が注入、充填されるため製造効率を低下させず、前記接着剤溜め部の大きさや形状も予め定められているため、研磨後の光ファイバ装着フェルールの品質も安定させることができる。   As described above, in the first invention, the adhesive reservoir portion having a diameter larger than that of the second through hole is recessed in the front end of the ferrule continuously from the front end of the second through hole of the ferrule that allows the optical fiber to pass therethrough. The adhesive is poured into the first through hole penetrating the adhesive reservoir, the second through hole, and the optical fiber cable, and then the optical fiber cable and the optical fiber are passed through. Therefore, the optical fiber is securely fixed to the adhesive reservoir and the second through hole, and the optical fiber cable is securely fixed to the first through hole to stably hold the optical fiber, and in the vicinity of the front end of the ferrule for polishing, Since the optical fiber is held in a more stable state with the adhesive in the adhesive reservoir having a diameter larger than that of the second through hole, it is possible to effectively prevent the optical fiber from being damaged such as cracks and chips during polishing. . In addition, when the adhesive is injected into the first and second through holes, the adhesive is also filled and filled in the adhesive reservoir, so that the manufacturing efficiency is not lowered, and the size and shape of the adhesive reservoir are also set in advance. Therefore, the quality of the optical fiber mounting ferrule after polishing can be stabilized.

よって、第二の発明の光ファイバ装着フェルールや、該光ファイバ装着フェルールを備えた第三の発明の光コネクタも、貫通する光ファイバに割れや欠け等の損傷が生じていないため、光ファイバ間の良好な光結合が可能となる。   Therefore, the optical fiber mounting ferrule of the second invention and the optical connector of the third invention equipped with the optical fiber mounting ferrule are also free from damage such as cracks or chips in the optical fiber that passes through. Better optical coupling becomes possible.

本発明の実施形態の光ファイバ装着前のフェルールを示し、(A)は斜視図、(B)はA−A線断面図である。The ferrule before optical fiber mounting of embodiment of this invention is shown, (A) is a perspective view, (B) is AA sectional view taken on the line. (A)はディスペンサの吐出ノズルを第1貫通穴の前端近傍まで挿入して第2貫通穴および接着剤溜め部に接着剤を注入している状態、(B)は吐出ノズルを後方へ引き抜きながら第1貫通穴に接着剤を注入している状態を示す一部断面図である。(A) is a state in which the discharge nozzle of the dispenser is inserted to the vicinity of the front end of the first through hole and the adhesive is being injected into the second through hole and the adhesive reservoir, and (B) is while pulling out the discharge nozzle to the rear. It is a partial cross section figure which shows the state which has inject | poured the adhesive agent to the 1st through-hole. (A)は、光ファイバケーブルをフェルールの第1貫通穴に、光ファイバを第2貫通穴および接着剤溜め部に貫通固着した状態を示す一部断面図であり、(B)はフェルールの前端を研磨して完成した光ファイバ装着フェルールの要部拡大断面図である。(A) is a partial cross-sectional view showing a state in which an optical fiber cable is fixed to the first through hole of the ferrule and an optical fiber is fixed to the second through hole and the adhesive reservoir, and (B) is a front end of the ferrule. FIG. 5 is an enlarged cross-sectional view of a main part of an optical fiber mounting ferrule completed by polishing the fiber. 光ファイバ装着フェルールを備えた光コネクタの一部断面図である。It is a partial cross section figure of the optical connector provided with the optical fiber mounting ferrule. 接着剤溜め部の形状を変えた別のフェルールの断面図である。It is sectional drawing of another ferrule which changed the shape of the adhesive reservoir part. 従来例を示す図であり、(A)はフェルールの貫通穴に光ファイバケーブルおよび光ファイバを貫通した状態を示す一部断面図、(B)は貫通穴の空隙に樹脂材料を充填した状態を示す一部断面図、(C)は貫通穴の空隙に接着剤を注入した状態を示す一部断面図、(D)はフェルールの前端を研磨して形成した光ファイバ装着フェルールの一部断面図である。It is a figure which shows a prior art example, (A) is a partial cross section figure which shows the state which penetrated the optical fiber cable and the optical fiber in the through-hole of the ferrule, (B) is the state which filled the resin material into the space | gap of the through-hole. (C) is a partial cross-sectional view showing a state in which an adhesive is injected into the gap of the through hole. (D) is a partial cross-sectional view of an optical fiber mounting ferrule formed by polishing the front end of the ferrule. It is.

以下、本発明の実施形態を図面を参照して説明する。
図1乃至図4は本発明の実施形態を示している。
本実施形態では、まず、図1に示すようなフェルール1を製造する。フェルール1は、光ファイバケーブル20および該光ファイバケーブル20の被覆の前端より突出させた光ファイバ21を貫通させる略円筒状のフェルール本体部2と、該フェルール本体部2の中間位置より径方向に突出させた環状のフランジ部3からなる。フェルール本体部2には、光ファイバケーブル20を貫通させる大径の第1貫通穴4と、光ファイバ21を貫通させる小径の第2貫通穴5をフェルール1の中心軸線に沿って設け、第2貫通穴5の後端の縮径部5aを介して第1貫通穴4と第2貫通穴5を連続させている。なお、本実施形態では第2貫通穴5の穴径を、貫通する光ファイバ21の直径より0.8%大きく設定している。
Hereinafter, embodiments of the present invention will be described with reference to the drawings.
1 to 4 show an embodiment of the present invention.
In this embodiment, first, a ferrule 1 as shown in FIG. 1 is manufactured. The ferrule 1 includes a substantially cylindrical ferrule main body 2 that penetrates the optical fiber cable 20 and the optical fiber 21 that protrudes from the front end of the coating of the optical fiber cable 20, and a radial direction from an intermediate position of the ferrule main body 2. It consists of a protruding annular flange 3. The ferrule body 2 is provided with a large-diameter first through hole 4 through which the optical fiber cable 20 penetrates and a small-diameter second through hole 5 through which the optical fiber 21 penetrates along the central axis of the ferrule 1. The first through hole 4 and the second through hole 5 are made continuous through a reduced diameter portion 5 a at the rear end of the through hole 5. In the present embodiment, the diameter of the second through hole 5 is set to be 0.8% larger than the diameter of the optical fiber 21 that passes therethrough.

さらに、前記第2貫通穴5の前端に連続して、該第2貫通穴5より大径とした接着剤溜め部6をフェルール本体部2の前端に凹設している。後段で説明するが、接着剤溜め部6には接着剤11が注入、充填されると共に、前記第2貫通穴5に貫通させた光ファイバ21の前端側部分を該接着剤溜め部6に貫通させる。接着剤溜め部6は前端に向けて拡径する円錐台形状とし、接着剤溜め部6前端面の直径Dを貫通させる光ファイバ21の直径の3倍以上(本実施形態では4倍)とし、かつ接着剤溜め部6の深さHも光ファイバ21の直径の3倍以上(本実施形態では3倍)としている。接着剤溜め部6の中心軸線は第1、第2貫通穴4、5の中心軸線に一致させている。なお、本実施形態では前端に向けて拡径する円錐台形状としているが、図5に示すような円柱形状としてもよい。   Further, an adhesive reservoir portion 6 having a diameter larger than that of the second through hole 5 is recessed in the front end of the ferrule main body portion 2 continuously from the front end of the second through hole 5. As will be described later, the adhesive 11 is injected and filled in the adhesive reservoir 6 and the front end side portion of the optical fiber 21 that has passed through the second through hole 5 penetrates the adhesive reservoir 6. Let The adhesive reservoir 6 has a frustoconical shape that expands toward the front end, and is at least three times the diameter of the optical fiber 21 that penetrates the diameter D of the front end surface of the adhesive reservoir 6 (four times in this embodiment). Further, the depth H of the adhesive reservoir 6 is also set to 3 times or more (3 times in this embodiment) of the diameter of the optical fiber 21. The central axis of the adhesive reservoir 6 is made to coincide with the central axes of the first and second through holes 4 and 5. In addition, in this embodiment, although it is set as the truncated cone shape expanded toward a front end, it is good also as a column shape as shown in FIG.

前記構成のフェルール1をジルコニアにより製造している。具体的には、ジルコニア粉体と熱可塑性樹脂バインダーとを混合した原料を射出成形機に投入して成形し、得られた成形体を高温の焼成炉で焼結した後、所定の後加工を施して前記フェルール1を製造している。本実施形態では射出成形によりフェルール1を成形しているが、押出成形によって成形することも可能である。また、本実施形態ではジルコニアをフェルール1の原料として用いているが、液晶ポリマー(LCP)を用いてもよい。   The ferrule 1 having the above configuration is manufactured from zirconia. Specifically, a raw material in which zirconia powder and a thermoplastic resin binder are mixed is put into an injection molding machine and molded. After the obtained molded body is sintered in a high-temperature firing furnace, predetermined post-processing is performed. Thus, the ferrule 1 is manufactured. In this embodiment, the ferrule 1 is formed by injection molding, but it can also be formed by extrusion. In this embodiment, zirconia is used as a raw material for ferrule 1, but a liquid crystal polymer (LCP) may be used.

次に、図2(A)のように、製造したフェルール1の第1貫通穴4の後端開口より接着剤吐出用のディスペンサ10を挿入し、先端の吐出ノズル10aが第1貫通穴4の前端近傍に到達するまでディスペンサ10を前方に移動させる。該位置で吐出ノズル10aより接着剤11を吐出することで第2貫通穴5および接着剤溜め部6に該接着剤11を注入し、その後、図2(B)のように、ディスペンサ10を後方へ引き抜きながら吐出ノズル10aより接着剤11を吐出することで第1貫通穴4にも該接着剤11を注入する。   Next, as shown in FIG. 2A, the dispenser 10 for discharging the adhesive is inserted from the rear end opening of the first through hole 4 of the manufactured ferrule 1, and the discharge nozzle 10 a at the tip of the first through hole 4 The dispenser 10 is moved forward until it reaches the vicinity of the front end. The adhesive 11 is injected into the second through hole 5 and the adhesive reservoir 6 by discharging the adhesive 11 from the discharge nozzle 10a at the position, and then the dispenser 10 is moved backward as shown in FIG. The adhesive 11 is also injected into the first through hole 4 by discharging the adhesive 11 from the discharge nozzle 10a while being pulled out.

本実施形態では、接着剤11としてエポキシ系の接着剤(商品名:EPO−TEK 353ND、エポキシテクノロジー社製)を用いている。該接着剤11のASTM試験法D2393に基づく23℃、50rpmにおける粘度は3000〜5000cPsであり、硬化後の硬度はフェルール1および光ファイバ21の硬度より小で、ショアD硬度で85である。   In the present embodiment, an epoxy adhesive (trade name: EPO-TEK 353ND, manufactured by Epoxy Technology Co., Ltd.) is used as the adhesive 11. The adhesive 11 has a viscosity of 3000 to 5000 cPs at 23 ° C. and 50 rpm based on ASTM test method D2393. The hardness after curing is smaller than the hardness of the ferrule 1 and the optical fiber 21 and is 85 in Shore D hardness.

続いて、図3(A)に示すように、接着剤11を注入した第1貫通穴4に光ファイバケーブル20を貫通すると共に、接着剤11を注入した第2貫通穴5および接着剤溜め部6に光ファイバ21を中心軸線に沿って貫通して、接着剤11を硬化させる。
接着剤硬化後に、図3(B)のように、接着剤溜め部6に光ファイバ21を貫通固着したフェルール1の前端を研磨して光ファイバ21の前端面21aを露出、鏡面仕上げすることにより、光ファイバ装着フェルール30が完成する。
Subsequently, as shown in FIG. 3A, the optical fiber cable 20 passes through the first through hole 4 into which the adhesive 11 has been injected, and the second through hole 5 and the adhesive reservoir portion into which the adhesive 11 has been injected. 6 through the optical fiber 21 along the central axis, and the adhesive 11 is cured.
After the adhesive is cured, as shown in FIG. 3B, the front end 21a of the optical fiber 21 is exposed and mirror-finished by polishing the front end of the ferrule 1 that penetrates and fixes the optical fiber 21 to the adhesive reservoir 6 The optical fiber mounting ferrule 30 is completed.

前記のように、本実施形態では、光ファイバ21を貫通させるフェルール1の第2貫通穴5の前端に連続して、該第2貫通穴5より大径とした接着剤溜め部6を前記フェルール1の前端に凹設し、該接着剤溜め部6、第2貫通穴5および第1貫通穴4に接着剤11を注入してから光ファイバケーブル20および光ファイバ21を貫通させている。よって、光ファイバ21を接着剤溜め部6および第2貫通穴5に、光ファイバケーブル20を第1貫通穴4に確実に固着して光ファイバ21の安定保持を図ると共に、研磨を行うフェルール1の前端近傍では、光ファイバ21が第2貫通穴5より大径の接着剤溜め部6の接着剤11でさらに安定した状態で保持されるため、研磨時に光ファイバ21に割れや欠け等の損傷が発生するのを効果的に防止できる。また、第1、第2貫通穴4、5への接着剤注入時に接着剤溜め部6にも接着剤11が注入、充填されるため製造効率を大きく低下させず、また、接着剤溜め部6の大きさや形状も予め定められているため、研磨後の光ファイバ装着フェルール30の品質も安定させることができる。   As described above, in the present embodiment, the adhesive reservoir 6 having a diameter larger than that of the second through hole 5 is formed continuously with the front end of the second through hole 5 of the ferrule 1 through which the optical fiber 21 passes. The optical fiber cable 20 and the optical fiber 21 are penetrated after the adhesive 11 is injected into the adhesive reservoir 6, the second through hole 5, and the first through hole 4. Therefore, the optical fiber 21 is securely fixed to the adhesive reservoir 6 and the second through-hole 5, and the optical fiber cable 20 is securely fixed to the first through-hole 4 so that the optical fiber 21 is stably held and the ferrule 1 is polished. Since the optical fiber 21 is held in a more stable state by the adhesive 11 of the adhesive reservoir 6 having a diameter larger than that of the second through-hole 5 in the vicinity of the front end of the optical fiber 21, damage such as cracking or chipping is caused in the optical fiber 21 during polishing. Can be effectively prevented. In addition, since the adhesive 11 is injected and filled in the adhesive reservoir 6 when the adhesive is injected into the first and second through holes 4 and 5, the production efficiency is not greatly reduced. Also, the adhesive reservoir 6 Since the size and shape of these are also determined in advance, the quality of the optical fiber mounting ferrule 30 after polishing can be stabilized.

よって、前記光ファイバ装着フェルール30を例えば図4に示すようにコネクタ・ハウジング31内に挿入固定することにより良好な光結合が可能な光コネクタ32が得られる。   Therefore, an optical connector 32 capable of good optical coupling is obtained by inserting and fixing the optical fiber mounting ferrule 30 into a connector housing 31 as shown in FIG. 4, for example.

1 フェルール
4 第1貫通穴
5 第2貫通穴
6 接着剤溜め部
10a 吐出ノズル
11 接着剤
20 光ファイバケーブル
21 光ファイバ
30 光ファイバ装着フェルール
31 コネクタ・ハウジング
32 光コネクタ
DESCRIPTION OF SYMBOLS 1 Ferrule 4 1st through-hole 5 2nd through-hole 6 Adhesive reservoir part 10a Discharge nozzle 11 Adhesive 20 Optical fiber cable 21 Optical fiber 30 Optical fiber installation ferrule 31 Connector housing 32 Optical connector

Claims (7)

光ファイバケーブルを貫通させる第1貫通穴と、前記光ファイバケーブルの被覆の前端より突出させた光ファイバを貫通させる第2貫通穴をフェルールの中心軸線に沿って連続して設けると共に、該第2貫通穴の前端に連続し該第2貫通穴より大径とした接着剤溜め部を前記フェルールの前端に凹設し、
前記フェルールの接着剤溜め部、第2貫通穴および第1貫通穴に接着剤を注入した後、
光ファイバケーブルを前記第1貫通穴に貫通させると共に該光ファイバケーブルの被覆の前端より突出させた光ファイバを前記第2貫通穴および前記接着剤溜め部に貫通させて、前記接着剤を硬化させ、
ついで、前記接着剤溜め部に光ファイバを貫通固着した前記フェルールの前端を研磨して該光ファイバの前端面を露出させることを特徴とする光ファイバ装着フェルールの製造方法。
A first through hole for penetrating the optical fiber cable and a second through hole for penetrating the optical fiber protruding from the front end of the coating of the optical fiber cable are provided continuously along the central axis of the ferrule, and the second An adhesive reservoir portion which is continuous with the front end of the through hole and has a diameter larger than that of the second through hole is recessed in the front end of the ferrule,
After injecting the adhesive into the adhesive reservoir, the second through hole and the first through hole of the ferrule,
An optical fiber cable is passed through the first through hole and an optical fiber protruding from the front end of the coating of the optical fiber cable is passed through the second through hole and the adhesive reservoir to cure the adhesive. ,
Next, a method for manufacturing an optical fiber mounting ferrule, wherein the front end of the ferrule having an optical fiber penetrated and fixed to the adhesive reservoir is polished to expose the front end surface of the optical fiber.
先端から前記接着剤を吐出するノズルを前記第1貫通穴の前端近傍まで挿入して前記第2貫通穴および接着剤溜め部に前記接着剤を注入し、続いて前記ノズルを後方へ引き抜きながら前記第1貫通穴に接着剤を注入している請求項1に記載の光ファイバ装着フェルールの製造方法。   A nozzle that discharges the adhesive from the tip is inserted to the vicinity of the front end of the first through hole, the adhesive is injected into the second through hole and the adhesive reservoir, and then the nozzle is pulled back while pulling out the nozzle. The method for manufacturing an optical fiber mounting ferrule according to claim 1, wherein an adhesive is injected into the first through hole. 前記接着剤として、23℃における粘度が3000〜6000cPsである接着剤を用いている請求項1または請求項2に記載の光ファイバ装着フェルールの製造方法。   The manufacturing method of the optical fiber mounting ferrule of Claim 1 or Claim 2 which uses the adhesive agent whose viscosity in 23 degreeC is 3000-6000 cPs as said adhesive agent. 前記フェルールをジルコニアまたは液晶ポリマー(LCP)により形成すると共に、前記接着剤として、硬化後の硬度が前記フェルールおよび前記光ファイバの硬度より小である接着剤を用いている請求項1乃至請求項3のいずれか1項に記載の光ファイバ装着フェルールの製造方法。   The ferrule is formed of zirconia or liquid crystal polymer (LCP), and an adhesive whose hardness after curing is smaller than the hardness of the ferrule and the optical fiber is used as the adhesive. The manufacturing method of the optical fiber mounting ferrule of any one of these. 前記接着剤溜め部を略円柱形状または前端に向けて拡径する略円錐台形状とし、該接着剤溜め部の中心軸線に沿って前記光ファイバを貫通させると共に前記接着剤溜め部の前端面の直径を前記光ファイバの直径の3倍以上とし、かつ、前記接着剤溜め部の深さを前記光ファイバの直径の3倍以上としている請求項1乃至請求項4のいずれか1項に記載の光ファイバ装着フェルールの製造方法。   The adhesive reservoir has a substantially cylindrical shape or a substantially frustoconical shape that expands toward the front end, and passes through the optical fiber along the central axis of the adhesive reservoir, and is formed on the front end surface of the adhesive reservoir. 5. The diameter according to claim 1, wherein the diameter is three times or more of the diameter of the optical fiber, and the depth of the adhesive reservoir is three times or more of the diameter of the optical fiber. Manufacturing method of an optical fiber mounting ferrule. 請求項1乃至請求項5のいずれか1項に記載の製造方法により製造された光ファイバ装着フェルール。   An optical fiber mounting ferrule manufactured by the manufacturing method according to any one of claims 1 to 5. 請求項6に記載の光ファイバ装着フェルールをコネクタ・ハウジング内に挿入保持している光コネクタ。   An optical connector in which the optical fiber mounting ferrule according to claim 6 is inserted and held in a connector housing.
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JP2016138913A (en) * 2015-01-26 2016-08-04 京セラ株式会社 Optical fiber with ferrule and light guide device
US20170139149A1 (en) * 2015-11-18 2017-05-18 Lumasense Technologies Holdings, Inc. Low reflection fiber-optic connector
CN109541757A (en) * 2018-10-10 2019-03-29 河南华创通信设备有限公司 The glue injection machine of optical fiber connector
CN109541758A (en) * 2018-10-10 2019-03-29 河南华创通信设备有限公司 Fiber optic connector assembly

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2016138913A (en) * 2015-01-26 2016-08-04 京セラ株式会社 Optical fiber with ferrule and light guide device
US20170139149A1 (en) * 2015-11-18 2017-05-18 Lumasense Technologies Holdings, Inc. Low reflection fiber-optic connector
US10598866B2 (en) * 2015-11-18 2020-03-24 Lumasense Technologies Holdings, Inc. Low reflection fiber-optic connector
CN109541757A (en) * 2018-10-10 2019-03-29 河南华创通信设备有限公司 The glue injection machine of optical fiber connector
CN109541758A (en) * 2018-10-10 2019-03-29 河南华创通信设备有限公司 Fiber optic connector assembly
CN109541757B (en) * 2018-10-10 2023-07-21 河南华创通信设备有限公司 Glue injector of optical fiber connector
CN109541758B (en) * 2018-10-10 2023-07-21 河南华创通信设备有限公司 Optical fiber connector assembly

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