JPH0572425A - Optical fiber probe - Google Patents

Optical fiber probe

Info

Publication number
JPH0572425A
JPH0572425A JP3231566A JP23156691A JPH0572425A JP H0572425 A JPH0572425 A JP H0572425A JP 3231566 A JP3231566 A JP 3231566A JP 23156691 A JP23156691 A JP 23156691A JP H0572425 A JPH0572425 A JP H0572425A
Authority
JP
Japan
Prior art keywords
optical fiber
semi
cylindrical holding
infrared optical
holding members
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.)
Pending
Application number
JP3231566A
Other languages
Japanese (ja)
Inventor
Kiyoko Oshima
希代子 大嶋
Fumikazu Tateishi
文和 立石
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Electric Industrial Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Matsushita Electric Industrial Co Ltd filed Critical Matsushita Electric Industrial Co Ltd
Priority to JP3231566A priority Critical patent/JPH0572425A/en
Publication of JPH0572425A publication Critical patent/JPH0572425A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To decrease the bleeding out of a laser beam without generating flaws and to suppress the generation of heat by holding an IR optical fiber with two sheets of semi-cylindrical holding members provided with V-grooves, thereby holding the IR optical fiber by line contact. CONSTITUTION:The graded hole 4b of a tightening ring 4 and the graded parts 5c of the semi-cylindrical holding members 5 do not come into contact with each other and two sheets of the semi-cylindrical holding members 5 are held open in a circumferential direction in the state of loosening the tightening ring 4. The IR optical fiber 1 is inserted in this state. The tightening ring 4 is then screwed, by which the graded hole 4b of the tightening ring 4 and the graded parts 5c of the semi-cylindrical holding members 5 are brought into contact with each other and two sheets of the semi-cylindrical holding members 5 are closed in a central direction. Namely, the IR optical fiber 1 is sandwiched and held by two sheets of the semi-cylindrical holding members 5. The IR optical fiber 1 held between the V grooves 5a is housed and protected without slipping at the end of a protective tube 2 by inserting the protective tube 2 between the flat grooves 5b of two sheets of the semi-cylindrical holding members 5.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明はレーザ加工機などにおい
て、高出力のレーザ光を所定の位置まで導くための光フ
ァイバープローブに関するものである。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to an optical fiber probe for guiding high-power laser light to a predetermined position in a laser processing machine or the like.

【0002】[0002]

【従来の技術】近年、CO2レーザ加工機などにおい
て、高出力のCO2レーザ光を導くのに赤外光ファイバ
ーを用いる試みがなされている。その赤外光ファイバー
の材料としてKRS−5等のハロゲン化物が用いられて
いる。
2. Description of the Related Art In recent years, attempts have been made to use an infrared optical fiber for guiding high-power CO 2 laser light in a CO 2 laser processing machine or the like. A halide such as KRS-5 is used as a material for the infrared optical fiber.

【0003】従来の通信用光ファイバーは、モードを制
限するためコアの外周にこれよりわずかに屈折率の小さ
いクラッドを施しさらにこの外周をプラスチック等で被
覆して補強しているのが一般的構成である。
In a conventional optical fiber for communication, in order to limit modes, a clad having a slightly smaller refractive index than the core is provided on the outer periphery of the core, and the outer periphery is covered with plastic or the like for reinforcement. is there.

【0004】しかし、CO2レーザ光等の遠赤外領域で
はこれに適したクラッド材に適当なものがなく、また被
覆は赤外光ファイバーの放熱効果の点から好ましくな
い。そのため、光ファイバープローブの構成としては、
赤外光ファイバーにクラッドを施さず(エアクラッド)
コアのまま使用し、これを保護チューブにゆるく収納す
る構造がとられている。しかし赤外光ファイバーと保護
チューブをどこかで係止しなければならない。
However, in the far infrared region such as CO 2 laser light, there is no suitable clad material suitable for this, and the coating is not preferable from the viewpoint of the heat radiation effect of the infrared optical fiber. Therefore, as the configuration of the optical fiber probe,
Infrared optical fiber is not clad (air clad)
The core is used as it is, and it is loosely stored in a protective tube. However, the infrared fiber and the protective tube must be locked somewhere.

【0005】以下図面を参照しながら、従来の光ファイ
バープローブの一例について説明する。
An example of a conventional optical fiber probe will be described below with reference to the drawings.

【0006】図5は従来の光ファイバープローブの赤外
光ファイバー保持部を示すものである。図5において、
21は赤外光ファイバーである。22はステンレス等の
金属チューブから成る保護チューブで、赤外光ファイバ
ー21を収納保護する。23は一端が勾配状のチャック
であり、スリット23a、遊挿孔23bと、前記赤外光
ファイバー21とほぼ同径の小径部23cを有する。2
4は押圧リングであり、押圧バネ25がこの押圧リング
24と固定具26間に付勢される。前記保護チューブ2
2と前記チャック23は、前記固定具26に圧入あるい
はネジ等で一体的に固定される。前記チャック23内に
挿入された前記赤外光ファイバー21は、前記押圧バネ
25に付勢された前記押圧リング24が前記チャック2
3の勾配部を押圧することにより、小径部23cで挟持
される。
FIG. 5 shows an infrared optical fiber holding portion of a conventional optical fiber probe. In FIG.
Reference numeral 21 is an infrared optical fiber. Reference numeral 22 is a protective tube made of a metal tube such as stainless steel, and accommodates and protects the infrared optical fiber 21. 23 is a chuck having one end having a slope shape, and has a slit 23a, a loose insertion hole 23b, and a small-diameter portion 23c having substantially the same diameter as the infrared optical fiber 21. Two
Reference numeral 4 denotes a pressing ring, and the pressing spring 25 is urged between the pressing ring 24 and the fixture 26. The protection tube 2
2 and the chuck 23 are integrally fixed to the fixture 26 by press fitting or screws. In the infrared optical fiber 21 inserted into the chuck 23, the pressing ring 24 urged by the pressing spring 25 is attached to the chuck 2
By pressing the sloped portion 3 of FIG. 3, it is sandwiched by the small diameter portion 23c.

【0007】[0007]

【発明が解決しようとする課題】赤外光ファイバーは、
その一端面からレーザ光を入射すると、大部分のレーザ
光は他端面から出射される。その際、赤外光ファイバー
に傷等があるとレーザ光は、その部分で乱反射、散乱等
をおこし、レーザ光が有効に赤外光ファイバー内を透過
されないうえに、レーザ加工機等高出力のレーザ光を伝
送する場合、傷部が発熱し焼損する要因となっている。
The infrared optical fiber is
When laser light is incident from one end surface, most of the laser light is emitted from the other end surface. At that time, if there is a scratch on the infrared optical fiber, the laser light will be diffusely reflected and scattered at that portion, and the laser light will not be effectively transmitted through the infrared optical fiber, and the laser light output from the laser processing machine will be high. When transmitting the heat, the scratched part is heated and becomes a factor of burning.

【0008】また、赤外光ファイバー内を光が全反射に
より伝送されていく場合、外周表面よりわずか(概略波
長の距離)ではあるが光のにじみ出しがあり、これが保
持部に吸収され、このため保持部が高温となり赤外光フ
ァイバーの焼損が発生する。そこで、これら課題を取り
除いた赤外光ファイバーの保持方法が求められている。
Further, when light is transmitted by total internal reflection in the infrared optical fiber, there is light bleeding from the outer peripheral surface though it is slightly (distance of approximate wavelength), and this is absorbed by the holding part, which causes The holding part becomes hot and the infrared optical fiber is burned. Therefore, there is a demand for a method of holding an infrared optical fiber that eliminates these problems.

【0009】しかしながら上記のような構成では、赤外
光ファイバー21は保持部であるチャック23の小径部
23cに面接触(スリット23aを除く範囲)で密着し
ており、にじみ出し光を吸収しやすく、また、押圧バネ
25で押圧リング24を付勢しているためバネ圧が弱い
と確実な保持ができず強いとスリット23aのエッジが
赤外光ファイバー21を傷つけるという問題点を有して
いた。
However, in the above-mentioned structure, the infrared optical fiber 21 is in close contact with the small diameter portion 23c of the chuck 23, which is a holding portion, by surface contact (the range excluding the slit 23a), and it is easy to absorb the bleeding light, Further, since the pressing ring 24 is urged by the pressing spring 25, if the spring pressure is weak, it cannot be held securely, and if it is strong, the edge of the slit 23a damages the infrared optical fiber 21.

【0010】本発明は上記問題点に鑑み、にじみ出し光
を吸収しにくく且つ傷のつきにくい赤外光ファイバーの
保持機構を備えた光ファイバープローブを提供すること
を目的とする。
In view of the above problems, it is an object of the present invention to provide an optical fiber probe equipped with a holding mechanism for an infrared optical fiber that hardly absorbs the bleeding light and is not easily scratched.

【0011】[0011]

【課題を解決するための手段】上記問題点を解決するた
めに本発明の光ファイバープローブは、赤外光ファイバ
ーと、これを収納保護する保護チューブと、前記赤外光
ファイバーの両端側に設けられた光学部材とから成り、
前記赤外光ファイバーと前記保護チューブを挟持する、
V溝と勾配部を有した半円筒保持部材と、この半円筒保
持部材を緩急自在に締め付ける勾配孔を有した締付部材
とから成る保持機構を備えたものである。
In order to solve the above problems, an optical fiber probe of the present invention comprises an infrared optical fiber, a protective tube for housing and protecting the infrared optical fiber, and an optical fiber provided on both ends of the infrared optical fiber. Consisting of members,
Sandwiching the infrared optical fiber and the protective tube,
The holding mechanism includes a semi-cylindrical holding member having a V groove and a slope portion, and a tightening member having a slope hole for loosely and rapidly tightening the semi-cylindrical holding member.

【0012】[0012]

【作用】本発明は上記した構成によって面接触でなく線
接触で赤外光ファイバーを保持することにより、傷が生
じることなく且つ、にじみ出し光の吸収を低減して発熱
を抑えるものである。
According to the present invention, by holding the infrared optical fiber by line contact instead of surface contact by the above-mentioned constitution, scratches are not caused and absorption of oozing light is reduced to suppress heat generation.

【0013】[0013]

【実施例】以下本発明の一実施例の光ファイバープロー
ブについて、図面を参照しながら説明する。
DESCRIPTION OF THE PREFERRED EMBODIMENTS An optical fiber probe according to an embodiment of the present invention will be described below with reference to the drawings.

【0014】図1は本発明の実施例における光ファイバ
ープローブの断面図を示すものである。図1において、
1は赤外光ファイバー、2はステンレス等の金属チュー
ブから成る保護チューブであり、前記赤外光ファイバー
1を収納保護する。3はホルダーであり、内部に半円筒
保持部材5を嵌挿する。このホルダー3は一端に開口ネ
ジ3aを有し、他端は前記保護チューブ2を接着等で一
体的に固定する。4は締付リングであり、外周に前記ホ
ルダー3の開口ネジ3aと螺合するネジ部4aを有し、
内部に勾配状の孔4bを有する。
FIG. 1 is a sectional view of an optical fiber probe according to an embodiment of the present invention. In FIG.
Reference numeral 1 is an infrared optical fiber, and 2 is a protection tube made of a metal tube such as stainless steel, which protects the infrared optical fiber 1 by housing. Reference numeral 3 is a holder into which the semi-cylindrical holding member 5 is inserted. This holder 3 has an opening screw 3a at one end and the protection tube 2 is integrally fixed at the other end by adhesion or the like. Reference numeral 4 is a tightening ring, which has a screw portion 4a on the outer periphery which is screwed into the opening screw 3a of the holder 3,
It has a hole 4b having a gradient shape inside.

【0015】半円筒保持部材5は図2に示すように、両
端が勾配状の円筒を円中心よりやや下側で縦長に切断し
た形状であり、平面部にV溝5aと平溝5bを有する。
勾配部は5cとする。V溝5aは、2枚の半円筒保持部
材5で前記赤外光ファイバー1を挟んだ時に、各々の半
円筒保持部材5間に隙間ができる深さで、長さは10m
m以上である。平溝5bは、2枚の半円筒保持部材5間
に前記保護チューブ2を挟持する溝である。
As shown in FIG. 2, the semi-cylindrical holding member 5 has a shape in which a cylinder whose both ends are sloped is cut vertically to be slightly below the center of the circle, and has a V-shaped groove 5a and a flat groove 5b on its flat surface. ..
The gradient portion is 5c. The V groove 5a has a depth such that a gap is formed between the respective semi-cylindrical holding members 5 when the infrared optical fiber 1 is sandwiched by the two semi-cylindrical holding members 5, and the length thereof is 10 m.
It is m or more. The flat groove 5b is a groove for sandwiching the protective tube 2 between the two semi-cylindrical holding members 5.

【0016】6は、前記ホルダー3を内挿しネジ等で固
定する入側コネクターであり、一端にはレーザ光を透過
する光学部材であるウィンドウ8が固定され、他端は外
被チューブ7の一端が固定される。9は、前記保護チュ
ーブ2の他端に固定された、レンズホルダーであり、前
記赤外光ファイバー1内を透過したレーザ光を集光する
集光レンズ10が固定される。11はハンドピースであ
る。前記入側コネクター6にはアシストガス用孔6aが
設けられており、アシストガスが前記保護チューブ2と
前記外被チューブ7の間を通り、前記レンズホルダー9
とハンドピース11の間から流出する。
Reference numeral 6 denotes an inlet side connector into which the holder 3 is inserted and fixed with screws or the like. A window 8 which is an optical member for transmitting laser light is fixed to one end, and the other end is one end of a jacket tube 7. Is fixed. Reference numeral 9 is a lens holder fixed to the other end of the protection tube 2, and a condenser lens 10 for condensing the laser light transmitted through the infrared optical fiber 1 is fixed. 11 is a handpiece. The inlet-side connector 6 is provided with an assist gas hole 6a, and the assist gas passes between the protective tube 2 and the jacket tube 7, and the lens holder 9
And out of between the handpiece 11.

【0017】以上のように構成された光ファイバープロ
ーブの赤外光ファイバー保持方法について、以下図3
(a)、(b)及び図4(a)、(b)を用いてその動
作を説明する。図3(a)、図4(a)は本実施例の保
持機構の部分拡大断面図を示すものであり、図3
(b)、図4(b)はそれらのA−A矢視図である。
The method of holding the infrared optical fiber of the optical fiber probe configured as described above will be described below with reference to FIG.
The operation will be described with reference to (a), (b) and FIGS. 4 (a), (b). 3 (a) and 4 (a) are partial enlarged sectional views of the holding mechanism of the present embodiment.
(B) and FIG.4 (b) are those AA arrow line views.

【0018】図3(a)、(b)は前記締付リング4を
緩めた状態を示し、この状態では前記締付リング4の勾
配状孔4bと前記半円筒保持部材5の勾配部5cとが接
触せず、2枚の半円筒保持部材5は円周方向に開いてい
る。この状態で前記赤外光ファイバー1を挿入する。次
に前記締付リング4を螺合することにより、図4
(a)、(b)に示すように前記締付リング4の勾配状
孔4bと前記半円筒保持部材5の勾配部5cとが接触
し、2枚の半円筒保持部材5は中心方向に閉じられる。
すなわち前記赤外光ファイバー1は2枚の前記半円筒保
持部材5に挟まれて保持される。
3 (a) and 3 (b) show a state in which the tightening ring 4 is loosened. In this state, the inclined hole 4b of the tightening ring 4 and the inclined portion 5c of the semi-cylindrical holding member 5 are shown. , But the two semi-cylindrical holding members 5 are open in the circumferential direction. In this state, the infrared optical fiber 1 is inserted. Next, by screwing the tightening ring 4 in FIG.
As shown in (a) and (b), the inclined hole 4b of the tightening ring 4 and the inclined portion 5c of the semi-cylindrical holding member 5 come into contact with each other, and the two semi-cylindrical holding members 5 are closed toward the center. Be done.
That is, the infrared optical fiber 1 is held by being sandwiched between the two semi-cylindrical holding members 5.

【0019】また、前記保護チューブ2を2枚の前記半
円筒保持部材5の平溝5b間に挟むことにより、V溝5
a間に保持された前記赤外光ファイバー1が、前記保護
チューブ2の端部でずれることなく収納保護される。
Further, by sandwiching the protective tube 2 between the flat grooves 5b of the two semi-cylindrical holding members 5, the V groove 5 is formed.
The infrared optical fiber 1 held between a and a is stored and protected at the end of the protective tube 2 without being displaced.

【0020】以上のように本実施例によれば、赤外光フ
ァイバー1をV溝5aを設けた2枚の半円筒保持部材5
で挟持することにより、線接触で保持することができ、
赤外光ファイバー1からのレーザ光のにじみ出しを低減
する。また線接触で保持する範囲を10mm以上とした
ことにより、半円筒保持部材5がにじみ出し光を吸収し
ても放熱効果が高く発熱を抑え、赤外光ファイバー1の
焼損を防ぐ。また、半円筒保持部材5の勾配部5cと締
付リング4の勾配状孔4bを面接触させることで、締付
リング4螺合時の力が赤外光ファイバー1に分散してか
かることになり、傷が発生する局部的応力がなくなり、
確実に保持できて且つ傷が発生しない。
As described above, according to this embodiment, the infrared optical fiber 1 is provided with the two semi-cylindrical holding members 5 each having the V groove 5a.
It can be held in line contact by sandwiching
The bleeding of the laser light from the infrared optical fiber 1 is reduced. Further, by setting the range held by the line contact to 10 mm or more, even if the semi-cylindrical holding member 5 absorbs the oozing light, the heat dissipation effect is high and the heat generation is suppressed, and the infrared optical fiber 1 is prevented from being burned. Further, by making surface contact between the inclined portion 5c of the semi-cylindrical holding member 5 and the inclined hole 4b of the tightening ring 4, the force at the time of screwing the tightening ring 4 is dispersed and applied to the infrared optical fiber 1. , The local stress that causes scratches disappears,
It can be held securely and is not scratched.

【0021】[0021]

【発明の効果】以上のように本発明は、勾配を有し且つ
V溝を形成した半円筒保持部材を勾配状孔を有した締付
部材で緩急自在に締め付ける保持機構により、赤外光フ
ァイバーを線接触で保持し、傷が生じずレーザ光のにじ
み出しを低減して発熱を抑えることができる。
As described above, according to the present invention, an infrared optical fiber is provided by a holding mechanism for loosely and rapidly tightening a semi-cylindrical holding member having a slope and forming a V groove with a tightening member having a sloped hole. It can be held in line contact, so that scratches do not occur and bleeding out of laser light can be reduced, and heat generation can be suppressed.

【図面の簡単な説明】[Brief description of drawings]

【図1】本発明の光ファイバープローブの一実施例の構
成を示す断面図
FIG. 1 is a sectional view showing the configuration of an embodiment of an optical fiber probe of the present invention.

【図2】同実施例の半円筒保持部材の斜視図FIG. 2 is a perspective view of a semi-cylindrical holding member of the same embodiment.

【図3】(a)は、同実施例の保持機構の保持解除動作
を示す部分拡大断面図 (b)は、図3(a)のA−A位置における断面図
3A is a partially enlarged cross-sectional view showing a holding release operation of the holding mechanism of the embodiment, and FIG. 3B is a cross-sectional view taken along the line AA in FIG. 3A.

【図4】(a)は、同実施例の保持機構の保持動作を示
す部分拡大断面図 (b)は、図4(a)のA−A位置における断面図
4A is a partially enlarged cross-sectional view showing a holding operation of the holding mechanism of the embodiment, and FIG. 4B is a cross-sectional view taken along the line AA in FIG. 4A.

【図5】従来の光ファイバープローブの保持部の断面図FIG. 5 is a sectional view of a holding portion of a conventional optical fiber probe.

【符号の説明】[Explanation of symbols]

1 赤外光ファイバー 2 保護チューブ 3 ホルダー 4 締付リング 4b 勾配状孔 5 半円筒保持部材 5a V溝 5c 勾配部 1 Infrared Optical Fiber 2 Protective Tube 3 Holder 4 Tightening Ring 4b Gradient Hole 5 Semi-Cylinder Holding Member 5a V Groove 5c Gradient

Claims (1)

【特許請求の範囲】[Claims] 【請求項1】赤外光ファイバーと、これを収納保護する
保護チューブと、前記赤外光ファイバーの両端側に設け
られた光学部材とから成り、前記赤外光ファイバーと前
記保護チューブを挟持する、V溝と勾配部を有した半円
筒保持部材と、この半円筒保持部材を緩急自在に締め付
ける勾配孔を有した締付部材とから成る保持機構を備え
たことを特徴とする光ファイバープローブ。
1. A V-shaped groove comprising an infrared optical fiber, a protective tube for housing and protecting the infrared optical fiber, and an optical member provided on both ends of the infrared optical fiber, for sandwiching the infrared optical fiber and the protective tube. An optical fiber probe, comprising: a holding mechanism including a semi-cylindrical holding member having a sloping portion, and a tightening member having a grading hole for tightening the semi-cylindrical holding member slowly and freely.
JP3231566A 1991-09-11 1991-09-11 Optical fiber probe Pending JPH0572425A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3231566A JPH0572425A (en) 1991-09-11 1991-09-11 Optical fiber probe

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3231566A JPH0572425A (en) 1991-09-11 1991-09-11 Optical fiber probe

Publications (1)

Publication Number Publication Date
JPH0572425A true JPH0572425A (en) 1993-03-26

Family

ID=16925522

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3231566A Pending JPH0572425A (en) 1991-09-11 1991-09-11 Optical fiber probe

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8118475B2 (en) 2008-01-30 2012-02-21 Kobe Steel, Ltd. Kneading degree adjusting apparatus, extruder and continuous kneader

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8118475B2 (en) 2008-01-30 2012-02-21 Kobe Steel, Ltd. Kneading degree adjusting apparatus, extruder and continuous kneader

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