JP2007005716A - Manufacturing method of lens cap - Google Patents

Manufacturing method of lens cap Download PDF

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JP2007005716A
JP2007005716A JP2005186884A JP2005186884A JP2007005716A JP 2007005716 A JP2007005716 A JP 2007005716A JP 2005186884 A JP2005186884 A JP 2005186884A JP 2005186884 A JP2005186884 A JP 2005186884A JP 2007005716 A JP2007005716 A JP 2007005716A
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lens
cap
molding
glass
shape
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JP4679264B2 (en
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Tetsuo Nomura
哲男 野村
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Panasonic Holdings Corp
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Matsushita Electric Industrial Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a manufacturing method of a lens cap whereby the mechanical strength of welding between the lens cap and a lens is increased, and the shape of the lens can freely be designed in matching with applications. <P>SOLUTION: The manufacturing method comprises the steps of forming an intermediate lens gap by mounting a projection 13 with a forming face 14 of a tool 15 into a cap main body 1, mounting a glass member 2 on a lens mount hole of the cap main body 1, and melting the glass member to weld the glass member 2 to the lens mount hole of the cap main body and its vicinity; a lens cap forming step by pressing a lens temporary forming body 6 with forming faces 10, 8 of a lower tool 11 and an upper tool 9 to form the surface shape of an outer side face 6a and an inner side face 6b of a lens 6 for the intermediate lens gap product, and heating the forming body 6 to a melting temperature of the glass member or over to form the lens 13; and transparentizing the lens by heating the lens to a softening point of the glass member or over, while the lens surface is in non-contact state. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

本発明は光半導体装置に使用するレンズキャップの製造に関するものである。   The present invention relates to the manufacture of a lens cap used in an optical semiconductor device.

レーザーダイオード、フォトダイオード、発光ダイオードなどの光半導体装置に適用される従来のレンズ付き蓋体(レンズキャップ)としては、レンズ装着孔を備えた蓋体にレンズ素材を溶着しているものがあった。その製造方法としては、蓋体本体(キャップ本体)とレンズ素材とを治具内に配置したのち加熱して、レンズ素材を加熱溶融することで所定の形状にレンズ素材を成形すると共にレンズをレンズ装着孔に気密状態に溶着しているものがあった(例えば、下記特許文献1参照)。   As a conventional lid with a lens (lens cap) applied to an optical semiconductor device such as a laser diode, a photodiode, or a light-emitting diode, there is one in which a lens material is welded to a lid having a lens mounting hole. . As a manufacturing method thereof, a lid body (cap body) and a lens material are placed in a jig and then heated, and the lens material is heated and melted to form a lens material into a predetermined shape and the lens is made into a lens. Some of them were welded to the mounting hole in an airtight state (for example, see Patent Document 1 below).

図2は、前記特許文献1に記載された従来のレンズ付き蓋体(レンズキャップ)の断面形状を示すものであり、図3(a)、(b)はその製造工程フローを示す工程断面図である。   FIG. 2 shows a cross-sectional shape of a conventional lid with a lens (lens cap) described in Patent Document 1, and FIGS. 3A and 3B are process cross-sectional views showing the manufacturing process flow. It is.

図2において、金属などから形成された略筒状の蓋体(キャップ本体)101に形成されたレンズ装着孔102にガラスなどのレンズ素材を加熱溶融しレンズ部104は所定のレンズ表面の曲面形状などに成形されている。   In FIG. 2, a lens material such as glass is heated and melted in a lens mounting hole 102 formed in a substantially cylindrical lid (cap body) 101 made of metal or the like, so that a lens portion 104 has a curved surface shape on a predetermined lens surface. Etc.

図3(a)、(b)において、図2と同じ構成要素については同じ符号を用い、説明を省略する。   3A and 3B, the same components as those in FIG. 2 are denoted by the same reference numerals, and description thereof is omitted.

従来のレンズ付き蓋体の製造方法は、頂部にレンズ装着孔102を備えた略筒体状の蓋体(キャップ本体)101とガラスなどのレンズ素材103とをカーボングラファイト製のレンズ外側面形状を規制成形するための表面形状規制部106を備えた治具105内に配置して(図3(a))、レンズ素材103を加熱して溶融することにより表面形状規制部106を利用して所定の曲面形状にレンズ素材103を成形するとともに、レンズ装着孔102に気密にレンズ素材103を溶着して蓋体101本体にレンズ部104を設けている(図3(b))。さらに図示していないが、レンズ素材材の溶着を良好にするためにキャップ本体の表面にあらかじめ設けられていた酸化被膜を化学研磨により除去し、次に、キャップ本体にめっきを施した後、チッソ雰囲気などの非酸化性雰囲気中において、レンズ素材レンズの表面の傷、曇りを除去するために加熱による透化処理を適宜施していた。
特開2003−258352号公報
A conventional manufacturing method of a lid with a lens is such that a substantially cylindrical lid (cap body) 101 having a lens mounting hole 102 at the top and a lens material 103 such as glass have a lens outer surface shape made of carbon graphite. It arrange | positions in the jig | tool 105 provided with the surface shape control part 106 for control shaping | molding (FIG.3 (a)), and it heats and melt | dissolves the lens raw material 103 by using the surface shape control part 106, and is predetermined. The lens material 103 is molded into the curved surface shape, and the lens material 103 is air-tightly welded to the lens mounting hole 102 to provide the lens portion 104 on the lid body 101 (FIG. 3B). Although not shown in the figure, the oxide film previously provided on the surface of the cap body is removed by chemical polishing in order to improve the welding of the lens material, and then the cap body is plated, In a non-oxidizing atmosphere such as an atmosphere, the surface of the lens material lens was appropriately subjected to a fluorination treatment by heating in order to remove scratches and fogging.
JP 2003-258352 A

しかしながら、前記従来の構成では、キャップ本体とガラスレンズ溶着部の溶着面積(断面図の場合、キャップ本体に接するレンズ溶着部(レンズの縁部)の厚さ)が小さいため、機械的強度が弱い、また、レンズ形状についてキャップ本体の外側の形状のみ成形されるため使用用途に制限が掛かる課題を有していた。即ち、レンズ形状についてキャップ本体の外側の形状のみ成形されるため、各種要求に応じて、配光特性を要求の満足できるものになるようレンズ形状を成形できない場合があった。   However, in the conventional configuration, the welded area between the cap main body and the glass lens welded portion (in the case of a cross-sectional view, the thickness of the lens welded portion (lens edge) in contact with the cap main body) is small, and thus the mechanical strength is weak. Moreover, since only the shape of the outer side of the cap body is molded with respect to the lens shape, there is a problem that the use application is restricted. That is, since only the outer shape of the cap body is molded with respect to the lens shape, the lens shape may not be molded so as to satisfy the light distribution characteristics according to various requirements.

本発明は、前記従来の課題を解決するもので、キャップ本体とガラスレンズ溶着部の溶着面積(断面図の場合、キャップ本体に接するレンズ溶着部(レンズの縁部)の厚さ)を大きくでき、レンズ装着の機械的強度を強め、また、ガラスレンズ表面の曲面形状などをキャップ本体の内外で成形するためレンズの配光特性を要求に応じたものにすることができ、従って使用用途を広め、さらにガラスの貼り付き位置のコントロールやガラス気泡、張り付不足等のガラス溶着時の問題を解決したレンズキャップの製造方法を提供することを目的とする。   The present invention solves the above-described conventional problems, and can increase the welding area between the cap body and the glass lens welded portion (in the case of a cross-sectional view, the thickness of the lens welded portion (lens edge) in contact with the cap body). Since the mechanical strength of the lens is increased, and the curved surface shape of the glass lens surface is molded inside and outside the cap body, the light distribution characteristics of the lens can be made to meet the requirements, thus broadening the usage. It is another object of the present invention to provide a method for manufacturing a lens cap which solves problems during glass welding such as control of the position where the glass is adhered, glass bubbles and insufficient adhesion.

前記従来の課題を解決するために、本発明のレンズキャップの製造方法は、レンズキャップ本体内側面側のレンズ仮成形体内側表面を成形するための所定の成形面を有する突起部を有した治具に、レンズ装着孔を有した略筒状のキャップ本体を前記突起部がキャップ本体内側に装着されるように載置し、前記キャップ本体外側でレンズ装着孔上にレンズの素材であるガラス材を搭載するガラス材搭載工程と、
前記ガラス材を溶融する温度以上に加熱してキャップ本体のレンズ装着孔とその近傍にガラス材を溶着しレンズ仮成形体を成形する中間レンズキャップ生成品形成工程と、
前記中間レンズキャップ生成品を、レンズキャップ本体外側面側のレンズ外側面を形成するための、レンズ外側面形状と対応する成形面が形成された下型治具に、レンズ仮成形体外側面側が、前記下型治具の成形面側になるように載置し、前記中間レンズキャップ生成品のキャップ本体内側面内部にレンズ内側面形状と対応する成形面が形成された上型治具を搭載して、前記中間レンズキャップ生成品のガラス部を挟圧するとともに、前記中間レンズキャップ生成品を前記ガラス材の溶融する温度以上に加熱して前記レンズ仮成形体を所定のレンズ形状に成形するレンズキャップ成形工程と、
前記レンズキャップ成形品を、レンズ表面部が非接触状態となるようにレンズキャップ保持治具に搭載し、前記ガラス材の軟化点以上に加熱して前記レンズを透化するレンズ透化工程とを備えたことを特徴とする。
In order to solve the above-described conventional problems, a method for manufacturing a lens cap according to the present invention includes a protrusion having a predetermined molding surface for molding the inner surface of the lens temporary molding on the inner side surface of the lens cap body. A substantially cylindrical cap body having a lens mounting hole is placed on the fixture so that the protrusion is mounted on the inside of the cap body, and a glass material that is a lens material on the lens mounting hole outside the cap body A glass material mounting process for mounting,
An intermediate lens cap product forming step for heating the glass material to a temperature equal to or higher than that for melting and welding the glass material in the lens mounting hole of the cap body and the vicinity thereof to form a lens temporary molded body,
The intermediate lens cap product is formed on the lower mold jig formed with a molding surface corresponding to the lens outer surface shape to form the lens outer surface on the lens cap main body outer surface side. The upper mold jig is mounted so as to be on the molding surface side of the lower mold jig, and the molding surface corresponding to the lens inner surface shape is formed inside the cap body inner surface of the intermediate lens cap product. A lens cap that clamps the glass portion of the intermediate lens cap product and heats the intermediate lens cap product to a temperature higher than the melting temperature of the glass material to form the lens temporary molded body into a predetermined lens shape. Molding process;
The lens cap molding product is mounted on a lens cap holding jig so that the lens surface portion is in a non-contact state, and is heated above the softening point of the glass material to allow the lens to be transparent. It is characterized by having.

前記レンズキャップの製造方法においては、前記中間レンズキャップ生成品形成工程において、前記レンズキャップ本体外側面側のレンズ仮成形体外側表面は前記ガラス材の表面張力のみで成形し、前記キャップ本体の内側面側のレンズ仮成形体内側表面は前記ガラス材の自重と前記所定の成形面を有する突起部を有した治具の前記所定の成形面で成形することが好ましい。   In the manufacturing method of the lens cap, in the intermediate lens cap product forming step, the outer surface of the lens temporary molded body on the outer surface side of the lens cap body is formed only by the surface tension of the glass material, It is preferable that the inner surface of the lens temporary molding body on the side surface side is molded by the predetermined molding surface of a jig having a self-weight of the glass material and a protrusion having the predetermined molding surface.

また、前記レンズキャップの製造方法においては、レンズキャップ本体内側面側のレンズ仮成形体内側表面を成形するための所定の成形面を有する突起部が、目的とする所定のレンズ内側面表面形状と対応するか、又はそれと近似する表面形状の成形面を有する突起部であることが好ましい。   In the method of manufacturing the lens cap, the protrusion having a predetermined molding surface for molding the inner surface of the lens temporary molding body on the inner side surface of the lens cap main body has a target predetermined inner surface surface shape of the lens. It is preferable that the protrusion has a molding surface corresponding to or close to the surface shape.

以上のように、本発明のレンズキャップの製造方法によれば、レンズ仮成形体内側表面を支持し成形するための所定の成形面を有する突起部の高さ、成形面の形状などでレンズとキャップ本体との溶着部の面積を調整することができ、機械的強度が強く、レンズキャップ外側面側と内側面側の目的とするレンズの両面の表面形状を所定の位置で所定の形状に成形でき、しかも溶着時の気泡、張り付き不足が無いレンズキャップを作製することができる。   As described above, according to the method for manufacturing a lens cap of the present invention, the height of the protrusion having a predetermined molding surface for supporting and molding the inner surface of the lens temporary molded body, the shape of the molding surface, etc. The area of the welded part with the cap body can be adjusted, the mechanical strength is strong, and the surface shape of both sides of the target lens on the lens cap outer surface side and inner surface side is molded into a predetermined shape at a predetermined position In addition, it is possible to produce a lens cap that does not have air bubbles at the time of welding and lack of sticking.

また、前記中間レンズキャップ生成品形成工程において、前記レンズキャップ本体外側面側のレンズ仮成形体外側表面は前記ガラス材の表面張力のみで成形し、前記キャップ本体の内側面側のレンズ仮成形体内側表面は前記ガラス材の自重と前記所定の成形面を有する突起部を有した治具の前記所定の成形面で形成する本発明の好ましい態様とすることにより、レンズ仮成形体外側表面形成時に、その面を治具の表面形状成形部で挟圧しないので、レンズ仮成形体成形時に空気の抱きこみを防止して、気泡の発生をより少なくでき好ましい。気泡の発生は、レンズ性能を低下、場合によっては、レンズを不良品としてしまうばかりでなく、キャップ本体とレンズの縁である溶着部界面に発生した気泡はレンズのキャップ本体への張り付き不足の原因となる。通常、発生した気泡はキャップ本体とレンズの縁である溶着部界面に比較的集中しやすくなる傾向がある。本発明方法は、これらを結果的に防止でき、好ましい。   In the intermediate lens cap product forming step, the outer surface of the lens temporary body on the outer surface side of the lens cap body is formed only by the surface tension of the glass material, and the temporary lens body on the inner surface side of the cap body. The inner surface is formed with the predetermined molding surface of the jig having the weight of the glass material and the projection having the predetermined molding surface. Since the surface is not clamped by the surface shape molding portion of the jig, it is preferable that air can be prevented from being trapped during molding of the lens temporary molded body, and the generation of bubbles can be reduced. The generation of air bubbles deteriorates the lens performance, and in some cases not only makes the lens defective, but the air bubbles generated at the interface between the cap body and the edge of the lens are the cause of insufficient sticking of the lens to the cap body. It becomes. Usually, the generated bubbles tend to be relatively concentrated on the interface of the welded portion, which is the edge of the cap body and the lens. The method of the present invention can prevent these as a result, which is preferable.

また、前記レンズキャップの製造方法において、レンズキャップ本体内側面側のレンズ仮成形体内側表面を成形するための所定の成形面を有する突起部が、目的とする所定のレンズ内側面表面形状と対応するか、又はそれと近似する表面形状の成形面を有する突起部である本発明の好ましい態様とすることにより、レンズ仮成形体内側表面の形状が、最終目的とする所定のレンズ内側面表面形状と同一かそれに近似しているので、最終工程の下型治具と上型治具とによる前記中間レンズキャップ生成品のガラス部を挟圧する際に、上型治具によるレンズ内側面形状に対応する成形面の形状が、レンズ仮成形体内側表面の形状と大きく異ならないので、空気の抱きこみがより良好に防止でき、気泡の発生をより少なくできるので好ましい。   In the lens cap manufacturing method, the protrusion having a predetermined molding surface for molding the inner surface of the lens temporary molding body on the inner side surface of the lens cap body corresponds to the target predetermined inner surface surface shape of the lens. Or a projection having a molding surface having a surface shape similar to that of the projection of the present invention, the shape of the inner surface of the lens temporary molded body is a predetermined lens inner side surface shape as the final objective. Since it is the same or approximate to it, when the glass part of the intermediate lens cap product is clamped by the lower mold jig and the upper mold jig in the final process, it corresponds to the inner surface shape of the lens by the upper mold jig. Since the shape of the molding surface is not significantly different from the shape of the inner surface of the lens temporary molded body, it is preferable because air entrapment can be better prevented and the generation of bubbles can be reduced.

以下本発明の実施の形態について、図面を参照しながら説明する。   Embodiments of the present invention will be described below with reference to the drawings.

(実施の形態)
図1(a)〜(e)は、本発明の実施の形態におけるレンズキャップの製造工程フローを示す断面図である。
(Embodiment)
1A to 1E are cross-sectional views illustrating a manufacturing process flow of a lens cap in an embodiment of the present invention.

図1(a)〜(e)において、レンズ装着孔を備え表面に予め酸化皮膜が形成されたキャップ本体1は、カーボングラファイト製の治具15にレンズを構成する素材である円盤状に形成されたガラス材2とともに配置する(図1(a))。   1 (a) to 1 (e), a cap body 1 having a lens mounting hole and having an oxide film formed in advance on a surface thereof is formed on a carbon graphite jig 15 in a disk shape which is a material constituting the lens. It arrange | positions with the glass material 2 (FIG. 1 (a)).

キャップ本体1は、特に限定するものではないが、通常、素材として金属が用いられ、本実施の形態では、レンズ用ガラス材として用いる硼珪酸ガラスの熱膨張係数とほぼ同等ないしはそれに近い熱膨張係数を有する、通称「コバール」と称される鉄−ニッケル−コバルト合金(鉄53wt%、Ni28wt%、Co18wt%含有)を用いた。レンズ用ガラスとの接着性を向上させるために設けられる酸化被膜は、このキャップ本体1の表面を酸化することにより形成されている。キャップ本体1は、胴部が筒状(通常、円筒状)であり、一方の開口部はキャップ本体1の径より若干狭められた径を有し、レンズが装着されるキャップ開口端1aを有する。他方の開口部は、キャップ本体1より裾部1bが外側に張り出しているものを用いた。図1(a)における上方から見たと仮定した裾部1bの最外縁部の平面形状ラインは、丸が一般的であるが、これに限定されるものではなく、四角形その他の多角形など、支障がない限り任意である。   The cap body 1 is not particularly limited, but usually a metal is used as a material. In the present embodiment, the thermal expansion coefficient is approximately the same as or close to the thermal expansion coefficient of borosilicate glass used as a lens glass material. An iron-nickel-cobalt alloy (containing iron 53 wt%, Ni 28 wt%, and Co 18 wt%), commonly called “Kovar”, was used. An oxide film provided to improve the adhesion to the lens glass is formed by oxidizing the surface of the cap body 1. The cap body 1 has a cylindrical body (usually cylindrical), one opening has a diameter slightly narrower than the diameter of the cap body 1, and has a cap opening end 1a to which a lens is attached. . As the other opening, one having a skirt 1b projecting outward from the cap body 1 was used. The planar shape line at the outermost edge of the skirt 1b assumed to be viewed from above in FIG. 1 (a) is generally a circle, but is not limited to this, and is not limited to a square or other polygons. As long as there is no.

また、治具の材料としても、レンズ用のガラスの溶融成形の温度で変形や軟化が生じないこと、溶融ガラスを成形後、ガラスと離型性があればよいが、更に、所望の特定の形に加工しやすいこと、コストが比較的安いことなどから、ここではカーボングラファイト製の治具を用いた。   In addition, as a material of the jig, deformation or softening does not occur at the temperature of melt molding of the glass for the lens, and it is only necessary to have mold release properties after molding the molten glass. A carbon graphite jig is used here because it is easy to process into a shape and the cost is relatively low.

キャップ本体1とガラス材2とを治具15に配置する方法は、レンズ用ガラス溶着時、治具上のレンズ仮成形体内側表面を支持し成形するための所定の成形面4を有する突起物3がキャップ本体1内側に収まるように載置し、キャップ本体1上面のレンズ装着孔(キャップ開口端1a側)の上側にガラス材2を載置し、キャップ本体1外周側を固定治具5により固定している。   The method of disposing the cap body 1 and the glass material 2 on the jig 15 is a projection having a predetermined molding surface 4 for supporting and molding the inner surface of the lens temporary molded body on the jig when the glass for glass is welded. 3 is placed inside the cap body 1, the glass material 2 is placed above the lens mounting hole (cap opening end 1 a side) on the top surface of the cap body 1, and the outer periphery side of the cap body 1 is fixed to the fixture 5. It is fixed by.

固定治具5は、キャップ本体1外周側を取り囲んでキャップ本体1を内部に挿入できる円柱状の穴を有している。   The fixing jig 5 has a cylindrical hole that surrounds the outer periphery of the cap body 1 and allows the cap body 1 to be inserted therein.

ガラス材2の大きさは、目的とするレンズの形状、大きさ、キャップ本体1の内側面とガラスレンズ溶着部との溶着面積をどの程度にするかなどに応じて変わるので、特に限定するものではないが、通常、レンズ装着孔の径より大きく、キャップ本体1の胴部外径より若干大きく、具体的には、例えば、キャップ本体1の胴部外径より直径で0.2〜0.5mm程度大きくしたものを用いると、キャップ本体1とガラス材との接着力が向上しやすく好ましい。尚、1´は、複数個のレンズキャップを同時に製造する場合の、隣接して設けられる同様の製造ユニット(図示省略)に配置されるキャップ本体の一部を図示したものである。   The size of the glass material 2 is particularly limited because it varies depending on the shape and size of the target lens and the extent of the welding area between the inner surface of the cap body 1 and the glass lens welded portion. However, it is usually larger than the diameter of the lens mounting hole and slightly larger than the outer diameter of the body of the cap body 1, specifically, for example, 0.2 to 0. Use of a material having a size of about 5 mm is preferable because the adhesive force between the cap body 1 and the glass material is easily improved. In addition, 1 'shows a part of cap body arrange | positioned at the same manufacturing unit (illustration omitted) provided adjacent, when manufacturing several lens caps simultaneously.

治具15の突起物3の成形面4はガラス材2を溶融してレンズ仮成形体を形成する中間レンズキャップ生成品形成工程(図1(b)で示す工程)のレンズ仮成形体の内面形状(レンズキャップ本体内側面側のレンズ仮成形体内側表面6b側)に合わせた表面形状の成形面4を有している。   The molding surface 4 of the projection 3 of the jig 15 is the inner surface of the lens temporary molded body in the intermediate lens cap product forming step (step shown in FIG. 1B) in which the glass material 2 is melted to form the lens temporary molded body. It has a molding surface 4 with a surface shape that matches the shape (the lens temporary molded body inner surface 6b side on the inner surface side of the lens cap body).

つぎに、治具全体をガラス材2が溶融する温度まで加熱し、キャップ本体1の内側にガラス材2を溶着するとともに、内側面側の表面形状が成形面4で成形され所定の形状のレンズ仮成形体とした中間生成品を形成する(図1(b))。   Next, the entire jig is heated to a temperature at which the glass material 2 melts, the glass material 2 is welded to the inside of the cap body 1, and the surface shape on the inner surface side is molded by the molding surface 4 to form a lens having a predetermined shape. An intermediate product formed as a temporary molded body is formed (FIG. 1B).

このとき、溶融したガラス材2の自重による重力により、成形面4上にガラス材2が導入されることになる。   At this time, the glass material 2 is introduced onto the molding surface 4 by gravity due to the weight of the molten glass material 2.

これによれば、溶融したガラス材2をキャップ本体に溶着させると同時に、レンズキャップ本体内側面側のレンズ仮成形体内側表面を所定の形状に予備成形することができ、ガラス材2に外部から加圧力を加えずに、溶着させるため、気泡の抱きこみや、気泡がガラスとキャップ本体内側面の界面に存在することによるレンズの貼り付き不足が生じることがない。   According to this, the molten glass material 2 is welded to the cap body, and at the same time, the inner surface of the lens temporary molding body on the inner surface side of the lens cap body can be preformed into a predetermined shape. Since welding is performed without applying pressure, there is no possibility of entrapment of bubbles or insufficient sticking of the lens due to the presence of bubbles at the interface between the glass and the inner surface of the cap body.

また、ガラス材2をキャップ本体1の内側にまで延在しているため(図1(b)の溶着部16参照)、機械的強度が強くすることを可能としている。   Further, since the glass material 2 extends to the inside of the cap body 1 (see the welded portion 16 in FIG. 1B), the mechanical strength can be increased.

さらに、治具突起物3の高さと成形面4の形状などでキャップ本体1の内側のガラス貼り付き位置とガラス量を設定できる。   Furthermore, the glass sticking position and the amount of glass inside the cap body 1 can be set by the height of the jig projection 3 and the shape of the molding surface 4.

このように、治具15における成形面4を有する突起物3は、突起物3の高さや、成形面4の形状などを適宜選択することにより、キャップ本体1の内側のガラス貼り付き位置とキャップ本体1の内側面とガラスレンズとの溶着部16の面積を調整することができる。したがって、キャップ本体とガラスレンズ溶着部の溶着面積を必要な大きさにコントロールでき、レンズ装着の機械的強度を強めることができる。   As described above, the projection 3 having the molding surface 4 in the jig 15 is configured so that the height of the projection 3 and the shape of the molding surface 4 are appropriately selected, so that the glass sticking position and the cap on the inner side of the cap body 1 are selected. The area of the welded portion 16 between the inner surface of the main body 1 and the glass lens can be adjusted. Therefore, the welding area between the cap body and the glass lens welding portion can be controlled to a required size, and the mechanical strength of the lens mounting can be increased.

以上に説明した中間レンズキャップ生成品形成工程は、本来、キャップ本体とガラスレンズ溶着部の溶着面積を必要な大きさにコントロールするための工程であるから、成形面4の形状は、必ずしも最終的に得られる目的とするレンズのレンズキャップ本体内側面側のレンズ内側表面6b(図1(d)または(e)参照)と全く同一形状にしておく必要はない。それでも前述したように、目的とするレンズ内側面表面形状と対応するか、又はそれと近似する表面形状の成形面4、言い換えれば、図1(c)の上型治具9のレンズ内側表面6bを成形するための成形面8の形状と同一ないしはそれと近似する表面形状の成形面4としたものを用いて予備成形しておく方が、成形面4の形状と成形面8の形状が大きく異なっている場合に比べ図1(c)のガラスレンズ内側表面と外側表面を目的とする所定のレンズ表面形状に最終的に成形する際に、空気の抱きこみがより生じにくく、気泡の発生をより少なくできるので好ましい。   The intermediate lens cap product formation process described above is a process for controlling the welding area of the cap main body and the glass lens welded portion to a necessary size, so that the shape of the molding surface 4 is not necessarily final. It is not necessary to have the same shape as the lens inner surface 6b (see FIG. 1 (d) or (e)) on the inner side surface of the lens cap body of the objective lens obtained. Still, as described above, the molding surface 4 having a surface shape corresponding to or close to the target lens inner surface surface shape, in other words, the lens inner surface 6b of the upper jig 9 in FIG. The shape of the molding surface 4 and the shape of the molding surface 8 are greatly different when preformed using a molding surface 4 having a surface shape that is the same as or similar to the shape of the molding surface 8 for molding. Compared to the case where the glass lens inner surface and the outer surface in FIG. 1C are finally formed into a predetermined lens surface shape, air entrapment is less likely to occur and less bubbles are generated. It is preferable because it is possible.

つぎに、図1(c)に示すように、レンズキャップ本体外側面側のレンズ外側面を形成するための、レンズ外側面6aの目的とする形状と対応する成形面10が形成されており中間レンズキャップ生成品が装着し得る凹部を有する下型治具11に前記中間レンズキャップ生成品を載置し、中間レンズキャップ生成品の内側に挿入可能で、レンズの内側面6b成形面8を有した上型治具9を中間レンズキャップ生成品の内側に載置した後、前記ガラス材の溶融する温度以上に加熱しガラスレンズ6の内側面6b及び外側面6aをそれぞれ治具9と11の成形面8、10と同じ形状に成形する(図1(c))。尚、成形面8、10の形状は、目的とするレンズの形状、例えば、両凸型の凸レンズ、平凸型の凸レンズ、両凹型の凹レンズ、正メニスカス型、負メニスカス型、などなどに応じて選択される。   Next, as shown in FIG. 1C, a molding surface 10 corresponding to the target shape of the lens outer surface 6a for forming the lens outer surface on the lens cap main body outer surface side is formed. The intermediate lens cap product is placed in a lower mold jig 11 having a recess that can be attached to the lens cap product, and can be inserted inside the intermediate lens cap product, and has an inner surface 6b molding surface 8 of the lens. After the upper jig 9 is placed inside the intermediate lens cap product, it is heated to a temperature equal to or higher than the melting temperature of the glass material, and the inner side surface 6b and the outer side surface 6a of the glass lens 6 are placed on the jigs 9 and 11, respectively. It shape | molds in the same shape as the molding surfaces 8 and 10 (FIG.1 (c)). The shape of the molding surfaces 8 and 10 depends on the shape of the target lens, for example, a biconvex convex lens, a plano-convex convex lens, a biconcave concave lens, a positive meniscus type, a negative meniscus type, etc. Selected.

このとき、レンズがレンズ外側面6a成形用治具11とレンズ内側面6b成形用治具9とにより挟圧されるとともに、中間生成品を載置した治具11と9はガラスの溶融温度以上になるように加熱し、レンズ素材のガラス材として、硼珪酸ガラスを用いた場合、約880℃を最高温度として溶融成形し、その後冷却される。   At this time, the lens is sandwiched between the lens outer surface 6a molding jig 11 and the lens inner surface 6b molding jig 9, and the jigs 11 and 9 on which the intermediate product is placed are above the melting temperature of the glass. When borosilicate glass is used as the glass material of the lens material, it is melt molded at a maximum temperature of about 880 ° C. and then cooled.

これによれば、ガラスレンズ13の外側面6aおよび内側面6bを目的とする任意の形状に成形することができ、様々な用途に対応することのできるレンズキャップを得ることができる。   According to this, the outer surface 6a and the inner surface 6b of the glass lens 13 can be molded into any desired shape, and a lens cap that can be used for various applications can be obtained.

また、加熱処理を施す前に予め、エアーガンなどの圧縮空気などを用いてガラスレンズ6表面の付着物を除去しても良い。   Moreover, you may remove the deposit | attachment on the surface of the glass lens 6 previously using compressed air, such as an air gun, before performing heat processing.

つぎに、ガラスレンズの外側面6aおよび内側面6bが治具に接触することが無いよう、キャップ本体1を支持する様にレンズキャップ保持治具14に載置し、成形後のガラスレンズ13のガラス材が軟化する温度約600〜780℃に加熱する(図1(d))。   Next, the glass lens 13 is placed on the lens cap holding jig 14 so as to support the cap body 1 so that the outer surface 6a and the inner surface 6b of the glass lens do not come into contact with the jig. The glass material is heated to a temperature of about 600 to 780 ° C. (FIG. 1D).

このとき、成形後のガラスレンズ13の最表面のみが溶融し流動性を有する状態とし、化学研磨によるガラスレンズ13の表面の荒れや、それに伴うくもり現象や、製品同士や治具との接触による物理的な傷を、極表面のみを溶融すること(加熱時間を短時間にするなど)でレンズを透化、即ち透明にしている。   At this time, only the outermost surface of the glass lens 13 after molding is melted and has a fluid state, and the surface of the glass lens 13 is roughened by chemical polishing, the clouding phenomenon associated therewith, and contact between products and jigs. The lens is made transparent, i.e., transparent, by melting only the extreme surface (such as shortening the heating time).

これによれば、ガラスレンズ13の極表面のみを溶融することから、成形後のガラスレンズ13の外形寸法は殆どが変わることなく、表面の荒れや、それに伴うくもり現象や、製品同士や治具との接触による物理的な傷のみを取り除くことができる。   According to this, since only the extreme surface of the glass lens 13 is melted, the outer dimensions of the glass lens 13 after molding are hardly changed, the surface is rough, the clouding phenomenon associated therewith, the products and jigs. Only physical scratches due to contact with can be removed.

つぎに、要求性能、用途などに応じてキャップ本体に必要に応じ、適宜めっき皮膜を形成する。めっきは、防錆、発光および受光の効率を良くするためとか、その他にステムなどとの接着性改善、装飾目的などで形成される。無電解ニッケルめっき、電解ニッケルめっき、金めっき、銀めっきなどが用いられ、めっき方法としては、特に限定するものではないが、主にバレルめっき法が採用される。その他、要求に応じ整列めっき法なども用いられる。   Next, a plating film is appropriately formed on the cap body as required according to required performance, application, and the like. The plating is formed for the purpose of improving the efficiency of rust prevention, light emission and light reception, as well as improving the adhesion to the stem and the like, and for the purpose of decoration. Electroless nickel plating, electrolytic nickel plating, gold plating, silver plating and the like are used, and the plating method is not particularly limited, but barrel plating is mainly adopted. In addition, an alignment plating method or the like is also used as required.

かくして、本実施形態による製造方法で得られたレンズキャップの断面図を図1(e)に示した。但し、図1(e)には、めっき被膜などの図示は省略している。   Thus, a cross-sectional view of the lens cap obtained by the manufacturing method according to the present embodiment is shown in FIG. However, illustration of a plating film etc. is abbreviate | omitted in FIG.1 (e).

なお、本実施の形態例においては、レンズキャップ本体と溶融ガラスとの溶着工程において、レンズキャップ本体とガラスとの接着性を向上させるために、レンズキャップ本体の表面にあらかじめ酸化被膜を設けているが、このようにレンズキャップ本体の表面に酸化被膜を設けた場合には、レンズキャップ本体とガラスとの溶着工程後、レンズの透化処理の前、めっきする場合にはめっき工程の前に、酸化被膜を化学研磨により除去しておく。化学研磨剤としては、酸化被膜を除去できるものであればよいが、例えば、過酸化水素、弗化アンモニウムを主成分とした溶液や、過酸化水素、硫酸、弗酸を主成分とした溶液などが挙げられる。   In the present embodiment, an oxide film is provided in advance on the surface of the lens cap body in order to improve the adhesion between the lens cap body and the glass in the welding process between the lens cap body and the molten glass. However, when an oxide film is provided on the surface of the lens cap main body in this way, after the lens cap main body and glass welding process, before the lens permeation treatment, in the case of plating, before the plating process, The oxide film is removed by chemical polishing. Any chemical polishing agent may be used as long as it can remove the oxide film. For example, a solution mainly containing hydrogen peroxide and ammonium fluoride, a solution mainly containing hydrogen peroxide, sulfuric acid and hydrofluoric acid, etc. Is mentioned.

本発明は光半導体装置に使用するレンズキャップの製造方法として有用であり、特にガラスレンズの成形及びキャップ本体とガラスレンズ溶着部の溶着面積を調整でき、レンズ装着の機械的強度を強め、また、ガラスレンズの両表面の形状をキャップ本体のレンズ内側面及び外内側面の両面とも治具の成形面で成形するためレンズの配光特性を要求に応じたものにすることができ、従って使用用途を広め、さらにガラスの貼り付き位置のコントロールやガラス気泡、張り付不足等のガラス溶着時の問題を解決したレンズキャップの製造に適している。   The present invention is useful as a manufacturing method of a lens cap used in an optical semiconductor device, and in particular, can adjust the molding area of the glass lens and the welding area of the cap body and the glass lens welded portion, thereby enhancing the mechanical strength of the lens mounting, The shape of both surfaces of the glass lens is molded by the molding surface of the jig on both the inner and outer surfaces of the cap body, so that the light distribution characteristics of the lens can be made to meet the requirements. It is suitable for manufacturing a lens cap that solves problems during glass welding, such as control of the glass attachment position, glass bubbles, and insufficient adhesion.

本発明の実施の形態におけるレンズキャップの製造工程フローを示す断面図Sectional drawing which shows the manufacturing process flow of the lens cap in embodiment of this invention 従来のレンズキャップの断面図Cross-sectional view of a conventional lens cap 従来のレンズキャップの製造工程フローを示す断面図Sectional drawing which shows the manufacturing process flow of the conventional lens cap

符号の説明Explanation of symbols

1 キャップ本体
1a レンズが装着されるキャップ開口端
1b キャップ本体の裾部
2 ガラス材
3 治具15の成形面4を有する突起物
4 レンズ仮成形体内側表面を成形するための成形面
5 固定治具
6 溶着後のガラスレンズ(レンズ仮成形体)
8 上型治具9のレンズ内側面6b用の成形面
9 上型治具
10 下型治具11のレンズ外側面6a用の成形面
11 下型治具
12 成形後のレンズキャップ
13 成形後のガラスレンズ
14 レンズ透化時に使用するレンズキャップ保持治具
15 中間レンズキャップ生成品形成工程で用いる治具
16 キャップ本体1の内側面とガラスレンズとの溶着部
101 従来例のキャップ本体
102 従来例のレンズ装着孔
103 従来例のレンズ素材
104 従来例のレンズ部
105 従来例の治具
106 従来例の表面形状規制部

DESCRIPTION OF SYMBOLS 1 Cap main body 1a Cap opening end where lens is mounted 1b Bottom of cap main body 2 Glass material 3 Projection having molding surface 4 of jig 15 4 Molding surface for molding inner surface of lens temporary molding 5 Fixing treatment 6 Glass lens after welding (lens temporary molding)
8 Molding surface for lens inner surface 6b of upper mold jig 9 9 Upper mold jig 10 Molding surface for lens outer surface 6a of lower mold 11 11 Lower mold 12 Lens cap 13 after molding 13 After molding Glass lens 14 Lens cap holding jig used when the lens is transparent 15 Jig used in the process of forming the intermediate lens cap product 16 Welded portion between the inner surface of the cap body 1 and the glass lens 101 Conventional cap body 102 Conventional example cap Lens mounting hole 103 Conventional lens material 104 Conventional lens portion 105 Conventional jig 106 Conventional surface shape restricting portion

Claims (3)

レンズキャップ本体内側面側のレンズ仮成形体内側表面を成形するための所定の成形面を有する突起部を有した治具に、レンズ装着孔を有した略筒状のキャップ本体を前記突起部がキャップ本体内側に装着されるように載置し、前記キャップ本体外側でレンズ装着孔上にレンズの素材であるガラス材を搭載するガラス材搭載工程と、
前記ガラス材を溶融する温度以上に加熱してキャップ本体のレンズ装着孔とその近傍にガラス材を溶着しレンズ仮成形体を成形する中間レンズキャップ生成品形成工程と、
前記中間レンズキャップ生成品を、レンズキャップ本体外側面側のレンズ外側面を形成するための、レンズ外側面形状と対応する成形面が形成された下型治具に、レンズ仮成形体外側面側が、前記下型治具の成形面側になるように載置し、前記中間レンズキャップ生成品のキャップ本体内側面内部にレンズ内側面形状と対応する成形面が形成された上型治具を搭載して、前記中間レンズキャップ生成品のガラス部を挟圧するとともに、前記中間レンズキャップ生成品を前記ガラス材の溶融する温度以上に加熱して前記レンズ仮成形体を所定のレンズ形状に成形するレンズキャップ成形工程と、
前記レンズキャップ成形品を、レンズ表面部が非接触状態となるようにレンズキャップ保持治具に搭載し、前記ガラス材の軟化点以上に加熱して前記レンズを透化するレンズ透化工程とを備えたことを特徴とするレンズキャップの製造方法。
The protrusion having the substantially cylindrical cap body having a lens mounting hole is mounted on a jig having a protrusion having a predetermined molding surface for molding the inner surface of the lens temporary molding on the inner surface of the lens cap body. A glass material mounting step of mounting the glass body as a lens material on the lens mounting hole outside the cap body and mounting the lens so as to be mounted inside the cap body;
An intermediate lens cap product forming step for heating the glass material to a temperature equal to or higher than that for melting and welding the glass material in the lens mounting hole of the cap body and the vicinity thereof to form a lens temporary molded body,
The intermediate lens cap product is formed on the lower mold jig formed with a molding surface corresponding to the lens outer surface shape to form the lens outer surface on the lens cap main body outer surface side. The upper mold jig is mounted so as to be on the molding surface side of the lower mold jig, and the molding surface corresponding to the lens inner surface shape is formed inside the cap body inner surface of the intermediate lens cap product. A lens cap that clamps the glass portion of the intermediate lens cap product and heats the intermediate lens cap product to a temperature higher than the melting temperature of the glass material to form the lens temporary molded body into a predetermined lens shape. Molding process;
The lens cap molding product is mounted on a lens cap holding jig so that the lens surface portion is in a non-contact state, and is heated above the softening point of the glass material to allow the lens to be transparent. A method of manufacturing a lens cap, comprising:
前記中間レンズキャップ生成品形成工程において、前記レンズキャップ本体外側面側のレンズ仮成形体外側表面は前記ガラス材の表面張力のみで成形し、前記キャップ本体の内側面側のレンズ仮成形体内側表面は前記ガラス材の自重と前記所定の成形面を有する突起部を有した治具の前記所定の成形面で形成する請求項1記載のレンズキャップの製造方法。   In the intermediate lens cap product forming step, the outer surface of the lens temporary body on the outer surface side of the lens cap body is formed only by the surface tension of the glass material, and the inner surface of the lens temporary body on the inner surface side of the cap body The lens cap manufacturing method according to claim 1, wherein the glass material is formed by the predetermined weight of the glass material and the predetermined molding surface of a jig having a projection having the predetermined molding surface. レンズキャップ本体内側面側のレンズ仮成形体内側表面を成形するための所定の成形面を有する突起部が、目的とする所定のレンズ内側面表面形状と対応するか、又はそれと近似する表面形状の成形面を有する突起部である請求項1または2に記載のレンズキャップの製造方法。

The protrusion having a predetermined molding surface for molding the inner surface of the lens temporary molding body on the inner side surface of the lens cap body corresponds to or approximates the target predetermined inner lens surface shape of the lens. The method for producing a lens cap according to claim 1, wherein the lens cap is a protrusion having a molding surface.

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