JP4173077B2 - Reflector built-in lamp - Google Patents

Reflector built-in lamp Download PDF

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JP4173077B2
JP4173077B2 JP2003297137A JP2003297137A JP4173077B2 JP 4173077 B2 JP4173077 B2 JP 4173077B2 JP 2003297137 A JP2003297137 A JP 2003297137A JP 2003297137 A JP2003297137 A JP 2003297137A JP 4173077 B2 JP4173077 B2 JP 4173077B2
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cathode
support member
ring
conductive support
flange
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JP2005071684A (en
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武仁 平賀
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Hoya Corp
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Description

本発明は、一対の陽極と陰極が配置された放電空間内に反射面が備えられている反射鏡内蔵型ランプに関する。   The present invention relates to a reflector built-in lamp in which a reflecting surface is provided in a discharge space in which a pair of an anode and a cathode is disposed.

照明光を供給するランプには、ランプに反射鏡を装着して使用するタイプの他に、一対の陽極と陰極が配置された放電空間内に反射面を備えた反射鏡内蔵型タイプがある。   A lamp that supplies illumination light includes a type with a built-in reflecting mirror that has a reflecting surface in a discharge space in which a pair of an anode and a cathode is arranged, in addition to a type that is used with a reflecting mirror attached to the lamp.

このような反射鏡内蔵型ランプは、例えば図6に示すように、回転放物面形状の反射面101aを有する胴体101と、反射面101aを含んで胴体101内部に形成された放電空間S’に所定間隔をあけて配置された一対の陽極108と陰極109と、胴体101に固定され陰極109に電気的に接続する給電リング105と、この給電リング105の内周面に密嵌されたフランジ110により保持されて放電空間S’を密閉する透光性の窓部材111と、陰極109を所定位置に支持する導電性支持部材112とを備え、窓部材111によって密閉された放電空間S’内にはXeを主体とする発光物質(不活性ガス)が封入されている。通常、窓部材111はガラスにより形成され、この窓部材111を保持するフランジ110は、ガラスと熱膨張係数がほぼ同等なコバール合金(FeNiCo)により形成されている。導電性支持部材112は、一端部が陰極109に接合し、他端部が給電リング105に接合すると共にフランジ110に当接している。この導電性支持部材112は、図7に示すように例えば等間隔で3本備えられ、陰極109と給電リング105及びフランジ110の間を最短距離で結ぶ直線状に形成されている。
特開平9−161727号公報
For example, as shown in FIG. 6, such a lamp with a built-in reflector includes a body 101 having a reflecting surface 101a having a paraboloid, and a discharge space S ′ formed inside the body 101 including the reflecting surface 101a. A pair of an anode 108 and a cathode 109 arranged at a predetermined interval, a feed ring 105 fixed to the body 101 and electrically connected to the cathode 109, and a flange closely fitted to the inner peripheral surface of the feed ring 105 A translucent window member 111 that is held by 110 and seals the discharge space S ′, and a conductive support member 112 that supports the cathode 109 at a predetermined position, and is in the discharge space S ′ sealed by the window member 111. Is filled with a light emitting substance (inert gas) mainly composed of Xe. Usually, the window member 111 is made of glass, and the flange 110 that holds the window member 111 is made of Kovar alloy (FeNiCo) having a thermal expansion coefficient substantially equal to that of glass. The conductive support member 112 has one end joined to the cathode 109 and the other end joined to the power supply ring 105 and abutted against the flange 110. As shown in FIG. 7, three conductive support members 112 are provided at regular intervals, for example, and are formed in a straight line connecting the cathode 109, the feed ring 105, and the flange 110 with the shortest distance.
JP-A-9-161727

しかしながら、上記構成の反射鏡内蔵型ランプを点灯させると、陽極108及び陰極109の温度が約1000℃程度まで上昇し、陰極109の熱は導電性支持部材112を介してフランジ110に伝わるため、フランジ110は導電性支持部材112が当接する位置で局所的に約250〜300℃と高温になってしまう。フランジ110が高温になると、該フランジ110に接合している窓部材111も連鎖的に高温となる。上述したようにフランジ110は、窓部材111を構成するガラスとほぼ同等の熱膨張係数を有するコバール合金によって形成してあるが、ガラスとコバール合金の熱膨張係数は全く同じではないため、高温になるほど熱膨張による変形量に差が生じてくる。したがって、局所的にフランジ110及び窓部材111が過度に高温となると、その熱膨張による変形量の差分からフランジ110と窓部材111との接合部分に隙間が生じてしまう虞があり、窓部材111による密閉性が低下してしまうことが判明した。   However, since the temperature of the anode 108 and the cathode 109 rises to about 1000 ° C. and the heat of the cathode 109 is transmitted to the flange 110 via the conductive support member 112 when the reflecting mirror built-in lamp having the above configuration is turned on. The flange 110 locally becomes a high temperature of about 250 to 300 ° C. at the position where the conductive support member 112 abuts. When the flange 110 becomes high temperature, the window member 111 joined to the flange 110 also becomes high temperature in a chain. As described above, the flange 110 is formed of a Kovar alloy having a thermal expansion coefficient substantially equal to that of the glass constituting the window member 111. However, the thermal expansion coefficient of the glass and the Kovar alloy is not exactly the same. The difference arises in the amount of deformation due to thermal expansion. Therefore, when the flange 110 and the window member 111 are excessively heated locally, a gap may be generated at the joint portion between the flange 110 and the window member 111 due to the difference in deformation due to the thermal expansion. It has been found that the sealing performance due to is reduced.

本発明は、以上のような事情に鑑みてなされたものであり、フランジの温度上昇を抑制し、放電空間の密閉性を良好に保つことのできる反射鏡内蔵型ランプを提供することを目的とする。   The present invention has been made in view of the circumstances as described above, and an object thereof is to provide a reflector built-in lamp that can suppress a rise in the temperature of the flange and can maintain a good sealing property of the discharge space. To do.

本発明は、開口端に凹形の反射面を形成した胴体と、前記反射面を含んで前記胴体内部に形成される放電空間に所定間隔をあけて配置された一対の陽極と陰極と、前記胴体の開放端に固定され、前記陰極に給電する給電リングと、一端部及び他端部が前記給電リング及び前記陰極に接合し、該陰極を前記胴体の中心軸上の所定位置に支持する導電性支持部材とを備え、前記導電性支持部材は、前記陰極に接合する一端部から前記給電リングに接合する他端部にかけて、該陰極を中心として放電空間内を複数回周回させたスパイラル形状をなしていること、及び、前記陰極との接点から前記給電リングとの接点までの距離が、前記陰極と前記給電リングを結ぶ最短距離よりも長いことを特徴としている。
The present invention includes a body having a concave reflecting surface at an open end, a pair of anode and cathode disposed at a predetermined interval in a discharge space formed inside the body including the reflecting surface, A power supply ring that is fixed to the open end of the fuselage and feeds power to the cathode, and one end and the other end are joined to the power feed ring and the cathode, and a conductive material that supports the cathode at a predetermined position on the central axis of the fuselage. A conductive support member, and the conductive support member has a spiral shape in which the inside of the discharge space is circulated a plurality of times around the cathode from one end joined to the cathode to the other end joined to the feeding ring. And the distance from the contact point with the cathode to the contact point with the feed ring is longer than the shortest distance connecting the cathode and the feed ring.

給電リングの内周面には密嵌された筒状のフランジが形成されていることが好ましく、この筒状のフランジの内周面には窓部材が保持されていることがより好ましい。A cylindrical flange that is closely fitted is preferably formed on the inner peripheral surface of the power supply ring, and it is more preferable that a window member is held on the inner peripheral surface of the cylindrical flange.

本発明によれば、導電性支持部材は、一端部が陰極に接合し、該陰極を中心として放電空間内に複数回周回させたスパイラル形状をなして、他端部が給電リングに接合されているので、陰極と給電リングとを最短距離で結ぶ直線状に導電性支持部材を形成した場合よりも、導電性支持部材を伝わる間に放電空間に放出されやすく、給電リングを介してフランジに伝わる熱量を低減させることができる。これにより、フランジの温度上昇が抑制される結果、フランジ及び該フランジに接合した窓部材の熱膨張による変形量の差が少なくなり、フランジと窓部材との密着性、すなわち放電空間内の密閉性を良好に保つことができる。
According to the present invention, the conductive support member has a spiral shape in which one end is joined to the cathode, and is wound around the discharge space a plurality of times around the cathode, and the other end is joined to the feed ring. Therefore, it is more likely to be discharged into the discharge space while traveling through the conductive support member than when the conductive support member is formed in a straight line connecting the cathode and the feed ring at the shortest distance, and is transmitted to the flange via the feed ring. The amount of heat can be reduced. As a result, the rise in the temperature of the flange is suppressed, so that the difference in deformation due to thermal expansion between the flange and the window member joined to the flange is reduced, and the adhesion between the flange and the window member, that is, the sealing property in the discharge space. Can be kept good.

図1〜図3は、本発明の一実施形態による反射鏡内蔵型ランプLを示している。反射鏡内蔵型ランプLは円柱形状の胴体1を備えている。胴体1は、開口端に形成された凹形の反射面1aと、該胴体1の中心軸を貫通する陽極用の支持穴1bとを有している。この胴体1は、絶縁性のセラミック材料を用いて所定形状に成形して焼結させた後、銀やアルミニウム等の金属蒸着膜又は誘電体多層膜などを形成する反射加工を施して反射面1aを形成したものである。胴体1には、中心軸方向の一端部側に金属ブロック3が第1金属環4により固定され、上記反射面1aの形成された他端部(開口端)側に給電リング5が第2金属環6により固定されている。支持穴1bには、中空のスペーサ(陽極支持部材)2が胴体1の一端部側(金属ブロック3側)から嵌挿されている。   1 to 3 illustrate a reflector built-in lamp L according to an embodiment of the present invention. The reflector built-in lamp L includes a cylindrical body 1. The body 1 has a concave reflecting surface 1 a formed at the opening end, and a support hole 1 b for the anode penetrating the central axis of the body 1. The body 1 is formed into a predetermined shape using an insulating ceramic material, sintered, and then subjected to a reflection process for forming a metal vapor-deposited film such as silver or aluminum or a dielectric multilayer film. Is formed. In the body 1, a metal block 3 is fixed by a first metal ring 4 on one end side in the central axis direction, and a feed ring 5 is provided on the other end (opening end) side where the reflection surface 1 a is formed. It is fixed by the ring 6. A hollow spacer (anode support member) 2 is fitted into the support hole 1b from one end side (metal block 3 side) of the body 1.

金属ブロック3は、胴体1とほぼ同じ外径で形成された連結部3aを有しており、この連結部3aがスペーサ2を狭持して胴体1に当接している。金属ブロック3の中心部には、スペーサ2が嵌挿された支持穴1bに連通する挿通穴3bが、該金属ブロック3を貫通して形成されている。陽極8は、金属ブロック3の挿通穴3b及びスペーサ2が嵌挿された胴体1の支持穴1bに挿通され、反射面1aに一部突出した状態で胴体1及び金属ブロック3により支持される。陽極8と金属ブロック3は電気的に接続されている。金属ブロック3は、陽極8への給電体として、及び、胴体1と陽極8の熱吸収体として機能する。この金属ブロック3は、例えばコバールのような熱伝導性の高い金属材料により形成されている。また金属ブロック3は、図2に示すように後端部(図1の左側端部)がピンPで複数箇所(本実施形態では同心円上に3箇所)固定されており、胴体1に対して回転不能となっている。この金属ブロック3を介して、反射鏡内蔵型ランプLは光源装置のヒートシンク40に装着される。   The metal block 3 has a connecting portion 3 a formed with substantially the same outer diameter as that of the body 1, and this connecting portion 3 a holds the spacer 2 and abuts the body 1. An insertion hole 3 b communicating with the support hole 1 b in which the spacer 2 is inserted is formed in the center of the metal block 3 so as to penetrate the metal block 3. The anode 8 is inserted into the insertion hole 3b of the metal block 3 and the support hole 1b of the body 1 in which the spacer 2 is inserted, and is supported by the body 1 and the metal block 3 in a state of partially protruding on the reflection surface 1a. The anode 8 and the metal block 3 are electrically connected. The metal block 3 functions as a power feeding body for the anode 8 and as a heat absorber for the body 1 and the anode 8. The metal block 3 is made of a metal material having high thermal conductivity such as Kovar. Further, as shown in FIG. 2, the rear end portion (the left end portion in FIG. 1) of the metal block 3 is fixed at a plurality of locations (three locations on concentric circles in the present embodiment) by pins P. Cannot rotate. Through this metal block 3, the reflector built-in lamp L is mounted on the heat sink 40 of the light source device.

第1金属環4は、胴体1及び金属ブロック3の外径に対応させた内径を有し、胴体1の外周及び金属ブロック3の連結部3aの外周を覆って胴体1と金属ブロック3を固定する。この第1金属環4は、低抵抗の金属材料によって形成されており、金属ブロック3と共に陽極8への給電体として働く。   The first metal ring 4 has an inner diameter corresponding to the outer diameters of the body 1 and the metal block 3, covers the outer periphery of the body 1 and the outer periphery of the connecting portion 3 a of the metal block 3, and fixes the body 1 and the metal block 3. To do. The first metal ring 4 is made of a low-resistance metal material, and functions as a power feeder to the anode 8 together with the metal block 3.

給電リング5は、胴体1の外径とほぼ等しい外径を有するリング形状をなし、同様に胴体1の外径とほぼ等しい外径を有するセラミックリング7を介して胴体1に当接している。給電リング5は、陰極9への給電体であって、金属材料により形成されている。この給電リング5の内周面には、該内周面に当接する筒状のフランジ10が密嵌されていて、フランジ10はその内周面に密着させた円形の窓部材11を保持している。窓部材11は、可視光を透過させる透光性を有している。このフランジ10及び窓部材11は、互いの密着性を良好に保てるように、熱膨張係数が近い材質で形成されていることが好ましい。本実施形態では、フランジ10がコバール合金(FeNiCo)により形成され、窓部材11はガラスにより形成されている。   The feed ring 5 has a ring shape having an outer diameter substantially equal to the outer diameter of the body 1, and is in contact with the body 1 via a ceramic ring 7 having an outer diameter substantially equal to the outer diameter of the body 1. The power supply ring 5 is a power supply body to the cathode 9 and is made of a metal material. A cylindrical flange 10 that is in contact with the inner peripheral surface is closely fitted to the inner peripheral surface of the power supply ring 5. The flange 10 holds a circular window member 11 that is in close contact with the inner peripheral surface. Yes. The window member 11 has translucency that allows visible light to pass therethrough. It is preferable that the flange 10 and the window member 11 are made of a material having a close thermal expansion coefficient so as to maintain good adhesion to each other. In the present embodiment, the flange 10 is made of Kovar alloy (FeNiCo), and the window member 11 is made of glass.

第2金属環6は、胴体1、給電リング5及びセラミックリング7の外径に対応させた内径を有しており、上記金属ブロック3が固定された側とは反対側で胴体1、給電リング5及びセラミックリング7の外周を覆って、胴体1に給電リング5及びセラミックリング7を固定する。この第2金属環6は、低抵抗の金属材料によって形成されており、給電リング5と共に陰極9への給電体として働く。   The second metal ring 6 has an inner diameter corresponding to the outer diameters of the fuselage 1, the feed ring 5 and the ceramic ring 7, and the fuselage 1 and the feed ring on the side opposite to the side on which the metal block 3 is fixed. 5 and the ceramic ring 7 are covered, and the feeding ring 5 and the ceramic ring 7 are fixed to the body 1. The second metal ring 6 is formed of a low-resistance metal material, and functions as a power supply body to the cathode 9 together with the power supply ring 5.

上記窓部材11がフランジ10を介して給電リング5に密嵌されると、胴体1の他端部側に、反射面1aを含む密封空間が形成される。この密封空間を、本実施形態では放電空間Sということにする。放電空間S内には、Xeを主体とする発光物質(不活性ガス)が封入されており、一対の陽極8と陰極9が所定の間隔をあけて配置されている。本実施形態の陽極8と陰極9の間隔は約1〜2mm程度である。陽極8と陰極9は、ランプ点灯時に高温になるため、例えばタングステンなどの耐熱性に優れた金属材料で形成されている。陽極8は、上述したように反射面1aから一部突出した状態で胴体1及び金属ブロック3に支持されている。一方、陰極9は、その軸線方向が陽極8の軸線方向に一致するように、導電性支持部材12によって支持されている。導電性支持部材12は、一端部が陰極9に接合され、他端部が給電リング5の内周面に接合されていて、陰極9と給電リング5とを電気的に接続する。この導電性支持部材12は、給電リング5に接合された他端部でフランジ10にも当接している。導電性支持部材12は、例えば銅のような導電性に優れた金属材料により形成されている。   When the window member 11 is tightly fitted to the power supply ring 5 via the flange 10, a sealed space including the reflecting surface 1 a is formed on the other end side of the body 1. This sealed space is referred to as a discharge space S in this embodiment. In the discharge space S, a light emitting substance (inert gas) mainly composed of Xe is enclosed, and a pair of anode 8 and cathode 9 are arranged at a predetermined interval. The distance between the anode 8 and the cathode 9 in this embodiment is about 1 to 2 mm. Since the anode 8 and the cathode 9 become high temperature when the lamp is turned on, they are made of a metal material having excellent heat resistance such as tungsten. As described above, the anode 8 is supported by the body 1 and the metal block 3 so as to partially protrude from the reflecting surface 1a. On the other hand, the cathode 9 is supported by the conductive support member 12 so that the axial direction thereof coincides with the axial direction of the anode 8. The conductive support member 12 has one end joined to the cathode 9 and the other end joined to the inner peripheral surface of the power supply ring 5 to electrically connect the cathode 9 and the power supply ring 5. The conductive support member 12 is also in contact with the flange 10 at the other end joined to the power supply ring 5. The conductive support member 12 is formed of a metal material having excellent conductivity, such as copper.

第1金属環4及び金属ブロック3を介して陽極8に、第2金属環6、給電リング5及び導電性支持部材12を介して陰極9にそれぞれ電圧を印加すると、陰極9から陽極8に向かって飛び出した電子が放電空間S内の発光物質を励起させ、陽極8と陰極9の間に輝点が生じる。すなわち、本反射鏡内蔵型ランプLが点灯する。陽極8と陰極9の間に生じた光は、反射面1aによって反射され、放電空間Sから窓部材11及び窓部材11よりも外方へ射出される。本実施形態の反射面1aで反射された光は、平行光として外方に射出される。反射鏡内蔵型ランプLから射出される光が平行光であるか集光であるかは、放電空間S内に備える反射面1aの形状の違いによる。   When a voltage is applied to the anode 8 via the first metal ring 4 and the metal block 3 and to the cathode 9 via the second metal ring 6, the feeding ring 5 and the conductive support member 12, the voltage from the cathode 9 toward the anode 8 is increased. The emitted electrons excite the luminescent material in the discharge space S, and a bright spot is generated between the anode 8 and the cathode 9. That is, the reflector built-in lamp L is turned on. The light generated between the anode 8 and the cathode 9 is reflected by the reflecting surface 1 a and is emitted from the discharge space S to the outside of the window member 11 and the window member 11. The light reflected by the reflecting surface 1a of the present embodiment is emitted outward as parallel light. Whether the light emitted from the reflecting mirror built-in lamp L is parallel light or condensing depends on the shape of the reflecting surface 1a provided in the discharge space S.

本反射鏡内蔵型ランプLが点灯すると、陽極8及び陰極9の温度は約1000℃近くまで上昇し、陽極8及び陰極9からの発熱により放電空間Sの温度も上昇する。このとき、金属ブロック3が上述したように胴体1と陽極8の熱吸収体として働き、陽極8及び放電空間S内の温度が過剰に上昇してしまうことを防止している。すなわち、陽極8の熱は金属ブロック3に吸収され、放電空間Sの熱は胴体1を介して金属ブロック3に吸収される。金属ブロック3に吸収された熱は、該金属ブロック3からヒートシンク40へ放出される。一方、陰極9の熱は、導電性支持部材12に伝わる。   When the lamp L with built-in reflector is turned on, the temperature of the anode 8 and the cathode 9 rises to about 1000 ° C., and the temperature of the discharge space S also rises due to heat generated from the anode 8 and the cathode 9. At this time, as described above, the metal block 3 functions as a heat absorber for the body 1 and the anode 8 to prevent the temperature in the anode 8 and the discharge space S from excessively rising. That is, the heat of the anode 8 is absorbed by the metal block 3, and the heat of the discharge space S is absorbed by the metal block 3 through the body 1. The heat absorbed by the metal block 3 is released from the metal block 3 to the heat sink 40. On the other hand, the heat of the cathode 9 is transmitted to the conductive support member 12.

以上の全体構成を有する反射鏡内蔵型ランプLは、導電性支持部材12の形状に特徴を有している。   The reflecting mirror built-in type lamp L having the overall configuration described above is characterized by the shape of the conductive support member 12.

導電性支持部材12は、薄板状をなし、図3に示すように陰極9(陰極9に接合された一端部)を中心とするスパイラル形状で形成されている。この導電性支持部材12は、図7に示すような陰極9から給電リング5及びフランジ10までの距離が最短になる一直線状で形成された場合よりも、全長が長くなっている。導電性支持部材12の全長が長くなれば、導電性支持部材12の表面積も増大するため、導電性支持部材12の放熱性が向上する。陰極9で発生した熱は、該陰極9に接合されている導電性支持部材12を伝わりつつ導電支持部材12から放電空間Sに放出され、導電性支持部材12の他端部に伝わるまでの間に低減されていく。この結果、放電空間S内の温度が上昇したときに、導電性支持部材12の他端部と給電リング5とフランジ10が接する部分に伝わる熱量が抑制される。これにより、導電性支持部材12の他端部が当接する部分でフランジ10が局所的に過度な高温とならずに済むので、フランジ10と窓部材11の熱膨張による変形量はほぼ同等となり、フランジ10と窓部材11との密着性を良好に保つことができる。   The conductive support member 12 has a thin plate shape, and is formed in a spiral shape centered on the cathode 9 (one end joined to the cathode 9) as shown in FIG. The conductive support member 12 has a longer overall length than the case where the conductive support member 12 is formed in a straight line in which the distance from the cathode 9 to the feed ring 5 and the flange 10 is the shortest as shown in FIG. If the total length of the conductive support member 12 is increased, the surface area of the conductive support member 12 is also increased, so that the heat dissipation of the conductive support member 12 is improved. The heat generated in the cathode 9 is emitted from the conductive support member 12 to the discharge space S while being transmitted through the conductive support member 12 joined to the cathode 9 and is transmitted to the other end of the conductive support member 12. Will be reduced. As a result, when the temperature in the discharge space S rises, the amount of heat transmitted to the portion where the other end portion of the conductive support member 12 contacts the power supply ring 5 and the flange 10 is suppressed. Thereby, the flange 10 does not have to be locally excessively hot at the part where the other end of the conductive support member 12 abuts, so that the deformation amount due to thermal expansion of the flange 10 and the window member 11 is substantially equal. Good adhesion between the flange 10 and the window member 11 can be maintained.

導電性支持部材12は、右回りのスパイラル形状で形成されているが、右回りのスパイラル形状であっても左回りのスパイラル形状であってもよい。   The conductive support member 12 is formed in a clockwise spiral shape, but may be a clockwise spiral shape or a counterclockwise spiral shape.

また本実施形態では、1つの導電性支持部材12で陰極9を支持しているが、導電性支持部材12は複数備えられていてもよい。ただし、導電性支持部材12を複数備える場合は、導電性支持部材12が反射面1aで反射された光を遮らないように、各導電性支持部材12の位置を調整する必要がある。   In this embodiment, the cathode 9 is supported by one conductive support member 12, but a plurality of conductive support members 12 may be provided. However, when a plurality of conductive support members 12 are provided, it is necessary to adjust the position of each conductive support member 12 so that the conductive support member 12 does not block the light reflected by the reflecting surface 1a.

図4は、本発明の第2実施形態による反射鏡内蔵型ランプが備えた導電性支持部材を示している。この第2実施形態は、上述したスパイラル形状の導電性支持部材12に替えて、3つの曲折部を有する折り曲げ形状の導電性支持部材22を等間隔に3つ備えている。導電性支持部材22以外の構成は、第1実施形態と同一である。図4では第1実施形態と同じ機能を有する構成要素に、図1と同一符号を付してある。   FIG. 4 shows a conductive support member provided in the reflector built-in lamp according to the second embodiment of the present invention. In this second embodiment, instead of the spiral conductive support member 12 described above, three bent conductive support members 22 having three bent portions are provided at equal intervals. The configuration other than the conductive support member 22 is the same as that of the first embodiment. In FIG. 4, components having the same functions as those in the first embodiment are denoted by the same reference numerals as in FIG.

各導電性支持部材22は、一端部と他端部が陰極9と給電リング5にそれぞれ接合されていて、さらに他端部はフランジ10に当接している。この導電性支持部材22は、耐熱性を有する金属材料により形成された例えば薄板状をなし、鋭角に折り曲げられてなる曲折部を有している。これにより、導電性支持部材22の全長は、図7に示すような陰極9から給電リング5及びフランジ10までの距離が最短になる一直線状で形成された場合よりも長く延びている。このように導電性支持部材22の全長が延びれば、第1実施形態と同様に、陰極9で発生した熱は導電性支持部材22の他端部に伝わるまでの間に低減されるので、導電性支持部材12の他端部が当接する部分でフランジ10が局所的に過度な高温とならずに済む。この第2実施形態によっても、フランジ10と窓部材11との密着性を良好に保つことができる。なお、各導電性支持部材22は、反射面1aで反射された光を遮らないように位置調整してある。   Each conductive support member 22 has one end portion and the other end portion joined to the cathode 9 and the power supply ring 5, and the other end portion is in contact with the flange 10. The conductive support member 22 has, for example, a thin plate shape made of a heat-resistant metal material, and has a bent portion that is bent at an acute angle. Thereby, the full length of the electroconductive support member 22 is extended longer than the case where it forms in the shape of a straight line where the distance from the cathode 9 to the feed ring 5 and the flange 10 is the shortest as shown in FIG. If the total length of the conductive support member 22 is thus extended, the heat generated in the cathode 9 is reduced until it is transferred to the other end of the conductive support member 22 as in the first embodiment. The flange 10 is not locally excessively heated at the portion where the other end of the conductive support member 12 abuts. Also according to the second embodiment, the adhesion between the flange 10 and the window member 11 can be kept good. Each conductive support member 22 is adjusted in position so as not to block the light reflected by the reflecting surface 1a.

本第2実施形態では、導電性支持部材22が曲折部を3箇所有しているが、曲折部の数は適宜設定することができる。また、この曲折部を有する導電性支持部材22を、第1実施形態と同様に陰極9(陰極9に接合された一端部)を中心とするスパイラル形状に形成し、その全長をさらに長くすることも可能である。   In the second embodiment, the conductive support member 22 has three bent portions, but the number of bent portions can be set as appropriate. Further, the conductive support member 22 having the bent portion is formed in a spiral shape centering on the cathode 9 (one end portion joined to the cathode 9) as in the first embodiment, and the entire length thereof is further increased. Is also possible.

また第2実施形態では、図4に示すように陰極9の軸線方向と直交する方向の断面で導電性支持部材22が折り曲げられているが、導電性支持部材は、図5に示すように陰極9の軸線方向と平行な方向の断面で折り曲げられている構成であってもよい。
In the second embodiment, the conductive support member 22 is bent in a cross section perpendicular to the axial direction of the cathode 9 as shown in FIG. 4, but the conductive support member is a cathode as shown in FIG. The structure bent in the cross section of the direction parallel to the axial direction of 9 may be sufficient.

本発明による第1実施形態の反射鏡内蔵型ランプの主要構造を示しており、図3のI−I線に沿う断面図である。FIG. 4 shows a main structure of the reflector built-in lamp according to the first embodiment of the present invention, and is a cross-sectional view taken along line II of FIG. 3. 同反射鏡内蔵型ランプの金属ブロックを後端から見て示す平面図である。It is a top view which shows the metal block of the lamp | ramp with a built-in reflecting mirror seen from a rear end. 同反射鏡内蔵型ランプの導電性支持部材の平面形状を示す平面図である。It is a top view which shows the planar shape of the electroconductive support member of the lamp | ramp with a built-in reflector. 本発明による第2実施形態の反射鏡内蔵型ランプに備えられた導電性支持部材の平面形状を示す平面図である。It is a top view which shows the planar shape of the electroconductive support member with which the reflector built-in type lamp | ramp of 2nd Embodiment by this invention was equipped. 図4とは別態様で形成された導電性支持部材を示す断面図である。It is sectional drawing which shows the electroconductive support member formed in the aspect different from FIG. 従来の反射鏡内蔵型ランプの主要構造を示す断面図である。It is sectional drawing which shows the main structures of the conventional reflector built-in type | mold lamp. 図6に示す反射鏡内蔵型ランプの平面形状を示す平面図である。It is a top view which shows the planar shape of the reflector built-in type lamp | ramp shown in FIG.

符号の説明Explanation of symbols

1 胴体
1a 反射面
2 スペーサ
3 金属ブロック
4 第1金属環
5 給電リング
6 第2金属環
7 セラミックリング
8 陽極
9 陰極
10 フランジ
11 窓部材
12 導電性支持部材
40 ヒートシンク
DESCRIPTION OF SYMBOLS 1 Body 1a Reflecting surface 2 Spacer 3 Metal block 4 1st metal ring 5 Feed ring 6 2nd metal ring 7 Ceramic ring 8 Anode 9 Cathode 10 Flange 11 Window member 12 Conductive support member 40 Heat sink

Claims (3)

開口端に凹形の反射面を形成した胴体と、
前記反射面を含んで前記胴体内部に形成される放電空間に所定間隔をあけて配置された一対の陽極と陰極と、
前記胴体の開放端に固定され、前記陰極に給電する給電リングと、
一端部及び他端部が前記給電リング及び前記陰極に接合し、該陰極を前記胴体の中心軸上の所定位置に支持する導電性支持部材とを備え、
前記導電性支持部材は、
前記陰極に接合する一端部から前記給電リングに接合する他端部にかけて、該陰極を中心として放電空間内を複数回周回させたスパイラル形状をなしていること、
及び、
前記陰極との接点から前記給電リングとの接点までの距離が、前記陰極と前記給電リングを結ぶ最短距離よりも長いこと、
を特徴とする反射鏡内蔵型ランプ。
A fuselage having a concave reflecting surface at the open end;
A pair of an anode and a cathode disposed at a predetermined interval in a discharge space formed inside the body including the reflective surface;
A feeding ring fixed to the open end of the body and feeding the cathode ;
One end portion and the other end portion are joined to the feeding ring and the cathode, and a conductive support member that supports the cathode at a predetermined position on the central axis of the body,
The conductive support member is
From the one end joined to the cathode to the other end joined to the power supply ring, a spiral shape is formed in which the inside of the discharge space is rotated a plurality of times around the cathode,
as well as,
The distance from the contact with the cathode to the contact with the feed ring is longer than the shortest distance connecting the cathode and the feed ring;
Reflector built-in type lamp.
前記給電リングの内周面に密嵌された筒状のフランジを更に備えること、
を特徴とする請求項1記載の反射鏡内蔵型ランプ。
Further comprising a cylindrical flange tightly fitted to the inner peripheral surface of the power supply ring,
The reflector built-in type lamp according to claim 1.
前記筒状のフランジの内周面に保持された窓部材を更に備えること、
を特徴とする請求項2記載の反射鏡内臓型ランプ。
Further comprising a window member held on the inner peripheral surface of the cylindrical flange;
The reflector built-in lamp according to claim 2.
JP2003297137A 2003-08-21 2003-08-21 Reflector built-in lamp Expired - Fee Related JP4173077B2 (en)

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