JPS6240481Y2 - - Google Patents

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Publication number
JPS6240481Y2
JPS6240481Y2 JP13562183U JP13562183U JPS6240481Y2 JP S6240481 Y2 JPS6240481 Y2 JP S6240481Y2 JP 13562183 U JP13562183 U JP 13562183U JP 13562183 U JP13562183 U JP 13562183U JP S6240481 Y2 JPS6240481 Y2 JP S6240481Y2
Authority
JP
Japan
Prior art keywords
light
filament
quadrant
central axis
irradiated
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.)
Expired
Application number
JP13562183U
Other languages
Japanese (ja)
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JPS6044301U (en
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Filing date
Publication date
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Priority to JP13562183U priority Critical patent/JPS6044301U/en
Publication of JPS6044301U publication Critical patent/JPS6044301U/en
Application granted granted Critical
Publication of JPS6240481Y2 publication Critical patent/JPS6240481Y2/ja
Granted legal-status Critical Current

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Description

【考案の詳細な説明】 産業上の利用分野 本考案は新規な車輌用前照灯に関する。詳しく
は、自動車用の前照灯に関し、利用光束が増加し
て全体として明るいと共に対向車に対する眩惑光
を発することがなく、更には、遠方視認性がきわ
めて良好であるすれ違いビームを発することので
きる新規な車輌用前照灯を提供しようとするもの
である。
[Detailed Description of the Invention] Industrial Application Field The present invention relates to a novel vehicle headlamp. Specifically, with regard to automobile headlights, the luminous flux used is increased, the overall brightness is bright, and no dazzling light is emitted to oncoming vehicles, and furthermore, it is possible to emit a passing beam with extremely good long-distance visibility. The aim is to provide a new vehicle headlight.

背景技術とその問題点 自動車用の前照灯にあつては、郊外や高速道路
を高速で走行する際に必要な走行ビーム照射能力
と、市街地走行や対向車とすれ違うときに必要な
すれ違いビーム照射能力とが必要である。そし
て、すれ違いビームにあつては、対向車の運転者
に眩惑を与えるような光を照射しないことが必要
であると共に、自車の走路前方は明るく照射して
その視認性を高めることが必要である。
Background technology and its problems When it comes to automobile headlights, there is a need for driving beam irradiation capability, which is necessary when driving at high speeds in suburban areas or on expressways, and a passing beam irradiation capability, which is necessary when driving in urban areas or when passing oncoming vehicles. ability is necessary. In the case of passing beams, it is necessary not to emit light that dazzles the driver of an oncoming vehicle, and it is also necessary to brightly illuminate the area in front of the vehicle to improve visibility. be.

そこで、上記した目的に適つたすれ違いビーム
を照射するために、従来の自動車用の前照灯は第
1図に示すような構造を有していた。
Therefore, in order to emit a passing beam suitable for the above-mentioned purpose, a conventional automobile headlamp has a structure as shown in FIG. 1.

aは反射鏡であり、その内面bは回転放物面形
反射面とされている。cはすれ違いビーム用のフ
イラメントであり、反射面bの中心軸、即ち、放
物線を回転させたときの回転中心となつた軸x−
xに沿つて、かつ、反射面bの焦点Fより稍前方
に配置される。このような配置関係にあるフイラ
メントcより発せられ反射面bによつて反射され
た光は、中心軸x−xに対して集束する傾向を持
つため、遠方での照射面で捉えた場合、中心軸x
−xに対して反射位置と対象の位置に照射され
る。即ち、中心軸x−xと直角に交わる水平線H
−Hと垂直線V−Vとによつて区画された象限を
考えた場合、反射面bの第1象限で反射された光
は前方での第3象限に向つて照射され、反射面b
の第2象限で反射された光は前方の第4象限に向
つて照射され、反射面bの第3象限で反射された
光は前方の第1象限に向つて照射され、更に、反
射面bの第4象限で反射された光は前方の第2象
限に向つて照射される。
A is a reflecting mirror, and its inner surface b is a paraboloid of revolution reflecting surface. c is a filament for the passing beam, and the central axis of the reflecting surface b, that is, the axis x- which is the rotation center when the parabola is rotated.
It is arranged along x and slightly ahead of the focal point F of the reflective surface b. The light emitted from the filament c in this arrangement and reflected by the reflecting surface b has a tendency to converge with respect to the central axis x-x. axis x
-x is irradiated at the reflection position and the target position. That is, the horizontal line H that intersects at right angles to the central axis x-x
-H and the vertical line V-V, the light reflected on the first quadrant of the reflective surface b is irradiated toward the third quadrant in front, and the light reflected on the reflective surface b
The light reflected on the second quadrant of the reflecting surface b is irradiated toward the fourth quadrant in front, and the light reflected on the third quadrant of the reflecting surface b is irradiated toward the first quadrant in front of the reflecting surface b. The light reflected from the fourth quadrant is directed toward the second quadrant in front.

dはフイラメントcの前方及び略下半部を覆う
遮光体である。この遮光体dのフイラメントc前
部を覆う部分eによつてフイラメントcから前方
へ向つて直射される光は遮られ、反射面bによつ
て反射された光のみが前方へ向つて照射されるこ
とになる。また、この遮光体dによつてフイラメ
ントcの下半部が覆われるため、フイラメントc
から反射面bの下半部、即ち、第3及び第4象限
に向う光が遮られるため、前方の第1及び第2象
限、即ち、水平線H−Hより上方へ向つて照射さ
れる光は殆んど無いことになる。
d is a light shielding body that covers the front and substantially lower half of the filament c. The light emitted directly forward from the filament c is blocked by the portion e of the light shield d that covers the front part of the filament c, and only the light reflected by the reflective surface b is emitted forward. It turns out. Also, since the lower half of the filament c is covered by the light shield d, the filament c
Since the light directed toward the lower half of the reflective surface b, that is, the third and fourth quadrants, is blocked, the light that is irradiated upward from the first and second quadrants in front, that is, the horizontal line H-H, is blocked. There will be almost no.

ところが、走行車線側の遠方、即ち、第2象限
に向つて照射される光がないと、走路前方の視認
が不充分となる。そこで、遮光体dの対向車線側
にある側端縁fを中心軸x−xを通る水平面より
下方に位置させる。そして、その下方への偏位量
は、当該側端縁f及び中心軸x−xを含む平面と
中心軸x−xを含む水平面との為す角度αが約15
゜となる程度となる。
However, if there is no light emitted toward the far side of the driving lane, that is, toward the second quadrant, visibility of the road ahead will be insufficient. Therefore, the side edge f of the light shield d on the opposite lane side is positioned below the horizontal plane passing through the central axis x-x. The amount of downward deviation is determined by the angle α formed between the plane including the side edge f and the central axis x-x and the horizontal plane including the central axis x-x.
゜.

しかして、遮光体dの対向車線側側端縁fが下
方に偏位されている分だけ、反射面bの第4象限
に光が行くことになり、従つて、その分前方の第
2象限にも光が照射されることになる。
Therefore, the light will go to the fourth quadrant of the reflective surface b by the amount that the edge f on the opposite lane side of the light shielding body d is deflected downward, and the light will go to the second quadrant ahead by that amount. The light will also be irradiated.

gは反射鏡aの前面開口を覆うレンズであり、
光を屈折及び/又は拡散するための多数のレンズ
素子が形成されており、これによつて、光を適宜
に制御して、所望の配光パターンを得るものであ
る。
g is a lens that covers the front opening of reflector a,
A large number of lens elements are formed to refract and/or diffuse light, thereby appropriately controlling the light to obtain a desired light distribution pattern.

第2図は第1図に示した車輌用前照灯における
レンズgを通さない場合の配光パターンhを示す
ものである。即ち、第1象限には光が全く照射さ
れず、第3及び第4象限に主として照射され、第
2象限には遮光体dの対向車線側側端縁fが下方
に偏位された分だけ僅かに光が照射される。即
ち、第2象限には、中心軸x−xから延びるある
線iより下方の部分に光に照射される。そして、
この上限線iが水平線H−Hと為す角度αは、遮
光体dの対向車線側側端縁fと中心軸x−xとを
含む平面が中心軸x−xを含む水平面と為す角度
αと同じである。そして、この第2図に示す配光
パターンhを構成するように照射される光をレン
ズgによつて制御して第3図に示すようなすれ違
いビームの配光パターンjが得られる。
FIG. 2 shows a light distribution pattern h in the vehicle headlamp shown in FIG. 1 when the light does not pass through the lens g. In other words, the first quadrant is not irradiated with light at all, the third and fourth quadrants are mainly irradiated, and the second quadrant is irradiated with light by an amount corresponding to the downward deviation of the edge f on the opposite lane side of the light shield d. A small amount of light is emitted. That is, in the second quadrant, a portion below a certain line i extending from the central axis xx is irradiated with light. and,
The angle α that this upper limit line i makes with the horizontal line H-H is the angle α that the plane that includes the edge f on the opposite lane side of the light shielding body d and the center axis x-x makes with the horizontal plane that includes the center axis x-x. It's the same. Then, the irradiated light is controlled by the lens g so as to constitute the light distribution pattern h shown in FIG. 2, and a light distribution pattern j of passing beams as shown in FIG. 3 is obtained.

ところで、上記した従来の車輌用前照灯による
すれ違いビームでは、利用光束が少なく全体とし
て暗いと共に、走行車線側の遠方視認性が充分で
ないという問題がある。
By the way, the above-mentioned conventional vehicular headlamps with low beams have problems in that the usable luminous flux is small, the entire vehicle is dark, and the long-distance visibility on the driving lane side is not sufficient.

即ち、レンズgによつて制御する前の元になる
配光パターンhの第2象限における上限線iは水
平線H−Hと垂直線V−Vとの交点から真直ぐ延
びる線である。しかも、この上限線iと水平線H
−Hとの為す角αを大きくすると、かなり上空ま
で光が照射されることになり、これは、光幕現象
を生じる等好ましくない。そこで、この上限線i
と水平線H−Hとの為す角度αは余り大きくでき
ず、前述したように約15゜程度が上限とされる。
すると、第2象限において垂直線V−V寄りの部
分には殆ど光が照射されず、走路前方の対向車線
側寄りの部分が充分に照射されないという問題が
ある。
That is, the upper limit line i in the second quadrant of the original light distribution pattern h before being controlled by the lens g is a line extending straight from the intersection of the horizontal line H-H and the vertical line V-V. Moreover, this upper limit line i and horizontal line H
If the angle α formed with -H is increased, the light will be irradiated quite far into the sky, which is undesirable as it may cause a light curtain phenomenon. Therefore, this upper limit line i
The angle α formed by the horizontal line H-H cannot be made too large, and as mentioned above, the upper limit is about 15 degrees.
Then, there is a problem in that in the second quadrant, a portion closer to the vertical line VV is hardly irradiated with light, and a portion closer to the oncoming lane in front of the road is not sufficiently irradiated.

考案の目的 そこで、本考案は、上記した従来の車輌用前照
灯にあつた問題点に鑑みて為されれたもので、利
用光束が増加して全体として明るいと共に対向車
に対する眩惑光を発することがなく、更には、遠
方視認性がきわめて良好であるすれ違いビームを
発することのできる新規な車輌用前照灯を提供す
ることを目的とする。
Purpose of the invention The present invention was devised in view of the above-mentioned problems with conventional vehicle headlights.The present invention increases the luminous flux used, brightens the entire vehicle, and emits dazzling light for oncoming vehicles. It is an object of the present invention to provide a novel vehicle headlamp that can emit a passing beam with very good long-distance visibility.

考案の概要 本考案車輌用前照灯は、上記した目的を達成す
るために、回転放物面形反射面の焦点近傍でかつ
反射面の中心軸に略沿つて延びるフイラメント
と、該フイラメントの前面及び略下半部を覆う遮
光体とを備えており、遮光体の対向車線側の側端
縁が前記中心軸を含む水平面より該側端縁及び前
記中心軸を含む平面と前記水平面との為す角度θ
が60゜乃至10゜の範囲にあるように下方に位置す
るようにすると共に、前記θが前方で大きく後方
で小さくなるようにしたことを特徴とする。
Summary of the invention In order to achieve the above-mentioned purpose, the vehicle headlamp of the present invention includes a filament that extends near the focal point of a paraboloid of revolution reflection surface and approximately along the central axis of the reflection surface, and a front surface of the filament. and a light shielding body that covers approximately the lower half of the light shielding body, and a side edge of the light shielding body on the opposite lane side is formed from a horizontal plane including the central axis to a plane including the side edge and the central axis and the horizontal plane. Angle θ
is located below so that it is in the range of 60° to 10°, and the θ is large at the front and small at the rear.

実施例 以下に、本考案車輌用前照灯の詳細を図示した
実施例に従つて説明する。
Embodiments Hereinafter, details of the vehicle headlamp of the present invention will be explained according to illustrated embodiments.

1は反射鏡であり、その内面2は回転放物面形
反射面とされている。3はすれ違いビーム用のフ
イラメントであり、反射面2の中心軸x−xに沿
つて、かつ、反射面2の焦点Fより稍前方に配置
されている。
Reference numeral 1 denotes a reflecting mirror, the inner surface 2 of which is a paraboloid of revolution reflecting surface. Reference numeral 3 denotes a filament for a passing beam, which is disposed along the central axis xx of the reflecting surface 2 and slightly ahead of the focal point F of the reflecting surface 2.

4はフイラメント3の前方及び略下半部を覆う
遮光体である。この遮光体4のフイラメント3前
部を覆う部分5によつてフイラメント3から前方
へ向つて直射される光は遮られ、反射面2によつ
て反射された光のみが前方へ向つて照射されるこ
とになる。また、この遮光体4によつてフイラメ
ント3の略下半部が覆われるため、フイラメント
3から反射面2の下半部、即ち、第3及び第4象
限に向う光が遮られるため、前方の第1及び第2
象限、即ち、水平線H−Hより上方へ向つて照射
される光は殆んど無いことになる。
Reference numeral 4 denotes a light shielding body that covers the front and substantially lower half of the filament 3. Light emitted directly forward from the filament 3 is blocked by the portion 5 of the light shielding body 4 that covers the front part of the filament 3, and only the light reflected by the reflective surface 2 is emitted forward. It turns out. In addition, since substantially the lower half of the filament 3 is covered by the light shielding body 4, light from the filament 3 toward the lower half of the reflective surface 2, that is, the third and fourth quadrants, is blocked. 1st and 2nd
Almost no light is irradiated upward from the quadrant, that is, the horizontal line H-H.

ところが、走行車線側の遠方、即ち、前方の第
3象限に向つて照射される光がないと、走路前方
の視認が不充分となる。そこで、遮光体4の対向
車線側にある側端縁6を中心軸x−xを通る水平
面より下方に位置させている。そして、下方への
偏位量は3段階に分けられている。尚、偏位量
は、当該側端縁6及び反射面2の中心軸x−xを
含む平面と中心軸x−xを含む水平面との為す角
度θによつて示す。遮光体4の対向車線側側端縁
6は前方から3つの部分6,6及び6に分
けられている。そして、第1の部分6の偏位量
θ、第2の部分6の偏位量θ、そして、第
3の部分6の偏位量θは、θ>θ>θ
なる関係になるようにされている。例えば、θ
=45゜、θ=30゜、θ=15゜とされる。尚、
これらθは60゜≧θ≧10゜の範囲内にある必要が
ある。θが60゜以上であると、対向車線側に近接
して強い光が照射され、対向車の運転者に対して
眩惑光線を発する危険性がある。また、θが10゜
以下であると、走行車線側における水平線H−H
より上方への照射が不充分となる。
However, if there is no light emitted toward the far side of the driving lane, that is, toward the third quadrant ahead, visibility of the road ahead will be insufficient. Therefore, the side edge 6 of the light shield 4 on the opposite lane side is located below the horizontal plane passing through the central axis xx. The amount of downward deviation is divided into three stages. Note that the amount of deviation is indicated by the angle θ formed between a plane including the side edge 6 and the central axis x-x of the reflective surface 2 and a horizontal plane including the central axis x-x. The edge 6 on the opposite lane side of the light shielding body 4 is divided into three parts 6 1 , 6 2 and 6 3 from the front. The deviation amount θ 1 of the first portion 6 1 , the deviation amount θ 2 of the second portion 6 2 , and the deviation amount θ 3 of the third portion 6 3 are such that θ 12 > θ 3
It is designed to create a relationship of For example, θ 1
= 45°, θ 2 = 30°, and θ 3 = 15°. still,
These θ must be within the range of 60°≧θ≧10°. If θ is 60° or more, strong light will be emitted close to the oncoming lane, and there is a risk that it will dazzle the driver of the oncoming vehicle. Also, if θ is less than 10°, the horizontal line H-H on the driving lane side
Irradiation further upward becomes insufficient.

7は反射鏡1の前面開口を覆うレンズであり、
光を屈折及び/又は拡散するための多数のレンズ
素子(図示していない。)が形成されており、こ
れによつて、光を適宜に制御して、所望の配光パ
ターンを得るものである。
7 is a lens that covers the front opening of the reflecting mirror 1;
A large number of lens elements (not shown) are formed to refract and/or diffuse light, thereby appropriately controlling the light to obtain a desired light distribution pattern. .

第7図は本考案車輌用前照灯におけるレンズ7
を通さない場合の配光パターン8を示すものであ
る。この配光パターン8においては、第1象限に
は全く光が照射されず、第3及び第4象限に主と
して光が照射され、第2象限には遮光体4の対向
車線側側端縁6が下方に偏位された分だけ光が照
射される。即ち、第2象限には上限線9より下方
の部分に光が照射される。上限線9は3つの部分
,9及び9を含み、それぞれ遮光体4の
対向車線側側端縁6と対応されている。即ち、9
は6に、9は6に、そして、9は6
に対応されている。従つて、各部分9,9
が水平線H−Hと為す角度は、遮光体4の対
向車線側側端縁6の前記偏位量に略対応してい
る。即ち、上限線9の水平線H−Hに対する傾
き角度はθ、上限線9の水平線H−Hに対す
る傾き角度はθ、上限線9の水平線H−Hに
対する傾き角度はθとなる。しかして、θ
θ>θという関係があるの、第2象限におい
て垂直線V−Vに近い部分での上限線9の水平
線H−Hに対する傾き角が大きくなるため、垂直
線V−Vに近接した箇所にまで充分な照射が行な
われる一方で、垂直線V−Vから遠い箇所での上
限線9の水平線H−Hに対する傾き角度は小さ
くされるため、第2象限において必要以上に高角
度の照射が行なわれることを避けることができ
る。従つて、この配光パターン8をレンズ7によ
つて制御すれば、第7図に示すようなすれ違いビ
ームの配光パターン10を容易に得ることができ
る。第7図に示すすれ違いビームの配光パターン
10においては、第2象限で、水平線H−Hから
略台形状に突出するパターンの照射が為され、走
路前方の対向車線側寄りから路肩部までの視認性
が極めて向上することになる。
Figure 7 shows lens 7 in the vehicle headlight of the present invention.
This shows a light distribution pattern 8 when no light passes through. In this light distribution pattern 8, the first quadrant is not irradiated with light at all, the third and fourth quadrants are mainly irradiated with light, and the second quadrant is irradiated with light on the opposite lane side edge 6 of the light shield 4. Light is emitted by the amount of light that is shifted downward. That is, in the second quadrant, the portion below the upper limit line 9 is irradiated with light. The upper limit line 9 includes three portions 9 1 , 9 2 and 9 3 , each of which corresponds to the edge 6 of the light shield 4 on the opposite lane side. That is, 9
1 becomes 6 1 , 9 2 becomes 6 2 , and 9 3 becomes 6 3
is supported. Therefore, each part 9 1 , 9 2 ,
The angle that 9 3 makes with the horizontal line HH substantially corresponds to the amount of deviation of the edge 6 of the light shield 4 on the opposite lane side. That is, the inclination angle of the upper limit line 91 with respect to the horizontal line H-H is θ1 , the inclination angle of the upper limit line 92 with respect to the horizontal line H-H is θ2 , and the inclination angle of the upper limit line 93 with respect to the horizontal line H-H is θ3 . Become. However, θ 1 >
There is a relationship of θ 2 > θ 3 because the angle of inclination of the upper limit line 9 1 with respect to the horizontal line H-H increases in the part close to the vertical line V-V in the second quadrant. While sufficient irradiation is carried out even to the point, the angle of inclination of the upper limit line 93 with respect to the horizontal line H-H is made small at a point far from the vertical line V-V. Irradiation can be avoided. Therefore, if this light distribution pattern 8 is controlled by the lens 7, a light distribution pattern 10 of passing beams as shown in FIG. 7 can be easily obtained. In the light distribution pattern 10 of the passing beam shown in FIG. 7, in the second quadrant, a substantially trapezoidal pattern protruding from the horizontal line H-H is irradiated, and from the side of the oncoming lane in front of the road to the road shoulder. Visibility will be greatly improved.

考案の効果 以上に記載したところから明らかなように、本
考案車輌用前照灯は、回転放物面形反射面の焦点
近傍でかつ反射面の中心軸に略沿つて延びるフイ
ラメントと、該フイラメントの前面及び略下半部
を覆う遮光体とを備えており、遮光体の対向車線
側の側端縁が前記中心軸を含む水平面より該側端
縁及び前記中心軸を含む平面と前記水平面との為
す角度θが60゜乃至10゜の範囲にあるように下方
に位置するようにすると共に、前記θが前方で大
きく後方で小さくなるようにしたことを特徴とす
る。
Effects of the Invention As is clear from the above description, the vehicle headlight of the present invention includes a filament that extends near the focal point of the paraboloid of revolution reflection surface and approximately along the central axis of the reflection surface; a light shielding body that covers the front surface and substantially the lower half of the light shielding body, and a side edge of the light shielding body on the opposite lane side is closer to a plane that includes the side edge and the central axis than a horizontal plane that includes the central axis. It is characterized in that it is positioned downward so that the angle θ is in the range of 60° to 10°, and that the angle θ is large at the front and small at the rear.

従つて、本考案車輌用前照灯によれば、利用光
束が増加して全体として明るいと共に対向車に対
する眩惑光を発することがなく、更には、遠方視
認性がきわめて良好であるすれ違いビームを発す
ることができる。
Therefore, according to the vehicle headlight of the present invention, the available luminous flux is increased and the whole is bright, and it does not emit dazzling light to oncoming vehicles, and furthermore, it emits a passing beam with extremely good long-distance visibility. be able to.

尚、上記実施例の説明においては、遮光体の対
向車線側側端縁の偏位量を段階的に変化させたも
のを示したが、偏位量が前方で大きく後方で小さ
くなつていれば、連続的に変化させても良い。
In the description of the above embodiment, the amount of deviation of the edge of the light shield on the opposite lane side is changed in stages, but if the amount of deviation is large at the front and small at the rear, , may be changed continuously.

更にまた、上記実施例では、走行ビーム用のフ
イラメントは示していないが、走行ビーム用フイ
ラメントを備えていても構わない。
Furthermore, in the above embodiments, a filament for a running beam is not shown, but a filament for a running beam may be included.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は従来の車輌用前照灯の一例を示すもの
で、A図は一部を切欠いて示す正面図、B図は縦
断面図、第2図は第1図に示した車輌用前照灯に
よるレンズを通さない場合の配光パターンをフイ
ラメントと共に示す斜視図、第3図は第1図に示
した車輌用前照灯による配光パターンを示す図、
第4図乃至第6図は本考案車輌用前照灯の実施の
一例を示し、第4図は一部を切欠いて示す正面
図、第5図は第4図のA−A線に沿う断面図、第
6図は第4図のB−B線に沿う断面図、第7図は
本考案車輌用前照灯によるレンズを通さない場合
の配光パターンをフイラメントと共に示す斜視
図、第8図は本考案車輌用前照灯による配光パタ
ーンを示す図である。 符号の説明、2……反射面、3……フイラメン
ト、4……遮光体、6……遮光体の対向車線側の
側端縁、F……反射面の焦点、x−x……反射面
の中心軸。
Figure 1 shows an example of a conventional vehicle headlamp, Figure A is a partially cutaway front view, Figure B is a longitudinal sectional view, and Figure 2 is a front view of the vehicle headlight shown in Figure 1. FIG. 3 is a perspective view showing the light distribution pattern when the illumination light does not pass through the lens together with the filament; FIG. 3 is a diagram showing the light distribution pattern using the vehicle headlight shown in FIG. 1;
4 to 6 show an example of implementation of the vehicle headlamp of the present invention, FIG. 4 is a partially cutaway front view, and FIG. 5 is a cross section taken along line A-A in FIG. 4. 6 is a sectional view taken along the line B-B in FIG. 4, FIG. 7 is a perspective view showing the light distribution pattern of the vehicle headlamp of the present invention without passing through the lens, together with the filament, and FIG. FIG. 2 is a diagram showing a light distribution pattern of the vehicle headlight of the present invention. Explanation of symbols, 2... Reflective surface, 3... Filament, 4... Light blocking body, 6... Side edge of the light blocking body on the opposite lane side, F... Focal point of reflective surface, x-x... Reflective surface central axis.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 回転放物面形反射面の焦点近傍でかつ反射面の
中心軸に略沿つて延びるフイラメントと、該フイ
ラメントの前面及び略下半部を覆う遮光体とを備
えており、遮光体の対向車線側の側端縁が前記中
心軸を含む水平面より該側端縁及び前記中心軸を
含む平面と前記水平面との為す角度θが60゜乃至
10゜の範囲にあるように下方に位置するようにす
ると共に、前記θが前方で大きく後方で小さくな
るようにしたことを特徴とする車輌用前照灯。
It is equipped with a filament that extends near the focal point of the paraboloid of rotation reflection surface and approximately along the central axis of the reflection surface, and a light shield that covers the front surface and approximately the lower half of the filament. The angle θ between the side edge and the plane containing the central axis and the horizontal plane is 60° to 60°.
1. A vehicle headlamp, characterized in that the θ is positioned downward within a range of 10°, and the θ is large at the front and small at the rear.
JP13562183U 1983-09-01 1983-09-01 vehicle headlights Granted JPS6044301U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP13562183U JPS6044301U (en) 1983-09-01 1983-09-01 vehicle headlights

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP13562183U JPS6044301U (en) 1983-09-01 1983-09-01 vehicle headlights

Publications (2)

Publication Number Publication Date
JPS6044301U JPS6044301U (en) 1985-03-28
JPS6240481Y2 true JPS6240481Y2 (en) 1987-10-16

Family

ID=30305203

Family Applications (1)

Application Number Title Priority Date Filing Date
JP13562183U Granted JPS6044301U (en) 1983-09-01 1983-09-01 vehicle headlights

Country Status (1)

Country Link
JP (1) JPS6044301U (en)

Also Published As

Publication number Publication date
JPS6044301U (en) 1985-03-28

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