WO2019208752A1 - Dispositif de rayonnement lumineux - Google Patents

Dispositif de rayonnement lumineux Download PDF

Info

Publication number
WO2019208752A1
WO2019208752A1 PCT/JP2019/017849 JP2019017849W WO2019208752A1 WO 2019208752 A1 WO2019208752 A1 WO 2019208752A1 JP 2019017849 W JP2019017849 W JP 2019017849W WO 2019208752 A1 WO2019208752 A1 WO 2019208752A1
Authority
WO
WIPO (PCT)
Prior art keywords
light
guide plate
light guide
peripheral surface
side peripheral
Prior art date
Application number
PCT/JP2019/017849
Other languages
English (en)
Japanese (ja)
Inventor
顕治 櫻井
篤史 宮武
Original Assignee
シーシーエス株式会社
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 シーシーエス株式会社 filed Critical シーシーエス株式会社
Priority to JP2020515591A priority Critical patent/JP7157799B2/ja
Publication of WO2019208752A1 publication Critical patent/WO2019208752A1/fr

Links

Images

Classifications

    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/84Systems specially adapted for particular applications

Definitions

  • the present invention relates to a light irradiation device.
  • Patent Document 1 As a light irradiation device used in an inspection device for inspecting a defect of a workpiece, for example, Patent Document 1 has a plate shape having a light source, a front surface, a back surface, and a side peripheral surface, and the surface is a workpiece to be inspected. And a light guide plate into which the light of the light source is introduced from the side peripheral surface, and light introduced from the side peripheral surface of the light guide plate by a diffuse reflection portion provided on the back surface of the light guide plate Is configured to diffusely reflect and emit from the surface.
  • the conventional light irradiation apparatus includes a cover body arranged to cover the back surface of the light guide plate, and has a structure in which the workpiece is observed through a through hole provided in the center of the cover body. .
  • the diffuse reflection portion is formed up to the peripheral portion of the light guide plate
  • a part of the light introduced from the side peripheral surface of the light guide plate toward the back side of the light guide plate is a light source of the diffuse reflection portion. Because the light is diffusely reflected in the vicinity, light emitted from the vicinity of the light source of the light guide plate, that is, from the end side far from the through hole of the light guide plate is extremely strong, and light emitted from the center side of the light guide plate is weak. . As a result, light could not be efficiently irradiated to the workpiece. Further, when viewed as the entire light guide plate, there is also a problem that light unevenness is large between the end portion side and the center side.
  • the light irradiation apparatus has a plate shape having a light source, a front surface, a back surface, and a side peripheral surface, and the surface is disposed toward the workpiece, and light from the light source is emitted from the side peripheral surface.
  • a light irradiating device configured to reflect the light introduced into the light guide plate from the side peripheral surface thereof and to be emitted from the surface.
  • the cover further includes a cover body provided with a through hole at a predetermined location, and a first region around a portion corresponding to the through hole is provided on the back surface of the light guide plate.
  • a diffuse reflection part that diffuses and reflects light introduced into the light guide plate from the side peripheral surface is provided, and the second region further outside the first region is introduced into the light guide plate from the side peripheral surface.
  • a total reflection part that totally reflects the emitted light is provided. And it is characterized in and.
  • a total reflection part is provided in the outer side of the diffuse reflection part in the back surface of a light-guide plate, it goes to the back surface side of a light-guide plate among the light of the light source introduced from the side peripheral surface of a light-guide plate. Part of the light is reflected by the total reflection portion and guided to the center side of the light guide plate. Thereby, the light guide
  • the size of the hole in the cut surface obtained by cutting the through hole in parallel with the back surface of the light guide plate may be reduced toward the light guide plate. If it is such, the installation area
  • a line-shaped camera may be used in order to efficiently observe the entire workpiece.
  • the through hole has a slit shape.
  • the diffuse reflection portion may be a laminate in which a diffuse reflection layer is laminated on the entire surface of the first region. If it is such, since a diffused reflection layer can be formed by printing, for example, the number of parts which comprise a light irradiation apparatus can be reduced, and productivity improves. Moreover, even if the diffuse reflection part has a complicated shape, it can be easily formed.
  • the diffuse reflection layer when the diffuse reflection layer is thin, a part of the light incident on the diffuse reflection part is transmitted, and the light transmitted through the diffuse reflection part is absorbed by the cover body, resulting in light loss. Therefore, a reflection member that reflects the light transmitted through the diffuse reflection portion toward the light guide plate may be further provided between the diffuse reflection portion of the light guide plate and the cover body. If it is such, since the light which permeate
  • the light irradiation apparatus having such a configuration, it is possible to efficiently irradiate the work with light and to improve the uniformity of light emitted from the light guide plate.
  • the inspection apparatus A is used to inspect defects (scratches, dirt, foreign matter, etc.) of the workpiece W, and is installed in a conveyance line that conveys the workpiece W in, for example, a factory. It is what is done.
  • the inspection apparatus A is arranged on the opposite side of the light irradiation apparatus 100 that irradiates light to the work W to be inspected and the light irradiation apparatus 100 with respect to the work W.
  • a camera C As the camera C, for example, a CCD camera can be used.
  • the camera of this embodiment is a line camera.
  • the light irradiation device 100 has a plate shape having a light source 10, a front surface 21, a back surface 22, and a side peripheral surface 23, and the front surface 21 is disposed toward the workpiece W.
  • the light guide plate 20 into which the light of the light source 10 is introduced from the side peripheral surface 23, the housing 30 that supports the light guide plate 20 and the light source 10 and covers the back surface 22 of the light guide plate 20, and the back surface 22 of the light guide plate 20 and the housing And a reflection member 40 disposed between the body 30 and the body 30.
  • the housing 30 is provided with a through hole 30 a for observing the workpiece W by the camera C at a predetermined location covering the back surface 22 of the light guide plate 20.
  • the through hole 30a of the present embodiment has a slit shape extending along the longitudinal direction of the line camera (see FIG. 4).
  • the light source 10 includes a plurality of LEDs arranged at equal intervals along the side peripheral surface 23 of the light guide plate 20, and the light emission direction thereof faces the side peripheral surface 23.
  • the light source 10 further includes a lens extending along the side peripheral surface 23 in the light emission direction.
  • the light source 10 is disposed to face the side circumferential surface 23 along the longitudinal direction of the light guide plate 20 with respect to the light guide plate 20, and the side circumferential surface 23 along the width direction of the light guide plate 20. Is not arranged.
  • the light guide plate 20 is a transparent plate having a rectangular shape in plan view, and is composed of, for example, an acrylic plate or a glass plate, and the surface 21 is provided with a non-reflective coating.
  • the light guide plate 20 is arranged such that its longitudinal direction is parallel to the longitudinal direction of the slit-shaped through hole 30a.
  • the first region 22 a which is a region on both sides of the portion corresponding to the through hole 30 a, is introduced into the light guide plate 20 from the side peripheral surface 23.
  • a diffuse reflector 24 that diffusely reflects the reflected light is provided along the longitudinal direction of the through hole 30a.
  • the second region 22b which is a region closer to the end than the first region 22a, is totally reflected by the light introduced into the light guide plate 20 from the side peripheral surface 23.
  • the reflection part 25 is provided along the longitudinal direction of the through hole 30a. That is, the second region 22 b is a region between the first region 22 a and the side peripheral surface 23 on the back surface 22 of the light guide plate 20, in other words, a peripheral region on the back surface 22 of the light guide plate 20.
  • the diffuse reflection portion 24 is obtained by laminating a diffuse reflection layer 24a on the first region 22a.
  • the diffuse reflection portions 24 are preferably provided 10 to 20 mm apart from the light source 10 in the width direction of the light guide plate 20, and are formed as a pair with an interval of 2 to 20 mm so as to sandwich the through hole 30 a.
  • the diffuse reflection layer 24a of the present embodiment is formed by printing ink on the entire surface of the first region 22a without any gap.
  • the ink white ink is used and formed with a thickness of 20 to 25 ⁇ m. In addition to this, not only ink but also paint may be applied on the light guide plate 20 and laminated.
  • the housing 30 is formed in a rectangular shape in plan view, and supports the light guide plate 20 and the light source 10. Specifically, the housing 30 includes a cover body 31 disposed so as to cover the back surface 22 of the light guide plate 20, a frame-shaped side plate 32 disposed so as to surround the side peripheral surface 23 of the light guide plate 20, It has.
  • the cover body 31 includes the through-hole 30a, and the through-hole 30a is formed at the center of the cover body 31 in the width direction along the longitudinal direction of the cover body 31.
  • the through hole 30 a has a substantially V-shaped cross section, and specifically, the size of the hole in the cut surface when cut in parallel with the back surface 22 of the light guide plate 20 faces the back surface 22 of the light guide plate 20. The shape gradually becomes smaller.
  • the cover body 31 is provided with a connection piece 31 a for connecting to the side plate 32 at the side edge portion.
  • the cover body 31 has the same thickness at the portion facing the back surface 22 of the light guide plate 20 except for the connection piece 31a.
  • the side plate 32 supports the light source 10 in a recess 32 a provided on an inner surface facing the side peripheral surface 23 of the light guide plate 20. Moreover, the cover part 32b which covers the surface 21 of the light-guide plate 20 is extended inward from the inner surface from the side plate 32. As shown in FIG. Further, the side plate 32 is provided with a mounting groove 32c used on the outer surface of the side plate 32 when the light irradiation device 100 is installed.
  • the housing 30 supports the light guide plate 20 fitted in the frame of the side plate 32 with the cover portion 32b of the side plate 32 and the cover body 31 interposed therebetween. In this state, the cover portion 32 b of the side plate 32 is disposed so as to cover the surface of the surface 21 of the light guide plate 20 opposite to the total reflection portion 25.
  • casing 30 is formed with the material which has light-shielding property and has heat dissipation, for example. Specifically, it is preferably formed of a metal such as an aluminum alloy.
  • the reflection member 40 is a thin plate attached to the inner surface of the cover body 31.
  • the light guide plate 20 is disposed between the diffuse reflection part 24 provided on the back surface 22 of the light guide plate 20 and the cover body 31, but may be opposed to a part or all of the total reflection part 25.
  • the reflecting member 40 is composed of, for example, a reflecting mirror, and is arranged with its reflecting surface directed toward the diffuse reflecting portion 24 side. The reflection member 40 plays a role of reflecting light transmitted through the diffuse reflection part 24 among the light introduced into the light guide plate 20 toward the light guide plate 20.
  • the diffuse reflection portion 24 and the reflection member 40 are sandwiched between the light guide plate 20 and the cover body 31, and the total reflection portion 25 and the cover body 31 on the back surface 22 of the light guide plate 20 are arranged.
  • An air layer AL is formed between the two.
  • the light irradiation device 100 is installed so that the surface 21 of the light guide plate 20 faces the workpiece W side, and the back surface 22 side of the light guide plate 20 is provided.
  • Camera C is installed in
  • the through-hole 30a of the light irradiation apparatus 100 has a substantially V-shaped cross section, as shown in FIG.
  • the light irradiation device 100 light is irradiated to the workpiece W from the light irradiation device 100.
  • the light emitted from the light source 10 enters the light guide plate 20 from the side peripheral surface 23 of the light guide plate 20, and a part of the light traveling toward the back surface 22 side of the light guide plate 20 is reflected by the total reflection unit 25.
  • the light is totally reflected and guided to the center side of the light guide plate 20.
  • the light after being totally reflected by the inner surface of the surface 21 of the light guide plate 20 and diffusely reflected by the diffuse reflection portion 24 (diffuse reflection layer 24a), the light is emitted from the light guide plate 20 to the outside and irradiated onto the workpiece W.
  • the diffuse reflection portion 24 Some of the light traveling toward the rear surface 22 side of the light guide plate 20 is directly incident on the diffuse reflection portion 24 and is diffusely reflected. Such light is also emitted from the light guide plate 20 to the outside and irradiated onto the workpiece W. Is done. Of the light incident on the diffuse reflector 24, the light transmitted through the diffuse reflector 24 is also reflected by the reflecting member 40 toward the light guide plate 20 and is irradiated onto the workpiece W.
  • the workpiece W irradiated with light in this way is imaged by the camera C through the through hole 30a, and the workpiece W is inspected based on the image obtained by the imaging.
  • the total reflection portion 25 is provided outside the diffuse reflection portion 24 on the back surface 22 of the light guide plate 20, it is introduced from the side peripheral surface 23 of the light guide plate 20.
  • a part of the light traveling toward the back surface 22 of the light guide plate 20 is reflected by the total reflection portion 25 and guided to the center side of the light guide plate 20. Therefore, although the light emitted from the vicinity of the light source 10 (end) of the light guide plate 20 is weakened, the light emitted from the inside of the light guide plate 20 is strengthened. Thereby, the work W can be efficiently irradiated with uniform light from the entire surface of the light guide plate 20.
  • the diffuse reflection part 24 is formed by printing ink, it can be easily formed.
  • the light transmitted through the diffuse reflection portion 24 is reflected by the reflecting member 40 toward the light guide plate 20, the light loss can be further eliminated.
  • the light guide plate 20 is interposed between the camera C and the work W, it is possible to prevent dust and the like from falling from the camera C side to the work W side.
  • the cover body 31 as shown in FIG. 5 can be mentioned. Specifically, in the cover body 31 shown in FIG. 5, the side plate 32 side is thicker than the through hole 30a side. In addition, an air layer AL is formed between the side plate 32 side formed to be thicker than the cover body 31 and the back surface 22 (specifically, the total reflection portion 25) of the light guide plate 20. In such a case, the thickness of the cover body 31 in the vicinity of the light source 10 is increased, so that the heat generated by the light source 10 is radiated more efficiently.
  • the diffuse reflection layer 24a is laminated on the first region 22a to form the diffuse reflection portion 24.
  • the entire region of the first region 22a is damaged by, for example, blasting.
  • the portion 24 may be formed.
  • the diffuse reflection part 24 may be formed by installing a member that diffuses and reflects light separate from the light guide plate 20 in the first region 22a.
  • the through hole 30a is formed in a slit shape in accordance with the line camera.
  • the present invention is not limited to this, and may be, for example, a circular shape or a rectangular shape.
  • the first region 22a is formed around the portion corresponding to the through hole 30a on the back surface 22 of the light guide plate 20, and the second region 22b is formed outside thereof.
  • the light source 10 is disposed on the entire circumference of the side peripheral surface 23 of the light guide plate 20.
  • the light guide plate 20 is rectangular, but is not limited thereto, and may be, for example, circular.
  • the back surface 22 of the light guide plate 20 in the embodiment includes a region without the diffuse reflection portion 24 at a portion corresponding to the through hole 30a so that the workpiece W can be observed from the through hole 30a through the light guide plate 20. It only has to be. Therefore, for example, if the through hole 30a is circular, the first region 22a may be formed up to the inside of the portion corresponding to the through hole 30a as shown in FIG. As shown to b), you may form in the outer side of the site
  • the through hole 30 a is formed in the central portion of the cover body 31, but the through hole 30 a may be formed in addition to the central portion of the cover body 31.
  • the light irradiation apparatus According to the light irradiation apparatus according to the present invention, it is possible to efficiently irradiate the work with light and to improve the uniformity of light emitted from the light guide plate.

Landscapes

  • General Health & Medical Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Biochemistry (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Immunology (AREA)
  • Pathology (AREA)
  • Planar Illumination Modules (AREA)
  • Light Guides In General And Applications Therefor (AREA)
  • Investigating Materials By The Use Of Optical Means Adapted For Particular Applications (AREA)

Abstract

L'invention concerne un dispositif de rayonnement lumineux dont les pertes de lumière sont faibles et qui est capable de rayonner de la lumière efficacement vers une pièce à travailler et dans lequel l'irrégularité de la lumière est faible lorsqu'elle est vue sous forme de plaque entière de guidage lumineux. Ce dispositif de rayonnement lumineux est pourvu d'une source lumineuse et d'une plaque de guidage lumineux qui a une forme de plaque présentant une surface supérieure, une surface arrière et une surface périphérique latérale, la surface supérieure étant disposée face à une pièce à travailler à inspecter et la lumière provenant de la source lumineuse étant guidée à l'intérieur à partir de la surface périphérique latérale, le dispositif de rayonnement lumineux étant conçu de sorte que la lumière guidée jusqu'à la plaque de guidage lumineux à partir de la surface périphérique latérale soit réfléchie intérieurement et soit émise à partir de la surface supérieure : le dispositif de rayonnement lumineux est en outre pourvu d'un corps de couvercle, qui est disposé de manière à recouvrir la surface arrière de la plaque de guidage lumineux et dans lequel un trou traversant est prévu à un emplacement prescrit ; une partie réfléchissante diffuse, permettant d'effectuer une réflexion diffuse de la lumière guidée jusqu'à la plaque de guidage lumineux à partir de la surface périphérique latérale, est prévue dans une première région entourant une position correspondant au trou traversant, sur la surface arrière de la plaque de guidage lumineux, et une partie de réflexion interne totale, permettant d'effectuer une réflexion interne totale de la lumière guidée jusqu'à la plaque de guidage lumineux à partir de la surface périphérique latérale, est prévue dans une seconde région, au-delà vers l'extérieur de la première région.
PCT/JP2019/017849 2018-04-27 2019-04-26 Dispositif de rayonnement lumineux WO2019208752A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2020515591A JP7157799B2 (ja) 2018-04-27 2019-04-26 光照射装置

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2018086978 2018-04-27
JP2018-086978 2018-04-27

Publications (1)

Publication Number Publication Date
WO2019208752A1 true WO2019208752A1 (fr) 2019-10-31

Family

ID=68293862

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/JP2019/017849 WO2019208752A1 (fr) 2018-04-27 2019-04-26 Dispositif de rayonnement lumineux

Country Status (2)

Country Link
JP (1) JP7157799B2 (fr)
WO (1) WO2019208752A1 (fr)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10319242A (ja) * 1997-05-14 1998-12-04 Sanyo Electric Co Ltd 導光板
JP2000164017A (ja) * 1998-11-30 2000-06-16 Nippon Zeon Co Ltd エッジライト型導光板およびその製造方法
JP2010112735A (ja) * 2008-11-04 2010-05-20 Imac Co Ltd 検査用照明装置
JP2016136124A (ja) * 2015-01-24 2016-07-28 株式会社イマック 検査用照明装置
JP2016152156A (ja) * 2015-02-18 2016-08-22 カルソニックカンセイ株式会社 導光体構造
JP2017032289A (ja) * 2015-07-29 2017-02-09 シーシーエス株式会社 光照射装置

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3518554B2 (ja) * 1993-03-23 2004-04-12 大日本印刷株式会社 レンズシート及び該レンズシートを用いた面光源
CN203023921U (zh) 2011-09-09 2013-06-26 柯尼卡美能达先进多层薄膜株式会社 照明装置以及照明台灯

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10319242A (ja) * 1997-05-14 1998-12-04 Sanyo Electric Co Ltd 導光板
JP2000164017A (ja) * 1998-11-30 2000-06-16 Nippon Zeon Co Ltd エッジライト型導光板およびその製造方法
JP2010112735A (ja) * 2008-11-04 2010-05-20 Imac Co Ltd 検査用照明装置
JP2016136124A (ja) * 2015-01-24 2016-07-28 株式会社イマック 検査用照明装置
JP2016152156A (ja) * 2015-02-18 2016-08-22 カルソニックカンセイ株式会社 導光体構造
JP2017032289A (ja) * 2015-07-29 2017-02-09 シーシーエス株式会社 光照射装置

Also Published As

Publication number Publication date
JPWO2019208752A1 (ja) 2021-06-10
JP7157799B2 (ja) 2022-10-20

Similar Documents

Publication Publication Date Title
KR100688677B1 (ko) 조명 유닛 및 그것을 이용한 액정 표시 장치
JP4584312B2 (ja) 光照射装置及び光学部材
KR100397285B1 (ko) 조명장치의 시트, 조명장치, 및 액정표시장치
KR20110100578A (ko) 광원 장치
JP7283210B2 (ja) 画像読取装置
JP2011199460A (ja) 画像読取装置,画像形成装置
US9791616B2 (en) Display apparatus and method of manufacturing the display apparatus
KR102082204B1 (ko) 커버 글라스의 곡면부 검사장치
JP6240773B2 (ja) 光源装置及び表示装置
KR20160096775A (ko) 백라이트 유닛 및 이를 포함하는 표시 장치
WO2019208752A1 (fr) Dispositif de rayonnement lumineux
JP5896629B2 (ja) キャリッジユニット
TW201610513A (zh) 具疊合膜片設計之背光模組
WO2018079742A1 (fr) Dispositif d'inspection
TWI651490B (zh) 銜接型稜鏡片及附稜鏡片線型光照射裝置
JP2007234483A (ja) 導光板、バックライト装置、及び液晶表示装置
JP4245902B2 (ja) 液晶表示装置
US10976606B2 (en) Display device
KR101329790B1 (ko) 곡면 백라이트유닛 및 이를 구비하는 액정표시장치
JP2021085808A (ja) 光照射装置
JP2018017555A (ja) 照明装置
WO2022149356A1 (fr) Dispositif d'irradiation de lumière
JP5556733B2 (ja) 光照射装置
WO2015025364A1 (fr) Dispositif de source lumineuse, et dispositif d'affichage
JP2015195082A (ja) 面状光源装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 19791939

Country of ref document: EP

Kind code of ref document: A1

ENP Entry into the national phase

Ref document number: 2020515591

Country of ref document: JP

Kind code of ref document: A

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 19791939

Country of ref document: EP

Kind code of ref document: A1