WO2021046940A1 - Module de lampe de véhicule, lampe de véhicule, et véhicule - Google Patents

Module de lampe de véhicule, lampe de véhicule, et véhicule Download PDF

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Publication number
WO2021046940A1
WO2021046940A1 PCT/CN2019/108985 CN2019108985W WO2021046940A1 WO 2021046940 A1 WO2021046940 A1 WO 2021046940A1 CN 2019108985 W CN2019108985 W CN 2019108985W WO 2021046940 A1 WO2021046940 A1 WO 2021046940A1
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WIPO (PCT)
Prior art keywords
light incident
light
optical element
primary optical
edge
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Application number
PCT/CN2019/108985
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English (en)
Chinese (zh)
Inventor
仇智平
龚卫刚
张大攀
祝贺
桑文慧
Original Assignee
华域视觉科技(上海)有限公司
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.)
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Publication date
Priority claimed from CN201921510250.4U external-priority patent/CN210373267U/zh
Priority claimed from CN201910859006.7A external-priority patent/CN110440217B/zh
Application filed by 华域视觉科技(上海)有限公司 filed Critical 华域视觉科技(上海)有限公司
Publication of WO2021046940A1 publication Critical patent/WO2021046940A1/fr

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S41/00Illuminating devices specially adapted for vehicle exteriors, e.g. headlamps
    • F21S41/30Illuminating devices specially adapted for vehicle exteriors, e.g. headlamps characterised by reflectors
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V13/00Producing particular characteristics or distribution of the light emitted by means of a combination of elements specified in two or more of main groups F21V1/00 - F21V11/00
    • F21V13/02Combinations of only two kinds of elements
    • F21V13/04Combinations of only two kinds of elements the elements being reflectors and refractors

Definitions

  • the invention relates to the technical field of vehicle lighting, in particular to a vehicle lamp module.
  • the present invention also relates to a vehicle lamp including the above-mentioned vehicle lamp module.
  • the present invention also relates to a vehicle including the above-mentioned vehicle lamp.
  • vehicle lamp modules In the field of vehicle lighting technology, vehicle lamp modules generally refer to low beam and/or high beam lighting modules in automobile headlights.
  • the optical components of the vehicle lamp module include light sources, primary optical elements, and secondary optical elements.
  • the primary optical element includes a mirror, a condenser, etc.
  • the secondary optical element is generally a lens.
  • Dispersed light source means that the low beam and/or high beam light sources of the car lights are scattered and arranged on the same circuit board or different circuit boards, with specific primary optical elements and secondary optical elements, to achieve the low beam and/or high beam of the car lights. / Or high beam lighting.
  • the heat sources can be dispersed at a certain spatial distance, so that the heat is dispersed and is beneficial to heat dissipation. Therefore, the arrangement of the distributed light source greatly improves the heat dissipation performance of the vehicle lamp, and thus the application of the distributed light source in the vehicle lamp module gradually increases.
  • the low-beam lighting mode is an important lighting mode in vehicle lighting, which can enable the driver to have good near-field visibility without street lights and driving at low speeds.
  • the left and right sides of the low beam shape formed by the vehicle lamp module are required to have a large widening angle.
  • the field generally refers to the left and right sides of the low beam shape.
  • the widening angles on the right sides are each designed to be about 40°, preferably greater than 40°.
  • the Chinese invention patent application number 201610679925.2 discloses an LED light source vehicle lamp module, which adopts a distributed light source and can realize the single and low beam function and the integrated function of far and near beam.
  • the LED light source vehicle lamp module in the prior art includes a low-beam condenser 100, a lens 200, a lens holder, a heat sink, and a low-beam LED circuit board; a low-beam condenser 100
  • the primary optical element of the LED light source vehicle lamp module for forming a low-beam light shape;
  • the primary optical element includes a primary optical element body 300 and a plurality of light incident parts 400 arranged at the rear end of the primary optical element body 300 ( That is, the low beam condensing structure), a plurality of light incident parts 400 are sequentially arranged in the left and right direction, and each light incident part 400 corresponds to a light source, so the plurality of scattered light incident parts 400 correspond to a plurality of distributed light sources.
  • the light source arranged in sequence from the central axis of the lens 200 to the left and right ends and the light incident portion 400 in the primary optical element matched with it respectively form the middle and outer sides of the vehicle light shape in sequence section.
  • the middle light source in the view of FIG. 1 and the light incident part 400 matched with it form the middle part of the low beam shape shown in FIG. 1
  • the left light source in the view and the light incident part 400 matched with it form the right part of the low beam shape shown in FIG. 2
  • the right light source in the view of FIG. 1 and the light incident part 400 matched with it form the close-up shown in FIG.
  • the left part of the light shape Therefore, in the view of FIG. 1, the leftmost light source and the light incident part 400 with it form the rightmost part of the low beam light shape shown in FIG. 2.
  • the light shape of the rightmost part is shown in FIG. 3, and it can be seen from FIG. 3 : Its widening angle is small.
  • the widening angle of the left and right sides of the low beam shape formed by the car lamp module can be increased by the following methods: Method one, adding light sources on the left and right sides of the car lamp module, and The light incident part of the primary optical element matched with the light source to increase the widening angle of the left and right sides of the low beam shape formed by the car lamp module; Method two, the light source on the left and right sides and the primary optical element are combined with the light source The matching light incident part moves to the outside along the left and right direction, as shown in Figure 4, so that the light emitted by the light sources on the left and right sides illuminate a wide range of angles to increase the left and right sides of the low beam shape formed by the car lamp module
  • the widening angle is shown in Figure 5 and Figure 6.
  • the leftmost light source in the view of FIG. 4 and the light incident part matched with it form the rightmost part of the low beam shape shown in FIG. 5, and the low beam shape of the rightmost part is shown in FIG. 6;
  • the widening angle of the low beam shape shown in FIG. 6 is larger than the widening angle of the low beam shape shown in FIG. 3.
  • the above two methods of increasing the widening angle of the left and right sides of the low beam shape will increase the size of the primary optical element in the left and right direction, thereby increasing the space occupied by the primary optical element in the left and right direction, thereby increasing the vehicle accordingly.
  • the size and occupied space of the lamp module in the left and right directions will also increase the cost of the vehicle lamp module.
  • the purpose of the present invention is to provide a vehicle lamp module that increases the shape and widening angle of the vehicle light without increasing the size of the primary optical element in the left-right direction.
  • the present invention provides a vehicle lamp module, including a plurality of light sources, and primary optical elements
  • the primary optical element includes a primary optical element body, and a plurality of primary optical element body and arranged at the rear end of the primary optical element body and left and right.
  • Arranged light incident parts multiple light sources correspond to multiple light incident parts one-to-one
  • the left edge side and/or right edge side of the primary optical element body has edge reflection parts located on the left side and/or right side
  • the plurality of light incident parts has an edge light incident part, and at least a part of the light emitted from the edge light incident part is reflected by the edge reflection part and then emitted from the primary optical element.
  • the optical axis of the edge light incident part is inclined and arranged in a manner that the closer to the edge reflection part is toward the front.
  • the positions of the edge reflection part and the edge light incident part in the primary optical element are set by the following steps:
  • the virtual light incident part has the innermost virtual light incident part closest to the middle of the primary optical element, and the innermost virtual light incident part is arranged close to the innermost virtual light incident on the side of the innermost virtual light incident part close to the middle of the primary optical element Part and a reflection part extending back and forth, the reflection part being the edge reflection part;
  • edge reflection part extends straight forward and backward.
  • the multiple light sources are arranged on the same circuit board, and the circuit board has a planar structure.
  • the primary optical element body is a transparent entity with a light-emitting surface at the front end, and the edge reflection portion is a side reflection surface provided on the side surface of the primary optical element body.
  • the primary optical element body and the plurality of light incident parts are in an integrated structure or a split structure.
  • the lower end surface of the primary optical element body is a lower reflecting surface.
  • the light-emitting surface is a curved surface that is concave backward, and a cut-off portion is provided on the lower edge of the light-emitting surface.
  • the plurality of light incident parts are all light-concentrating structures in a light-concentrating cup shape.
  • the present invention also provides a vehicle lamp, which includes the vehicle lamp module as described above.
  • the present invention further provides a vehicle, which includes the vehicle lamp as described above.
  • the vehicle lamp module, vehicle lamp and vehicle related to the present invention have the following beneficial effects:
  • setting the edge light incident part of the outgoing light toward the edge reflection part and the edge reflection part matched with the edge light incident part can increase the left side and/or right side of the car light shape formed by the car light module
  • the angle satisfies the requirement of a large widening angle of the vehicle light shape; on the premise that the widening angle of the same size is reached, compared with the prior art, the size of the primary optical element in this application is smaller in the left-right direction. Therefore, the present application can reduce the size of the primary optical element in the left-right direction while increasing the widening angle, thereby correspondingly reducing the overall size and occupied space of the car light module, thereby reducing the production cost of the car light module .
  • FIG. 1 is a schematic diagram of the structure of a vehicle lamp module forming a low beam shape with a smaller widening angle in the prior art.
  • Fig. 2 is a low beam shape formed by the vehicle lamp module shown in Fig. 1.
  • FIG. 3 is a light shape formed by a light source located on the leftmost side of the vehicle lamp module shown in FIG. 1 and a light incident portion of its corresponding primary optical element.
  • FIG. 4 is a schematic diagram of the structure of a vehicle lamp module forming a low beam shape with a larger widening angle in the prior art.
  • FIG. 5 is a low beam shape formed by the vehicle lamp module shown in FIG. 4.
  • Fig. 6 is a light shape formed by the light source located on the leftmost side of the vehicle lamp module shown in Fig. 4 and the light incident part of its corresponding primary optical element.
  • FIG. 7 is a schematic diagram of the structure of the vehicle lamp module in this application.
  • FIG 8 and 9 are schematic diagrams of the process of setting the positions of the edge reflection part and the edge light incident part in this application.
  • 10 to 12 are schematic diagrams of the structure of Embodiment 1 of the vehicle lamp module in this application under different viewing angles.
  • FIG. 13 is a schematic structural diagram of Embodiment 2 of the vehicle lamp module in this application.
  • This application provides a vehicle, specifically related to the field of vehicle lighting. Further, the present application provides a vehicle lamp for a vehicle, in particular, a vehicle lamp module for a vehicle lamp.
  • the vehicle lamp module involved in the present application includes a plurality of light sources 10, a primary optical element 20, and a secondary optical element 50 arranged on the front side of the primary optical element 20 ,
  • the primary optical element 20 is a condenser
  • the secondary optical element 50 is a lens.
  • the primary optical element 20 includes a primary optical element body 30, and a plurality of light incident portions 40 arranged at the rear end of the primary optical element body 30 and arranged left and right.
  • the light incident portion 40 is the condensing structure of the concentrator. It is in the shape of a condenser cup.
  • the vehicle lamp module adopts a distributed light source. As shown in FIG. 10 or FIG.
  • a plurality of light sources 10 correspond to a plurality of light incident parts 40 in a one-to-one correspondence, that is, each light incident part 40 corresponds to a light source 10.
  • the light incident part 40, the light source 10, and the secondary optical element 50 all have an optical axis.
  • the optical axis refers to an axis that passes through the focal point and extends in the front-rear direction; therefore, the optical axis of the light incident part 40 refers to the axis passing through the focal point of the light incident part 40.
  • the axis, the focal point of the light incident part 40 is set on the light emitting center of the light source 10, the optical axis of the light source 10 refers to the axis passing through the light emitting center of the light source 10, and the optical axis of the secondary optical element 50 refers to the axis passing through the focal point of the lens.
  • the left edge side and/or the right edge side of the primary optical element body 30 has an edge reflection portion 31, and the plurality of light incident portions 40 have an edge light incident on the left and/or right side.
  • the light exiting direction of the edge light incident portion 41 and the intermediate light incident portion 42 excluding the edge light incident portion 41 is toward the edge reflection portion 31, that is, toward the outside of the primary optical element body 30.
  • the edge light incident portion 41 is one or more light incident portions 40 located on the outer side (left and/or right side) of the plurality of light incident portions 40, and the light incident portion 40 located on the outermost side (leftmost and/or right side) The edge light incident part 41 is close to the edge reflection part 31.
  • the edge reflection part 31 may be provided only on the left edge side of the primary optical element body 30, and the edge reflection part 31 is defined as the left reflection part 31L. At this time, the light emission direction is reflected toward the left side.
  • the edge light incident portion 41 of the portion 31L is defined as the left light incident portion 41L.
  • the number of the left light incident part 41L can be one or more: when the number of the left light incident part 41L is one, the left light incident part 41L is immediately to the right of the left reflection part 31L, and at the same time ,
  • the left light incident part 41L is the leftmost light incident part 40 among the plurality of light incident parts 40; when the number of the left light incident part 41L is multiple, the multiple left light incident parts 41L are along the left-right direction They are arranged in order and are all arranged on the left side of the plurality of light incident parts 40, and the leftmost light incident part 41L on the leftmost side is immediately on the right side of the left reflection part 31L.
  • the left side light incident portion 41L and the left side reflecting portion 31L cooperate to form a vehicle light shape located on the right side of the entire light shape, realizing a vehicle light shape with a large widening angle on a single right side.
  • the edge reflection portion 31 may be provided only on the right edge side of the primary optical element body 30, and the edge reflection portion 31 may be defined as the right reflection portion 31R. At this time, the light emission direction is directed to the right
  • the edge light incident portion 41 of the side reflection portion 31R is defined as the right light incident portion 41R.
  • the right light incident portion 41R can be one or more: when the right light incident portion 41R has one number, the right light incident portion 41R is immediately to the left of the right reflection portion 31R, and at the same time ,
  • the right light incident portion 41R is the rightmost light incident portion 40 among the plurality of light incident portions 40; when there are multiple right light incident portions 41R, the multiple right light incident portions 41R are along the left-right direction They are arranged in order and are all arranged on the right side of the plurality of light incident parts 40, and the rightmost light incident part 41R is immediately on the left side of the right reflection part 31R.
  • the right light incident portion 41R and the right reflection portion 31R cooperate to form a vehicle light shape located on the left side of the entire light shape, realizing a single left side widening angle of the vehicle light shape.
  • edge reflection parts 31 are provided on both the left edge side and the right edge side of the primary optical element body 30, and the two edge reflection parts 31 are respectively provided on the primary optical element.
  • the edge light incident portion 41 includes the light emission direction toward the left reflection portion 31L
  • the left light incident portion 41L and the right light incident portion 41R of the light exiting direction toward the right reflection portion 31R, the left light incident portion 41L and the left reflection portion 31L cooperate with each other, the right light incident portion 41R and the right side
  • the reflection part 31R cooperates to realize the shape of the vehicle light with a large widening angle on both the left and right sides.
  • the number of the left light incident portion 41L may be one or multiple; the number of the right light incident portion 41R may be one or multiple.
  • a car light module including a left side reflector 31L, a right side reflector 31R, a left side light incident section 41L, and a right side light incident section 41R is taken as an example, and the left side light incident section 41L and the right side light incident section 41R The number is one, and the optimal scheme of the car light module is described.
  • the edge light incident portion 41 needs to emit light outward, so the edge light incident portion 41 is arranged obliquely. Therefore, the optical axis of the edge light incident portion 41 is also obliquely arranged. Specifically, the optical axis of the edge light incident portion 41 is obliquely arranged in such a way that the farther forward it is, the closer it is to the edge reflection portion 31; based on this, the left side incident light
  • the optical axis of the portion 41L extends obliquely to the front left
  • the optical axis of the right light incident portion 41R extends obliquely to the front right.
  • the optical axes of the plurality of intermediate light incident portions 42 are all inclinedly arranged in a manner of getting closer to the optical axis of the secondary optical element 50 as they move forward.
  • the positions of the left reflection part 31L and the left light incident part 41L in the primary optical element 20 can be set by the following method: First, according to the desired For the requirements of the widening angle of the right side of the vehicle light shape, the leftmost light incident part 400 of the existing primary optical element 20 in FIG. 4 and the light source 10 matched with it are moved to the left to a suitable position, as shown in FIG.
  • the moved light incident part 400 is defined as the left virtual light incident part 61L, and the inclination angle of the left virtual light incident part 61L is adjusted so that the angle of the direction of light emitted by the left virtual light incident part 61L can be Meet the requirements of the right side widening angle of the car light shape to be achieved.
  • the virtual light incident part 61L on the left which at the same time constitutes the innermost virtual light incident part closest to the middle of the primary optical element 20 on the left; the virtual light incident part 61L on the left is close to the right side of the middle of the primary optical element 20
  • a reflecting part that is close to the left side virtual light incident part 61L and extends straight forward and backward is provided. As shown in FIG.
  • the reflecting part is an edge reflecting part 31 on the left side, which is the left side reflection of the primary optical element 20. ⁇ 31L.
  • the left side virtual light incident part 61L is mirrored with the left reflection part 31L as the mirror image surface, and the left side mirror light incident part is obtained. As shown in FIG. 9, the left side mirror light incident part is an edge incident on the left side.
  • the light portion 41 is the left light incident portion 41L of the primary optical element 20.
  • the direction of light emitted by the left light incident portion 41L after being reflected by the left reflection portion 31L is the same as that emitted by the left virtual light incident portion 61L of the left light incident portion 41L mirrored with respect to the left reflection portion 31L Since the direction of light emitted by the left virtual light incident part 61L has met the requirements of a larger right widening angle of the vehicle light shape, the left light incident part 41L and the left reflecting part are set in this way. The light reflected by the 31L can also achieve a larger right side widening angle of the car light shape.
  • the positions of the left reflection part 31L and the left light incident part 41L in the primary optical element 20 can be set by the following methods: First, according to the right light shape of the vehicle to be achieved The side widening angle is required to move the multiple light incident portions 400 on the left side of the existing primary optical element 20 in FIG.
  • Section 400 is defined as the left side virtual light incident section 61L, adjust the inclination angle of the left side virtual light incident section 61L so that the angle of the direction of light emitted from the left side virtual light incident section 61L can match the right side of the vehicle light shape to be achieved Requirements for widening angles.
  • one of the plurality of left virtual light incident sections 61L closest to the middle of the primary optical element 20 is the innermost virtual light incident section, and the innermost virtual light incident section on the left side is close to the primary
  • the right side of the middle of the optical element 20 is provided with a reflection part that is close to the innermost virtual light incident part and extends straight forward and backward.
  • the reflection part is an edge reflection part 31 on the left side, that is, the left side reflection of the primary optical element 20 is obtained. ⁇ 31L.
  • the multiple left side virtual light incident parts 61L are mirrored with the left reflection part 31L as the mirror surface, and multiple left side mirror light incident parts are obtained, and the multiple left side mirror light incident parts are light incident on the left side.
  • the portion 41, that is, the left light incident portion 41L of the primary optical element 20 is obtained.
  • the positions of the right reflective part 31R and the right light incident part 41R in the primary optical element 20 can be set by the following method: First, according to what is to be achieved According to the requirements of the left widening angle of the vehicle light shape, the rightmost light incident part 400 of the existing primary optical element 20 in FIG. 4 and the light source 10 matched with it are moved to the right to a suitable position.
  • the moving light entrance part 400 is defined as the right side virtual light entrance part, and the inclination angle of the right side virtual light entrance part is adjusted so that the angle of the direction of light emitted by the right side virtual light entrance part can match the left side of the vehicle light shape to be achieved.
  • the direction of light emitted by the right light incident portion 41R after being reflected by the right reflector 31R is the same as that emitted by the right light incident portion 41R mirrored with respect to the right reflector 31R.
  • the direction of light is the same. Since the direction of light emitted from the right virtual light incident part already meets the requirements of a larger left side widening angle of the vehicle light shape, the right light incident part 41R and the right reflecting part 31R set in this way are in phase. With the reflected light, it can also achieve a larger left side widening angle of the car light shape.
  • the positions of the right reflection part 31R and the right light incident part 41R in the primary optical element 20 can be set by the following methods: First, according to the left light shape of the vehicle light to be achieved For the side widening angle requirements, the multiple light incident portions 400 on the right side of the existing primary optical element 20 in FIG. 4 and the light source 10 matched with it are moved to the right to a suitable position, and the multiple light incidents that have been moved are moved to the right.
  • Section 400 is defined as the right side virtual light incident section.
  • the tilt angle of the right side virtual light incident section is adjusted so that the angle of the direction of light emitted by the right side virtual light incident section can meet the right widening angle of the vehicle light shape to be achieved. Claim.
  • the one of the plurality of right virtual light incidents that is closest to the middle of the primary optical element 20 is the innermost virtual light incident, and the innermost virtual light incident on the right is close to the primary optical element
  • the left side of the middle of 20 is provided with a reflection part that is close to the innermost virtual light incident part and extends straight forward and backward.
  • the reflection part is an edge reflection part 31 on the left side, which is the right reflection part 31R of the primary optical element 20.
  • the multiple right side virtual light incident parts are mirrored with the right reflection part 31R as the mirror surface to obtain multiple right side mirror light incident parts, and the multiple right side mirror light incident parts are the edge light incident parts on the right side. 41, that is, the right light incident portion 41R of the primary optical element 20 is obtained.
  • the left side virtual light incident portion 61L involved in the above process of installing the left side reflector 31L and the left light incident section 41L, and the right side virtual light incident section involved in the process of installing the right side reflector 31R and the right light incident section 41R All are the virtual light incident part 60, which is an intermediate part that exists in the intermediate link when the position is set. In order to facilitate the setting of the position of the edge reflection part 31 and the edge light incident part 41, there is no virtual input part in the final product of the primary optical element 20.
  • the light part 60 is a component.
  • the present application can increase the right side widening angle of the vehicle light shape formed by the vehicle lamp module by providing the left light incident portion 41L and the matching left reflection portion 31L, and by providing the right light incident portion 41R And the right reflector 31R matched with it can increase the left widening angle of the car light shape formed by the car lamp module; under the premise of realizing the same expansion angle, compared with the prior art, the most edge of the light In terms of the outward movement of the part 400, the left light incident part 41L and the right light incident part 41R in the present application move relatively inwardly, the left light incident part 41L is next to the left reflection part 31L, and the right light incident part 41L is next to the left reflection part 31L.
  • the light incident portion 41R is next to the right reflective portion 31R, and the left reflective portion 31L and the right reflective portion 31R are respectively provided at the left side and the right side of the primary optical element 20, so that the left side of the primary optical element 20 Both the face and the right face move inward relative to each other. Therefore, the present application can reduce the size of the primary optical element 20 in the left-right direction and the size of the circuit board while achieving the enlargement of the widening angle, thereby correspondingly reducing the overall size and occupied space of the lamp module, thereby reducing the size of the vehicle.
  • the production cost of the lamp module is 40°-90°, preferably 45°.
  • the optical axis of the light source 10 corresponding to each light incident portion 40 and the optical axis direction of the corresponding light incident portion 40 are the same; or, the optical axis directions of the light sources 10 are all the same, preferably both
  • the direction of the optical axis of the light source 10 located in the middle is consistent, so that multiple light sources 10 can be arranged on the same circuit board with a planar structure, thereby further reducing the production cost of the vehicle lamp module.
  • the focal length of the lens constituting the secondary optical element 50 is greater than or equal to 50 mm, which can improve the technical effect of the primary optical element 20, and the vehicle lamp module with a larger lens focal length also has the advantages of thin lens, good dispersion, and high illuminance.
  • the primary optical element body 30 has multiple implementation structures.
  • the edge reflection portion 31 also has multiple implementation structures. Based on the different implementation structures of the primary optical element body 30 and the edge reflection portion 31, Therefore, the vehicle lamp module has multiple preferred embodiments. The following provides two preferred embodiments of vehicle lamp modules.
  • the first preferred embodiment of the vehicle lamp module includes a plurality of light sources 10, a primary optical element 20, and a secondary optical element 50 arranged on the front side of the primary optical element 20.
  • the primary optical element 20 includes a primary optical element body 30 and a plurality of light incident portions 40 arranged at the rear end of the primary optical element body 30 and arranged left and right. Each light incident portion 40 corresponds to a light source 10, so there are multiple The light source 10 corresponds to a plurality of light incident parts 40 one-to-one.
  • the primary optical element body 30 is a transparent entity with a light-emitting surface 34 at the front end.
  • the primary optical element body 30 can be made of transparent materials such as glass, silica gel, or plastic.
  • Both the left side and the right side of the primary optical element body 30 are provided with side reflecting surfaces extending straight forward and backward.
  • the side reflecting surface on the left side constitutes the left reflecting portion 31L of the primary optical element body 30, and the right side
  • the side reflection surface on the surface constitutes the right reflection part 31R of the primary optical element body 30, and the left reflection part 31L and the right reflection part 31R are the edge reflection parts 31 in the primary optical element body 30.
  • the lower end surface of the primary optical element body 30 is the lower reflecting surface 35.
  • the plurality of light incident portions 40 have a left light incident portion 41L immediately on the right side of the left reflection portion 31L, a right light incident portion 41R immediately on the left side of the right reflection portion 31R, and a left side light incident portion.
  • the plurality of intermediate light incident portions 42 other than 41L and the right light incident portion 41R, the left light incident portion 41L and the right light incident portion 41R are the edge light incident portions 41 of the primary optical element 20.
  • a part of the light emitted from each intermediate light entrance portion 42 directly hits the light emitting surface 34 of the primary optical element body 30, and the other part hits the lower reflecting surface 35 of the primary optical element body 30 , Reflected by the lower reflecting surface 35 to the light exit surface 34 of the primary optical element body 30; part of the light emitted from the left light incident portion 41L hits the side reflecting surface on the left side of the primary optical element body 30 and is reflected by this side
  • the surface that is, the left reflective portion 31L
  • part of the right light incident portion 41R is incident on the side reflective surface on the right side of the primary optical element body 30, and is reflected to the primary optical element body by the side reflective surface (ie, the right reflective
  • the light-emitting surface 34 at the front end of the primary optical element body 30 is a backward concave arc surface to adapt to the object focal surface of the secondary optical element 50, so that the formed light shape is clearer.
  • the first preferred embodiment of the vehicle light module can be applied to the low-beam vehicle light module and can also be applied to the high-beam vehicle light module.
  • the lower edge of the light exit surface 34 is provided with a cutoff portion 36 for forming a low beam cutoff line, and the light passes through the cutoff portion 36 The 36 cutoff is then projected by the secondary optical element 50 to form a low beam cutoff line.
  • the cut-off portion may not be provided, or a cut-off portion may be provided on the upper edge of the light exit surface 34 to form a high-beam cut-off line.
  • the primary optical element main body 30 and the plurality of light incident parts 40 have an integrated structure or a split structure.
  • the second preferred embodiment of the vehicle lamp module includes a plurality of light sources 10, a primary optical element 20, and a secondary optical element 50 arranged on the front side of the primary optical element 20.
  • the primary optical element 20 includes a primary optical element body 30 and a plurality of light incident portions 40 arranged at the rear end of the primary optical element body 30 and arranged left and right. Each light incident portion 40 corresponds to a light source 10, so there are multiple
  • the light source 10 corresponds to a plurality of light incident parts 40 one-to-one.
  • the primary optical element body 30 includes a main reflector 32, and an edge reflector 33 arranged on the left and/or right edge of the main reflector 32. In the preferred embodiment 2 of the vehicle lamp module shown in FIG.
  • the edge reflector There are two plates 33, namely, a left reflector 33L located on the left edge of the main reflector 32, and a right reflector 33R located on the right edge of the main reflector 32.
  • the left reflector 33L constitutes a primary optical element.
  • the left reflection part 31L and the right reflection plate 33R of the main body 30 constitute the right reflection part 31R of the primary optical element body 30, and the left reflection part 31L and the right reflection part 31R are the edge reflection parts 31 in the primary optical element body 30 .
  • the plurality of light incident parts 40 have a left light incident part 41L immediately on the right side of the left reflector 33L, a right light incident part 41R immediately on the left of the right reflector 33R, and a left side light incident part.
  • the plurality of intermediate light incident portions 42 other than 41L and the right light incident portion 41R, the left light incident portion 41L and the right light incident portion 41R are the edge light incident portions 41 of the primary optical element 20.
  • the left reflector 33L and the right reflector 33R both extend straight back and forth and are perpendicular to the main reflector 32.
  • the right side of the left reflector 33L is the reflecting surface, and the left side of the right reflector 31R is the reflector.
  • the upper end surface of the main reflecting plate 32 is a reflecting surface, and the lower ends of the left reflecting plate 33L and the right reflecting plate 33R both extend downward to the upper end of the main reflecting plate 32.
  • a part of the light emitted from each intermediate light entrance portion 42 is directly emitted to the secondary optical element 50, and the other part is emitted to the main reflector 32, and is reflected by the main reflector 32 to the secondary optical element.
  • the preferred embodiment 2 of the module is that the primary optical element body 30 adopts a plate-shaped reflector structure, which can save materials and reduce costs.
  • the main reflector 32, the left reflector 33L, and the right reflector 33R have an integrated structure or a split structure. All three can be set as a plate-like structure made of plastic or metal.
  • the surface can be coated with a reflective coating, and the reflective coating is preferably an aluminum-plated surface.
  • the second preferred embodiment of the vehicle light module can be applied to the low-beam vehicle light module and can also be applied to the high-beam vehicle light module. When the second preferred embodiment of the vehicle light module is applied to the low beam vehicle light module, as shown in FIG.
  • the front edge of the main reflector 32 is a section of arc that is concave backward, and the section of the arc is provided with a At the cut-off portion 36 forming the low-beam cut-off line, the light is cut off by the cut-off portion 36 and then projected by the secondary optical element 50 to form the low-beam cut-off line.
  • the main reflector 32 is not provided with a cut-off portion.
  • the present invention effectively overcomes various shortcomings in the prior art and has a high industrial value.

Abstract

L'invention concerne un module de lampe de véhicule, comprenant une pluralité de sources de lumière (10) et un élément optique primaire (20). L'élément optique primaire (20) comprend un corps (30) d'élément optique primaire et une pluralité de parties incidentes à la lumière (40) qui sont disposées à une extrémité arrière du corps (30) d'élément optique primaire et sont agencées à gauche et à droite ; la pluralité de sources de lumière (10) sont en correspondance biunivoque avec la pluralité de parties incidentes à la lumière (40), le côté périphérique gauche et/ou le côté périphérique droit du corps d'élément optique primaire (20) comportent une partie de réflexion périphérique (31) ; la pluralité de parties incidentes à la lumière (40) a des parties incidentes à la lumière périphériques (41) situées sur les côtés gauches et/ou sur les côtés droits ; au moins une partie des rayons lumineux émis par les parties incidentes à la lumière périphériques (41) est réfléchie par la partie de réflexion périphérique (31) et puis est émise vers l'extérieur par l'élément optique primaire (20), de sorte que l'angle élargi du côté gauche et/ou du côté droit de la forme lumineuse de véhicule formée par le module de lampe de véhicule est accru, et que la taille de l'élément optique primaire (20) dans la direction du côté gauche est réduite.
PCT/CN2019/108985 2019-09-11 2019-09-29 Module de lampe de véhicule, lampe de véhicule, et véhicule WO2021046940A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN201910859006.7 2019-09-11
CN201921510250.4U CN210373267U (zh) 2019-09-11 2019-09-11 一种车灯模组、车灯及车辆
CN201910859006.7A CN110440217B (zh) 2019-09-11 一种车灯模组、车灯及车辆
CN201921510250.4 2019-09-11

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WO2021046940A1 true WO2021046940A1 (fr) 2021-03-18

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EP2607165A1 (fr) * 2011-12-19 2013-06-26 Valeo Vision Module d'éclairage comprenant au moins deux sources lumineuses installées de manière sensiblement orthogonale
CN103256564A (zh) * 2012-02-17 2013-08-21 汽车照明罗伊特林根有限公司 用于机动车灯的光导体装置
CN104296036A (zh) * 2013-07-18 2015-01-21 现代自动车株式会社 用于车辆的引导灯装置
CN105588050A (zh) * 2014-10-14 2016-05-18 中央大学 高对比度小体积的车灯装置
CN105822970A (zh) * 2015-01-08 2016-08-03 中央大学 适应性车头灯模组
CN106439672A (zh) * 2016-08-17 2017-02-22 上海小糸车灯有限公司 一种led光源车灯模组
CN107270211A (zh) * 2016-04-06 2017-10-20 株式会社小糸制作所 车辆用灯具
CN109519865A (zh) * 2019-01-03 2019-03-26 华域视觉科技(上海)有限公司 增加光型宽度的方法、辅助反射装置、led模组单元、车灯、汽车
CN110486688A (zh) * 2019-09-11 2019-11-22 华域视觉科技(上海)有限公司 一种车灯模组、车灯及车辆
CN210319819U (zh) * 2019-09-11 2020-04-14 华域视觉科技(上海)有限公司 一种车灯模组、车灯及车辆

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2607165A1 (fr) * 2011-12-19 2013-06-26 Valeo Vision Module d'éclairage comprenant au moins deux sources lumineuses installées de manière sensiblement orthogonale
CN103256564A (zh) * 2012-02-17 2013-08-21 汽车照明罗伊特林根有限公司 用于机动车灯的光导体装置
CN104296036A (zh) * 2013-07-18 2015-01-21 现代自动车株式会社 用于车辆的引导灯装置
CN105588050A (zh) * 2014-10-14 2016-05-18 中央大学 高对比度小体积的车灯装置
CN105822970A (zh) * 2015-01-08 2016-08-03 中央大学 适应性车头灯模组
CN107270211A (zh) * 2016-04-06 2017-10-20 株式会社小糸制作所 车辆用灯具
CN106439672A (zh) * 2016-08-17 2017-02-22 上海小糸车灯有限公司 一种led光源车灯模组
CN109519865A (zh) * 2019-01-03 2019-03-26 华域视觉科技(上海)有限公司 增加光型宽度的方法、辅助反射装置、led模组单元、车灯、汽车
CN110486688A (zh) * 2019-09-11 2019-11-22 华域视觉科技(上海)有限公司 一种车灯模组、车灯及车辆
CN210319819U (zh) * 2019-09-11 2020-04-14 华域视觉科技(上海)有限公司 一种车灯模组、车灯及车辆

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