VEHICLE LIGHTING DEVICE WITH A SUPPORTING FRAME AND MANUFACTURING METHOD

DE602021038271T2Active Publication Date: 2025-09-10HELLA GMBH & CO KGAA
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Patent Information

Application Number
DE602021038271
Authority / Receiving Office
DE · DE
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-05-19
Publication Date
2025-09-10
Estimated Expiration
2041-05-19

AI Technical Summary

Technical Problem

Vehicle lighting devices using thermoplastic materials suffer from high thermal expansion coefficients leading to undesirable light distortion and limited design freedom, while metallic die-cast components restrict geometry options.

Method used

A support frame with a sandwich structure of metallic sheet members and plastic joints, providing a hybrid component with low thermal distortion, high mechanical rigidity, and flexible geometry, allowing integration into the vehicle body for stable light module positioning.

Benefits of technology

Ensures dimensionally stable and high-precision lighting functionality by absorbing forces and maintaining precise positioning of light modules relative to the vehicle body, while offering design flexibility and reduced installation space.

✦ Generated by Eureka AI based on patent content.
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Description

[0001] The present invention relates to a vehicle lighting device with a support frame and a method of manufacturing the support frame.PRIOR ART

[0002] In vehicle lighting devices, support frames usually serve as module frames for accommodating light modules and connecting them to a housing of the lighting device. The light modules include, for example, a light source with associated lighting components such as lens systems and / or reflectors, and the light modules together with the module frame are arranged in an interior space of the housing, which is closed at the front by a transparent cover pane. The lighting device is usually connected to the vehicle body of the vehicle via corresponding interfaces on the housing, for example to establish screw connections between the housing and a cross member of the vehicle body.

[0003] In the prior art, housings and module frames are typically made of thermoplastic materials. These materials have disadvantageously high thermal expansion coefficients, which can lead to undesirable impairments of the generated light impression during temperature changes in practical operation of the lighting device, for example to a shift of the cut-off line of a headlight projected onto the road. In particular, the components made of thermoplastic materials may show a remanent dimensional distortion after a plurality of temperature cycles. The alternative use of thermosetting plastics or also the use of metallic die-cast components causes undesirable restrictions in the design freedom with regard to the realisable component geometries.

[0004] The document DE 20 2016 101 155 U1 discloses a headlight for an automobile having a plastic housing and a light module disposed inside of the housing, a fixed, especially metallic holding device featuring outer mounting sections disposed outside of the housing to mount the headlights on the automobile and at least one inner mounting section for the light module.

[0005] The document EP 2 542 450 B1 discloses an energy absorber element for a vehicle component, comprising: a crush wall defining a deformable zone; a first support wall and a second support wall, the first and second support walls connecting to the crush wall to form a structure; and a connection mechanism for connecting the structure to a vehicle; the vehicle component being in particular a lighting component; at least one of the first support wall, a second support wall, and the crush wall comprising plastic; wherein the connection mechanism is a crushable connector. In an embodiment the energy absorber element is an energy absorber ring for a headlamp assembly.DISCLOSURE OF THE INVENTION

[0006] It is an object of the present invention to propose a vehicle lighting device, in particular a headlight, which has a robust design and enables a dimensionally stable, permanently low-distortion positioning of the enclosed light modules relative to the vehicle body.

[0007] This object is achieved by a lighting device as taught by claim 1 of the present invention. Advantageous embodiments of the invention are defined in the subclaims.

[0008] The invention discloses the technical teaching that the vehicle lighting device features at least one light module and at least one support frame, which features a sandwich structure of at least two metallic sheet members in parallel arrangement and at least one intermediate plastic joint member, which features form-locking joints with the sheet members, wherein the lighting device features a front cover and a back cover, wherein the front cover encloses the light module, and wherein the front cover is mounted on a front side of the support frame and the back cover is mounted on a back side of the support frame, and wherein the support frame is dedicated to be mounted on the vehicle.

[0009] The invention is based on the idea of creating the support frame as a hybrid component which combines low thermal distortion, high mechanical rigidity and high flexibility with regard to the component geometries that can be produced. The sandwich structure of the support frame has two or more metallic sheet members arranged parallel to each other, which are completely or at least partially embedded in the plastic joint member, forming positive, i.e., form-locking joints. The mechanical and thermal properties of the support frame are thus largely determined by the metallic sheet members, whereby the joint member has an additional stiffening effect. For further stiffening, beads can also be incorporated into the sheet members. Compared to monolithic support frames made of fibre-reinforced plastics in the state of the art, also a saving in installation space can be achieved.

[0010] The support frame according to the invention can be used not only to hold light modules inside the housing, but especially also to hold the housing itself on the outside, i.e., to connect the entire lighting device to the vehicle body. In particular, the support frame can be designed to be mechanically stable and rigid in such a way that a component of the vehicle body, for example a cross member, can be entirely substituted by the support frame. In this case, the support frame serves as the central interface for attaching the lighting device to the vehicle body and constitutes a structural component of the body. The lighting device is then not attached to a cross member of the vehicle body via the housing, as is usual in the prior art, but it is structurally integrated into the body by means of the support frame according to the invention, which is attached, for example, to longitudinal members of the vehicle body. According to the invention, the support frame is designed in such a way that it is sufficiently strong in terms of its stiffness, i.e., its resistance to stretching, shearing, bending or torsional loads, to act as a structural component of the vehicle body and to absorb forces and / or moments acting during driving of the vehicle without warpage or damage.

[0011] The mounting of the housing and / or of the light modules the rigid and permanently low-distortion support frame, which is preferably directly connected to the body of the motor vehicle, results in a particularly dimensionally accurate and stable positioning of the light module relative to the vehicle body, thus ensuring high-resolution and high-precision lighting functionality during operation of the lighting device.

[0012] The sandwich structure of the inventive support frame may comprise more than two sheet members in parallel arrangement, e.g., three or four sheet members, which are positively connected by an appropriate number of intermediate plastic joint members. The joint members may enclose essentially the entire sheet members or two adjacent sheet members are connected via several joint members each covering sections of the sheet members. The form-locking joints between sheet members and joint members may for instance be established by injection-moulding of a plastic component forming the joint member around the sheet members or through openings in the sheet members. In addition or alternatively, the surfaces of the sheet members may feature micro-cavities or undercuts to be filled with the plastic component forming positive joints.

[0013] As a particular embodiment of the support frame according to the invention, at least one of the sheet members consists of several sheet elements, which are overlapping in sections, wherein each sheet element features a form-locking joint with the joint member. This modular approach enables efficient construction of complex geometries of the sheet members, which may otherwise be inaccessible by means of punching and / or bending single blanks.

[0014] In particular, the support frame features mounting means for mounting the light module and / or mounting means for mounting the support frame on the vehicle, wherein the mounting means are sections of the sheet members and / or of the joint member. Geometries of mounting means that cannot be produced by sheet metal forming on the sheet members, such as fastening lugs or screw domes for fastening, can be formed as sections of the plastic joint member. The associated short lever arms generate only very small dimensional deviation effects and low stiffness losses of the overall support frame. Appropriate mounting means can also be provided by individual sheet elements of the sheet members.

[0015] In a beneficial embodiment of the support frame, the sheet members feature a U-profile or a L-profile at least in sections. The individual sheets are oriented to each other in such a way that the support frame is formed with a torsionally stiff H-profile or T-profile.

[0016] Advantageously, the sheet members feature an Al-Mg alloy and / or the joint member features an injection-moulded thermoplastic polymer. Al-Mg alloys offer lightweight properties and good weldability. Other sheet metals, e.g., steel grades offering suitable mechanical properties can be used alternatively.

[0017] Preferably, at least the back cover is detachably mounted, i.e., the back cover can be disassembled from the lighting device, e.g., if the light module needs to be serviced or replaced, and the back cover can be remounted on the support frame afterwards. For example, a snap fastener can form a suitable connecting means for this purpose.

[0018] Moreover, the invention concerns a method of manufacturing a support frame for a vehicle lighting device according to one of the aforementioned embodiments, comprising at least the following steps without a fixed order: providing the at least two metallic sheet members by punching and / or bending appropriate blanks, injection-moulding of a plastic component onto at least a first sheet member forming at least a first section of the joint member with form-locking joints with the first sheet member, and joining the second sheet member in parallel arrangement to the first sheet member forming the sandwich structure with the intermediate joint member, wherein joining of the second sheet member is performed by ∘ injection-moulding of a plastic component onto the second sheet member forming a second section of the joint member with form-locking joints with the second sheet member, and ∘ welding together the first section and the second section of the joint member.

[0019] Preferably, the first and the second section of the joint member feature the same shape and size, so that the welding plane represents the central symmetry plane of the support frame and possible warpage of the sheet members due to the volumetric shrinkage of the injection-moulded joint member can be mutually compensated.

[0020] Especially, providing of at least one of the sheet members can be performed by arranging several sheet elements overlapping in sections. In practice, the sheet elements are appropriately arranged into the moulding tool and afterwards overmoulded by the plastic component forming the positively locking joint member.PREFERRED EMBODIMENTS

[0021] Additional details, characteristics and advantages of the object of the invention are disclosed in the following description of the respective figures - which in an exemplary fashion - shows preferred embodiments of the support frame and the vehicle lighting device according to the invention. Figs. 1a - dperspective views to illustrate the method of manufacturing a first embodiment of the support frame, Figs. 2a - dperspective views to illustrate the method of manufacturing a second embodiment of the support frame, Fig. 3a, bperspective partial views of the lighting device, and Fig. 3ca cross-sectional view of the lighting device.

[0022] Figs. 1a - d show perspective views to illustrate the method of manufacturing a first embodiment of the support frame 10, the sheet members of which consist of several sheet elements 1a, 1b, 2a, 2b, which are overlapping in sections. The individual sheet elements 1a, 1b, 2a, 2b are exemplary punched metal parts partially reinforced by beads and with numerous holes for forming positive joints with the sections 3a, 3b of the joint member. The lugs with holes are dedicated to serve as mounting means.

[0023] The initial arrangement of the sheet elements 1a, 1b with partial overlap constituting the first sheet member is shown in Figs. 1a in top view and in Fig. 1b in side view. Fig. 1c shows the state after injection-moulding of a plastic component onto the first sheet member forming the first section 3a of the joint member with form-locking joints with the first sheet member, i.e., with each sheet element 1a, 1b. The matching second half of the support frame is manufactured likewise from the sheet members 2a, 2b and the injection-moulded second section 3b of the joint member. Afterwards the first section 3a and the second section 3b of the joint member are welded together in the welding plane 3c, for instance by means of laser welding or ultrasonic welding. Preferably, the dimensions of the first section 3a and the second section 3b are identical, i.e., the welding plane 3c represents the central plane of the support frame 10, so that warpage from volumetric shrinkage of the plastic component forming the first section 3a and the second section 3b can be mutually compensated.

[0024] Figs. 2a - d show perspective views to illustrate the method of manufacturing a second embodiment of the support frame 10, the sheet members of which consist of several sheet elements 1a, 1b, 2a, 2b, which are overlapping in sections. The individual sheet elements 1a, 1b, 2a, 2b are exemplary punched metal parts partially reinforced by beads and with numerous holes for forming positive joints with the sections 3a, 3b of the joint member. The lugs with holes are dedicated to serve as mounting means 4a.

[0025] The initial arrangement of the sheet elements 1a, 1b with partial overlap constituting the first sheet member is shown in Figs. 2a in top view. Fig. 2b shows the state after injection-moulding of a plastic component onto the first sheet member forming the first section 3a of the joint member with form-locking joints with the first sheet member, i.e., with each sheet element 1a, 1b. The first section 3a of the joint member features the mounting means 4c in form of a gutter-like receptacle for insertion of a housing. The matching second half of the support frame 10 is manufactured likewise from the sheet members 2a, 2b and the injection-moulded second section 3b of the joint member. Afterwards the first section 3a and the second section 3b of the joint member are welded together in the welding plane 3c.

[0026] Fig. 3a and Fig. 3b show perspective partial views and Fig. 3c shows a cross-sectional view of a related embodiment of the vehicle lighting device 100. In Fig. 3b some sections of the support frame 10 are hidden for the purpose of clarity. The lighting device 100 features a front cover 21 and a back cover 22, wherein the front cover 21 encloses the light module 30, and wherein the front cover 21 and the light module 30 are mounted on a front side of the support frame 10, and wherein the back cover 22 is mounted on a back side of the support frame 10, and wherein the support frame 10 is dedicated to be mounted on the vehicle.

[0027] The joint member 3 features the channelled, gutter-like mounting means 4c as receptacle on the front side for the edge of the front cover 21 as well as the collar-like mounting means 4d for the back cover 22. The joints between the joint member 3 and the covers 21, 22 can exemplarily be reinforced by a glue.

[0028] The present invention is not limited by the embodiments described above, which are represented as examples only and can be modified in various ways within the scope of protection defined by the appending patent claims.List of Numerals

[0029] 100vehicle lighting device 10support frame 1, 2sheet member 1a, 1b, 2a, 2bsheet element 3joint member 3a, 3bsection of joint member 3cwelding plane 4a, 4c-4emounting means housing 21front cover 22back cover 30light module

Claims

1. Vehicle lighting device (100) featuring at least one light module (30) and at least one support frame (10), which features a sandwich structure of at least two metallic sheet members (1, 2) in parallel arrangement and at least one intermediate plastic joint member (3), which features form-locking joints with the sheet members (1, 2), wherein the lighting device (100) features a front cover (21) and a back cover (22), wherein the front cover (21) encloses the light module (30), and wherein the front cover (21) is mounted on a front side of the support frame (10) and the back cover (22) is mounted on a back side of the support frame (10), and wherein the support frame (10) is dedicated to be mounted on the vehicle.

2. Vehicle lighting device (100) according to claim 1, characterised in that the back cover (22) is detachably mounted.

3. Vehicle lighting device (100) according to claim 1 or 2, characterised in that at least one of the sheet members (1, 2) of the support frame (10) consists of several sheet elements (1a, 1b, 2a, 2b), which are overlapping in sections, wherein each sheet element (1a, 1b, 2a, 2b) features a form-locking joint with the joint member (3).

4. Vehicle lighting device (100) according to one of the previous claims, characterised in that the support frame (10) features mounting means (4a, 4c, 4d) for mounting the light module (30) on the support frame (10) and / or mounting means (4e) for mounting the support frame (10) on the vehicle, wherein the mounting means (4a, 4c, 4d, 4e) are sections of the sheet members (1, 2) and / or of the joint member (3).

5. Vehicle lighting device (100) according to one of the previous claims, characterised in that the sheet members (1, 2) of the support frame (10) feature a U-profile or a L-profile at least in sections.

6. Vehicle lighting device (100) according to one of the previous claims, characterised in that the sheet members (1, 2) of the support frame (10) feature an Al-Mg alloy and / or the joint member (3) features an injection-moulded thermoplastic polymer.

7. Method of manufacturing a support frame (10) for a vehicle lighting device (100) according to one of the previous claims, comprising at least the following steps without a fixed order: - providing the at least two metallic sheet members (1, 2) by punching and / or bending appropriate blanks, - injection-moulding of a plastic component onto at least a first sheet member (1) forming at least a first section (3a) of the joint member (3) with form-locking joints with the first sheet member (1), and - joining the second sheet member (2) in parallel arrangement to the first sheet member (1) forming the sandwich structure with the intermediate joint member (3), wherein joining of the second sheet member (2) is performed by ∘ injection-moulding of a plastic component onto the second sheet member (2) forming a second section (3b) of the joint member (3) with form-locking joints with the second sheet member (2), and ∘ welding together the first section (3a) and the second section (3b) of the joint member (3).

8. Method according to claim 7, characterised in that providing of at least one of the sheet members (1, 2) is performed by arranging several sheet elements (1a, 1b, 2a, 2b) overlapping in sections.