The present invention generally relates to a vehicle lighting device, and more particularly, to a sealed headlamp assembly applicable to off-road utility vehicles.
Lighting devices are an integral part of automotive vehicles. And such lighting devices may represent various types such as headlamps, tail lamps, signal lamps, and the like, which may be used for different functions of the automotive vehicle. Different types of lighting devices are assembled in such a way to perform different lighting functions. For example, headlamps may include different components such as a light source, a reflector, a heatsink, and the like assembled inside a housing in order to provide a light output that enables a driver or vehicle operators with clear visibility of objects along the road or driven pathways. Headlamp assemblies have continuously evolved over years and have undergone major changes to meet the requirements for various types of automobiles such as passenger vehicles, trucks, off-road utility vehicles, and the like. An off-road utility vehicle is one that is designed to work in alternate terrains where roads may not exist or on less than ideal road conditions. In addition, off road utility vehicles are designed to function in difficult weather conditions such as extreme heat, rain, snow, wind, dust and the like.
Conventionally, headlamps for an off-road utility vehicle is similar to a consumer vehicle wherein the heatsink may be placed inside the housing. However, the presence of the heatsink placement inside the headlamp housing typically increases cross sectional housing areas along with affecting increased weight for off-road utility vehicles. In addition, the presence of heatsink fins inside a housing increases the empty space volume inside the housing, which is an undesirable factor for off-road utility vehicles. As an off-road utility vehicle operates in extreme weather or environmental conditions like rain, water, dust, moisture and the like, these environmental elements may become trapped within the housing's empty space to promote or result in corrosion, sub-optimal performance, and reduced headlamp life. Furthermore, a large housing is required to accommodate an interior heatsink that results in increased manufacturing costs. In addition, the current state of requiring a larger number of fastening hardware and a more complex sealing mechanism to ensure reliable sealing has an effect of increasing headlamp assembly times and working staff costs.
The “background” described herein is for purposes of presenting a general context of the disclosure. Work development efforts of the presently named inventors, to the extent it is described in this background section, as well as embodiments of the description (which may not otherwise qualify as conventional art at the time of filing) are neither expressly nor impliedly admitted as prior art against the present disclosure.
The present invention is directed to improved lighting devices for off-road utility vehicles that address at least one or more of the described issues mentioned previously. It is believed that one potential benefit of the present invention over the prior art is that the inventive lighting device is constructed and configured in such a way that the heatsink is disposed outside the lighting device's housing. An innovative arrangement that results in a housing's area space reduction that captures additional empty space due to containment of the presented heatsink within the housing that can include a heatsink subassembly. Moreover, the present invention provides the benefit of a more simplified fastening mechanism to seal the housing thereby reducing the required assembly time of the lighting device. Furthermore, an additional objective of the present invention facilitates improvements to protect against moisture, dust, environmental contaminants and the like on the lighting device assembly by completely sealing the housing space while eliminating empty space inside. The present invention also minimizes or reduces vibrational effects that occur when an off-road utility vehicle operates on harsh road or terrain conditions that adversely affect the lighting device. Thus, lighting device efficiency and longevity is increased when the inventive concept is applied on off-road utility vehicles.
Accordingly pursuant to one embodiment of the present invention, a contemplated lighting device arrangement for off-road vehicles includes: a light source for producing a light beam; a housing enclosure configured to house the light source, wherein the housing enclosure includes a front portion and a rear portion disposed opposite to the front portion; and a heatsink assembled on an outer surface of the rear portion by a fastening system that is configured to transfer heat generated by the light source, wherein the fastening system includes a sealing member and at least one fastener for securing the heatsink to the housing enclosure such that the sealing member is positioned between the heatsink and the housing enclosure.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the fastener is configured to be interfaced in conductive-thermal contact and fastened through the heatsink and the sealing member to secure the heatsink with the housing enclosure to produce a press-fitted compression function of a unitarily formed sealing member.
Accordingly, pursuant to another embodiment of the present invention, the lighting device can further include a transparent cover attached to the front portion of the housing enclosure.
The invention can be further characterized by one or any combination of the features described herein, such as wherein at least a part of the heatsink is in thermal contact with the light source.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the fastener is at least one of a mechanical structural means or an intermediate insert. And fasteners by way of example can include but are not limited to screws, bolts, rivets, toggles, anchors, nuts, spring locks, mechanical connectors, welds or any combinational arrangement thereof or any suitable means of attachment.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the sealing member is formed or manufactured from one or more of polymeric, elastomeric, rubber-like or silica material.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the light source is a light emitting diode (LED) or any alternately suitable luminous light source.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the fastening system further comprises a protection member configured to protect the fastener.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the heatsink comprises a plurality of fins arranged alongside or in parallel to one another.
The invention can be further characterized by any one of a combination of the features described herein, such as wherein the plurality of fins are arranged in a vertical plane that is configured to connect with the sealing member.
The invention can be further characterized by any one or any combination of the features described herein, such as the lighting device further includes a vent disposed at the rear portion of the housing enclosure.
Accordingly, pursuant to another embodiment of the present invention, a method of assembling a lighting device for an off-road utility vehicle is contemplated where the method includes: providing a light source for producing a light beam; providing a housing enclosure configured to house the light source, wherein the housing enclosure includes a front portion and a rear portion disposed opposite to the front portion; assembling a heatsink on an outer surface of the rear portion by a fastening system, the heatsink being configured to transfer heat generated by the light source, wherein the fastening system includes a sealing member and at least one fastener for securing the heatsink to the housing enclosure such that the sealing member is assembled between the heatsink and the housing enclosure. The fastening system further promotes a press-fitted compression function of a unitary formed, curvilinear-shaped sealing member within the lighting device's housing enclosure.
The invention can be further characterized by one or any combination of the features described herein, such as the fastener being configured to interface through conductive-thermal contact and be fastened through the heatsink and the sealing member to secure the heatsink in place with the housing enclosure.
Accordingly pursuant to another embodiment of the present invention, the method can further include attaching a transparent cover to the front portion of the housing enclosure.
The invention can be further characterized by any one of a combination of the features described herein, such as wherein the heatsink comprises a plurality of fins arranged alongside or in parallel to one another.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the plurality of fins are arranged in a vertical plane that is configured to connect with the sealing member.
The invention can be further characterized by one or any combination of the features described herein, such as wherein at least a part of the heatsink is in thermal contact with the light source.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the fastening system further comprises a protection member configured to protect the fastener.
Accordingly, pursuant to another embodiment of the present invention, the method can further include disposing a vent at the rear portion of the housing enclosure.
The invention can be further characterized by one or any combination of the features described herein, such as wherein the sealing member is made by using polymeric, elastomeric, rubberized or silica material.
It should be appreciated that the above referenced embodiments and examples are non-limiting, as other inventive embodiments exist within the present invention, as is shown and described herein.
To further provide a more encompassing description and a better understanding of the invention, a set of drawings is provided. The drawings form an integral part of the description and illustrate the various embodiments of the invention, which should not be construed as restricting the scope of the invention but only as examples of how the invention can be carried out. The drawings include the following characteristics:
The present invention relates to an improved lighting device for off-road utility vehicles. The lighting device is configured such that empty space is minimized inside the lighting device's housing. Also, the lighting device is capably adapted to withstand induced vibrations that occur from harsh road and off-road utility vehicle operating conditions. The inventive concept of the lighting device's arrangement ensures a water-tight enclosure thereby protecting associated lighting components from moisture and contamination. Furthermore, another objective is achieved with a reduction of the required number of components for enabling a sealed lighting device enclosure that reduces component costs and assembly times. Moreover, through the present invention's implementation, the inventive concept dissipates light source heat generation with a novel assembly arrangement without requiring the heatsink being containably restricted to just within the housing. Thus, the inventive concept associated with this lighting device arrangement achieves advantages of size reduction and extended service life from improved heat dissipation by adoption of a novel structural assembly arrangement.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this technology belongs.
In block 410, provide a light source for producing a light beam. In block 420, provide a housing enclosure that is configured to contain light sources wherein the housing enclosure includes a front portion and a rear portion disposed opposite to the front portion. In block 430, assemble the heatsink on an outer surface of the rear portion by a fastening system such that the heatsink is configured to transfer heat that's generated by light sources, wherein the fastening system includes a sealing member and at least one fastener for securing the heatsink to the housing enclosure such that the sealing member is assembled between the heatsink and the housing enclosure.
In block 432, the fastening system is configured to secure (through the heatsink and the sealing member) the heatsink with the housing enclosure. In block 434, attach the transparent cover to the front portion of the housing enclosure. In block 436, arrange the plurality of fins of the heatsink alongside one another such that arranging the plurality of fins of the heatsink is placed in parallel or closely arranged to one another. In block 438, arrange the plurality of fins in a vertical plane that is configured to connect with the sealing member.
The method 400 reduces assembly times for the lighting device in a factory since the fastening system is simplified. Therefore, the manufacturing costs are reduced in addition to enabling the lighting device to reach markets from the factory at reduced time intervals.
Although the present disclosure provides references to figures, all embodiments shown in the figures are intended to explain preferred embodiments of the present invention by way of example rather than being intended to limit the present invention. Preferred embodiments of the present invention have been disclosed. However, it should be apparent to a person of ordinary skill in the art that certain modifications would come within the teachings of this invention and that various changes or modifications can be made in the present disclosure without departing from the principles and spirit of the disclosure, which are intended to be covered by the present invention as long as these changes or modifications fall within the scope defined in the claims and their equivalents.
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Number | Date | Country |
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206191286 | May 2017 | CN |
113375122 | Sep 2021 | CN |
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Search English translation of CN 113375122 A (Year: 2021). |
Search English translation of CN-206191286-U (Year: 2017). |
Number | Date | Country | |
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20230392767 A1 | Dec 2023 | US |