Graphene heat-dissipating coating (GNHC) of 0.6 wt % GN concentration is utilized to promote the cooling performance of automotive light-emitting diode (LED) lamps. Three cases are studied as follows: Case 0 is the original automotive LED lamp as the baseline. Case 1 is to apply GNHC to reduce the thermal resistance of the junction surfaces between the components of automotive LED lamps. The aluminum fin radiator of Case 1 is further coated with GNHC on the surface that becomes Case 2. The spectrum, illuminance, power consumption, and surface temperature are measured at different ambient temperatures (Ta) to fully evaluate the feasibility of applying GNHC to improve cooling performance and the impacts on the related characteristics of autom...
The major causes of electronic failure are four major factors cause contribute to the failure rate o...
Light-emitting diode (LED)-based automotive lighting systems pose unique challenges, such as dual-si...
LED lamps are characterized by high energy efficiency, high luminance, and long lifespans. However, ...
An effective passive two-phase light-emitting diode (LED) cooling system using thermally cured graph...
With the development of thin and high-power electronic devices, heat dissipation has become an impor...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
DATA AVAILABILITY : Data will be made available on request.In this paper, brushing technique was use...
Light Emitting Diode (LED) is a new kind of light source that is quickly being used into automotive ...
Electric devices have evolved to become smaller, more multifunctional, and increasingly integrated. ...
Metal coating of 3D printed polymers is an attractive proposition for thermal dissipation of light e...
The invention of LED lighting system has drastically revolutionized the illumination industry. LED l...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
A simple method is proposed to measure the heat dissipation of LEDs and fluorescent lamps in an open...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
The authors offer a new design in support of efficient heat dissipation for light emitting diodes (L...
The major causes of electronic failure are four major factors cause contribute to the failure rate o...
Light-emitting diode (LED)-based automotive lighting systems pose unique challenges, such as dual-si...
LED lamps are characterized by high energy efficiency, high luminance, and long lifespans. However, ...
An effective passive two-phase light-emitting diode (LED) cooling system using thermally cured graph...
With the development of thin and high-power electronic devices, heat dissipation has become an impor...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
DATA AVAILABILITY : Data will be made available on request.In this paper, brushing technique was use...
Light Emitting Diode (LED) is a new kind of light source that is quickly being used into automotive ...
Electric devices have evolved to become smaller, more multifunctional, and increasingly integrated. ...
Metal coating of 3D printed polymers is an attractive proposition for thermal dissipation of light e...
The invention of LED lighting system has drastically revolutionized the illumination industry. LED l...
Due to copyright restrictions, the access to the full text of this article is only available via sub...
A simple method is proposed to measure the heat dissipation of LEDs and fluorescent lamps in an open...
Due to its atomic structure with sp2 hybrid orbitals and unique electronic properties, graphene has ...
The authors offer a new design in support of efficient heat dissipation for light emitting diodes (L...
The major causes of electronic failure are four major factors cause contribute to the failure rate o...
Light-emitting diode (LED)-based automotive lighting systems pose unique challenges, such as dual-si...
LED lamps are characterized by high energy efficiency, high luminance, and long lifespans. However, ...