[[abstract]]A novel heat spreader was developed with its main cavity of copper tube, where copper mesh and support structure was served as the capillary constructions. The size of the support structure was 73 mm × 48.5 mm × 2.7 mm. Ceramic heater, 30 mm × 30 mm, was used as the heating source with the output power from 10 Watts to 130 Watts, and utilized the heat sink integrated with fan as the cooler. De-ion water was employed as the working fluid with the same filling charge. When heating power was 130 Watts, the temperature of heat source in heat spreader was lower than in copper plate about 4.3°C.[[journaltype]]國內[[incitationindex]]SCI[[booktype]]紙本[[countrycodes]]TW
Thermal spray coating processes have been employed to create a composite finned heat sink and a flat...
[[abstract]]In recent years, with the increasing heat dissipation of electrical appliances, efficien...
A two-phase heat spreader has been developed for cooling high heat flux sources in high-power lasers...
The vapour chamber is a two-phase heat transfer device that is able to effectively spread heat from ...
Thin, low-profile phase change thermal spreaders can provide cooling solutions for some of today's m...
The authors have developed a new type of heat spreader based on the integration of heat pipes direct...
The present study documents the optimal distribution of a limited amount of high thermal conductivit...
A new heat spreader that operates on a principle similar to heat pipes has been developed in Low Tem...
The thermal performance of passive vapor chamber heat spreaders can be improved by enhancing evapora...
This study proposes three composite wick structures (copper power or mesh sintered on grooved tube),...
Heat pipes with a wick material consisting of small diameter metal fibres of 12 μm are investigated....
Wicking and thermal characteristics of micropillared structures for use in passive heat spreader
Thermal spray coating processes have been employed to create either copper wicks or zinc skins of th...
The effect of material, thickness and the magnitude of heat generated by microcombustor on heat dist...
A novel asymmetric vapor chamber is developed in this study. In this vapor chamber, nanostructure is...
Thermal spray coating processes have been employed to create a composite finned heat sink and a flat...
[[abstract]]In recent years, with the increasing heat dissipation of electrical appliances, efficien...
A two-phase heat spreader has been developed for cooling high heat flux sources in high-power lasers...
The vapour chamber is a two-phase heat transfer device that is able to effectively spread heat from ...
Thin, low-profile phase change thermal spreaders can provide cooling solutions for some of today's m...
The authors have developed a new type of heat spreader based on the integration of heat pipes direct...
The present study documents the optimal distribution of a limited amount of high thermal conductivit...
A new heat spreader that operates on a principle similar to heat pipes has been developed in Low Tem...
The thermal performance of passive vapor chamber heat spreaders can be improved by enhancing evapora...
This study proposes three composite wick structures (copper power or mesh sintered on grooved tube),...
Heat pipes with a wick material consisting of small diameter metal fibres of 12 μm are investigated....
Wicking and thermal characteristics of micropillared structures for use in passive heat spreader
Thermal spray coating processes have been employed to create either copper wicks or zinc skins of th...
The effect of material, thickness and the magnitude of heat generated by microcombustor on heat dist...
A novel asymmetric vapor chamber is developed in this study. In this vapor chamber, nanostructure is...
Thermal spray coating processes have been employed to create a composite finned heat sink and a flat...
[[abstract]]In recent years, with the increasing heat dissipation of electrical appliances, efficien...
A two-phase heat spreader has been developed for cooling high heat flux sources in high-power lasers...