Thermal performance of an aluminum honeycomb wallboard
To improve the low thermal conductivity of the mPCMs and to achieve the required wall stiffness, aluminum honeycomb (25.4 mm thick; 8 mm core cell) was
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To improve the low thermal conductivity of the mPCMs and to achieve the required wall stiffness, aluminum honeycomb (25.4 mm thick; 8 mm core cell) was
The main part of heat dissipation channel is an aluminum honeycomb board embedded in three heat pipes. Therefore, the heat generated by the control
Modelling of the temperature distribution based on equivalent heat transfer theory and anisotropic characteristics of honeycomb core during milling of aluminum honeycomb
This study combines microencapsulated phase change materials (mPCMs) (core material: paraffin; melting points: 37 and 43 °C) and aluminum honeycomb boards (8 mm core
The purpose of this experiment is to determine a way to find the effective conductivity of an aluminum honeycomb panel when heat is moving through it. It is also determines how
This paper investigates the heat dissipation performance and structural response of two-dimensional cellular structures (based on triangular, square and honeycomb designs)
The effect of the structural parameters (fin spacing, fin width, fin thickness) of honeycomb fins on the heat dissipation performance of BTMS is discussed in detail. Moreover, the
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The testing rig was designed to measure thermal conductivity between the heat source and the heatsink. In order to eliminate any potential thermal dissipation and inconsistency,
Cao et al. added 3D printed aluminum honeycomb to Paraffin Wax/ EG/high density polyethylene, carbon fiber to enrich the thermal conductivity and mechanical properties
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By combining a bionic cooling channel with a honeycomb cold plate, the system enhances both heat dissipation and mass grouping. passive cooling, can provide improved temperature uniformity for battery modules in comparison to liquid cooling [19]. Paraffin-based organic phase change materials (PCMs) are regarded as the most
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The main part of heat dissipation channel is an aluminum honeycomb board embedded in three heat pipes. Therefore, the heat generated by the control object can be partly transferred to the PCM quickly, and the rest of it is lost to the outside environment through radiation or convection heat transfer. The thickness of the
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The result shows that the mass of the honeycomb heat sink is reduced by 37.1%, the surface area is increased by 47.8%, and the heat dissipation performance of the new copper-aluminum heat sink is
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Therefore, the melting rate of upper paraffin close to the heat plate is higher. Download: Download full-size image; Fig. 8. Temperature curves along the Z direction with the heat flux 7000 W/m 2 during heat storage process o (a) paraffin/aluminum foam composite PCM, (b) pure paraffin. Download: Download full-size image; Fig.