The transient electrothermal technique has been shown to be an important method for the thermal characterization of fine fibers. However, this study shows that the accuracy of this method hinges on the proper consideration of several sample parameters including the initial electrical resistance and the emissivity of the sample. Such consideration is verified through measurement of platinum samples with various lengths. A multi-level heating scheme is proposed to mitigate the high sensitivity to the initial sample electrical resistance resulting in a demonstrated precision uncertainty of \u3c3% Using a recently expanded thermal model accounting for heretofore neglected heat losses, the emissivity of the sample may be measured simultaneously ...
The development of suitable heat-resistant materials and appropriate thermal structure design for a ...
The inhomogeneity of the resistance of conducting polypyrrole-coated nylon–Lycra and polyester...
A sample holder for the measurement of the low-temperature thermal conductivity of very thin samples...
The transient electrothermal technique is a powerful tool to obtain thermal properties of fine fiber...
In a previous work, a complete model has been presented for the thermal property characterization of...
The 3 omega method is one of few reliable measurement techniques for thermal characterization of mic...
Thin fibers are prevalent in many engineering materials. Measuring how well heat transfers in such s...
Abstract. Because of the small size and the fragility of ceramic fibres, noncontact methods are high...
In this paper, a new short-hot-wire method for measuring thermal coductivity of a fine fiber is prop...
International audienceA device for fibers strand axial thermal conductivity measurement has been des...
International audienceAn experimental setup for 3 method with a constant current source and two diff...
Thermal conductivity in the x, y and z-directions was measured on a pultruded profile that was manuf...
Radiation heat transfer is found to be the dominant mode of heat transfer at temperatures higher tha...
In this paper, a transient technique is developed to characterize the thermophysical properties of o...
Effective thermal conductivity is generally recognized as the intrinsic factor to reveal the ther...
The development of suitable heat-resistant materials and appropriate thermal structure design for a ...
The inhomogeneity of the resistance of conducting polypyrrole-coated nylon–Lycra and polyester...
A sample holder for the measurement of the low-temperature thermal conductivity of very thin samples...
The transient electrothermal technique is a powerful tool to obtain thermal properties of fine fiber...
In a previous work, a complete model has been presented for the thermal property characterization of...
The 3 omega method is one of few reliable measurement techniques for thermal characterization of mic...
Thin fibers are prevalent in many engineering materials. Measuring how well heat transfers in such s...
Abstract. Because of the small size and the fragility of ceramic fibres, noncontact methods are high...
In this paper, a new short-hot-wire method for measuring thermal coductivity of a fine fiber is prop...
International audienceA device for fibers strand axial thermal conductivity measurement has been des...
International audienceAn experimental setup for 3 method with a constant current source and two diff...
Thermal conductivity in the x, y and z-directions was measured on a pultruded profile that was manuf...
Radiation heat transfer is found to be the dominant mode of heat transfer at temperatures higher tha...
In this paper, a transient technique is developed to characterize the thermophysical properties of o...
Effective thermal conductivity is generally recognized as the intrinsic factor to reveal the ther...
The development of suitable heat-resistant materials and appropriate thermal structure design for a ...
The inhomogeneity of the resistance of conducting polypyrrole-coated nylon–Lycra and polyester...
A sample holder for the measurement of the low-temperature thermal conductivity of very thin samples...