An analytic solution for the steady-state temperature distribution in an infinite conductive medium, containing non-conductive fiber with the cross-section of irregular shape formed by two circles, and subjected to remotely applied uniform heat flux is obtained. The temperature flux on the surface of the inhomogeneity is then determined as a function of the geometrical parameters. This result is used to calculate resistivity contribution tensor for the fiber and to evaluate effective conductive properties of a material containing multiple inhomogeneities of this shape
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
This study presents an exact general solution for steady-state conductive heat transfer in cylindric...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium,...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium,...
The overall thermal conductivity of composites involving cylindrical fibres of irregular shape is in...
The overall thermal conductivity of composites involving cylindrical fibres of irregular shape is in...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium ...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium ...
An ideal fiber composite is defined as one with parallel circular fibers forming a regular array. We...
The unidirectional stationary heat conduction in two-phase hollow cylinder is considered. The conduc...
Problems of two-dimensional steady-state heat conduction for composites with doubly periodic arrays ...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The distribution of the temperature and heat flux fields around a couple of unequal nonconductive ta...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
This study presents an exact general solution for steady-state conductive heat transfer in cylindric...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium,...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium,...
The overall thermal conductivity of composites involving cylindrical fibres of irregular shape is in...
The overall thermal conductivity of composites involving cylindrical fibres of irregular shape is in...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium ...
An analytic solution for the steady-state temperature distribution in an infinite conductive medium ...
An ideal fiber composite is defined as one with parallel circular fibers forming a regular array. We...
The unidirectional stationary heat conduction in two-phase hollow cylinder is considered. The conduc...
Problems of two-dimensional steady-state heat conduction for composites with doubly periodic arrays ...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The distribution of the temperature and heat flux fields around a couple of unequal nonconductive ta...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
The composite is made of a matrix and a fiber-reinforced material to form a non-homogeneous anisotro...
This study presents an exact general solution for steady-state conductive heat transfer in cylindric...