Theoretical Thermal Conductivity Design Scope of Noobed Materials in X Y Z Directions Based on Select Pitch-based Carbon Fibres

The chart below aims to display the theoretical X Y Z thermal conductivity design scope of Noobed Materials using select DIALEAD Pitch-based carbon fibres and generic PAN fibres.

Various Noobed Material configurations have been generated based on all possible permutations of K13916, K13C6U, K13D2U, and PAN (non-heat conducting type) fibres in the X, Y, and Z orientations.

The data points shown in the chart are only approx. 5% of all possible data points, but are indicative of the overall thermal conductivity design scope.

The given ratings of the thermal conductivities of the chosen fibres are: K13916 = 200 W/mK; K13C6U = 580 W/mK; K13D2U = 800 W/mK; and PAN = 0 W/mK (assumed)

It is presumed that a thermoset resin with thermal conductivity of 0 W/mK is used to manufacture the Noobed Composite Material.

The data points in the chart display X Y Z values with a 20% knock-down from their theoretical maximum values to factor in potential fibre breakages and handling/processing errors.

The chart below is interactive: it can be rotated, etc, and hovering over the points will display their X Y Z values.

The chart below is meant to serve as a tool to visualise and guide in conveying desired X Y Z thermal conductivity values of the Noobed Material. Based on desired values, Fureho can engineer and propose a suitable configuration to obtain or achieve close to the indicated values.

Other Pitch-based or PAN-based carbon fibre grades can be processed too, according to the requirements.