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Heat treatment of the Cu-mould cast samples resulted in recovery of the equilibrium CuTi2 phase.
Cu-mould cast samples of the alloy Ti60Cu14Ni12Sn4Ta10 have a composite microstructure of micron scale β-Ti dendrites in a nanoscale binary eutectic matrix.
Injection moulded samples were analysed with dynamic mechanical thermal analysis.
Deformation induces conformational change in the injection moulded samples.
Besides the electrical conductivity of vibration injection moulded samples are a little higher than those of the compression moulded samples.
The (040) peak of α-phase of iPP was enhanced for nucleated injection moulded samples.
Compared with conventional injection moulded samples, there was no loss of mechanical properties.
For the injection moulded samples the correlation function is used to derive local orientation factors.
On injection moulded samples the tensile properties at RT were determined.
Scanning electron microscopy indicated the different morphologies of injection moulded samples at different locations in the mould.
The particles are elongated in the skin region of the injection moulded samples and well aligned to the melt flow.
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