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However, the transformation proceeds very inhomogeneously and results in a mixed microstructure consisting of transformed and untransformed regions.
The transformation proceeds beyond the stress plateau region and extends until martensite yielding occurs.
It is found that the characteristic of the transformation varies as the transformation proceeds.
The transformation proceeds despite the fact that the stresses are too low according to the strain/interface energy model.
It has been found that during the cyclic phase transformations the transformation proceeds via the migration of existing austenite ferrite interfaces.
While most features are in agreement with a first-order transformation, the transformation proceeds continuously to lower temperatures, an effect which can be explained by the constraint from the substrate.
Similar(51)
The [112] orientation was chosen to produce two variant formations and in this case, the transformation proceeded over an ascending stress strain curve compared to the nearly plateau response for the [148] case.
Furthermore, for the drawing at a constant draw rate, the transformation proceeded with DR most efficiently for the tensile draw at a Td around 140 °C, although the draw stress increased with decreasing the Td.
The transformations proceeded with high levels of chirality transfer.
The catalytic mechanism of this transformation proceeds through initial binding of ATP to the purine binding site (P-site) followed by metal mediated cyclization with loss of pyrophosphate.
Above the peritectic temperature the phase transformation proceeds via the LFM mechanism.
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