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The thermal transformation started with neck formation between adjacent particles (Fig. 1, center).
W-Ni nanoparticles are spherical, and parts of them make aggregates by sintering neck formation.
Neck formation and particles rearrangement have been observed in loose Cu powder.
This initial stage sintering or sticking occurs by viscous neck formation in supercooled melts (high temperature equivalent of glass) and by diffusive neck formation in crystalline material (Frenkel 1945).
The increase of PEI concentration increased glass transition temperature and eliminated the neck formation while decreasing crystallizability.
On the other hand, the neck formation between particles is clearly observed only in the SSRS sample.
Similar(14)
Based on these results, a three-stage mechanism for semi-solid failure is proposed which includes the effects of liquid flow and micro-neck formation.
The latter allows to investigate the interaction between inertia and strain rate sensitivity on necking formation.
However, it was suspected that the trunnion failures were due to a combination of patient, surgical, and component factors such as comorbidities, trunnion composition, skirted necks, formation of heterotopic ossification, and component damage during insertion.
On the basis of the SEM images, we proposed a simple structural model for explaining the necking formation in addition to the molecular weight and the cross-sectional shape dependences of the natural draw ratio.
The sintering process of nanoparticles with similar size (diameter) follows a neck-formation mechanism.
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