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The results were expressed as a relative density.
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After disintegration, the mica glass-ceramic powder can be sintered at low temperatures of 800 950 °C, and a relative density as high as 90% can be obtained.
The bulk B4C TiB2 ceramic sintered from the as-prepared composite powders had a relative density of 96% with ultrafine microstructures.
A finite element model of the direct powder forging process has been established in DEFORM and validated by the comparisons of experimental with simulation results of load variation with stroke as well as relative density distribution.
For the vYB-YAlB14 sample, relative density was 82 % even for the lower SPS sintering temperature at 1,673 K and almost as same relative density as YAlB14 sample sintered at 1,823 K.
The powder compact was considered as a continuum, and a linear elasticity law as a function of relative density was then used to express the elastic behavior of the powders.
Finally, we calculated the density of a tree species as (relative density of a tree species/100) × tree density.
A Drucker‐Prager/cap constitutive model, where the elastic and plastic model parameters are expressed as a function of relative density (RD), was presented in a companion article17 together with experimental calibration procedures.
This paper presents the results of a study of the elastic behavior of open-cell foams as a function of relative density and the size of the interconnected, spherical pores.
Results are presented in terms of the charge-induced actuation strain and work density as a function of relative density, ligament size and architectural morphology.
Fracture toughness of homogenous foams and functionally graded foams for various cases are presented as a function of relative density.
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