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The cyclic loading is implemented in the FE model of the microstructure by developing ANSYS parametric design language (APDL) code to obtain the damage, failure pattern and fatigue life of the RVE.
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By developing a nonlinear microstructure-dependent third-order shear deformable beam model based on the most general form of Mindlin's strain gradient elasticity theory (SGT) and the von Kármán hypothesis, the size-dependent nonlinear mechanical behavior of a microbeam made of functionally graded materials (FGMs) are described.
The present study avoids this issue by developing three types of PU microstructures which are based on aliphatic diisocyanates and designed for transdermal drug delivery.
The microstructure is developed by isothermal heat treatment at temperatures as low as 125 350 °C and adapted steel grades typically contain high carbon contents to achieve sufficient depletion of the BS MS temperature range, and above 1.5 Si wt.% to suppress carbide formation during isothermal holding.
By controlling thermal processing procedures, a very different (I-phase+α-Mg) microstructure from the eutectic microstructure can be developed, expanding the microstructural options available for the structural composite materials, comprising the I-phase and α-Mg solid solution.
A 3D microstructure is developed based on the 3D location and size distribution of the pores by use of a computational procedure.
The manufacturing process for developing this unique microstructure was developed.
Posttraumatic soleus microstructure is dominated by the developing fibrosis.
By contrast, randomly selected ultrafine equiaxed and elongated β-grain microstructures developed by sintering at 1650 °C are fairly uniform.
A methodology is presented to tailor the microstructure of alloys for developing "materials by design".
We studied the role of VC precipitation in improving the shape memory effect (SME) of the as-solution treated Fe Mn Si-based shape memory alloys by examining the microstructures developed during aging and deFe Mn Si-basedg transhapeion electron memorycopy alloysectron channeling contrast imaging.
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