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The material systems were characterized by agarose gel electrophoresis, atomic force microscopy, and dynamic light scattering.
These material systems were exposed to 60 °C/60% RH for 3600 h.
The material systems were characterized by agarose gel electrophoresis, zeta-potentialmeter, atomic force microscopy, and dynamic light scattering.
The sintering properties and interfacial diffusions of the material systems were characterized using optical microscopy, electron microscopy and Energy Dispersive Spectrometer (EDS) element mapping.
Two different composite material systems were designed and studied i.e., basalt fiber/vinyl ester composite (non-layered) and the other is PTFE (10 wt%) blended basalt fiber/vinyl ester composite (layered).
Several candidate adhesive and patch material systems were investigated including two-part adhesive epoxy resin and dry fabric for wet-layup applications, room temperature curing acrylic adhesive and room temperature storage epoxy resin/prepreg material systems.
Similar(54)
Several combinations of suitable material systems are considered.
δ-Doped In0.52Al0.48As/In0.53Ga0.47As/InP material systems are concentrated in this article.
Epoxy-bonded bilayer material systems are commonly used in various engineering applications.
Heterogeneous material systems are inherently dielectric as determined by their complex morphology.
The problem arises when mechanical and strength characterization of pipe material systems is required.
Related(13)
material conditions were
material mechanisms were
material models were
material systems considered
material classes were
material others were
material belongings were
material incentives were
material terms were
material rewards were
material interactions were
material compositions were
material properties were
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