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Besides, the microstructure and element composition of the bonding interface are almost unchanged before and after aging.
The morphology, microstructure, and element composition of Ni/MPC are characterized by scanning electron microscopy, nitrogen adsorption and desorption, and X-ray photoelectron spectroscopy, respectively.
The microstructure and element distribution of cermet were analyzed by using Scanning Electron Microscopy (SEM) equipped with Energy Dispersive X-ray spectroscopy (EDX).
The optical properties, microstructure and element distribution in depth were investigated by spectroscopic ellipsometry, UV-vis-NIR spectrophotometer, transmission electron microscope (TEM) and Auger electron spectroscopy (AES), respectively.
The microstructure and element composition of the films was analyzed using a scanning electron microscope coupled with a energy-dispersive spectrophotometer (JEOL 2300 model, Tokyo, Japan) and TEM CMM 200 Philips, Amsterdam, Netherlands (200 kV HT)).
X-ray diffraction, scanning electron microscopy and energy dispersive X-ray spectroscopy were used to analyze the phase, microstructure and element distribution of the as-prepared coating.
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The effects of microstructure and elements diffusing from the substrates into the bond coat (Ti, Co, Mo and Ta) in combination with the effect of Hf- or Zr-doping is presented and discussed.
Scanning electron microscopy (SEM) with energy dispersive spectrum (EDS) was adopted to analyze microstructures and element distribution.
Coating microstructure, composition and element distribution are analysed.
The relationship between bond coat composition and thermal durability is extensively discussed, based on the microstructure evolution and element diffusion behavior.
The alloy microstructures and elements segregation were analyzed.
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