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The chip morphology and micro milling processes are analyzed in correlation with cutting force variations in the processes.
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Changes in their morphology and micro-nanostructure have been monitored at two different temperatures.
The morphology and micro-structure of the product were investigated by SEM. Figure 1(A) and 1 B, C) are the SEM images of the sample.
Predicted and actual 12 week data were compared using qualitative (3D rendering) and quantitative (geometry, morphology and micro-finite element, μFE) methods.
The morphology and micro-structure of synthesized ZnO@rGO composites were characterized using scanning electron microscopy, transmission electron microscopy, and atomic force microscope.
The development of dedicated imaging equipment for small animals and, in particular, the implementation of computed tomography (CT) have revolutionised the use of animal models in musculoskeletal research, becoming the gold standard for evaluation of bone morphology and micro-architecture in animal models [3, 4].
The results demonstrates that Cr-DLC film have better space adaptability than MoS2 film because irradiation induced partial transition of Cr-DLC's micro-structure with the decrease in ID/IG ratio from 1.50 to 1.26 and the increase of sp3 content from 0.24 to 0.59, while the surface morphology and micro-structure of MoS2 film have dramatically changed.
Trabecular bone morphology and micro-architecture were also sensitive to the application of low-amplitude, high-frequency oscillatory accelerations (Fig. 2).
In vivo micro-computed tomography (VivaCT, Scanco Medical, SUI) was used to quantify bone morphology and micro-architecture in left and right tibiae of all experimental-, shand, age-matchedcontrolntrol mice.
Surface morphologies and micro-structural evolution of the coatings before and after aging treatments were characterized using E-SEM and TEM observations.
The morphologies and micro- and atomic structures of the composite ribbons were studied by scanning electron microscopy (SEM; S4800, Hitachi Ltd., Tokyo, Japan) and high-resolution transmission electron microscopy (TEM; 300 kV JEM-3000F, JEOL and JEM-3100FEF (Omega filter) instruments, JEOL Ltd., Akishima, Tokyo, Japan).
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