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material performance
Depending on practical application requirements, a well defined material performance such as toughness, flowability, surface stability, etc.
      
Good correlation between ground-based material performance and operational structural performance has been achieved.
      
It turns out that the one-center model predicts the material performance correctly for small iron concentrations (cFe>amp;lt;0.06?wt.?%?Fe2O3), only.
      
Material performance (water splitting activity, hydrogen yield, regeneration capability) was found to depend on the dopants' kind and stoichiometry; in particular high percentages of Zn dopant seem to enhance the overall materials' performance.
      
Very limited work has been performed to identify the influence of manufacturing processes like edge-trimming and drilling on material performance.
      
In freshwater there was little variation in material performance as a function of alloying elements; in brackish water a distinct difference in corrosion response was noted among the various alloys.
      
High temperature erosion-corrosion (EC) in coal gasification atmospheres (CGA) presents unique demands on material performance.
      
While no single test can predict the formability of sheet metal under all modes of deformation, the planestrain limiting dome height (LDH0) has been shown to correlate with material performance during stretching.
      
The potential material performance is outstanding in terms of in-plane fatigue and fracture.
      
Nickel ferrite as inert anodes in aluminium electrolysis: Part II Material performance and long-term testing
      
The successful development of multiscale models to describe the evolution of radiation damage microstructure and its impact on material performance requires detailed atomic-level information about the stability, motion and interaction of defects.
      
Material performance indices and decision aid model
      
First, a set of major gear design criteria are used to develop six material performance indices for material selection purposes.
      
Deposition at a reduced temperature of 350?C did not lead to an obvious change in the material performance.
      
The use of rods enhances fiber packing and reduces fiber crimp, leading to higher material performance.
      
The presence of impurities may have a negative effect on the mechanical properties of the material, but may improve material performance during processing.
      
Material performance is assessed both for single materials and piezoelectric-polymer composite configurations by defining the relevant piezoelectric parameters.
      
α-in σ plot as a thermoelectric material performance indicator
      
From a comparison of edge quality and subsequent material performance for both polymeric composites, it was found that the impact response of FRPs is highly process dependent.
      
Such microstructural and orientation-sensitive rankings are a keen marker of material performance and offer a refinement over the quasistatically generated Mil-A-4077 acceptance criterion for ballistic impact applications.
      
 

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