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optimum coating
Increase of the concentration of the coating slurry causes increase of the bulk density of the composites, while the optimum coating thickness corresponding to the highest maximum fracture strength is obtained by the medium slurry concentration.
      
Correlations are given for choice of optimum coating thickness.
      
Glasshouse trials indicate the optimum coating for rice seed as 35% (w/w) on seed weight of 60% calcium peroxide.
      
The capacity of CF for galvanic application of copper sulfate is assessed and the optimum coating parameters (0.4 A current, duration of 5-15 min) and change in the strength indexes of the CF are determined.
      
The optimum coating structure provides for decomposition of food fats after multiple thermal cycling.
      
The optimum coating temperature was identified to be in the range of 1050°C to 1150°C.
      
The biocompatibility of the optimum coating layer (as determined by mechanical performance) was examined by a modified MTT toxicity test and by monitoring cell growth assessed by quantitative stereological analysis.
      
The optimum coating process in terms of corrosion and wear resistance, appears to be a hybrid system with a dense SiO2 network achieved at intermediate sintering temperatures.
      
For a recording density above four points per 1 mm the optimum coating thickness is 5μ for alloy Co-Ni-P and 10μ for alloy Co-Ni.
      
The present work is aimed at studying the conditions for obtaining oxide coatings with high triboengineering properties using the thermal regimes of aging high-strength (α+β) titanium alloys and determining the properties of an optimum coating.
      
The excellent oxidation resistance for the optimum coating compositions is discussed.
      
For optimum coating compositions and synthesis conditions, the hardness is over 40-50 GPa.
      
With a strain amplitude of ∈=40·10-5 the vibration decrement of specimens with the optimum coating of VPM-2 GISI mastic is 2.6-3.6 times greater (depending on coating thickness) than the vibration decrement of specimens coated with vibroisol.
      
An optimum coating thickness worked best, which reduces frictional contact with the mould substrate and provides a lubricating effect.
      
Fibers are easily spread for better wet-out, while the direct finish assures optimum coating.
      
Many of the resins used in emulsion paints use combinations of monomers with the objective of achieving optimum coating properties.
      
Through understanding of these events, formulation and drying conditions can be designed for optimum coating and encapsulation.
      
There appears to be an optimum coating thickness, below which measured permeability values are higher.
      
There is no general consensus on the optimum coating structure to minimise powdering defects and maximise the ability of the sheet steel to be formed.
      
 

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