Sentence examples for coating capabilities from inspiring English sources

Exact(2)

For engineering purposes, particularly in conversion industries, such as steel manufacturing, and primary industries, such as oil extraction, coating specifications and expectations far exceed conventional coating capabilities.

The coating characteristics and the selective coating capabilities of prepared ethanol and isopropanol based EPD solutions and their acetylacetone additive (as surfactant) alternatives were investigated using zeta potential measurements and mean colloid size analysis.

Similar(58)

The outstanding results observed in a-C H coa-C Hs deposited on NiTi are attributed to the coatingscapability of copying the reversible depositedon that takes place iNiTie metareic substrattributeded wito a stheng adhesive coatingion.

There is a need to characterize the coating thermal fatigue behavior and temperature limit, in order to potentially take full advantage of the current coating capability.

Among them, the ALD method has been usually adopted to grow ultrathin and high-k dielectrics owing to its advantages over other methods in completely precise thickness control, low processing temperature, low impurity content, no line-of-sight depositions, conformal coating capability on complex-shaped structures, and excellent thickness uniformity over large deposition area [1, 3, 15 17].

For simplicity, the resolution that can be expected for different sieving matrices is reported in Table  2 in terms of the size in bases by which fragments can reliably be distinguished from one another.-wrap> In addition to separation performance, the cost, viscosity, and coating capability of a gel must also be considered.

Current research on microcapillary electrophoresis materials is focused on the development of separation matrices with low injection viscosities and wall-coating capabilities.

Polaroid's real strength is its film-coating capability, and it should keep making instant film.

With 6.0 wt% of the sodium maleate coating, rate capability and long-term cycling behavior of the LiFePO4 cathode at different temperatures are significantly improved.

Dual-beam FIB/SEMs with either gallium ion source (GFIB) or xenon plasma ion source (PFIB) were used to prepare the cross-sections and thin transmission electron microscopy (TEM) specimens of the coating, and the capabilities of GFIB and PFIB were compared.

OH can be regarded as an indicator for the barrier properties of the coating or its capability to transport metal ions through the film.

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