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It is the critical defects, such as microcracks that are the most detrimental to the coating effective cohesive properties.
The decrease of the coating effective properties caused by the presence of porosities and microcracks was investigated by measurement and calculation works.
In this paper a study has been carried out on the design and fabrication of multi-substrate antireflection coating effective for Germanium and Silicon optics in MWIR (3.6 4.9 μm) region.
Multi-spectral antireflection coating effective in visible region for sighting system, laser wavelength for ranging and MWIR region for thermal system can use common objective/receiver optics highly useful for state of art thermal instrumentation.
In this paper a study has been carried out on the design and fabrication of Thorium free antireflection coating effective for Silicon substrate in MWIR (3.6 4.9 μm) region.
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Antimicrobial tests confirm that the coating has effective antimicrobial action on Escherichia coli and Staphylococcus aureus.
The hydrophilic TESP coating was effective at inhibiting biofouling of the microfluidic structure, allowing greater than several minutes of fluid flow.
Increasing load in the tests showed that coating is effective with the diffused magneto-mechanical material.
This indicated that this coating is effective in improving corrosion resistance.
Oxidation tests conducted at 1100 1400 °C demonstrate that the coating provides effective oxidation protection for tungsten.
Microbial tests showed that the coating is effective against pathogenic E. coli bacteria.
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