M(Al,Si)3 and M5(Al,Si)3 coating layers reduce oxidation rates on Nb-Si based alloys.
A thermal spray powder with chromium carbide and alloy matrix forms a hearth roll coating via high-velocity flame spraying.
Applying electric fields controls ink flow to resolve uniform line width challenges on curved TFT substrates.
Segmented arc-spraying maintains optimal intersection angles to form a durable oxide film, resolving unstable adhesiveness during seamless tube production.
A machining tool with a shaped grinding region inserts into turbine blade through-holes to remove accumulated protective films.
A plasma process decomposes precursors in a high field zone to coat second precursors into structured particles.
A cold spray method deposits metal films on high hardness substrates using non-metal powder blasting to create anchor points.
Vacuum electron beam atomization eliminates ceramic contact and gas impingement, preventing oxide contamination while controlling particle trajectory.
A high boron hardfacing electrode deposits a wear-resistant alloy layer with consistent hardness exceeding 65 HRC.