Hokkaido University Collection of Scholarly and Academic Papers
(53,958 recursos)
HUSCAP (Hokkaido University Collection of Scholarly and Academic Papers) contains peer-reviewed journal articles, proceedings, educational resources and any kind of scholarly works of Hokkaido University.
46.
Formation of porous anodic films on Ti-Si alloys in hot phosphate-glycerol electrolyte - Habazaki, H.; Oikawa, Y.; Fushimi, K.; Shimizu, K.; Nagata, S.; Skeldon, P.; Thompson, G. E.
Porous anodic films, with pore size of ~10 nm, have been developed by anodizing of magnetron sputtered Ti-25 at% Si alloy at constant formation voltages in glycerol electrolyte containing dibasic potassium phosphate at 433 K.
47.
Thermal degradation of anodic niobia on niobium and oxygen-containing niobium - Habazaki, H.; Yamasaki, M.; Ogasawara, T.; Fushimi, K.; Konno, H.; Shimizu, K.; Izumi, T.; Matsuoka, R.; Skeldon, P.; Thompson, G. E.
Thermal treatment of anodized niobium and oxygen-containing niobium has been carried out to elucidate the thermal degradation mechanism of niobium capacitors and to clarify the influence of oxygen dissolved in niobium on thermal degradation.
53.
Field crystallization of anodic niobia - Habazaki, H.; Ogasawara, T.; Konno, H.; Shimizu, K.; Nagata, S.; Skeldon, P.; Thompson, G.E.
Influences of electrolyte, pre-thermal treatment and substrate composition have been examined to elucidate the mechanism of field crystallization of anodic niobia formed on magnetron-sputtered niobium.
54.
Fast migration of fluoride ions in growing anodic titanium oxide - Habazaki, H.; Fushimi, K.; Shimizu, K.; Skeldon, P.; Thompson, G.E.
The rapid inward migration of fluoride ions in growing anodic titanium oxide under a high electric field has been elucidated by anodizing a Ti–12 at% silicon alloy, where film growth proceeds at nearly 100% efficiency in selected electrolytes.
55.
Area-selective microscale metallization on porous anodic oxide film of aluminium - Jha, Himendra; Kikuchi, Tatsuya; Sakairi, Masatoshi; Takahashi, Hideaki
Exposing the palladium enriched area by the help of laser beam followed by electroless nickel deposition results the deposition of nickel on the laser-exposed part.
56.
Spark anodizing of ?-Ti alloy for wear-resistant coating - Habazaki, H.; Onodera, T.; Fushimi, K.; Konno, H.; Toyotake, K.
Spark anodizing of a bcc solid solution Ti–15% V–3% Al–3% Cr–3% Sn alloy has been performed in an alkaline electrolyte containing aluminate and phosphate using dc-biased ac anodizing to form a wear-resistant coating on the alloy.
57.
Influence of silicon on the growth of barrier-type anodic films on titanium - Tanvir, M. Tauseef; Fushimi, K.; Shimizu, K.; Nagata, S.; Skeldon, P.; Thompson, G.E.; Habazaki, H.
Amorphous anodic titania, stabilised by incorporation of silicon species, is shown to grow to high voltages on sputter-deposited, single-phase Ti–Si alloys during anodizing at a constant current density in ammonium pentaborate electrolyte.
59.
Development of a radiation detector made of a cubic boron nitride polycrystal - Kaneko, J.H.; Taniguchi, T.; Kawamura, S.; Satou, K.; Fujita, F.; Homma, A.; Furusaka, M.
Radiation detectors were fabricated using single and polycrystalline cubic boron nitride (cBN) crystals synthesized using a high-pressure and high-temperature (HP/HT) method.