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by Yamagami, Keitaro and Kurogi, Ryota and Kurogi, Ai and Nishimura, Hiroyuki and Nishimura, Shinjitsu and Nishimura, Yasuaki and Nishimura, Kunihiro and Nishimura, Ataru and Onozuka, Daisuke and Ren, Nice and Kada, Akiko and Arimura, Koichi and Ido, Keisuke and Mizoguchi, Masahiro and Sakamoto, Seisaburo and Sakamoto, Tetsuya and Kayama, Takamasa and Suzuki, Nozomi and Suzuki, Michiyasu and Suzuki, Sachio and Suzuki, Hidenori and Suzuki, Ichiro and Suzuki, Susumu and Arai, Yoshinori and Arai, Hajime and Arai, Motohiro and Hagihara, Akihito and Iihara, Koji and Takigami, Masayoshi and Kamiyama, Kenji and Houkin, Kiyohiro and Nishi, Shougo and Yoshimoto, Tetsuyuki and Yoshimoto, Junpei and Kaneko, Sadao and Oka, Hirofumi and Oka, Koji and Ooyama, Hiroshi and Kamada, Kyousuke and Makino, Kenichi and Tokumitsu, Naoki and Sako, Kazuhiro and Izumi, Naoto and Nitta, Hisashi and Nitta, Kazumi and Ootaki, Masahumi and Isobe, Masanori and Nishiya, Mikio and Yamazaki, Takaaki and Mabuchi, Syouji and Mabuchi, Eiichiro and Ogasawara, Kuniaki and Kubo, Naohiko and Shimizu, Yukihiko and Saito, Hitoshi and Saito, Keiichi and Yamanome, Tatumi and Yoshino, Kimihiro and Yoshino, Atsuo and Fujitsuka, Mitsuyuki and Takami, Masaaki and Ohtaka, Hirotoshi and Hirano, Teruyuki and Shiokawa, Yosiaki and Okada, Takaharu and Kohno, Michihiro and Haraoka, Jou and Kawamura, Noriyoshi and Kawamura, Tadao and Isoshima, Akira and Yasue, Masaharu and Takayoshi Kobayashi, Mitsuhiko Hokari and Kawai, Kensuke and Maehara, Taketoshi and Noguchi, Makoto and Hoshino, Haruhiko and Hiyama, Hirofumi and Yoshida, Kensaku and Yoshida, Kazunari and Utsugi, Osamu and Takeda, Yasuaki and Takeda, Yuu and Tamaki, Kouichi and Karasudani, Hirohide and Urabe, Takao and Kobayashi, Nozomu and Kobayashi, Shiro and Nakamura, Yusaku and Nakamura, Kazuhito and Nakamura, Michio and Nakamura, Yoshinari and Koguchi, Yorio and Ono, Junichi and Suda, Sumio and Hadeishi, Hiromu and Fukutake, Toshio and Wakui, Kenji and Tanno, Hirokazu and Ishige, Naoki and Ohasi, Takashi and ... and J-ASPECT Study Collaborators
World Neurosurgery, ISSN 1878-8750, 10/2019, Volume 130, pp. e26 - e46
Journal Article
eBook
Optics and Lasers in Engineering, ISSN 0143-8166, 05/2015, Volume 68, pp. 7 - 15
Speckle patterns to be used for digital image correlation (DIC) at the micrometer level up to 1400 °C were fabricated by several methods. The quality of the... 
Optical system | Speckle pattern | High temperature | Digital image correlation | Microscale | Measuring instruments
Journal Article
Ceramics International, ISSN 0272-8842, 2012, Volume 38, Issue 1, pp. 769 - 774
The densification behavior and microstructure of spark plasma sintered ZrB -based composites with SiC particles were examined. The effects of the amount and... 
Spark plasma sintering | Densification | Microstructure | ZrB 2 | ZrB
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 07/2017, Volume 321, p. 213
A simple technique for measurement of delamination toughness in environmental barrier coatings (EBCs) under shear loading has been developed. The technique... 
Toughness | Silicon carbide | Barriers | Mechanical properties | Property damage | Thermal barrier coatings | Shear loading | Mullite | Damage accumulation | Delamination | Substrates
Journal Article
Scripta Materialia, ISSN 1359-6462, 10/2017, Volume 139, pp. 58 - 62
Delamination toughness of a mullite/Si/(SiC/SiC) environmental barrier coating (EBC) system has been measured using a shear-loading test. The EBC system is... 
Environmental barrier coating | Delamination toughness | Cristobalite | SiC/SiC | Cyclic thermal exposure | WATER-VAPOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | METALLURGY & METALLURGICAL ENGINEERING | SILICON | NANOSCIENCE & NANOTECHNOLOGY | COMPOSITES | Environmental aspects | Coatings | Laminated materials
Journal Article
Ceramics International, ISSN 0272-8842, 2007, Volume 33, Issue 3, pp. 373 - 378
Phase evolution in an electron beam physical vapor deposited (EB-PVD) yttria-partially-stabilized zirconia thermal barrier coating (TBC) was examined during... 
D. Y 2O 3 | D. ZrO 2 | Phase transformation | Isothermal and cycle ageing | Residual stress | D. ZrO | D. Y | Coatings | Analysis | Coatings industry
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 01/2014, Volume 238, p. 68
An in-phase stress controlled thermo-mechanical fatigue test (IP-TMF) on an electron beam physical-vapor-deposition (EB-PVD) 7-wt.%... 
Anisotropy | Coatings
Journal Article
MRS Bulletin, ISSN 0883-7694, 10/2012, Volume 37, Issue 10, pp. 911 - 916
Thermal-barrier coatings are complex systems with properties that largely depend on their specific microstructure. Their properties change during operation,... 
fatigue | laser heat flux | sintering | thermal conductivity | Luminescence | PHYSICS, APPLIED | EVOLUTION | MONITORING DELAMINATION | SPECTROSCOPY | TEMPERATURE | LUMINESCENCE | TOUGHNESS | CONDUCTIVITY | MATERIALS SCIENCE, MULTIDISCIPLINARY | CREEP-BEHAVIOR | GENERATION | MECHANICAL FATIGUE | Degradation
Journal Article
Carbon, ISSN 0008-6223, 2008, Volume 46, Issue 2, pp. 189 - 195
The tensile properties and fracture behavior of ultrahigh tensile strength PAN-based (T1000GB), ultrahigh modulus pitch-based (K13D) and high ductility... 
TESTS | MATERIALS SCIENCE, MULTIDISCIPLINARY | SURFACE | CHEMISTRY, PHYSICAL | COMPOSITES | PARAMETERS | COMPRESSIVE STRENGTH | MICROSTRUCTURE
Journal Article
Applied Physics Letters, ISSN 0003-6951, 2014, Volume 104, Issue 7, p. 71911
We investigated phonons with long mean free paths (MFPs) in amorphous Si (a-Si) and amorphous Ge (a-Ge). The thermal conductivity of a-Si and a-Ge thin films... 
PHYSICS, APPLIED | FILMS | AMORPHOUS-SILICON | THERMAL-CONDUCTIVITY | GLASSES | Thin films | Magnetron sputtering | Photovoltaic cells | Phonons | Dependence | Thermal conductivity | Germanium | Amorphous silicon | Film thickness | Deposition
Journal Article
Nature Methods, ISSN 1548-7091, 12/2008, Volume 5, Issue 12, pp. 1011 - 1017
Journal Article