Vote for your favorite mineral in #MinCup25! - Carpathite vs. Tugtupite
Battle of mineralogical oddities as organic mineral #carpathite battles against vs #tugtupite, a mineral that looks like reindeer blood!
Log InRegister
Quick Links : The Mindat ManualThe Rock H. Currier Digital LibraryMindat Newsletter [Free Download]
Home PageAbout MindatThe Mindat ManualHistory of MindatCopyright StatusWho We AreContact UsAdvertise on Mindat
Donate to MindatCorporate SponsorshipSponsor a PageSponsored PagesMindat AdvertisersAdvertise on Mindat
Learning CenterWhat is a mineral?The most common minerals on earthInformation for EducatorsMindat ArticlesThe ElementsThe Rock H. Currier Digital LibraryGeologic Time
Minerals by PropertiesMinerals by ChemistryAdvanced Locality SearchRandom MineralRandom LocalitySearch by minIDLocalities Near MeSearch ArticlesSearch GlossaryMore Search Options
Search For:
Mineral Name:
Locality Name:
Keyword(s):
 
The Mindat ManualAdd a New PhotoRate PhotosLocality Edit ReportCoordinate Completion ReportAdd Glossary Item
Mining CompaniesStatisticsUsersMineral MuseumsClubs & OrganizationsMineral Shows & EventsThe Mindat DirectoryDevice SettingsThe Mineral Quiz
Photo SearchPhoto GalleriesSearch by ColorNew Photos TodayNew Photos YesterdayMembers' Photo GalleriesPast Photo of the Day GalleryPhotography

Croteau, J.-F., Pai Kulyadi, E., Kale, C., Siu, D., Kang, D., Perez Fontenla, A.T., García-Tabarés Valdivieso, E., Bieler, T.R., Eisenlohr, P., Solanki, K.N., Balint, D., Hooper, P.A., Atieh, S., Jacques, N., Cantergiani, E. (2020) Effect of strain rate on tensile mechanical properties of high-purity niobium single crystals for SRF applications. Materials Science and Engineering: A, 797. 140258pp. doi:10.1016/j.msea.2020.140258

Advanced
   -   Only viewable:
Reference TypeJournal (article/letter/editorial)
TitleEffect of strain rate on tensile mechanical properties of high-purity niobium single crystals for SRF applications
JournalMaterials Science and Engineering: A
AuthorsCroteau, J.-F.Author
Pai Kulyadi, E.Author
Kale, C.Author
Siu, D.Author
Kang, D.Author
Perez Fontenla, A.T.Author
García-Tabarés Valdivieso, E.Author
Bieler, T.R.Author
Eisenlohr, P.Author
Solanki, K.N.Author
Balint, D.Author
Hooper, P.A.Author
Atieh, S.Author
Jacques, N.Author
Cantergiani, E.Author
Year2020 (October)Volume797
PublisherElsevier BV
DOIdoi:10.1016/j.msea.2020.140258Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID13503606Long-form Identifiermindat:1:5:13503606:0
GUID0
Full ReferenceCroteau, J.-F., Pai Kulyadi, E., Kale, C., Siu, D., Kang, D., Perez Fontenla, A.T., García-Tabarés Valdivieso, E., Bieler, T.R., Eisenlohr, P., Solanki, K.N., Balint, D., Hooper, P.A., Atieh, S., Jacques, N., Cantergiani, E. (2020) Effect of strain rate on tensile mechanical properties of high-purity niobium single crystals for SRF applications. Materials Science and Engineering: A, 797. 140258pp. doi:10.1016/j.msea.2020.140258
Plain TextCroteau, J.-F., Pai Kulyadi, E., Kale, C., Siu, D., Kang, D., Perez Fontenla, A.T., García-Tabarés Valdivieso, E., Bieler, T.R., Eisenlohr, P., Solanki, K.N., Balint, D., Hooper, P.A., Atieh, S., Jacques, N., Cantergiani, E. (2020) Effect of strain rate on tensile mechanical properties of high-purity niobium single crystals for SRF applications. Materials Science and Engineering: A, 797. 140258pp. doi:10.1016/j.msea.2020.140258
In(2020) Materials Science and Engineering: A Vol. 797. Elsevier BV


See Also

These are possibly similar items as determined by title/reference text matching only.

 
and/or  
Mindat.org is an outreach project of the Hudson Institute of Mineralogy, a 501(c)(3) not-for-profit organization.
Copyright © mindat.org and the Hudson Institute of Mineralogy 1993-2025, except where stated. Most political location boundaries are © OpenStreetMap contributors. Mindat.org relies on the contributions of thousands of members and supporters. Founded in 2000 by Jolyon Ralph.
To cite: Ralph, J., Von Bargen, D., Martynov, P., Zhang, J., Que, X., Prabhu, A., Morrison, S. M., Li, W., Chen, W., & Ma, X. (2025). Mindat.org: The open access mineralogy database to accelerate data-intensive geoscience research. American Mineralogist, 110(6), 833–844. doi:10.2138/am-2024-9486.
Privacy Policy - Terms & Conditions - Contact Us / DMCA issues - Report a bug/vulnerability Current server date and time: September 20, 2025 09:03:40
Go to top of page