A successful strategy for MGI-inspired research

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Published inMRS bulletin Vol. 48; no. 5; pp. 434 - 438
Main Authors Odegard, Gregory M., Liang, Zhiyong, Siochi, Emilie J., Warren, James A.
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.05.2023
Springer Nature B.V
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Author Liang, Zhiyong
Odegard, Gregory M.
Warren, James A.
Siochi, Emilie J.
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  surname: Siochi
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  givenname: James A.
  surname: Warren
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  organization: National Institute of Standards and Technology
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crossref_primary_10_1021_acs_jcim_4c00730
crossref_primary_10_1016_j_compositesb_2024_111338
crossref_primary_10_1016_j_compositesb_2024_111715
Cites_doi 10.17226/26723
10.26434/chemrxiv-2022-6fcwk
10.1007/s11837-006-0225-3
10.1016/j.compositesa.2014.03.011
10.2514/6.2015-0198
10.1080/15376494.2021.2017527
10.1021/acsmacrolett.0c00264
10.1007/s40192-018-0119-6
10.1557/mrs.2015.228
10.1063/1.4943679
10.1063/1.5046839
10.6028/NIST.IR.8038
10.1016/j.compositesa.2016.02.003
10.1038/s41524-019-0173-4
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References BackmanDGWeiDYWhitisDDBuczekMBFinniganPMGaoDICME at GE: accelerating the insertion of new materials and processesJOM2006583610.1007/s11837-006-0225-3
AllisonJCowlesBDeLoachJPollockTSpanosGImplementing Integrated Computational Materials Engineering (ICME) in the Aerospace, Automotive, and Maritime Industries2013WarrendaleThe Minerals Metals & Materials Society
ZhaoHWangYLinAHuBYanRMcCuskerJChenWMcGuinnessDLSchadlerLBrinsonLCNanoMine schema: An extensible data representation for polymer nanocompositesAPL Mater.201861111081:CAS:528:DC%2BC1cXitlylu7zE10.1063/1.5046839
SiochiEJHarrisonJSStructural nanocomposites for aerospace applicationsMRS Bull.2015401082910.1557/mrs.2015.228
S.P. Engelstad, R.W. Koon, J.E. Action, J.M. Riga, A.M. Waas, D. Robbins, R.W. Dalgarno, A.R. Arafath, A. Poursartip, “Integrated Computational Materials Engineering for Airframe Composite Structure Applications,” 56th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference AIAA SciTech Forum (American Institute of Aeronautics and Astronautics, Kissimmee, January 5–9, 2015). https://doi.org/10.2514/6.2015-0198
J.-W. Kim, G. Sauti, R.A. Wincheski, R.J. Cano, B.D. Jensen, J.G. Smith Jr., K.E. Wise, E.J. Siochi, Undirectional Carbon Nanotube Yarn/Polymer Composites (Report No. NASA/TM-2018-220081, NASA, Hampton, 2018)
National Academies of Sciences, Engineering, and Medicine, NSF Efforts to Achieve the Nation’s Vision for the Materials Genome Initiative: Designing Materials to Revolutionize and Engineer Our Future (DMREF) (National Academies Press, Washington, DC, 2022). https://doi.org/10.17226/26723
ScienceNCouncilTMaterials Genome Initiative Strategic Plan2014Washington, DCExecutive Office of the President
ShimamuraYOshimaKTohgoKFujiiTShirasuKYamamotoGHashidaTGotoKOgasawaraTNaitoKNakanoTInoueYTensile mechanical properties of carbon nanotube/epoxy composite fabricated by pultrusion of carbon nanotube spun yarn preformCompos. Part A201462321:CAS:528:DC%2BC2cXosV2js7s%3D10.1016/j.compositesa.2014.03.011
EversCVondrasekBJolowskyCParkJGCzabajMKuBThagardKOdegardGLiangZScalable high tensile modulus composite laminates using carbon nanotube yarnsChemRxiv202210.26434/chemrxiv-2022-6fcwk
KimJ-WSautiGCanoRJWincheskiRARatcliffeJGCzabajMGardnerNWSiochiEJAssessment of carbon nanotube yarns as reinforcement for composite overwrapped pressure vesselsCompos. Part A.2016842561:CAS:528:DC%2BC28XisV2ksbc%3D10.1016/j.compositesa.2016.02.003
ShahSPPatilSUHansenCJOdegardGMMaiarùMProcess modeling and characterization of thermoset composites for residual stress predictionMech. Adv. Mater. Struct.202110.1080/15376494.2021.2017527
Materials Genome Initiative (n.d.). www.mgi.gov
ZhaoHLiXZhangYSchadlerLSChenWBrinsonLCPerspective: NanoMine: A material genome approach for polymer nanocomposites analysis and designAPL Mater.201640532041:CAS:528:DC%2BC28XktlChsrc%3D10.1063/1.4943679
VenkateshVGreenRO'ConnellJCernatescuIGoetzRWongTStreichBSarafVGlavicicMSlavikDSampathRSharpASongBBocchiniPAn ICME framework for incorporating bulk residual stresses in rotor component designIntegr. Mater. Manuf. Innov.2018717310.1007/s40192-018-0119-6
de PabloJJJacksonNEWebbMAChenL-QMooreJEMorganDJacobsRPollockTSchlomDGTobererESAnalytisJDaboIDeLongchampDMFieteGAGrasonGMHautierGMoYRajanKReedEJRodriguezEStevanovicVSuntivichJThorntonKZhaoJ-CNew frontiers for the materials genome initiativeNPJ Comput. Mater.201954110.1038/s41524-019-0173-4
C.H. Ward, J.A. Warren, Materials Genome Initiative: Materials Data (Report No. NISTIR 8038, National Institute of Standards and Technology, Gaithersburg, 2015). https://doi.org/10.6028/NIST.IR.8038
BrinsonLCDeagenMChenWMcCuskerJMcGuinnessDLSchadlerLSPalmeriMGhummanULinAHuBPolymer nanocomposite data: Curation, frameworks, access, and potential for discovery and designACS Macro Lett.2020910861:CAS:528:DC%2BB3cXhtlKltr7P10.1021/acsmacrolett.0c00264
Y Shimamura (525_CR18) 2014; 62
H Zhao (525_CR5) 2016; 4
525_CR1
J-W Kim (525_CR4) 2016; 84
LC Brinson (525_CR7) 2020; 9
H Zhao (525_CR6) 2018; 6
525_CR9
525_CR8
V Venkatesh (525_CR11) 2018; 7
525_CR10
J Allison (525_CR14) 2013
EJ Siochi (525_CR3) 2015; 40
DG Backman (525_CR13) 2006; 58
N Science (525_CR15) 2014
SP Shah (525_CR12) 2021
525_CR17
JJ de Pablo (525_CR2) 2019; 5
C Evers (525_CR16) 2022
References_xml – reference: ScienceNCouncilTMaterials Genome Initiative Strategic Plan2014Washington, DCExecutive Office of the President
– reference: ShimamuraYOshimaKTohgoKFujiiTShirasuKYamamotoGHashidaTGotoKOgasawaraTNaitoKNakanoTInoueYTensile mechanical properties of carbon nanotube/epoxy composite fabricated by pultrusion of carbon nanotube spun yarn preformCompos. Part A201462321:CAS:528:DC%2BC2cXosV2js7s%3D10.1016/j.compositesa.2014.03.011
– reference: KimJ-WSautiGCanoRJWincheskiRARatcliffeJGCzabajMGardnerNWSiochiEJAssessment of carbon nanotube yarns as reinforcement for composite overwrapped pressure vesselsCompos. Part A.2016842561:CAS:528:DC%2BC28XisV2ksbc%3D10.1016/j.compositesa.2016.02.003
– reference: ZhaoHWangYLinAHuBYanRMcCuskerJChenWMcGuinnessDLSchadlerLBrinsonLCNanoMine schema: An extensible data representation for polymer nanocompositesAPL Mater.201861111081:CAS:528:DC%2BC1cXitlylu7zE10.1063/1.5046839
– reference: Materials Genome Initiative (n.d.). www.mgi.gov
– reference: C.H. Ward, J.A. Warren, Materials Genome Initiative: Materials Data (Report No. NISTIR 8038, National Institute of Standards and Technology, Gaithersburg, 2015). https://doi.org/10.6028/NIST.IR.8038
– reference: S.P. Engelstad, R.W. Koon, J.E. Action, J.M. Riga, A.M. Waas, D. Robbins, R.W. Dalgarno, A.R. Arafath, A. Poursartip, “Integrated Computational Materials Engineering for Airframe Composite Structure Applications,” 56th AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference AIAA SciTech Forum (American Institute of Aeronautics and Astronautics, Kissimmee, January 5–9, 2015). https://doi.org/10.2514/6.2015-0198
– reference: BrinsonLCDeagenMChenWMcCuskerJMcGuinnessDLSchadlerLSPalmeriMGhummanULinAHuBPolymer nanocomposite data: Curation, frameworks, access, and potential for discovery and designACS Macro Lett.2020910861:CAS:528:DC%2BB3cXhtlKltr7P10.1021/acsmacrolett.0c00264
– reference: National Academies of Sciences, Engineering, and Medicine, NSF Efforts to Achieve the Nation’s Vision for the Materials Genome Initiative: Designing Materials to Revolutionize and Engineer Our Future (DMREF) (National Academies Press, Washington, DC, 2022). https://doi.org/10.17226/26723
– reference: ShahSPPatilSUHansenCJOdegardGMMaiarùMProcess modeling and characterization of thermoset composites for residual stress predictionMech. Adv. Mater. Struct.202110.1080/15376494.2021.2017527
– reference: ZhaoHLiXZhangYSchadlerLSChenWBrinsonLCPerspective: NanoMine: A material genome approach for polymer nanocomposites analysis and designAPL Mater.201640532041:CAS:528:DC%2BC28XktlChsrc%3D10.1063/1.4943679
– reference: EversCVondrasekBJolowskyCParkJGCzabajMKuBThagardKOdegardGLiangZScalable high tensile modulus composite laminates using carbon nanotube yarnsChemRxiv202210.26434/chemrxiv-2022-6fcwk
– reference: de PabloJJJacksonNEWebbMAChenL-QMooreJEMorganDJacobsRPollockTSchlomDGTobererESAnalytisJDaboIDeLongchampDMFieteGAGrasonGMHautierGMoYRajanKReedEJRodriguezEStevanovicVSuntivichJThorntonKZhaoJ-CNew frontiers for the materials genome initiativeNPJ Comput. Mater.201954110.1038/s41524-019-0173-4
– reference: AllisonJCowlesBDeLoachJPollockTSpanosGImplementing Integrated Computational Materials Engineering (ICME) in the Aerospace, Automotive, and Maritime Industries2013WarrendaleThe Minerals Metals & Materials Society
– reference: BackmanDGWeiDYWhitisDDBuczekMBFinniganPMGaoDICME at GE: accelerating the insertion of new materials and processesJOM2006583610.1007/s11837-006-0225-3
– reference: SiochiEJHarrisonJSStructural nanocomposites for aerospace applicationsMRS Bull.2015401082910.1557/mrs.2015.228
– reference: J.-W. Kim, G. Sauti, R.A. Wincheski, R.J. Cano, B.D. Jensen, J.G. Smith Jr., K.E. Wise, E.J. Siochi, Undirectional Carbon Nanotube Yarn/Polymer Composites (Report No. NASA/TM-2018-220081, NASA, Hampton, 2018)
– reference: VenkateshVGreenRO'ConnellJCernatescuIGoetzRWongTStreichBSarafVGlavicicMSlavikDSampathRSharpASongBBocchiniPAn ICME framework for incorporating bulk residual stresses in rotor component designIntegr. Mater. Manuf. Innov.2018717310.1007/s40192-018-0119-6
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SubjectTerms Applied and Technical Physics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Energy Materials
Material Matters
Materials Engineering
Materials Science
Nanotechnology
Title A successful strategy for MGI-inspired research
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