Mesoscale thermal-mechanical analysis of impacted granular and polymer-bonded explosives
• Investigating the effect of crystal anisotropy and microstructural heterogeneity on mesoscale thermal-mechanical responses of GXs and PBXs based on a crystal plasticity model. • Quantifying the interaction between an anisotropic crystal phase and an isotropic polymer binder phase under different l...
Ausführliche Beschreibung
Autor*in: |
Wang, Xinjie [verfasserIn] |
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Format: |
E-Artikel |
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Sprache: |
Englisch |
Erschienen: |
2016 |
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Umfang: |
11 |
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Übergeordnetes Werk: |
Enthalten in: Two nuclear export signals of Cdc6 are differentially associated with CDK-mediated phosphorylation residues for cytoplasmic translocation - Hwang, In Sun ELSEVIER, 2014transfer abstract, forum for theoretical, experimental and field advances in mechanics of flow, fracture and general constitutive behavior of geophysical, geotechnical and technological materials, Amsterdam |
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Übergeordnetes Werk: |
volume:99 ; year:2016 ; pages:68-78 ; extent:11 |
Links: |
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DOI / URN: |
10.1016/j.mechmat.2016.05.004 |
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ELV035092963 |
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Mesoscale thermal-mechanical analysis of impacted granular and polymer-bonded explosives |
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• Investigating the effect of crystal anisotropy and microstructural heterogeneity on mesoscale thermal-mechanical responses of GXs and PBXs based on a crystal plasticity model. • Quantifying the interaction between an anisotropic crystal phase and an isotropic polymer binder phase under different loading conditions. • Relating the mesoscale thermal-mechanical responses to impact sensitivity of explosives. |
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• Investigating the effect of crystal anisotropy and microstructural heterogeneity on mesoscale thermal-mechanical responses of GXs and PBXs based on a crystal plasticity model. • Quantifying the interaction between an anisotropic crystal phase and an isotropic polymer binder phase under different loading conditions. • Relating the mesoscale thermal-mechanical responses to impact sensitivity of explosives. |
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• Investigating the effect of crystal anisotropy and microstructural heterogeneity on mesoscale thermal-mechanical responses of GXs and PBXs based on a crystal plasticity model. • Quantifying the interaction between an anisotropic crystal phase and an isotropic polymer binder phase under different loading conditions. • Relating the mesoscale thermal-mechanical responses to impact sensitivity of explosives. |
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Mesoscale thermal-mechanical analysis of impacted granular and polymer-bonded explosives |
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