About: Effect of Particle Size, Temperature, and Deformation Rate on the Plastic Flow and Strain Hardening Response of PMMA Composites     Goto   Sponge   NotDistinct   Permalink

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Description
  • We present extensive studies of the nonlinear mechanics of neat, microparticle (MP) and/or nanoparticle (NP) filled PMMA. Rigid particles are used as probes that alter local chain packing, the degree of correlated molecular motion, and structural relaxation times. We show that the extent of these alterations are proportional to the specific particle PMMA interface area and the spatial distribution of interparticle distances.
  • We present extensive studies of the nonlinear mechanics of neat, microparticle (MP) and/or nanoparticle (NP) filled PMMA. Rigid particles are used as probes that alter local chain packing, the degree of correlated molecular motion, and structural relaxation times. We show that the extent of these alterations are proportional to the specific particle PMMA interface area and the spatial distribution of interparticle distances. (en)
Title
  • Effect of Particle Size, Temperature, and Deformation Rate on the Plastic Flow and Strain Hardening Response of PMMA Composites
  • Effect of Particle Size, Temperature, and Deformation Rate on the Plastic Flow and Strain Hardening Response of PMMA Composites (en)
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  • Effect of Particle Size, Temperature, and Deformation Rate on the Plastic Flow and Strain Hardening Response of PMMA Composites
  • Effect of Particle Size, Temperature, and Deformation Rate on the Plastic Flow and Strain Hardening Response of PMMA Composites (en)
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  • RIV/00216305:26620/13:PU106138!RIV14-MSM-26620___
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  • 23
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  • RIV/00216305:26620/13:PU106138
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  • PMMA, plastic flow, strain hardening, nanocomposite (en)
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  • 46
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  • Jančář, Josef
  • Žídek, Jan
  • Hoy, Robert S.
  • Jančářová, Ema
  • Lesser, Alan James
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  • 0024-9297
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  • 26620
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