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Predicting plasticity-controlled failure of glassy polymers: Influence of stress-accelerated progressive physical aging Clarijs CCWJ, Kanters MJW, van Erp MJ, Engels TAP, Govaert LE Journal of Polymer Science Part B: Polymer Physics, 57(19), 1300, 2019 |
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Thickness dependence of structural relaxation in spin-cast polynorbornene films with high glass transition temperatures (> 613K) Lewis EA, Vogt BD Journal of Polymer Science Part B: Polymer Physics, 56(1), 53, 2018 |
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Comparison of mechanical and molecular measures of mobility during constant strain rate deformation of a PMMA glass Bending B, Ediger MD Journal of Polymer Science Part B: Polymer Physics, 54(19), 1957, 2016 |
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Nonlinear stress relaxation behavior of ductile polymer glasses from large extension and compression Liu JN, Lin PP, Li XX, Wang SQ Polymer, 81, 129, 2015 |
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Criteria to predict the embrittlement of polycarbonate Engels TAP, van Breemen LCA, Govaert LE, Meijer HEH Polymer, 52(8), 1811, 2011 |
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Non-linear, rate-dependent strain-hardening behavior of polymer glasses Wendlandt M, Tervoort TA, Suter UW Polymer, 46(25), 11786, 2005 |
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Strain hardening of polycarbonate in the glassy state: Influence of temperature and molecular weight Govaert LE, Tervoort TA Journal of Polymer Science Part B: Polymer Physics, 42(11), 2041, 2004 |
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Craze-initiation kinetics in polystyrene Tervoort TA, Govaert LE Journal of Polymer Science Part B: Polymer Physics, 42(11), 2066, 2004 |
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Environment induced failure of brittle and quasi-brittle materials de With G Materials Chemistry and Physics, 75(1-3), 229, 2002 |
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(CuI)(3)P4Se4: beta-P4Se4 cages between columns of copper iodide Pfitzner A, Reiser S Inorganic Chemistry, 38(10), 2451, 1999 |