This paper points out that interpretations from stress changes alone during oriented crystallization have led to widely different proposed chain conformations and consequently very different crystallization mechanisms for strain-induced crystallization (SIC). Many of the proposals, including the one by Keller and Machin which takes into account some electron microscopy and X-ray observations, show varying degrees of incompatibility with existing stress relaxation, kinetic or morphological data on SIC. Another problem lies in the difficulty with proper interpretation of observed morphology on samples which have been Subjected to additional thermally-induced crystallization (TIC) after SIC, especially, in the absence of prior characterization...
International audienceThe contribution of entropy change due to stretching of polymer chains in prom...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...
Part II discusses numerous examples of a morphological fibrillar-to-lamellar transformation that has...
A nucleation theory for strain-induced crystallization is formulated to explain and to predict the e...
A nucleation theory has been formulated to account for the behavior of polymer crystallization under...
A nucleation theory has been formulated to account for the behavior of polymer crystallization under...
cited By 14International audienceStrain induced crystallization (SIC) of natural rubber (NR) has bee...
International audienceBy tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a r...
International audienceBy tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a r...
In order critically to evaluate the previous morphological interpretations of stress relaxation duri...
By tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a range of specimens pres...
In a continuing effort to extend our understanding of the strain‐induced crystallization mechanism w...
Part 11 discusses numerous examples of a morphological fibrillar-to-lamellar transformation that has...
cited By 1International audienceStrain Induced Crystallization (SIC) of Natural Rubbers (NR) with di...
International audienceThe contribution of entropy change due to stretching of polymer chains in prom...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...
Part II discusses numerous examples of a morphological fibrillar-to-lamellar transformation that has...
A nucleation theory for strain-induced crystallization is formulated to explain and to predict the e...
A nucleation theory has been formulated to account for the behavior of polymer crystallization under...
A nucleation theory has been formulated to account for the behavior of polymer crystallization under...
cited By 14International audienceStrain induced crystallization (SIC) of natural rubber (NR) has bee...
International audienceBy tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a r...
International audienceBy tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a r...
In order critically to evaluate the previous morphological interpretations of stress relaxation duri...
By tuning hydrolysis duration of a segmented ether-amide copolymer (PEBA), a range of specimens pres...
In a continuing effort to extend our understanding of the strain‐induced crystallization mechanism w...
Part 11 discusses numerous examples of a morphological fibrillar-to-lamellar transformation that has...
cited By 1International audienceStrain Induced Crystallization (SIC) of Natural Rubbers (NR) with di...
International audienceThe contribution of entropy change due to stretching of polymer chains in prom...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...
International audienceThe effect of the temperature on strain induced crystallization (SIC) of natur...