Critical rate of cooling for suppression of crystallization in random copolymers of propylene with ethylene and 1-butene
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[1] G. Strobl. The Physics of Polymers , 2009 .
[2] H. Palza,et al. Effect of comonomer type on the crystallization kinetics and crystalline structure of random isotactic propylene 1 -alkene copolymers , 2009 .
[3] Bin Yang,et al. Calorimetric measurements of undercooling in single micron sized SnAgCu particles in a wide range of cooling rates , 2009 .
[4] R. Androsch,et al. Effect of structure on light transmission in isotactic polypropylene and random propylene-1-butene copolymers , 2009 .
[5] R. Androsch,et al. Rigid Amorphous Fraction in Isotactic Polypropylene , 2008 .
[6] R. Androsch,et al. Effect of cooling rate on melt-crystallization of random propylene-ethylene and propylene-1-butene copolymers , 2008 .
[7] R. Androsch. In Situ Atomic Force Microscopy of the Mesomorphic-Monoclinic Phase Transition in Isotactic Polypropylene , 2008 .
[8] R. Alamo,et al. Maximum Rate of Crystallization and Morphology of Random Propylene Ethylene Copolymers as a Function of Comonomer Content up to 21 mol , 2008 .
[9] C. Schick,et al. Isothermal Nanocalorimetry of Isotactic Polypropylene , 2007 .
[10] F. Auriemma,et al. Crystallization Behavior of Isotactic Propylene−Ethylene and Propylene−Butene Copolymers: Effect of Comonomers versus Stereodefects on Crystallization Properties of Isotactic Polypropylene , 2007 .
[11] C. Schick,et al. Ultrafast thermal processing and nanocalorimetry at heating and cooling rates up to 1 MK/s. , 2007, The Review of scientific instruments.
[12] R. Androsch,et al. Direct analysis of annealing of nodular crystals in isotactic polypropylene by atomic force microscopy, and its correlation with calorimetric data , 2007 .
[13] C. Schick,et al. Superheating in linear polymers studied by ultrafast nanocalorimetry , 2007, The European physical journal. E, Soft matter.
[14] Eric Baer,et al. Structure and deformation of an elastomeric propylene–ethylene copolymer , 2007 .
[15] C. Schick,et al. Isothermal Crystallization of Isotactic Poly(propylene) Studied by Superfast Calorimetry , 2007 .
[16] R. Androsch,et al. Morphology, reorganization and stability of mesomorphic nanocrystals in isotactic polypropylene , 2006 .
[17] C. Schick,et al. Melting and reorganization of the crystalline fraction and relaxation of the rigid amorphous fraction of isotactic polystyrene on fast heating (30,000 K/min) , 2006 .
[18] C. Schick,et al. Scanning Nanocalorimetry at High Cooling Rate of Isotactic Polypropylene , 2006 .
[19] C. Schick,et al. Metastability of polymer crystallites formed at low temperature studied by ultra fast calorimetry : Polyamide 6 confined in sub-micrometer droplets vs. bulk PA6 , 2006 .
[20] C. Schick,et al. Crystallization of polypropylene at various cooling rates , 2005 .
[21] C. Schick,et al. Isothermal reorganization of poly(ethylene terephthalate) revealed by fast calorimetry (1000 K s(-1); 5 ms). , 2005, Faraday discussions.
[22] J. Chatterjee,et al. Linear growth rates of random propylene ethylene copolymers. The changeover from γ dominated growth to mixed (α+γ) polymorphic growth , 2005 .
[23] C. Schick,et al. Ultra-fast isothermal calorimetry using thin film sensors , 2004 .
[24] C. Schick,et al. Melting and reorganization of poly(ethylene terephthalate) on fast heating (1000 K/s) , 2004 .
[25] R. Androsch,et al. Non-isothermal crystallization of polyethylenes as function of cooling rate and concentration of short chain branches , 2004 .
[26] M. Merzlyakov. Integrated circuit thermopile as a new type of temperature modulated calorimeter , 2003 .
[27] C. Schick,et al. Scanning microcalorimetry at high cooling rate , 2003 .
[28] S. Cimmino,et al. Structure, morphology, and crystallization of a random ethylene–propylene copolymer , 2003 .
[29] V. Carrubba,et al. An experimental methodology to study polymer crystallization under processing conditions. The influence of high cooling rates , 2002 .
[30] C. Marega,et al. The influence of thermal treatment and processing on the structure and morphology of poly(propylene‐ran‐1‐butene) copolymers , 2001 .
[31] S. Piccarolo,et al. Competition between α and γ phases in isotactic polypropylene : effects of ethylene content and nucleating agents at different cooling rates , 2001 .
[32] H. Miyaji,et al. Structure Formation of Isotactic Polypropylene from the Glass , 2000 .
[33] Bernhard Wunderlich,et al. The ATHAS database on heat capacities of polymers , 1995 .
[34] G. R. Brown,et al. The structure of the mesomorphic phase of quenched isotactic polypropylene , 1994 .
[35] A. Hoechst,et al. Structural analysis of random propylene-ethylene copolymers , 1993 .
[36] S. Piccarolo. Morphological changes in isotactic polypropylene as a function of cooling rate , 1992 .
[37] V. Brucato,et al. Crystallization of polymer melts under fast cooling. I: Nucleated polyamide 6 , 1991 .
[38] C. Hsu,et al. Structure and properties of polypropylene crystallized from the glassy state , 1986 .
[39] B. Wunderlich. Crystal nucleation, growth, annealing , 1976 .
[40] I. Sanchez,et al. Thermodynamics and Crystallization of Random Copolymers , 1975 .
[41] R. Zannetti,et al. Thermal properties of isotactic polypropylene quenched from the melt and annealed , 1975 .
[42] G. Celotti,et al. The structural effects of annealing time and temperature on the paracrystal‐crystal transition in isotactic polypropylene , 1969 .
[43] Giulio Nata. Progress in the stereospecific polymerization , 1960 .
[44] W. P. Slighter. Sektion I, Physik makromolekularer Stoffe: Nuclear resonance studies of motion in polymers , 1960 .
[45] P. Flory. Thermodynamics of Crystallization in High Polymers. IV. A Theory of Crystalline States and Fusion in Polymers, Copolymers, and Their Mixtures with Diluents , 1949 .