The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene were characterized as function of cooling rate, pressure and flow strength. Our approach to describe primary crystallization is based on nucleation and growth of spherulites, quantified well below the melting temperature using small-angle light scattering. The description of the two-step secondary process is coupled to primary crystallization using a convolution integral, for which the parameters were determined from (fast-) differential scanning calorimetry. Extended-dilatometry was used to investigate the effect of different thermomechanical histories. Parameters were determined for an existing model that couples molecular stretch to both n...
A computational and experimental framework for quantifying flow-enhanced nucleation (FEN) in polymer...
In this work, a very wide set of quiescent isothermal and non-isothermal calorimetric experiments ar...
Thesis (B.S.) in Chemical Engineering--University of Illinois at Urbana-Champaign, 1982.Bibliography...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
A series of isothermal and non-isothermal crystallization experiments were performed on nine linear ...
The melting and crystallization behavior of linear low-density polyethylene (LLDPE) is of great sci...
International audienceTranscrystallinity may occur during differential scanning calorimetry analysis...
The linear growth rates of solution grown low molecular weight polyethylene single crystals have bee...
New experiments underpin the interpretation of the basic division in crystallization behaviour of po...
During processing, polymers are exposed to complex thermal and deformation fields. Under these condi...
A computational and experimental framework for quantifying flow-enhanced nucleation (FEN) in polymer...
International audienceDifferential scanning calorimetry and polarized optical microscopy were used i...
A computational and experimental framework for quantifying flow-enhanced nucleation (FEN) in polymer...
In this work, a very wide set of quiescent isothermal and non-isothermal calorimetric experiments ar...
Thesis (B.S.) in Chemical Engineering--University of Illinois at Urbana-Champaign, 1982.Bibliography...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
The primary and secondary crystallization kinetics of a homogeneous linear low-density polyethylene ...
A series of isothermal and non-isothermal crystallization experiments were performed on nine linear ...
The melting and crystallization behavior of linear low-density polyethylene (LLDPE) is of great sci...
International audienceTranscrystallinity may occur during differential scanning calorimetry analysis...
The linear growth rates of solution grown low molecular weight polyethylene single crystals have bee...
New experiments underpin the interpretation of the basic division in crystallization behaviour of po...
During processing, polymers are exposed to complex thermal and deformation fields. Under these condi...
A computational and experimental framework for quantifying flow-enhanced nucleation (FEN) in polymer...
International audienceDifferential scanning calorimetry and polarized optical microscopy were used i...
A computational and experimental framework for quantifying flow-enhanced nucleation (FEN) in polymer...
In this work, a very wide set of quiescent isothermal and non-isothermal calorimetric experiments ar...
Thesis (B.S.) in Chemical Engineering--University of Illinois at Urbana-Champaign, 1982.Bibliography...