The present study focuses on the influence of the molecular weight distribution (MWD) on the crack-growth kinetics of fatigue-crack propagation in high-density polyethylene (HDPE) homopolymers. Compact-tension specimens of HDPE homopolymer grades, with polydispersities ranging from 2 to 45 and weight-averaged molar mass ranging from 49 to 450 kg/mol, are tested in cyclic loading at temperatures ranging between 23 and 92 °C. Through a variation of sample thickness, linear elastic-fracture mechanics is shown to apply for the chosen geometry (compact tension). It was found that the crack-propagation kinetics obey the Paris–Erdogan law, for which the Paris–Erdogan exponent m is (highly) similar for all grades tested (m = 3.9), implying that the...
The fracture behavior of polymers is reviewed with emphasis on the time dependent aspects of the pro...
According to linear elastic fracture mechanics the stress intensity factor and the energy release ra...
In the present investigation the influence of strain rate and temperature on modulus, strength and w...
The present study focuses on the influence of the molecular weight distribution (MWD) on the crack-g...
The present study focuses on the influence of the molecular weight distribution (MWD) on the crack-g...
Fatigue tests were carried out on compression mouldings supplied by a leading polymer manufacturer. ...
The slow crack growth behavior of PE with different molecular structures and morphologies has been i...
The effects of the placement of short-chain branches (SCB) on crystallization kinetics, morphology a...
High-Density Polyethylene (HDPE) is a common polymer with many applications in different industries ...
The creep‐tensile fatigue relationship is investigated using MD simulations for amorphous poly...
International audienceCreep fracture by slow crack growth is studied in a medium density polyethylen...
In the present investigation the influence of strain rate and temperature on modulus, strength and w...
The melt theology of ultrahigh molecular weight polymeric materials characterized by a narrow molecu...
Objectives. Determination of the influence of molecular weight on the modulus of elasticity, yield, ...
In this study, the linear viscoelastic properties of two series of Ziegler-Natta and metallocene HDP...
The fracture behavior of polymers is reviewed with emphasis on the time dependent aspects of the pro...
According to linear elastic fracture mechanics the stress intensity factor and the energy release ra...
In the present investigation the influence of strain rate and temperature on modulus, strength and w...
The present study focuses on the influence of the molecular weight distribution (MWD) on the crack-g...
The present study focuses on the influence of the molecular weight distribution (MWD) on the crack-g...
Fatigue tests were carried out on compression mouldings supplied by a leading polymer manufacturer. ...
The slow crack growth behavior of PE with different molecular structures and morphologies has been i...
The effects of the placement of short-chain branches (SCB) on crystallization kinetics, morphology a...
High-Density Polyethylene (HDPE) is a common polymer with many applications in different industries ...
The creep‐tensile fatigue relationship is investigated using MD simulations for amorphous poly...
International audienceCreep fracture by slow crack growth is studied in a medium density polyethylen...
In the present investigation the influence of strain rate and temperature on modulus, strength and w...
The melt theology of ultrahigh molecular weight polymeric materials characterized by a narrow molecu...
Objectives. Determination of the influence of molecular weight on the modulus of elasticity, yield, ...
In this study, the linear viscoelastic properties of two series of Ziegler-Natta and metallocene HDP...
The fracture behavior of polymers is reviewed with emphasis on the time dependent aspects of the pro...
According to linear elastic fracture mechanics the stress intensity factor and the energy release ra...
In the present investigation the influence of strain rate and temperature on modulus, strength and w...