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Two different light grades of Polyethylene glycol (PEG) were used as hydrogen bond donors.
Four different grades of polyethylene have been annealed under high pressures, to transform the morphology, and then oriented by hydrostatic extrusion.
The creep characteristics of drawn samples of a number of grades of polyethylene have been studied over a range of applied stresses and strains.
The experiments were performed using lactose monohydrate as model filler and two grades of polyethylene glycol (PEG 2000 and 6000) as meltable binders in different contents and in different size fractions, respectively.
The changes in the molecular network of several grades of polyethylene subjected to high pressure annealing are followed using a simple model which combines thermal expansion and mechanical measurements.
Three grades of polypropylene (PP) and two grades of polyethylene (PE) were γ-irradiated with 25 kGy integral dose in air atmosphere and investigated using X-band electron paramagnetic resonance (EPR).
Similar(53)
In the present work we reinforce this argument by comparing our ALE simulations with experimental data on the extrudate swell of commercial grades of linear polyethylene (LLDPE) and branched polyethylene (LDPE).
Three series of uniaxial tensile tests with constant strain rates are performed at room temperature on isotactic polypropylene and two commercial grades of low-density polyethylene with different molecular weights.
Cold-drawn polyethylene is recently being used as a model material for studying and characterising the environmental stress cracking resistance (ESCR) behaviour of polyethylene grades.
The reference strain ATCC 27853 and a clinical isolate of P. aeruginosa collected from urinary catheters of patients suffering from urinary tract infections, have been used as microbes while clinical grades of polypropylene and high density polyethylene, have been used as 'substrates' for biofilm growth.
Here, the capability of this approach is demonstrated by comparison of predictions of the HMMSF model with uniaxial extensional viscosity data of sixteen different grades of high and low density polyethylene melts, as well as two different polystyrene melts with defined topology.
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