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When the critical τ (τc) measured in this work for PBT was compared with those obtained in other toughened blends at constant test conditions and rubber properties, τc decreased as the modulus of elasticity of the matrix increased.
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The evolution of the storage modulus of the blends at a constant low frequency with composition showed a great enhancement of the elasticity when PA6 was the dispersed phase, and the maximum of the storage modulus at the evaluated frequency was definitely related to the phase inversion in pure blends.
Open image in new window Fig. 5 Rheological properties of blend hydrogel at constant CS and CMC content and different BGP contents.
The weight ratio of PE and PS in ternary PS/SBR/PE blends has been changed at constant SBR content (25 wt%).
In the range 130 160°C, which is a miscible one-phase region between their lower critical solution temperature (LCST: Tc=220°C; φc≅0.5) and Tm (≅120°C) of P VDF-HFA), simultaneous measurements of transient tensile stress σ(t) and birefringence Δn(t) were conducted via elongational flow oP VDF-HFAetry (EFOR) on the blendsimultaneousxial elongation at constant Hencky strain rates.
Melt-mixed blends were prepared at various PET/PA-6 ratios and at constant main component ratio, with various amounts of Ion., Zn2+.
The glass transition temperatures of PHB in the blend were constant at about 8°C.
At constant ionic strength, the EMG2 and locust bean blends behave similarly, with increasing extent of synergy as the temperature of mixing is increased.
In the first part, features of the experiments at constant stress with a special attention to morphology development in polymer blends are discussed.
At constant operating pressure (414 kPa), the pure water flux of pure PPSU, PPSU/MWCNT and PPSU/MWCNT blend membranes upon compaction was measured for every 1 h.
The C/O ratio of all blends was kept constant at C/O= 0.773 or C/O= 0.600.
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