Sentence examples for blends prepared from from inspiring English sources

Exact(4)

Different melt mixing sequences were applied to incorporate multiwalled carbon nanotubes (CNTs) into blends prepared from high density polyethylene (PE) and polyamide 12 (PA).

The crystals of polyphenylsilsesquioxane (PPSQ) and isotactic polystyrene (i-PS) blends prepared from their toluene solutions had been studied by optical polarized microscope and DSC.

The surface energy results of blends prepared from untreated and treated LDPE-PVC showed considerable differences, with appreciable increases for the latter, indicating an increase in the work of adhesion as a result of the plasma surface modifications applied.

16 Furthermore, as shown in Figures 2b and Figure 2d, the CD and CP-PL spectra of independent blends prepared from either the left-handed -1-aza[6]helicene or the right-handed -1-aza[6]helicene give comparable but opposite responses.

Similar(56)

A comparison of the reductions for the B10 blend prepared from palm/coconut oil failed to show a consistent advantage over rapeseed oil for all of the PAHs examined.

It was shown that while phenoxy/PMMA blends prepared by casting from chloroform at room temperature are immiscible, the blends prepared at high temperature are miscible.

DSC showed that the PHES/PEO blends prepared by casting from N,N-dimethylformamide (DMF) possessed single, composition-dependent glass transition temperatures (Tgs), indicating that the blends are miscible in amorphous state.

The blends, prepared by casting from a dimethylformamide solution at 80°C and drying in vacuum at 80°C, heated from room temperature to 180°C at a rate of 10°C min−1, are miscible at 180°C when the PHB content is less than about 20 wt.% and almost immiscible when the PHB content is over 20 wt.%.

The PPAEK/PEO blends prepared by solution casting from N,N-dimethylformamide (DMF) displayed single composition-dependent glass transition temperatures (Tg), intermediate between those of the pure components, suggesting that the blend system is miscible in the amorphous state at all compositions.

The results indicated that PHB/PLA blends prepared by casting a film from a common solvent at room temperature were immiscible over the range of compositions studied, while the melt-blended sample prepared at high temperature showed some evidence of greater miscibility.

These results are similar to the results obtained from PLA/PBS blends prepared by either melt spinning technique (Jompang et al. 2013) or Haake RHeomix OS mixer (Deng & Thomas 2015).

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