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The best blend was found at a ratio of 1 2 (lime to iron waste) by mass.
If the content was larger than a critical value, the blend was found to phase-separate.
Increased toughness of the PET/NR blend was found as the amount of NR was increased.
The 30/70 PP/NBR blend was found to exist as a co-continuous system.
Orientation of PVPh and PET in the blend was found equivalent to that observed in pure polymers simulations.
As expected, the ability of the antioxidant to prevent degradation of the PVME within the blend was found to increase with increasing Santonox composition.
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But has the right blend been found?
The mechanical properties of the HSBR/LDPE blend were found to be superior.
For the studied conditions of high salinity and high temperature, foaming agents of the amphoteric family as well as one manufacturer proprietary surfactants blend were found suitable in terms of salt tolerance and foam stability.
The physical and mechanical properties of the 20% MD replacement blend were found to meet the requirement of local road authority for engineering fill materials while the 50% MD replacement blend was at the borderline for a subbase course material.
The calculated differences between δ (i.e., Δ δ) values of PCZ and Sol-surfactant blend were found to be in the range 2.67 4.5 MPa1/2, being less than 7 MPa1/2 indicating likely miscibility.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com