2022eXPRESS Polymer LettersOpen access

On isotactic polypropylene annealing: Difference in final properties of neat and β-nucleated polypropylene

Lenka Gajzlerová, Jana Navrátilová, Sona Zenzingerova, David Jaška, Lubomír Beníček, Michal Kudláček, Roman Čermák, Martin Obadal

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Abstract

The effect of isotactic polypropylene (iPP) molecular weight and thermal treatment on final crystalline structure and mechanical properties were investigated by X-ray scattering, differential scanning calorimetry, tensile testing, and scanning electron microscopy.Neat and β-nucleated isotactic polypropylene were subjected to annealing above melting temperature of β-phase but still below melting temperature of α-phase, which caused both improvement of α crystallites and β to α-recrystallization, in case of nucleated material.As a consequence, the final mechanical properties like tensile strength and stiffness improved significantly.The increase is much more pronounced in the case of β to α-transformed materials with lower molecular weight.This phenomenon can also be attributed to the partial preservation of the specific structure of the amorphous phase present in β-nucleated polypropylene, in addition to the perfection of the crystalline phase.The amorphous phase comprises many interconnecting chains passing through several lamellae whereby providing a long-range effect.

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The effect of isotactic polypropylene (iPP) molecular weight and thermal treatment on final crystalline structure and mechanical properties were investigated by X-ray scattering, differential scanning calorimetry, tensile testing, and scanning electron microscopy.Neat and β-nucleated isotactic polypropylene were subjected to annealing above melting temperature of β-phase but still below melting temperature of α-phase, which caused both improvement of α crystallites and β to α-recrystallization, in case of nucleated material.As a consequence, the final mechanical properties like tensile strength and stiffness improved significantly.The increase is much more pronounced in the case of β to α-transformed materials with lower molecular weight.This phenomenon can also be attributed to the partial preservation of the specific structure of the amorphous phase present in β-nucleated polypropylene, in addition to the perfection of the crystalline phase.The amorphous phase comprises many interconnecting chains passing through several lamellae whereby providing a long-range effect.

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Available abstract

The effect of isotactic polypropylene (iPP) molecular weight and thermal treatment on final crystalline structure and mechanical properties were investigated by X-ray scattering, differential scanning calorimetry, tensile testing, and scanning electron microscopy.Neat and β-nucleated isotactic polypropylene were subjected to annealing above melting temperature of β-phase but still below melting temperature of α-phase, which caused both improvement of α crystallites and β to α-recrystallization, in case of nucleated material.As a consequence, the final mechanical properties like tensile strength and stiffness improved significantly.The increase is much more pronounced in the case of β to α-transformed materials with lower molecular weight.This phenomenon can also be attributed to the partial preservation of the specific structure of the amorphous phase present in β-nucleated polypropylene, in addition to the perfection of the crystalline phase.The amorphous phase comprises many interconnecting chains passing through several lamellae whereby providing a long-range effect.

Key concepts: Tacticity, Materials science, Polypropylene, Differential scanning calorimetry, Annealing (glass), Amorphous solid, Composite material, Ultimate tensile strength

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