Enhanced rate of formation of trigonal phase in blends of homogeneous isotactic propylene-1-hexene copolymers
Author:
Funder
National Science Foundation
Publisher
Elsevier BV
Subject
Polymers and Plastics,Materials Chemistry,Organic Chemistry
Reference59 articles.
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1. Role of polymorphism in solid-state production of double-melting expanded polypropylene beads;Polymer;2023-03
2. Effect of melt miscibility, polymorphism, and crystal morphology on tensile deformation of blends of isotactic polypropylene and propylene‐1‐hexene random copolymers;POLYMER CRYSTALLIZATION;2020-03-23
3. Mechanical properties and stress-induced polymorphic transformations of blends of random isotactic propylene-1-hexene copolymers;Polymer;2016-10
4. Trigonal δ form as a tool for tuning mechanical behavior in poly(propylene-co-1-pentene-co-1-heptene) terpolymers;Polymer;2016-09
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