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Infinite Teaching (R) In Collection and (R*) By Allegory and Conformity
Author(s) -
Ahmad Hedayatpanah Shaldehi,
AUTHOR_ID,
shaldehi Marziyeh hedayatpanah shaldehi,
Kolachahi Sabet Mohammad Taghi,
Mohammad Saeed hedayatpanah shaldehi,
AUTHOR_ID,
AUTHOR_ID,
AUTHOR_ID
Publication year - 2021
Publication title -
indian journal of advanced mathematics
Language(s) - English
Resource type - Journals
ISSN - 2582-8932
DOI - 10.54105/ijam.b1107.041121
Subject(s) - polyvinyl chloride , polymer , polyethylene , compatibility (geochemistry) , chlorinated polyvinyl chloride , polyolefin , solubility , materials science , vinyl chloride , high density polyethylene , hildebrand solubility parameter , polymer chemistry , chemical engineering , thermodynamics , chemistry , organic chemistry , composite material , physics , layer (electronics) , engineering , copolymer
In given work a scientific base compatibility of polymers, produced by industry have been studied by revealing of thermodynamically regularities of polymer mixtures. The most significant thermodynamic regularities of the mixtures of polyolefin , produced by industry and heterochained polymers have been revealed and on this base the scientific bases of their compatibility have been developed for creation of multicomponent compositional materials with given complex of operating properties. Key words: polymer-polymer mixtures, chlorinated polyethylene (CPE), polymethylmetaacrylate (PMMA), polyethylene of low density (PELD), chlorcarboxylated polyethylene of low density (CCPE) chlorinated PELD (CPE), polyvinyl chloride (PVC), criteria of compatibility, chlorination, upper and lower critical temperature, specific holding of volume, Qibbs mixing energy, parameter of solubility, distribution of macromolecules, chlorine-chlorocontaining polymers, polar groups, thermodynamically compatibility, sorbate, gas-carrier.

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