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   Polyisobutylene Solubility Model Using Hansen Solubility and Maple Software  
   
DOR 20.1001.2.0021079099.1400.8.1.162.2
نویسنده Rostami Mehran
منبع كنگره بين المللي رنگ و پوشش - 1400 - دوره : 8 - کنگره بین المللی رنگ و پوشش - کد همایش: 00210-79099 - صفحه:1 -1
چکیده    The solubility parameter is an important concept that can be used, among other applications, for the proper selection of solvents. both the total solubility parameter and its constituent partial solubility parameters (hansen solubility parameters) are widely used to choose suitable solvents for given solutes. the hansen solubility parameter (hsp) for polyisobutylene(pib) represented the use of maple software capabilities to analyze the polyisobutylene-solvent interaction in a set of 14 solvents with known solubility parameters. it illustrates the advantages of using maple to estimate hsp, predict the polymer-solvent miscibility as well as calculate the best estimate of the solubility parameters of pib and a pseudosphere in a 3d diagram around the hsp. maple software shows reliable calculation and data extraction regarding polymer-solvent interaction through hansen's solubility theory.
کلیدواژه Solubility Parameter ,Polyisobutylene(Pib) ,Maple Software
آدرس Institute For Colour Science And Technology, Iran, Institute For Colour Science And Technology, Department Of Nanomaterials And Nanocoatings, Iran, Institute For Colour Science And Technology, Iran, Institute For Colour Science And Technology, Iran
 
   Polyisobutylene Solubility Model Using Hansen Solubility and Maple Software  
   
Authors Rostami Mehran
Abstract    The solubility parameter is an important concept that can be used, among other applications, for the proper selection of solvents. Both the total solubility parameter and its constituent partial solubility parameters (Hansen solubility parameters) are widely used to choose suitable solvents for given solutes. The Hansen solubility parameter (HSP) for polyisobutylene(PIB) represented the use of Maple software capabilities to analyze the polyisobutylene-solvent interaction in a set of 14 solvents with known solubility parameters. It illustrates the advantages of using Maple to estimate HSP, predict the polymer-solvent miscibility as well as calculate the best estimate of the solubility parameters of PIB and a pseudosphere in a 3D diagram around the HSP. Maple software shows reliable calculation and data extraction regarding polymer-solvent interaction through Hansen's solubility theory.
Keywords solubility parameter ,polyisobutylene(PIB) ,Maple software
 
 

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