Comprehensive kinetic numerical model for NR and high-cis poly-butadiene rubber blends

被引:0
|
作者
Milani G. [1 ]
Milani F. [2 ]
机构
[1] Technical University of Milan, Piazza Leonardo da Vinci 32, Milan
[2] Chem.Co Consultant, Via JF Kennedy 2, Occhiobello (Ro)
关键词
Rate constants - Rheometers - Curve fitting - Quadratic programming - Rubber - Constrained optimization - Polybutadienes - Ultraviolet visible spectroscopy - Kinetics;
D O I
10.3303/CET1757250
中图分类号
学科分类号
摘要
A simple but robust kinetic mathematical model to predict the mechanical/thermal behaviour of NR and high-cis polybutadiene rubber blends is presented. The benchmark blend is a 70% NR with 30% high-cis polybutadiene blend vulcanized in presence of sulphur at 1 phr and single accelerants TBSS or DPG at concentrations equal to 1-0 and 0-1 respectively. Experimental rheometer curves are at disposal for both the NR-PB blend and single NR/PB rubbers at 170°C and 180°C. Rheometer curves at 150°C are utilized as reversion free references to normalize experimental data. The numerical model is based on a modification of Han's kinetic approach, where a linear interaction between NR and PB is accounted for. The determination of kinetic constants is possible by means of a constrained minimization approach that uses Sequential Quadratic Programming and fits through standard least-squares normalized rheometer curves. The procedure is benchmarked on 1-1-0 and 1-0-1 concentrations of S-TBBS-DPG at 170°C and 180°C. Quite good agreement is found against experimental data, with values of kinetic constants addressing a reduction of vulcanization rate with respect to pure NR and a beneficial reversion decrease due to PB contribution. © Copyright 2017, AIDIC Servizi S.r.l.
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页码:1495 / 1500
页数:5
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