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作 者:李晓鹏[1] 刘广永[1] 徐正伟[1] 赵树高[1] Martin Hoch
机构地区:[1]青岛科技大学橡塑材料与工程教育部重点实验室,山东青岛266042 [2]Lanxess化学(中国)有限公司,上海200040
出 处:《合成橡胶工业》2015年第3期181-184,共4页China Synthetic Rubber Industry
摘 要:采用溶胀法和计算机HSPiP软件模拟测定了丁基橡胶(IIR)的三维溶度参数,并研究了三维溶度参数在确定相对能量差(RED)与溶胀比(q)的关系及建立Teas二维溶度参数图中的应用。结果表明,IIR的三维溶度参数δd、δp、δh分别为17.1,1.2,0.7 MPa1/2,根据Hansen模型计算得出IIR的一维溶度参数为17.16 MPa1/2,与溶胀法测试结果基本一致;IIR的q值随着RED的增大而减小,并在RED为1时出现拐点,此时溶剂由良溶剂转变为不良溶剂;在Teas二维溶度参数图中,位于IIR溶解区域内的溶剂为良溶剂,溶解区域外的为不良溶剂。The three-dimensional solubility parameters of butyl rubber (IIR) were determined by swelling method and HSPiP software simulation calculation, and the obtained three-dimensional solubility parameters were applied to deter- mination of relationship between relative energy difference (RED) and swelling ratio(q) and the establishment of Teas two-dimensional graph. The results showed that the three-di- mensional solubility parameters δd , δp, δh of IIR were 17. 1, 1.2, 0.7 MPa^1/2 respectively, the one-dimensional solubility parameter calculated by Hansen model was 17.16 MPa^1/2,which was consistent with that determined by swelling meth- od. With increasing RED, q value decreased and inflection appeared in the plot of q versus RED when the RED was 1, at which point, the solvents changed from good to poor. In Teas two-dimensional graph of IIR, the solvents in the soluble re- gion were good, and those outside the region poor.
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