热固性聚合物
材料科学
聚氨酯
气泡
发泡剂
复合材料
成核
聚合物
固化(化学)
过饱和度
有机化学
化学
并行计算
计算机科学
作者
Cosimo Brondi,Maria Rosaria Di Caprio,Ernesto Di Maio,Thomas Mosciatti,Sara Cavalca,Vanni Parenti,Salvatore Iannace
摘要
Abstract Thermosetting polyurethane foams are nowadays produced with typical bubble size, d > 150 μm, with plenty of room for improvement towards the cellular structure refinement, to gain, among others, in the thermal insulation performances. We herein report a first example of a microcellular thermosetting polyurethane foam, i. e. with bubble size below 5 μm, produced via the gas foaming technology. In particular, high-pressure CO 2 , N 2 and their mixtures were utilized as blowing agents: solubilized separately into the polymer precursors, they were brought into a supersaturated state by a pressure reduction to induce the bubble nucleation and growth. To achieve microcellular foams, we made use of a novel two-stage pressure reduction program, concurrent to the polymer curing. The first stage is a pressure quench O (10 –2 s) from the saturation pressure to an intermediate pressure to induce the nucleation of a large amount of dense bubbles. The second stage is a slow O (10 2 s) further pressure decrease to ambient pressure, allowing for a slow bubble growth, designed to reach ambient pressure exactly when the curing reached completion.
科研通智能强力驱动
Strongly Powered by AbleSci AI