为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO...为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO)中的N C双键变单键和羟基O—H断开,形成新化学键(—HNCOO—)生成氨基甲酸酯;HT-PB与TDI是一个自发进行的固化反应;HTPB-TDI固化体系的力学性能得到了改善,为HTPB-TDI固化研究提供了一种切实可行的新方法。展开更多
Controlled release of TDI and hence the cure characteristics of several blocked TDI with HTPB are reported. The reactions were followed through viscosity measurements as a function of time and temperature under the ca...Controlled release of TDI and hence the cure characteristics of several blocked TDI with HTPB are reported. The reactions were followed through viscosity measurements as a function of time and temperature under the catalytic influence of triethylamine. The effect of nature of substituents present on the end capping substrate, temperature, solvent, basicity of catalyst and kinetics thereon have been studied.展开更多
文摘为了提供固化反应的微观信息,运用Materials Studio 4.2分子模拟软件,构建HTPB和TDI分子模型,对HTPB和TDI固化进行分子动力学(MD)和合成(Synthia)模拟。分析了固化体系的构型、键长、X-射线散射图谱和弹性模量,结果表明,氰酸酯基(—NCO)中的N C双键变单键和羟基O—H断开,形成新化学键(—HNCOO—)生成氨基甲酸酯;HT-PB与TDI是一个自发进行的固化反应;HTPB-TDI固化体系的力学性能得到了改善,为HTPB-TDI固化研究提供了一种切实可行的新方法。
文摘Controlled release of TDI and hence the cure characteristics of several blocked TDI with HTPB are reported. The reactions were followed through viscosity measurements as a function of time and temperature under the catalytic influence of triethylamine. The effect of nature of substituents present on the end capping substrate, temperature, solvent, basicity of catalyst and kinetics thereon have been studied.