Zhang Xulong, Deng Zitong, Xu Wenlong, Jiang Liping, Xu Huixiang, Tang Qiufan, Zheng Qilong, Li Jizhen
Xi'an Modern Chemistry Research Institute, Xi'an 710000, China.
School of Material Science & Engineering, Beijing Institute of Technology, Beijing 100000, China.
Polymers (Basel). 2025 Jan 23;17(3):286. doi: 10.3390/polym17030286.
The effect of the process aid "OPS" on the rheological properties of hydroxyl-terminated polybutadiene propellant was investigated by formulating different components of high-solid-content slurry, and the change in slurry viscosity with shear rate, surface morphology of solid-phase particles, and contact angle of the relevant interfaces were characterized. The results showed that the polyalkene polyamine surfactant OPS could significantly reduce the apparent viscosity and enhance the rheological properties of the slurry, to up to a 30% reduction, and the effect was achieved by adjusting the interfacial properties of the aluminum powder and the binder system. With the addition of 0.1% OPS, the contact angle of the interface between the aluminum powder and the binder was obviously reduced, from 97° to 30°, and the wetting was significantly enhanced, so it was judged that the OPS was suitable for HTPB-based composite propellants.
通过配制不同组分的高固含量浆料,研究了工艺助剂“OPS”对端羟基聚丁二烯推进剂流变性能的影响,并对浆料粘度随剪切速率的变化、固相颗粒的表面形态以及相关界面的接触角进行了表征。结果表明,聚烯烃多胺表面活性剂OPS可显著降低浆料的表观粘度并增强其流变性能,降幅高达30%,且该效果是通过调节铝粉与粘结剂体系的界面性质实现的。添加0.1%的OPS后,铝粉与粘结剂之间界面的接触角明显减小,从97°降至30°,润湿性显著增强,因此判断OPS适用于以端羟基聚丁二烯为基础的复合推进剂。