Strąkowska Anna, Członka Sylwia, Kairytė Agnė
Institute of Polymer & Dye Technology, Lodz University of Technology, 90-924 Lodz, Poland.
Laboratory of Thermal Insulating Materials and Acoustics, Institute of Building Materials, Faculty of Civil Engineering, Vilnius Gediminas Technical University, Linkmenu st. 28, LT-08217 Vilnius, Lithuania.
Materials (Basel). 2020 Dec 2;13(23):5493. doi: 10.3390/ma13235493.
Rigid polyurethane (PUR) foams were reinforced with sugar beet pulp (BP) impregnated with Aminopropylisobutyl-polyhedral oligomeric silsesquioxanes (APIB-POSS). BP filler was incorporated into PUR at different percentages-1, 2, and 5 wt.%. The impact of BP filler on morphology features, mechanical performances, and thermal stability of PUR was examined. The results revealed that the greatest improvement in physico-mechanical properties was observed at lower concentrations (1 and 2 wt.%) of BP filler. For example, when compared with neat PUR foams, the addition of 2 wt.% of BP resulted in the formation of PUR composite foams with increased compressive strength (12%), greater flexural strength (12%), and better impact strength (~6%). The results of thermogravimetric analysis (TGA) revealed that, due to the good thermal stability of POSS-impregnated BP filler, the reinforced PUR composite foams were characterized by better thermal stability-for example, by increasing the content of BP filler up to 5 wt.%, the mass residue measured at 600 °C increased from 29.0 to 31.9%. Moreover, the addition of each amount of filler resulted in the improvement of fire resistance of PUR composite foams, which was determined by measuring the value of heat peak release (pHRR), total heat release (THR), total smoke release (TSR), limiting oxygen index (LOI), and the amount of carbon monoxide (CO) and carbon dioxide (CO) released during the combustion. The greatest improvement was observed for PUR composite foams with 2 wt.% of BP filler. The results presented in the current study indicate that the addition of a proper amount of POSS-impregnated BP filler may be an effective approach to the synthesis of PUR composites with improved physico-mechanical properties. Due to the outstanding properties of PUR composite foams reinforced with POSS-impregnated BP, such developed materials may be successfully used as thermal insulation materials in the building and construction industry.
刚性聚氨酯(PUR)泡沫用浸渍有氨丙基异丁基多面体低聚倍半硅氧烷(APIB-POSS)的甜菜浆(BP)进行增强。BP填料以不同百分比(1、2和5重量%)掺入PUR中。研究了BP填料对PUR的形态特征、力学性能和热稳定性的影响。结果表明,在较低浓度(1和2重量%)的BP填料下,物理机械性能有最大程度的改善。例如,与纯PUR泡沫相比,添加2重量%的BP导致形成的PUR复合泡沫具有更高的抗压强度(约12%)、更大的抗弯强度(约12%)和更好的冲击强度(约6%)。热重分析(TGA)结果表明,由于POSS浸渍的BP填料具有良好的热稳定性,增强的PUR复合泡沫具有更好的热稳定性——例如,将BP填料含量增加到5重量%时,在600℃下测得的质量残留率从29.0%增加到31.9%。此外,添加每种量的填料都导致PUR复合泡沫的耐火性提高,这是通过测量热释放峰值(pHRR)、总热释放(THR)、总烟雾释放(TSR)、极限氧指数(LOI)以及燃烧过程中释放的一氧化碳(CO)和二氧化碳(CO₂)的量来确定的。对于含有2重量%BP填料的PUR复合泡沫,观察到最大程度的改善。本研究给出的结果表明,添加适量的POSS浸渍的BP填料可能是合成具有改善的物理机械性能的PUR复合材料的有效方法。由于用POSS浸渍的BP增强的PUR复合泡沫具有优异的性能,如此开发的材料可成功用作建筑和建筑业中的隔热材料。