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通过耗散橡胶粉的机械能提高硬质聚氨酯泡沫的疲劳性能。

Enhancing the Fatigue Properties of Rigid Polyurethane Foam by Dissipating the Mechanical Energy of Rubber Powder.

作者信息

Ju Jinlong, Yang Nana, Zhang Yifei, Yu Lei, Ma Guolu, Wu Wenhua

机构信息

College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China.

Aerospace Technology Institute, China Aerodynamics Research and Development Center, Mianyang 621000, China.

出版信息

Polymers (Basel). 2025 Mar 6;17(5):705. doi: 10.3390/polym17050705.

Abstract

Rigid polyurethane-based foam is an ideal choice for sandwich-panel-filling materials due to its high strength, low thermal conductivity, high adhesion, and high chemical resistivity. Since sandwich panel materials often face cyclic mechanical loads during their service, it is significant to study the design methods of fatigue-resistant rigid polyurethane foam and its fatigue failure mechanism to improve the performance of sandwich-panel-filling materials. In this study, a fatigue-resistant rubber powder/polyurethane composite material was prepared by introducing rubber powder, and its fatigue failure mechanism was systematically studied. The static mechanical test results indicate that with the introduction of 20% rubber powder, the compressive strength (at 85% strain) increased to 588 kPa. Additionally, thanks to the excellent energy absorption and dissipation properties of rubber powder, it can effectively dissipate mechanical energy during cyclic loading. The fatigue test results show that after the introduction of rubber powder, the fatigue life of the polyurethane foam material increases from 10,258 cycles (for PU, stress ratio 0.6) to 45,987 cycles (for 20R-PU, stress ratio 0.6). This study not only proves the fact that rubber powder can improve the fatigue performance of foam materials but also provides a potential option for the design of high-performance filling materials.

摘要

硬质聚氨酯基泡沫材料因其高强度、低导热性、高附着力和高化学抗性,是夹芯板填充材料的理想选择。由于夹芯板材料在使用过程中经常面临循环机械载荷,研究抗疲劳硬质聚氨酯泡沫的设计方法及其疲劳失效机制对于提高夹芯板填充材料的性能具有重要意义。在本研究中,通过引入橡胶粉制备了一种抗疲劳橡胶粉/聚氨酯复合材料,并对其疲劳失效机制进行了系统研究。静态力学测试结果表明,引入20%橡胶粉后,抗压强度(在85%应变下)提高到588 kPa。此外,由于橡胶粉具有优异的能量吸收和耗散性能,它能够在循环加载过程中有效耗散机械能。疲劳测试结果显示,引入橡胶粉后,聚氨酯泡沫材料的疲劳寿命从10258次循环(对于PU,应力比0.6)增加到45987次循环(对于20R-PU,应力比0.6)。本研究不仅证明了橡胶粉能够提高泡沫材料疲劳性能这一事实,还为高性能填充材料的设计提供了一种潜在选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1ba/11902567/3abf0ec74f24/polymers-17-00705-g001.jpg

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