Zhao Tieyong, Wang Chenjun, Zhang De, Yu Yanfei, Luo Jiale, Li Cuihong
School of Civil Engineering, Shaoxing University, Shaoxing 312000, China.
Tongchuang and Engineering Design Co., Ltd., Shaoxing 312000, China.
Polymers (Basel). 2024 Jan 30;16(3):374. doi: 10.3390/polym16030374.
In order to study the improvement effect of nano-clay and polypropylene fiber on the mechanical properties of recycled aggregates, unconfined compression tests and triaxial shear tests were conducted. The experimental results show that adding polypropylene fibers to recycled aggregates increases the unconfined compressive strength by 27% and significantly improves ductility. We added 6% nano-clay to fiber-reinforced recycled aggregates, which increased the unconfined compressive strength of the recycled aggregates by 49% and the residual stress by 146%. However, the ductility decreased. Under low confining pressures, with the addition of nano-clay, the peak deviatoric stress strength of the fiber-reinforced recycled aggregates first decreased and then increased. When the nano-clay content was 8%, this reached a maximum value. However, under high confining pressures, the recycled aggregate particles were tightly interlocked, so that the improvement effect of the fiber and nano-clay was not obvious. As more nano-clay was added, the friction angle of the fiber-reinforced recycled aggregates decreased, while the cohesion increased. When the content of nano-clay was 8%, the cohesive force increased by 110%. The results of this research indicate that adding both polypropylene fibers and nano-clay to recycled aggregates has a better improvement effect on their strength characteristics than adding only polypropylene fibers. This study can provide a reference for improving the mechanical properties of recycled aggregates and the use of roadbeds.
为研究纳米黏土和聚丙烯纤维对再生骨料力学性能的改善效果,进行了无侧限抗压试验和三轴剪切试验。试验结果表明,向再生骨料中添加聚丙烯纤维可使无侧限抗压强度提高27%,并显著改善延性。向纤维增强再生骨料中添加6%的纳米黏土,再生骨料的无侧限抗压强度提高了49%,残余应力提高了146%。然而,延性降低。在低围压下,随着纳米黏土的添加,纤维增强再生骨料的峰值偏应力强度先降低后升高。当纳米黏土含量为8%时,达到最大值。然而,在高围压下,再生骨料颗粒紧密联锁,使得纤维和纳米黏土的改善效果不明显。随着纳米黏土添加量的增加,纤维增强再生骨料的摩擦角减小,而黏聚力增大。当纳米黏土含量为8%时,黏聚力增加了110%。本研究结果表明,向再生骨料中同时添加聚丙烯纤维和纳米黏土对其强度特性的改善效果优于仅添加聚丙烯纤维。本研究可为改善再生骨料力学性能及路基应用提供参考。