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水性聚氨酯增强道路拆除废弃物用作道路基层的三轴力学性能及机理

Triaxial Mechanical Properties and Mechanism of Waterborne Polyurethane-Reinforced Road Demolition Waste as Road Bases.

作者信息

Lv Beifeng, Zhao Yinuo, Li Na, Yu Yanfei, Wu Yanting, Gu Miaojie

机构信息

School of Civil Engineering, Shaoxing University, Shaoxing 312000, China.

出版信息

Polymers (Basel). 2022 Jul 3;14(13):2725. doi: 10.3390/polym14132725.

Abstract

The recycling and reuse of construction waste have not only effectively protected natural resources but also promoted the sustainable development of the environment. Therefore, in this article, waterborne polyurethane (WPU) as a promising new polymer reinforcement material was proposed to reinforce the road demolition waste (RDW), and the mechanical performance of WPU-reinforced RDW (named PURD) was investigated using triaxial unconsolidated and undrained shear (UU) and Scanning Electron Microscope (SEM) tests. The results showed that under the same curing time and confining pressure, the shear strength of PURD increased with the increase in WPU content. When the WPU content was 6%, the WPU presented the best reinforcement effect on RA. The failure strain of PURD increased with the increase in confining pressure, but increased first and then reduced with the increase in WPU content. The specimens with 5% WPU content showed the best ductility. At the curing time of 7 and 28 days, the internal friction angle and cohesion of PURD increased with the increase in WPU content, and they reached a maximum when the WPU content was 6%. The internal friction angle barely budged, but the cohesion increased obviously. The enhancement effect of WPU was attributed to the spatial reticular membrane structure produced by wrapping and bonding particles with the WPU film. Microscopic analysis showed that with the increase in WPU content, the internal pore and crack size of PURD gradually decreased. As the WPU content increased, the WPU film became increasingly thicker, which increased the adhesion between WPU and RA particles and made the structure of PURD become increasingly denser.

摘要

建筑垃圾的回收再利用不仅有效保护了自然资源,还促进了环境的可持续发展。因此,在本文中,提出将水性聚氨酯(WPU)作为一种有前景的新型聚合物增强材料来增强道路拆除废弃物(RDW),并通过三轴不固结不排水剪切(UU)试验和扫描电子显微镜(SEM)试验研究了WPU增强RDW(命名为PURD)的力学性能。结果表明,在相同养护时间和围压下,PURD的抗剪强度随WPU含量的增加而提高。当WPU含量为6%时,WPU对RDW的增强效果最佳。PURD的破坏应变随围压的增加而增大,但随WPU含量的增加先增大后减小。WPU含量为5%的试样表现出最佳的延性。在养护7天和28天时,PURD的内摩擦角和黏聚力随WPU含量的增加而增大,当WPU含量为6%时达到最大值。内摩擦角变化不大,但黏聚力明显增加。WPU的增强作用归因于其通过WPU薄膜包裹和粘结颗粒形成的空间网状膜结构。微观分析表明,随着WPU含量的增加,PURD的内部孔隙和裂纹尺寸逐渐减小。随着WPU含量的增加,WPU薄膜变得越来越厚,这增加了WPU与RDW颗粒之间的黏附力,使PURD的结构变得越来越致密。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5660/9269553/8c283094cb60/polymers-14-02725-g001.jpg

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