Chi Mingxiang, Shen Zhenzong, Chen Shibin, Yao Yunshi, Shen Jianjun, Li Chao, Yan Qingyao
Key Laboratory of Road Construction Technology and Equipment of MOE, Chang'an University, Xi'an, 710064, China.
Shandong Hi-Speed Engineering Construction Group Co., Ltd., Jinan, 250014, Shandong, China.
Sci Rep. 2023 Sep 14;13(1):15270. doi: 10.1038/s41598-023-41453-2.
In order to improve the toughness and flexibility of cement-stabilized macadam and inhibit crack formation and propagation, the influence of plastic aggregate geometry on the strength properties of cement-stabilized macadam is studied. The surface roughness of plastic aggregate was designed into Ra 12.5 and Ra 25. When the content of plastic coarse aggregate was gradually increased from 4 to 8%, 12%, 16%, 20%, and 24%, the compressive strength, splitting strength, and the tensile-compression ratio of the cement-stabilized macadam made of aggregate with rough surface texture were found higher than those of aggregate with smooth surface texture. The rough cylindrical, spherical, spindle, and dumbbell-shaped plastic coarse aggregates were designed and prepared for testing. The test results showed the maximum compressive strength, splitting strength, and tensile-compression ratio of cement-stabilized macadam with the dumbbell-shaped plastic coarse aggregate. The tensile-compression ratio increased by 15.2% compared to natural aggregate cement-stabilized macadam. The results show that under the same conditions, the plastic aggregate with different geometry can improve the compressive and splitting strengths of cement-stabilized macadam and significantly improve the toughness and flexibility, with dumbbell-shaped plastic coarse aggregate having the greatest improvement, especially compared with natural aggregate cement-stabilized crushed stone. This research provides insights for improving pavement engineering quality and new ideas for utilizing waste plastics.
为提高水泥稳定碎石的韧性和柔韧性,抑制裂缝的产生与扩展,研究了塑料集料几何形状对水泥稳定碎石强度性能的影响。将塑料集料的表面粗糙度设计为Ra 12.5和Ra 25。当塑料粗集料含量从4%逐渐增加到8%、12%、16%、20%和24%时,发现表面纹理粗糙的集料制成的水泥稳定碎石的抗压强度、劈裂强度和拉压比高于表面光滑的集料。设计并制备了粗糙的圆柱形、球形、纺锤形和哑铃形塑料粗集料用于试验。试验结果表明,采用哑铃形塑料粗集料的水泥稳定碎石的抗压强度、劈裂强度和拉压比最大。与天然集料水泥稳定碎石相比,拉压比提高了15.2%。结果表明,在相同条件下,不同几何形状的塑料集料能提高水泥稳定碎石的抗压强度和劈裂强度,并显著提高其韧性和柔韧性,其中哑铃形塑料粗集料的改善效果最大,尤其是与天然集料水泥稳定碎石相比。本研究为提高路面工程质量提供了思路,为废旧塑料的利用提供了新的理念。