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通过整合碱性氧气转炉(BOF)渣来提高橡胶沥青混合料的性能特性:关注静态和动态力学增强。

Advancing the performance characteristics of rubber asphalt mixtures through the integration of Basic Oxygen Furnace (BOF) slag: A focus on static and dynamic mechanical enhancements.

机构信息

Hebei Provincial Communications Planning, Design and Research Institute Co., Ltd, Shijiazhuang, Hebei, China.

Chang'an University, Xi'an, Shaanxi, China.

出版信息

PLoS One. 2024 Sep 18;19(9):e0310499. doi: 10.1371/journal.pone.0310499. eCollection 2024.

Abstract

To investigate the advantageous effects of incorporating industrial solid waste basic oxygen furnace (BOF) slag on the mechanical characteristics of warm-mixed rubber asphalt (WMRA) and hot-mixed rubber asphalt (HMRA) mixture, varying proportions of BOF slag were substituted for limestone coarse aggregates (0%, 25%, 50%, and 75%). Additionally, a 1.5% dosage of Sasobit warm-mixed modifier was introduced to prepare the rubber asphalt. Subsequent to preparation, both static mechanical tests (including Marshall and indirect tensile tests) and dynamic mechanical tests (including dynamic creep and elastic modulus tests) were conducted to evaluate the influence of BOF slag on the mechanical behavior of WMRA and HMRA mixtures across different substitution levels. Following testing, a two-way analysis of variance (ANOVA) was employed to dissect the impact of BOF slag content and Sasobit warm-mixed modifier on the static and dynamic mechanical properties of the rubber asphalt mixtures. The findings reveal that BOF slag exhibits commendable engineering aggregate properties, enabling substantial substitution of coarse aggregates in both HMRA and WMRA mixtures. As the proportion of BOF slag increases, it enhances the resistance of asphalt mixtures to permanent deformation and cracking under static and dynamic loading conditions, while broadening the range of elastic deformation for both WMRA and HMRA mixtures subjected to repeated loading. Moreover, a synergistic enhancement in the resistance of rubber asphalt mixtures to dynamic load-induced deformation is observed when employing both BOF slag and Sasobit warm-mixed modifier. The findings offer valuable insights for enhancing the performance of WMRA and HMRA mixtures, as well as broadening the utilization of BOF slag and waste rubber.

摘要

为了研究工业固体废物碱性氧气转炉(BOF)渣对温拌橡胶沥青(WMRA)和热拌橡胶沥青(HMRA)混合料力学特性的有利影响,用不同比例的 BOF 渣代替石灰岩粗集料(0%、25%、50%和 75%)。此外,还引入了 1.5%的 Sasobit 温拌改性剂来制备橡胶沥青。制备后,进行了静态力学试验(包括马歇尔和间接拉伸试验)和动态力学试验(包括动态蠕变和弹性模量试验),以评估 BOF 渣对 WMRA 和 HMRA 混合料在不同替代水平下的力学性能的影响。试验后,采用双因素方差分析(ANOVA)来剖析 BOF 渣含量和 Sasobit 温拌改性剂对橡胶沥青混合料静态和动态力学性能的影响。结果表明,BOF 渣具有良好的工程集料性能,能够大量替代 HMRA 和 WMRA 混合料中的粗集料。随着 BOF 渣比例的增加,它提高了沥青混合料在静态和动态荷载下抵抗永久变形和开裂的能力,同时拓宽了 WMRA 和 HMRA 混合料在反复加载下的弹性变形范围。此外,当同时使用 BOF 渣和 Sasobit 温拌改性剂时,橡胶沥青混合料抵抗动态荷载引起的变形的能力得到协同增强。研究结果为提高 WMRA 和 HMRA 混合料的性能以及拓宽 BOF 渣和废橡胶的利用提供了有价值的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8059/11410216/ba3a3d573bcf/pone.0310499.g001.jpg

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