通过半圆形弯曲法分析含有熟石灰的 SMA 混合物的断裂特性

IF 7.4 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY Construction and Building Materials Pub Date : 2024-09-18 DOI:10.1016/j.conbuildmat.2024.138353
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引用次数: 0

摘要

与传统混合料相比,石子胶结沥青(SMA)是一种由优质碎石、细集料、沥青粘结剂和大量矿物填料组成的复合混合物。它以耐久性和滚动阻力而闻名,主要用作交通繁忙的主干道的表面 "耐磨 "层,但在特定项目要求下也可用作粘结层。在这项研究中,我们调查了不同浓度的熟石灰部分替代石灰石填料对 10 毫米 SMA 混合物的机械和抗裂特性的影响。半圆形弯曲(SCB)试验是了解开裂机理的关键,我们采用该试验来评估混合物对这种困境类型的性能响应。混合料的芯材采用花岗岩集料、石灰石填料作为天然填料、熟石灰作为天然填料替代品以及 30/45 贯入度的沥青类型。除了不含熟石灰的对照混合料外,还对按集料重量计含有 1.1%、2.2% 和 3.4% 熟石灰的混合料进行了评估。比较混合物时考虑的因素包括:混合物的荷载和变形曲线、刚度、断裂韧性、断裂能和柔性指数。实验程序还包括一组不同的测试温度(0°C、10°C 和 20°C),以更好地了解开裂机理。实验结果表明,混合物的性能与 HL 浓度和试验温度有很大关系。确切地说,实验发现,水合石灰含量最高(3.4%)的混合料在 0°C 和 20°C 时的开裂性能最好,因此是合适的填料替代浓度。然而,在 10°C 时,水合石灰含量为 2.2% 的混合料表现出最稳定的整体性能,这表明沥青混合料的抗裂性能有了重要改善。总之,SCB 试验方法得出的这些结论证实了熟石灰填料替代物在不同温度条件和加载制度下优化 SMA 混合物开裂性能和耐久性的潜在好处。
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Fracture characteristics of SMA mixtures with hydrated lime through the semi-circular bending approach

Stone Mastic Asphalt (SMA) is a composite mixture made up of high-quality crushed stone, fine aggregates, an asphalt binder, and a significant percentage of mineral filler in contrast to conventional mixtures. Renowned for its durability and rolling resistance, it is predominantly employed as a surface “wearing” course on main roads subjected to heavy traffic, but it can also be used as a binder course under specific project requirements. In this study, we investigated the effect of hydrated lime as a partial replacement of limestone filler at various concentrations on the mechanical and cracking resistance characteristics of 10-mm SMA mixtures. The semi-circular bending (SCB) test, which is pivotal for understanding the cracking mechanism was used to assess the mixtures performance-related response to this distress type. The mixture cores were produced with granite aggregates, limestone filler as natural filler, hydrated lime as natural filler replacement, and a 30/45 penetration asphalt type. Mixtures containing 1.1 %, 2.2 %, and 3.4 % of hydrated lime by weight of aggregates were evaluated, in addition to a control mixture without hydrated lime. The factors considered for comparing the mixtures included: load and deformation curves, stiffness, fracture toughness, fracture energy, and flexibility index of the mixtures. The experimental program also comprised a set of various test temperatures (0°C, 10°C, and 20°C) to better understand the cracking mechanism. Experimental results indicated a significant performance-dependency on the HL concentration and the test temperature. Precisely, it was found that the mixture with the highest hydrated lime content (3.4 %) exhibited the best cracking performance at 0°C and 20°C, making it a suitable filler replacement concentration. However, at 10°C, the mixture containing 2.2 % hydrated lime showed the most consistent performance overall, suggesting and important improvement in asphalt mixtures’ cracking resistance. Overall, these findings obtained from the SCB test approach substantiate the potential benefit of hydrated lime filler replacement in optimizing the cracking performance and durability of SMA mixtures under varying temperature conditions and loading regimes.

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来源期刊
Construction and Building Materials
Construction and Building Materials 工程技术-材料科学:综合
CiteScore
13.80
自引率
21.60%
发文量
3632
审稿时长
82 days
期刊介绍: Construction and Building Materials offers an international platform for sharing innovative and original research and development in the realm of construction and building materials, along with their practical applications in new projects and repair practices. The journal publishes a diverse array of pioneering research and application papers, detailing laboratory investigations and, to a limited extent, numerical analyses or reports on full-scale projects. Multi-part papers are discouraged. Additionally, Construction and Building Materials features comprehensive case studies and insightful review articles that contribute to new insights in the field. Our focus is on papers related to construction materials, excluding those on structural engineering, geotechnics, and unbound highway layers. Covered materials and technologies encompass cement, concrete reinforcement, bricks and mortars, additives, corrosion technology, ceramics, timber, steel, polymers, glass fibers, recycled materials, bamboo, rammed earth, non-conventional building materials, bituminous materials, and applications in railway materials.
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