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The effects of porosity, asphalt content and fiberglass incorporation on the tensile strength and resilient modulus of asphalt concrete blends

机译:孔隙率,沥青含量和玻璃纤维掺入对沥青混凝土混合物拉伸强度和弹性模量的影响

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摘要

Asphalt concrete is the prevailing material used for road surface construction. Its adequate characteristics in providing stability, durability and driving safety are controlled by complex interactions between its components. Thus, it is important to estimate the sensitivity of asphalt concrete mechanical properties as a function of its volumetrics. For this study, different combinations between asphalt content (3.5, 5 and 7.5%) and porosity values (above 4%) were used in order to disassociate these properties. The influence of mixing in fiberglass (0.5%) was also analyzed. It was found that porosity is significantly more relevant than the asphalt content in the prediction of tensile strength and resilient modulus of fiber-free asphalt concretes. In fiber-reinforced mixtures, the mechanical properties are improved by increasing the asphalt content, which suggests a better bonding between fibers and aggregates. For both cases, decreasing porosity is beneficial. By grouping both sets of results, it was possible to create a unique theoretical curve for both the tensile strength (qt) and the resilient modulus (RM). The RM/qt ratio was 5800 for the fiber-free group, and 3900 for the fiber-reinforced group - suggesting a better fatigue life indicator for asphalt concretes when fibers are added.
机译:沥青混凝土是一种用于路面施工通行材料。它在提供稳定性,耐用性和行驶安全性充足的特点是由它的组件之间复杂的相互作用控制。因此,为了估计沥青混凝土的机械性能的灵敏度作为其体积测定的功能是重要的。在这项研究中,为了解除关联这些特性被用来沥青含量(3.5,5和7.5%)和孔隙度值(以上4%)之间的不同组合。在玻璃纤维(0.5%)混合的影响也进行了分析。结果发现,孔隙率显著比的拉伸强度和无纤维的沥青混凝土的回弹模量的预测的沥青含量更相关。在纤维增强的混合物,机械性能通过提高沥青含量,这表明纤维和骨料之间的更好的粘结改善。对于这两种情况,降低孔隙率是有益的。通过分组两组结果,有可能产生用于拉伸强度两者(QT)和弹性模量(RM)一个独特的理论曲线。将RM / QT比为5800的无纤维的基团,和3900的纤维增强基 - 意味着对沥青混凝土更好的疲劳寿命指示器被添加的纤维时。

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