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◆ International Journal of Pavement Engineering2026-07-31· Asphalt concrete

Investigation on local deformation and cracking characterisations of grouting asphalt concrete using digital image correlation

Mingxin Dai, Wei Wang, Yiqiu Tan, Yinfei Du, Xiaodong Yang

原始摘要(英文原文)· Original abstract
Grouting asphalt concrete (GAC) is a multiphase composite whose local deformation and cracking behaviour remains unclear. This study prepared GAC-13 by grouting cement-based grouting material (GM) into porous asphalt concrete (PAC-13), with AC-13 as the control. Two-dimensional digital image correlation (DIC) and indirect tensile testing were used to capture full-field displacement and strain evolution in the specimen and crack zone, aiming to clarify the cracking mechanism of GAC under indirect tensile loading. Compared with those of AC-13, the peak load and failure displacement of GAC-13 decreased by 20.7% and 66.8%, respectively, while the horizontal and vertical strains at the peak load decreased by 68.2% and 65.9%, respectively. GAC-13, cracks originated from the central region of the specimen and propagated upward and downward along the mortar–GM interface, whereas in AC-13, cracks initiated from the bottom-middle region and extended upward through the mortar. Both concretes exhibited a two-stage horizontal strain evolution, with the transition corresponding to the peak load. In GAC-13, asphalt mortar showed greater horizontal strain than the interface and GM, indicating that restricted mortar deformability and weak mortar–GM bonding govern its poor cracking resistance. These DIC-based findings provide a basis for optimizing the cracking resistance of GAC.
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