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首页> 外文期刊>Cement and Concrete Research >(105855)Review of fundamental assumptions of the Two-Phase model for aggregate interlocking in cracked concrete using numerical methods and experimental evidence
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(105855)Review of fundamental assumptions of the Two-Phase model for aggregate interlocking in cracked concrete using numerical methods and experimental evidence

机译:(105855)使用数值方法和实验证据对裂纹混凝土综合互锁的两相模型的根本假设的审查

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摘要

Aggregate interlocking allows transferring shear and normal stresses through open cracks, and is considered to significantly contribute to the force transfer in cracked concrete. The complex phenomenon depends on the roughness of cracked surfaces, where material protruding from one side may engage with the opposite one. Two-Phase models were established in the 1980s by Walraven to estimate the force transfer, distinguishing between cement matrix and spherical aggregates. The approach leads to good results but has several shortcomings. In this paper, the fundamental assumptions are reviewed using specific numerical and experimental investigations. Special tests respecting the geometrical assumptions are presented and the results compared with numerically calculated estimates. The model is extended to address some shortcomings and investigate the physical nature of the main parameters. Positive aspects of Two-Phase models and a number of limitations are highlighted, allowing a consistent step forward in the understanding of aggregate interlocking.
机译:聚集互锁允许通过开口裂缝转移剪切和正常应力,并且被认为显着促进裂纹混凝土中的力转移。复杂现象取决于裂化表面的粗糙度,其中从一侧突出的材料可以与相对的材料接合。通过Walraven在20世纪80年代建立了两相模型,以估计力转移,区分水泥基质和球形聚集体。这种方法会导致良好的结果,但有几个缺点。在本文中,使用特定数值和实验研究审查了根本假设。提出了尊重几何假设的特殊测试,结果与数值计算的估计相比。该模型扩展以解决一些缺点并调查主要参数的物理性质。突出显示两相模型和多个限制的正面,允许在理解聚合互锁方面向前一致。

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