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3D full field study of drying shrinkage of foam concrete

机译:泡沫混凝土干燥收缩的3D全面研究

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Drying shrinkage (DS) of concrete is important. The graded and heterogeneous DS inside the concrete may lead to cracking and further deteriorate the mechanical and durability properties. To elaborate the drying gradient and deformation heterogeneity, the full field DS distributions of foam concrete have been studied using an expanded Digital Volume Correlation method, which has a high precision of 0.01 voxel (about 0.6 mu m) in displacement. The effectiveness of DS in local sub-volume is verified from bulk shrinkage of the whole specimen. The DS gradient due to drying is clearly revealed, and DS heterogeneity in spatial domain and in frequency domain is identified. A full view of foam concrete's drying processes is built. At the middle drying stage, three different states exist simultaneously, especially a drying front arises with high drying shrinkage. (C) 2017 Published by Elsevier Ltd.
机译:混凝土的干燥收缩(DS)很重要。 混凝土内的分级和异构DS可能导致破裂并进一步恶化机械和耐久性。 为了详细说明干燥梯度和变形异质性,已经使用扩展的数字体积相关方法研究了泡沫混凝土的全场DS分布,其在位移中具有0.01 voxel(约0.6μm)的高精度。 从整个样本的散装收缩验证了DS在局部亚体积中的有效性。 明显揭示了由于干燥引起的DS梯度,并且鉴定了空间结构域和频域中的DS异质性。 建造了泡沫混凝土干燥工艺的全视图。 在中间干燥阶段,同时存在三种不同的状态,特别是干燥前的干燥前率高。 (c)2017年由elestvier有限公司出版

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