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Temporal and spatial development of drying shrinkage cracking in cement-based materials

机译:水泥基材料干缩开裂的时空发展

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In optical microscopy and acoustic emission (AE) experiments, the development in time and space of drying shrinkage cracks in hardened cement paste and a cement composite containing mono-sized glass particles has been studied. The results indicate two types of restraint, i.e. self-restraint of the specimen/structure, and aggregate restraint. In plain cement paste cracks initially develop perpendicular to the drying surface, but may subsequently grow parallel to the drying surfaces. In composites containing glass particles, aggregate restraint causes continuous growth of micro-cracks. AE monitoring has revealed that drying shrinkage cracks develop almost instantaneously at the onset of drying. Several AE parameters elucidate the details of the process. The two techniques are complementary: AE monitoring is suitable for temporal development assessment, whereas optical microscopy is very well suited for measuring crack geometry.
机译:在光学显微镜和声发射(AE)实验中,研究了硬化水泥浆和包含单一尺寸玻璃颗粒的水泥复合材料中干燥收缩裂纹的时空发展。结果表明两种约束类型,即样本/结构的自约束和聚集约束。在普通水泥浆中,裂纹最初垂直于干燥表面发展,但随后可能平行于干燥表面生长。在含有玻璃颗粒的复合材料中,聚集的约束会导致微裂纹的持续增长。声发射监测表明,干燥收缩裂纹几乎在干燥开始时就出现了。几个AE参数阐明了过程的细节。两种技术是相辅相成的:AE监视适合于时间发展评估,而光学显微镜非常适合于测量裂纹的几何形状。

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