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The Contribution of Elastic Wave NDT to the Characterization of Modern Cementitious Media

机译:弹性波无损检测对现代水泥基介质表征的贡献

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摘要

To mitigate autogenous shrinkage in cementitious materials and simultaneously preserve the material’s mechanical performance, superabsorbent polymers and nanosilica are included in the mixture design. The use of the specific additives influences both the hydration process and the hardened microstructure, while autogenous healing of cracks can be stimulated. These three stages are monitored by means of non-destructive testing, showing the sensitivity of elastic waves to the occurring phenomena. Whereas the action of the superabsorbent polymers was evidenced by acoustic emission, the use of ultrasound revealed the differences in the developed microstructure and the self-healing of cracks by a comparison with more commonly performed mechanical tests. The ability of NDT to determine these various features renders it a promising measuring method for future characterization of innovative cementitious materials.
机译:为了减轻水泥质材料的自发收缩并同时保持材料的机械性能,混合物设计中包括了超吸收性聚合物和纳米二氧化硅。特定添加剂的使用会影响水化过程和硬化的微观结构,同时可以促进裂纹的自生愈合。这三个阶段通过无损检测进行监控,显示了弹性波对出现的现象的敏感性。尽管超吸收性聚合物的作用通过声发射证明,但超声波的使用通过与更常用的机械测试进行比较,揭示了发达的微观结构和裂纹自我修复的差异。 NDT能够确定这些各种特征的能力使其成为一种有前途的测量方法,可用于未来表征新型水泥材料。

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