Dual-scale study of pre-damage, water boundary conditions and frost interaction in concrete

IF 3.4 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY
Lang-Zi Chang, Katja Frid, Roland Kruse, Ralf Jänicke, Karin Lundgren
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Abstract

This study investigated the interactive effects of pre-damage, water boundary conditions, and internal frost damage on concrete at dual-scale. The pre-damage included pre-cracking, which has not been studied experimentally before, and pre-compressive damage. Concrete specimens underwent pre-damage and had varied water boundary conditions during Freeze-Thaw Cycles (FTC). At the macro-scale, wedge-splitting tests combined with Digital Image Correlation (DIC) were conducted to assess post-FTC strength and fracture behaviour. At the meso-scale, X-ray CT scanning was employed to identify internal crack patterns. Results reveal that at the macro-scale, significant interaction between pre-damage and frost damage reduced splitting tensile strength compared to the internal frost damage alone. Besides, increased water exposure during FTCs reduced both splitting tensile strength and compressive strength, with a less pronounced reduction in splitting tensile strength. It also led to a diffuse crack pattern and increased tensile ductility. At the meso-scale, specimens subjected to the interactive effects of pre-damage and internal frost damage exhibited cracks along aggregate-cement interfaces and within the cement paste. Reference specimens displayed no internal cracks, while specimens exposed to only FTCs showed only cracks along aggregate-cement interfaces. Full submersion of specimens during FTCs induced more internal cracks than solely water on top. These findings on the interactions between pre-damage, water boundary conditions, and internal frost damage offer insight into the causes of frost damage, vital for the design and assessment of concrete structures in frost-prone environments. Furthermore, the results of these dual-scale tests can be used as a test case for the development of upscaling numerical models describing heat transfer and frost degradation in concrete.

混凝土预损伤、水边界条件和霜冻相互作用的双尺度研究
本研究在双尺度下研究了预损伤、水边界条件和混凝土内部霜冻损伤的交互作用。预损伤包括未进行试验研究的预裂损伤和预压缩损伤。在冻融循环(FTC)过程中,混凝土试件经历了预损伤和不同的水边界条件。在宏观尺度上,楔形劈裂试验结合数字图像相关(DIC)来评估ftc后的强度和断裂行为。在细观尺度上,采用x射线CT扫描识别内部裂纹模式。结果表明,在宏观尺度上,与单独的内部冻损相比,预损伤和冻损之间存在显著的相互作用,降低了劈裂抗拉强度。此外,在FTCs过程中,增加的水暴露会降低劈裂抗拉强度和抗压强度,但劈裂抗拉强度的降低幅度较小。它还导致弥漫性裂纹模式和增加的拉伸延性。在细观尺度上,受预损伤和内部冻害共同作用的试件沿骨料-水泥界面和水泥浆体内部出现裂缝;参考试件未发现内部裂缝,而仅暴露于FTCs的试件仅出现骨料-水泥界面裂缝。试件完全浸没时产生的内部裂缝比单水浸没时产生的内部裂缝多。这些关于预损伤、水边界条件和内部霜冻损伤之间相互作用的发现,为了解霜冻损伤的原因提供了洞见,这对于易霜冻环境中混凝土结构的设计和评估至关重要。此外,这些双尺度试验的结果可以作为一个测试案例,用于开发描述混凝土传热和霜冻退化的升级数值模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Materials and Structures
Materials and Structures 工程技术-材料科学:综合
CiteScore
6.40
自引率
7.90%
发文量
222
审稿时长
5.9 months
期刊介绍: Materials and Structures, the flagship publication of the International Union of Laboratories and Experts in Construction Materials, Systems and Structures (RILEM), provides a unique international and interdisciplinary forum for new research findings on the performance of construction materials. A leader in cutting-edge research, the journal is dedicated to the publication of high quality papers examining the fundamental properties of building materials, their characterization and processing techniques, modeling, standardization of test methods, and the application of research results in building and civil engineering. Materials and Structures also publishes comprehensive reports prepared by the RILEM’s technical committees.
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