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The role of ink-bottle pores in freeze-thaw damage of oolithic limestone

机译:墨水瓶毛孔在鲕状石灰石的冻融损伤中的作用

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摘要

Many natural building stones are altered when subjected to freeze-thaw (FT) cycles. On the one hand, the sensitivity of a material to FT damage has been quantified in the past by the existence of a material-specific critical water saturation. On the other hand, it was noticed that natural stones with a high volume of ink-bottle pores, normally hold a relatively large FT resistance. The relationship between the pore structure, the saturation and the FT resistance is however not well understood. In this paper, the influence of water content and the porosity on FT behaviour is investigated macroscopically with temperature and strain measurements, established techniques in FT related research, and X-ray computed microtomography (mu CT). Strain measurements performed on Savonnieres limestone samples clearly show an increasing expansion with increasing water content, with the existence of a critical water saturation level between 70 and 80%. Differential X-ray imaging on differently saturated limestone samples in an unfrozen and frozen state then aided in explaining the origin of this critical saturation degree. By draining water from surrounding micro-pores through cryo-suction, ink-bottle ooid voids served as expansion reservoirs. When the majority of the ooid voids is water saturated prior to freezing, these voids lose their expansion reservoir ability and damaging pressures arise when water freezes inside undrained micropores. These findings not only help to understand the FT resistance of this limestone, but also give insight in the general FT behaviour of materials with bi- or multimodal pore-size distributions. (C) 2020 Elsevier Ltd. All rights reserved.
机译:当受到冻融(FT)循环时,许多天然建筑石头被改变。一方面,过去通过存在物质特异性的临界水饱和度,过去已经量化了材料对FT损坏的敏感性。另一方面,注意到,具有大量墨水孔的天然石材通常保持相对大的FT电阻。然而,孔结构,饱和度和FT电阻之间的关系不太了解。本文在宏观和应变测量中研究了水含量和孔隙率对FT行为的影响,在FT相关研究中建立了技术和X射线计算的微观图(MU CT)。在Savonnieres LimeStone样品上进行的应变测量清楚地显示出含水量增加的膨胀越来越大,存在临界水饱和水平70%至80%。在不同饱和的石灰石样本上以未结晶和冷冻状态进行差分X射线成像,然后辅助解释这种关键饱和度的起源。通过通过冷冻吸入从周围的微孔中排出水,墨水瓶O形空隙用作膨胀储存器。当大多数随着在冷冻之前饱和的水饱和时,这些空隙失去了它们的膨胀储层能力,当水冻结在未加速的微孔内时出现破坏性压力。这些发现不仅有助于了解这款石灰石的FT电阻,而且还提供了具有双层或多模孔孔径分布的材料的一般FT行为的洞察力。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2020年第20期|118515.1-118515.12|共12页
  • 作者单位

    Univ Ghent Dept Geol UGCT PProGRess Krijgslaan 281-S8 B-9000 Ghent Belgium;

    Univ Ghent Dept Geol UGCT PProGRess Krijgslaan 281-S8 B-9000 Ghent Belgium|Univ Antwerp Antwerp Cultural Heritage Sci ARCHES Blindestr 9 B-2000 Antwerp Belgium;

    Univ Ghent Magnel Vandepitte Lab Dept Struct Engn & Bldg Mat Technol Pk Zwijnaarde 60 B-9052 Ghent Belgium;

    Univ Ghent Dept Geol UGCT PProGRess Krijgslaan 281-S8 B-9000 Ghent Belgium|Univ Utrecht Dept Earth Sci Princetonlaan 8a NL-3584 CB Utrecht Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Freeze-thaw weathering; Critical saturation; Pore-scale; Strain; X-ray computed micro-tomography;

    机译:冻融风化;关键饱和;孔隙尺度;应变;X射线计算的微型层面;

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