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首页> 外文期刊>Construction and Building Materials >Building pathology and environment: Weathering and decay of stone construction materials subjected to a Csa mediterranean climate laboratory simulation
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Building pathology and environment: Weathering and decay of stone construction materials subjected to a Csa mediterranean climate laboratory simulation

机译:建筑病理与环境:风化和腐烂的石材建筑材料经过CSA地中海气候实验室模拟

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摘要

Building stone materials have to satisfy long-term durability requirements in different environments in terms of mechanical strength and resistance to aggressive conditions. Several studies and field observations show that weathering on geo-materials is related to average annual precipitation and temperature.The decay also depends on salts air/soil concentrations and biological agents, but the more harmful impact is given by greenhouse gas (e.g. CO2, SOX, NOX, O-3). These last induce the acidification of the rain and runoff waters. Nowadays, decay prediction is required in order to estimate the behaviour of stone materials over time. This research represents a second part of a previous work where the response to weathering of some construction materials used in ancient and contemporary architecture and cultural heritage has been evaluated by a laboratory simulation of hot-summer Csa Mediterranean climate. Simulation consists of accelerate ageing test on climate chamber by reproducing macro (e.g. daily and seasonal cycles of temperature, relative humidity, CO2 air concentration) and micro (e.g. rain, soil capillary rising) environments. Some non-destructive testing were executed to evaluate some physical-mechanical "decay markers" before and after the ageing. Test caused both decreasing and increasing of Leeb D hardness, decreases of permeability and a general decrease of ultrasonic speed, mainly due to the formations of patinas, crusts and efflorescences on the surfaces.
机译:建筑用石材料必须满足的机械强度和耐侵蚀性条件方面在不同的环境下长期耐久性要求。一些研究和实地观察表明,风化的岩土材料有关,年平均降水量和temperature.The衰减还取决于盐空气/土壤浓度和生物制剂,但更多的有害影响是由温室气体给出的(如CO2,SOX ,NOX,O-3)。这些最后导致雨水和径流水的酸化。如今,衰变预测需要,以便估计随时间石材料的行为。这项研究代表了以前的工作,其中以古代和现代建筑和文化遗产使用的一些建筑材料的风化响应已由夏热交叉客户地中海气候的实验室模拟评估的第二部分。模拟由加速通过再现宏(例如每日和温度,相对湿度,CO2空气浓度的季节周期)和微(例如雨,土壤毛细上升)的环境中老化对气候室测试。一些非破坏性测试被执行前和老化后评估一些物理力学“衰变的标记”。试验既造成降低和里氏硬度d增加,降低渗透性和超声速度的一般降低,这主要是由于表面上的铜绿,结壳和efflorescences地层。

著录项

  • 来源
    《Construction and Building Materials》 |2021年第20期|124311.1-124311.12|共12页
  • 作者单位

    Univ Evora Inst Adv Studies & Res HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal|Univ Evora Sch Sci & Technol Geosci Dept Rua Romao Ramalho 59 P-7000671 Evora Portugal;

    Univ Evora Inst Adv Studies & Res HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal|Univ Evora Sch Sci & Technol Geosci Dept Rua Romao Ramalho 59 P-7000671 Evora Portugal;

    Univ Evora Inst Adv Studies & Res HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal|Univ Evora Sch Sci & Technol Geosci Dept Rua Romao Ramalho 59 P-7000671 Evora Portugal;

  • 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

    Ageing test; Weathering; Ultrasonic measurements; Leeb D hardness; Gas-driven permeability; mu-XRD diffraction; Hypothetical outdoor exposure;

    机译:老化试验;风化;超声波测量;LEEB D硬度;气体驱动的渗透率;MU-XRD衍射;假设的户外曝光;

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