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Accelerated climate aging of building materials and their characterization by Fourier transform infrared radiation analysis

机译:建材的加速气候老化及其通过傅里叶变换红外辐射分析的表征

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Building materials and their durability and aging are essential to the performance of buildings and their building physical aspects over time. Accelerated climate aging investigations are carried out in order to study the durability of various building materials in a substantial shorter time span than natural weather aging would have allowed. Climate parameters such as temperature that includes freezing/thawing cycles, relative air humidity, water spray amount, solar and/or ultraviolet (UV) radiation and exposure duration are controlled in different climate aging apparatuses. Various aging processes in building materials, aging both by natural and accelerated climate exposure, may be studied in an attenuated total reflectance (ATR) Fourier transform infrared (FTIR) radiation analysis following the decomposition and/or formation of chemical bonds in these building materials and products. ATR-FTIR analysis of different building material samples exhibit various levels of experimental difficulties. In this investigation we have studied the FTIR spectra of climate-weathered wood, wood rot, mold fungus on wood, mold fungus on plasterboard, and plastic degradation by UV radiation. Both qualitative and quantitative results may be obtained by an ATR-FTIR analysis. In order to determine the aging progress and assess the effective lifetime of materials, components, or products, FTIR spectra should be recorded before, during, and after the climate aging. Hence, FTIR may be developed as an important tool to track the condition of various materials, components, and products during the lifetime of a building, and thereby applied as a tool for condition assessment, selection of maintenance intervals, and service life prediction of buildings.
机译:随着时间的推移,建筑材料及其耐用性和老化对于建筑物的性能及其建筑物的物理方面至关重要。进行了加速的气候老化研究,目的是在比自然气候老化所允许的时间短得多的时间内研究各种建筑材料的耐久性。在不同的气候老化设备中控制气候参数,例如温度,包括冷冻/解冻循环,相对空气湿度,喷水量,太阳和/或紫外线(UV)辐射以及暴露持续时间。在这些建筑材料中分解和/或形成化学键后,可通过衰减全反射(ATR)傅立叶变换红外(FTIR)辐射分析研究建筑材料中各种老化过程,包括自然暴露和加速暴露。产品。不同建筑材料样品的ATR-FTIR分析显示出各种水平的实验困难。在这项调查中,我们研究了风化木材,木材腐烂,木材上的霉菌,石膏板上的霉菌以及紫外线辐射引起的塑料降解的FTIR光谱。定性和定量结果均可通过ATR-FTIR分析获得。为了确定老化进程并评估材料,组件或产品的有效寿命,应在气候老化之前,期间和之后记录FTIR光谱。因此,FTIR可能会发展成为跟踪建筑物生命周期中各种材料,组件和产品状况的重要工具,从而可以用作建筑物状态评估,维护间隔选择和使用寿命预测的工具。

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