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Multi-Scale Structural Assessment of Cellulose Fibres Cement Boards Subjected to High Temperature Treatment

机译:高温处理纤维素纤维水泥板的多尺度结构评估

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摘要

The methodology of multi-scale structural assessment of the different cellulose fibre cement boards subjected to high temperature treatment was proposed. Two specimens were investigated: Board A (air-dry reference specimen) and Board B (exposed to a temperature of 230 °C for 3 h). At macroscale all considered samples were subjected to the three-point bending test. Next, two methodologically different microscopic techniques were used to identify evolution (caused by temperature treatment) of geometrical and mechanical morphology of boards. For that purpose, SEM imaging with EDS analysis and nanoindentation tests were utilized. High temperature was found to have a degrading effect on the fibres contained in the boards. Most of the fibres in the board were burnt-out, or melted into the matrix, leaving cavities and grooves which were visible in all of the tested boards. Nanoindentation tests revealed significant changes of mechanical properties caused by high temperature treatment: “global” decrease of the stiffness (characterized by nanoindentation modulus) and “local” decrease of hardness. The results observed at microscale are in a very good agreement with macroscale behaviour of considered composite. It was shown that it is not sufficient to determine the degree of degradation of fibre-cement boards solely on the basis of bending strength; advanced, microscale laboratory techniques can reveal intrinsic structural changes.
机译:提出了对不同纤维素纤维水泥板进行高温处理的多尺度结构评估方法。研究了两个样品:A板(风干参考样品)和B板(暴露于230°C的温度3小时)。在宏观上,所有考虑的样品都经过了三点弯曲测试。接下来,使用两种在方法上不同的微观技术来确定木板的几何和机械形态的演变(由温度处理引起)。为此,利用了具有EDS分析和纳米压痕测试的SEM成像。发现高温会对板中所含的纤维产生降解作用。板上的大多数纤维都被烧尽或熔化成基质,留下了在所有测试板上可见的空腔和凹槽。纳米压痕测试表明,高温处理会导致机械性能发生重大变化:刚度“整体”降低(以纳米压痕模量为特征),硬度“局部”降低。在微观尺度上观察到的结果与所考虑的复合材料的宏观尺度行为非常吻合。结果表明,仅根据弯曲强度来确定纤维水泥板的降解程度是不够的。先进的微型实验室技术可以揭示内在的结构变化。

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