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Characterization of ferrocement slab panels containing lightweight expanded clay aggregate using digital image correlation technique

机译:使用数字图像相关技术表征包含轻质膨胀黏土骨料的钢筋混凝土平板

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Ferrocement slab panels (FSPs) are thin-walled elements with appropriate strength, hardness, durability and lightness. The flexural behavior of FSPs has been investigated in this study. Specifically, 12 FSPs containing three expanded rib lath layers (i.e. one, two and three) and four volume contents of lightweight expanded clay aggregate (leca) (40, 20, 10 and 0 vol%) were constructed and exposed to three-point flexural test. Digital image correlation (DIC) technique as a full-field approach was used for measuring displacements and strains of the FSPs and the results were compared with those obtained from the displacement sensors. The cracking behavior of the FSPs was also evaluated using the DIC technique. The microstructure of the mortar of FSPs was finally investigated using scanning electron microscopy (SEM) imaging along with energy dispersive spectroscopy (EDS) analysis. The DIC results show that as the mesh volume fraction increases, the flexural capacity (about 14-70%), ductility index (about 924%), energy absorption (about 16-107%) and number of cracks increase but the length and width of cracks decrease. The DIC results also indicate that incorporating 10% leca leads to the highest increase of energy absorption (about 48%), ductility index (about 26%) and crack width (about 106%) of the FSPs. The results of microstructural analysis show that incorporating super-plasticizer admixture can decrease the total porosity of mixtures (by about 29-79%). (C) 2018 Elsevier Ltd. All rights reserved.
机译:铁框墙面板(FSP)是具有适当强度,硬度,耐用性和轻度的薄壁构件。在这项研究中已经研究了FSP的弯曲行为。具体地,构造了包含三个膨胀肋条带层(即一,二和三)和四个体积含量的轻质膨胀黏土骨料(leca)(40、20、10和0 vol%)的12个FSP,并将其暴露于三点弯曲测试。使用数字图像相关(DIC)技术作为全场方法来测量FSP的位移和应变,并将结果与​​从位移传感器获得的结果进行比较。还使用DIC技术评估了FSP的开裂行为。最后,使用扫描电子显微镜(SEM)成像和能量色散光谱(EDS)分析研究了FSP砂浆的微观结构。 DIC结果表明,随着网孔体积分数的增加,抗弯承载力(约14-70%),延性指数(约924%),能量吸收(约16-107%)和裂缝数量增加,但长度和宽度裂纹减少。 DIC结果还表明,掺入10%的leca可使FSP的能量吸收(约48%),延展性指数(约26%)和裂缝宽度(约106%)增加最多。微观结构分析的结果表明,掺入高效减水剂混合物可以降低混合物的总孔隙率(约29-79%)。 (C)2018 Elsevier Ltd.保留所有权利。

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