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Durability assessments of limestone mortars containing polypropylene fibres waste

机译:含有聚丙烯纤维废物的石灰石砂浆的耐久性评估

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摘要

The main objective of this study is the assessment of the ability of limestone mortars to resist to different chemical attacks. The ability of polypropylene (PP) fibres waste used as reinforcement of these concrete materials to enhance their durability is also studied. Crushed sand 0/2 mm which is a fine limestone residue obtained by the crushing of natural rocks in aggregates industry is used for the fabrication of the mortar. The fibres used, which are obtained from the waste of domestic plastic sweeps' fabrication, have a length of 20 mm and a diameter ranging between 0.38 and 0.51 mm. Two weight fibres contents are used, 0.5 and 1%. The durability tests carried out in this investigation included the water absorption by capillarity, the mass variation, the flexural and the compressive strengths of the mortar specimens immersed for 366 days in 5% sodium chloride, 5% magnesium sulphate and 5% sulphuric acid solutions. A mineralogical analysis by X-ray diffraction (XRD) and a visual inspection are used for a better examination of the quality of tested mortars and for better interpretation of their behaviour in different solutions. The results indicate that the reinforcement of limestone mortar by PP fibres waste is an excellent solution to improve its chemical resistance and durability. Moreover, the presence of PP fibres waste does not affect significantly the water absorption by capillarity of mortar nether its mass variation, when exposed to chloride and sulphate solutions. While in sulphuric acid, the mass loss is higher with the presence of PP fibres waste, especially after an exposure of 180 days. The results reveal that these fibres have a considerable effect of the flexural and the compressive behaviour of mortar especially in acid solution, where a reduction of strength loss is observed. The mineralogical analysis confirms the good behaviour of mortar immersed in sulphate and chloride solutions; and shows that more gypsum is formed in mortar exposed to acid environment causing its rapid degradation. The visual observation reveals that only samples exposed to acid attack during 366 days have showed a surface damage extending over a depth of approximately 300 mu m.
机译:本研究的主要目的是评估石灰石砂浆抵抗不同化学攻击的能力。还研究了聚丙烯(PP)纤维废料作为这些混凝土材料的加强来增强其耐用性的能力。被粉碎的沙子0/2 mm是通过粉碎聚集体工业中的天然岩石获得的精细石灰石残留物用于制造砂浆。使用的纤维从国内塑料扫掠的制造中获得的,长度为20mm,直径在0.38和0.51mm之间。使用两种重量纤维含量,0.5和1%。本研究中进行的耐久性试验包括毛细血管的吸水,质量变化,砂浆样品的抗弯强度浸入5%氯化钠,5%硫酸镁和5%硫酸溶液中的366天。通过X射线衍射(XRD)和视觉检查的矿物学分析用于更好地检查测试迫击炮的质量,并更好地解释他们在不同解决方案中的行为。结果表明,PP纤维废物的石灰石砂浆的增强是改善其耐化学性和耐久性的优异溶液。此外,当暴露于氯化物和硫酸盐溶液时,PP纤维废物的存在不会显着影响砂浆阻力的毛细血管的吸水性。在硫酸中,随着PP纤维废物的存在,质量损失较高,特别是在暴露180天后。结果表明,这些纤维对砂浆的弯曲和压缩行为具有相当大的效果,特别是在酸溶液中,其中观察到强度损失的降低。矿物学分析证实砂浆浸入硫酸盐和氯化物溶液的良好行为;并且表明,在暴露于酸环境的砂浆中形成更多的石膏,导致其快速降解。视觉观察显示,只有在366天内暴露于酸侵蚀的样品已经显示出在大约300μm的深度上延伸的表面损伤。

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