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Physical and mechanical properties of durable sisal fiber-cement composites

机译:剑麻纤维水泥复合材料的物理和力学性能

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Sisal fiber-cement composites reinforced with long unidirectional aligned fibers were developed and their physical-mechanical behavior was characterized in the present study. Flat and corrugated sheets were cast by a manual lay-out of the fibers in a self-compacted cement matrix and compressed with a pressure of 3 MPa. Direct tensile and bending tests were performed to determine the first crack, post-peak strength and toughness of the composites. Drying shrinkage, capillary water absorption and water tightness tests were performed to characterize the physical properties of the composites. To ensure the composite durability, the ordinary Portland cement matrix was modified by adding metakaolin and calcined waste crushed clay brick to consume the calcium hydroxide generated during Portland cement hydration. The durability of the newly developed composite was determined through accelerated aging conditions using the hot-water immersion test. The developed material presented a multiple cracking behavior under bending, even when subjected to 6 months of hot-water immersion under 60 ℃. Scanning Electron Microscopy was used to investigate the micro-structure of the composites before and after aging.
机译:研究了长单向取向纤维增强的剑麻纤维水泥复合材料,并对其物理力学行为进行了表征。通过在自密实的水泥基体中手动铺放纤维来铸造平整的和波纹状的板,并在3 MPa的压力下进行压缩。进行直接拉伸和弯曲测试,以确定复合材料的第一裂纹,峰后强度和韧性。进行干燥收缩,毛细管吸水和水密性测试以表征复合材料的物理性质。为了确保复合材料的耐久性,普通硅酸盐水泥基质通过添加偏高岭土和煅烧的废碎粘土砖进行改性,以消耗硅酸盐水泥水化过程中产生的氢氧化钙。新开发的复合材料的耐久性是通过使用热水浸泡试验加速老化条件来确定的。即使在60℃的热水中浸泡6个月,该材料在弯曲下也表现出多重开裂行为。用扫描电子显微镜研究了老化前后复合材料的微观结构。

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