Irshidat Mohammad R, Al-Nuaimi Nasser, Rabie Mohamed
Center for Advanced Materials (CAM), Qatar University, P.O. Box 2713, Doha 00000, Qatar.
Materials (Basel). 2020 Jun 12;13(12):2676. doi: 10.3390/ma13122676.
This paper experimentally studied the effect of polypropylene (PP) microfibers on thermal and post-heating mechanical behaviors of cementitious composites. Cement mortars with small dosage of polypropylene fibers were prepared, heated at various temperatures (150 °C, 200 °C, 450 °C, and 600 °C), and then tested. The investigated parameters include residual compressive and flexural strengths, elastic modulus, fracture energy, stress intensity factors, failure modes, microstructure (scanning electron microscopy (SEM) imaging), thermal conductivity, heat flow (differential scanning calorimetry (DSC) test), mass loss (thermogravimetric analysis (TGA) test), and chemical composition (XRD analysis). The results showed the efficiency of PP fibers to enhance the post-heating behavior and the residual mechanical properties of cement mortar after heating. The presence of PP fibers did not affect the heat flow and the mass loss of cement mortar at room temperature. However, heating cement mortar at temperature beyond the melting point of the fibers negatively affected its thermal behavior. The presence of PP fibers played a major role in bridging the cracks and mitigating their propagation. Once the melting point of the polypropylene fibers is exceeded, the fibers melted and created extra voids in the microstructure of concrete.
本文通过实验研究了聚丙烯(PP)微纤维对水泥基复合材料热性能和加热后力学性能的影响。制备了添加少量聚丙烯纤维的水泥砂浆,在不同温度(150℃、200℃、450℃和600℃)下加热,然后进行测试。研究参数包括残余抗压强度和抗折强度、弹性模量、断裂能、应力强度因子、破坏模式、微观结构(扫描电子显微镜(SEM)成像)、热导率、热流(差示扫描量热法(DSC)测试)、质量损失(热重分析(TGA)测试)和化学成分(XRD分析)。结果表明,PP纤维能有效提高水泥砂浆加热后的性能和残余力学性能。PP纤维的存在不影响水泥砂浆在室温下的热流和质量损失。然而,将水泥砂浆加热到超过纤维熔点的温度会对其热性能产生负面影响。PP纤维的存在在弥合裂缝和减缓裂缝扩展方面起主要作用。一旦超过聚丙烯纤维的熔点,纤维就会熔化并在混凝土微观结构中产生额外的孔隙。