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Crack Self-Healing Behavior of High Performance Fiber Reinforced Cement Composites Under Various Environmental Conditions

机译:各种环境条件下高效纤维水泥复合材料的裂纹自愈合行为

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In this research, the self-healing phenomenon of cracked High Performance Fiber Reinforced Cementitious Composites [HPFRCC] with two types of deformed high strength steel fibers was investigated under various environmental conditions such as water submersion, sea water and oil water. HPFRCC for the verification of self-healing capability were prepared following tensile test. Crack width was controlled by tensile test and then some specimens were fully pulled out in order to survey interfacial matrix damage. Morphology and the shape and size of precipitated particles in the cracks were examined by Digital 3D microscopy, SEM-EDS and TG-DTA. 3D X-ray microtomography (Micro CT) has been also used for the healing process after put-out test. The results show that most of the cracks (below 50 μm) were fully filled by newly-formed hydration products in short term period when re-cured in water after cracking. And then, self-healing capability of HPFRCC was largely dependent on the crack width. From these results, it is considered that HPFRCC also has a high potential for self-healing capability in some underwater structures.
机译:在本研究中,在各种环境条件下,研究了裂纹高效纤维增强水泥复合材料[HPFRCC]的裂纹高性能纤维增强水泥复合材料[HPFRCC],如水浸渍,海水和油水等各种环境条件研究。在拉伸试验后制备了用于验证自我愈合能力的HPFRCC。通过拉伸试验控制裂缝宽度,然后完全拔出一些样品以进行调查界面基质损伤。通过数字3D显微镜,SEM-EDS和TG-DTA检查裂缝中沉淀颗粒的形态和形状和尺寸。 3D X射线显微镜摄影(Micro CT)也用于施加试验后的愈合过程。结果表明,大部分裂缝(低于50μm)在裂化后在水中重新固化时,在短期内通过新成形的水合产物完全填充。然后,HPFRCC的自我愈合能力在很大程度上取决于裂缝宽度。从这些结果中,认为HPFRCC在一些水下结构中也具有高潜力的自我愈合能力。

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