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Development of flaw tolerant fiber reinforced cementitious composites with calcined kaolin

机译:煅烧高岭土耐缺陷纤维增强水泥基复合材料的研制

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摘要

Flaws naturally occur in the structure of the cementitious composites or concrete. When brittle composites (ceramics, concrete) are loaded up to their ultimate capacity, micro-cracks initiate and propagate from these flaws in a sudden manner. As an exception, Engineered Cementitious Composite (ECC) surprisingly has an ability to transform its flaw structure into an advantage by exhibiting multiple cracking behavior with improved mechanical properties. On the other hand, presence of polymeric fibers in ECC design can rise some challenging situations such as workability and fiber distribution. Both flaw structure and workability of ECC can be improved by using inert and pozzolanic powders in matrix phase.
机译:在水泥复合材料或混凝土的结构中自然会出现缺陷。当脆性复合材料(陶瓷,混凝土)加载至极限容量时,微裂纹会突然从这些缺陷中引发并传播。作为例外,工程胶凝复合材料(ECC)令人惊讶地具有通过表现出具有改善的机械性能的多重开裂行为将其缺陷结构转变为优势的能力。另一方面,ECC设计中聚合物纤维的存在会增加一些挑战性的情况,例如可加工性和纤维分布。通过在基质相中使用惰性粉末和火山灰粉末,可以改善ECC的缺陷结构和可加工性。

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