首页> 外文会议>RILEM Proceedings PRO 39; RILEM Symposium on Fibre-Reinforced Concretes(FRC) - BEFIB 2004 vol.1; 20040920-22; Varenna(IT) >OVERVIEW OF RECENT ADVANCEMENTS IN FRC KNOWLEDGE AND APPLICATIONS, WITH SPECIFIC REFERENCE TO HIGH TEMPERATURE
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OVERVIEW OF RECENT ADVANCEMENTS IN FRC KNOWLEDGE AND APPLICATIONS, WITH SPECIFIC REFERENCE TO HIGH TEMPERATURE

机译:FRC知识和应用中的最新进展概述,特别涉及高温

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摘要

The increasing requirements for strength and durability in constructions and infrastructures are being met today by the development of highly-innovative cementitious composites, that are suitable to be employed in severe or even extreme environmental conditions, because of low/high temperature, fatigue, dynamic loading and corrosive chemicals. Several examples can be quoted: containment shells, off-shore platforms, bridges, slabs-on-grade, pavements, tunnel linings and soil-retention walls. In the design and construction of all these structures, fiber-reinforced concrete is in the front line, since fibers are a technologically-simple and economically-sound way to increase concrete toughness (steel macrofibers), to control cracking (steel and inorganic microfibers), and to decrease concrete temperature-, fatigue- and impact-sensitivity (polymeric and steel fibers). After an overview of the advancements in the domain of FRC and FRC structural members resulting from the proceedings of the specialty conferences, symposia and workshops held in the last 10-15 years, the thermal and mechanical properties of FRC subjected to high temperature and fire, as well as those after a thermal cycle, are discussed, and some new findings are presented.
机译:今天,通过开发高度创新的水泥复合材料,满足了建筑和基础设施对强度和耐用性的日益增长的要求,由于低温/高温,疲劳,动态载荷,这些材料适用于严苛甚至极端的环境条件和腐蚀性化学品。可以举出几个例子:安全壳,海上平台,桥梁,地上平板,人行道,隧道衬砌和挡土墙。在所有这些结构的设计和施工中,纤维增强混凝土处于第一线,因为纤维是一种技术简单且经济合理的方式,可以提高混凝土的韧性(钢大纤维),控制开裂(钢和无机超细纤维) ,并降低混凝土的温度敏感性,疲劳敏感性和冲击敏感性(聚合物纤维和钢纤维)。在回顾了过去10至15年间举行的专业会议,专题讨论会和研讨会的成果后,FRC和FRC结构成员领域的进步后,FRC的热和机械性能受到高温和大火的影响,以及热循环后的那些,都进行了讨论,并提出了一些新的发现。

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