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Study on high performance concrete at high temperatures in the past 10 years

机译:过去10年高温高性能混凝土研究

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High performance concrete (hereafter, HPC) is well known by its high compressive strength, strong resistance to deformation and excellent durability. Whereas, HPC is prone to spall when exposed to high temperatures and it probably results in sharp reduction of the fire resistance and loading capacity of HPC elements and structures. This paper presents a summary of research achievements on fire-resistance behavior of HPC in the past 10 years including the mechanical behavior degradation, analysis of spalling mechanism, effect of various types of fiber and other factors influencing the post-fire properties of HPC material as well as structural behavior of HPC elements. Studies on micro-structure of HPC have been carried out, which will help build a more sophisticated recognition of its performance under high temperatures. In spite of the large number of research results, more improvement on HPC material and HPC structures are still needed because of the devastating consequences caused by strength degradation or spalling-to-collapse. Thus in this paper a new idea of HPC-composite structures is proposed, expected to decrease the probability of spalling.
机译:高性能混凝土(以下,HPC)众所周知,其高抗压强度,耐变形耐力强,耐久性优异。然而,当暴露于高温时,HPC易于击落,并且可能导致HPC元件和结构的耐火性和负载能力急剧降低。本文提出了在过去的10年内,HPC防火行为的研究成果概述,包括机械性能降解,剥落机制分析,各种类型的纤维的影响以及影响HPC材料后火灾性的因素和其他因素以及HPC元素的结构行为。已经进行了关于HPC的微结构的研究,这将有助于在高温下建立更复杂的性能。尽管有大量的研究结果,但仍然需要对HPC材料和HPC结构的更多改进,因为由强度降解或剥落倒塌引起的破坏性后果。因此,在本文中,提出了HPC复合结构的新思路,预计将降低剥落的概率。

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