暴露在高温下,在不同的环境下冷却——聚丙烯混凝土的研究

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials Research-An International Journal Pub Date : 2016-03-25 DOI:10.12989/AMR.2016.5.1.021
S. Yaragal, S. Ramanjaneyulu
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引用次数: 14

摘要

火灾是建筑结构所能承受的最具破坏性的力量之一,经常使混凝土构件暴露在高温下。这种暴露后混凝土的相对性能对建筑物的适用性具有重要意义。揭示混凝土的加热历史和不同的冷却机制对于法医研究或确定暴露在火灾中的混凝土结构及其组成部分是否仍然结构健全非常重要。评估火灾损坏的混凝土结构通常从视觉观察颜色变化、开裂和剥落开始。因此,了解高温对混凝土强度保持性能的影响是很重要的。本研究报告了高温对聚丙烯纤维混凝土试件力学性能的影响,并在不同的制度下进行了不同的冷却。在加热循环中,试样被置于200°C至800°C的温度范围内,以200°C为步骤,保留时间为1小时。然后以不同的方式冷却到室温。所研究的冷却方式包括炉内冷却、空气冷却和突然冷却。在高温和不同冷却条件下,研究了材料的失重、残余抗压强度和劈裂抗拉强度保持特性。测试结果表明,重量和抗压和抗拉强度显著降低,随着温度的升高,并强烈依赖于所采用的冷却制度。
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Exposure to elevated temperatures and cooled under different regimes-a study on polypropylene concrete
Fire is one of the most destructive powers to which a building structure can be subjected, often exposing concrete elements to elevated temperatures. The relative properties of concrete after such an exposure are of significant importance in terms of the serviceability of buildings. Unraveling the heating history of concrete and different cooling regimes is important for forensic research or to determine whether a fire-exposed concrete structure and its components are still structurally sound or not. Assessment of fire-damaged concrete structures usually starts with visual observation of colour change, cracking and spalling. Thus, it is important to know the effect of elevated temperatures on strength retention properties of concrete. This study reports the effect of elevated temperature on the mechanical properties of the concrete specimen with polypropylene fibres and cooled differently under various regimes. In the heating cycle, the specimen were subjected to elevated temperatures ranging from 200°C to 800°C, in steps of 200°C with a retention period of 1 hour. Then they were cooled to room temperature differently. The cooling regimes studied include, furnace cooling, air cooling and sudden cooling. After exposure to elevated temperatures and cooled differently, the weight loss, residual compressive and split tensile strengths retention characteristics were studied. Test results indicated that weight and both compressive and tensile strengths significantly reduce, with an increase in temperature and are strongly dependent on cooling regimes adopted.
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
发文量
0
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