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Effects of Elevated Temperature on Concrete with Recycled Coarse Aggregates

机译:高温对循环粗聚集体混凝土的影响

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This paper discusses the effects of heating temperatures of 200°C, 400°C and 600°C each for 2 hours at a heating rate of 2.5°C/min on concrete with the content of Natural Coarse Aggregates (NCA) partially replaced with Recycled Coarse Aggregates (RCA), obtained from demolished building in the ratio of 0%, 15% and 30%.There was an initial drop in strength from 100°C to 200°C which is suspected to be due to the relatively weak interfacial bond between the RCA and the hardened paste within the concrete matrix;a gradual increase in strength continued from 200°C to 450°C and steady drop occurred again as it approached 600°C.With replacement proportion of 0%, 15% and 30% of NCA and exposure to peak temperature of 600°C, a relative concrete strength of 23.6MPa, 25.3MPa and 22.2MPa respectively can be achieved for 28 days curing age. Furthermore, RAC with 15% NCA replacement when exposed to optimum temperature of 450°C yielded high compressive strength comparable to that of control specimen (normal concrete). In addition, for all concrete samples only slight surface hairline cracks were noticed as the temperature approached 400°C. Thus, the RAC demonstrated behavior just like normal concrete and may be considered fit for structural use.
机译:本文以2.5°C / min的加热速率在混凝土中讨论了200℃,400℃和600°C的加热温度的影响,在混凝土中,与再生的自然粗骨(NCA)的含量为25℃/ min。从拆除建筑物中获得的粗骨料(RCA),其比例为0%,15%和30%。在100°C至200°C的初始下降,这是由于相对较弱的界面键(界面粘合)在rca和混凝土基质内的硬化浆料之间;强度逐渐增加,继续200°C至450°C,并且随着0%,15%和30%的更换比例而再次发生稳定的下降。 NCA和暴露于600℃的峰值温度,分别可以实现23.6MPa,25.3MPa和22.2MPa的相对混凝土强度为28天固化时期。此外,当暴露于450℃的最佳温度时,RAC置换15%NCA替代物产生高压缩强度,与对照样品(正常混凝土)相当。此外,对于所有混凝土样品,只有轻微的表面发际线裂缝被注意,因为温度接近400℃。因此,RAC示实了与正常混凝土一样的行为,并且可以被认为适合结构使用。

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