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Effect of Elevated Temperature on Compressive Strength and Physical Properties of Neem Seed Husk Ash Concrete

机译:高温对印em籽壳灰混凝土抗压强度和物理性能的影响

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摘要

High temperature rise mostly caused by a fire outbreak is currently becoming a threat that endangers concrete’s structural performance for buildings and the safety of occupants. The behavior of concrete after fire subjection has been of much interest for the structural materials design purposes. This study investigated the physical properties and the compressive strength of M25 concrete incorporating Neem Seed Husk Ash (NSHA), exposed to and through targeted different levels of temperature (200 °C to 800 °C) for a period of three hours in an electric furnace. The NSHA was produced by calcining neem seed husks at 800 °C for six hours and then sieved through the 125 μm sieve. Different amounts of NSHA were investigated while considering the plain concrete as the control sample. 150 concrete cubes of 150 mm sizes were cast and properly cured for 7 and 28 days. The experimental results show that the compressive strength of the 5% NSHA concrete exposed to temperatures up to 400 °C is 21.3% and 23.8% better than the normal concrete at 7 and 28 curing days, respectively. Surface cracks and spalling are noticeable at 600 °C and 800 °C for all samples considered in this study.
机译:目前,主要由火灾引起的高温升高正在成为威胁,危及混凝土建筑物的结构性能和居住者的安全。出于结构材料设计目的,火灾后的混凝土行为引起了人们的极大兴趣。这项研究调查了掺有印度em子壳灰(NSHA)的M25混凝土的物理性能和抗压强度,该温度在电炉中暴露于目标温度水平(200°C至800°C)并通过目标温度水平(200°C至800°C) 。 NSHA是通过将印ne种子外壳在800°C下煅烧6个小时,然后通过125μm筛子筛分而生产的。在将普通混凝土作为对照样品的同时,研究了不同量的NSHA。浇铸150个150毫米大小的立方体,并适当固化7天和28天。实验结果表明,在7天和28天的养护下,暴露于温度高达400°C的5%NSHA混凝土的抗压强度分别比普通混凝土好21.3%和23.8%。对于本研究中考虑的所有样品,在600°C和800°C时表面裂纹和剥落都很明显。

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