Innovative production of structural light-weight concrete by manufactured porous basalt aggregates

Q2 Engineering
Haytham Amr El-Kafrawy, S. Taher, S. Mahfouz
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引用次数: 0

Abstract

ABSTRACT Structural Lightweight Concrete (SLWC) is rarely used in Egyptian construction industry because of the unavailability of appropriate lightweight aggregates that capture its salient features. The aim of this research is to produce aggregates of low density and reasonable strength suitable for SLWC and to add new perspective for the structural lightweight concrete in the Egyptian market causing a reflection on the ECP 203 by adding limitations concerning the lightweight aggregates, as the only limitation for lightweight concrete is to install it for architecture uses. In this paper, an innovative procedure for producing SLWC using locally Manufactured Porous Basalt Aggregates (MPBA) is presented as a side product to basalt fiber industry. The scope of work is an experimental investigation to produce the MPBA then examine the feasibility to obtain SLWC. The physical and mechanical properties of Parent Basalt Rocks (PBR) are calibrated then the methodology of producing MPBA is explained and the obtained properties are assessed. The new MPBA is produced when solid basalt is melted and mixed with polypropylene through an established optimum mixing. The newly proposed process includes a sequence of temperature variations using both methods the Rheocasting and Thixocasting process. The phase diagram is illustrated showing the melting point of the basalt rocks and the MPBA. The produced MPBA is further used for SLWC mixes and the presented data provide the possible properties needed to figure out a new material.
通过制造多孔玄武岩集料创新生产结构轻质混凝土
摘要结构轻质混凝土(SLWC)很少在埃及建筑业中使用,因为无法获得合适的轻质骨料来捕捉其显著特征。本研究的目的是生产适用于SLWC的低密度和合理强度的骨料,并为埃及市场上的结构轻质混凝土增加新的视角,通过增加有关轻质骨料的限制,引起对ECP 203的反思,因为轻质混凝土的唯一限制是将其安装用于建筑用途。本文介绍了一种利用当地生产的多孔玄武岩骨料(MPBA)生产SLWC的创新工艺,作为玄武岩纤维工业的副产品。工作范围是生产MPBA的实验研究,然后检查获得SLWC的可行性。对母玄武岩(PBR)的物理力学性质进行了标定,然后解释了MPBA的生产方法,并对获得的性质进行了评估。当固体玄武岩熔化并通过既定的最佳混合与聚丙烯混合时,就会产生新的MPBA。新提出的工艺包括一系列使用流变铸造和触变铸造工艺的温度变化。相图显示了玄武岩和MPBA的熔点。生产的MPBA进一步用于SLWC混合物,所提供的数据提供了研制新材料所需的可能性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
9
审稿时长
52 weeks
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