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Advancing the Structural Use of Earth-based Bricks: Addressing Key Challenges in the East African Context

机译:推进土砖的结构使用:应对东非背景下的主要挑战

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The research discussed in this paper is a subset of a bigger, NSF funded research project that is directed at investigating the use of sustainable building materials. The deployment context for the research is the hot and humid climate using selected cases from the East African region. The overarching goal for the research is advancing the structural use of earth-based technologies. Significant strides can be made through developing strategies for countering the adverse factors that affect the structural performance of the resulting wall, especially ones related to moisture dynamics. The research was executed in two phases. The first phase was a two-day NSF supported workshop which was held in Tanzania in July 2009. It provided a forum for sharing best practices in earth-based building technologies and developing a research and development roadmap. The priority research areas were broadly classified as optimizing the physio-mechanical properties of earth as a building material and managing socio-cultural impediments. In the second phase of the research, the authors collaborated with researchers from East Africa to conduct experimental work on the optimization of physio-mechanical properties. The specific research issues that have been addressed are: (1) characterizing the chemical reactions that can be linked to deterioration triggered by hygrothermal loads based on the hot and humid context, and; (2) developing a prototype for a simpler, portable, affordable and viable compressed brick production machine. The paper discusses the results from the characterization work that ultimately will be used to design bricks that have specific properties based on an understanding of how different stabilizers affect the hydration process. It also describes a cheaper, portable and more efficient prototype machine that has been developed as part of the follow-up research activities.
机译:本文讨论的研究是由NSF资助的更大的研究项目的子集,该研究项目旨在研究可持续建筑材料的使用。该研究的部署背景是使用来自东非地区的特定案例的炎热潮湿的气候。该研究的总体目标是推进地球技术的结构使用。通过制定策略来应对影响最终墙体结构性能的不利因素,尤其是与水分动力学有关的不利因素,可以取得重大进展。该研究分两个阶段进行。第一阶段是为期两天的NSF支持的研讨会,该研讨会于2009年7月在坦桑尼亚举行。它提供了一个论坛,以分享土木建筑技术的最佳实践并制定研发路线图。优先研究领域大致分为优化作为建筑材料的地球的物理机械特性和管理社会文化障碍。在研究的第二阶段,作者与来自东非的研究人员合作,进行了有关优化物理机械性能的实验工作。已解决的具体研究问题是:(1)根据湿热情况,表征与湿热负荷引起的劣化相关的化学反应,以及(2)开发一种用于更简单,便携式,负担得起且可行的压缩砖生产机器的原型。本文讨论了表征工作的结果,这些工作最终将基于对不同稳定剂如何影响水化过程的理解而最终用于设计具有特定性能的砖块。它还描述了一种更便宜,更便携,更高效的原型机,它是后续研究活动的一部分。

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