Thienel Karl-Christian, Haller Timo, Beuntner Nancy
Institute for Construction Materials, Universität der Bundeswehr München, Werner-Heisenberg-Weg 39, 85579 Neubiberg, Germany.
Materials (Basel). 2020 Mar 3;13(5):1120. doi: 10.3390/ma13051120.
Lightweight concrete has a history of more than two-thousand years and its technical development is still proceeding. This review starts with a retrospective that gives an idea of the wide range of applications covered by lightweight concrete during the last century. Although lightweight concrete is well known and has proven its technical potential in a wide range of applications over the past decades, there are still hesitations and uncertainties in practice. For that reason, lightweight aggregate properties and the various types of lightweight concrete are discussed in detail with a special focus on current standards. The review is based on a background of 25 years of practical and theoretical experience in this field. One of the main challenges in designing lightweight concrete is to adapt most of design, production and execution rules since they often deviate from normal weight concrete. Therefore, aspects are highlighted that often are the cause of misunderstandings, such as nomenclature or the informational value of certain tests. Frequently occurring problems regarding the mix design and production of lightweight concrete are addressed and the unintended consequences are described. A critical view is provided on some information given in existing European concrete standards regarding the mechanical properties of structural lightweight concrete. Finally, the latest stage of development of very light lightweight concretes is presented. Infra-lightweight concrete is introduced as an innovative approach for further extending the range of applications of lightweight concrete by providing background knowledge and experiences from case records.
轻质混凝土已有两千多年的历史,其技术仍在不断发展。本文回顾了轻质混凝土在上个世纪广泛的应用范围。尽管轻质混凝土广为人知,且在过去几十年的广泛应用中已证明其技术潜力,但在实际应用中仍存在犹豫和不确定性。因此,本文详细讨论了轻集料性能和各类轻质混凝土,并特别关注现行标准。本文基于该领域25年的实践和理论经验。设计轻质混凝土的主要挑战之一是调整大部分设计、生产和施工规则,因为这些规则往往与普通重量混凝土不同。因此,本文强调了一些经常导致误解的方面,如术语或某些试验的信息价值。本文讨论了轻质混凝土配合比设计和生产中经常出现的问题,并描述了意外后果。本文对欧洲现行混凝土标准中有关结构轻质混凝土力学性能的一些信息提出了批判性观点。最后,介绍了超轻质混凝土的最新发展阶段。通过提供案例记录中的背景知识和经验,引入了超低密度轻质混凝土,作为进一步扩展轻质混凝土应用范围的创新方法。