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Avoiding & mitigating alkali-aggregate reaction (AAR) in concrete structures

Avoiding & mitigating alkali-aggregate reaction (AAR) in concrete structures
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批准号:
506199-2016
负责人:
MorettiSanchez, LeandroFrancisco
金额:
$1.75万
依托单位:
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
翻译
碱-骨料反应(AAR)是影响加拿大和世界范围内混凝土基础设施耐久性的主要过程之一。多年来,世界各地已经制定了几种方法和建议,包括全面的各种实验室测试程序,以评估混凝土集料的潜在碱反应能力和预防措施的有效性(例如,控制水泥和混凝土的碱含量,使用辅助胶凝材料等)。在它们在野外使用之前。尽管一些测试程序存在一些问题(例如,长期持续时间、碱浸出、与现场结构的长期相关性、混凝土混合料的评估等)。鉴于各种标准/议定书不断需要改进,大多数专家一致认为,总的来说,现在有可能建造新的混凝土基础设施,其风险最小或甚至是计算/有限的。然而,目前对于最有效的方法(S)(例如表面处理以控制水分、化学处理、强化、缓解应力等)还没有达成共识。应在何时实施这项措施,以修复受AAR影响的混凝土结构/结构构件。在这种背景下,世界各地的许多工程师和研究人员一直在努力开发评估技术和工具,这些技术和工具能够阻止/减轻AAR在服役中的进一步发展,或者至少评估受影响的老化结构的当前损坏程度(诊断)和未来可能的损害(预后),这两个步骤都是为受AAR影响的关键老化基础设施选择有效的修复方法和最佳应用周期的关键步骤。在此背景下,本研究项目与Kryton合作,旨在评估现有的商业产品并开发新产品(S),以防止和/或减轻(即物理、化学或两者兼而有之)AAR在其初始、中期和高级阶段造成的混凝土劣化。通过对现有/新产品的评估/开发来避免和减轻该领域的AAR,这种CRD的科学益处是非常明显的。此外,Kryton将受益于与渥太华大学研究人员的合作和交流,以评估、开发和实施面向加拿大和全球土木工程市场的新产品。
英文摘要
Alkali-aggregate reaction (AAR) is one of the main processes affecting the durability of concrete infrastructure in Canada and worldwide. Over the years, several approaches and recommendations, including a comprehensive variety of laboratory test procedures, have been developed around the world to assess the potential alkali-reactivity of concrete aggregates and the effectiveness of preventive measures (e.g. control of the cement & concrete alkali content, use of supplementary cementing materials, etc.) before their use in the field. Despite some issues with some test procedures (e.g. long-term duration, alkali leaching, long-term correlation with field structures, evaluation of concrete mixtures, etc.) and the constant need for improvement in the various standards/protocols, the majority of experts agree that, in general, it is now possible to build new concrete infrastructure with minimum or even calculated/limited risk of AAR. However, there is currently no consensus about the most efficient method(s) (e.g. surface treatments for moisture control, chemical treatments, strengthening, stress relief, etc.) that should be implemented, and when, for the rehabilitation of AAR-affected concrete structures/structural members. In this context, a number of engineers and researchers around the globe have been trying to develop appraisal techniques and tools that are capable of either halting/mitigating further AAR development in service or at least appraising the current damage degree (diagnosis) and the potential of future distress (prognosis) of affected aging structures, both essential steps in selecting efficient rehabilitation methods and optimum application periods for critical aging infrastructure affected by AAR. In this context, this research project, in collaboration with Kryton, aims to evaluate existing commercial products and develop new product(s) for preventing and/or mitigating (i.e. physically, chemically or both) concrete deterioration caused by AAR in its initial, moderate and advanced phases. The scientific benefit of this CRD is very clear through the evaluation/development of current/new products for avoiding & mitigating AAR in the field. Moreover, Kryton will benefit from the collaboration and exchange with uOttawa researchers to appraise, develop and implement new products to the Canadian and global civil engineering market.
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    506199-2016
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    Collaborative Research and Development Grants
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    $1.75万
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