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基于应力波传播机理的混凝土无损检测研究综述 被引量:10
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作者 陆林军 余海帆 乔丕忠 《力学季刊》 CAS CSCD 北大核心 2021年第2期197-216,共20页
混凝土结构在基础设施中应用广泛,但环境与荷载导致材料和结构的老化损伤问题,势必影响材料性能及耐久性和结构完整性及安全性.构建有效的混凝土材料性能评估和结构损伤识别体系是当前研究热点.现有研究因对应力波传播机理不深入理解、... 混凝土结构在基础设施中应用广泛,但环境与荷载导致材料和结构的老化损伤问题,势必影响材料性能及耐久性和结构完整性及安全性.构建有效的混凝土材料性能评估和结构损伤识别体系是当前研究热点.现有研究因对应力波传播机理不深入理解、损伤定位定量模型理想化、损伤形式简化等问题仍存在局限性.因此,开发普适全面、稳定可靠的无损检测系统,对在建或既有混凝土结构服役状况进行长期、实时跟踪,具有重要学术意义和工程应用价值.本文结合混凝土无损检测领域的国内外研究现状及进展,从智能压电材料振动机理研究、混凝土无损检测方法发展、基于应力波的无损检测研究进展这三个逻辑层面,即按照研究手段到研究方法再到具体研究方案的顺序,循序渐进地对混凝土材料性能评估和结构损伤识别的研究进行了成果总结和方法提炼;基于此进一步概述了该领域所存在的瓶颈问题、研究重难点,最后提出了针对这些局限性的混凝土无损检测研究展望. 展开更多
关键词 混凝土 无损检测与试验 压电传感器 应力波传播机理 材料性能评估 结构损伤识别
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乏燃料后处理厂复合型生物屏蔽门的屏蔽性能分析
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作者 张晔 陈宗欢 +2 位作者 高桂玲 王晓霞 田英男 《中国科技成果》 2021年第12期35-38,64,共5页
乏燃料后处理厂中,作业环境工况复杂,开放性操作较多,须设置生物屏蔽门对工作人员进行辐射防护.文章结合典型核电厂的深燃耗乏燃料组件的源项特征,对生物屏蔽门的材料布置设计进行优化,以提高其防护性能并兼具经济性及实用性.在对常用... 乏燃料后处理厂中,作业环境工况复杂,开放性操作较多,须设置生物屏蔽门对工作人员进行辐射防护.文章结合典型核电厂的深燃耗乏燃料组件的源项特征,对生物屏蔽门的材料布置设计进行优化,以提高其防护性能并兼具经济性及实用性.在对常用的屏蔽材料评估的基础上,分析复合型生物屏蔽门采用相同材料的不同排列组合方式对屏蔽性能的影响,并提出最优的材料组合布置方式. 展开更多
关键词 复合型生物屏蔽门 材料屏蔽性能评估 材料不同排列组合性能分析
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Environmental analysis of innovative sustainable composites with potential use in aviation sector -A life cycle assessment review 被引量:6
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作者 BACHMANN Jens HIDALGO Carme RICOUT Stephanie 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第9期1301-1317,共17页
The forecast of growing air transport in the upcoming decades faces the challenge of an increasing environmental impact.Aviation industry is working on promising technologies to mitigate this environmental impact.Ligh... The forecast of growing air transport in the upcoming decades faces the challenge of an increasing environmental impact.Aviation industry is working on promising technologies to mitigate this environmental impact.Lightweight design is a strong lever to lower the fuel consumption and,consequently,with it the emissions of aviation.High performance composites are a key technology to help achieve these aims thanks to their favourable combination of mechanical properties and low weight in primary structures.However,mainly synthetic materials such as petrol based carbon fibres and epoxy resins are used nowadays to produce composite in aviation.Renewable materials like bio-based fibres and resin systems offer potential environmental advantages.However,they have not found their way into aviation,yet.The reasons are reduced mechanical properties and,especially for the use of natural fibres,their flammability.Improvements of these shortcomings are under investigation.Therefore the application of bio-based and recycled materials in certain areas of the aircraft could be possible in the future.Good examples for applications are furnishings and secondary structures.The motivation for this paper is to give an overview of potential environmental properties by using such eco-materials in aviation.Life cycle assessment(LCA) is a tool to calculate environmental impacts during all life stages of a product.The main focus is laid on the bio-fibres flax and ramie,recycled carbon fibres and bio-based thermoset resin systems.Furthermore an overview of environmental aspects of existing composite materials used in aviation is given.Generally,a lack of LCA results for the substitution of synthetic materials by bio-based/recycled composite materials in aviation applications has been identified.Therefore,available information from other transport areas,such as automotive,has been summarized.More detailed LCA data for eco-composite materials and technologies to improve their properties is important to understand potential environmental effects in aviation. 展开更多
关键词 AVIATION composite natural fibre recycled carbon fibre bio-resin cabin interior secondary structure fife cycle assessment (LCA)
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