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首页> 外文期刊>Journal of materials in civil engineering >Acoustic Emission Characteristics and Dynamic Damage Constitutive Relation of Shale-Ceramsite Concrete Subjected to Loading Tests
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Acoustic Emission Characteristics and Dynamic Damage Constitutive Relation of Shale-Ceramsite Concrete Subjected to Loading Tests

机译:物流发射特性和动态损伤的页岩陶瓷混凝土对装载试验的影响

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摘要

To reveal the damage evolution mechanism and dynamic mechanical performances of lightweight shale ceramsite concrete (LWSCC), the damage evolution process and dynamic impact characteristics of LWSCC were studied by acoustic emission monitoring and split hopkinson pressure bar (SHPB) testing. Results show that in the quasi-static unconfined compression test, the ringing count and energy value are closely related to the strain, and 60% strain is the transition point of the crack growth rate. The growth curve of acoustic emission events lags the stress growth. The inflection point appears at 65% strain of the stress-strain curve, and that in turn appears at 72% strain of the acoustic emission event-strain curve. With the increase of the strain rate, the stress peak, incident wave energy, absorbed energy, and specific energy absorption values all increase, and the strain-rate effect is obvious. Based on the monitoring data of acoustic emission, the damage evolution equation of LWSCC was established under uniaxial compressive testing, and the dynamic damage constitutive relation was constructed of LWSCC under hieh-strain-rate impact testing. The conclusions obtained in this study provide a theoretical basis for the design of antishock structures.
机译:为揭示轻质页岩陶瓷混凝土(LWSCC)的损伤演化机制和动态机械性能,通过声发射监测和拆分霍普金森压力棒(SHPB)检测研究了LWSCC的损伤进化过程和动态冲击特性。结果表明,在准静态无凝结压缩试验中,振铃计数和能量值与应变密切相关,60%应变是裂纹生长速率的过渡点。声发射事件的生长曲线滞后于应力生长。拐点出现在应力 - 应变曲线的65%应变处,又出现在声发射事件 - 应变曲线的72%菌株处。随着应变率的增加,应力峰,入射波能量,吸收能量和特定能量吸收值均增加,应变率效应显而易见。基于声发射的监测数据,在单轴压缩试验下建立了LWSCC的损伤演化方程,并且在Hieh-应变率冲击测试下的LWSCC构建了动态损伤本构成。本研究中获得的结论为反锁结构设计提供了理论依据。

著录项

  • 来源
    《Journal of materials in civil engineering》 |2020年第8期|04020202.1-04020202.9|共9页
  • 作者单位

    International Joint Research Laboratory of Henan Province for Underground Space Development and Disaster Prevention Henan Polytechnic Univ. Jiaozuo 454003 China School of Minerals and Energy Resources Engineering Univ. of New South Wales Sydney NSW 2052 Australia;

    International Joint Research Laboratory of Henan Province for Underground Space Development and Disaster Prevention Henan Polytechnic Univ. Jiaozuo 454003 China Henan Province Engineering Laboratory for Eco-architecture and the Built Environment Henan Polytechnic Univ. Jiaozuo 454003 China;

    International Joint Research Laboratory of Henan Province for Underground Space Development and Disaster Prevention Henan Polytechnic Univ. Jiaozuo 454003 China Henan Province Engineering Laboratory for Eco-architecture and the Built Environment Henan Polytechnic Univ. Jiaozuo 454003 China;

    International Joint Research Laboratory of Henan Province for Underground Space Development and Disaster Prevention Henan Polytechnic Univ. Jiaozuo 454003 China Henan Province Engineering Laboratory for Eco-architecture and the Built Environment Henan Polytechnic Univ. Jiaozuo 454003 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lightweight aggregate concrete; Shale ceramsite; Dynamic impact; Acoustic emission; Dynamic constitutive relation;

    机译:轻质骨料混凝土;Shale Ceramsite;动态影响;声学发射;动态本构关系;

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