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Experimental study on crack initiation and propagation of wood with LT-type crack using digital image correlation (DIC) technique and acoustic emission (AE)

机译:用数字图像相关性(DIC)技术和声发射铅型裂纹裂纹启动及木材裂纹萌发的实验研究

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摘要

Monitoring the cracks initiation and propagation of construction materials, as well as determining the fracture process zone, constitute two key factors to understand the damage mechanism of materials in order to control the risk of material degradation and failure. This paper demonstrates the results of a laboratory static test designed to investigate the in situ monitoring of crack tip growth in wood. LT-type single-edge notched specimens made of Chinese fir with the seam height ratio of 0.1, 0.2 and 0.3 were tested by three-point bending experiment. In this paper, acoustic emission (AE) method and digital image correlation (DIC) method were used to study the damage process of Chinese fir under monotonic loading techniques simultaneously. The results show that analyzing AE signals by considering the acoustic emission event number and the cumulative events yields interesting information on crack initiation and propagation. Based on the displacement field obtained from the DIC, the cracking displacement (COD) and crack extension length during crack propagation can be converted to provide information about the evolution of the fracture process zone at the interface. Moreover, an additional analysis of DIC and AE data indicates good correlation (involving the crack extension length and the cumulative events). It opens the possibility to characterize the crack initiation and propagation of wood materials without visible wood cracks.
机译:监测裂缝的启动和建筑材料的传播,以及确定骨折过程区,构成了了解材料损坏机制的两个关键因素,以控制物质降解和失败的风险。本文展示了实验室静态试验的结果,旨在调查木材中裂纹尖端生长的原位监测。通过三点弯曲实验测试了由接缝高度为0.1,0.2和0.3的中式灭菌制成的型单边缘缺口样本。本文采用声学发射(AE)方法和数字图像相关(DIC)方法同时研究单调加载技术下中国冷杉的损伤过程。结果表明,通过考虑声发射事件数和累积事件来分析AE信号,产生有关裂纹启动和传播的有趣信息。基于从DIC获得的位移场,可以转换裂缝传播期间的裂缝位移(COD)和裂缝延伸长度,以提供关于界面处的断裂处理区的演变的信息。此外,DIC和AE数据的额外分析表明了良好的相关性(涉及裂缝延伸长度和累积事件)。它打开了在没有可见木材裂缝的情况下表征木材的裂纹启动和繁殖。

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  • 来源
    《Wood Science and Technology》 |2021年第6期|1577-1591|共15页
  • 作者单位

    Beijing Forestry Univ Sch Technol Beijing Peoples R China;

    Beijing Forestry Univ Sch Technol Beijing Peoples R China;

    Beijing Forestry Univ Sch Technol Beijing Peoples R China;

    Beijing Forestry Univ Sch Technol Beijing Peoples R China;

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  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:08:11

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