Evaluation of impact energy in composites using acoustic emission sensing technique

被引:0
|
作者
Ai, Li [1 ]
Mesaric, Tanner [2 ]
Flowers, Sydney [2 ]
Houck, Sydney [3 ]
Widawsky, Joshua [4 ]
Ziehl, Paul [1 ,3 ,4 ]
机构
[1] Univ South Carolina, Dept Civil & Environm Engn, Columbia, SC 29208 USA
[2] Univ South Carolina, Dept Integrated Informat Technol, Columbia, SC USA
[3] Univ South Carolina, Dept Mech Engn, Columbia, SC USA
[4] Univ South Carolina, McNair Aerosp Ctr, Columbia, SC USA
关键词
composites; impact; acoustic emission; compression after impact; DAMAGE;
D O I
10.1088/1361-6501/ad9d6a
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A major challenge faced by composite materials is impact, which can result in unexpected damage and degradation. Impact events can cause significant structural damage that may not be immediately visible, leading to a reduction in the material's mechanical properties and overall performance. This paper presents an impact assessment method using acoustic emission (AE) sensing technology. The primary goal of this approach is to determine the extent of impact damage on composite components by analyzing AE signals produced under operating stress conditions. An advanced algorithm is proposed to predict the probability that the damage falls into various damage categories, providing a detailed assessment of the material's condition. For validation, a series of composite panels were manufactured and subjected to controlled impact and subsequent compression after impact tests. The AE signals gathered during these tests provided initial validation for the proposed method, showcasing its potential for accurately assessing impact damage. The results demonstrate that AE sensing technology, combined with advanced algorithmic analysis, has the potential to be an effective tool for monitoring the integrity of composite materials and ensuring their reliability in critical applications.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Acoustic emission technique for monitoring the pyrolysis of composites for process control
    Tittmann, B. R.
    Yen, C. E.
    ULTRASONICS, 2008, 48 (6-7) : 621 - 630
  • [22] Innovative mechanical characterization of CFRP by using acoustic emission technique
    Barile, Claudia
    ENGINEERING FRACTURE MECHANICS, 2019, 210 : 414 - 421
  • [23] Durability evaluation of reinforced masonry by fatigue tests and acoustic emission technique
    Carpinteri, Alberto
    Grazzini, Alessandro
    Lacidogna, Giuseppe
    Manuello, Amedeo
    STRUCTURAL CONTROL & HEALTH MONITORING, 2014, 21 (06): : 950 - 961
  • [24] Performance Monitoring of WEDM Using Online Acoustic Emission Technique
    Kumar, S. Suresh
    Uthayakumar, M.
    Kumaran, S. Thirumalai
    Parameswaran, P.
    Haneef, T. K.
    Mukhopadhyay, C. K.
    Rao, B. P. C.
    SILICON, 2018, 10 (06) : 2635 - 2642
  • [25] High-strain-rate impact in Kevlar-woven composites and fracture analysis using acoustic emission
    Woo, Sung-Choong
    Kim, Tae-Won
    COMPOSITES PART B-ENGINEERING, 2014, 60 : 125 - 136
  • [26] Impact damage assessment in laminated composites using acoustic emission and finite element methods
    Saeedifar, Milad
    POLYMER COMPOSITES, 2024, 45 (02) : 1036 - 1053
  • [27] Impact damage detection in carbon fibre composites using neural networks and acoustic emission
    Liu, N
    Zhu, QM
    Wei, CY
    Dykes, ND
    Irving, PE
    DAMAS 99: DAMAGE ASSESSMENT OF STRUCTURES, 1999, 167-1 : 43 - 54
  • [28] Surface defect and chatter monitoring in robotic drilling CFRP composites using acoustic emission technique
    Li, Maojun
    Jiang, Xiaoyang
    Huang, Dingxiao
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART B-JOURNAL OF ENGINEERING MANUFACTURE, 2024, 238 (04) : 605 - 615
  • [29] Fatigue damage monitoring for basalt fiber reinforced polymer composites using acoustic emission technique
    Wang, Wentao
    Li, Hui
    Qu, Zhi
    HEALTH MONITORING OF STRUCTURAL AND BIOLOGICAL SYSTEMS 2012, 2012, 8348
  • [30] Acoustic Emission in Ceramic Matrix Composites
    Tulshibagwale, Nikhil
    Brodnik, Neal
    Muir, Caelin
    Hilmas, Ashley
    Kiser, James D.
    Smith, Craig E.
    Almansour, Amjad S.
    Presby, Michael J.
    Daly, Samantha
    APPLIED MECHANICS REVIEWS, 2024, 76 (04)