CAS OpenIR  > 中科院上海应用物理研究所2011-2018年
Tensile Damage Mechanism of 3-D Angle-Interlock Woven Composite using Acoustic Emission Events Monitoring
Ma, Q; Wang, K; Wang, SD; Liu, H; Jin, BC; Jin, LM; Ma, PB
2018
Source PublicationAUTEX RESEARCH JOURNAL
ISSN1470-9589
Volume18Issue:1Pages:46-50
Subtype期刊论文
AbstractThe quasi-static tensile damage behavior of one type of layer-to-layer 3-Dimensional Angle-interlock Woven Composite (3DAWC) was tested and analyzed in this paper. Incorporated with the acoustic emission (AE) events monitoring, the mechanical behavior of the 3DAWC under tensile loading condition was characterized. The Load-Extension curve, Load/AE events-Time curves occurred during the entire testing process and tensile damage modes were recorded to characterize and summarize the mechanical properties and damage mechanism of the 3DAWC subjected to tensile loading. It was found that the tensile damage of the 3DAWC could be summarized into 3 steps. And each step has a distinct primary damage mode. Moreover, the resin cracks, resin-yarn interface debonding and yarn breakages were the main damage modes for the 3DAWC.
KeywordFatigue Behavior Fabric Composites Strain Rates Multilayer
DOI10.1515/aut-2017-0010
Indexed BySCI
Language英语
WOS IDWOS:000427951100007
Citation statistics
Cited Times:2[WOS]   [WOS Record]     [Related Records in WOS]
Document Type期刊论文
Identifierhttp://ir.sinap.ac.cn/handle/331007/29168
Collection中科院上海应用物理研究所2011-2018年
Affiliation1.Ma, Q
2.Wang, K
3.Wang, SD
4.Liu, H
5.Jin, BC
6.Jin, LM
7.Ma, PB
Recommended Citation
GB/T 7714
Ma, Q,Wang, K,Wang, SD,et al. Tensile Damage Mechanism of 3-D Angle-Interlock Woven Composite using Acoustic Emission Events Monitoring[J]. AUTEX RESEARCH JOURNAL,2018,18(1):46-50.
APA Ma, Q.,Wang, K.,Wang, SD.,Liu, H.,Jin, BC.,...&Ma, PB.(2018).Tensile Damage Mechanism of 3-D Angle-Interlock Woven Composite using Acoustic Emission Events Monitoring.AUTEX RESEARCH JOURNAL,18(1),46-50.
MLA Ma, Q,et al."Tensile Damage Mechanism of 3-D Angle-Interlock Woven Composite using Acoustic Emission Events Monitoring".AUTEX RESEARCH JOURNAL 18.1(2018):46-50.
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