Static and Fatigue Strength and Failure Mechanisms of Riveted Lap Joints of CFRP Composites

被引:3
|
作者
Godzimirski, Jan [1 ]
Roskowicz, Marek [1 ]
Jasztal, Michal [1 ]
Barca, Iga [1 ]
机构
[1] Mil Univ Technol, Fac Mechatron Armament & Aerosp, PL-00908 Warsaw, Poland
关键词
riveted and hybrid joint; static strength; fatigue life; failure mechanism; COMPRESSIVE FAILURE; FRICTION; BEHAVIOR; LIFE;
D O I
10.3390/ma16051768
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The background of this work is the search for the most effective ways of joining composites, inter alia in aeronautical applications. The purpose of this study was to analyze the impact of mechanical fastener types on the static strength of lap joints of composite elements and the impact of fasteners on the mechanism of failure of such joints under fatigue load. The second objective was to check to what extent the hybridization of such joints, consisting of supplementing them with an adhesive joint, affects their strength and the mechanism of failure of such joints loaded with fatigue. Damage to composite joints was observed using computed tomography technology. The fasteners used in this study (aluminum rivets, Hi-lok and Jo-Bolt) differed not only in terms of the materials they were made of, but also in terms of the pressure forces they exerted on the joined parts. Finally, in order to check how a partially cracked adhesive joint affects the load on the fasteners, numerical calculations were carried out. Analyzing the results of the research, it was found that partial damage to the adhesive joint of the hybrid joint does not increase the load on the rivets and does not impair the fatigue life of the joint. An important advantage of hybrid joint is the two-stage destruction of the connection, which significantly increases the safety of aircraft structures and facilitates the process of supervising their technical condition.
引用
收藏
页数:22
相关论文
共 50 条
  • [21] The static and fatigue strength of bolted joints in composites with hygrothermal cycling
    Chen, HS
    COMPOSITE STRUCTURES, 2001, 52 (3-4) : 295 - 306
  • [22] Effect of Riveting Angle and Direction on Fatigue Performance of Riveted Lap Joints
    Liang, Qingxiao
    Zhang, Tianpeng
    Zhu, Chunrun
    Bi, Yunbo
    COATINGS, 2021, 11 (02) : 1 - 23
  • [23] Effect of load transfer by friction on the fatigue behaviour of riveted lap joints
    Skorupa, M.
    Machniewicz, T.
    Skorupa, A.
    Korbel, A.
    INTERNATIONAL JOURNAL OF FATIGUE, 2016, 90 : 1 - 11
  • [24] Riveted single lap joints .2. Fatigue life prediction
    Fung, CP
    Smart, J
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART G-JOURNAL OF AEROSPACE ENGINEERING, 1997, 211 (G2) : 123 - 128
  • [25] The influence of fatigue on the stiffness and remaining static strength of self-piercing riveted aluminium joints
    Li, Dezhi
    Han, Li
    Thornton, Martin
    Shergold, Mike
    Williams, Geraint
    MATERIALS & DESIGN, 2014, 54 : 301 - 314
  • [26] Fatigue resistance and residual strength of riveted joints in FML
    Lanciotti, A.
    Lazzeri, L.
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2009, 32 (10) : 837 - 846
  • [27] Fatigue properties and failure mechanisms of self-piercing riveted joints in aluminium alloy
    He, Xiaocong (xiaocong_he@126.com), 2016, Harbin Research Institute of Welding (37):
  • [28] Fatigue strength of self-piercing riveted joints in lap-shear specimens of aluminium and steel sheets
    Chung, C. -S.
    Kim, H. -K.
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2016, 39 (09) : 1105 - 1114
  • [29] Fatigue of thermoplastic composites adhesive lap joints
    Reis, PN
    Ferreira, JAM
    Costa, JDM
    Richardson, MOW
    ADVANCES IN MECHANICAL BEHAVIOUR, PLASTICITY AND DAMAGE, VOLS 1 AND 2, PROCEEDINGS, 2000, : 237 - 242
  • [30] A model for fatigue strength of welded lap joints
    Beretta, S
    Sala, G
    FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES, 2005, 28 (1-2) : 257 - 264