A New Multiaxial Specimen for Determining the Dynamic Properties of Adhesive Joints

被引:0
作者
A. Janin
A. Constantinescu
D. Weisz-Patrault
R. Neviere
M. Stackler
W. Albouy
机构
[1] Université Paris-Saclay,LMS, École Polytechnique
[2] Safran Composites,undefined
来源
Experimental Mechanics | 2018年 / 58卷
关键词
Adhesive joints; specimen; Dynamic loading; Digital image correlation;
D O I
暂无
中图分类号
学科分类号
摘要
Adhesive joints are increasingly employed for bonding critical parts of industrial structures. Therefore, adhesive joints become a key element in design, and their mechanical characterization is of the utmost importance. Significant advancement has been realized for their characterization under quasi-static loadings; however characterization techniques are rather limited for dynamic loadings. Indeed, due to the complex paths of waves through structures, existing dynamic characterization techniques will not characterize only the adhesive joint, but instead will characterize the complete assembly containing the joint and the adherents. Moreover, multiaxiality control of the loading on the adhesive joint is difficult to achieve. This paper proposes an innovative experimental technique for the characterization of adhesive joints under dynamic multiaxial loadings. The experimental method relies on three main components: i) a conventional split Hopkinson pressure bar (SHPB) apparatus, ii) a novel specimen, denoted as DODECA, which enables testing of three distinct multiaxial loadings using the same method and iii) local strain and stress measurements performed by digital image correlation (DIC). The paper describes all steps of the experimental procedure, including the underlying preparation of the specimen and the measuring methods. The stress and strain in the adhesive joint are estimated directly from the experimental data both during loading and at the failure point. Finally, the dynamic material behavior of the adhesive joint is identified from the data.
引用
收藏
页码:1207 / 1219
页数:12
相关论文
共 85 条
  • [1] Cognard JY(2008)Analysis of the nonlinear behavior of adhesives in bonded assembliesComparison of TAST and Arcan tests Int J Adhes Adhes 28 393-404
  • [2] Créachcadec R(2015)3D models of specimens with a scarf joint to test the adhesive and cohesive multi-axial behavior of adhesives Int J Adhes Adhes 62 154-164
  • [3] Sohier L(2008)Dynamic strength of adhesive single lap joints at high temperature Int J Adhes Adhes 28 321-327
  • [4] Davies P(2010)Finite-element analysis of SHPB tests on double-lap adhesive joints Int J Adhes Adhes 30 236-244
  • [5] Carrere N(2011)Experimental investigation of the shear dynamic behavior of double-lap adhesively bonded joints on a wide range of strain rates Int J Adhes Adhes 31 146-153
  • [6] Badulescu C(2010)Dynamic shear strength of adhesive joints made of metallic and composite adherents Mater Des 31 2102-2109
  • [7] Cognard JY(2015)Compact SHPB system for intermediate and high strain rate plasticity and fracture testing of sheet metal Exper Mech 55 1803-1811
  • [8] Leguillon D(1996)An investigation of dynamic crack initiation in PMMA Mech Mater 23 229-239
  • [9] Adamvalli M(2009)A new shear-compression-specimen for determining quasistatic and dynamic polymer properties Exper Mech 49 427-449
  • [10] Parameswaran V(2016)A shear-tension specimen for large strain testing Exp Mech 56 437-175