Fatigue strength of adhesively butt-bonded hollow cylinders under multiaxial loading with constant and variable amplitudes

被引:1
|
作者
Hecht, Matthias [1 ]
Baumgartner, Joerg [1 ,2 ]
Tews, Karina [3 ]
Cavdar, Serkan [3 ]
Meschut, Gerson [3 ]
机构
[1] Techn Univ Darmstadt, Res Grp Syst Reliabil Adapt Struct & Machine Acou, Otto Berndt Str 2, D-64287 Darmstadt, Germany
[2] Fraunhofer LBF, Inst Struct Durabil & Syst Reliabil, Bartningstr 47, D-64289 Darmstadt, Germany
[3] Paderborn Univ, Lab Mat & Joining Technol LWF, Pohlweg 47-49, D-33098 Paderborn, Germany
关键词
variable amplitude fatigue; design and test spectra; damage accumulation; multiaxial loading; adhesiv bonding;
D O I
10.1016/j.prostr.2022.03.026
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Adhesive bonding is commonly used in the manufacturing of vehicle bodies. A bond-line has the advantage that the joined flanges are stressed homogenously compared to a conventional spot-welded design. In addition, the bond-line provides a higher stiffness and better damping behavior. There exists still quite some uncertainty in the fatigue assessment of adhesively bonded joints due to a lack of reliable assessment approaches. This is especially true for the case of more complex in-service loading conditions as variable amplitude and multiaxial loading. For example, the experimentally determined actual damage sum in the literature shows a high scatter and is well below the theoretical value of one proposed by Palmgren-Miner. This uncertainty is typically countered by an over-dimensioning of the bond. In order to identify the fatigue strength behavior under constant and variable, multiaxial loading, fatigue tests on adhesively butt-bonded double hollow cylinder specimens with a thickness of the bonding of 0.3 mm have been performed under load control. The endurable damage sums according to the Palmgren-Miner hypothesis with a modified slope after the knee point of the Woehler line are determined and compared to data from the literature, they are significantly lower than Dth = 1. Non-proportional multiaxial loading (phi = 90 degrees) does not reduce the fatigue life compared to proportional (phi = 0 degrees). (C) 2021 The Authors. Published by Elsevier B.V.
引用
收藏
页码:251 / 259
页数:9
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