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The aim was to develop a methodology for fast evaluation of the packages, with focus on wire bond fatigue, by combining finite element analysis (FEA) and mechanical fatigue testing.
The results of an experimental study are presented here concerning mechanical fatigue testing of GLARE structural specimens in conditions relevant to the acoustic fatigue problem.
The initiation of a class of fatigue cracks observed in thermal barrier coatings (TBCs) subjected to thermal gradient mechanical fatigue testing is investigated.
Low cycle isothermal mechanical fatigue testing of a eutectic alloy 63Sn/37Pb was carried out in a systematic manner over a wide range of frequencies (10−4 1 Hz) and temperatures (−40 to 150°C) with the total strain set at different values (1 50%).
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Mechanical fatigue tests are down below.
Their long-term performance and durability were also evaluated with a mechanical fatigue test.
After the mechanical fatigue test, a full tensile test with 315 mm of stretching from its nominal length was conducted.
Additionally performed finite element simulations offer an insight into the stress and strain concentrations during the mechanical fatigue tests.
Mechanical fatigue tests were conducted on specimens of A356-T6 calloys alloys under uniaxial and multi-axial cyclic loadings.
We also conduct mechanical fatigue tests where the Ni−VACNT strips show a superior bendability under cyclic loading.
Mechanical fatigue tests were conducted under R=−1 conditions on specimens machined at different locations in the casting at total strain amplitudes ranging from 0.02% to 0.5%.
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