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In the later part of the paper, basic mechanical tests and inspection process are described.
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The fatigue behavior of laser hybrid welded 7000 series aluminum alloys with high Zn was investigated by electron backscattered diffraction, transmission electron microscopy, energy-dispersive spectroscopy, basic mechanical tests, fatigue cracking rate, synchrotron radiation X-ray computed micro-tomography, high-cycle fatigue and residual stress-based fatigue crack growth simulation.
Implants for fracture and/or osteotomy fixation are often tested according to basic mechanical test models such as open gap tests or 4-point-bending tests.
Further details of the processing, mechanical testing and simulation methods can be found in the Supplementary Methods section.
Implant fixation was assessed by mechanical testing and histomorphometric evaluation.
In addition to the basic mechanical characterization tests conducted to identify the material coefficients, in-plane compression tension experiments were conducted.
Lectures, recitations, and experiments elucidate the basic mechanical and thermodynamic principles underlying soft and active materials.
Among some few others tests, the evaluation of the Atterberg limits is a very basic soil mechanical test allowing a first insight into the chemical reactivity of clays.
The prisms were tested in compression and flexure to obtain the basic mechanical properties and determine the optimal sawdust content.
Uniaxial tensile tests and dynamic mechanical analysis were carried out to obtain basic mechanical properties and glass transition temperatures, respectively.
Therefore appropriate testing of orthopedic implants must include knowledge of basic mechanical and materials concepts; the anatomy surrounding the device; and biomechanics of the implant, the body, and the interface between the body and implant.
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