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We investigate material combinations and stress distribution of sandwich plates with FGM faces.
Material combinations and parameters were optimised to produce cohesive geometric structures.
Numerical results corresponding to certain material combinations and interlayer material equations are presented and analysed.
Attempts at advancing the state of the art address the topic of material combinations and functionally graded materials.
Some numerical results are provided to investigate the effects of the material combinations and geometric configurations on the interfacial stresses.
The effects of material combinations and the adhesive thickness on the intensity of singular stress in adhesive joints under tension and bending were discussed.
Similar(29)
The highest efficiency obtained with this material combination and stack design is 3.0% under AM1.5g illumination.
The paper presents results concerning the effects of material combination and service parameters on power dissipation and damage accumulation.
The stress intensity factors are given with varying the material combination and aspect ratio of the crack.
Numerical examples are presented and discussed the effects of the poling direction, material combination and the load combination on dynamic intensity factors.
A methodology to select the best material combination and optimally design composite sandwich cylinders having fibre reinforced skins and low density cores for minimum mass is described.
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