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Residual stresses are an integral part of the total stress acting on any component in service.
Component surface optimisation through the application of surface structuring is understood to be beneficial to performance and longevity of a component in service.
In this view, non-destructive testing is needed in order to be able to evaluate the material properties while keeping the component in service.
This has been deemed essential since engineers, conscious of the importance that surface character has on the functional performance of the component in service, have strived to improve their understanding.
It has been demonstrated that this simple testing method is convenient and available for measuring or estimating the surface strength of a glass component in service, without using a standard specimen and a rupture test in laboratory.
A number of factors influence the fatigue life of a component in service, viz., (i) complex stress cycles, (ii) engineering design, (iii) manufacturing and inspection, (iv) service conditions and environment and (v) material of construction.
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Strain amplitude spectra were extracted from real spectra recorded from components in service.
Based on this model, a strength proof test was designed to examine the reliability of glass components in service.
The results presented show that laser trepanning speed is influential in limiting the life performance of laser drilled components in service.
The model proposes the use of monitoring components in service registries and service providers to detect run-time faults during publishing, discovery, binding and execution of web services.
In some respects this is taken into account in the design of the plant by adopting redundancy policy of (n + 1) components, where n is the number of the components in service.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com