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It is categorically proved that there exists an optimal thickness of the thick plate, which minimizes the peak temperature.
Solutions are based on the Mindlin thick plate theory.
The disc is modelled by moderately thick plate theory.
Further, the results are compared between thick plate theory and Kirchhoff's plate theory.
All of these can affect the industrial application of high strength thick plate wielding.
We present a draft schedule scheme to estimate the productivity in thick plate rolling process.
The substrate material is a 10 mm thick plate of AISI 304 steel.
A thick plate homogenization scheme based on Finite Elements computations has been applied.
This paper discusses the need and conceptual design of thick plate concept for rotatable plugs in CFBR, the approach adopted for technology development of thick plate narrow gap welding and the salient experiences gained during the developmental project.
The plate is modelled by the Mindlin thick plate theory and Timoshenko beam theory is applied for stiffeners.
The successful realisation of this concept necessitates the indigenous development of thick plate narrow gap welding technology.
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