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Steady State Structural Analysis of High Pressure Gas Turbine Blade using Finite Element Analysis

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Published under licence by IOP Publishing Ltd
, , Citation Hussain Mahamed Sahed Mostafa Mazarbhuiya and Krishna Murari Pandey 2017 IOP Conf. Ser.: Mater. Sci. Eng. 225 012113 DOI 10.1088/1757-899X/225/1/012113

1757-899X/225/1/012113

Abstract

In gas turbines the major portion of performance dependency lies upon turbine blade design. Turbine blades experience very high centrifugal, axial and tangential force during power generation. While withstanding these forces blades undergo elongation. Different methods have proposed for better enhancement of the mechanical properties of blade to withstand in extreme condition. Present paper describes the stress and elongation for blades having properties of different materials. Steady state structural analysis have performed in the present work for different materials (In 625, In 718, In 738, In 738 LC, MAR M246, Ni-Cr, Ti-alloy, Ti-Al, Ti-T6, U500). Remarkable finding is that the root of the blade is subjected to maximum stress for all blade materials and the blade made of MAR M246 has less stress and deformation among all other blade materials which can be selected as a suitable material for gas turbine blade.

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10.1088/1757-899X/225/1/012113