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Prof B G Neal Mechanical Engineering Dept Imperial College
Introduction to Thermal Stress and Strain
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aircraft aluminium alloy applied austenitic axial behaviour biaxial blade boundary conditions calculated cent ceramics cermets coefficient components compressive computation constant cracking creep deformation creep rate creep relaxation curve cyclic deflexion deformation disc ductility effect elastic element Engrs equations equilibrium example experimental external load factor fatigue strength flow fracture fuel function gas turbine Glenny heat conduction heat transfer heat-transfer high temperatures hoop stress increase incremental collapse Inst material maximum Mech mechanical metals method molybdenum Nimonic number of cycles Nusselt obtained occur plastic strain plastic zone plate Poisson's ratio problem properties reactor resistance rotor rupture shear stress shown in Fig solid solution specimen steam steel strain cycling strain range stress concentration structure surface temperature change temperature distribution temperature gradients tensile stress thermal cycling thermal expansion thermal fatigue thermal shock thermal strains thermal stresses tion ture uniaxial variables variation yield Young's modulus zero