Keywords: نورد عمیق; Deep rolling; Residual stresses; Notched specimens; Fatigue improvement; Structural steels;
مقالات ISI نورد عمیق (ترجمه نشده)
مقالات زیر هنوز به فارسی ترجمه نشده اند.
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: نورد عمیق; Deep rolling; Austenitic stainless steel; Fatigue strength; AISI 304; AISI 316;
Keywords: نورد عمیق; Hybrid process; Hard turning; Deep rolling; Surface roughness
Keywords: نورد عمیق; Surface treatments; Fatigue life; Deep Rolling;
Keywords: نورد عمیق; Deep rolling; Residual stress; Finite element simulation; High-strength steel; Torsion bars;
Keywords: نورد عمیق; Fretting fatigue; Fretting test setup; Deep rolling; Residual stresses; 7075-T6 aluminium alloy
Keywords: نورد عمیق; Railway axles; EA4T; Deep rolling; Finite element; Hole drilling; X-ray diffraction; Residual stress; Fatigue crack propagation
Keywords: نورد عمیق; Hybrid machining; Deep rolling; Surface integrity
Keywords: نورد عمیق; Surface Integrity; Steel; Deep Rolling
Consequences of deep rolling on the fatigue behavior of steel SAE 1045 at high loading amplitudes
Keywords: نورد عمیق; Residual stress stability; Deep rolling; Fatigue; Plastic deformation; Low-cycle fatigue;
The influence of heat treatment and deep rolling on the mechanical properties and integrity of AISI 1060 steel
Keywords: نورد عمیق; Deep rolling; Heat treatment; Microstructure; Hardness; Tensile strength; Residual stress;
Experimental parameter sensitivity analysis of residual stresses induced by deep rolling on 7075-T6 aluminium alloy
Keywords: نورد عمیق; Deep rolling; Residual stresses; Hole drilling method; X-ray diffraction; 7075-T6 aluminium alloy;
Mechanics of the burnishing process
Keywords: نورد عمیق; Roller burnishing; Deep rolling; Finite element method; Contact mechanics
An investigation of the mechanics of roller burnishing through finite element simulation and experiments
Keywords: نورد عمیق; Roller burnishing; Deep rolling; 3D finite element model
Residual stress relaxation of deep-rolled austenitic steel
Keywords: نورد عمیق; Deep rolling; Residual stress relaxation; Fatigue; AISI 304; Austenitic steel
Effect of low-frequency on fatigue behaviour of austenitic steel AISI 304 at room temperature and 25 °C
Keywords: نورد عمیق; Frequency; Fatigue; Austenitic steel; Deep rolling; Residual stress relaxation
Correlation between residual stress and plastic strain amplitude during low cycle fatigue of mechanically surface treated austenitic stainless steel AISI 304 and ferritic-pearlitic steel SAE 1045
Keywords: نورد عمیق; Deep rolling; Residual stress relaxation; Fatigue; Strain ageing; AISI 304; SAE 1045;
Effective boundary of deep-rolling treatment and its correlation with residual stress stability of Al–Mg–Mn and Al–Mg–Si–Cu alloys
Keywords: نورد عمیق; Fatigue; Deep rolling; Residual stress stability; Aluminium alloy
Comparison of the fatigue behavior and residual stress stability of laser-shock peened and deep rolled austenitic stainless steel AISI 304 in the temperature range 25–600 °C
Keywords: نورد عمیق; Laser-shock peening; Deep rolling; Residual stress relaxation; Fatigue; Nanocrystals formation
Effect of temperature on cyclic deformation behavior and residual stress relaxation of deep rolled under-aged aluminium alloy AA6110
Keywords: نورد عمیق; Precipitation; Fatigue; Deep rolling; Residual stress relaxation; Work hardening; Aluminium alloy 6110
Influence of ageing on cyclic deformation behavior and residual stress relaxation of deep rolled as-quenched aluminium alloy AA6110
Keywords: نورد عمیق; Precipitation; Fatigue; Deep rolling; Work hardening; Aluminium alloy;
Fatigue and residual stress relaxation of deep rolled differently aged aluminium alloy AA6110
Keywords: نورد عمیق; Precipitation; Fatigue; Deep rolling; Residual stress relaxation; Work hardening; Aluminium alloy
Mechanical and thermal stability of mechanically induced near-surface nanostructures
Keywords: نورد عمیق; Surface nanocrystallisation; Nanocrystalline materials; Transmission electron microscopy; Microstructure; Fatigue; Deep rolling;