Thermomechanical model for solidification and cooling simulation of Ni-based superalloy components

被引:5
作者
Labergere, C. [1 ]
Long, M. [2 ]
Badreddine, H. [1 ]
Niane, N-T [3 ]
Grange, D. [2 ]
Saanouni, K. [1 ]
机构
[1] Univ Technol Troyes, ICD LASMIS, Troyes, France
[2] Safran Adv Turbine Airfoils, 171 Blvd Valmy, F-92700 Colombes, France
[3] Safran Aircraft Engines, Mat & Proc Lab, 171 Blvd Valmy, F-92700 Colombes, France
关键词
Thermomechanics; Coupling; Multiphysics; Nickel alloy; Cooling simulation; Identification parameters; Solidification; Viscoplastiticty; Casting; MECHANICAL-BEHAVIOR; CRYSTAL PLASTICITY; PREDICTION; DEFORMATION; ALGORITHM; CHEMISTRY;
D O I
10.1016/j.ijsolstr.2020.12.009
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
One of the challenges encountered in the industrialization of new single-crystal superalloys parts (like high-pressure turbine blades and vanes for aircraft engines) is to limit the mechanical stresses during the solidification and cooling of the metal. In order to accurately predict the viscoplastic flow as well as the thermo-mechanical behaviour of Ni-based superalloy during its cooling, in this study a thermodynamically-consistent thermo-elasto-viscoplastic model was developed. This model takes into account the solid-liquid transition occurring in the material during the cooling phase. This is done by introducing a compressible-type viscoplastic yield function based on appropriate equivalent stress depending on volume fraction of the solid phase formed by the propagation of dendrites inside the liquid phase of the material. This model was implemented in Abaqus/Standard(C) F.E. code and applied to the identification of material parameters of Ni-based superalloy using isothermal tensile-relaxation tests driven for different strain rates and temperatures. First, anisothermal tensile-compression test was simulated on a single integration point. A comparison of the experimental and numerical stress-strain response partially validate the model. Second, a benchmark test involving casting of a rectangular Ni-based superalloy bar in a sand mold was simulated and analyzed. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页码:202 / 219
页数:18
相关论文
共 25 条
[1]   Ductile damage prediction in sheet and bulk metal forming [J].
Badreddine, Houssem ;
Labergere, Carl ;
Saanouni, Khemais .
COMPTES RENDUS MECANIQUE, 2016, 344 (4-5) :296-318
[2]   An ALE-FEM approach to the thermomechanics of solidification processes with application to prediction of pipe shrinkage [J].
Bellet, M ;
Jaouen, O ;
Poitrault, I .
INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW, 2005, 15 (2-3) :120-142
[3]   Influence of Chemistry on the Tensile Yield Strength of Nickel-Based Single Crystal Superalloys [J].
Caron, Pierre ;
Diologent, Frederic ;
Drawin, Stefan .
EURO SUPERALLOYS 2010, 2011, 278 :345-+
[4]   INELASTIC DEFORMATION OF POROUS MATERIALS [J].
COCKS, ACF .
JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 1989, 37 (06) :693-715
[5]   Modeling cyclic deformation of inconel 718 superalloy by means of crystal plasticity and computational homogenization [J].
Cruzado, A. ;
LLorca, J. ;
Segurado, J. .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2017, 122 :148-161
[6]   Multiscale modeling of the mechanical behavior of IN718 superalloy based on micropillar compression and computational homogenization [J].
Cruzado, A. ;
Gan, B. ;
Jimenez, M. ;
Barba, D. ;
Ostolaza, K. ;
Linaza, A. ;
Molina-Aldareguia, J. M. ;
Llorca, J. ;
Segurado, J. .
ACTA MATERIALIA, 2015, 98 :242-253
[7]  
Dassault Systemes, 2012, ABAQUS ANAL USERS MA
[8]   A microstructural model for the monotonic and the cyclic mechanical behavior of single crystals of superalloys at high temperatures [J].
Fedelich, B .
INTERNATIONAL JOURNAL OF PLASTICITY, 2002, 18 (01) :1-49
[9]   In Situ Measurement and Prediction of Stresses and Strains During Casting of Steel [J].
Galles, Daniel ;
Beckermann, Christoph .
METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 2016, 47A (02) :811-829
[10]   Numerical prediction of thermomechanical field localization in orthogonal cutting [J].
Issa, M. ;
Labergere, C. ;
Saanouni, K. ;
Rassineux, A. .
CIRP JOURNAL OF MANUFACTURING SCIENCE AND TECHNOLOGY, 2012, 5 (03) :175-195