DEVELOPMENT OF "MATERIAL SPECIFIC" CREEP CONTINUUM DAMAGE MECHANICS-BASED CONSTITUTIVE EQUATIONS

被引:0
作者
Vega, Ricardo [1 ]
Cano, Jaime A. [1 ]
Stewart, Calvin M. [1 ]
机构
[1] Univ Texas El Paso, Dept Mech Engn, El Paso, TX 79968 USA
来源
PROCEEDINGS OF THE ASME 2020 PRESSURE VESSELS & PIPING CONFERENCE (PVP2020), VOL 6 | 2020年
关键词
Creep; Creep Damage; Creep Rupture; Continuum Damage Mechanics; VISCOUS CREEP; POLYCRYSTALLINE; PREDICTION; ALUMINUM; FRACTURE;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The objective of this study is to introduce a method for creating "material specific" creep continuum damage mechanics-based constitutive models. Herein, material specific is defined as a constitutive model based on the mechanism-informed minimum creep strain rate (MCSR) equations found in deformation mechanism maps and calibrated to available material data. The material specific models are created by finding the best MCSR model for a dataset. Once the best MCSR model is found, the Monkman Grant inverse relationship between the MCSR and rupture time is employed to derive a rupture equation. The equations are substituted into continuum damage mechanics-based creep strain rate and damage evolution equations to furnish predictions of creep deformation and damage. Material specific modeling allows for the derivation of creep constitutive models that can better the material behavior specific to the available data of a material. The material specific framework is also advantageous since it has a systematic framework that moves from finding the best MCSR model, to rupture time, to damage evolution and, creep strain rate. Data for Alloy P91 was evaluated and a material specific constitutive model derived. The material specific model was able to accurately predict the MCSR, creep deformation, damage, and rupture of alloy P91.
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页数:10
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