A Concise Binomial Model for Nonlinear Creep-Fatigue Crack Growth Behavior at Elevated Temperatures

蠕动 高温合金 材料科学 停留时间 断裂(地质) 断裂韧性 非线性系统 结构工程 断裂力学 压力(语言学) 裂缝闭合 巴黎法 复合材料 机械 工程类 临床心理学 微观结构 物理 哲学 语言学 医学 量子力学
作者
Jianxing Mao,Zhixing Xiao,Dianyin Hu,Xiaojun Guo,Rongqiao Wang
出处
期刊:Materials [Multidisciplinary Digital Publishing Institute]
卷期号:15 (2): 651-651 被引量:1
标识
DOI:10.3390/ma15020651
摘要

The creep-fatigue crack growth problem remains challenging since materials exhibit different linear and nonlinear behaviors depending on the environmental and loading conditions. In this paper, we systematically carried out a series of creep-fatigue crack growth experiments to evaluate the influence from temperature, stress ratio, and dwell time for the nickel-based superalloy GH4720Li. A transition from coupled fatigue-dominated fracture to creep-dominated fracture was observed with the increase of dwell time at 600 °C, while only the creep-dominated fracture existed at 700 °C, regardless of the dwell time. A concise binomial crack growth model was constructed on the basis of existing phenomenal models, where the linear terms are included to express the behavior under pure creep loading, and the nonlinear terms were introduced to represent the behavior near the fracture toughness and during the creep-fatigue interaction. Through the model implementation and validation of the proposed model, the correlation coefficient is higher than 0.9 on ten out of twelve sets of experimental data, revealing the accuracy of the proposed model. This work contributes to an enrichment of creep-fatigue crack growth data in the typical nickel-based superalloy at elevated temperatures and could be referable in the modeling for damage tolerance assessment of turbine disks.
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