材料科学
蠕动
高温合金
压力(语言学)
复合材料
极限抗拉强度
GSM演进的增强数据速率
粘塑性
开裂
结构工程
本构方程
冶金
有限元法
微观结构
工程类
哲学
电信
语言学
作者
Jia Huang,Zhenzhuo He,Shuangqi Lyu,Xiaoguang Yang,Duoqi Shi,Yantao Sun,Yongzhao LYU,Zhizhong Fu,Guolei Miao,Song Jia-nan
标识
DOI:10.1016/j.cja.2022.07.006
摘要
Smooth and three types of U-shape single-edge notched plate specimens adopted to experimentally investigate stress rupture behavior of Ni-based Directionally Solidified (DS) superalloy at 850 °C exhibit notch weakening effect and multi-source cracking initiation near the notch root. However, stress rupture behavior of smooth and V-shape notched round bars at 1040 °C revealed by Li et al indicates notch strengthening effect and creep micro-holes originating mostly from the central portion. A combined creep-viscoplastic constitutive model is employed to analyze the distribution of stress, strain and stress Triaxial Factor (TF) near the notch root. The different stress distribution and creep restraint between asymmetric notched plate specimens and symmetric notched round bars are the main reasons for the corresponding failure mechanism. Meanwhile, a good qualitative relationship exists between TF value and stress rupture life of notched specimen. Especially, the area with maximum TF value (TFmax) is highly consistent with creep damage initiation region. Hence, based on the distribution characteristics of the initial tensile loading, a representative stress method independent of time -changing creep load at the location of TFmax is conducted for life prediction. The predicted results of both smooth and notched plate specimens and round bars agrees well with the experimental results.
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