Fatigue performance analysis of stainless steel cruciform joint with angular misalignment

Author:

Ren Zhikuan1,Liu Xiaogang2,Zhao Xiaoqing2,Chang Haosong3,Yue Qingrui12

Affiliation:

1. Beijing University of Technology Beijing China

2. Research Institute of Urbanization and Urban Safety, School of Civil and Resource Engineering University of Science and Technology Beijing Beijing China

3. Central Research Institute of Building and Construction MCC Group Beijing China

Abstract

AbstractWelding distortion causes the change of stress distribution of load‐carrying cruciform stainless steel welded joints, and the weld with angle less than 90° between steel plates became the fatigue performance control weld because of stress magnification. The effect of angular misalignment on fatigue performance of stainless steel cruciform welded joint was experimentally and numerically studied. The fatigue damage evolution equations, under different stress amplitudes, were derived using relative deformation increment as damage variable based on continuum damage mechanics to explain the process of damage transformation from micro to macro crack and finally rapid fracture. The hot spot stress magnification factor was positively correlated with the welding distortion angle and exhibited two discernible stages of rise and fall with increasing nominal stress taking the proportional limit as boundary. A proposed formula considering both misalignment angle and applied stress aimed to enhance accuracy in fatigue performance evaluation compared to current methods.

Funder

National Natural Science Foundation of China

Postdoctoral Research Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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