Wang Chengan, Park Yujin, Kim Taehyung
Graduate School, Department of Mechanical and Aeronautical System Engineering, Cheongju University, 298 Daeseong-ro, Cheongju-si 28503, Republic of Korea.
Department of Aeronautical and Mechanical Engineering, Cheongju University, 298 Daeseong-ro, Cheongju-si 28503, Republic of Korea.
Materials (Basel). 2023 Aug 4;16(15):5472. doi: 10.3390/ma16155472.
In this study, a combined discrete-finite element model based on the Almen intensity measurement test was proposed to evaluate the real shot peening residual stress. The discrete element analysis was utilized to simulate the random behavior of numerous shot balls, while the finite element analysis was employed to quantitatively predict the residual stress induced by shot peening. Moreover, the Almen intensity, an essential factor in the actual shot peening process, was taken into account. Initially, an Almen strip analysis model was established, and the multi-random impact analysis was performed to validate the good agreement between the analytical Almen curve and experimental Almen curve. Subsequently, the unit cell discrete-finite element analysis model was expanded for predicting the peening residual stress, incorporating the Almen intensity. The analysis results showed a significant correlation between the predicted peening residual stress and the XRD (X-ray diffraction) experimental residual stress. Therefore, it was confirmed that the proposed discrete-finite element random impact analysis model in this study could serve as an effective analytical technique capable of substituting for the actual shot peening process.
在本研究中,提出了一种基于阿尔门强度测量试验的组合离散-有限元模型,以评估实际喷丸强化残余应力。利用离散元分析来模拟大量弹丸的随机行为,同时采用有限元分析来定量预测喷丸强化引起的残余应力。此外,还考虑了阿尔门强度这一实际喷丸强化过程中的关键因素。首先,建立了阿尔门试片分析模型,并进行了多随机冲击分析,以验证解析阿尔门曲线与实验阿尔门曲线之间的良好一致性。随后,扩展了单胞离散-有限元分析模型,以结合阿尔门强度来预测喷丸残余应力。分析结果表明,预测的喷丸残余应力与XRD(X射线衍射)实验残余应力之间存在显著相关性。因此,可以确认本研究中提出的离散-有限元随机冲击分析模型可作为一种有效的分析技术,能够替代实际的喷丸强化过程。