Zhang Xuecheng, Guo Guanghao, Li Zixin, Meng Wenchao, Zhang Yuefei, Ye Qing, Wang Jin, He Shibo, Zhao Xinbao, Chen Jiming, Zhang Ze
State Key Laboratory of Industrial Control Technology, College of Control Science and Engineering, Zhejiang University, Hangzhou, 310027, China.
Polytechnic Institute, Zhejiang University, Hangzhou, 310015, China.
Commun Eng. 2024 Aug 6;3(1):108. doi: 10.1038/s44172-024-00257-6.
Superalloy materials exhibit susceptibility to fracture failures stemming from the influence of thermomechanical factors. To comprehensively understand the fracture mechanisms, material properties, root causes of failure, and the subsequent optimization of alloys, a detailed analysis of the internal fracture process and the morphological traits of the fracture surface is imperative. Traditional analysis of fracture surfaces solely relies on 2D images, thus lacking crucial 3D information. Although in situ experiments can capture the fracture process, their effectiveness is confined to the specimen's surface, precluding insight into internal changes. Here we introduce an integrated framework encompassing the process of 3D reconstruction of fracture surfaces, aiming to enhance the visual information obtained with micron-level accuracy, visual intuitiveness and sense of depth. Additionally, this framework also facilitates the scrutiny and inference of internal fracture processes. These results demonstrate that under specific service conditions, material deformation fracture probably stems from a combination of surface cracking and internal cracking rather than exclusively one or the other. Overall, our description and analysis of internally initiated cracking due to defects within the specimens can be beneficial in guiding future alloy design and optimization efforts.
高温合金材料因热机械因素的影响而容易发生断裂失效。为了全面了解断裂机制、材料性能、失效的根本原因以及随后对合金的优化,对内部断裂过程和断口表面形态特征进行详细分析势在必行。传统的断口分析仅依赖二维图像,因此缺乏关键的三维信息。尽管原位实验可以捕捉断裂过程,但其有效性仅限于试样表面,无法洞察内部变化。在此,我们引入一个涵盖断口表面三维重建过程的综合框架,旨在提高以微米级精度获得的视觉信息、视觉直观性和深度感。此外,该框架还便于对内部断裂过程进行审查和推断。这些结果表明,在特定的服役条件下,材料变形断裂可能源于表面裂纹和内部裂纹的组合,而不是仅仅源于其中一种。总体而言,我们对试样内部缺陷引发的内部裂纹的描述和分析有助于指导未来的合金设计和优化工作。