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INHOMOGENEOUS STRAIN DISTRIBUTION IN SICF/SIC COUPONS UNDER TENSILE LOADING

机译:拉力作用下SICF / SIC零件中的非均匀应变分布

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The complex structural architecture and inherent processing artefacts within ceramic matrix composites combine to induce inhomogeneous deformation and damage prior to ultimate failure. Bulk measurements of strain via extensometry or even localised strain gauging will fail to characterise such inhomogeneity when performing conventional mechanical testing on laboratory scaled coupons. The current research project has, therefore, applied digital image correlation (DIC) techniques to the room temperature axial assessment of a SiC_f/SiC composite under static and ratchetted loading. As processed SiC_f/SiC panels were subjected to detailed X-ray computed tomography (XCT) inspection prior to specimen extraction and subsequent mechanical testing. In situ DIC strain measurements were taken throughout the period of room temperature monotonic and ratchet style tensile tests. Contemporary acoustic emission (AE) signals were also recorded to indicate significant damage events and the onset of ultimate failure. Data from these separate monitoring techniques were correlated to indicate the sensitivity or otherwise to pre-existing artefacts within the as received CMC panels.
机译:陶瓷基复合材料内部复杂的结构架构和固有的加工伪像相结合,在最终破坏之前引起不均匀的变形和损坏。当对实验室规模的试样进行常规的机械测试时,通过引伸测量或什至局部应变测量的应变的批量测量将无法表征这种不均匀性。因此,当前的研究项目已将数字图像相关(DIC)技术应用于静态和棘轮载荷下SiC_f / SiC复合材料的室温轴向评估。在提取样品和随后进行机械测试之前,对经过处理的SiC_f / SiC面板进行详细的X射线计算机断层扫描(XCT)检查。在室温单调和棘轮式拉伸试验的整个过程中均进行了原位DIC应变测量。还记录了当代声发射(AE)信号,以指示重大损坏事件和最终故障的发生。将来自这些单独的监视技术的数据进行关联,以指示在接收到的CMC面板中是否存在对伪像的敏感性或其他方式。

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