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MICRO-CRACK INITIATION IN HIGH-SILICON CAST IRON DURING TENSION LOADING

机译:拉伸过程中高硅铸铁的微裂纹萌生

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This paper focuses on measuring local strain at micro-crack initiation in fully ferritic cast iron alloys, using micro-scale strain mapping. Strain mapping was achieved using in-situ tensile test under optical microscope combined with digital image correlation (DIC). A previously developed pit etching procedure was used to create microscale random speckle patterns in the microstructure of the tensile specimens. Real-time microscope images were recorded during tensile deformation and analyzed by using DIC technique. Local strain values were measured around early formed micro-cracks during deformation. Results showed a heterogeneous deformation in microscale level. The micro-cracks were initiated at well-defined local strain levels but with large variations in the global strain level. Crack initiation was strongly associated with the graphite particles and their morphology.
机译:本文着重于使用微尺度应变图测量全铁素体铸铁合金在微裂纹萌生时的局部应变。使用光学显微镜下的原位拉伸测试结合数字图像相关性(DIC)来实现应变映射。先前开发的凹坑蚀刻程序用于在拉伸试样的微观结构中创建微尺度的随机斑点图案。在拉伸变形过程中记录实时显微镜图像,并使用DIC技术进行分析。在变形过程中,对早期形成的微裂纹周围的局部应变值进行了测量。结果显示了微观尺度上的异质变形。微裂纹是在明确定义的局部应变水平下引发的,但整体应变水平存在较大差异。裂纹萌生与石墨颗粒及其形态密切相关。

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