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Ductile Fracture Assessment of 304L Stainless Steel Using 3D X-ray Computed Tomography

机译:使用3D X射线计算机断层扫描技术评估304L不锈钢的韧性断裂

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摘要

Stainless steel manufactured by hot isostatic pressing (HIP) has been shown to exhibit significant differences in ductile fracture behavior when compared to equivalently graded forged steel, due to differences in oxide particle concentration between the two manufacture routes. Herein we analyse and quantify the ductile damage characteristics in the fracture process zone of equivalently graded forged and HIP 304L steel using 3D X-ray computed tomography (CT). Ductile void characteristics have been found to vary in size, shape, and spatial distribution; data which are in agreement with the differences in distribution of initiation particles in HIP and forged steel. Using advanced X-ray CT to characterize ductile damage, experimentally determined data can be employed to calibrate existing well-known ductile failure models, developing both our current understanding of ductile failure as well as a predictive tool to simulate fracture in novel HIP components.
机译:与同等等级的锻钢相比,通过热等静压(HIP)制造的不锈钢在延性断裂性能方面已显示出显着差异,这是由于两种制造路线之间的氧化物颗粒浓度差异所致。本文中,我们使用3D X射线计算机断层扫描(CT)分析和量化了等梯度锻造HIP 304L钢在断裂过程区域中的延性破坏特性。球墨铸铁的孔隙特征在大小,形状和空间分布上都不同。这些数据与HIP和锻钢中起始颗粒分布的差异一致。使用先进的X射线CT来表征延性损伤,可以将实验确定的数据用于校准现有的众所周知的延性破坏模型,从而发展我们对延性破坏的当前理解以及一种预测工具,以模拟新型HIP组件中的断裂。

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