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Microstructural Influences on Fracture at Prior Austenite Grain Boundaries in Dual-Phase Steels

机译:显微组织对双相钢先前奥氏体晶界断裂的影响

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摘要

Dual phase (DP) steels provide good strength and ductility properties. Nevertheless, their forming capability is limited due to the damage characteristics of their constituting microstructural phases and interfaces. In this work, a specific type of interface is analysed, i.e., prior austenite grain boundaries (PAGBs). In the literature, prior austenite grain boundary fracture has been reported as an important damage mechanism of DP-steels. The influence of the morphology of phase boundaries near the PAGB and the role of the martensite substructure in the vicinity of a PAGB on damage initiation is analysed. The experimentally observed preferred sites of crack nucleation along the PAGB are assessed and clarified. A finite strain rate dependent crystal plasticity model accounting for the anisotropic elasto-plasticity of martensite (and also ferrite) was applied to an idealized volume element approximating a typical small-scale PAGB microstructure. The boundary value problem is solved using a fast Fourier transform (FFT) based spectral solver. The role of crystallography and geometrical features within the volume element is studied using simulations. Results are discussed considering possibly dominant regimes of elasticity and plasticity.
机译:双相(DP)钢具有良好的强度和延展性。然而,由于其构成的微结构相和界面的破坏特性,其形成能力受到限制。在这项工作中,分析了特定类型的界面,即先前的奥氏体晶界(PAGB)。在文献中,先前的奥氏体晶界断裂已被报道为DP钢的重要破坏机理。分析了PAGB附近的相界形态和PAGB附近的马氏体亚结构对损伤萌生的影响。评估并澄清了沿实验观察到的沿PAGB的裂纹成核的优选位置。将考虑了马氏体(以及铁素体)各向异性弹塑性的有限应变速率相关的晶体可塑性模型应用于近似典型的小尺寸PAGB微观结构的理想体积元素。使用基于快速傅立叶变换(FFT)的频谱求解器可以解决边值问题。使用模拟研究了晶体学和体积元素内的几何特征的作用。在讨论结果时考虑了可能的主要弹性和可塑性。

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