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On the isotropic elastic constants of graphite nodules in ductile cast iron: Analytical and numerical micromechanical investigations

机译:关于球墨铸铁中石墨球的各向同性弹性常数:分析和数值微观力学研究

摘要

A comprehensive description of the mechanical behavior of nodules in ductile iron is still missing in the published literature. Nevertheless, experimental evidence exists for the importance of such graphite particles during macroscopic material deformation, especially under compressive loading. In the present paper, the nodules’ elastic properties are thoroughly investigated by means of both analytical and numerical techniques. The analysis takes into account the influence of several non-linear phenomena, as local residual stresses arising during solid-state cooling, interface debonding and limited particle strength. It is shown that if the nodule internal structure is considered, the traditional isotropy assumption leads to the definition of a domain of admissible values for the effective elastic constants. However, micromechanical calculations indicate that values within the domain do not provide mesoscopic moduli in agreement with Young's modulus and Poisson's ratio recorded for common ferritic ductile iron grades. This suggests that graphite nodules may not be considered isotropic at the microscopic scale, at least from a mechanical viewpoint.
机译:球墨铸铁中的球根的力学行为的全面描述在公开文献中仍然缺失。然而,实验证据表明,这种石墨颗粒在宏观材料变形期间,特别是在压缩载荷下的重要性。在本文中,通过分析和数值技术对结节的弹性特性进行了全面研究。该分析考虑了几种非线性现象的影响,例如在固态冷却,界面剥离和有限的颗粒强度过程中产生的局部残余应力。结果表明,如果考虑结节内部结构,则传统的各向同性假设导致定义有效弹性常数的容许值域。但是,微机械计算表明,该域内的值不提供与普通铁素体球墨铸铁牌号记录的杨氏模量和泊松比一致的介观模量。这表明,至少从机械角度来看,石墨结节在微观尺度上可能不被认为是各向同性的。

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