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Eigenstrain reconstruction of residual strains in an additively manufactured and shot peened nickel superalloy compressor blade

机译:在一种含量制造和射击喷丸镍高温合金压缩机刀片中的特征性重建残留菌株

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摘要

Numerical modelling of the residual stresses and strains within mechanical components is of great importance for improving the quality and reliability of design for structural integrity. A particularly versatile and powerful approach is offered by direct and inverse eigenstrain modelling. The nature of the eigenstrain modelling approach is that it not only generates an efficient parametric representation of the residual stress field, but also ensures consistency by enforcing stress equilibrium and strain compatibility. In the present study we propose a particular way of prescribing the eigenstrain field due to surface treatment such as shot peening. Eigenstrain variation is described by a continuous function of the distance from the boundary of the object in a two-dimensional model of its cross-section. The procedure is compatible with the use of commercial numerical simulation software, and allows correct assignment of all eigenstrain components. We apply the technique to the evaluation of residual strain within an additively manufactured nickel superalloy compressor blade that was subsequently subjected to shot peening treatment. Two experimental techniques are used to validate the model, namely, Focused Ion Beam ring core milling (FIB-DIC) and synchrotron X-ray Powder Diffraction (SXRPD). Consistency between model prediction and experimental measurements provides verification of the suitability of eigenstrain modelling as consistent basis for the incorporation of residual stress effects on the deformation behaviour of manufactured components.
机译:机械部件内残余应力和菌株的数值模型对于提高结构完整性的设计质量和可靠性具有重要意义。通过直接和逆的特征造型来提供特别多功能和强大的方法。特征设计方法的性质是它不仅产生残余应力场的有效参数表示,而且还通过实施应力平衡和应变兼容性来确保一致性。在本研究中,我们提出了一种特定方式,该特定方法由于诸如射击喷丸而导致的特定粒子领域。特征变形变型由距其横截面的二维模型中对象的边界的距离的连续函数来描述。该过程与使用商业数字模拟软件的使用兼容,并允许正确分配所有特征组件。我们将该技术应用于在含有制造的镍高温合金压缩机叶片内的残留菌株的评估,随后进行喷丸处理。两种实验技术用于验证模型,即聚焦离子束环芯研磨(FIB-DIC)和同步​​辐射X射线粉末衍射(SXRPD)。模型预测和实验测量之间的一致性提供了验证了特征仪建模的适用性,以掺入对制造部件的变形行为的残余应力影响。

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