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首页> 外文期刊>Proceedings of the Society for Experimental Mechanics >Quantifying Three-Dimensional Residual Stress Distributions Using Spatially-Resolved Diffraction Measurements and Finite Element Based Data Reduction
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Quantifying Three-Dimensional Residual Stress Distributions Using Spatially-Resolved Diffraction Measurements and Finite Element Based Data Reduction

机译:量化的三维残余应力发行版使用在衍射测量和有限元的基础数据简化

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摘要

Residual stress can play a significant role in the processing and performance of an engineered metallic component. The stress state within a polycrystalline part can vary significantly between its surface and its interior. To measure three-dimensional (3D) residual stress fields, a synchrotron x-ray diffraction-based experimental technique capable of non-destructively measuring a set of lattice strain pole figures (SPFs) at various surface and internal points within a component was developed. The resulting SPFs were used as input for a recently developed biscale optimization scheme (McNelis et al. J Mech Phys Sol 61:428-449 (2013)) that combines crystal-scale measurements and continuum-scale constraints to determine the 3D residual stress field in the component. To demonstrate this methodology, the 3D residual stress distribution was evaluated for an interference-fit sample fabricated from a low solvus high refractory (LSHR) polycrystalline Ni-base superalloy.
机译:残余应力可以发挥重要作用处理和性能的工程金属组件。多晶部分可以发生显著的变化其表面及其内部之间。三维(3 d)残余应力场同步加速器x射线diffraction-based实验技术能力无损测量一套晶格应变杆数据(SPFs)各种各样的表面和内部点组件开发。作为输入用于最近biscale开发优化方案(麦克尼利et al。索尔61:428 - 449(2013))相结合crystal-scale测量和continuum-scale约束来确定三维残余应力字段组件。方法,三维残余应力分布评估一个干涉配合样品吗从一个低溶线高耐火材料制作的(LSHR)多晶Ni-base高温合金。

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