激光加工X12Cr涡轮叶片残余应力诱导建模与优化

Q3 Energy Journal of Energy Systems Pub Date : 2023-09-30 DOI:10.30521/jes.1249912
Festus Oluwadare FAMESO, Dawood DESAİ, Schalk KOK, Dylan ARMFİELD, Mark NEWBY
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引用次数: 0

摘要

能源和电力工业传统上依赖于大型涡轮机械来满足不断增长的全球能源需求。然而,在使用过程中,意外故障仍然会对可持续性造成安全和经济后果的威胁。激光冲击表面处理技术被认为是缓解工业部件(如涡轮叶片)裂纹萌生和扩展、磨损和疲劳的一种有竞争力的替代方案。本文介绍了利用数值方法和ABAQUS®和MATLAB®等商用代码对激光冲击治疗参数进行建模和优化。建立了用于诱导激光加工铬-12基高强度钢合金(X12Cr)涡轮叶片全局最优压残余应力分布的基于模型的工艺优化参数,显示了所研究区域内输入变量的参数组合,从而获得最大的CRS输出。作为研究的结果,本文还提出了激光冲击强化过程中应力感应输入参数的重要性层次。在实际处理组件之前预测和分析结果的能力对于降低成本、停机时间以及与这些组件意外故障相关的其他经济损失是有益的,也是必不可少的。
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Modelling and optimization of residual stress induction on laser-worked X12Cr turbine blades
The energy and power industry conventionally depends on large-scale turbomachinery to meet the ever-growing global energy demands. However, unplanned in-service failures remain a threat to sustainability with safety and economic consequences. The laser shock surface treatment technique is being considered a competitive alternative in mitigating crack initiation and growth, wear and fatigue of industrial components such as turbine blades. This paper presents the modelling and optimization of laser shock treatment parameters using numerical methods and commercial codes such as ABAQUS® and MATLAB®. Model-based process optimization parameters for the induction of global optimum compressive residual stress distribution in laser-worked Chromium-12 based high strength steel alloy (X12Cr) turbine blade is established, showing parametric combinations of inputs variables within the domain under investigation, yielding maximized CRS outputs. A hierarchy of significance of the input parameters to the laser shock peening process for stress induction has also been put forward as an outcome of this study. The capacity to predict and analyze outcomes before actual treatment of the components is beneficial and imperative to cutting costs, downtimes and other economic losses associated with unplanned failure of these components.
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来源期刊
Journal of Energy Systems
Journal of Energy Systems Environmental Science-Management, Monitoring, Policy and Law
CiteScore
1.60
自引率
0.00%
发文量
29
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