Fractal analysis of crack initiation in polycrystalline alloys using surface interferometry

Devesh K. Jha, D. S. Singh, S. Gupta, A. Ray
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引用次数: 13

Abstract

Microstructural degradation is a predominant source of damage in polycrystalline alloys that are commonly used in diverse applications. For early diagnosis and prognosis of failures, it is essential to understand the mechanisms of damage growth specifically in the crack initiation phase, which is still an intriguing phenomenon for scientists due to sensing inaccuracies and modeling uncertainties. Measurements of gradually evolving deformations on the material surface during crack initiation provide early warnings of forthcoming widespread damage. In this paper, a surface interferometer is used to generate 3-D surface profiles of polycrystalline alloy specimens under oscillating load. The concepts of fractal geometry are used to quantify the changes in the 3-D surface profiles as early indicators of damage evolution in the crack initiation phase.
多晶合金裂纹萌生的表面干涉分形分析
显微组织退化是多晶合金损伤的主要来源,多晶合金通常用于各种应用。为了早期诊断和预测故障,了解裂纹萌生阶段的损伤扩展机制是至关重要的,由于传感不准确和建模不确定,这仍然是科学家们感兴趣的现象。在裂纹萌生过程中对材料表面逐渐演变的变形进行测量,为即将到来的大面积损伤提供了早期预警。本文利用表面干涉仪生成了振荡载荷下多晶合金试样的三维表面轮廓。分形几何的概念被用来量化三维表面轮廓的变化,作为裂纹萌生阶段损伤演变的早期指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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