Influence of Contact Stresses on Crack-Tip Stress Field: A Multiparameter Approach Using Digital Photoelasticity

IF 2 3区 工程技术 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Experimental Mechanics Pub Date : 2024-04-04 DOI:10.1007/s11340-024-01053-1
G. Ramaswamy, K. Ramesh, U. Saravanan
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Abstract

Background

The interaction of stress fields between cracks or cracks with discontinuities like holes, etc., has been widely studied. Another crucial class of problems include cracks interacting with contact stresses but there has been no work to study them systematically.

Objective

This study aims to understand the role of contact stress in influencing the crack-tip stress field which is essential for reliable estimation of stress intensity factors (SIFs) experimentally.

Method

The contact stress influence on crack-tip isochromatic features is initially discussed using an experimental result for a moderately-deep beam with a small crack. SIFs are evaluated using the over-deterministic nonlinear least squares method. The crack-contact stress interaction is then studied by a superposed crack-contact analytical solution. Photoelastic experiments are conducted for a cracked moderately-deep beam subjected to three-point bending. The SIFs evaluated using the multiparameter solution compare well with finite element predictions. Subsequently, multiple interaction configurations are experimentally examined in a cracked moderately-slender beam by varying the magnitude and position of the contact load relative to the crack.

Results

Even a small crack shows a noticeable change in isochromatics due to influence of contact stress and a two-parameter solution is inadequate here. A multiparameter crack-tip solution is observed to capture the isochromatic fringe field very effectively towards SIF evaluation.

Conclusion

The changes in isochromatics at a crack-tip due to contact stresses are significant. A systematic analysis shows that with appropriate data collection, the multiparameter solution provides SIFs with very little uncertainty in the presence of contact stresses with varying complexities.

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接触应力对裂纹尖端应力场的影响:利用数字光弹性的多参数方法
背景裂纹之间或裂纹与孔洞等不连续面之间应力场的相互作用已被广泛研究。本研究旨在了解接触应力在影响裂纹尖端应力场中的作用,这对于通过实验可靠地估算应力强度因子(SIF)至关重要。方法首先使用带有小裂纹的中等深度梁的实验结果来讨论接触应力对裂纹尖端等色特征的影响。采用超确定性非线性最小二乘法评估 SIF。然后通过叠加裂纹-接触解析解研究了裂纹-接触应力相互作用。对承受三点弯曲的中等深度裂纹梁进行了光弹性实验。使用多参数解法评估的 SIF 与有限元预测结果对比良好。随后,通过改变接触载荷相对于裂缝的大小和位置,对开裂的中等细长梁的多种相互作用配置进行了实验检验。据观察,多参数裂纹尖端解决方案能够非常有效地捕捉等色边缘场,从而进行 SIF 评估。系统性分析表明,通过适当的数据收集,多参数解法可在存在不同复杂程度的接触应力时提供不确定性极小的 SIF。
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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来源期刊
Experimental Mechanics
Experimental Mechanics 物理-材料科学:表征与测试
CiteScore
4.40
自引率
16.70%
发文量
111
审稿时长
3 months
期刊介绍: Experimental Mechanics is the official journal of the Society for Experimental Mechanics that publishes papers in all areas of experimentation including its theoretical and computational analysis. The journal covers research in design and implementation of novel or improved experiments to characterize materials, structures and systems. Articles extending the frontiers of experimental mechanics at large and small scales are particularly welcome. Coverage extends from research in solid and fluids mechanics to fields at the intersection of disciplines including physics, chemistry and biology. Development of new devices and technologies for metrology applications in a wide range of industrial sectors (e.g., manufacturing, high-performance materials, aerospace, information technology, medicine, energy and environmental technologies) is also covered.
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