Effect of residual stress on sulfide stress cracking and fracture toughness in carbon steel: A phase-field modeling approach

IF 5.6 2区 工程技术 Q1 ENGINEERING, MECHANICAL
Alok Negi , Imad Barsoum
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Abstract

The susceptibility of OCTG-grade alloys to sulfide stress cracking (SSC) in hydrogen sulfide (H2S)-rich sour environments poses a unique challenge for downhole oil and gas exploration, particularly when considering the role of residual stresses. These stresses, inherent in materials from fabrication processes, can strongly influence their cracking resistance even in the absence of external loads. This study numerically examines the effect of residual stresses on the fracture toughness (KISSC) measurements associated with SSC resistance of a high-strength low-alloy carbon steel C110 in H2S-containing aqueous test solution using industry-standard single-edge notched tension (SENT) and double-cantilever beam (DCB) testing methodologies. Residual stresses are measured on pipe samples and are incorporated into the finite element model of the pipe through a thermo-mechanical equivalent loading. The residual stress field is then mapped onto the fracture mechanics test specimens to represent the initial stress distributions. A coupled deformation-diffusion phase-field framework is implemented in COMSOL to simulate crack propagation under the combined influence of residual stress and environmental factors. The results offer insights into SSC mechanisms, demonstrating that elevated residual stress levels in both SENT and DCB tests affect SSC initiation thresholds and arrest, signifying reduced fracture toughness and increased susceptibility to SSC. This study underscores the importance of considering residual stresses in fracture-mechanics-based SSC integrity assessments to improve the reliability of components in sour service applications.

Abstract Image

碳钢中残余应力对硫化物应力开裂和断裂韧性的影响:相场模拟方法
在富含硫化氢(H2S)的酸性环境中,octg级合金对硫化物应力开裂(SSC)的敏感性给井下油气勘探带来了独特的挑战,特别是在考虑残余应力作用的情况下。这些应力是材料在制造过程中所固有的,即使在没有外部载荷的情况下,也会强烈影响材料的抗裂性。本研究采用工业标准的单边缺口张力(SENT)和双悬臂梁(DCB)测试方法,对含h2s水溶液中高强度低合金碳钢C110的残余应力对断裂韧性(KISSC)测量结果的影响进行了数值研究。测量了管道样品的残余应力,并通过热-机械等效加载将残余应力纳入管道的有限元模型。然后将残余应力场映射到断裂力学试件上,以表示初始应力分布。在COMSOL中实现了变形-扩散耦合相场框架,模拟了残余应力和环境因素共同影响下的裂纹扩展。研究结果揭示了SSC的机制,表明SENT和DCB试验中残余应力水平的升高会影响SSC的起始阈值和止损,从而降低断裂韧性,增加对SSC的敏感性。该研究强调了在基于断裂力学的SSC完整性评估中考虑残余应力的重要性,以提高酸性服务应用中组件的可靠性。
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来源期刊
Theoretical and Applied Fracture Mechanics
Theoretical and Applied Fracture Mechanics 工程技术-工程:机械
CiteScore
8.40
自引率
18.90%
发文量
435
审稿时长
37 days
期刊介绍: Theoretical and Applied Fracture Mechanics'' aims & scopes have been re-designed to cover both the theoretical, applied, and numerical aspects associated with those cracking related phenomena taking place, at a micro-, meso-, and macroscopic level, in materials/components/structures of any kind. The journal aims to cover the cracking/mechanical behaviour of materials/components/structures in those situations involving both time-independent and time-dependent system of external forces/moments (such as, for instance, quasi-static, impulsive, impact, blasting, creep, contact, and fatigue loading). Since, under the above circumstances, the mechanical behaviour of cracked materials/components/structures is also affected by the environmental conditions, the journal would consider also those theoretical/experimental research works investigating the effect of external variables such as, for instance, the effect of corrosive environments as well as of high/low-temperature.
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