Damage-reliability approach for fatigue crack propagation in MDPE gas pipe

Khaoula BERKAS, Kamel CHAOUI
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Abstract

Fatigue crack propagation tests are carried out on arc-shaped specimens prepared from MDPE gas pipes. Damage zone characterization is achieved using the diamond wafer sectioning technique from partially propagated and prematurely arrested cracks. Damage ahead of the crack-tip is used to assess a damage parameter and reliability based on statistical laws and subsequent use the PHIMECA Software. It is shown that a length and a width associated with a corresponding change in thickness at the fracture surface satisfactorily describe the damage zone size. The 3-parameter Weibull model gives the best reliability behavior and a critical lifetime of 82%. When considering separately both the Dugdale model and experimental damage zone measurements, it is possible to establish the evolution of the reliability index as a function of crack length. It is concluded that the reliability index approach based on damage provides a more consistent representation compared to analytical models.
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MDPE气管疲劳裂纹扩展损伤可靠性分析
对MDPE气体管道制备的圆弧试样进行了疲劳裂纹扩展试验。损伤区表征是利用部分扩展和过早停止裂纹的金刚石晶圆切片技术实现的。裂纹尖端之前的损伤用于评估基于统计规律的损伤参数和可靠性,随后使用PHIMECA软件。结果表明,长度和宽度与断口厚度的相应变化相关联,可以很好地描述损伤区大小。三参数威布尔模型给出了最佳的可靠性行为和82%的临界寿命。当同时考虑Dugdale模型和试验损伤区测量时,可以建立可靠度指标随裂纹长度的演化函数。结果表明,基于损伤的可靠性指标法与解析模型相比具有更强的一致性。
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来源期刊
International Journal of Applied Mechanics and Engineering
International Journal of Applied Mechanics and Engineering Engineering-Civil and Structural Engineering
CiteScore
1.50
自引率
0.00%
发文量
45
审稿时长
35 weeks
期刊介绍: INTERNATIONAL JOURNAL OF APPLIED MECHANICS AND ENGINEERING is an archival journal which aims to publish high quality original papers. These should encompass the best fundamental and applied science with an emphasis on their application to the highest engineering practice. The scope includes all aspects of science and engineering which have relevance to: biomechanics, elasticity, plasticity, vibrations, mechanics of structures, mechatronics, plates & shells, magnetohydrodynamics, rheology, thermodynamics, tribology, fluid dynamics.
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