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具有层状组织的铁素体-珠光体输气管道钢微裂纹扩展机制研究

Study on micro crack propagation mechanism of ferrite-pearlite gas transmission pipeline steel with lamellar structure.

作者信息

Xu Taolong, Wang Wei, Jiang Hongye, He Gongzhen

机构信息

Petroleum Engineering School, Southwest Petroleum University, Chengdu, 610500, Sichuan, China.

Guangzhou Urban Management Quality Monitoring and Emergency Support Center (Urban Gas Affairs Center of Guangzhou City), Guangzhou, 510623, Gangdong, China.

出版信息

Sci Rep. 2022 Nov 4;12(1):18642. doi: 10.1038/s41598-022-23405-4.

Abstract

The deformation and failure characteristics of pipeline steel depend on its atomic structure and microstructure. Based on the serial multi-scale analysis technology, the ferrite/cementite (α-Fe/FeC) lamellar atomic structure with Bagaryatskii orientation relationship is established. In order to obtain the experimental sample of the lowest energy state, The step-by-step relaxation method of conjugate gradient energy minimization and constant temperature and constant pressure relaxation under NPT conditions is carried out, and the energy state and atomic structure of the relaxed samples are analyzed. For the models of different cementite terminal plane structures, the tension displacement curves on the propagation path of mode I central through crack are extracted respectively, combined with the bilinear cohesion zone model, The cohesion parameters at the atomic scale are successfully transferred from bottom to top to the macro and micro scales. By simulating the reaction force and displacement response law at the loading point, the critical fracture toughness of each terminal interface of ferrite-pearlite pipeline steel at different scales is calculated, which provides a reliable path for exploring the micro mechanism of macro cracking behavior of pipeline steel.

摘要

管线钢的变形和失效特性取决于其原子结构和微观结构。基于系列多尺度分析技术,建立了具有巴加亚茨基取向关系的铁素体/渗碳体(α-Fe/FeC)层片状原子结构。为了获得最低能量状态的实验样品,采用共轭梯度能量最小化的逐步弛豫方法以及在NPT条件下的恒温恒压弛豫方法,并对弛豫后样品的能量状态和原子结构进行分析。针对不同渗碳体端面结构的模型,分别提取Ⅰ型中心穿透裂纹扩展路径上的拉伸位移曲线,结合双线性内聚力模型,成功将原子尺度的内聚参数从微观尺度传递到宏观尺度。通过模拟加载点处的反力和位移响应规律,计算了不同尺度下铁素体-珠光体管线钢各端面界面的临界断裂韧性,为探究管线钢宏观开裂行为的微观机制提供了可靠途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5386/9636260/35a2081b3f95/41598_2022_23405_Fig1_HTML.jpg

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