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Numerical Analysis of KI of Semi-elliptical Surface Crack in X80 Steel Plate Strengthened with FRP under Tensile Load

机译:FRP加固X80钢板半椭圆表面裂纹KI的数值分析。

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Semi-elliptic surface crack is the common defect in metal structures.To ensure the structural integrity and security,the new material such as fiber reinforced polymer (FRP) was adopted for strengthening and repairing.In this paper,three dimensional semi-elliptic surface crack in X80 steel tension specimen strengthened with carbon fiber laminate (CFL) was studied,and numerical analysis was undertaken by Abaqus finite element software to study the stress intensity factor (SIF,KI) of the surface crack for CFL reinforcement effect.The results shown that,strengthening by CFL reduced the stress intensity factors of semi-elliptical surface crack significantly; Crack shape ratio a/c and crack relative depth a/B had a great effect on stress intensity factors of strengthened specimen; An expression for calculating stress intensity factors of semi-elliptic surface crack under strengthening condition was obtained by adopting MATLAB software.
机译:半椭圆形表面裂纹是金属结构中的常见缺陷。为确保结构的完整性和安全性,采用了纤维增强聚合物(FRP)等新材料进行加固和修复。本文研究了三维半椭圆形表面裂纹研究了碳纤维层压板(CFL)加固的X80钢拉伸试样,并通过Abaqus有限元软件进行了数值分析,研究了表面裂纹的应力强度因子(SIF,KI)以增强CFL的效果。结果表明: CFL的强化显着降低了半椭圆形表面裂纹的应力强度因子;裂纹形状比a / c和裂纹相对深度a / B对强化试件的应力强度因子有很大影响。采用MATLAB软件,得到了加固条件下半椭圆形表面裂纹应力强度因子的计算公式。

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