A new extended isogeometric boundary element method (XIGABEM) formulation is proposed for simulating multiple fatigue crack propagation in two-dimensional domains. The classical use of NURBS in isogeometric formulations is further extended by repeated knot insertion to introduce a.. -1 continuity within the approximation space as an elegant approach to representing geometrical discontinuities at crack intersections. This strategy is also used to restrict the enrichment term to the portion of the NURBS defining the tip, where it is necessary. At this near-tip zone, the linear elastic fracture mechanics solutions are embedded into the displacement approximation to represent the theoretical square root behaviour. The enrichment procedure introduces just two degrees of freedom per crack tip, and a tying constraint is used to yield a square linear system. In this direct approach, the stress intensity factors (SIFs) are found as terms in the solution vector without requiring post-processing techniques. Several examples are presented to illustrate the application of the XIGABEM. The accuracy of the results compares favourably against those from the literature, and also against solutions obtained from unenriched and enriched indirect methods that employ the J-integral for SIF extraction. Furthermore, the proposed direct approach is capable of significantly reducing the execution time.
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Huanghuai Univ, Coll Architectural & Civil Engn, Zhumadian, Peoples R China
Huanghuai Univ, Henan Int Joint Lab Struct Mech & Computat Simulat, Zhumadian, Peoples R ChinaHuanghuai Univ, Coll Architectural & Civil Engn, Zhumadian, Peoples R China
Yang, Yan
Huo, Ruijin
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Xinyang Normal Univ, Coll Architecture & Civil Engn, Xinyang, Peoples R China
Xinyang Normal Univ, Henan Unsaturated Soil & Special Soil Engn Technol, Xinyang, Peoples R ChinaHuanghuai Univ, Coll Architectural & Civil Engn, Zhumadian, Peoples R China
Huo, Ruijin
Yuan, Xiaohui
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Xinyang Normal Univ, Coll Architecture & Civil Engn, Xinyang, Peoples R ChinaHuanghuai Univ, Coll Architectural & Civil Engn, Zhumadian, Peoples R China
Yuan, Xiaohui
Wu, Wenbo
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Guangzhou Univ, Sch Mech & Elect Engn, Guangzhou, Peoples R ChinaHuanghuai Univ, Coll Architectural & Civil Engn, Zhumadian, Peoples R China
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Imperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, EnglandImperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, England
Zhuang, Mengke
Morse, Llewellyn
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UCL, Dept Mech Engn, Roberts Bldg, London WC1E 6BT, EnglandImperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, England
Morse, Llewellyn
Khodaei, Zahra Sharif
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Imperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, EnglandImperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, England
Khodaei, Zahra Sharif
Aliabadi, M. H.
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Imperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, EnglandImperial Coll London, Dept Aeronaut, South Kensington Campus,City & Guilds Bldg,Exhibit, London SW7 2AZ, England
机构:
Harbin Inst Technol, Composite Mat Res Lab, Harbin 150001, Peoples R ChinaHarbin Inst Technol, Composite Mat Res Lab, Harbin 150001, Peoples R China