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タイトル
和文: 
英文:A computational approach based on ordinary state-based peridynamics with new transition bond for dynamic fracture analysis 
著者
和文: Michiya Imachi, Satoyuki Tanaka, BUI TINH QUOC, Selda Oterkus, Erkan Oterkus.  
英文: Michiya Imachi, Satoyuki Tanaka, Tinh Quoc Bui, Selda Oterkus, Erkan Oterkus.  
言語 English 
掲載誌/書名
和文: 
英文:Engineering Fracture Mechanics 
巻, 号, ページ Vol. 206        pp. 359-374
出版年月 2019年2月1日 
出版者
和文: 
英文:Elsevier 
会議名称
和文: 
英文: 
開催地
和文: 
英文: 
公式リンク https://www.sciencedirect.com/science/article/pii/S0013794418306210
 
DOI https://doi.org/10.1016/j.engfracmech.2018.11.054
アブストラクト The recently developed ordinary state-based peridynamics (OSPD) is further enhanced to study elastodynamic propagating crack based on the dynamic stress intensity factors (DSIFs). The displacement discontinuity such as a crack surface is represented by a bond-failure. Variations of the mixed-mode DSIFs with time are evaluated by the interaction integral method for the dynamic crack propagation. In terms of OSPD fracture modeling, numerical oscillation of DSIFs becomes a critical issue during the evolution of a crack. To overcome this numerical oscillation problem, we introduce a new model of bond-failure, the transition bond. The enhanced OSPD approach using the new transition bond model offers accurate and acceptable results, suppressing the numerical oscillation of responses and reflecting an effective approach. The effects of different types of transition bond are numerically analyzed. Accuracy of the DSIFs is examined employing the various damping parameters and effectiveness of the new PD fracture model is verified. The Kalthoff-Winkler impact test is considered for evaluating the mixed-mode DSIFs and the crack paths.

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