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首页> 外文期刊>International Journal of Fracture >Feasibility study on Hartman-Schijve data analysis for mode II fatigue fracture of adhesively bonded wood joints
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Feasibility study on Hartman-Schijve data analysis for mode II fatigue fracture of adhesively bonded wood joints

机译:Hartman-Schijve Data II疲劳骨折粘接木接缝疲劳骨折的可行性研究

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The feasibility of using the modified Hartman-Schijve (HS) equation to analyze the fatigue fracture performance of adhesively bonded wood specimens under cyclic mode II loading was investigated in comparison with the Paris crack growth equation. Wood joints prepared with three different adhesives have been subject to cyclic Mode II testing at roomtemperature (23.C and 50% relative humidity) in a four-point End-Notched-Flexure configuration, determining the crack length from specimen compliance. It was shown, that the HS-equation can be successfully applied to adhesively bonded wood and that it successfully estimates threshold and maximum energy release rate (ERR) values for three different adhesive systems. Since a limited number of tests were performed for investigating the feasibility, scatter sources and pos-sible scatter reduction methods are analyzed and discussed in detail. Also, a new, automated data reduction method was developed for estimating the maximum and the threshold ERR (Gthr) values. The main advantage of the HS-equation appears to be the application in design standards. However, before the maximum ERR and Gthr values derived here can be used in design applications or for drafting a design guideline, additional testing is required for understanding howthe number of cycles, the related measurement resolution; the corresponding ERR value influence the threshold value Gthr and how and to what extent its scatter can be reduced; and to further explore the link between cyclic ERRand the criticalERRvaluemeasured during quasistatic fracture tests.
机译:与巴黎裂纹生长方程相比,研究了使用改进的Hartman-Schijve(HS)方程来分析粘接性木质标本的疲劳断裂性能的可行性。用三种不同粘合剂制备的木接头在四点端缺口弯曲配置中以室温(23.C和50%相对湿度)进行循环模式II测试,从而确定裂缝长度依从性。结果表明,HS等方案可以成功地应用于粘合的木材,并且它成功地估计了三种不同粘合剂系统的阈值和最大能量释放速率(ERR)值。由于进行了有限数量的测试来研究可行性,分析并详细讨论分散源和POS-SIBLE散射减少方法。此外,开发了一种新的自动化数据减少方法,用于估计最大值和阈值err(gthr)值。 HS等方程的主要优点似乎是设计标准中的应用。但是,在设计应用程序中衍生的最大错误和GTHR值之前,可以在设计应用中使用或用于制定设计指南,但了解循环数量,相关测量分辨率所需的额外测试;相应的错误值会影响阈值GTr,以及如何以及在多大程度上可以减少散射;并进一步探索循环误差与Quasistatic骨折测试期间的临界误差之间的联系。

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