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Mode Ⅱ fracture energy characterization of brittle adhesives using compliance calibration method

机译:不同拟合校准方法的模式Ⅱ脆性粘性粘合剂

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摘要

The end-notched flexure (ENF) test is widely used for measuring the Mode Ⅱ critical strain energy release rate of adhesively bonded joints (ABJs). Unstable crack growth in ENF joints with brittle adhesives is a common phenomenon. Classic data reduction methods like the direct beam theory (DBT) and the compliance-based beam method (CBBM) usually result in unacceptable scatter when crack grows unstable. In this study, the application of a compliance calibration method (CCM) for ENF adhesive joints with a brittle adhesive is experimentally investigated. For this purpose, ENF specimens were manufactured and tested. Different data reduction methods were considered for treating the results. Afterwards, the obtained fracture energies were used as an input parameter in a finite element (FE) analysis with a cohesive zone model to evaluate the validity of the experimental data. It is shown that the fracture loads obtained by the CCM have the best agreement with the experimental ones comparing with the other data reduction approaches. To study the effect of geometry on the CCM results, ENF specimens with different adhesive thicknesses, substrate thicknesses and span lengths were also considered in this study, and some general conclusions are made about the geometrical parameters effect on the Mode Ⅱ fracture energy.
机译:末端缺口弯曲(ENF)测试广泛用于测量粘合接头(ABJS)的模式Ⅱ临界应变能释放速率。具有脆性粘合剂的enf关节的不稳定裂纹生长是一种常见的现象。像直接光束理论(DBT)等经典数据减少方法通常导致裂纹不稳定时不可接受的散射。在本研究中,通过实验研究了用脆性粘合剂的enf粘合剂接头的顺应校准方法(CCM)的应用。为此目的,制造和测试ENF标本。考虑不同的数据减少方法来治疗结果。然后,使用粘性区域模型在有限元(Fe)分析中使用所得裂缝能量作为输入参数,以评估实验数据的有效性。结果表明,CCM获得的断裂载荷与与其他数据减少方法相比的实验性相一致。为研究几何体对CCM结果的影响,在该研究中也考虑了具有不同粘合剂厚度,衬底厚度和跨度长度的ENF样本,并且一些一般的结论是关于对模式Ⅱ断裂能量的几何参数影响。

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