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Application of Digital Image Correlation to the Thick Adherend Shear Test

机译:数字图像相关与厚粘物剪切试验的应用

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The purpose of this study was to develop and validate a novel method for measuring shear deformation during the Thick Adherend Shear Test (TAST), to determine in situ mechanical properties of an adhesive under tensile shear loading, using two-dimensional (2D) Digital Image Correlation (DIC). Shear strains were optically measured using DIC from the bond line and also from adherend deformations; both were compared against measurements made using the ASTM D5656 standard (KGR-1 extensometers). The results from 17 TAST specimens showed that all techniques were in good agreement, however, both DIC techniques had significantly lower variance on measured mechanical properties compared to the KGR-1 extensometers. The use of correlated adherend deformations was the preferred technique for deriving plastic shear strains, and overall produced the lowest scatter on mechanical properties. This study demonstrates the potential for the use of 2D DIC as a more precise, and time-efficient alternative to the KGR-1 extensometers for room temperature in situ characterization of adhesives in shear.
机译:本研究的目的是开发和验证一种用于测量厚粘物剪切试验(品味)的剪切变形的新方法,以确定在拉伸剪切负载下的粘合剂的原位力学性能,使用二维(2D)数字图像相关性(DIC)。使用DIC从粘合线和粘附变形中光学测量剪切菌株;两者都与使用ASTM D5656标准(KGR-1突出器)进行的测量进行了比较。来自17个TAST标本的结果表明,与KGR-1突出器相比,所有技术均吻合良好的一致性良好的一致性,DIC技术对测量的机械性能显着降低。相关的粘附变形的使用是用于导出塑料剪切菌株的优选技术,并且总体产生最低散射机械性能。本研究表明,使用2D DIC作为更精确的,并且时间有效地替代于KGR-1突出器,用于室温,其原位表征剪切中的粘合剂。

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