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Development of a simple mixed-mode fracture test and the resulting fracture energy envelope for an adhesive bond

机译:开发了一种简单的混合模式断裂试验,以及由此产生的粘合剂断裂能包络

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摘要

Characterizing the fracture energy of bonded adhesive joints over a range of mode mixities often requires special fixtures or a variety of test configurations. By pairing a tapered and a constant thickness adherend, a hybrid double cantilever beam (DCB) specimen is proposed. This asymmetric tapered DCB configuration can be used to determine the fracture energy as a function of mode mixity. As the debond propagates, the relative stiffness of the adherends varies in a systematic manner, resulting in a range of mode mixities from 0° to approximately 20°. Strain energy release rates were obtained using corrected beam theory and a finite element fracture analysis. Single-leg bending tests were used to determine the fracture energy at mode mixity up to 56°. Constant thickness and tapered DCB tests were used to determine the mode I fracture energy. The resulting fracture envelope was constructed in order to show the dependence of the fracture energy on mode mixity for a two part acrylic adhesive.
机译:在各种模式混合量下表征粘合粘合剂接头的断裂能通常需要特殊的夹具或各种测试配置。通过将锥形和恒定厚度的被粘物配对,提出了一种混合双悬臂梁(DCB)标本。这种不对称的锥形DCB配置可用于确定断裂能与模态混合度的函数关系。随着脱粘的发展,被粘物的相对刚度以系统的方式变化,导致模式混合的范围从0°到大约20°。使用校正梁理论和有限元断裂分析获得应变能释放率。单腿弯曲试验用于确定模式混合度高达56°时的断裂能。恒定厚度和锥形DCB测试用于确定I型断裂能。构造所得的断裂包络线是为了显示断裂能量对两部分丙烯酸粘合剂的模式混合性的依赖性。

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