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Mixed-Mode Bending Method for Delamination Testing

机译:分层测试的混合模式弯曲方法

摘要

A mixed mode delamination test procedure was developed combining double cantilever beam (DCB) mode I loading and end-notch fixture (ENF) mode II loading on a split unidirectional laminate. By loading with a lever, a single applied load simultaneously produces mode I and mode II bending loads on the specimen. This mixed-mode bending (MMB) test was analyzed using both finite-element procedures and beam theory to calculate the mode I and mode II components of strain-energy release rate G(sub I) and G(sub II), respectively. A wide range of G(sub I)/G(sub II) ratios can be produced by varying the load position on the lever. As the delamination extended, the G(sub I)/G(sub II) ratios varied by less than 5%. Beam theory equations agreed closely with the finite-element results and provide a basis for selection of G(sub I)/G(sub II) test ratios and a basis for computing the mode I and mode II components of measured delamination toughness. The MMB test was demonstrated using AS4/PEEK (APC2) unidirectional laminates. The MMB test introduced in this paper is rather simple and is believed to offer several advantages over most current mixed-mode test.
机译:结合双悬臂梁(DCB)I型加载和端槽夹具(ENF)II型加载在分开的单向层压板上开发了混合模式分层测试程序。通过杠杆加载,单个施加的载荷会同时在样品上产生I型和II型弯曲载荷。使用有限元程序和梁理论分析了这种混合模式弯曲(MMB)测试,以分别计算应变能释放速率G(sub I)和G(sub II)的模式I和模式II分量。通过改变杠杆上的负载位置,可以产生很大的G(sub I)/ G(sub II)比。随着分层的扩展,G(sub I)/ G(sub II)比率的变化小于5%。梁理论方程与有限元结果非常吻合,并为选择G(sub I)/ G(sub II)测试比率提供了基础,并且为计算测得的分层韧性的I和II型分量提供了基础。使用AS4 / PEEK(APC2)单向层压板证明了MMB测试。本文介绍的MMB测试相当简单,并且被认为比大多数当前的混合模式测试具有多个优势。

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