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Hybrid specimens eliminating stress concentrations in tensile and compressive testing of unidirectional composites

机译:混合试样消除了单向复合材料拉伸和压缩测试中的应力集中

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摘要

Two novel approaches are proposed for elimination of stress concentrations in tensile and compressive testing of unidirectional carbon/epoxy composites. An interlayer hybrid specimen type is proposed for tensile testing. The presented finite element study indicated that the outer continuous glass/epoxy plies suppress the stress concentrations at the grips and protect the central carbon/epoxy plies from premature failure, eliminating the need for end-tabs. The test results confirmed the benefits of the hybrid specimens by generating consistent gauge-section failures in tension. The developed hybrid four point bending specimen type and strain evaluation method were verified and applied successfully to determine the compressive failure strain of three different grade carbon/epoxy composite prepregs. Stable failure and fragmentation of the high and ultra-high modulus unidirectional carbon/epoxy plies were reported. The high strength carbon/epoxy plies exhibited catastrophic failure at a significantly higher compressive strain than normally observed.
机译:提出了两种新颖的方法来消除单向碳/环氧树脂复合材料的拉伸和压缩测试中的应力集中。提出了一种用于拉伸测试的层间混合试样类型。提出的有限元研究表明,外部连续玻璃/环氧树脂层抑制了夹具处的应力集中,并保护了中央碳/环氧树脂层免于过早损坏,从而消除了对端部接片的需求。测试结果通过产生一致的标距截面破坏而证实了混合试样的好处。验证了已开发的混合四点弯曲试样类型和应变评估方法,并成功地用于确定三种不同等级的碳/环氧树脂复合预浸料的压缩破坏应变。报道了高模量和超高模量单向碳/环氧树脂层的稳定破坏和断裂。高强度的碳/环氧树脂层在比正常观察到的高得多的压缩应变下表现出灾难性的破坏。

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