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首页> 外文期刊>Journal of Composite Materials >Damage evolution SCS-6/timetal 21S in quasi-isotropic under quasi-static and dynamic bending
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Damage evolution SCS-6/timetal 21S in quasi-isotropic under quasi-static and dynamic bending

机译:准静态和动态弯曲下准各向同性的损伤演化SCS-6 /时间21S

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Damage initiation and evolution in SCS-6/Timetal 21S with quasi-isotropic layup loaded under quasi-static and dynamic bending is investigated. When the axes of the fibers in the outer ply are transverse to the bending stress ([90/+/-45/0](s) layup), the bending strength is significantly lower and damage in the form of fiber-matrix separation initiates sooner than when the fibers in the outer ply are parallel to the bending stress ([0/+/-45/90](s)). The damage process and plasticity for dynamic bending is similar to quasi-static bending with the asymptotic damage level being the same for both. However, the rate of increase of damage with strain is smaller for dynamic bending compared to quasi-static bending. The energy dissipated in this titanium matrix composite under dynamic loading is smaller than either a graphite-fiber polymide-matrix composite or a glass-fiber bismaleimide-matrix composite. [References: 17]
机译:研究了SCS-6 / Timetal 21S在准静态和动态弯曲作用下加载各向同性叠层时的损伤始发和演化。当外层中的纤维轴横向于弯曲应力([90 / + /-45/0](s)叠层)时,弯曲强度会大大降低,并且会以纤维-基质分离的形式引发破坏比外部帘布层中的纤维平行于弯曲应力([0 / + /-45/90](s))要早。动态弯曲的损伤过程和可塑性类似于准静态弯曲,两者的渐近损伤水平相同。但是,与准静态弯曲相比,动态弯曲的应变损伤增加率较小。在动态载荷下在该钛基复合材料中耗散的能量小于石墨纤维聚酰亚胺-基质复合物或玻璃纤维双马来酰亚胺-基质复合物。 [参考:17]

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