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Free Vibration of Fiber Composite Thin Shells in a Hot Environment

机译:高温环境下纤维复合材料薄壳的自由振动

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摘要

Results are presented of parametric studies to assess the effects of various parameters on the free vibration behavior (natural frequencies) of (plus or minus theta)2, angle-ply fiber composite thin shells in a hot environment. These results were obtained by using a three-dimensional finite element structural analysis computer code. The fiber composite shell is assumed to be cylindrical and made from T-300 graphite fibers embedded in an intermediate-modulus high-strength matrix (IMHS). The residual stresses induced into the laminated structure during curing are taken into account. The following parameters are investigated: the length and the thickness of the shell, the fiber orientations, the fiber volume fraction, the temperature profile through the thickness of the laminate and the different ply thicknesses. Results obtained indicate that: the fiber orientations and the length of the laminated shell had significant effect on the natural frequencies. The fiber volume fraction, the laminate thickness and the temperature profile through the shell thickness had a weak effect on the natural frequencies. Finally, the laminates with different ply thicknesses had insignificant influence on the behavior of the vibrated laminated shell.
机译:给出了参数研究的结果,以评估各种参数对在炎热环境中(正负2)角层纤维复合材料薄壳的自由振动行为(固有频率)的影响。这些结果是通过使用三维有限元结构分析计算机代码获得的。假定该纤维复合材料外壳为圆柱形,由嵌入中间模量高强度基体(IMHS)中的T-300石墨纤维制成。考虑到在固化过程中感应到层压结构中的残余应力。研究了以下参数:壳体的长度和厚度,纤维取向,纤维体积分数,通过层压板厚度的温度曲线以及不同的层厚度。所得结果表明:纤维取向和层合壳的长度对固有频率有显着影响。纤维的体积分数,层压材料的厚度以及贯穿外壳厚度的温度曲线对固有频率的影响很小。最后,层厚度不同的层压材料对振动层压壳的性能影响不大。

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