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首页> 外文期刊>Archive of Applied Mechanics >Ring-core method in determining the amount of non-uniform residual stress in laminated composites: experimental, finite element and theoretical evaluation
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Ring-core method in determining the amount of non-uniform residual stress in laminated composites: experimental, finite element and theoretical evaluation

机译:确定叠层复合材料非均匀残余应力量的环核法:实验,有限元和理论评价

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Residual stresses in composite constructions are created because of non-uniform contraction of layers during cooling from curing to ambient temperature. The aim of this study is to investigate the feasibility of incremental ring-core method to estimate non-uniform residual stresses in various laminates of polymer matrix composites. To carry out this test, glass/epoxy specimens were selected in two different types of symmetric cross-ply laminate ([0 degrees(4)/90 degrees(4)](S)) and symmetric quasi- isotropic laminate ([0 degrees(2)/+/- 45 degrees/90 degrees(2)](S)) The samples were created using hand layup and vacuum bagging. By experimental tests, released strains measured during milling process and coefficient factors for every annular groove machining operations were obtained by finite element modeling. As well, residual stresses were calculated by classical lamination plate theory. For symmetric cross-ply, the maximum difference between experimental and theoretical results was about 16%, which was observed in the first and eighth layers. Symmetric quasi- isotropic specimen showed also good agreement between the results and the maximum measurement error of 8% was observed. For the mentioned two cases, summation of components of the residual stress in all directions is near to zero. The results of this study show that in the ring-core method, because of the nature and higher volume of material removal than other methods, values of residual stress released are higher and the results have a good consistency compared with the theoretical values.
机译:由于在从固化到环境温度的冷却过程中层的不均匀收缩,因此会在复合结构中产生残余应力。这项研究的目的是研究增量环核法估计聚合物基复合材料的各种层压板中非均匀残余应力的可行性。为了进行此测试,在两种不同类型的对称交叉层压板([0度(4)/ 90度(4)](S))和对称准各向同性层压板([0度]中选择了玻璃/环氧树脂样品(2)/ + /-45度/ 90度(2)](S))样品是使用手工铺网和真空装袋制作的。通过实验测试,通过有限元建模获得了铣削过程中测量的释放应变以及每个环形槽加工操作的系数因子。同样,残余应力通过经典的层压板理论计算。对于对称交叉层,实验结果和理论结果之间的最大差异约为16%,这在第一层和第八层中均已观察到。对称的各向同性试样也显示出良好的一致性,最大测量误差为8%。对于上述两种情况,在所有方向上的残余应力分量之和接近于零。这项研究的结果表明,在环形堆芯方法中,由于其性质和材料去除量大于其他方法,因此释放的残余应力值更高,并且与理论值相比具有良好的一致性。

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