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Design of Modified Tabs for Testing of Symmetric Composite Thin Walled Tubes Under Pure Torsional and Tensile Loadings

机译:纯扭转和拉伸载荷下对称复合材料薄壁管测试的改进接片设计

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摘要

This paper is mainly concerned with designing modified tabbing systems for testing of composite thin-walled tubes with symmetric layup. The modified tabs are presented based on the concept of iso-displacement points—the points of the specimen that move together and behave similarly during a test. Numerical solutions are carried out for tubular specimens in order to find the displacement field and hence the iso-displacement points. The analyses are carried out for two loading cases: pure torsion and pure tension. Finite element analyses are conducted for both cases, to estimate the displacement fields of thin-walled tubular specimens and then predictive equation were determined using multiple nonlinear regression models. The accuracy of these models is evaluated using a multiple coefficient of determination, R 2, where 0 ≤ R 2 ≤ 1, coupled with predicted squared error (PSE) and mean squared error (MSE). R 2 is found to be greater than or equal to 0.98 for all cases considered in this study while PSE and MSE values are minimized, demonstrating the reliability of the model. Comparison between the modified tabs, based on the iso-displacement points determined by predictive equations, with conventional tabs indicates an improvement in the uniformity of stress and strain distribution (which is an important factor in order to have a successful test) within the specimen for both load cases. It is also demonstrated that due to the elimination of the stress and strain non-uniformities, the measured permissible maximum load of the specimens is significantly increased during the test.
机译:本文主要涉及设计用于测试对称铺层复合薄壁管的改进制耳系统。修改后的选项卡是基于等位移点的概念而提出的,等位移点是指在测试过程中一起移动并且行为相似的点。对管状试件进行了数值求解,以便找到位移场,从而找到等位移点。针对两种载荷情况进行了分析:纯扭力和纯张力。两种情况都进行了有限元分析,以估计薄壁管状试件的位移场,然后使用多个非线性回归模型确定预测方程。使用多个确定系数R 2 评估这些模型的准确性,其中0≤R 2 ≤1,再加上预测平方误差(PSE)和均方错误(MSE)。在本研究中考虑的所有情况下,R 2 均大于或等于0.98,同时PSE和MSE值最小,证明了模型的可靠性。修改后的选项卡之间的比较,基于由预测方程式确定的等位移点,与常规选项卡的比较表明,样品中应力和应变分布的均匀性得到了改善(这是成功进行测试的重要因素)。两种情况下。还证明了由于消除了应力和应变的不均匀性,在测试过程中,测得的样品最大允许最大载荷显着增加。

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