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Suppression of Brazier Effect in Multilayered Cylinders

机译:多层圆筒中火盆效应的抑制

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When a straight hollow tube having circular cross-section is bent uniformly into an arc, the cross-section tends to ovalize or flatten due to the in-plane stresses induced by bending; this ovalization phenomenon is called the Brazier effect. The present paper is aimed at theoretical formulation of the Brazier effect observed in multilayered cylinders, in which a set of thin hollow cylinders are stacked concentrically about the common axis. The results indicate that mechanical couplings between stacked cylinders are found to yield pronounced suppression of the cross-sectional ovalization. Numerical computations have been performed to measure the degree of suppression in a quantitative manner and to explore how it is affected by the variations in the bending curvature, the number of stacked cylinders, and the interlayer coupling strength.
机译:当具有圆形横截面的直中空管均匀地弯曲成弧形时,由于弯曲所引起的平面内应力,横截面趋于椭圆形或变平。这种椭圆化现象称为“火盆效应”。本文的目的是在多层圆柱体中观察到的火盆效应的理论表述,在多层圆柱体中,一组薄的空心圆柱体围绕公共轴同心地堆叠。结果表明,发现堆叠的圆柱体之间的机械耦合可显着抑制横截面椭圆化。已经进行了数值计算,以定量方式测量了抑制程度,并探索了弯曲曲率,叠置圆柱数和层间结合强度的变化对抑制的影响。

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