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Strength measurement of optical fibers by bending

机译:通过弯曲测量光纤的测量

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A two-point bending technique has been used not only to measure the breaking stress of optical fiber but also to predict its static and dynamic fatigue. The present theory of this test is based on elastica theory of rod. However, within the limits of elastica theory the tensile and shear stresses cannot be determined. In this paper we study dynamic and static problems for optical fiber in the two- point bending test on the base of geometrically exact theory in which rod can suffer flexure, extension, and shear. We obtain the governing partial differential equations taking into account the fact that the lateral motion of the fiber is restrained by the presence of flat parallel plates. We develop the computational methods for solving the initial and equilibrium free-boundary nonlinear planar problems. We derive the formulas for predicting of the tensile strength from strength in the bending and calculate one example.
机译:已经使用了两点弯曲技术,不仅用于测量光纤的断裂应力,还用于预测其静态和动态疲劳。本试验的本理论基于Elastica的杆理论。然而,在Elastica理论的范围内,不能确定拉伸和剪切应力。在本文中,我们研究了在几何精确理论的基础上的双点弯曲试验中的光纤动态和静态问题,其中杆可能弯曲,延伸和剪切。考虑到纤维的横向运动通过扁平平行板抑制的事实,我们获得控制局部微分方程。我们开发求解初始和平衡自由边界非线性平面问题的计算方法。我们推导出用于预测弯曲强度的抗拉强度并计算一个实例的公式。

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