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Analysis of stress concentration during tension of round pultruded composite rods

机译:圆形拉挤复合杆拉伸过程中的应力集中分析

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摘要

The stress state in a solid round transversely isotropic rod loaded with balanced shear stresses on a part of its lateral surface is considered. The change in gripping conditions is simulated by varying the distribution of statically equivalent shear stresses. The solution for the stress state was obtained using exact equations of linear theory of elasticity of anisotropic body. An analysis of the distribution of longitudinal and hoop stresses showed that at the grip edges a very high stress concentration is possible, which depends on the radius of the tensioned rod and the distribution of shear stresses on the gripped surface. At the grip edges, the longitudinal and hoop stresses tend to infinity. It is suggested to estimate the stresses at the singular point by averaging the stresses across the thickness of a subsurface layer; this thickness depends upon the susceptibility of the composite to the stress concentration. As a numerical example, the stress state of an intermediate-modulus carbon-fiber reinforced polymer pultruded rod is considered. The results obtained show that the decrease of tensile strength with increasing diameter of the rod is related to the nonuniformity of stress distribution near the grips, independent of any type of size dependent variation in material strength. By changing the distribution of the applied shear stresses it is possible to mitigate this effect and to increase the tensile load-carrying capacity of round pultruded rods.
机译:考虑了在其侧面的一部分上承受平衡剪应力的实心圆形横向各向同性杆的应力状态。通过改变静态等效剪应力的分布来模拟抓持条件的变化。应力状态的解是使用各向异性弹性体线性理论的精确方程式获得的。对纵向应力和环向应力分布的分析表明,在握持边缘处可能会出现非常高的应力集中,这取决于张紧的杆的半径和在握持表面上的剪应力的分布。在握持边缘处,纵向应力和环向应力趋于无穷大。建议通过平均整个地下层厚度的应力来估计奇异点处的应力。该厚度取决于复合材料对应力集中的敏感性。作为数值示例,考虑了中模量碳纤维增强聚合物拉挤杆的应力状态。获得的结果表明,随着杆直径的增加,抗拉强度的降低与夹具附近应力分布的不均匀性有关,而与材料强度的任何尺寸相关变化无关。通过改变施加的剪切应力的分布,可以减轻这种影响并增加圆形拉挤杆的拉伸承载能力。

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