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3-D Stress Intensity Factors for Arrays of Inner Radial Lunular or Crescentic Cracks in Thin and Thick-Walled Spherical Pressure Vessels

机译:薄型和厚壁球形压力容器内径向肺或新月形裂缝阵列的3-D应力强度因子

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Some spherical pressure vessels are manufactured by methods such as the Integrated Hydro-Bulge Forming (IHBF) method, where the sphere is composed of a series of double curved petals welded along their meridional lines. Such vessels are susceptible to multiple radial cracking along the welds. For fatigue life assessment and fracture endurance of such vessels one needs to evaluate the Stress Intensity Factors (SIF) distribution along the fronts of these cracks. However, to date, only one 3-D solution for the SIF for a circumferential crack in a thick sphere is available, as well as 2-D SIFs for one through the thickness crack in thin spherical shells. In the present paper, mode I SIF distributions for a wide range of lunular and crescentic cracks are evaluated. The 3-D analysis is performed, via the FE method employing singular elements along the crack front, for five geometries representing thin, moderately thick, and thick spherical pressure vessels with outer to inner radius ratios of r=RJR~l.0l, 1.05, 1.1, 1.7, and 2.0. SIFs are evaluated for arrays containing n=l-20 cracks; for a wide range of crack depth to wall thickness ratio, a/t, from 0.025 to 0.95; and for various ellipticities of the crack, i.e., the ratio of crack depth to semi crack length, a/c, from 0.2 to 1.5. The obtained results clearly indicate that the SIFs are considerably affected by the three-dimensionality of the problem and by the following parameters: the geometry of the sphere- n, the number of cracks in the array-n, the depth of the cracks-a/t, and their ellipticity-a/c.
机译:一些球形压力容器是通过诸如集成的水上凸起成形(IHBF)方法的方法制造,其中球体由沿其优势线焊接的一系列双弯曲的花瓣组成。这种血管易于沿着焊缝的多个径向裂缝。对于这种血管的疲劳寿命评估和断裂耐力,需要评估这些裂缝前面的应力强度因子(SIF)分布。然而,迄今为止,仅提供用于厚球中的周向裂缝的SIF的一个3-D溶液,以及通过薄球形壳体中的厚度裂缝的一个通过厚度裂缝的2-D SIFS。在本文中,评估各种肺部和新月形裂缝的模式I SIF分布。通过使用沿裂缝前沿的奇异元素的Fe方法进行3-D分析,用于五个几何形状,其代表薄,中间厚,厚的球形压力容器,其具有r = rjr〜l.0l的内半径比, 1.05,1.1,1.7和2.0。评估含有n = L-20裂缝的阵列的SIFS;对于壁厚比为宽度的裂纹深度,A / T,0.025至0.95;对于裂缝的各种椭圆型,即裂缝深度与半裂缝长度的比率,A / C,0.2至1.5。所获得的结果清楚地表明,SIF的问题受到问题的三维性能和以下参数的影响:球体的几何形状,阵列-N中的裂缝数,裂缝的深度-A / t,它们的椭圆形-A / c。

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