首页> 外文会议>International Conference on Pressure Vessel Technology >The Effects of Crack Ellipticity on the Mode I SIFs of a Simulated Eroded Pressurized Cylinder
【24h】

The Effects of Crack Ellipticity on the Mode I SIFs of a Simulated Eroded Pressurized Cylinder

机译:裂缝椭圆度对模拟侵蚀加压圆柱体模式I SIF的影响

获取原文

摘要

The three dimensional stress intensity factors (3D SIFs) of a pressurized cylinder can be greatly affected by many factors. While an autofrettage process may introduce favorable residual stresses on the bore of the cylinder, other factors such as erosions and cracks, once introduced, may greatly reduce the effectiveness of the autofrettage. In this study, a closer look was given to problems with different crack configurations. Effort was expended to evaluate how the ellipticity of cracks affects the overall fatigue life of a simulated eroded pressurized cylinder in comparison with circular crack only configurations. Numerical analysis was performed using ANSYS, a standard commercially available finite element package. The residual stress due to any autofrettage process was simulated using the equivalent thermal loading. In-depth discussion was given to results when cracks of different ellipticity interact with other parameters including the depth of crack and the geometrical configurations of erosion. Specific cases considered include: crack ellipticity a/c=0.5, 1 and 1.5;; relative crack depth a/t=0.01-0.2;; relative erosion depth d/t=0.05;; erosion relative finite length Le/L=0.12-1;; erosion ellipticity d/h=0.3-2. Relevant non-erosion results are used for the sake of comparison.
机译:加压圆筒的三维应力强度因子(3D SIF)可能受到许多因素的大大影响。虽然自动调节过程可以在气缸的孔上引入有利的残余应力,但是诸如引入的其他因素如侵蚀和裂缝,可以大大降低自动发射的有效性。在这项研究中,仔细看看不同的裂缝配置的问题。为了评估裂缝的椭圆性如何影响模拟侵蚀的加压圆柱的整体疲劳寿命的努力与圆形裂缝的配置相比。使用ANSYS进行数值分析,该标准市售有限元件包装。使用等效热负荷模拟了由于任何自动调节过程引起的残余应力。当不同椭圆形的裂缝与包括裂缝深度和侵蚀的几何配置的其他参数相互作用时,给予了深入讨论。考虑的具体病例包括:裂缝椭圆度A / C = 0.5,1和1.5;相对裂纹深度A / T = 0.01-0.2 ;;相对侵蚀深度d / t = 0.05 ;;侵蚀相对有限长度Le / L = 0.12-1 ;;侵蚀椭圆形D / H = 0.3-2。相关的非侵蚀结果用于比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号