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SCARE: A post-processor program to MSC/NASTRAN for the reliability analysis of structural ceramic components

机译:SCARE:MSC / NASTRAN的后处理器程序,用于分析结构陶瓷组件的可靠性

摘要

A computer program was developed for calculating the statistical fast fracture reliability and failure probability of ceramic components. The program includes the two-parameter Weibull material fracture strength distribution model, using the principle of independent action for polyaxial stress states and Batdorf's shear-sensitive as well as shear-insensitive crack theories, all for volume distributed flaws in macroscopically isotropic solids. Both penny-shaped cracks and Griffith cracks are included in the Batdorf shear-sensitive crack response calculations, using Griffith's maximum tensile stress or critical coplanar strain energy release rate criteria to predict mixed mode fracture. Weibull material parameters can also be calculated from modulus of rupture bar tests, using the least squares method with known specimen geometry and fracture data. The reliability prediction analysis uses MSC/NASTRAN stress, temperature and volume output, obtained from the use of three-dimensional, quadratic, isoparametric, or axisymmetric finite elements. The statistical fast fracture theories employed, along with selected input and output formats and options, are summarized. An example problem to demonstrate various features of the program is included.
机译:开发了用于计算统计快速断裂可靠性和陶瓷部件失效概率的计算机程序。该程序包括两参数Weibull材料断裂强度分布模型,该模型使用独立作用原理来处理多轴应力状态以及Batdorf的剪切敏感和剪切不敏感裂纹理论,所有这些都是针对宏观各向同性固体中的体积分布缺陷。巴特多夫剪切敏感性裂缝响应计算中包括了便士形裂缝和格里菲斯裂缝,它们均使用格里菲斯的最大拉伸应力或临界共面应变能释放速率标准来预测混合模式裂缝。威布尔材料参数也可以使用最小二乘法使用已知的试样几何形状和断裂数据,根据断裂模量试验计算得出。可靠性预测分析使用MSC / NASTRAN应力,温度和体积输出,这些输出是通过使用三维,二次方,等参或轴对称有限元获得的。总结了所采用的统计快速断裂理论,以及所选的输入和输出格式及选项。包含一个示例问题来演示程序的各种功能。

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  • 作者

    Gyekenyesi J. P.;

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  • 年度 1985
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  • 原文格式 PDF
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