首页> 外文OA文献 >Slow Crack Growth Analysis of Advanced Structural Ceramics Under Combined Loading Conditions: Damage Assessment in Life Prediction Testing
【2h】

Slow Crack Growth Analysis of Advanced Structural Ceramics Under Combined Loading Conditions: Damage Assessment in Life Prediction Testing

机译:组合载荷条件下高级结构陶瓷的慢速裂纹扩展分析:寿命预测测试中的损伤评估

摘要

Slow crack growth analysis was performed with three different loading histories including constant stress-rate/constant stress-rate testing (Case I loading), constant stress/constant stress-rate testing (Case II loading), and cyclic stress/constant stress-rate testing (Case III loading). Strength degradation due to slow crack growth arid/or damage accumulation was determined numerically as a Function of percentage of interruption time between the two loading sequences for a given loading history. The numerical solutions were examined with the experimental data determined at elevated temperatures using four different advanced ceramic materials, two silicon nitrides, one silicon carbide and one alumina for the Case I loading history, and alumina for the Case II loading history. The numerical solutions were in reasonable agreement with the experimental data, indicating that notwithstanding some degree of creep deformation presented for some test materials slow crack growth was a governing mechanism associated with failure for all the test material&
机译:使用三种不同的载荷历史进行慢速裂纹扩展分析,包括恒定应力率/恒定应力率测试(情况I载荷),恒定应力/恒定应力率测试(情况II载荷)和循环应力/恒定应力率测试(案例III加载)。在给定的加载历史中,根据在两个加载序列之间的中断时间百分比来确定由于裂纹扩展缓慢和/或损伤积累而导致的强度下降。使用四种不同的高级陶瓷材料,两种氮化硅,一种碳化硅和一种氧化铝(在案例I的加载历史中)和氧化铝在案例II的加载历史中,在高温下确定的实验数据对数值解进行了检验。数值解与实验数据基本吻合,表明尽管某些测试材料出现了一定程度的蠕变变形,但裂纹扩展缓慢仍是控制所有测试材料破坏的主要机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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