期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
金属线弹性材料断裂动态有限元分析 被引量:1
1
作者 杨敏 李宝利 《煤矿机械》 北大核心 2002年第8期28-29,共2页
在动态载荷作用下 ,对线弹性断裂情况进行二维有限元分析 ,并编制相应程序 ,通过算例的结果表明 ,编制的程序是可靠的。
关键词 金属线弹性材料 动态断裂 有限元法 冲击载荷
下载PDF
Weak fatigue notch sensitivity in a biomedical titanium alloy exhibiting nonlinear elasticity 被引量:2
2
作者 Jinrui Zhang Syed A. A. Shah +2 位作者 Yulin Hao Shujun Li Rui Yang 《Science China Materials》 SCIE EI CSCD 2018年第4期537-544,共8页
It is well known that metallic materials exhibit worse fatigue damage tolerance as they behave stronger in strength and softer in modulus. This raises concern on the long term safety of the recently developed biomecha... It is well known that metallic materials exhibit worse fatigue damage tolerance as they behave stronger in strength and softer in modulus. This raises concern on the long term safety of the recently developed biomechanical compatible titanium alloys with high strength and low modulus. Here we demonstrate via a model alloy, Ti-24 Nb-4 Zr-8 Sn in weight percent, that this group of multifunctional titanium alloys possessing nonlinear elastic deformation behavior is tolerant in fatigue notch damage. The results reveal that the alloy has a high strength-to-modulus(σ/E) ratio reaching2% but its fatigue notch sensitivity(q) is low, which decreases linearly from 0.45 to 0.25 as stress concentration factor increases from 2 to 4. This exceeds significantly the typical relationship between σ/E and q of other metallic materials exhibiting linear elasticity. Furthermore, fatigue damage is characterized by an extremely deflected mountain-shape fracture surface, resulting in much longer and more tortuous crack growth path as compared to these linear elastic materials. The above phenomena can be explained by the nonlinear elasticity and its induced stress relief at the notch root in an adaptive manner of higher stress stronger relief. This finding provides a new strategy to balance high strength and good damage tolerance property of metallic materials. 展开更多
关键词 FATIGUE FRACTURE notch sensitivity biomedical metal titanium alloy
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部