巴黎法
材料科学
损伤容限
强度因子
航空航天
钛合金
结构工程
张力(地质)
线弹性
复合材料
断裂力学
法律工程学
裂缝闭合
压缩(物理)
工程类
复合数
合金
有限元法
航空航天工程
作者
Magnus Kahlin,Hans Ansell,Johan Moverare
标识
DOI:10.1016/j.ijfatigue.2021.106608
摘要
Critical aerospace parts require damage tolerance analysis to determine the inspection intervals in-service. Such analyses, based on linear fracture mechanics, require that the fatigue crack growth (FCG) rate relation to the stress intensity factor range is applicable independent of geometry and stress. FCG rates for laser powder bed fusion Ti6Al4V material for conventional compact tension (CT) specimens have therefore been compared to FCG rates for specimens with a crack configuration more technically relevant from an industrial and engineering perspective. The FCG rates corresponded very well and data obtained with CT-specimens can therefore be considered relevant for general damage tolerance predictions.
科研通智能强力驱动
Strongly Powered by AbleSci AI