科学技术与工程
科學技術與工程
과학기술여공정
SCIENCE TECHNOLOGY AND ENGINEERING
2008年
1期
129-133
,共5页
李仲%葛森%吕国志%丁惠梁
李仲%葛森%呂國誌%丁惠樑
리중%갈삼%려국지%정혜량
加筋板%多处损伤%裂纹扩展%随机谱
加觔闆%多處損傷%裂紋擴展%隨機譜
가근판%다처손상%렬문확전%수궤보
stiffened panel%multiple site damage%crack growth%random load spectrum
进行了多处损伤LY12CZ铝合金加筋板的疲劳裂纹扩展的分析与试验研究.给出了典型的随机载荷谱下铝合金加筋板多裂纹扩展的预计方法.用组合法和类比法计算多处损伤LY12CZ铝合金加筋板的应力强度因子.考虑每个载荷循环裂纹之间的相互作用影响,以Walker裂纹扩展公式和Willenborg-Chang裂纹扩展公式为基础,用循环续循环进行裂纹累积,用虚拟施加剩余强度载荷和裂尖韧带塑性区连通判据确定临界裂纹尺寸.进行了恒幅谱载荷及程序块谱载荷下加筋板多裂纹的扩展试验研究.对比了铝合金多裂纹扩展的分析预计结果和试验结果,对比结果表明,预测的寿命与试验结果吻合较好.
進行瞭多處損傷LY12CZ鋁閤金加觔闆的疲勞裂紋擴展的分析與試驗研究.給齣瞭典型的隨機載荷譜下鋁閤金加觔闆多裂紋擴展的預計方法.用組閤法和類比法計算多處損傷LY12CZ鋁閤金加觔闆的應力彊度因子.攷慮每箇載荷循環裂紋之間的相互作用影響,以Walker裂紋擴展公式和Willenborg-Chang裂紋擴展公式為基礎,用循環續循環進行裂紋纍積,用虛擬施加剩餘彊度載荷和裂尖韌帶塑性區連通判據確定臨界裂紋呎吋.進行瞭恆幅譜載荷及程序塊譜載荷下加觔闆多裂紋的擴展試驗研究.對比瞭鋁閤金多裂紋擴展的分析預計結果和試驗結果,對比結果錶明,預測的壽命與試驗結果吻閤較好.
진행료다처손상LY12CZ려합금가근판적피로렬문확전적분석여시험연구.급출료전형적수궤재하보하려합금가근판다렬문확전적예계방법.용조합법화류비법계산다처손상LY12CZ려합금가근판적응력강도인자.고필매개재하순배렬문지간적상호작용영향,이Walker렬문확전공식화Willenborg-Chang렬문확전공식위기출,용순배속순배진행렬문루적,용허의시가잉여강도재하화렬첨인대소성구련통판거학정림계렬문척촌.진행료항폭보재하급정서괴보재하하가근판다렬문적확전시험연구.대비료려합금다렬문확전적분석예계결과화시험결과,대비결과표명,예측적수명여시험결과문합교호.
An analytical and experimental study were performed on the fatigue crack growth of stiffened LY12CZ Aluminum Alloy panels with multiple site damage (MSD).A typical method was presented for the prediction of multiple crack growth in stiffened panel under random fatigue load spectrum.The stress intensity factor was calculated by the combined approach and analytical method.The interaction between cracks was considered at each load cycle.The Walker equation and the Willenborg-Chang equation for crack were used as the basis for the calculation of cycle-by-cycle crack size accumulation;the fictitious residual strength load is applied,and the residual strength criterion of crack tip ligament plastic zone linkup is used for the determination of critical crack size.Experimental studies for crack growth of stiffened panels with multiple cracks were performed under both constant-amplitude load and program block spectrum load.The experimental results for multiple crack growth were compared with analytical predictions.It is shown that the analytical predictions of the crack growth life coincide well with the experimental ones.