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Ti/Al3Ti层状复合材料层间断裂性能研究 被引量:4
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作者 王泽明 周培俊 +3 位作者 汪恩浩 袁丁 姜风春 果春焕 《中国材料进展》 CAS CSCD 北大核心 2017年第2期155-160,共6页
金属间化合物基层状复合材料Ti/Al_3Ti是采用Ti-6Al-4V箔和Al箔按照一定顺序叠加后,在真空环境下热压烧结成由韧性金属Ti和金属间化合物Al_3Ti组成的叠层结构。利用ENF(End-Notch-Flexure)和MMF(Mixed-Mode-Flexure)测试方法,对Ti/Al_3T... 金属间化合物基层状复合材料Ti/Al_3Ti是采用Ti-6Al-4V箔和Al箔按照一定顺序叠加后,在真空环境下热压烧结成由韧性金属Ti和金属间化合物Al_3Ti组成的叠层结构。利用ENF(End-Notch-Flexure)和MMF(Mixed-Mode-Flexure)测试方法,对Ti/Al_3Ti层状复合材料的Ⅱ型及Ⅰ+Ⅱ型层间断裂能、层间断裂行为以及能量释放率等方面进行了研究。结果表明,Ti/Al_3Ti层间断裂时,裂纹在复合材料界面处发生起裂,而在传播过程中发生偏转,最终导致Al_3Ti层开裂。由此可见,在实验过程中裂纹的表现形式是在Ti/Al_3Ti界面及Al_3Ti层中共同扩展;Ⅰ+Ⅱ型层间起裂能量释放率G_(Ⅰ+Ⅱ)为46 J/m^2,Ⅱ型层间起裂能量释放率G_Ⅱ为1453 J/m^2,表明Ⅱ型层间断裂比Ⅰ+Ⅱ型层间断裂更困难。 展开更多
关键词 状复合材料Ti/Al3Ti I+II型断裂 II型断裂 断裂研究 层间能量释放率
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Fracture of thermal barrier coating with multiple surface cracks and delaminations:Interlayer effect 被引量:1
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作者 范学领 许荣 M.Kikuchi 《Journal of Central South University》 SCIE EI CAS 2014年第7期2579-2583,共5页
Multiple surface cracks and interfacial delamination are the major failure mechanisms in film/substrate systems.The effect of interlayer upon the failure mechanisms of interfacial delamination concomitant to surface c... Multiple surface cracks and interfacial delamination are the major failure mechanisms in film/substrate systems.The effect of interlayer upon the failure mechanisms of interfacial delamination concomitant to surface crack was explored.Finite element model was developed to obtain the stress and energy release rate(ERR),which governs the propagation of interface cracks.The dependences of delamination upon the geometry and constitutive properties of interlayer were examined.The results indicate that the effect of elastic modulus of interlayer on the steady state ERR is insignificant.In cases of different geometrical parameters,however,the steady ERR decreases with the increase of the interlayer thickness.These findings lead to the conclusion that the interlayer constraint has significant effect on the ERR and thus coating life,which can be adopted to modify the ceramic top coat. 展开更多
关键词 thermal barrier coating DELAMINATION INTERLAYER energy release rate
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