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2篇 您的检索式:作者名="F.Pyczak"
    题名 作者 年代 出处 被引量
1会聚束电子衍射研究蠕变镍基高温合金中γ和γ’相的局域应变分布显示文摘用高分辨率会聚束电子衍射方法(CBED)测量了单晶镍基高温合金CMSX-6在980℃蠕变后γ和γ’两相中的弹性应变分布.测量表明在水平和垂直的γ通道中存在着弹性应变的差别,这种差别被认为是筏化的驱动力.在γ’相中还观察到弹性应变的不均匀分布.吕铮 F.Pyczak H.Biermann H.Mughrabi 2006金属学报2006,42,7:1
2In-situ synchrotron high energy X-ray diffraction study on the internal strain evolution of D019-α2 phase during high-temperature compression and subsequent annealing in a TiAl alloy显示文摘The residual stress in the D019-α2 phase is known to be significantly higher than that in the L10-γphase in TiAl alloys after deformation due to the poor plasticity and strong mechanical anisotropy of theα2 phase.However,the internal stress accumulation and relaxation in theα2 phase during high-temperature deformation and annealing are scarcely investigated.In this study,for the first time,the internal strain evolution and load partitioning between theα2 andγphases at high temperatures are characterized by in-situ synchrotron high energy X-ray diffraction(HEXRD)technique.The plastic deformation is at least initiated at a stress of roughly 200 MPa in theγphase and 775 MPa in theα2 phase.The intergranular strains in theα2 phase are generated by the onset of dislocation glide in theγphase,and accentuated with the accumulated dislocations and the ensuing twinning activity.After unloading,great intergranular strains are preserved in theα2 phase constrained by the heavily plastically deformedγphase.During subsequent heating from 400 to 1000℃,the internal strains in theα2 phase are almost fully relaxed by substantial dislocation annihilation and rearrangement in theγphase.During annealing at 800℃,the internal strain relaxation is rapid in the initial 10 min,whereas considerably retarded subsequently.The extent of relaxation after holding at 800℃for 1 h is equivalent to that of heating in an effective temperature range of 680-880℃for 10 min.The in-situ lattice strain measurements with various thermal relaxation schemes provide guidance for the stress relief annealing of TiAl components.X.Liu L.Song A.Stark F.Pyczak T.B.Zhang 2023Journal of Materials Science & Technology2023,,32:0
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