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Influence of sharp microstructural gradients on the fatigue crack growth resistance of alpha + beta and near-a titanium alloys

机译:尖锐的微观组织梯度对α+β和近a钛合金的抗疲劳裂纹扩展性的影响

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The present study focuses on the effect of microstructural gradients on the fatigue crack growth resistance ofTi-6Al-4Vand Ti-6242 titanium alloys. Sharp microstructural gradients from fine-grained bimodal to coarse-grained lamellar microstructures were obtained by heat treating only a portion of fine-grained plates in the beta single-phase field using a high-frequency induction coil. For fatigue crack growth from a bimodal into a lamellar microstructure, it was found that the initial crack extension past the microstructural transition within the lamellar microstmcture shows the same crack growth resistance as the reference bimodal microstructure. Similarly, for fatigue crack growth from a lamellar into a bimodal microstructure, the initial crack extension past the microstructural transition within the bimodal microstructure shows same crack growth resistance as the reference lamellar microstructure. Based on detailed crack front profile investigations using optical light and scanning electron microscopy as well as heat tinting procedures, these findings can be mainly attributed to the effect of the crack front geometry
机译:本研究的重点是微观组织梯度对Ti-6Al-4V和Ti-6242钛合金疲劳裂纹扩展性的影响。通过使用高频感应线圈仅对β单相场中的一部分细晶粒板进行热处理,可以获得从细晶粒双峰态到粗晶粒层状微结构的尖锐微观结构梯度。对于从双峰到层状微结构的疲劳裂纹扩展,发现在层状微结构内经过微观结构转变的初始裂纹扩展显示出与参考双峰微结构相同的抗裂纹扩展性。类似地,对于从层状结构到双峰微结构的疲劳裂纹扩展,通过双峰微结构内的微结构转变的初始裂纹扩展显示出与参考层状微结构相同的裂纹扩展阻力。基于使用光学和扫描电子显微镜以及热着色程序进行的详细裂纹前轮廓调查,这些发现主要归因于裂纹前几何形状的影响

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