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Effect of microstructure state of titanium alloy Ti-6Al-4V on structure and mechanical properties of joints produced by diffusion bonding process

机译:钛合金Ti-6al-4V显微组织状态对扩散连接制备接头组织和力学性能的影响

摘要

The studies of diffusion bonded samples of Ti-6Al-4V and Nitinol alloys were carried out considering the titanium alloy in two states: ultra-fine grained and bi-modal microstructures, the last one consisted of small and large a-phase grains. Depending on microstructure and chemical composition of the alloys, the diffusion bonding had been made at temperatures from 600°C to 850°C. The microstructures of joints was studied by scanning electron microscope using detector of backscattering electron diffraction. The shear strengths of joints were measured. It was concluded that the ultra-fine grained Ti-6Al-4V alloy could be applied for joints manufactured at a temperature lower than 750°C. The bi-modal Ti-6Al-4V alloy is an effective material for producing the joints at the temperature larger that 750°C
机译:考虑了钛合金的两种状态:超细晶粒和双峰微结构,最后一个由大大小小的a相晶粒组成的Ti-6Al-4V和镍钛诺合金的扩散结合样品的研究。根据合金的微观结构和化学组成,在600°C至850°C的温度下进行了扩散结合。通过扫描电子显微镜使用反向散射电子衍射检测器研究了接头的微观结构。测量了接头的剪切强度。结论是,超细晶粒的Ti-6Al-4V合金可用于温度低于750°C的接头。双峰Ti-6Al-4V合金是在大于750°C的温度下生产接头的有效材料

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