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The Determining Role of Nb Interlayer on Interfacial Microstructure and Mechanical Properties of Ti/Steel Clad Plate by Vacuum Rolling Cladding

机译:Nb中间层对真空轧制Ti /钢复合板界面组织和力学性能的影响

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摘要

We elucidate here the determining role of Nb interlayer on mechanical properties of Ti/steel clad plate fabricated by vacuum rolling cladding (VRC) as a function of different heating temperatures. A critical analysis on the clad interface via electron probe micro-analyzer, X-ray diffractometer and shear testing were conducted to investigate the influence of TiC, Fe-Nb and TiFe compounds and Nb-Ti solid solution on microstructural evolution and shear properties of Ti/steel clad plate. The inter-diffusion between Ti, C and Fe was effectively restrained by adding the Nb interlayer at heating temperature of 800 °C, and average shear strength of 279 MPa was achieved. With increase of heating temperature, Nb-Ti solid solution was formed at the Ti/Nb interface, which reduced mechanical properties of clad plate at 900 °C. At 1000 °C, TiC and Nb-Fe compounds and Nb-Ti solid solution were formed at the interface, and minimum average shear strength of 152 MPa was achieved. The detailed analysis on the clad interface suggested that ideal shear strength can be obtained through the addition of Nb interlayer and selecting appropriate heating temperature.
机译:我们在这里阐明了Nb中间层对通过真空滚压熔覆(VRC)制成的Ti /钢熔覆板的力学性能的决定性作用,它是不同加热温度的函数。通过电子探针显微分析仪,X射线衍射仪和剪切试验对包层界面进行了严格分析,研究了TiC,Fe-Nb和TiFe化合物以及Nb-Ti固溶体对Ti的组织演变和剪切性能的影响。 /钢复合板。通过在800°C的加热温度下添加Nb中间层,有效地抑制了Ti,C和Fe之间的相互扩散,实现了平均剪切强度279 MPa。随着加热温度的升高,在Ti / Nb界面形成Nb-Ti固溶体,降低了900°C时复合板的力学性能。在1000°C时,在界面处形成TiC和Nb-Fe化合物以及Nb-Ti固溶体,并且获得的最小平均剪切强度为152 MPa。对包层界面的详细分析表明,可以通过添加Nb中间层并选择合适的加热温度来获得理想的剪切强度。

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