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Interfacial microstructure and properties of a vacuum roll-cladding titanium-steel clad plate with a nickel interlayer

机译:用镍层间真空辊覆层钢 - 钢包板的界面微观结构及性能

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摘要

The titanium-steel clad plates with Ni interlayer were prepared by vacuum roll-cladding (VRC). Different compounds were observed at the interface at different heating temperatures. The effect of Ti2Ni, TiNi, TiNi3, alpha-Ti, beta-Ti, TiC and TiFe on the mechanical properties and microstructure of titanium-steel clad plates were analyzed by electron probe micro-analyzer (EPMA), transmission electron microscopy (TEM), X-ray diffractometer (XRD) and shear test. The study showed that TiC and TiFe brittle compounds were not formed at the clad interface at 800 degrees C and 900 degrees C, and the average shear strength of 310 MPa and 224 MPa were obtained, respectively. At 1000 degrees C, the diffusion between Ti and Fe was not restrained by Ni interlayer, and TiC and TiFe brittle compounds were formed at the interface, and the average shear strength of 151 MPa was obtained. With the increase of temperature, Ti2Ni in liquid phase was formed at the interface at 1000 degrees C, which seriously affected the mechanical properties of the clad plates.
机译:通过真空辊覆层(VRC)制备具有Ni中间层的钛钢包层。在不同加热温度下的界面处观察到不同的化合物。通过电子探针微分析仪(EPMA),透射电子显微镜(TEM)分析了Ti2Ni,TiNi,TiNI3,Alpha-Ti,Beta-Ti,TiC和Tic和TiGe对钛钢包层的力学性能和微观结构的影响,X射线衍射仪(XRD)和剪切试验。该研究表明,在800℃和900℃下,不形成TiC和TiGe脆化合物,分别获得310MPa和224MPa的平均剪切强度。在1000℃下,Ti和Fe之间的扩散不受Ni中层抑制,并且在界面处形成TiC和TiGe脆化合物,并且获得151MPa的平均剪切强度。随着温度的增加,在1000℃的界面处形成液相中的Ti2Ni,这严重影响了包层板的机械性能。

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