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Interfacial microstructure and shear strength of Ti-6Al-4V/TiAl laminate composite sheet fabricated by hot packed rolling

机译:热压轧制Ti-6Al-4V / TiAl层压复合板的界面组织和剪切强度

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摘要

A two layer Ti-6Al-4V(wt%)/Ti-43Al-9V-Y(at%) laminate composite sheet with a uniform interfacial microstructure and no discernible defects at the interfaces has been prepared by hot-pack rolling, and its interfacial microstructure and shear strength were characterized. Characterization of the interfacial microstructure shows that there was an interfacial region of uniform thickness of about 250 μm which consisted of two layers: Layer I on the TiAl side which was 80 μm thick and Layer II on the Ti-6Al-4V side which was 170 μm thick. The microstructure of Layer I consisted of massive γ phases, needlelike γ phases and B2 phase matrix, while the microstructure of Layer II consisted of α₂ phase. The microstructure of the interfacial region is the result of the interdiffusion of Ti element from Ti-6Al-4V alloy layer into the TiAl alloy layer and Al element from the TiAl alloy layer into the Ti-6Al-4V alloy layer. The shear strength measurement demonstrated that the bonding strength between the TiAl alloy and Ti-6Al-4V alloy layers in the laminate composite sheet was very high. This means that the quality of the interfacial bonding between the two layers achieved by the multi-path rolling is high, and the interface between the layers is very effective in transferring loading, causing significantly improved toughness and plasticity of the TiAl/Ti-6Al-4V laminate composite sheet.
机译:通过热压延轧制了两层Ti-6Al-4V(wt%)/ Ti-43Al-9V-Y(at%)层压复合板,其界面组织均匀,界面处无明显缺陷。表征了界面组织和剪切强度。界面微观结构的表征表明,存在一个均匀厚度约为250μm的界面区域,该区域由两层组成:TiAl侧的I层厚度为80μm,Ti-6Al-4V的II层厚度为170微米厚。第一层的微观结构由块状γ相,针状γ相和B2相基质组成,而第二层的微观结构由α2相组成。界面区域的微观结构是Ti元素从Ti-6Al-4V合金层相互扩散到TiAl合金层中以及Al元素从TiAl合金层相互扩散到Ti-6Al-4V合金层中的结果。剪切强度测量表明层压复合板中的TiAl合金层和Ti-6Al-4V合金层之间的结合强度非常高。这意味着通过多径轧制实现的两层之间的界面结合质量很高,并且两层之间的界面在转移载荷方面非常有效,从而显着提高了TiAl / Ti-6Al-的韧性和可塑性4V层压复合板。

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