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Effect of trace boron addition on microstructures, textures, mechanical properties and fracture behaviors of near a titanium alloy

机译:微量硼对钛合金附近组织,组织,力学性能和断裂行为的影响

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摘要

B-free and B-containing near a titanium alloys were fabricated by induction skull melting method. Microstructures, textures, mechanical properties and fracture behaviors were investigated. Observations of as-casted microstructures revealed that prior β grains and a colonies were obviously refined after adding trace boron element, and widmannstatten structure of B-free alloy transformed to basket-weave structure of B -containing alloy. For as-forged alloys, prior β grains were broken and squashed, and they stretched along direction perpendicular to forging direction. TiB whiskers promoted dynamic recrystallization behavior, which led to the precipitation of more equiaxed α grains around them. Texture intensity of overall a phase obviously decreased after the addition of trace boron element, which manifested that TiB whiskers prohibited texture formation and improved microstructure homogeneity. B-containing alloy exhibited excellent combination of room temperature (RT) and high temperature (650 ℃) mechanical properties. Fracture characteristics of B-free and B-containing alloys were dominant by abundant dimples and cleavage fracture of a lamellas during RT tensile processes. At 650 ℃, the cleavage fracture of a lamellas was replaced by dimples, illustrating ductile fracture characteristics. Longitudinal and transverse fracture of TiB whiskers existed no matter at RT or at 650 ℃ for B-containing alloy. By observations of lateral surfaces, cracks and voids were easier to generate at boundaries between grains and colonies with large size for B-free alloy. For B-containing alloy, comparing with macro-zones in matrix, voids were inclined to generate around interfaces of TiB whiskers and matrix due to strain mismatch. It illustrated TiB whiskers accelerated the fracture of alloy. Voids, transverse fracture of TiB whiskers and lateral abhesion of TiB whiskers were detected at RT, while lateral abhesion of TiB whiskers was seldom discovered during 650 ℃ tensile process.
机译:采用感应头骨熔化法制备了无硼和含硼的钛合金。研究了显微组织,织构,力学性能和断裂行为。铸态组织的观察表明,添加微量硼元素后,先前的β晶粒和菌落得到了明显的细化,无硼合金的widmannstatten结构转变为含硼合金的网状组织。对于锻造合金,先有的β晶粒被破碎和压扁,并沿垂直于锻造方向的方向拉伸。 TiB晶须促进了动态再结晶行为,从而导致了周围更多等轴α晶粒的析出。添加痕量硼元素后,整个相的织构强度明显降低,这表明TiB晶须阻止了织构的形成并改善了微观结构的均匀性。含B合金在室温(RT)和高温(650℃)的机械性能方面表现出优异的结合。无B和含B合金的断裂特征主要是由于RT拉伸过程中大量的凹坑和薄板的劈裂断裂所致。在650℃时,薄片的劈裂断裂被酒窝代替,说明了韧性断裂特征。无论是在室温下还是在650℃下,含B合金都存在TiB晶须的纵向和横向断裂。通过观察侧面,对于不含B的合金,在大尺寸的晶粒和菌落之间的边界处更容易产生裂纹和空隙。对于含B的合金,与基体中的大区域相比,由于应变不匹配,在TiB晶须与基体的界面周围倾向于产生空隙。说明TiB晶须加速了合金的断裂。在室温下检测到空泡,TiB晶须的横向断裂和TiB晶须的横向附着,而在650℃拉伸过程中很少发现TiB晶须的横向附着。

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