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Core-shell structured titanium-nitrogen alloys with high strength, high thermal stability and good plasticity

机译:芯壳结构钛 - 氮合金具有高强度,高热稳定性和良好的塑性

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Multifunctional materials with more than two good properties are widely required in modern industries. However, some properties are often trade-off with each other by single microstructural designation. For example, nanostructured materials have high strength, but low ductility and thermal stability. Here by means of spark plasma sintering (SPS) of nitrided Ti particles, we synthesized bulk core-shell structured Ti alloys with isolated soft coarse-grained Ti cores and hard Ti-N solid solution shells. The core-shell Ti alloys exhibit a high yield strength (~1.4?GPa) comparable to that of nanostructured states and high thermal stability (over 1100?°C, 0.71 of melting temperature), contributed by the hard Ti-N shells, as well as a good plasticity (fracture plasticity of 12%) due to the soft Ti cores. Our results demonstrate that this core-shell structure offers a design pathway towards an advanced material with enhancing strength-plasticity-thermal stability synergy.
机译:在现代行业中广泛要求具有两个以上特性的多功能材料。然而,通过单个微结构指定,一些属性通常彼此进行折射。例如,纳米结构材料具有高强度,但延展性低,延展性和热稳定性。这里借助于氮化Ti颗粒的火花等离子体烧结(SPS),我们用分离的软粗颗粒Ti芯和硬Ti-N固溶体壳合成块状芯壳结构Ti合金。核心壳Ti合金具有与纳米结构状态和高热稳定性(超过1100Ω℃,熔化温度的0.71)的高屈服强度(〜1.4μlγ),由硬钛壳有贡献,如由于柔软的Ti核心,以及由于柔软的Ti核心,良好的可塑性(断裂可塑性为12%)。我们的结果表明,该核心壳结构提供了一种朝向先进材料的设计途径,增强强度可塑性 - 热稳定协同作用。

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