论文标题

在Ti2nicu楔形的纳米级上阻塞马氏体过渡

Blocking of martensitic transition at the nano-scale in the Ti2NiCu wedge

论文作者

Lega, Petr, Kartsev, Alexey, Nedospasov, Ilya, Lv, Shuhui, Lv, Xiaoling, Tabachkova, Natalia, Irzhak, Artemy, Orlov, Andrey, Koledovy, Victor

论文摘要

与马氏体转化相关的形状记忆效应是纳米技术中快速发展的领域,在这种效果上建立的系统的工业使用为各种纳米设备的制造提供了更大的灵活性。因此,它解决了低规模及其局限性和控制的相变现象的问题。在本报告中,我们研究了Ti $ _2 $ nicu合金的锥形板的晶体结构以及Martensitic过渡发生的温度$ T_C $。我们证明了$ t_c $具有强烈的降序性角色,这是板厚度$ h $的功能。过渡完全抑制的临界厚度值为20 nm。此外,获得$ T_C(H)$曲线的结果表明过渡的滞后性质。这些发现为尺寸限制指示和机制调制开辟了途径,可以调节基于合金的纳米机械设备以更有效地操作。

Shape memory effect associated with martensitic transformations is of the rapidly developing field in nanotechnologies, where industrial use of systems established on that effect provide greater flexibility on the nano-devices fabrication of various kind. And therefore it addresses questions to the phase transition phenomena at low-scale and its limitations and control. In this report, we studied the crystal structure of tapered plates of Ti$_2$NiCu alloy and the temperature $T_c$ at which the martensitic transition occurs. We demonstrated that $T_c$ has a strongly descending character as a function of the plate thickness $h$. The critical thickness value at which the transition completely suppressed is 20 nm. Moreover, the obtained results for $T_c(h)$ curves indicate the hysteretic nature of the transition. These findings open the pathway for size limits indication and regimes modulation where the alloy-based nano-mechanical devices can be tuned to operate more efficiently.

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