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首页> 外文期刊>The European Physical Journal Special Topics >Evolution of phase transformations after multiple steps of marforming in Ti-rich Ni-Ti SMA
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Evolution of phase transformations after multiple steps of marforming in Ti-rich Ni-Ti SMA

机译:富钛Ni-Ti SMA的多个成形步骤后相变的演变

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The phase transformations associated with Shape Memory Effect (SME) can be one step, B19' (martensite) ↔ B2 (austenite), or two/multiple steps which include the intermediate R phase, depending on the thermal and thermomechanical history of the alloy. The transformation temperatures are generally observed above room temperature in Ti-rich Ni-Ti alloys, while those observed in Ni-rich alloys occur below room temperature. The goal of the present work is to investigate the phase transformations evolution in Ti-Rich Ni-Ti SMA (Ni-51 at % Ti) when subjected to two distinct thermal treatments (500°C for 30 minutes in air and 800°C for 300 minutes in vacuum) and subsequently multiple steps of marforming thermomechanical treatments intercalated with thermal treatments (500°C for 30 minutes in air) and subsequent four distinct final thermal treatments (400, 450, 500 or 600°C for 30 minutes in air). Further, the stability of phase transformations in the initial ten thermal cycles of these thermomechanically treated samples is also studied. Differential Scanning Calorimetry (DSC) and X-Ray Diffraction (XRD) were used to identify the transformation temperatures and the phases that are present after the thermomechanical treatments.
机译:与形状记忆效应(SME)相关的相变可以是一个步骤,即B19'(马氏体)↔B2(奥氏体),也可以是两个/多个包含中间R相的步骤,具体取决于合金的热和热机械历史。在富钛的Ni-Ti合金中,通常在高于室温的温度下观察到相变温度,而在富镍的合金中观察到的相变温度则在室温以下。本工作的目的是研究富钛Ni-Ti SMA(Ni-51 at%Ti)在两种不同的热处理条件下(在空气中500°C 30分钟,在800°C中800°C时)的相变演变。真空300分钟),随后进行多个步骤的热加工(包括在空气中500°C进行30分钟的热处理)和随后的四个不同的最终热处理(在空气中400、450、500或600°C进行30分钟的热处理) 。此外,还研究了这些热机械处理过的样品在最初的十个热循环中的相变稳定性。差示扫描量热法(DSC)和X射线衍射(XRD)用于确定转变温度和热机械处理后存在的相。

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    《The European Physical Journal Special Topics 》 |2008年第1期| 45-51| 共7页
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    CSN – GGDP/GPD Rod. BR 393 km 5001 Lúcio Meira s Vila Santa Cecília 27260-390 Volta Redonda RJ Brazil;

    CENIMAT – I3N Campus da FCT/UNL 2829-516 Monte de Caparica Portugal;

    CENIMAT – I3N Campus da FCT/UNL 2829-516 Monte de Caparica Portugal;

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