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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of B2 austenite grain size and aging time on microstructure and transformation behavior of thermomechanically treated titanium nickelide
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Effect of B2 austenite grain size and aging time on microstructure and transformation behavior of thermomechanically treated titanium nickelide

机译:B2奥氏体粒度粒度和老化时间对热机理钛嵌丝微观结构和转化行为的影响

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The size and morphology of Ti3Ni4 precipitates, as well as their transformation behavior after isothermal aging, were studied in a Ti-50.7 at.%Ni shape memory alloy with various B2 austenite grain sizes. A 0.3 mm thick band with an accumulated strain of epsilon= 44% (e = 0.6) obtained by cold rolling was used. The samples were then solution-treated at 600-800 degrees C for 0.3-1 h with subsequent quenching in water to obtain the structure with different grain size (GS) from 5 to 15 mu m. The samples were then subjected to isothermal annealing at 430 degrees C for 1, 3 and 10 h. The SEM observations were carried out using a JSM-6460LV. The microstructure was studied using a JEOL 2100 TEM. Characteristic temperatures were measured using a "Mettler Toledo" DSC. The results of the microstructure study prove that the GS strongly affects Ti3Ni4 particle size and morphology, as well as the degree of microscale microstructure heterogeneity, transformation kinetics and transformation sequences. This influence is non-unique and depends on the duration of isothermal annealing. After 1 h of aging, the particle thickness and diameter maintain the nanometer range in the whole GS range of 5-15 mu m. The increase of aging time to 3 and 10 h leads to localization of nanosized precipitates in the grain-boundary region, with the width of these regions decreasing with increasing GS. After aging for 1 h, the samples with the GS of 5 mu m show the B2 - R transformation. The increase in the GS to 15 mu m and aging duration to 10 h is accompanied by multiplication of martensitic transformations to four stages. The study explains the influence of GS on the precipitated particle size and morphology, transformation kinetics and staging. (C) 2018 Elsevier B.V. All rights reserved.
机译:在Ti-50.7中研究了Ti3Ni4沉淀物的尺寸和形态,以及其在等温老化后的转化行为。%Ni形状记忆合金,具有各种B2奥氏体晶粒尺寸。使用0.3mm厚条带,含有冷轧获得的ε= 44%(E = 0.6)。然后将样品在600-800℃下溶液处理0.3-1小时,随后在水中淬火,得到不同晶粒尺寸(GS)的结构,从5-15μm。然后将样品在430℃下进行等温退火1,3和10小时。使用JSM-6460LV进行SEM观察。使用JEOL 2100 TEM研究了微观结构。使用“梅特勒托利多”DSC测量特征温度。微观结构研究的结果证明,GS强烈影响Ti3Ni4粒度和形态,以及微观微观结构异质性,转化动力学和转化序列的程度。这种影响是非独特的,取决于等温退火的持续时间。在老化1小时后,粒度和直径保持纳米范围在5-15μm的整个GS范围内。老化时间至3和10小时的增加导致晶界区域中的纳米沉淀物的定位,这些区域的宽度随着GS的增加而降低。老化1小时后,具有5μmM的样品显示B2 - &变换。 GS至15μm和老化持续时间为10小时的GS增加到10小时,并伴随着马氏体变换乘以四个阶段。该研究阐述了GS对沉淀粒径和形态,转化动力学和分期的影响。 (c)2018年elestvier b.v.保留所有权利。

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