首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Phase transformation behavior of porous NiTi alloys fabricated by capsule-free hot isostatic pressing
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Phase transformation behavior of porous NiTi alloys fabricated by capsule-free hot isostatic pressing

机译:无囊热等静压法制备的多孔NiTi合金的相变行为

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Differential scanning calorimetry (DSC) was used to characterize the phase transformation of porous NiTi alloys. Results revealed that there existed a multi-stage martensitic transformation on cooling while either a single or two-stage transformation on heating. The DSC analysis indicated that the cold compaction pressure had great effect on the transformation temperatures. The transformation temperatures of NiTi with lower compaction pressure were higher than those of NiTi compacted at higher pressure. With increase in the annealing time, the transformation temperatures quickly increased for those alloys compacted at 150 MPa. However, there was only little change in the transformation temperatures for those compacted from 300 to 400 MPa. The change in the transformation temperature can be attributed to the combined effect of high dislocations density and precipitation of the second phase.
机译:差示扫描量热法(DSC)用于表征多孔NiTi合金的相变。结果表明,冷却时存在多阶段马氏体相变,而加热时存在单阶段或两阶段相变。 DSC分析表明,冷压压力对相变温度影响很大。压制压力较低的NiTi的转变温度高于压制压力较高的NiTi的转变温度。随着退火时间的增加,那些在150 MPa压实的合金的相变温度迅速升高。但是,从300 MPa压缩到400 MPa的相变温度几乎没有变化。相变温度的变化可归因于高位错密度和第二相沉淀的综合作用。

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