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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Orientation relationship between TiC carbides and B2 phase in as-cast and heat-treated NiTi shape memory alloys
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Orientation relationship between TiC carbides and B2 phase in as-cast and heat-treated NiTi shape memory alloys

机译:铸造和热处理NiTi形状记忆合金中TiC碳化物与B2相的取向关系

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摘要

In the present study, Ni50.7 at.%-Ti shape memory alloys were prepared by vacuum induction melting using graphite crucibles. During melting the carbon concentration of the alloy increased and TiC carbides formed during solidification. The microstructure of the as-cast NiTi alloys was examined using scanning and transmission electron microscopy (SEM, TEM). Only eutectic TiC fibers were found in a low carbon NiTi alloy. For higher carbon concentrations, primary TiC carbides were observed in addition to the fine eutectic TiC phase. TEM results suggest that there is no specific orientation relationship between primary TiC carbides and B2. For the eutectic TiC phase, however, the following orientation relationship could be identified for low and high carbon contents in the NiTi alloy: B2 [00l]‖TiC [001], B2 (200)‖TiC (220), B2 (110)‖TiC (200), and B2 (110)‖TiC (020). It was also found that the interface between TiC and B2 is semi-coherent. During a subsequent post-cast heat treatment new carbides formed with different morphology (sizes and shapes) but with the same orientation relationship. Experimental evidence including SEM and TEM micrographs and diffraction patterns is presented to document these findings.
机译:在本研究中,使用石墨坩埚通过真空感应熔炼制备了Ni50.7 at。%-Ti形状记忆合金。在熔化过程中,合金的碳浓度增加,并且在凝固过程中形成了TiC碳化物。使用扫描和透射电子显微镜(SEM,TEM)检查了铸态NiTi合金的微观结构。在低碳NiTi合金中仅发现共晶TiC纤维。对于较高的碳浓度,除了精细的共晶TiC相以外,还观察到了初级TiC碳化物。 TEM结果表明,初级TiC碳化物与B2之间没有特定的取向关系。然而,对于共晶TiC相,对于NiTi合金中的低碳含量和高碳含量,可以确定以下取向关系:B2 [00l]‖TiC[001],B2(200)‖TiC(220),B2(110) ``TiC(200)和B2(110)''TiC(020)。还发现TiC和B2之间的界面是半相干的。在随后的铸造后热处理过程中,形成了具有不同形态(尺寸和形状)但取向关系相同的新碳化物。提供了包括SEM和TEM显微照片以及衍射图样在内的实验证据来证明这些发现。

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