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增材制造的镍钛和镍钛铪合金:高温氧化下的使用寿命估算

Additively Manufactured NiTi and NiTiHf Alloys: Estimating Service Life in High-Temperature Oxidation.

作者信息

Dabbaghi Hediyeh, Safaei Keyvan, Nematollahi Mohammadreza, Bayati Parisa, Elahinia Mohammad

机构信息

Department of Mechanical, Industrial, and Manufacturing Engineering, The University of Toledo, Toledo, OH 43606, USA.

出版信息

Materials (Basel). 2020 May 1;13(9):2104. doi: 10.3390/ma13092104.

Abstract

In this study, the effect of the addition of Hf on the oxidation behavior of NiTi alloy, which was processed using additive manufacturing and casting, is studied. Thermogravimetric analyses (TGA) were performed at the temperature of 500, 800, and 900 °C to assess the isothermal and dynamic oxidation behavior of the Ni50.4Ti29.6Hf20 at.% alloys for 75 h in dry air. After oxidation, X-ray diffraction, scanning electron microscopy, and energy-dispersive X-ray spectroscopy were used to analyze the oxide scale formed on the surface of the samples during the high-temperature oxidation. Two stages of oxidation were observed for the NiTiHf samples, an increasing oxidation rate during the early stage of oxidation followed by a lower oxidation rate after approximately 10 h. The isothermal oxidation curves were well matched with a logarithmic rate law in the initial stage and then by parabolic rate law for the next stage. The formation of multi-layered oxide was observed for NiTiHf, which consists of Ti oxide, Hf oxide, and NiTiO. For the binary alloys, results show that by increasing the temperature, the oxidation rate increased significantly and fitted with parabolic rate law. Activation energy of 175.25 kJ/mol for additively manufactured (AM) NiTi and 60.634 kJ/mol for AM NiTiHf was obtained.

摘要

在本研究中,研究了添加铪对采用增材制造和铸造工艺加工的镍钛合金氧化行为的影响。进行了热重分析(TGA),在500、800和900℃的温度下评估了含20 at.%铪的Ni50.4Ti29.6Hf合金在干燥空气中75小时的等温及动态氧化行为。氧化后,使用X射线衍射、扫描电子显微镜和能量色散X射线光谱法分析高温氧化过程中样品表面形成的氧化膜。观察到NiTiHf样品的氧化分为两个阶段,氧化初期氧化速率增加,大约10小时后氧化速率降低。等温氧化曲线在初始阶段与对数速率定律良好匹配,下一阶段则与抛物线速率定律匹配。观察到NiTiHf形成了多层氧化物,其由氧化钛、氧化铪和NiTiO组成。对于二元合金,结果表明,随着温度升高,氧化速率显著增加,并符合抛物线速率定律。获得了增材制造(AM)NiTi的活化能为175.25 kJ/mol,AM NiTiHf的活化能为60.634 kJ/mol。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ded/7254245/344668847ce2/materials-13-02104-g001.jpg

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