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采用粉末冶金法对β钛合金复合材料进行加工与表征

Processing and Characterization of β Titanium Alloy Composite Using Power Metallurgy Approach.

作者信息

Zyguła Krystian, Wojtaszek Marek

机构信息

Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland.

出版信息

Materials (Basel). 2022 Aug 23;15(17):5800. doi: 10.3390/ma15175800.

Abstract

The β titanium alloy matrix composite was made from a mixture of elemental metal powders, including boron carbide. During the high-temperature sintering process, in situ synthesis took place as a result of the TiB and TiC reinforcing phases formed. The identification of these phases was confirmed by X-ray diffraction and microstructural analyses. The presence of unreacted BC particles and the surrounding reaction layers allowed for the evaluation of diffusion kinetics of alloying elements using SEM and EDS analyses. The direction of diffusion of the alloying elements in the multicomponent titanium alloy and their influence on the in situ synthesis reaction taking place were determined. In addition, the relationship between the microstructural components, strengthening phases, and hardness was also determined. It was shown that in situ reinforcement of titanium alloy produced from a mixture of elemental powders with complex chemical composition is possible under the proposed conditions. Thus, it has been demonstrated that sufficiently high temperature and adequate holding time allows one to understand the kinetics of the synthesis of the strengthening phases, which have been shown to be controlled by the concentrations of alloying elements.

摘要

β钛合金基复合材料由包括碳化硼在内的元素金属粉末混合物制成。在高温烧结过程中,由于形成了TiB和TiC增强相,发生了原位合成。通过X射线衍射和微观结构分析证实了这些相的存在。未反应的BC颗粒及其周围反应层的存在使得能够利用扫描电子显微镜(SEM)和能谱分析(EDS)评估合金元素的扩散动力学。确定了多组分钛合金中合金元素的扩散方向及其对发生的原位合成反应的影响。此外,还确定了微观结构成分、强化相和硬度之间的关系。结果表明,在所提出的条件下,由具有复杂化学成分的元素粉末混合物制备的钛合金进行原位强化是可行的。因此,已经证明,足够高的温度和适当的保温时间能够让人了解强化相的合成动力学,结果表明强化相的合成动力学受合金元素浓度的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d6b/9457331/dcc4f8ec9851/materials-15-05800-g001.jpg

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