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Thermodynamic Assessment of Bio-Oriented Ti-Ta-Sn System

机译:生物导向T​​i-TA-SN系统的热力学评估

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摘要

The alloying elements Ta and Sn can effectively increase the stability of β-bcc phase, reduce Young’s modulus and improve the shape-memory property of Ti-based biomedical alloys. The development of the thermodynamic database for Ti-based biomedical alloys promises thermodynamic predictions in composition design and process optimization. In this work, one key sub-ternary Ti-Ta-Sn system has been thermodynamically assessed based on critical evaluation of experimental phase equilibria. A self-consistent thermodynamic description for the Ti-Ta-Sn system including one ternary compound Ti36Ta28Sn36 and six binary compounds considering the solubility of the third element has been obtained. Two isothermal sections at 973 and 1173 K and the liquidus projection have been calculated. Comparisons between the calculated and experimental phase equilibria validate the reliability of the present thermodynamic description. The influence of Ta and Sn contents on the transformation temperature and amount of α_hcp-Ti phase in β_bcc-(Ti,Ta) phase has been investigated based on thermodynamic calculations. The solidified phases in Ti-20Ta-xSn (x = 5, 15 and 25 at.%) as-cast alloys have been thermodynamically calculated based on Scheil solidification simulations. The presently developed thermodynamic description of the Ti-Ta-Sn system would promote the establishment of muti-component Ti-based thermodynamic database and guide the development of Ti-based alloys.
机译:合金元素Ta和Sn可以有效地提高β-BCC阶段的稳定性,降低杨氏模量,提高Ti基生物医学合金的形状记忆性能。基于TI的生物医学合金的热力学数据库的发展有望在组成设计和过程优化中的热力学预测。在这项工作中,基于对实验相平衡的关键评估进行了一次关键的子三元Ti-TA-Sn系统。考虑到第三个元件的溶解度,包括一个三元化合物Ti36TA28SN36和六个二元化合物的Ti-Ta-Sn系统的自我一致热力学描述。已经计算了973和1173k的两个等温部分和液相射出。计算和实验相平衡之间的比较验证了当前热力学描述的可靠性。基于热力学计算,研究了Ta和Sn含量对β_BCC-(TI,TA)相中α_HCP-Ti相的转化温度和量的影响。基于Scheil凝固模拟,Ti-20TA-XSN(X = 5,15和25的X = 5,15和25中的固化相。目前开发了TI-TA-SN系统的热力学描述将促进建立Muti-Compound Ti的热力学数据库,并指导Ti基合金的发展。

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