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Effect of Thermomechanical Treatments on the Phases Microstructure Microhardness and Young’s Modulus of Ti-25Ta-Zr Alloys

机译:热机械处理对Ti-25Ta-Zr合金的相组织显微硬度和杨氏模量的影响

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摘要

Titanium and its alloys currently are used as implants, possessing excellent mechanical properties (more suited than stainless steel and Co-Cr alloys), good corrosion resistance and good biocompatibility. The titanium alloy used for most biomedical applications is Ti-6Al-4V, however, studies showed that vanadium and aluminum cause allergic reactions in human tissues and neurological disorders. New titanium alloys without the presence of these elements are being studied. The objective of this study was to analyze the influence of thermomechanical treatments, such as hot-rolling, annealing and solution treatment in the structure, microstructure and mechanical properties of the Ti-25Ta-Zr ternary alloy system. The structural and microstructural analyses were performed using X-ray diffraction, as well as optical, scanning and transmission electron microscopy. The mechanical properties were analyzed using microhardness and Young’s modulus measurements. The results showed that the structure of the materials and the mechanical properties are influenced by the different thermal treatments: rapid cooling treatments (hot-rolling and solubilization) induced the formation of α” and β phases, while the treatments with slow cooling (annealing) induced the formation of martensite phases. Alloys in the hot-rolled and solubilized conditions have better mechanical properties results, such as low elastic modulus, due to retention of the β phase in these alloys.
机译:钛及其合金目前被用作植入物,具有优异的机械性能(比不锈钢和钴铬合金更适合),良好的耐腐蚀性和良好的生物相容性。用于大多数生物医学应用的钛合金是Ti-6Al-4V,但是研究表明,钒和铝会引起人体组织和神经系统疾病的过敏反应。正在研究不存在这些元素的新型钛合金。这项研究的目的是分析热机械处理(例如热轧,退火和固溶处理)对Ti-25Ta-Zr三元合金体系的组织,显微组织和力学性能的影响。使用X射线衍射以及光学,扫描和透射电子显微镜进行结构和微观结构分析。使用显微硬度和杨氏模量测量来分析机械性能。结果表明,材料的结构和机械性能受不同热处理的影响:快速冷却处理(热轧和增溶)诱导形成α”和β相,而缓慢冷却处理(退火)引起马氏体相的形成。由于β相在这些合金中的保留,在热轧和增溶条件下的合金具有更好的机械性能,例如较低的弹性模量。

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