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Mechanical Behavior of Ti-6Al-2Sn-4Zr-2Mo Titanium Alloy under Hot and Superplastic Forming Conditions: Experiment and Modeling

机译:Ti-6Al-2Sn-4Zr-2Mo钛合金在热和超塑性成形条件下的力学行为:实验和建模

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Titanium alloys are widely used in the aircraft industry. In sheet form, they can be used for the manufacturing of pylon or engine parts. With the aim of achieving a cost reduction, this study proposes to act on the starting microstructure so as to improve the mechanical properties during the forming stages. In the present study, investigations are focused on Ti-6Al-2Sn-4Zr-2Mo (Ti6242) alloy, which is especially used for the hot areas (e.g. parts close to the engine or the combustion chamber). A thorough mechanical test campaign was performed on the Ti6242 alloy, examining, on the one hand, the microstructure qualified by the aircraft industry and, on the other hand, a new range of refined microstructures obtained by a hot straining process. For each test, microstructural observations exhibited complex phenomena simultaneously including both grain growth and dynamic recrystallization. The occurrence, sequencing and coupling of the mechanisms were all strongly dependent on the starting microstructure and the test conditions (time-temperature and strain rate) investigated. They are not easy to understand and require further tests and observations. In such a framework, the implementation of mechanical models is an efficient and relevant way of gaining a better knowledge of the microstructural evolution observed and its influence on the mechanical behavior.
机译:钛合金广泛用于飞机工业。它们可以片状形式用于塔架或发动机零件的制造。为了达到降低成本的目的,本研究建议对初始的微观结构起作用,以改善成形阶段的机械性能。在本研究中,研究集中在Ti-6Al-2Sn-4Zr-2Mo(Ti6242)合金上,该合金尤其用于高温区域(例如靠近发动机或燃烧室的零件)。对Ti6242合金进行了全面的机械测试,一方面检查了飞机工业所鉴定的微结构,另一方面检查了通过热应变工艺获得的一系列新的细化微结构。对于每个测试,显微组织观察同时显示出复杂的现象,包括晶粒长大和动态再结晶。机理的发生,顺序和耦合都强烈取决于起始的微观结构和所研究的测试条件(时间-温度和应变速率)。它们不容易理解,需要进一步的测试和观察。在这样的框架中,机械模型的实现是一种有效和相关的方式,可以更好地了解观察到的微观结构演变及其对机械行为的影响。

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