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Tailorable Burning Behavior of Ti14 Alloy by Controlling Semi-Solid Forging Temperature

机译:通过控制半固态锻造温度来调节Ti14合金的可定制燃烧行为

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Semi-solid processing (SSP) is a popular near-net-shape forming technology for metals, while its application is still limited in titanium alloy mainly due to its low formability. Recent works showed that SSP could effectively enhance the formability and mechanical properties of titanium alloys. The processing parameters such as temperature and forging rate/ratio, are directly correlated with the microstructure, which endow the alloy with different chemical and physical properties. Specifically, as a key structural material for the advanced aero-engine, the burn resistant performance is a crucial requirement for the burn resistant titanium alloy. Thus, this work aims to assess the burning behavior of Ti14, a kind of burn resistant alloy, as forged at different semi-solid forging temperatures. The burning characteristics of the alloy are analyzed by a series of burning tests with different burning durations, velocities, and microstructures of burned sample. The results showed that the burning process is highly dependent on the forging temperature, due to the fact that higher temperatures would result in more Ti 2 Cu precipitate within grain and along grain boundaries. Such a microstructure hinders the transport of oxygen in the stable burning stage through the formation of a kind of oxygen isolation Cu-enriched layer under the burn product zone. This work suggests that the burning resistance of the alloy can be effectively tuned by controlling the temperature during the semi-solid forging process.
机译:半固态加工(SSP)是一种流行的金属近净成形技术,但由于其低成形性,其在钛合金中的应用仍然受到限制。最近的工作表明,SSP可以有效地提高钛合金的可成形性和机械性能。诸如温度和锻造速率/比率之类的工艺参数与微观结构直接相关,从而赋予合金不同的化学和物理性能。具体地说,作为先进航空发动机的关键结构材料,耐燃性能是耐燃钛合金的关键要求。因此,这项工作旨在评估在不同的半固态锻造温度下锻造的Ti14(一种耐燃合金)的燃烧行为。通过一系列的燃烧测试,分析了合金的燃烧特性,这些测试具有不同的燃烧持续时间,速度和燃烧样品的微观结构。结果表明,由于较高的温度会导致更多的Ti 2 Cu晶粒内和沿晶界析出,因此燃烧过程高度依赖于锻造温度。这种微结构通过在燃烧产物区域下方形成一种富氧隔离的富Cu层,阻碍了氧气在稳定燃烧阶段的传输。这项工作表明,通过控制半固态锻造过程中的温度,可以有效地调节合金的耐燃性。

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