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Microstructural Evolutions of a High Temperature Titanium Alloy Processed by Thermal Mechanical Treatments

机译:热处理工艺处理的高温钛合金的组织演变

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TG6 alloy is a new titanium alloy which has been designed to reach the service temperature of 600°C. The microstructural evolutions of TG6 alloy under different thermal mechanical treatments were studied. It was found that lamellar microstructures with basketweave a lamella are obtained for TG6 alloy forged in β field. The evolution mechanism is transformed from dynamic recrystallization to dynamic recovery and the thickness of a lamella increases with increasing forging temperature. The aspect ratio of a lamella decreases firstly and then increases with increasing deformation degree. Grain boundary a lath appears when the deformation degree is less than 40%. The thermal mechanical treatments, including deformation in β field firstly and then deformation in α+β field result in the transformations of the microstructures drastically. The deformation degree in α+β field decides the final microstructure. The deformation degree of 20% in α+β field results in partial globular α phase.
机译:TG6合金是一种新的钛合金,设计用于达到600°C的服务温度。研究了TG6合金在不同热机械处理下的微观结构演进。发现用篮织物的层状微观结构是在β场中锻造的Tg6合金的薄片。从动态重结晶转化为动态回收的进化机制,薄片的厚度随着锻造温度的增加而增加。薄片的纵横比首先降低,然后随着变形程度的增加而增加。当变形程度小于40%时,晶界出现板条。首先在β场中的热机械处理,包括β场变形,然后在α+β场中变形导致微结构的变形。 α+β场的变形度决定了最终的微观结构。 α+β场20%的变形度导致部分球状α相。

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