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首页> 外文期刊>Materials Science and Engineering >Achieving grain refinement and enhanced mechanical properties in Ti-6A1-4V alloy produced by multidirectional isothermal forging
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Achieving grain refinement and enhanced mechanical properties in Ti-6A1-4V alloy produced by multidirectional isothermal forging

机译:通过多向等温锻造实现Ti-6A1-4V合金的晶粒细化和增强的机械性能

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摘要

This study investigated the principle of multidirectional isothermal forging (MDIF) and determined the major microstructural evolution features and unique room-temperature mechanical properties of extra-low interstitial-grade Ti-6A1-4V alloy. The grain refinement mechanism, grain boundary characteristics, and phase transformation during MDIF were explored. After three-step MDIF, a homogeneous microstructure with a grain size of about 0.5 μm was produced. The ultrafine grained Ti-6A1-4V alloy exhibited high yield strength (1170 MPa), high ultimate tensile strength (1190 MPa), and good ductility (10.496). The mechanism of grain refinement during MDIF included continuous dynamic recrystallization (CDRX) and discontinuous dynamic recrystallization (DDRX). Grain subdivision resulted from CDRX or the transformation of cellular dislocation substructures into new ultrafine grains. The necklace of new DDRX grains formed along the initial grain boundaries of the Ti-6A1-4V alloy. The main strengthening mechanisms were grain boundary and dislocation strengthening. The strength and grain size followed the typical Hall-Petch relationship.
机译:这项研究调查了多向等温锻造(MDIF)的原理,并确定了超低间隙等级Ti-6A1-4V合金的主要组织演变特征和独特的室温力学性能。探索了MDIF过程中的晶粒细化机理,晶界特征和相变。在三步MDIF之后,生产出晶粒尺寸约为0.5μm的均匀组织。 Ti-6A1-4V超细晶粒合金具有高屈服强度(1170 MPa),高极限抗拉强度(1190 MPa)和良好的延展性(10.496)。 MDIF期间晶粒细化的机制包括连续动态重结晶(CDRX)和不连续动态重结晶(DDRX)。晶粒细分是由于CDRX或细胞位错亚结构转变成新的超细晶粒而引起的。沿Ti-6A1-4V合金的初始晶界形成的新DDRX晶粒项链。主要的强化机制是晶界和位错强化。强度和晶粒尺寸遵循典型的霍尔-帕奇关系。

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